From 79b55e28b43e789d1c31a97ef24f286a01353554 Mon Sep 17 00:00:00 2001 From: "dependabot[bot]" <49699333+dependabot[bot]@users.noreply.github.com> Date: Fri, 28 Aug 2026 05:37:02 +0000 Subject: [PATCH] chore(deps): bump github.com/grpc-ecosystem/grpc-gateway/v2 Bumps [github.com/grpc-ecosystem/grpc-gateway/v2](https://github.com/grpc-ecosystem/grpc-gateway) from 2.29.0 to 2.30.0. - [Release notes](https://github.com/grpc-ecosystem/grpc-gateway/releases) - [Commits](https://github.com/grpc-ecosystem/grpc-gateway/compare/v2.29.0...v2.30.0) --- updated-dependencies: - dependency-name: github.com/grpc-ecosystem/grpc-gateway/v2 dependency-version: 2.30.0 dependency-type: direct:production update-type: version-update:semver-minor ... Signed-off-by: dependabot[bot] --- go.mod | 46 +- go.sum | 107 +- .../felixge/httpsnoop/capture_metrics.go | 37 +- .../felixge/httpsnoop/wrap_generated.go | 16179 +++++++++++++++ .../httpsnoop/wrap_generated_gteq_1.8.go | 436 - .../httpsnoop/wrap_generated_lt_1.8.go | 278 - .../go-openapi/jsonpointer/.golangci.yml | 3 + .../go-openapi/jsonpointer/CONTRIBUTORS.md | 6 +- .../go-openapi/jsonpointer/README.md | 11 +- .../go-openapi/jsonpointer/errors.go | 15 +- .../go-openapi/jsonpointer/ifaces.go | 35 +- .../{swag => jsonpointer}/jsonname/doc.go | 0 .../jsonname/go_name_provider.go | 36 +- .../{swag => jsonpointer}/jsonname/ifaces.go | 8 +- .../jsonname/name_provider.go | 24 +- .../go-openapi/jsonpointer/options.go | 19 +- .../go-openapi/jsonpointer/pointer.go | 124 +- .../go-openapi/jsonreference/.gitignore | 1 - .../go-openapi/jsonreference/CONTRIBUTORS.md | 22 +- .../go-openapi/jsonreference/README.md | 24 +- vendor/github.com/go-openapi/swag/.gitignore | 1 + .../github.com/go-openapi/swag/.golangci.yml | 3 + .../go-openapi/swag/CONTRIBUTORS.md | 4 +- vendor/github.com/go-openapi/swag/README.md | 19 +- .../github.com/go-openapi/swag/conv/format.go | 26 +- vendor/github.com/go-openapi/swag/go.work | 1 + .../go-openapi/swag/jsonname_iface.go | 8 +- .../jsonutils/adapters/stdlib/json/adapter.go | 86 +- .../jsonutils/adapters/stdlib/json/lexer.go | 42 +- .../jsonutils/adapters/stdlib/json/options.go | 52 + .../adapters/stdlib/json/ordered_map.go | 49 +- .../jsonutils/adapters/stdlib/json/pool.go | 121 +- .../adapters/stdlib/json/register.go | 18 +- .../jsonutils/adapters/stdlib/json/writer.go | 27 +- .../github.com/go-openapi/swag/loading/doc.go | 24 + .../go-openapi/swag/loading/loading.go | 38 +- .../go-openapi/swag/loading/options.go | 114 +- .../go-openapi/swag/loading_iface.go | 6 +- .../swag/{jsonname => pools}/LICENSE | 0 .../go-openapi/swag/pools/README.md | 1 + .../github.com/go-openapi/swag/pools/debug.go | 17 + .../go-openapi/swag/pools/debug_off.go | 51 + .../go-openapi/swag/pools/debug_on.go | 237 + .../github.com/go-openapi/swag/pools/doc.go | 26 + .../github.com/go-openapi/swag/pools/pools.go | 410 + .../go-openapi/swag/yamlutils/ordered_map.go | 35 +- .../go-openapi/swag/yamlutils/yaml.go | 151 +- .../google.golang.org/grpc/otelgrpc/config.go | 13 +- .../google.golang.org/grpc/otelgrpc/doc.go | 2 +- .../grpc/otelgrpc/interceptor.go | 45 +- .../grpc/otelgrpc/interceptorinfo.go | 2 +- .../grpc/otelgrpc/internal/parse.go | 4 +- .../grpc/otelgrpc/metadata_supplier.go | 2 +- .../grpc/otelgrpc/stats_handler.go | 88 +- .../grpc/otelgrpc/version.go | 4 +- .../net/http/otelhttp/common.go | 2 +- .../net/http/otelhttp/config.go | 2 +- .../instrumentation/net/http/otelhttp/doc.go | 2 +- .../net/http/otelhttp/handler.go | 2 +- .../otelhttp/internal/request/body_wrapper.go | 8 +- .../net/http/otelhttp/internal/request/gen.go | 2 +- .../internal/request/resp_writer_wrapper.go | 8 +- .../http/otelhttp/internal/semconv/client.go | 70 +- .../net/http/otelhttp/internal/semconv/gen.go | 2 +- .../http/otelhttp/internal/semconv/server.go | 42 +- .../http/otelhttp/internal/semconv/util.go | 24 +- .../net/http/otelhttp/labeler.go | 2 +- .../net/http/otelhttp/start_time_context.go | 2 +- .../net/http/otelhttp/transport.go | 23 +- .../net/http/otelhttp/version.go | 4 +- .../exporters/stdout/stdouttrace/config.go | 2 +- .../otel/exporters/stdout/stdouttrace/doc.go | 2 +- .../stdouttrace/internal/counter/counter.go | 8 +- .../stdout/stdouttrace/internal/gen.go | 4 +- .../internal/observ/instrumentation.go | 17 +- .../stdout/stdouttrace/internal/version.go | 4 +- .../stdout/stdouttrace/internal/x/features.go | 2 +- .../stdout/stdouttrace/internal/x/x.go | 8 +- .../exporters/stdout/stdouttrace/trace.go | 2 +- .../otel/sdk/instrumentation/doc.go | 2 +- .../otel/sdk/instrumentation/library.go | 2 +- .../otel/sdk/instrumentation/scope.go | 2 +- .../otel/sdk/internal/attrnorm/dedup.go | 300 + .../otel/sdk/internal/attrnorm/truncate.go | 232 + .../otel/sdk/internal/x/features.go | 2 +- .../otel/sdk/internal/x/x.go | 8 +- .../otel/sdk/metric/aggregation.go | 2 +- .../otel/sdk/metric/cache.go | 2 +- .../otel/sdk/metric/config.go | 4 +- .../otel/sdk/metric/doc.go | 2 +- .../otel/sdk/metric/env.go | 2 +- .../otel/sdk/metric/exemplar.go | 2 +- .../otel/sdk/metric/exemplar/doc.go | 2 +- .../otel/sdk/metric/exemplar/exemplar.go | 2 +- .../otel/sdk/metric/exemplar/filter.go | 2 +- .../metric/exemplar/fixed_size_reservoir.go | 170 +- .../metric/exemplar/histogram_reservoir.go | 58 +- .../otel/sdk/metric/exemplar/next_tracker.go | 154 + .../otel/sdk/metric/exemplar/reservoir.go | 2 +- .../otel/sdk/metric/exemplar/storage.go | 57 +- .../otel/sdk/metric/exemplar/value.go | 2 +- .../otel/sdk/metric/exporter.go | 2 +- .../otel/sdk/metric/instrument.go | 55 +- .../metric/internal/aggregate/aggregate.go | 2 +- .../sdk/metric/internal/aggregate/atomic.go | 18 +- .../otel/sdk/metric/internal/aggregate/doc.go | 2 +- .../sdk/metric/internal/aggregate/drop.go | 2 +- .../sdk/metric/internal/aggregate/exemplar.go | 2 +- .../aggregate/exponential_histogram.go | 28 +- .../internal/aggregate/filtered_reservoir.go | 2 +- .../metric/internal/aggregate/histogram.go | 92 +- .../metric/internal/aggregate/lastvalue.go | 14 +- .../sdk/metric/internal/aggregate/limit.go | 2 +- .../otel/sdk/metric/internal/aggregate/sum.go | 14 +- .../sdk/metric/internal/attrnorm/dedup.go | 300 + .../otel/sdk/metric/internal/gen.go | 10 + .../metric/internal/observ/instrumentation.go | 6 +- .../internal/reservoir/concurrent_safe.go | 2 +- .../otel/sdk/metric/internal/reservoir/doc.go | 2 +- .../otel/sdk/metric/internal/reuse_slice.go | 2 +- .../otel/sdk/metric/internal/x/features.go | 22 + .../otel/sdk/metric/internal/x/x.go | 52 +- .../otel/sdk/metric/manual_reader.go | 2 +- .../otel/sdk/metric/meter.go | 16 +- .../otel/sdk/metric/metricdata/data.go | 2 +- .../otel/sdk/metric/metricdata/temporality.go | 2 +- .../otel/sdk/metric/periodic_reader.go | 4 +- .../otel/sdk/metric/pipeline.go | 2 +- .../otel/sdk/metric/provider.go | 6 +- .../otel/sdk/metric/reader.go | 2 +- .../otel/sdk/metric/splitmetrics.go | 2 +- .../otel/sdk/metric/version.go | 4 +- .../otel/sdk/metric/view.go | 2 +- .../otel/sdk/resource/auto.go | 2 +- .../otel/sdk/resource/builtin.go | 4 +- .../otel/sdk/resource/config.go | 6 +- .../otel/sdk/resource/container.go | 4 +- .../otel/sdk/resource/doc.go | 2 +- .../otel/sdk/resource/env.go | 4 +- .../otel/sdk/resource/host_id.go | 4 +- .../otel/sdk/resource/host_id_bsd.go | 2 +- .../otel/sdk/resource/host_id_darwin.go | 2 +- .../otel/sdk/resource/host_id_exec.go | 2 +- .../otel/sdk/resource/host_id_linux.go | 2 +- .../otel/sdk/resource/host_id_readfile.go | 2 +- .../otel/sdk/resource/host_id_unsupported.go | 2 +- .../otel/sdk/resource/host_id_windows.go | 2 +- .../otel/sdk/resource/os.go | 4 +- .../otel/sdk/resource/os_release_darwin.go | 2 +- .../otel/sdk/resource/os_release_unix.go | 2 +- .../otel/sdk/resource/os_unix.go | 2 +- .../otel/sdk/resource/os_unsupported.go | 2 +- .../otel/sdk/resource/os_windows.go | 2 +- .../otel/sdk/resource/process.go | 4 +- .../otel/sdk/resource/resource.go | 23 +- .../otel/sdk/trace/batch_span_processor.go | 7 +- .../go.opentelemetry.io/otel/sdk/trace/doc.go | 2 +- .../otel/sdk/trace/event.go | 2 +- .../otel/sdk/trace/evictedqueue.go | 2 +- .../otel/sdk/trace/id_generator.go | 2 +- .../otel/sdk/trace/internal/env/env.go | 2 +- .../internal/observ/batch_span_processor.go | 6 +- .../otel/sdk/trace/internal/observ/doc.go | 2 +- .../internal/observ/simple_span_processor.go | 6 +- .../otel/sdk/trace/internal/observ/tracer.go | 4 +- .../otel/sdk/trace/link.go | 2 +- .../otel/sdk/trace/provider.go | 61 +- .../otel/sdk/trace/sampler_env.go | 2 +- .../otel/sdk/trace/sampling.go | 2 +- .../otel/sdk/trace/simple_span_processor.go | 14 +- .../otel/sdk/trace/snapshot.go | 2 +- .../otel/sdk/trace/span.go | 250 +- .../otel/sdk/trace/span_exporter.go | 2 +- .../otel/sdk/trace/span_limits.go | 10 +- .../otel/sdk/trace/span_processor.go | 2 +- .../otel/sdk/trace/tracer.go | 2 +- .../otel/sdk/trace/tracetest/exporter.go | 2 +- .../otel/sdk/trace/tracetest/recorder.go | 2 +- .../otel/sdk/trace/tracetest/span.go | 2 +- .../go.opentelemetry.io/otel/sdk/version.go | 4 +- .../otel/semconv/v1.40.0/MIGRATION.md | 27 - .../otel/semconv/v1.40.0/README.md | 3 - .../otel/semconv/v1.40.0/attribute_group.go | 16865 ---------------- .../otel/semconv/v1.40.0/doc.go | 9 - .../otel/semconv/v1.40.0/error_type.go | 81 - .../otel/semconv/v1.40.0/exception.go | 9 - .../otel/semconv/v1.40.0/schema.go | 9 - .../otel/semconv/v1.43.0/httpconv/metric.go | 2051 ++ .../otel/semconv/v1.43.0/otelconv/metric.go | 3197 +++ .../{v1.40.0 => v1.43.0}/rpcconv/metric.go | 45 +- vendor/go.yaml.in/yaml/v3/parserc.go | 178 +- vendor/go.yaml.in/yaml/v3/yamlh.go | 44 +- vendor/modules.txt | 62 +- 193 files changed, 24959 insertions(+), 19164 deletions(-) create mode 100644 vendor/github.com/felixge/httpsnoop/wrap_generated.go delete mode 100644 vendor/github.com/felixge/httpsnoop/wrap_generated_gteq_1.8.go delete mode 100644 vendor/github.com/felixge/httpsnoop/wrap_generated_lt_1.8.go rename vendor/github.com/go-openapi/{swag => jsonpointer}/jsonname/doc.go (100%) rename vendor/github.com/go-openapi/{swag => jsonpointer}/jsonname/go_name_provider.go (88%) rename vendor/github.com/go-openapi/{swag => jsonpointer}/jsonname/ifaces.go (77%) rename vendor/github.com/go-openapi/{swag => jsonpointer}/jsonname/name_provider.go (83%) create mode 100644 vendor/github.com/go-openapi/swag/jsonutils/adapters/stdlib/json/options.go rename vendor/github.com/go-openapi/swag/{jsonname => pools}/LICENSE (100%) create mode 100644 vendor/github.com/go-openapi/swag/pools/README.md create mode 100644 vendor/github.com/go-openapi/swag/pools/debug.go create mode 100644 vendor/github.com/go-openapi/swag/pools/debug_off.go create mode 100644 vendor/github.com/go-openapi/swag/pools/debug_on.go create mode 100644 vendor/github.com/go-openapi/swag/pools/doc.go create mode 100644 vendor/github.com/go-openapi/swag/pools/pools.go create mode 100644 vendor/go.opentelemetry.io/otel/sdk/internal/attrnorm/dedup.go create mode 100644 vendor/go.opentelemetry.io/otel/sdk/internal/attrnorm/truncate.go create mode 100644 vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/next_tracker.go create mode 100644 vendor/go.opentelemetry.io/otel/sdk/metric/internal/attrnorm/dedup.go create mode 100644 vendor/go.opentelemetry.io/otel/sdk/metric/internal/gen.go create mode 100644 vendor/go.opentelemetry.io/otel/sdk/metric/internal/x/features.go delete mode 100644 vendor/go.opentelemetry.io/otel/semconv/v1.40.0/MIGRATION.md delete mode 100644 vendor/go.opentelemetry.io/otel/semconv/v1.40.0/README.md delete mode 100644 vendor/go.opentelemetry.io/otel/semconv/v1.40.0/attribute_group.go delete mode 100644 vendor/go.opentelemetry.io/otel/semconv/v1.40.0/doc.go delete mode 100644 vendor/go.opentelemetry.io/otel/semconv/v1.40.0/error_type.go delete mode 100644 vendor/go.opentelemetry.io/otel/semconv/v1.40.0/exception.go delete mode 100644 vendor/go.opentelemetry.io/otel/semconv/v1.40.0/schema.go create mode 100644 vendor/go.opentelemetry.io/otel/semconv/v1.43.0/httpconv/metric.go create mode 100644 vendor/go.opentelemetry.io/otel/semconv/v1.43.0/otelconv/metric.go rename vendor/go.opentelemetry.io/otel/semconv/{v1.40.0 => v1.43.0}/rpcconv/metric.go (93%) diff --git a/go.mod b/go.mod index fd006aff48..6b40d15d52 100644 --- a/go.mod +++ b/go.mod @@ -21,7 +21,7 @@ require ( github.com/grpc-ecosystem/go-grpc-middleware v1.4.0 github.com/grpc-ecosystem/go-grpc-middleware/v2 v2.3.3 github.com/grpc-ecosystem/go-grpc-prometheus v1.2.0 - github.com/grpc-ecosystem/grpc-gateway/v2 v2.29.0 + github.com/grpc-ecosystem/grpc-gateway/v2 v2.30.0 github.com/hako/durafmt v0.0.0-20210608085754-5c1018a4e16b github.com/jackc/pgconn v1.14.3 github.com/jackc/pgx/v5 v5.10.0 @@ -38,14 +38,14 @@ require ( github.com/tidwall/gjson v1.19.0 go.opentelemetry.io/otel v1.45.0 go.opentelemetry.io/otel/metric v1.45.0 - go.opentelemetry.io/otel/sdk/metric v1.44.0 + go.opentelemetry.io/otel/sdk/metric v1.45.0 go.uber.org/automaxprocs v1.6.0 go.uber.org/zap v1.28.0 gocloud.dev v0.46.0 golang.org/x/net v0.58.0 golang.org/x/oauth2 v0.36.0 google.golang.org/api v0.293.0 - google.golang.org/genproto/googleapis/api v0.0.0-20260727163830-6c54dddc4772 + google.golang.org/genproto/googleapis/api v0.0.0-20260803160001-6ac0973c030d google.golang.org/grpc v1.83.1 google.golang.org/protobuf v1.36.12 gopkg.in/yaml.v2 v2.4.0 @@ -120,7 +120,7 @@ require ( github.com/envoyproxy/protoc-gen-validate v1.3.3 // indirect github.com/evanphx/json-patch v5.9.0+incompatible // indirect github.com/evanphx/json-patch/v5 v5.9.11 // indirect - github.com/felixge/httpsnoop v1.0.4 // indirect + github.com/felixge/httpsnoop v1.1.0 // indirect github.com/fsnotify/fsnotify v1.10.1 // indirect github.com/fxamacker/cbor/v2 v2.9.1 // indirect github.com/gaganhr94/docker-credential-acr v1.0.2 // indirect @@ -131,20 +131,20 @@ require ( github.com/go-logr/logr v1.4.4 // indirect github.com/go-logr/stdr v1.2.2 // indirect github.com/go-logr/zapr v1.3.0 // indirect - github.com/go-openapi/jsonpointer v0.23.1 // indirect - github.com/go-openapi/jsonreference v0.21.5 // indirect - github.com/go-openapi/swag v0.26.0 // indirect - github.com/go-openapi/swag/cmdutils v0.26.0 // indirect - github.com/go-openapi/swag/conv v0.26.0 // indirect - github.com/go-openapi/swag/fileutils v0.26.0 // indirect - github.com/go-openapi/swag/jsonname v0.26.0 // indirect - github.com/go-openapi/swag/jsonutils v0.26.0 // indirect - github.com/go-openapi/swag/loading v0.26.0 // indirect - github.com/go-openapi/swag/mangling v0.26.0 // indirect - github.com/go-openapi/swag/netutils v0.26.0 // indirect - github.com/go-openapi/swag/stringutils v0.26.0 // indirect - github.com/go-openapi/swag/typeutils v0.26.0 // indirect - github.com/go-openapi/swag/yamlutils v0.26.0 // indirect + github.com/go-openapi/jsonpointer v1.0.0 // indirect + github.com/go-openapi/jsonreference v1.0.0 // indirect + github.com/go-openapi/swag v0.28.0 // indirect + github.com/go-openapi/swag/cmdutils v0.28.0 // indirect + github.com/go-openapi/swag/conv v0.28.0 // indirect + github.com/go-openapi/swag/fileutils v0.28.0 // indirect + github.com/go-openapi/swag/jsonutils v0.28.0 // indirect + github.com/go-openapi/swag/loading v0.28.0 // indirect + github.com/go-openapi/swag/mangling v0.28.0 // indirect + github.com/go-openapi/swag/netutils v0.28.0 // indirect + github.com/go-openapi/swag/pools v0.28.0 // indirect + github.com/go-openapi/swag/stringutils v0.28.0 // indirect + github.com/go-openapi/swag/typeutils v0.28.0 // indirect + github.com/go-openapi/swag/yamlutils v0.28.0 // indirect github.com/go-sql-driver/mysql v1.9.3 // indirect github.com/go-viper/mapstructure/v2 v2.5.0 // indirect github.com/golang-jwt/jwt/v5 v5.3.1 // indirect @@ -221,8 +221,8 @@ require ( github.com/youmark/pkcs8 v0.0.0-20240726163527-a2c0da244d78 // indirect go.opentelemetry.io/auto/sdk v1.2.1 // indirect go.opentelemetry.io/contrib/detectors/gcp v1.44.0 // indirect - go.opentelemetry.io/contrib/instrumentation/google.golang.org/grpc/otelgrpc v0.68.0 // indirect - go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp v0.69.0 // indirect + go.opentelemetry.io/contrib/instrumentation/google.golang.org/grpc/otelgrpc v0.70.0 // indirect + go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp v0.70.0 // indirect go.opentelemetry.io/contrib/instrumentation/runtime v0.69.0 // indirect go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc v1.44.0 // indirect go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp v1.44.0 // indirect @@ -230,14 +230,14 @@ require ( go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc v1.44.0 // indirect go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp v1.44.0 // indirect go.opentelemetry.io/otel/exporters/prometheus v0.66.0 // indirect - go.opentelemetry.io/otel/exporters/stdout/stdouttrace v1.44.0 // indirect - go.opentelemetry.io/otel/sdk v1.44.0 // indirect + go.opentelemetry.io/otel/exporters/stdout/stdouttrace v1.45.0 // indirect + go.opentelemetry.io/otel/sdk v1.45.0 // indirect go.opentelemetry.io/otel/trace v1.45.0 // indirect go.opentelemetry.io/proto/otlp v1.10.0 // indirect go.starlark.net v0.0.0-20230525235612-a134d8f9ddca // indirect go.uber.org/multierr v1.11.0 // indirect go.yaml.in/yaml/v2 v2.4.4 // indirect - go.yaml.in/yaml/v3 v3.0.4 // indirect + go.yaml.in/yaml/v3 v3.0.5 // indirect golang.org/x/crypto v0.55.0 // indirect golang.org/x/exp v0.0.0-20260312153236-7ab1446f8b90 // indirect golang.org/x/sync v0.22.0 // indirect diff --git a/go.sum b/go.sum index 582b9ed414..0e3dd73c2f 100644 --- a/go.sum +++ b/go.sum @@ -227,8 +227,8 @@ github.com/evanphx/json-patch/v5 v5.9.11 h1:/8HVnzMq13/3x9TPvjG08wUGqBTmZBsCWzjT github.com/evanphx/json-patch/v5 v5.9.11/go.mod h1:3j+LviiESTElxA4p3EMKAB9HXj3/XEtnUf6OZxqIQTM= github.com/fatih/color v1.19.0 h1:Zp3PiM21/9Ld6FzSKyL5c/BULoe/ONr9KlbYVOfG8+w= github.com/fatih/color v1.19.0/go.mod h1:zNk67I0ZUT1bEGsSGyCZYZNrHuTkJJB+r6Q9VuMi0LE= -github.com/felixge/httpsnoop v1.0.4 h1:NFTV2Zj1bL4mc9sqWACXbQFVBBg2W3GPvqp8/ESS2Wg= -github.com/felixge/httpsnoop v1.0.4/go.mod h1:m8KPJKqk1gH5J9DgRY2ASl2lWCfGKXixSwevea8zH2U= +github.com/felixge/httpsnoop v1.1.0 h1:3YtUj32ZZkqZtt3sZZsClsymw/QDuVfpNhoA31zeORc= +github.com/felixge/httpsnoop v1.1.0/go.mod h1:Zqxgdd+1Rkcz8euOqdr7lqgCRJztwr5hp9vDSi5UZCE= github.com/frankban/quicktest v1.14.6 h1:7Xjx+VpznH+oBnejlPUj8oUpdxnVs4f8XU8WnHkI4W8= github.com/frankban/quicktest v1.14.6/go.mod h1:4ptaffx2x8+WTWXmUCuVU6aPUX1/Mz7zb5vbUoiM6w0= github.com/fsnotify/fsnotify v1.10.1 h1:b0/UzAf9yR5rhf3RPm9gf3ehBPpf0oZKIjtpKrx59Ho= @@ -261,40 +261,40 @@ github.com/go-logr/stdr v1.2.2 h1:hSWxHoqTgW2S2qGc0LTAI563KZ5YKYRhT3MFKZMbjag= github.com/go-logr/stdr v1.2.2/go.mod h1:mMo/vtBO5dYbehREoey6XUKy/eSumjCCveDpRre4VKE= github.com/go-logr/zapr v1.3.0 h1:XGdV8XW8zdwFiwOA2Dryh1gj2KRQyOOoNmBy4EplIcQ= github.com/go-logr/zapr v1.3.0/go.mod h1:YKepepNBd1u/oyhd/yQmtjVXmm9uML4IXUgMOwR8/Gg= -github.com/go-openapi/jsonpointer v0.23.1 h1:1HBACs7XIwR2RcmItfdSFlALhGbe6S92p0ry4d1GWg4= -github.com/go-openapi/jsonpointer v0.23.1/go.mod h1:iWRmZTrGn7XwYhtPt/fvdSFj1OfNBngqRT2UG3BxSqY= -github.com/go-openapi/jsonreference v0.21.5 h1:6uCGVXU/aNF13AQNggxfysJ+5ZcU4nEAe+pJyVWRdiE= -github.com/go-openapi/jsonreference v0.21.5/go.mod h1:u25Bw85sX4E2jzFodh1FOKMTZLcfifd1Q+iKKOUxExw= -github.com/go-openapi/swag v0.26.0 h1:GVDXCmfvhfu1BxiHo8/FA+BbKmhecHnG3varjON5/RI= -github.com/go-openapi/swag v0.26.0/go.mod h1:82g3193sZJRbocs7bNCqGfIgq8pkuwVwCfhKIRlEQF0= -github.com/go-openapi/swag/cmdutils v0.26.0 h1:iowihOcvq7y4egO8cOq0dmfohz6wfeQ63U1EnuhO2TU= -github.com/go-openapi/swag/cmdutils v0.26.0/go.mod h1:Sm1MVFMkF6guJJ+pQqHnQA3N0j9qALV3NxzDSv6bETM= -github.com/go-openapi/swag/conv v0.26.0 h1:5yGGsPYI1ZCva93U0AoKi/iZrNhaJEjr324YVsiD89I= -github.com/go-openapi/swag/conv v0.26.0/go.mod h1:tpAmIL7X58VPnHHiSO4uE3jBeRamGsFsfdDeDtb5ECE= -github.com/go-openapi/swag/fileutils v0.26.0 h1:WJoPRvsA7QRiiWluowkLJa9jaYR7FCuxmDvnCgaRRxU= -github.com/go-openapi/swag/fileutils v0.26.0/go.mod h1:0WDJ7lp67eNjPMO50wAWYlKvhOb6CQ37rzR7wrgI8Tc= -github.com/go-openapi/swag/jsonname v0.26.0 h1:gV1NFX9M8avo0YSpmWogqfQISigCmpaiNci8cGECU5w= -github.com/go-openapi/swag/jsonname v0.26.0/go.mod h1:urBBR8bZNoDYGr653ynhIx+gTeIz0ARZxHkAPktJK2M= -github.com/go-openapi/swag/jsonutils v0.26.0 h1:FawFML2iAXsPqmERscuMPIHmFsoP1tOqWkxBaKNMsnA= -github.com/go-openapi/swag/jsonutils v0.26.0/go.mod h1:2VmA0CJlyFqgawOaPI9psnjFDqzyivIqLYN34t9p91E= -github.com/go-openapi/swag/jsonutils/fixtures_test v0.26.0 h1:apqeINu/ICHouqiRZbyFvuDge5jCmmLTqGQ9V95EaOM= -github.com/go-openapi/swag/jsonutils/fixtures_test v0.26.0/go.mod h1:AyM6QT8uz5IdKxk5akv0y6u4QvcL9GWERt0Jx/F/R8Y= -github.com/go-openapi/swag/loading v0.26.0 h1:Apg6zaKhCJurpJer0DCxq99qwmhFddBhaMX7kilDcko= -github.com/go-openapi/swag/loading v0.26.0/go.mod h1:dBxQ/6V2uBaAQdevN18VELE6xSpJWZxLX4txe12JwDg= -github.com/go-openapi/swag/mangling v0.26.0 h1:Du2YC4YLA/Y5m/YKQd7AnY5qq0wRKSFZTTt8ktFaXcQ= -github.com/go-openapi/swag/mangling v0.26.0/go.mod h1:jifS7W9vbg+pw63bT+GI53otluMQL3CeemuyCHKwVx0= -github.com/go-openapi/swag/netutils v0.26.0 h1:CmZp+ZT7HrmFwrC3GdGsXBq2+42T1bjKBapcqVpIs3c= -github.com/go-openapi/swag/netutils v0.26.0/go.mod h1:5iK+Ok3ZohWWex1C50BFTPexi03UaPwjW4Oj8kgrpwo= -github.com/go-openapi/swag/stringutils v0.26.0 h1:qZQngLxs5s7SLijc3N2ZO+fUq2o8LjuWAASSrJuh+xg= -github.com/go-openapi/swag/stringutils v0.26.0/go.mod h1:sWn5uY+QIIspwPhvgnqJsH8xqFT2ZbYcvbcFanRyhFE= -github.com/go-openapi/swag/typeutils v0.26.0 h1:2kdEwdiNWy+JJdOvu5MA2IIg2SylWAFuuyQIKYybfq4= -github.com/go-openapi/swag/typeutils v0.26.0/go.mod h1:oovDuIUvTrEHVMqWilQzKzV4YlSKgyZmFh7AlfABNVE= -github.com/go-openapi/swag/yamlutils v0.26.0 h1:H7O8l/8NJJQ/oiReEN+oMpnGMyt8G0hl460nRZxhLMQ= -github.com/go-openapi/swag/yamlutils v0.26.0/go.mod h1:1evKEGAtP37Pkwcc7EWMF0hedX0/x3Rkvei2wtG/TbU= -github.com/go-openapi/testify/enable/yaml/v2 v2.5.0 h1:3hZD1fwydvCx/cc1R2uYNQirHqf2s6lqpKV3FcNTURA= -github.com/go-openapi/testify/enable/yaml/v2 v2.5.0/go.mod h1:TvDZKBH7ZbMaF3EqH2AwTvNQCmzyZq8K1agRjf1B+Nk= -github.com/go-openapi/testify/v2 v2.5.0 h1:UOCr63aAsMIDydZbZGqo5Ev01D4eydItRbekDuZMJLw= -github.com/go-openapi/testify/v2 v2.5.0/go.mod h1:SgsVHtfooshd0tublTtJ50FPKhujf47YRqauXXOUxfw= +github.com/go-openapi/jsonpointer v1.0.0 h1:kR9tHqY0CtZaOPVFm622dPVNhrvYpwr4uCxgL3h1H8s= +github.com/go-openapi/jsonpointer v1.0.0/go.mod h1:Z3rw7dWu1p9IgitXCFamSlA5lmDiklEB6vkaxcNZW5Y= +github.com/go-openapi/jsonreference v1.0.0 h1:jlmTr6torcd1YgDQvSfNmRtKzYDO4FGBkrAdlAVWnpY= +github.com/go-openapi/jsonreference v1.0.0/go.mod h1:jtwdyGbJk0Xhe5Y+rwtglQP6Sb1WZST4rT32LWB+sv0= +github.com/go-openapi/swag v0.28.0 h1:xkgbOSKj6DZziNpyqRRAOt3GJGtgjgsd2RoyT30VWuw= +github.com/go-openapi/swag v0.28.0/go.mod h1:4qYnT3Cqr1p1VknOdPo70evN4rgQnAg6jwApHyxSGIg= +github.com/go-openapi/swag/cmdutils v0.28.0 h1:7TOeNtkYru1SG8Y34tDh9WBbLsMqGnptuxWiHREPZ4Q= +github.com/go-openapi/swag/cmdutils v0.28.0/go.mod h1:Sm1MVFMkF6guJJ+pQqHnQA3N0j9qALV3NxzDSv6bETM= +github.com/go-openapi/swag/conv v0.28.0 h1:GtqqbyFe7vR5Y7ehxG9W6/OvrSFdf1OLeTGp40TqxH8= +github.com/go-openapi/swag/conv v0.28.0/go.mod h1:mbUE+mzctnhxi864m0Q07SpN8OowD9JhxmxuYvZZD/k= +github.com/go-openapi/swag/fileutils v0.28.0 h1:Z04XWQD7R8Eq+7GnOrjovBxPPmZzsS4gt2H2GPGIViU= +github.com/go-openapi/swag/fileutils v0.28.0/go.mod h1:VvJFZLTZS0AI854gEQz5tk7dBESdLjiNUMSZ/th2ry8= +github.com/go-openapi/swag/jsonutils v0.28.0 h1:YIch6FwO7RXzeAnbO8Tu7dWBZeUEH+4nA0HXltVTnv4= +github.com/go-openapi/swag/jsonutils v0.28.0/go.mod h1:CYM3WlTUcagR2ZoHdz54di/cbBqt82tuxuXgAjxw+mg= +github.com/go-openapi/swag/jsonutils/fixtures_test v0.28.0 h1:qV+VVUAx5Oro8WjVWpZeql7YReTKhT4smR4zhcOQZr0= +github.com/go-openapi/swag/jsonutils/fixtures_test v0.28.0/go.mod h1:mofwUWx70wvskwESqRJ//k/9kURmCgyJl5m5Ppoh5kY= +github.com/go-openapi/swag/loading v0.28.0 h1:td8QZdZC9MIYGGSnSPKShKiK22I2tU5UQvuUhIBPRLU= +github.com/go-openapi/swag/loading v0.28.0/go.mod h1:rXB0QiQX5mMveXEA7ouM4KiiM9jVJe4K6BVbwhD1M4k= +github.com/go-openapi/swag/mangling v0.28.0 h1:pH8eyeNO9SLYsTMWJrurnNfKmDa28XrlA+HePVD53VM= +github.com/go-openapi/swag/mangling v0.28.0/go.mod h1:jtBE2+V+3pILxOR7Vgce+Cwp6A2PgZbvVqfNntbVs0w= +github.com/go-openapi/swag/netutils v0.28.0 h1:YXN6TALEi2pzts8/8GNm6T61HTAZsieukGZidap989k= +github.com/go-openapi/swag/netutils v0.28.0/go.mod h1:J+WYyFMLtvtCGqa6jLv+YNUmIKI3ZRQRrvfNDMoQoEQ= +github.com/go-openapi/swag/pools v0.28.0 h1:HPMZWSAfce3rdVTFcjFiCIBtDg9h4x2QlRrHipwhxeU= +github.com/go-openapi/swag/pools v0.28.0/go.mod h1:kVQefhSK5RWuRe7BXsL8htgBPAMpN7HDGpGEknqugeE= +github.com/go-openapi/swag/stringutils v0.28.0 h1:ixsc9iYgDPubHL/8nSkbnryEHpD2VRlBMLKpQyPXcDU= +github.com/go-openapi/swag/stringutils v0.28.0/go.mod h1:lzRN95CxXmA03XcDWHLOb6nOMcxCqR5rGY0lOgsfRoM= +github.com/go-openapi/swag/typeutils v0.28.0 h1:nRBKSBXjDgf01VDPB3fWeD9nQuhCOVeIYAkUx2tbkyY= +github.com/go-openapi/swag/typeutils v0.28.0/go.mod h1:Srm0xFNRZ1Y+vCxJclo5qzx8aj+1pAKda/YfFPrG0dQ= +github.com/go-openapi/swag/yamlutils v0.28.0 h1:TV3JXH6DS46KUroDtMLAYHGkdWf5VDq3wVWFirmzROY= +github.com/go-openapi/swag/yamlutils v0.28.0/go.mod h1:x0q/yndZHEgk9Rx3DyDqzFUmHy55KTvIZldvF2dTJXs= +github.com/go-openapi/testify/enable/yaml/v2 v2.6.0 h1:gGHwAJ0R/5jU8BEGDbfRNR3hL68dAVi84WuOApp29B0= +github.com/go-openapi/testify/enable/yaml/v2 v2.6.0/go.mod h1:tY+St1SGq4NFl0QIqdTY4aEdbChAHxhyB77XQi9iJCo= +github.com/go-openapi/testify/v2 v2.6.0 h1:5PKH2HE7YJ/LuRPQGvSxBRlFXNQhSetBLlGAgUEu3ug= +github.com/go-openapi/testify/v2 v2.6.0/go.mod h1:SgsVHtfooshd0tublTtJ50FPKhujf47YRqauXXOUxfw= github.com/go-sql-driver/mysql v1.9.3 h1:U/N249h2WzJ3Ukj8SowVFjdtZKfu9vlLZxjPXV1aweo= github.com/go-sql-driver/mysql v1.9.3/go.mod h1:qn46aNg1333BRMNU69Lq93t8du/dwxI64Gl8i5p1WMU= github.com/go-stack/stack v1.8.0/go.mod h1:v0f6uXyyMGvRgIKkXu+yp6POWl0qKG85gN/melR3HDY= @@ -421,8 +421,8 @@ github.com/grpc-ecosystem/go-grpc-middleware/v2 v2.3.3 h1:B+8ClL/kCQkRiU82d9xajR github.com/grpc-ecosystem/go-grpc-middleware/v2 v2.3.3/go.mod h1:NbCUVmiS4foBGBHOYlCT25+YmGpJ32dZPi75pGEUpj4= github.com/grpc-ecosystem/go-grpc-prometheus v1.2.0 h1:Ovs26xHkKqVztRpIrF/92BcuyuQ/YW4NSIpoGtfXNho= github.com/grpc-ecosystem/go-grpc-prometheus v1.2.0/go.mod h1:8NvIoxWQoOIhqOTXgfV/d3M/q6VIi02HzZEHgUlZvzk= -github.com/grpc-ecosystem/grpc-gateway/v2 v2.29.0 h1:5VipnvEpbqr2gA2VbM+nYVbkIF28c5ZQfqCBQ5g2xfk= -github.com/grpc-ecosystem/grpc-gateway/v2 v2.29.0/go.mod h1:Hyl3n6Twe1hvtd9XUXDec4pTvgMSEixRuQKPTMH2bNs= +github.com/grpc-ecosystem/grpc-gateway/v2 v2.30.0 h1:/Tnpcb2E0Pz/tN9s3bfEY2Q8ePCEX9iuS+cneUwncnw= +github.com/grpc-ecosystem/grpc-gateway/v2 v2.30.0/go.mod h1:zOBXOsUaBSjKgmH4OGzV1esUpR3oUSCPYVd2cUBjKYY= github.com/hako/durafmt v0.0.0-20210608085754-5c1018a4e16b h1:wDUNC2eKiL35DbLvsDhiblTUXHxcOPwQSCzi7xpQUN4= github.com/hako/durafmt v0.0.0-20210608085754-5c1018a4e16b/go.mod h1:VzxiSdG6j1pi7rwGm/xYI5RbtpBgM8sARDXlvEvxlu0= github.com/hashicorp/errwrap v1.1.0 h1:OxrOeh75EUXMY8TBjag2fzXGZ40LB6IKw45YeGUDY2I= @@ -696,10 +696,10 @@ go.opentelemetry.io/auto/sdk v1.2.1 h1:jXsnJ4Lmnqd11kwkBV2LgLoFMZKizbCi5fNZ/ipaZ go.opentelemetry.io/auto/sdk v1.2.1/go.mod h1:KRTj+aOaElaLi+wW1kO/DZRXwkF4C5xPbEe3ZiIhN7Y= go.opentelemetry.io/contrib/detectors/gcp v1.44.0 h1:NmLfL734pJhM0JKaYd2Y28+nY9dPRWYAAbxhRCrKXPw= go.opentelemetry.io/contrib/detectors/gcp v1.44.0/go.mod h1:tNAsgd8avTGke1+MndXlU5Cru4PQ9Ai/cCNWQv/ZJ/s= -go.opentelemetry.io/contrib/instrumentation/google.golang.org/grpc/otelgrpc v0.68.0 h1:0Qx7VGBacMm9ZENQ7TnNObTYI4ShC+lHI16seduaxZo= -go.opentelemetry.io/contrib/instrumentation/google.golang.org/grpc/otelgrpc v0.68.0/go.mod h1:Sje3i3MjSPKTSPvVWCaL8ugBzJwik3u4smCjUeuupqg= -go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp v0.69.0 h1:8tvICD4vSTOOsNrsI4Ljf6C+6UKvpTEH5XY3JMoyPoo= -go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp v0.69.0/go.mod h1:z9+yiacE0IHRqM4qFfkbt/JYlmYXgss8GY/jXoNuPJI= +go.opentelemetry.io/contrib/instrumentation/google.golang.org/grpc/otelgrpc v0.70.0 h1:oECp5f+hN7nkwjU/8BxQ/q23bGPb8FIrD839owX222E= +go.opentelemetry.io/contrib/instrumentation/google.golang.org/grpc/otelgrpc v0.70.0/go.mod h1:DqEFwLumhzMBDQv9PcWbyoDxHI/4lAk6CM4nJBH39sc= +go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp v0.70.0 h1:LMuyCAyfalSjDyjdC65nK6N0zoTT63+E/u95X0JovZI= +go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp v0.70.0/go.mod h1:085m8qbm4hgc8rZWGDEa4vmyyo2c3nPxUslYUKUIU04= go.opentelemetry.io/contrib/instrumentation/runtime v0.69.0 h1:MtkMsuRo3zEXTTMALfyrszwCDZTkB6wolyPjbwFAdq0= go.opentelemetry.io/contrib/instrumentation/runtime v0.69.0/go.mod h1:FYTxnpsm+UPD0erZNq20GvnM8T2YQHiHtT2vokdpoac= go.opentelemetry.io/otel v1.45.0 h1:pdrWmLHofpubmArBv1LgFSv1Z0Ie/ppdZzu+kUN5EeU= @@ -718,16 +718,16 @@ go.opentelemetry.io/otel/exporters/prometheus v0.66.0 h1:vkrK8PAznv2NKt2r+kdu252 go.opentelemetry.io/otel/exporters/prometheus v0.66.0/go.mod h1:V/UB6D3vMF/UBOL5igAsAYnk1nG/bzYYTzvsB16cy7o= go.opentelemetry.io/otel/exporters/stdout/stdoutmetric v1.40.0 h1:ZrPRak/kS4xI3AVXy8F7pipuDXmDsrO8Lg+yQjBLjw0= go.opentelemetry.io/otel/exporters/stdout/stdoutmetric v1.40.0/go.mod h1:3y6kQCWztq6hyW8Z9YxQDDm0Je9AJoFar2G0yDcmhRk= -go.opentelemetry.io/otel/exporters/stdout/stdouttrace v1.44.0 h1:bl2S7Ubua0Nms+D/gAmznQTd4dxxMA93aKbcpKqiTCs= -go.opentelemetry.io/otel/exporters/stdout/stdouttrace v1.44.0/go.mod h1:L0hRV50XdVIODHUfWEqGRCXQvj2rV82STVo12FMFBU0= +go.opentelemetry.io/otel/exporters/stdout/stdouttrace v1.45.0 h1:lsA/S1bxgdbyFGkTj+3meEdJ6ADVU7QoFstV6MXgE68= +go.opentelemetry.io/otel/exporters/stdout/stdouttrace v1.45.0/go.mod h1:L7u+MirGoB1bjeLH66+xDykF4RC8C3RN7lIFpBiewUo= go.opentelemetry.io/otel/metric v1.45.0 h1:7Eg1uH7CJ5cXv9is6tnBe1FI6rj1nwUdbFypRm3br/M= go.opentelemetry.io/otel/metric v1.45.0/go.mod h1:HAPbm1nd3p1PmFH7v2dR+6BjXxw+Lq4a2+pndMAm08s= -go.opentelemetry.io/otel/metric/x v0.66.0 h1:YkCrx1zLOChi9ZcZ6euupOcsgzbVlec7D/xoEU1+cTA= -go.opentelemetry.io/otel/metric/x v0.66.0/go.mod h1:d1+BDj9t96do0/1LoU1ayfCv79ZgNE41qbhBvnMOBZk= -go.opentelemetry.io/otel/sdk v1.44.0 h1:nHYwb9lK+fJPU/dnT6s7W7Z8itMWyqrnVfbheVYrZ58= -go.opentelemetry.io/otel/sdk v1.44.0/go.mod h1:Osuydd3Se74nqjAKxid74N5eC+jfEqfTegHRnq58oK0= -go.opentelemetry.io/otel/sdk/metric v1.44.0 h1:3LlKgI+VjbVsjNRFZJZAJ30WjXC5VkNRks6si09iEfI= -go.opentelemetry.io/otel/sdk/metric v1.44.0/go.mod h1:5B5pMARnXxKhltooO4xUuCBorl65a4EpnTalObqOigA= +go.opentelemetry.io/otel/metric/x v0.67.0 h1:PcicCNZFkZ4bXfSooXdo3WN7RBOVOtjVdo1wD358Uns= +go.opentelemetry.io/otel/metric/x v0.67.0/go.mod h1:FBjCWZe6wgcqxcMtjdGiClDKXb2YxxXii0CXftE4QtI= +go.opentelemetry.io/otel/sdk v1.45.0 h1:4VVSMgQ83dUgW2aoX5f6JgLvHwIvzcuLnF9lUdCSpCw= +go.opentelemetry.io/otel/sdk v1.45.0/go.mod h1:Sr40LgXV7DsKMMJMKOhUWOgMWTfAaqvm2kF0g7ilwuA= +go.opentelemetry.io/otel/sdk/metric v1.45.0 h1:oVFszMfyj1Am6s24Vtc7wBb8BKLcwepJjNEYILuiE3o= +go.opentelemetry.io/otel/sdk/metric v1.45.0/go.mod h1:vUWUxDZvu1WVRj8JA8S0AdhsPrZoDpA2DdZauIh4mDA= go.opentelemetry.io/otel/trace v1.45.0 h1:l/mP6Uv7oNO7/TblbhpbgMidxhq1uO/rPsikOyVhxag= go.opentelemetry.io/otel/trace v1.45.0/go.mod h1:qoJJA2xNMnxRrdISU/kLtfUH2wNeQbiv+jhs/CxI8bc= go.opentelemetry.io/proto/otlp v1.10.0 h1:IQRWgT5srOCYfiWnpqUYz9CVmbO8bFmKcwYxpuCSL2g= @@ -751,8 +751,9 @@ go.uber.org/zap v1.28.0 h1:IZzaP1Fv73/T/pBMLk4VutPl36uNC+OSUh3JLG3FIjo= go.uber.org/zap v1.28.0/go.mod h1:rDLpOi171uODNm/mxFcuYWxDsqWSAVkFdX4XojSKg/Q= go.yaml.in/yaml/v2 v2.4.4 h1:tuyd0P+2Ont/d6e2rl3be67goVK4R6deVxCUX5vyPaQ= go.yaml.in/yaml/v2 v2.4.4/go.mod h1:gMZqIpDtDqOfM0uNfy0SkpRhvUryYH0Z6wdMYcacYXQ= -go.yaml.in/yaml/v3 v3.0.4 h1:tfq32ie2Jv2UxXFdLJdh3jXuOzWiL1fo0bu/FbuKpbc= go.yaml.in/yaml/v3 v3.0.4/go.mod h1:DhzuOOF2ATzADvBadXxruRBLzYTpT36CKvDb3+aBEFg= +go.yaml.in/yaml/v3 v3.0.5 h1:N6y/pJk8buWs9NY5ERU2HSMfm+IuD/OtfdAnq6kESPw= +go.yaml.in/yaml/v3 v3.0.5/go.mod h1:HVTZu1O7/Vkt2N+BFy8Zza+lnLsABggaTM2ZpNIGuKg= gocloud.dev v0.46.0 h1:niIuZwSjMtBx8K+ITB2s5kZullB13PGOS2ZoQPZxQ4Q= gocloud.dev v0.46.0/go.mod h1:ACQe+2qO+hEO+pdcvvsM+RB63r8TyGD1W3ESCLFyzvM= golang.org/x/crypto v0.0.0-20190308221718-c2843e01d9a2/go.mod h1:djNgcEr1/C05ACkg1iLfiJU5Ep61QUkGW8qpdssI0+w= @@ -1092,8 +1093,8 @@ google.golang.org/genproto v0.0.0-20210513213006-bf773b8c8384/go.mod h1:P3QM42oQ google.golang.org/genproto v0.0.0-20210517163617-5e0236093d7a/go.mod h1:P3QM42oQyzQSnHPnZ/vqoCdDmzH28fzWByN9asMeM8A= google.golang.org/genproto v0.0.0-20260406210006-6f92a3bedf2d h1:N1Ec54vZnIPd7MnxRiYLW+oY4fDR4BOS/LrssdD9+ek= google.golang.org/genproto v0.0.0-20260406210006-6f92a3bedf2d/go.mod h1:c2hJ1grtnH0xUiEKGDGkjGNTJ1Hy2LrblyKOHF0sqRM= -google.golang.org/genproto/googleapis/api v0.0.0-20260727163830-6c54dddc4772 h1:4namukbyF7JY83aWHQwi9J5ugNTnDReLJ9ZcpqOpRB4= -google.golang.org/genproto/googleapis/api v0.0.0-20260727163830-6c54dddc4772/go.mod h1:1brfde68Npq6+WA75c1EHWPijZEG1kMus61ygPZfn4A= +google.golang.org/genproto/googleapis/api v0.0.0-20260803160001-6ac0973c030d h1:FarXi840EJWSHYTN3ERkADbPWjl307+FGrA22KAVjjc= +google.golang.org/genproto/googleapis/api v0.0.0-20260803160001-6ac0973c030d/go.mod h1:K/+WGbmBY7aNW1HDw1fJnKYo10i0DkAX6pows00dLig= google.golang.org/genproto/googleapis/rpc v0.0.0-20260807164820-c8921c73eeea h1:kVhQEPTpKQahD5+JSBTfBB19wcgQTTjAIn45MBqnyHk= google.golang.org/genproto/googleapis/rpc v0.0.0-20260807164820-c8921c73eeea/go.mod h1:4Hqkh8ycfw05ld/3BWL7rJOSfebL2Q+DVDeRgYgxUU8= google.golang.org/grpc v1.19.0/go.mod h1:mqu4LbDTu4XGKhr4mRzUsmM4RtVoemTSY81AxZiDr8c= diff --git a/vendor/github.com/felixge/httpsnoop/capture_metrics.go b/vendor/github.com/felixge/httpsnoop/capture_metrics.go index bec7b71b39..97f0a51de3 100644 --- a/vendor/github.com/felixge/httpsnoop/capture_metrics.go +++ b/vendor/github.com/felixge/httpsnoop/capture_metrics.go @@ -69,6 +69,16 @@ func (m *Metrics) CaptureMetrics(w http.ResponseWriter, fn func(http.ResponseWri } }, + WriteString: func(next WriteStringFunc) WriteStringFunc { + return func(s string) (int, error) { + n, err := next(s) + + m.Written += int64(n) + headerWritten = true + return n, err + } + }, + ReadFrom: func(next ReadFromFunc) ReadFromFunc { return func(src io.Reader) (int64, error) { n, err := next(src) @@ -81,6 +91,31 @@ func (m *Metrics) CaptureMetrics(w http.ResponseWriter, fn func(http.ResponseWri } ) + // defer to ensure duration is updated even if the handler panics + defer func() { + m.Duration += time.Since(start) + }() fn(Wrap(w, hooks)) - m.Duration += time.Since(start) +} + +// deadliner defines two methods introduced in go 1.20. The standard library +// seems not to provide an interface we can import, hence its definition here. +type deadliner interface { + SetReadDeadline(deadline time.Time) error + SetWriteDeadline(deadline time.Time) error +} + +// fullDuplexEnabler defines a method introduced in go 1.21. The standard +// library seems not to provide an interface we can import, hence its definition +// here. +type fullDuplexEnabler interface { + EnableFullDuplex() error +} + +// httpFlushError defines a method introduced in go 1.20. The standard +// library seems not to provide an interface we can import, hence its definition +// here. +// See https://github.com/golang/go/blob/go1.20/src/net/http/responsecontroller.go#L50 +type httpFlushError interface { + FlushError() error } diff --git a/vendor/github.com/felixge/httpsnoop/wrap_generated.go b/vendor/github.com/felixge/httpsnoop/wrap_generated.go new file mode 100644 index 0000000000..b6549ba982 --- /dev/null +++ b/vendor/github.com/felixge/httpsnoop/wrap_generated.go @@ -0,0 +1,16179 @@ +// Code generated by "httpsnoop/codegen"; DO NOT EDIT. + +package httpsnoop + +import ( + "bufio" + "io" + "net" + "net/http" + "time" +) + +// HeaderFunc is part of the http.ResponseWriter interface. +type HeaderFunc func() http.Header + +// WriteHeaderFunc is part of the http.ResponseWriter interface. +type WriteHeaderFunc func(code int) + +// WriteFunc is part of the http.ResponseWriter interface. +type WriteFunc func(b []byte) (int, error) + +// FlushFunc is part of the http.Flusher interface. +type FlushFunc func() + +// FlushErrorFunc is part of the httpFlushError interface. +type FlushErrorFunc func() error + +// CloseNotifyFunc is part of the http.CloseNotifier interface. +type CloseNotifyFunc func() <-chan bool + +// HijackFunc is part of the http.Hijacker interface. +type HijackFunc func() (net.Conn, *bufio.ReadWriter, error) + +// ReadFromFunc is part of the io.ReaderFrom interface. +type ReadFromFunc func(src io.Reader) (int64, error) + +// SetReadDeadlineFunc is part of the deadliner interface. +type SetReadDeadlineFunc func(deadline time.Time) error + +// SetWriteDeadlineFunc is part of the deadliner interface. +type SetWriteDeadlineFunc func(deadline time.Time) error + +// EnableFullDuplexFunc is part of the fullDuplexEnabler interface. +type EnableFullDuplexFunc func() error + +// PushFunc is part of the http.Pusher interface. +type PushFunc func(target string, opts *http.PushOptions) error + +// WriteStringFunc is part of the io.StringWriter interface. +type WriteStringFunc func(s string) (int, error) + +// Hooks defines a set of method interceptors for methods included in +// http.ResponseWriter as well as some others. You can think of them as +// middleware for the function calls they target. See Wrap for more details. +// +// For each method, the exact matching hook takes precedence. For example, +// WriteString calls the WriteString hook when it is configured, even if a +// Write hook is also configured. If the exact hook is not configured, most +// methods call through to the underlying ResponseWriter directly. +// +// Two compatibility fallbacks preserve the behavior users had before Wrap +// learned about newer optional interfaces: +// - If the underlying ResponseWriter implements io.StringWriter and +// WriteString is called, but only the Write hook is configured, WriteString +// is routed through the Write hook with []byte(s). If neither hook is +// configured, WriteString calls the underlying WriteString method directly. +// - If the underlying ResponseWriter implements both http.Flusher and +// FlushError, and FlushError is called, but only the Flush hook is +// configured, FlushError is routed through the Flush hook while preserving +// the error returned by the underlying FlushError method. If neither hook is +// configured, FlushError calls the underlying FlushError method directly. +type Hooks struct { + Header func(HeaderFunc) HeaderFunc + WriteHeader func(WriteHeaderFunc) WriteHeaderFunc + Write func(WriteFunc) WriteFunc + Flush func(FlushFunc) FlushFunc + FlushError func(FlushErrorFunc) FlushErrorFunc + CloseNotify func(CloseNotifyFunc) CloseNotifyFunc + Hijack func(HijackFunc) HijackFunc + ReadFrom func(ReadFromFunc) ReadFromFunc + SetReadDeadline func(SetReadDeadlineFunc) SetReadDeadlineFunc + SetWriteDeadline func(SetWriteDeadlineFunc) SetWriteDeadlineFunc + EnableFullDuplex func(EnableFullDuplexFunc) EnableFullDuplexFunc + Push func(PushFunc) PushFunc + WriteString func(WriteStringFunc) WriteStringFunc +} + +// Wrap returns a wrapped version of w that provides the exact same interface +// as w. Specifically if w implements any combination of: +// +// - http.Flusher +// - httpFlushError +// - http.CloseNotifier +// - http.Hijacker +// - io.ReaderFrom +// - deadliner +// - fullDuplexEnabler +// - http.Pusher +// - io.StringWriter +// +// The wrapped version will implement the exact same combination. If no hooks +// are set, the wrapped version also behaves exactly as w. Hooks targeting +// methods not supported by w are ignored. Any other hooks will intercept the +// method they target and may modify the call's arguments and/or return values. +// The CaptureMetrics implementation serves as a working example for how the +// hooks can be used. +func Wrap(w http.ResponseWriter, hooks Hooks) http.ResponseWriter { + state := &rwState{w: w} + var combo uint16 + if hooks.Header != nil { + state.header = hooks.Header(w.Header) + } + if hooks.WriteHeader != nil { + state.writeHeader = hooks.WriteHeader(w.WriteHeader) + } + if hooks.Write != nil { + state.write = hooks.Write(w.Write) + } + if t0, i0 := w.(http.Flusher); i0 { + combo |= 1 << 8 + if hooks.Flush != nil { + state.flush = hooks.Flush(t0.Flush) + } + } + if t1, i1 := w.(httpFlushError); i1 { + combo |= 1 << 7 + if hooks.FlushError != nil { + state.flushError = hooks.FlushError(t1.FlushError) + } else if state.flush != nil { + state.flushError = func() (err error) { hooks.Flush(func() { err = t1.FlushError() })(); return err } + } + } + if t2, i2 := w.(http.CloseNotifier); i2 { + combo |= 1 << 6 + if hooks.CloseNotify != nil { + state.closeNotify = hooks.CloseNotify(t2.CloseNotify) + } + } + if t3, i3 := w.(http.Hijacker); i3 { + combo |= 1 << 5 + if hooks.Hijack != nil { + state.hijack = hooks.Hijack(t3.Hijack) + } + } + if t4, i4 := w.(io.ReaderFrom); i4 { + combo |= 1 << 4 + if hooks.ReadFrom != nil { + state.readFrom = hooks.ReadFrom(t4.ReadFrom) + } + } + if t5, i5 := w.(deadliner); i5 { + combo |= 1 << 3 + if hooks.SetReadDeadline != nil { + state.setReadDeadline = hooks.SetReadDeadline(t5.SetReadDeadline) + } + if hooks.SetWriteDeadline != nil { + state.setWriteDeadline = hooks.SetWriteDeadline(t5.SetWriteDeadline) + } + } + if t6, i6 := w.(fullDuplexEnabler); i6 { + combo |= 1 << 2 + if hooks.EnableFullDuplex != nil { + state.enableFullDuplex = hooks.EnableFullDuplex(t6.EnableFullDuplex) + } + } + if t7, i7 := w.(http.Pusher); i7 { + combo |= 1 << 1 + if hooks.Push != nil { + state.push = hooks.Push(t7.Push) + } + } + if t8, i8 := w.(io.StringWriter); i8 { + combo |= 1 << 0 + if hooks.WriteString != nil { + state.writeString = hooks.WriteString(t8.WriteString) + } else if state.write != nil { + state.writeString = func(s string) (int, error) { return state.write([]byte(s)) } + } + } + switch combo { + case 0: + return (*rw0)(state) + case 1: + return (*rw1)(state) + case 2: + return (*rw2)(state) + case 3: + return (*rw3)(state) + case 4: + return (*rw4)(state) + case 5: + return (*rw5)(state) + case 6: + return (*rw6)(state) + case 7: + return (*rw7)(state) + case 8: + return (*rw8)(state) + case 9: + return (*rw9)(state) + case 10: + return (*rw10)(state) + case 11: + return (*rw11)(state) + case 12: + return (*rw12)(state) + case 13: + return (*rw13)(state) + case 14: + return (*rw14)(state) + case 15: + return (*rw15)(state) + case 16: + return (*rw16)(state) + case 17: + return (*rw17)(state) + case 18: + return (*rw18)(state) + case 19: + return (*rw19)(state) + case 20: + return (*rw20)(state) + case 21: + return (*rw21)(state) + case 22: + return (*rw22)(state) + case 23: + return (*rw23)(state) + case 24: + return (*rw24)(state) + case 25: + return (*rw25)(state) + case 26: + return (*rw26)(state) + case 27: + return (*rw27)(state) + case 28: + return (*rw28)(state) + case 29: + return (*rw29)(state) + case 30: + return (*rw30)(state) + case 31: + return (*rw31)(state) + case 32: + return (*rw32)(state) + case 33: + return (*rw33)(state) + case 34: + return (*rw34)(state) + case 35: + return (*rw35)(state) + case 36: + return (*rw36)(state) + case 37: + return (*rw37)(state) + case 38: + return (*rw38)(state) + case 39: + return (*rw39)(state) + case 40: + return (*rw40)(state) + case 41: + return (*rw41)(state) + case 42: + return (*rw42)(state) + case 43: + return (*rw43)(state) + case 44: + return (*rw44)(state) + case 45: + return (*rw45)(state) + case 46: + return (*rw46)(state) + case 47: + return (*rw47)(state) + case 48: + return (*rw48)(state) + case 49: + return (*rw49)(state) + case 50: + return (*rw50)(state) + case 51: + return (*rw51)(state) + case 52: + return (*rw52)(state) + case 53: + return (*rw53)(state) + case 54: + return (*rw54)(state) + case 55: + return (*rw55)(state) + case 56: + return (*rw56)(state) + case 57: + return (*rw57)(state) + case 58: + return (*rw58)(state) + case 59: + return (*rw59)(state) + case 60: + return (*rw60)(state) + case 61: + return (*rw61)(state) + case 62: + return (*rw62)(state) + case 63: + return (*rw63)(state) + case 64: + return (*rw64)(state) + case 65: + return (*rw65)(state) + case 66: + return (*rw66)(state) + case 67: + return (*rw67)(state) + case 68: + return (*rw68)(state) + case 69: + return (*rw69)(state) + case 70: + return (*rw70)(state) + case 71: + return (*rw71)(state) + case 72: + return (*rw72)(state) + case 73: + return (*rw73)(state) + case 74: + return (*rw74)(state) + case 75: + return (*rw75)(state) + case 76: + return (*rw76)(state) + case 77: + return (*rw77)(state) + case 78: + return (*rw78)(state) + case 79: + return (*rw79)(state) + case 80: + return (*rw80)(state) + case 81: + return (*rw81)(state) + case 82: + return (*rw82)(state) + case 83: + return (*rw83)(state) + case 84: + return (*rw84)(state) + case 85: + return (*rw85)(state) + case 86: + return (*rw86)(state) + case 87: + return (*rw87)(state) + case 88: + return (*rw88)(state) + case 89: + return (*rw89)(state) + case 90: + return (*rw90)(state) + case 91: + return (*rw91)(state) + case 92: + return (*rw92)(state) + case 93: + return (*rw93)(state) + case 94: + return (*rw94)(state) + case 95: + return (*rw95)(state) + case 96: + return (*rw96)(state) + case 97: + return (*rw97)(state) + case 98: + return (*rw98)(state) + case 99: + return (*rw99)(state) + case 100: + return (*rw100)(state) + case 101: + return (*rw101)(state) + case 102: + return (*rw102)(state) + case 103: + return (*rw103)(state) + case 104: + return (*rw104)(state) + case 105: + return (*rw105)(state) + case 106: + return (*rw106)(state) + case 107: + return (*rw107)(state) + case 108: + return (*rw108)(state) + case 109: + return (*rw109)(state) + case 110: + return (*rw110)(state) + case 111: + return (*rw111)(state) + case 112: + return (*rw112)(state) + case 113: + return (*rw113)(state) + case 114: + return (*rw114)(state) + case 115: + return (*rw115)(state) + case 116: + return (*rw116)(state) + case 117: + return (*rw117)(state) + case 118: + return (*rw118)(state) + case 119: + return (*rw119)(state) + case 120: + return (*rw120)(state) + case 121: + return (*rw121)(state) + case 122: + return (*rw122)(state) + case 123: + return (*rw123)(state) + case 124: + return (*rw124)(state) + case 125: + return (*rw125)(state) + case 126: + return (*rw126)(state) + case 127: + return (*rw127)(state) + case 128: + return (*rw128)(state) + case 129: + return (*rw129)(state) + case 130: + return (*rw130)(state) + case 131: + return (*rw131)(state) + case 132: + return (*rw132)(state) + case 133: + return (*rw133)(state) + case 134: + return (*rw134)(state) + case 135: + return (*rw135)(state) + case 136: + return (*rw136)(state) + case 137: + return (*rw137)(state) + case 138: + return (*rw138)(state) + case 139: + return (*rw139)(state) + case 140: + return (*rw140)(state) + case 141: + return (*rw141)(state) + case 142: + return (*rw142)(state) + case 143: + return (*rw143)(state) + case 144: + return (*rw144)(state) + case 145: + return (*rw145)(state) + case 146: + return (*rw146)(state) + case 147: + return (*rw147)(state) + case 148: + return (*rw148)(state) + case 149: + return (*rw149)(state) + case 150: + return (*rw150)(state) + case 151: + return (*rw151)(state) + case 152: + return (*rw152)(state) + case 153: + return (*rw153)(state) + case 154: + return (*rw154)(state) + case 155: + return (*rw155)(state) + case 156: + return (*rw156)(state) + case 157: + return (*rw157)(state) + case 158: + return (*rw158)(state) + case 159: + return (*rw159)(state) + case 160: + return (*rw160)(state) + case 161: + return (*rw161)(state) + case 162: + return (*rw162)(state) + case 163: + return (*rw163)(state) + case 164: + return (*rw164)(state) + case 165: + return (*rw165)(state) + case 166: + return (*rw166)(state) + case 167: + return (*rw167)(state) + case 168: + return (*rw168)(state) + case 169: + return (*rw169)(state) + case 170: + return (*rw170)(state) + case 171: + return (*rw171)(state) + case 172: + return (*rw172)(state) + case 173: + return (*rw173)(state) + case 174: + return (*rw174)(state) + case 175: + return (*rw175)(state) + case 176: + return (*rw176)(state) + case 177: + return (*rw177)(state) + case 178: + return (*rw178)(state) + case 179: + return (*rw179)(state) + case 180: + return (*rw180)(state) + case 181: + return (*rw181)(state) + case 182: + return (*rw182)(state) + case 183: + return (*rw183)(state) + case 184: + return (*rw184)(state) + case 185: + return (*rw185)(state) + case 186: + return (*rw186)(state) + case 187: + return (*rw187)(state) + case 188: + return (*rw188)(state) + case 189: + return (*rw189)(state) + case 190: + return (*rw190)(state) + case 191: + return (*rw191)(state) + case 192: + return (*rw192)(state) + case 193: + return (*rw193)(state) + case 194: + return (*rw194)(state) + case 195: + return (*rw195)(state) + case 196: + return (*rw196)(state) + case 197: + return (*rw197)(state) + case 198: + return (*rw198)(state) + case 199: + return (*rw199)(state) + case 200: + return (*rw200)(state) + case 201: + return (*rw201)(state) + case 202: + return (*rw202)(state) + case 203: + return (*rw203)(state) + case 204: + return (*rw204)(state) + case 205: + return (*rw205)(state) + case 206: + return (*rw206)(state) + case 207: + return (*rw207)(state) + case 208: + return (*rw208)(state) + case 209: + return (*rw209)(state) + case 210: + return (*rw210)(state) + case 211: + return (*rw211)(state) + case 212: + return (*rw212)(state) + case 213: + return (*rw213)(state) + case 214: + return (*rw214)(state) + case 215: + return (*rw215)(state) + case 216: + return (*rw216)(state) + case 217: + return (*rw217)(state) + case 218: + return (*rw218)(state) + case 219: + return (*rw219)(state) + case 220: + return (*rw220)(state) + case 221: + return (*rw221)(state) + case 222: + return (*rw222)(state) + case 223: + return (*rw223)(state) + case 224: + return (*rw224)(state) + case 225: + return (*rw225)(state) + case 226: + return (*rw226)(state) + case 227: + return (*rw227)(state) + case 228: + return (*rw228)(state) + case 229: + return (*rw229)(state) + case 230: + return (*rw230)(state) + case 231: + return (*rw231)(state) + case 232: + return (*rw232)(state) + case 233: + return (*rw233)(state) + case 234: + return (*rw234)(state) + case 235: + return (*rw235)(state) + case 236: + return (*rw236)(state) + case 237: + return (*rw237)(state) + case 238: + return (*rw238)(state) + case 239: + return (*rw239)(state) + case 240: + return (*rw240)(state) + case 241: + return (*rw241)(state) + case 242: + return (*rw242)(state) + case 243: + return (*rw243)(state) + case 244: + return (*rw244)(state) + case 245: + return (*rw245)(state) + case 246: + return (*rw246)(state) + case 247: + return (*rw247)(state) + case 248: + return (*rw248)(state) + case 249: + return (*rw249)(state) + case 250: + return (*rw250)(state) + case 251: + return (*rw251)(state) + case 252: + return (*rw252)(state) + case 253: + return (*rw253)(state) + case 254: + return (*rw254)(state) + case 255: + return (*rw255)(state) + case 256: + return (*rw256)(state) + case 257: + return (*rw257)(state) + case 258: + return (*rw258)(state) + case 259: + return (*rw259)(state) + case 260: + return (*rw260)(state) + case 261: + return (*rw261)(state) + case 262: + return (*rw262)(state) + case 263: + return (*rw263)(state) + case 264: + return (*rw264)(state) + case 265: + return (*rw265)(state) + case 266: + return (*rw266)(state) + case 267: + return (*rw267)(state) + case 268: + return (*rw268)(state) + case 269: + return (*rw269)(state) + case 270: + return (*rw270)(state) + case 271: + return (*rw271)(state) + case 272: + return (*rw272)(state) + case 273: + return (*rw273)(state) + case 274: + return (*rw274)(state) + case 275: + return (*rw275)(state) + case 276: + return (*rw276)(state) + case 277: + return (*rw277)(state) + case 278: + return (*rw278)(state) + case 279: + return (*rw279)(state) + case 280: + return (*rw280)(state) + case 281: + return (*rw281)(state) + case 282: + return (*rw282)(state) + case 283: + return (*rw283)(state) + case 284: + return (*rw284)(state) + case 285: + return (*rw285)(state) + case 286: + return (*rw286)(state) + case 287: + return (*rw287)(state) + case 288: + return (*rw288)(state) + case 289: + return (*rw289)(state) + case 290: + return (*rw290)(state) + case 291: + return (*rw291)(state) + case 292: + return (*rw292)(state) + case 293: + return (*rw293)(state) + case 294: + return (*rw294)(state) + case 295: + return (*rw295)(state) + case 296: + return (*rw296)(state) + case 297: + return (*rw297)(state) + case 298: + return (*rw298)(state) + case 299: + return (*rw299)(state) + case 300: + return (*rw300)(state) + case 301: + return (*rw301)(state) + case 302: + return (*rw302)(state) + case 303: + return (*rw303)(state) + case 304: + return (*rw304)(state) + case 305: + return (*rw305)(state) + case 306: + return (*rw306)(state) + case 307: + return (*rw307)(state) + case 308: + return (*rw308)(state) + case 309: + return (*rw309)(state) + case 310: + return (*rw310)(state) + case 311: + return (*rw311)(state) + case 312: + return (*rw312)(state) + case 313: + return (*rw313)(state) + case 314: + return (*rw314)(state) + case 315: + return (*rw315)(state) + case 316: + return (*rw316)(state) + case 317: + return (*rw317)(state) + case 318: + return (*rw318)(state) + case 319: + return (*rw319)(state) + case 320: + return (*rw320)(state) + case 321: + return (*rw321)(state) + case 322: + return (*rw322)(state) + case 323: + return (*rw323)(state) + case 324: + return (*rw324)(state) + case 325: + return (*rw325)(state) + case 326: + return (*rw326)(state) + case 327: + return (*rw327)(state) + case 328: + return (*rw328)(state) + case 329: + return (*rw329)(state) + case 330: + return (*rw330)(state) + case 331: + return (*rw331)(state) + case 332: + return (*rw332)(state) + case 333: + return (*rw333)(state) + case 334: + return (*rw334)(state) + case 335: + return (*rw335)(state) + case 336: + return (*rw336)(state) + case 337: + return (*rw337)(state) + case 338: + return (*rw338)(state) + case 339: + return (*rw339)(state) + case 340: + return (*rw340)(state) + case 341: + return (*rw341)(state) + case 342: + return (*rw342)(state) + case 343: + return (*rw343)(state) + case 344: + return (*rw344)(state) + case 345: + return (*rw345)(state) + case 346: + return (*rw346)(state) + case 347: + return (*rw347)(state) + case 348: + return (*rw348)(state) + case 349: + return (*rw349)(state) + case 350: + return (*rw350)(state) + case 351: + return (*rw351)(state) + case 352: + return (*rw352)(state) + case 353: + return (*rw353)(state) + case 354: + return (*rw354)(state) + case 355: + return (*rw355)(state) + case 356: + return (*rw356)(state) + case 357: + return (*rw357)(state) + case 358: + return (*rw358)(state) + case 359: + return (*rw359)(state) + case 360: + return (*rw360)(state) + case 361: + return (*rw361)(state) + case 362: + return (*rw362)(state) + case 363: + return (*rw363)(state) + case 364: + return (*rw364)(state) + case 365: + return (*rw365)(state) + case 366: + return (*rw366)(state) + case 367: + return (*rw367)(state) + case 368: + return (*rw368)(state) + case 369: + return (*rw369)(state) + case 370: + return (*rw370)(state) + case 371: + return (*rw371)(state) + case 372: + return (*rw372)(state) + case 373: + return (*rw373)(state) + case 374: + return (*rw374)(state) + case 375: + return (*rw375)(state) + case 376: + return (*rw376)(state) + case 377: + return (*rw377)(state) + case 378: + return (*rw378)(state) + case 379: + return (*rw379)(state) + case 380: + return (*rw380)(state) + case 381: + return (*rw381)(state) + case 382: + return (*rw382)(state) + case 383: + return (*rw383)(state) + case 384: + return (*rw384)(state) + case 385: + return (*rw385)(state) + case 386: + return (*rw386)(state) + case 387: + return (*rw387)(state) + case 388: + return (*rw388)(state) + case 389: + return (*rw389)(state) + case 390: + return (*rw390)(state) + case 391: + return (*rw391)(state) + case 392: + return (*rw392)(state) + case 393: + return (*rw393)(state) + case 394: + return (*rw394)(state) + case 395: + return (*rw395)(state) + case 396: + return (*rw396)(state) + case 397: + return (*rw397)(state) + case 398: + return (*rw398)(state) + case 399: + return (*rw399)(state) + case 400: + return (*rw400)(state) + case 401: + return (*rw401)(state) + case 402: + return (*rw402)(state) + case 403: + return (*rw403)(state) + case 404: + return (*rw404)(state) + case 405: + return (*rw405)(state) + case 406: + return (*rw406)(state) + case 407: + return (*rw407)(state) + case 408: + return (*rw408)(state) + case 409: + return (*rw409)(state) + case 410: + return (*rw410)(state) + case 411: + return (*rw411)(state) + case 412: + return (*rw412)(state) + case 413: + return (*rw413)(state) + case 414: + return (*rw414)(state) + case 415: + return (*rw415)(state) + case 416: + return (*rw416)(state) + case 417: + return (*rw417)(state) + case 418: + return (*rw418)(state) + case 419: + return (*rw419)(state) + case 420: + return (*rw420)(state) + case 421: + return (*rw421)(state) + case 422: + return (*rw422)(state) + case 423: + return (*rw423)(state) + case 424: + return (*rw424)(state) + case 425: + return (*rw425)(state) + case 426: + return (*rw426)(state) + case 427: + return (*rw427)(state) + case 428: + return (*rw428)(state) + case 429: + return (*rw429)(state) + case 430: + return (*rw430)(state) + case 431: + return (*rw431)(state) + case 432: + return (*rw432)(state) + case 433: + return (*rw433)(state) + case 434: + return (*rw434)(state) + case 435: + return (*rw435)(state) + case 436: + return (*rw436)(state) + case 437: + return (*rw437)(state) + case 438: + return (*rw438)(state) + case 439: + return (*rw439)(state) + case 440: + return (*rw440)(state) + case 441: + return (*rw441)(state) + case 442: + return (*rw442)(state) + case 443: + return (*rw443)(state) + case 444: + return (*rw444)(state) + case 445: + return (*rw445)(state) + case 446: + return (*rw446)(state) + case 447: + return (*rw447)(state) + case 448: + return (*rw448)(state) + case 449: + return (*rw449)(state) + case 450: + return (*rw450)(state) + case 451: + return (*rw451)(state) + case 452: + return (*rw452)(state) + case 453: + return (*rw453)(state) + case 454: + return (*rw454)(state) + case 455: + return (*rw455)(state) + case 456: + return (*rw456)(state) + case 457: + return (*rw457)(state) + case 458: + return (*rw458)(state) + case 459: + return (*rw459)(state) + case 460: + return (*rw460)(state) + case 461: + return (*rw461)(state) + case 462: + return (*rw462)(state) + case 463: + return (*rw463)(state) + case 464: + return (*rw464)(state) + case 465: + return (*rw465)(state) + case 466: + return (*rw466)(state) + case 467: + return (*rw467)(state) + case 468: + return (*rw468)(state) + case 469: + return (*rw469)(state) + case 470: + return (*rw470)(state) + case 471: + return (*rw471)(state) + case 472: + return (*rw472)(state) + case 473: + return (*rw473)(state) + case 474: + return (*rw474)(state) + case 475: + return (*rw475)(state) + case 476: + return (*rw476)(state) + case 477: + return (*rw477)(state) + case 478: + return (*rw478)(state) + case 479: + return (*rw479)(state) + case 480: + return (*rw480)(state) + case 481: + return (*rw481)(state) + case 482: + return (*rw482)(state) + case 483: + return (*rw483)(state) + case 484: + return (*rw484)(state) + case 485: + return (*rw485)(state) + case 486: + return (*rw486)(state) + case 487: + return (*rw487)(state) + case 488: + return (*rw488)(state) + case 489: + return (*rw489)(state) + case 490: + return (*rw490)(state) + case 491: + return (*rw491)(state) + case 492: + return (*rw492)(state) + case 493: + return (*rw493)(state) + case 494: + return (*rw494)(state) + case 495: + return (*rw495)(state) + case 496: + return (*rw496)(state) + case 497: + return (*rw497)(state) + case 498: + return (*rw498)(state) + case 499: + return (*rw499)(state) + case 500: + return (*rw500)(state) + case 501: + return (*rw501)(state) + case 502: + return (*rw502)(state) + case 503: + return (*rw503)(state) + case 504: + return (*rw504)(state) + case 505: + return (*rw505)(state) + case 506: + return (*rw506)(state) + case 507: + return (*rw507)(state) + case 508: + return (*rw508)(state) + case 509: + return (*rw509)(state) + case 510: + return (*rw510)(state) + case 511: + return (*rw511)(state) + } + panic("unreachable") +} + +type rwState struct { + w http.ResponseWriter + header HeaderFunc + writeHeader WriteHeaderFunc + write WriteFunc + flush FlushFunc + flushError FlushErrorFunc + closeNotify CloseNotifyFunc + hijack HijackFunc + readFrom ReadFromFunc + setReadDeadline SetReadDeadlineFunc + setWriteDeadline SetWriteDeadlineFunc + enableFullDuplex EnableFullDuplexFunc + push PushFunc + writeString WriteStringFunc +} + +func (r *rwState) doHeader() http.Header { + if r.header != nil { + return r.header() + } + return r.w.Header() +} + +func (r *rwState) doWriteHeader(code int) { + if r.writeHeader != nil { + r.writeHeader(code) + return + } + r.w.WriteHeader(code) +} + +func (r *rwState) doWrite(b []byte) (int, error) { + if r.write != nil { + return r.write(b) + } + return r.w.Write(b) +} + +func (r *rwState) doFlush() { + if r.flush != nil { + r.flush() + return + } + r.w.(http.Flusher).Flush() +} + +func (r *rwState) doFlushError() error { + if r.flushError != nil { + return r.flushError() + } + return r.w.(httpFlushError).FlushError() +} + +func (r *rwState) doCloseNotify() <-chan bool { + if r.closeNotify != nil { + return r.closeNotify() + } + return r.w.(http.CloseNotifier).CloseNotify() +} + +func (r *rwState) doHijack() (net.Conn, *bufio.ReadWriter, error) { + if r.hijack != nil { + return r.hijack() + } + return r.w.(http.Hijacker).Hijack() +} + +func (r *rwState) doReadFrom(src io.Reader) (int64, error) { + if r.readFrom != nil { + return r.readFrom(src) + } + return r.w.(io.ReaderFrom).ReadFrom(src) +} + +func (r *rwState) doSetReadDeadline(deadline time.Time) error { + if r.setReadDeadline != nil { + return r.setReadDeadline(deadline) + } + return r.w.(deadliner).SetReadDeadline(deadline) +} + +func (r *rwState) doSetWriteDeadline(deadline time.Time) error { + if r.setWriteDeadline != nil { + return r.setWriteDeadline(deadline) + } + return r.w.(deadliner).SetWriteDeadline(deadline) +} + +func (r *rwState) doEnableFullDuplex() error { + if r.enableFullDuplex != nil { + return r.enableFullDuplex() + } + return r.w.(fullDuplexEnabler).EnableFullDuplex() +} + +func (r *rwState) doPush(target string, opts *http.PushOptions) error { + if r.push != nil { + return r.push(target, opts) + } + return r.w.(http.Pusher).Push(target, opts) +} + +func (r *rwState) doWriteString(s string) (int, error) { + if r.writeString != nil { + return r.writeString(s) + } + return r.w.(io.StringWriter).WriteString(s) +} + +// combination 1/512: http.ResponseWriter +type rw0 rwState + +func (w *rw0) Unwrap() http.ResponseWriter { return w.w } +func (w *rw0) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw0) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw0) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} + +// combination 2/512: http.ResponseWriter, io.StringWriter +type rw1 rwState + +func (w *rw1) Unwrap() http.ResponseWriter { return w.w } +func (w *rw1) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw1) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw1) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw1) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 3/512: http.ResponseWriter, http.Pusher +type rw2 rwState + +func (w *rw2) Unwrap() http.ResponseWriter { return w.w } +func (w *rw2) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw2) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw2) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw2) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 4/512: http.ResponseWriter, http.Pusher, io.StringWriter +type rw3 rwState + +func (w *rw3) Unwrap() http.ResponseWriter { return w.w } +func (w *rw3) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw3) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw3) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw3) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw3) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 5/512: http.ResponseWriter, fullDuplexEnabler +type rw4 rwState + +func (w *rw4) Unwrap() http.ResponseWriter { return w.w } +func (w *rw4) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw4) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw4) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw4) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 6/512: http.ResponseWriter, fullDuplexEnabler, io.StringWriter +type rw5 rwState + +func (w *rw5) Unwrap() http.ResponseWriter { return w.w } +func (w *rw5) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw5) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw5) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw5) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw5) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 7/512: http.ResponseWriter, fullDuplexEnabler, http.Pusher +type rw6 rwState + +func (w *rw6) Unwrap() http.ResponseWriter { return w.w } +func (w *rw6) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw6) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw6) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw6) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw6) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 8/512: http.ResponseWriter, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw7 rwState + +func (w *rw7) Unwrap() http.ResponseWriter { return w.w } +func (w *rw7) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw7) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw7) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw7) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw7) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw7) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 9/512: http.ResponseWriter, deadliner +type rw8 rwState + +func (w *rw8) Unwrap() http.ResponseWriter { return w.w } +func (w *rw8) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw8) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw8) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw8) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw8) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} + +// combination 10/512: http.ResponseWriter, deadliner, io.StringWriter +type rw9 rwState + +func (w *rw9) Unwrap() http.ResponseWriter { return w.w } +func (w *rw9) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw9) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw9) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw9) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw9) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw9) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 11/512: http.ResponseWriter, deadliner, http.Pusher +type rw10 rwState + +func (w *rw10) Unwrap() http.ResponseWriter { return w.w } +func (w *rw10) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw10) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw10) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw10) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw10) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw10) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 12/512: http.ResponseWriter, deadliner, http.Pusher, io.StringWriter +type rw11 rwState + +func (w *rw11) Unwrap() http.ResponseWriter { return w.w } +func (w *rw11) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw11) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw11) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw11) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw11) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw11) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw11) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 13/512: http.ResponseWriter, deadliner, fullDuplexEnabler +type rw12 rwState + +func (w *rw12) Unwrap() http.ResponseWriter { return w.w } +func (w *rw12) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw12) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw12) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw12) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw12) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw12) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 14/512: http.ResponseWriter, deadliner, fullDuplexEnabler, io.StringWriter +type rw13 rwState + +func (w *rw13) Unwrap() http.ResponseWriter { return w.w } +func (w *rw13) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw13) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw13) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw13) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw13) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw13) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw13) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 15/512: http.ResponseWriter, deadliner, fullDuplexEnabler, http.Pusher +type rw14 rwState + +func (w *rw14) Unwrap() http.ResponseWriter { return w.w } +func (w *rw14) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw14) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw14) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw14) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw14) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw14) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw14) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 16/512: http.ResponseWriter, deadliner, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw15 rwState + +func (w *rw15) Unwrap() http.ResponseWriter { return w.w } +func (w *rw15) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw15) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw15) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw15) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw15) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw15) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw15) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw15) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 17/512: http.ResponseWriter, io.ReaderFrom +type rw16 rwState + +func (w *rw16) Unwrap() http.ResponseWriter { return w.w } +func (w *rw16) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw16) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw16) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw16) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} + +// combination 18/512: http.ResponseWriter, io.ReaderFrom, io.StringWriter +type rw17 rwState + +func (w *rw17) Unwrap() http.ResponseWriter { return w.w } +func (w *rw17) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw17) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw17) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw17) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw17) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 19/512: http.ResponseWriter, io.ReaderFrom, http.Pusher +type rw18 rwState + +func (w *rw18) Unwrap() http.ResponseWriter { return w.w } +func (w *rw18) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw18) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw18) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw18) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw18) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 20/512: http.ResponseWriter, io.ReaderFrom, http.Pusher, io.StringWriter +type rw19 rwState + +func (w *rw19) Unwrap() http.ResponseWriter { return w.w } +func (w *rw19) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw19) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw19) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw19) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw19) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw19) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 21/512: http.ResponseWriter, io.ReaderFrom, fullDuplexEnabler +type rw20 rwState + +func (w *rw20) Unwrap() http.ResponseWriter { return w.w } +func (w *rw20) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw20) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw20) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw20) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw20) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 22/512: http.ResponseWriter, io.ReaderFrom, fullDuplexEnabler, io.StringWriter +type rw21 rwState + +func (w *rw21) Unwrap() http.ResponseWriter { return w.w } +func (w *rw21) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw21) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw21) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw21) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw21) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw21) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 23/512: http.ResponseWriter, io.ReaderFrom, fullDuplexEnabler, http.Pusher +type rw22 rwState + +func (w *rw22) Unwrap() http.ResponseWriter { return w.w } +func (w *rw22) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw22) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw22) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw22) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw22) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw22) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 24/512: http.ResponseWriter, io.ReaderFrom, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw23 rwState + +func (w *rw23) Unwrap() http.ResponseWriter { return w.w } +func (w *rw23) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw23) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw23) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw23) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw23) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw23) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw23) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 25/512: http.ResponseWriter, io.ReaderFrom, deadliner +type rw24 rwState + +func (w *rw24) Unwrap() http.ResponseWriter { return w.w } +func (w *rw24) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw24) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw24) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw24) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw24) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw24) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} + +// combination 26/512: http.ResponseWriter, io.ReaderFrom, deadliner, io.StringWriter +type rw25 rwState + +func (w *rw25) Unwrap() http.ResponseWriter { return w.w } +func (w *rw25) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw25) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw25) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw25) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw25) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw25) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw25) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 27/512: http.ResponseWriter, io.ReaderFrom, deadliner, http.Pusher +type rw26 rwState + +func (w *rw26) Unwrap() http.ResponseWriter { return w.w } +func (w *rw26) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw26) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw26) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw26) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw26) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw26) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw26) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 28/512: http.ResponseWriter, io.ReaderFrom, deadliner, http.Pusher, io.StringWriter +type rw27 rwState + +func (w *rw27) Unwrap() http.ResponseWriter { return w.w } +func (w *rw27) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw27) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw27) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw27) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw27) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw27) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw27) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw27) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 29/512: http.ResponseWriter, io.ReaderFrom, deadliner, fullDuplexEnabler +type rw28 rwState + +func (w *rw28) Unwrap() http.ResponseWriter { return w.w } +func (w *rw28) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw28) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw28) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw28) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw28) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw28) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw28) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 30/512: http.ResponseWriter, io.ReaderFrom, deadliner, fullDuplexEnabler, io.StringWriter +type rw29 rwState + +func (w *rw29) Unwrap() http.ResponseWriter { return w.w } +func (w *rw29) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw29) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw29) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw29) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw29) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw29) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw29) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw29) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 31/512: http.ResponseWriter, io.ReaderFrom, deadliner, fullDuplexEnabler, http.Pusher +type rw30 rwState + +func (w *rw30) Unwrap() http.ResponseWriter { return w.w } +func (w *rw30) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw30) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw30) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw30) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw30) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw30) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw30) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw30) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 32/512: http.ResponseWriter, io.ReaderFrom, deadliner, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw31 rwState + +func (w *rw31) Unwrap() http.ResponseWriter { return w.w } +func (w *rw31) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw31) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw31) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw31) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw31) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw31) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw31) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw31) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw31) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 33/512: http.ResponseWriter, http.Hijacker +type rw32 rwState + +func (w *rw32) Unwrap() http.ResponseWriter { return w.w } +func (w *rw32) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw32) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw32) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw32) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} + +// combination 34/512: http.ResponseWriter, http.Hijacker, io.StringWriter +type rw33 rwState + +func (w *rw33) Unwrap() http.ResponseWriter { return w.w } +func (w *rw33) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw33) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw33) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw33) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw33) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 35/512: http.ResponseWriter, http.Hijacker, http.Pusher +type rw34 rwState + +func (w *rw34) Unwrap() http.ResponseWriter { return w.w } +func (w *rw34) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw34) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw34) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw34) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw34) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 36/512: http.ResponseWriter, http.Hijacker, http.Pusher, io.StringWriter +type rw35 rwState + +func (w *rw35) Unwrap() http.ResponseWriter { return w.w } +func (w *rw35) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw35) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw35) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw35) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw35) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw35) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 37/512: http.ResponseWriter, http.Hijacker, fullDuplexEnabler +type rw36 rwState + +func (w *rw36) Unwrap() http.ResponseWriter { return w.w } +func (w *rw36) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw36) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw36) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw36) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw36) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 38/512: http.ResponseWriter, http.Hijacker, fullDuplexEnabler, io.StringWriter +type rw37 rwState + +func (w *rw37) Unwrap() http.ResponseWriter { return w.w } +func (w *rw37) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw37) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw37) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw37) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw37) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw37) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 39/512: http.ResponseWriter, http.Hijacker, fullDuplexEnabler, http.Pusher +type rw38 rwState + +func (w *rw38) Unwrap() http.ResponseWriter { return w.w } +func (w *rw38) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw38) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw38) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw38) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw38) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw38) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 40/512: http.ResponseWriter, http.Hijacker, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw39 rwState + +func (w *rw39) Unwrap() http.ResponseWriter { return w.w } +func (w *rw39) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw39) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw39) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw39) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw39) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw39) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw39) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 41/512: http.ResponseWriter, http.Hijacker, deadliner +type rw40 rwState + +func (w *rw40) Unwrap() http.ResponseWriter { return w.w } +func (w *rw40) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw40) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw40) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw40) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw40) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw40) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} + +// combination 42/512: http.ResponseWriter, http.Hijacker, deadliner, io.StringWriter +type rw41 rwState + +func (w *rw41) Unwrap() http.ResponseWriter { return w.w } +func (w *rw41) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw41) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw41) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw41) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw41) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw41) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw41) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 43/512: http.ResponseWriter, http.Hijacker, deadliner, http.Pusher +type rw42 rwState + +func (w *rw42) Unwrap() http.ResponseWriter { return w.w } +func (w *rw42) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw42) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw42) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw42) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw42) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw42) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw42) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 44/512: http.ResponseWriter, http.Hijacker, deadliner, http.Pusher, io.StringWriter +type rw43 rwState + +func (w *rw43) Unwrap() http.ResponseWriter { return w.w } +func (w *rw43) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw43) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw43) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw43) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw43) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw43) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw43) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw43) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 45/512: http.ResponseWriter, http.Hijacker, deadliner, fullDuplexEnabler +type rw44 rwState + +func (w *rw44) Unwrap() http.ResponseWriter { return w.w } +func (w *rw44) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw44) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw44) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw44) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw44) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw44) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw44) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 46/512: http.ResponseWriter, http.Hijacker, deadliner, fullDuplexEnabler, io.StringWriter +type rw45 rwState + +func (w *rw45) Unwrap() http.ResponseWriter { return w.w } +func (w *rw45) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw45) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw45) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw45) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw45) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw45) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw45) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw45) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 47/512: http.ResponseWriter, http.Hijacker, deadliner, fullDuplexEnabler, http.Pusher +type rw46 rwState + +func (w *rw46) Unwrap() http.ResponseWriter { return w.w } +func (w *rw46) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw46) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw46) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw46) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw46) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw46) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw46) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw46) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 48/512: http.ResponseWriter, http.Hijacker, deadliner, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw47 rwState + +func (w *rw47) Unwrap() http.ResponseWriter { return w.w } +func (w *rw47) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw47) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw47) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw47) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw47) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw47) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw47) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw47) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw47) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 49/512: http.ResponseWriter, http.Hijacker, io.ReaderFrom +type rw48 rwState + +func (w *rw48) Unwrap() http.ResponseWriter { return w.w } +func (w *rw48) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw48) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw48) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw48) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw48) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} + +// combination 50/512: http.ResponseWriter, http.Hijacker, io.ReaderFrom, io.StringWriter +type rw49 rwState + +func (w *rw49) Unwrap() http.ResponseWriter { return w.w } +func (w *rw49) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw49) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw49) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw49) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw49) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw49) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 51/512: http.ResponseWriter, http.Hijacker, io.ReaderFrom, http.Pusher +type rw50 rwState + +func (w *rw50) Unwrap() http.ResponseWriter { return w.w } +func (w *rw50) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw50) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw50) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw50) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw50) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw50) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 52/512: http.ResponseWriter, http.Hijacker, io.ReaderFrom, http.Pusher, io.StringWriter +type rw51 rwState + +func (w *rw51) Unwrap() http.ResponseWriter { return w.w } +func (w *rw51) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw51) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw51) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw51) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw51) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw51) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw51) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 53/512: http.ResponseWriter, http.Hijacker, io.ReaderFrom, fullDuplexEnabler +type rw52 rwState + +func (w *rw52) Unwrap() http.ResponseWriter { return w.w } +func (w *rw52) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw52) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw52) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw52) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw52) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw52) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 54/512: http.ResponseWriter, http.Hijacker, io.ReaderFrom, fullDuplexEnabler, io.StringWriter +type rw53 rwState + +func (w *rw53) Unwrap() http.ResponseWriter { return w.w } +func (w *rw53) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw53) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw53) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw53) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw53) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw53) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw53) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 55/512: http.ResponseWriter, http.Hijacker, io.ReaderFrom, fullDuplexEnabler, http.Pusher +type rw54 rwState + +func (w *rw54) Unwrap() http.ResponseWriter { return w.w } +func (w *rw54) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw54) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw54) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw54) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw54) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw54) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw54) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 56/512: http.ResponseWriter, http.Hijacker, io.ReaderFrom, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw55 rwState + +func (w *rw55) Unwrap() http.ResponseWriter { return w.w } +func (w *rw55) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw55) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw55) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw55) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw55) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw55) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw55) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw55) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 57/512: http.ResponseWriter, http.Hijacker, io.ReaderFrom, deadliner +type rw56 rwState + +func (w *rw56) Unwrap() http.ResponseWriter { return w.w } +func (w *rw56) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw56) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw56) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw56) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw56) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw56) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw56) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} + +// combination 58/512: http.ResponseWriter, http.Hijacker, io.ReaderFrom, deadliner, io.StringWriter +type rw57 rwState + +func (w *rw57) Unwrap() http.ResponseWriter { return w.w } +func (w *rw57) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw57) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw57) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw57) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw57) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw57) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw57) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw57) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 59/512: http.ResponseWriter, http.Hijacker, io.ReaderFrom, deadliner, http.Pusher +type rw58 rwState + +func (w *rw58) Unwrap() http.ResponseWriter { return w.w } +func (w *rw58) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw58) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw58) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw58) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw58) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw58) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw58) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw58) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 60/512: http.ResponseWriter, http.Hijacker, io.ReaderFrom, deadliner, http.Pusher, io.StringWriter +type rw59 rwState + +func (w *rw59) Unwrap() http.ResponseWriter { return w.w } +func (w *rw59) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw59) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw59) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw59) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw59) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw59) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw59) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw59) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw59) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 61/512: http.ResponseWriter, http.Hijacker, io.ReaderFrom, deadliner, fullDuplexEnabler +type rw60 rwState + +func (w *rw60) Unwrap() http.ResponseWriter { return w.w } +func (w *rw60) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw60) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw60) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw60) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw60) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw60) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw60) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw60) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 62/512: http.ResponseWriter, http.Hijacker, io.ReaderFrom, deadliner, fullDuplexEnabler, io.StringWriter +type rw61 rwState + +func (w *rw61) Unwrap() http.ResponseWriter { return w.w } +func (w *rw61) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw61) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw61) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw61) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw61) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw61) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw61) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw61) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw61) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 63/512: http.ResponseWriter, http.Hijacker, io.ReaderFrom, deadliner, fullDuplexEnabler, http.Pusher +type rw62 rwState + +func (w *rw62) Unwrap() http.ResponseWriter { return w.w } +func (w *rw62) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw62) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw62) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw62) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw62) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw62) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw62) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw62) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw62) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 64/512: http.ResponseWriter, http.Hijacker, io.ReaderFrom, deadliner, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw63 rwState + +func (w *rw63) Unwrap() http.ResponseWriter { return w.w } +func (w *rw63) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw63) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw63) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw63) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw63) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw63) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw63) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw63) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw63) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw63) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 65/512: http.ResponseWriter, http.CloseNotifier +type rw64 rwState + +func (w *rw64) Unwrap() http.ResponseWriter { return w.w } +func (w *rw64) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw64) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw64) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw64) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} + +// combination 66/512: http.ResponseWriter, http.CloseNotifier, io.StringWriter +type rw65 rwState + +func (w *rw65) Unwrap() http.ResponseWriter { return w.w } +func (w *rw65) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw65) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw65) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw65) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw65) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 67/512: http.ResponseWriter, http.CloseNotifier, http.Pusher +type rw66 rwState + +func (w *rw66) Unwrap() http.ResponseWriter { return w.w } +func (w *rw66) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw66) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw66) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw66) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw66) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 68/512: http.ResponseWriter, http.CloseNotifier, http.Pusher, io.StringWriter +type rw67 rwState + +func (w *rw67) Unwrap() http.ResponseWriter { return w.w } +func (w *rw67) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw67) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw67) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw67) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw67) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw67) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 69/512: http.ResponseWriter, http.CloseNotifier, fullDuplexEnabler +type rw68 rwState + +func (w *rw68) Unwrap() http.ResponseWriter { return w.w } +func (w *rw68) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw68) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw68) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw68) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw68) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 70/512: http.ResponseWriter, http.CloseNotifier, fullDuplexEnabler, io.StringWriter +type rw69 rwState + +func (w *rw69) Unwrap() http.ResponseWriter { return w.w } +func (w *rw69) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw69) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw69) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw69) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw69) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw69) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 71/512: http.ResponseWriter, http.CloseNotifier, fullDuplexEnabler, http.Pusher +type rw70 rwState + +func (w *rw70) Unwrap() http.ResponseWriter { return w.w } +func (w *rw70) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw70) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw70) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw70) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw70) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw70) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 72/512: http.ResponseWriter, http.CloseNotifier, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw71 rwState + +func (w *rw71) Unwrap() http.ResponseWriter { return w.w } +func (w *rw71) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw71) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw71) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw71) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw71) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw71) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw71) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 73/512: http.ResponseWriter, http.CloseNotifier, deadliner +type rw72 rwState + +func (w *rw72) Unwrap() http.ResponseWriter { return w.w } +func (w *rw72) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw72) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw72) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw72) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw72) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw72) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} + +// combination 74/512: http.ResponseWriter, http.CloseNotifier, deadliner, io.StringWriter +type rw73 rwState + +func (w *rw73) Unwrap() http.ResponseWriter { return w.w } +func (w *rw73) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw73) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw73) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw73) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw73) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw73) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw73) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 75/512: http.ResponseWriter, http.CloseNotifier, deadliner, http.Pusher +type rw74 rwState + +func (w *rw74) Unwrap() http.ResponseWriter { return w.w } +func (w *rw74) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw74) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw74) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw74) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw74) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw74) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw74) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 76/512: http.ResponseWriter, http.CloseNotifier, deadliner, http.Pusher, io.StringWriter +type rw75 rwState + +func (w *rw75) Unwrap() http.ResponseWriter { return w.w } +func (w *rw75) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw75) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw75) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw75) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw75) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw75) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw75) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw75) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 77/512: http.ResponseWriter, http.CloseNotifier, deadliner, fullDuplexEnabler +type rw76 rwState + +func (w *rw76) Unwrap() http.ResponseWriter { return w.w } +func (w *rw76) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw76) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw76) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw76) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw76) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw76) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw76) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 78/512: http.ResponseWriter, http.CloseNotifier, deadliner, fullDuplexEnabler, io.StringWriter +type rw77 rwState + +func (w *rw77) Unwrap() http.ResponseWriter { return w.w } +func (w *rw77) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw77) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw77) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw77) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw77) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw77) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw77) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw77) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 79/512: http.ResponseWriter, http.CloseNotifier, deadliner, fullDuplexEnabler, http.Pusher +type rw78 rwState + +func (w *rw78) Unwrap() http.ResponseWriter { return w.w } +func (w *rw78) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw78) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw78) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw78) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw78) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw78) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw78) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw78) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 80/512: http.ResponseWriter, http.CloseNotifier, deadliner, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw79 rwState + +func (w *rw79) Unwrap() http.ResponseWriter { return w.w } +func (w *rw79) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw79) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw79) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw79) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw79) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw79) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw79) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw79) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw79) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 81/512: http.ResponseWriter, http.CloseNotifier, io.ReaderFrom +type rw80 rwState + +func (w *rw80) Unwrap() http.ResponseWriter { return w.w } +func (w *rw80) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw80) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw80) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw80) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw80) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} + +// combination 82/512: http.ResponseWriter, http.CloseNotifier, io.ReaderFrom, io.StringWriter +type rw81 rwState + +func (w *rw81) Unwrap() http.ResponseWriter { return w.w } +func (w *rw81) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw81) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw81) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw81) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw81) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw81) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 83/512: http.ResponseWriter, http.CloseNotifier, io.ReaderFrom, http.Pusher +type rw82 rwState + +func (w *rw82) Unwrap() http.ResponseWriter { return w.w } +func (w *rw82) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw82) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw82) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw82) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw82) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw82) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 84/512: http.ResponseWriter, http.CloseNotifier, io.ReaderFrom, http.Pusher, io.StringWriter +type rw83 rwState + +func (w *rw83) Unwrap() http.ResponseWriter { return w.w } +func (w *rw83) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw83) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw83) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw83) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw83) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw83) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw83) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 85/512: http.ResponseWriter, http.CloseNotifier, io.ReaderFrom, fullDuplexEnabler +type rw84 rwState + +func (w *rw84) Unwrap() http.ResponseWriter { return w.w } +func (w *rw84) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw84) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw84) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw84) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw84) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw84) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 86/512: http.ResponseWriter, http.CloseNotifier, io.ReaderFrom, fullDuplexEnabler, io.StringWriter +type rw85 rwState + +func (w *rw85) Unwrap() http.ResponseWriter { return w.w } +func (w *rw85) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw85) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw85) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw85) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw85) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw85) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw85) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 87/512: http.ResponseWriter, http.CloseNotifier, io.ReaderFrom, fullDuplexEnabler, http.Pusher +type rw86 rwState + +func (w *rw86) Unwrap() http.ResponseWriter { return w.w } +func (w *rw86) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw86) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw86) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw86) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw86) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw86) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw86) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 88/512: http.ResponseWriter, http.CloseNotifier, io.ReaderFrom, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw87 rwState + +func (w *rw87) Unwrap() http.ResponseWriter { return w.w } +func (w *rw87) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw87) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw87) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw87) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw87) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw87) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw87) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw87) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 89/512: http.ResponseWriter, http.CloseNotifier, io.ReaderFrom, deadliner +type rw88 rwState + +func (w *rw88) Unwrap() http.ResponseWriter { return w.w } +func (w *rw88) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw88) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw88) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw88) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw88) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw88) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw88) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} + +// combination 90/512: http.ResponseWriter, http.CloseNotifier, io.ReaderFrom, deadliner, io.StringWriter +type rw89 rwState + +func (w *rw89) Unwrap() http.ResponseWriter { return w.w } +func (w *rw89) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw89) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw89) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw89) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw89) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw89) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw89) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw89) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 91/512: http.ResponseWriter, http.CloseNotifier, io.ReaderFrom, deadliner, http.Pusher +type rw90 rwState + +func (w *rw90) Unwrap() http.ResponseWriter { return w.w } +func (w *rw90) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw90) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw90) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw90) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw90) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw90) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw90) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw90) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 92/512: http.ResponseWriter, http.CloseNotifier, io.ReaderFrom, deadliner, http.Pusher, io.StringWriter +type rw91 rwState + +func (w *rw91) Unwrap() http.ResponseWriter { return w.w } +func (w *rw91) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw91) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw91) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw91) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw91) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw91) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw91) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw91) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw91) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 93/512: http.ResponseWriter, http.CloseNotifier, io.ReaderFrom, deadliner, fullDuplexEnabler +type rw92 rwState + +func (w *rw92) Unwrap() http.ResponseWriter { return w.w } +func (w *rw92) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw92) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw92) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw92) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw92) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw92) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw92) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw92) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 94/512: http.ResponseWriter, http.CloseNotifier, io.ReaderFrom, deadliner, fullDuplexEnabler, io.StringWriter +type rw93 rwState + +func (w *rw93) Unwrap() http.ResponseWriter { return w.w } +func (w *rw93) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw93) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw93) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw93) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw93) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw93) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw93) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw93) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw93) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 95/512: http.ResponseWriter, http.CloseNotifier, io.ReaderFrom, deadliner, fullDuplexEnabler, http.Pusher +type rw94 rwState + +func (w *rw94) Unwrap() http.ResponseWriter { return w.w } +func (w *rw94) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw94) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw94) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw94) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw94) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw94) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw94) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw94) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw94) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 96/512: http.ResponseWriter, http.CloseNotifier, io.ReaderFrom, deadliner, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw95 rwState + +func (w *rw95) Unwrap() http.ResponseWriter { return w.w } +func (w *rw95) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw95) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw95) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw95) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw95) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw95) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw95) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw95) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw95) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw95) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 97/512: http.ResponseWriter, http.CloseNotifier, http.Hijacker +type rw96 rwState + +func (w *rw96) Unwrap() http.ResponseWriter { return w.w } +func (w *rw96) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw96) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw96) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw96) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw96) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} + +// combination 98/512: http.ResponseWriter, http.CloseNotifier, http.Hijacker, io.StringWriter +type rw97 rwState + +func (w *rw97) Unwrap() http.ResponseWriter { return w.w } +func (w *rw97) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw97) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw97) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw97) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw97) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw97) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 99/512: http.ResponseWriter, http.CloseNotifier, http.Hijacker, http.Pusher +type rw98 rwState + +func (w *rw98) Unwrap() http.ResponseWriter { return w.w } +func (w *rw98) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw98) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw98) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw98) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw98) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw98) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 100/512: http.ResponseWriter, http.CloseNotifier, http.Hijacker, http.Pusher, io.StringWriter +type rw99 rwState + +func (w *rw99) Unwrap() http.ResponseWriter { return w.w } +func (w *rw99) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw99) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw99) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw99) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw99) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw99) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw99) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 101/512: http.ResponseWriter, http.CloseNotifier, http.Hijacker, fullDuplexEnabler +type rw100 rwState + +func (w *rw100) Unwrap() http.ResponseWriter { return w.w } +func (w *rw100) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw100) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw100) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw100) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw100) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw100) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 102/512: http.ResponseWriter, http.CloseNotifier, http.Hijacker, fullDuplexEnabler, io.StringWriter +type rw101 rwState + +func (w *rw101) Unwrap() http.ResponseWriter { return w.w } +func (w *rw101) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw101) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw101) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw101) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw101) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw101) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw101) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 103/512: http.ResponseWriter, http.CloseNotifier, http.Hijacker, fullDuplexEnabler, http.Pusher +type rw102 rwState + +func (w *rw102) Unwrap() http.ResponseWriter { return w.w } +func (w *rw102) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw102) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw102) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw102) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw102) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw102) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw102) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 104/512: http.ResponseWriter, http.CloseNotifier, http.Hijacker, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw103 rwState + +func (w *rw103) Unwrap() http.ResponseWriter { return w.w } +func (w *rw103) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw103) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw103) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw103) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw103) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw103) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw103) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw103) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 105/512: http.ResponseWriter, http.CloseNotifier, http.Hijacker, deadliner +type rw104 rwState + +func (w *rw104) Unwrap() http.ResponseWriter { return w.w } +func (w *rw104) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw104) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw104) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw104) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw104) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw104) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw104) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} + +// combination 106/512: http.ResponseWriter, http.CloseNotifier, http.Hijacker, deadliner, io.StringWriter +type rw105 rwState + +func (w *rw105) Unwrap() http.ResponseWriter { return w.w } +func (w *rw105) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw105) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw105) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw105) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw105) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw105) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw105) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw105) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 107/512: http.ResponseWriter, http.CloseNotifier, http.Hijacker, deadliner, http.Pusher +type rw106 rwState + +func (w *rw106) Unwrap() http.ResponseWriter { return w.w } +func (w *rw106) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw106) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw106) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw106) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw106) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw106) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw106) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw106) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 108/512: http.ResponseWriter, http.CloseNotifier, http.Hijacker, deadliner, http.Pusher, io.StringWriter +type rw107 rwState + +func (w *rw107) Unwrap() http.ResponseWriter { return w.w } +func (w *rw107) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw107) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw107) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw107) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw107) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw107) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw107) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw107) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw107) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 109/512: http.ResponseWriter, http.CloseNotifier, http.Hijacker, deadliner, fullDuplexEnabler +type rw108 rwState + +func (w *rw108) Unwrap() http.ResponseWriter { return w.w } +func (w *rw108) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw108) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw108) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw108) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw108) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw108) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw108) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw108) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 110/512: http.ResponseWriter, http.CloseNotifier, http.Hijacker, deadliner, fullDuplexEnabler, io.StringWriter +type rw109 rwState + +func (w *rw109) Unwrap() http.ResponseWriter { return w.w } +func (w *rw109) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw109) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw109) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw109) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw109) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw109) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw109) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw109) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw109) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 111/512: http.ResponseWriter, http.CloseNotifier, http.Hijacker, deadliner, fullDuplexEnabler, http.Pusher +type rw110 rwState + +func (w *rw110) Unwrap() http.ResponseWriter { return w.w } +func (w *rw110) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw110) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw110) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw110) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw110) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw110) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw110) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw110) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw110) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 112/512: http.ResponseWriter, http.CloseNotifier, http.Hijacker, deadliner, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw111 rwState + +func (w *rw111) Unwrap() http.ResponseWriter { return w.w } +func (w *rw111) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw111) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw111) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw111) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw111) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw111) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw111) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw111) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw111) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw111) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 113/512: http.ResponseWriter, http.CloseNotifier, http.Hijacker, io.ReaderFrom +type rw112 rwState + +func (w *rw112) Unwrap() http.ResponseWriter { return w.w } +func (w *rw112) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw112) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw112) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw112) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw112) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw112) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} + +// combination 114/512: http.ResponseWriter, http.CloseNotifier, http.Hijacker, io.ReaderFrom, io.StringWriter +type rw113 rwState + +func (w *rw113) Unwrap() http.ResponseWriter { return w.w } +func (w *rw113) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw113) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw113) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw113) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw113) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw113) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw113) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 115/512: http.ResponseWriter, http.CloseNotifier, http.Hijacker, io.ReaderFrom, http.Pusher +type rw114 rwState + +func (w *rw114) Unwrap() http.ResponseWriter { return w.w } +func (w *rw114) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw114) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw114) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw114) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw114) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw114) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw114) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 116/512: http.ResponseWriter, http.CloseNotifier, http.Hijacker, io.ReaderFrom, http.Pusher, io.StringWriter +type rw115 rwState + +func (w *rw115) Unwrap() http.ResponseWriter { return w.w } +func (w *rw115) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw115) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw115) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw115) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw115) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw115) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw115) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw115) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 117/512: http.ResponseWriter, http.CloseNotifier, http.Hijacker, io.ReaderFrom, fullDuplexEnabler +type rw116 rwState + +func (w *rw116) Unwrap() http.ResponseWriter { return w.w } +func (w *rw116) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw116) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw116) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw116) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw116) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw116) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw116) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 118/512: http.ResponseWriter, http.CloseNotifier, http.Hijacker, io.ReaderFrom, fullDuplexEnabler, io.StringWriter +type rw117 rwState + +func (w *rw117) Unwrap() http.ResponseWriter { return w.w } +func (w *rw117) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw117) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw117) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw117) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw117) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw117) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw117) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw117) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 119/512: http.ResponseWriter, http.CloseNotifier, http.Hijacker, io.ReaderFrom, fullDuplexEnabler, http.Pusher +type rw118 rwState + +func (w *rw118) Unwrap() http.ResponseWriter { return w.w } +func (w *rw118) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw118) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw118) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw118) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw118) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw118) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw118) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw118) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 120/512: http.ResponseWriter, http.CloseNotifier, http.Hijacker, io.ReaderFrom, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw119 rwState + +func (w *rw119) Unwrap() http.ResponseWriter { return w.w } +func (w *rw119) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw119) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw119) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw119) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw119) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw119) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw119) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw119) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw119) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 121/512: http.ResponseWriter, http.CloseNotifier, http.Hijacker, io.ReaderFrom, deadliner +type rw120 rwState + +func (w *rw120) Unwrap() http.ResponseWriter { return w.w } +func (w *rw120) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw120) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw120) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw120) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw120) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw120) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw120) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw120) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} + +// combination 122/512: http.ResponseWriter, http.CloseNotifier, http.Hijacker, io.ReaderFrom, deadliner, io.StringWriter +type rw121 rwState + +func (w *rw121) Unwrap() http.ResponseWriter { return w.w } +func (w *rw121) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw121) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw121) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw121) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw121) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw121) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw121) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw121) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw121) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 123/512: http.ResponseWriter, http.CloseNotifier, http.Hijacker, io.ReaderFrom, deadliner, http.Pusher +type rw122 rwState + +func (w *rw122) Unwrap() http.ResponseWriter { return w.w } +func (w *rw122) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw122) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw122) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw122) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw122) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw122) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw122) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw122) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw122) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 124/512: http.ResponseWriter, http.CloseNotifier, http.Hijacker, io.ReaderFrom, deadliner, http.Pusher, io.StringWriter +type rw123 rwState + +func (w *rw123) Unwrap() http.ResponseWriter { return w.w } +func (w *rw123) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw123) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw123) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw123) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw123) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw123) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw123) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw123) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw123) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw123) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 125/512: http.ResponseWriter, http.CloseNotifier, http.Hijacker, io.ReaderFrom, deadliner, fullDuplexEnabler +type rw124 rwState + +func (w *rw124) Unwrap() http.ResponseWriter { return w.w } +func (w *rw124) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw124) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw124) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw124) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw124) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw124) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw124) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw124) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw124) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 126/512: http.ResponseWriter, http.CloseNotifier, http.Hijacker, io.ReaderFrom, deadliner, fullDuplexEnabler, io.StringWriter +type rw125 rwState + +func (w *rw125) Unwrap() http.ResponseWriter { return w.w } +func (w *rw125) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw125) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw125) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw125) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw125) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw125) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw125) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw125) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw125) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw125) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 127/512: http.ResponseWriter, http.CloseNotifier, http.Hijacker, io.ReaderFrom, deadliner, fullDuplexEnabler, http.Pusher +type rw126 rwState + +func (w *rw126) Unwrap() http.ResponseWriter { return w.w } +func (w *rw126) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw126) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw126) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw126) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw126) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw126) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw126) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw126) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw126) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw126) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 128/512: http.ResponseWriter, http.CloseNotifier, http.Hijacker, io.ReaderFrom, deadliner, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw127 rwState + +func (w *rw127) Unwrap() http.ResponseWriter { return w.w } +func (w *rw127) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw127) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw127) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw127) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw127) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw127) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw127) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw127) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw127) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw127) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw127) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 129/512: http.ResponseWriter, httpFlushError +type rw128 rwState + +func (w *rw128) Unwrap() http.ResponseWriter { return w.w } +func (w *rw128) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw128) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw128) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw128) FlushError() error { + return (*rwState)(w).doFlushError() +} + +// combination 130/512: http.ResponseWriter, httpFlushError, io.StringWriter +type rw129 rwState + +func (w *rw129) Unwrap() http.ResponseWriter { return w.w } +func (w *rw129) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw129) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw129) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw129) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw129) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 131/512: http.ResponseWriter, httpFlushError, http.Pusher +type rw130 rwState + +func (w *rw130) Unwrap() http.ResponseWriter { return w.w } +func (w *rw130) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw130) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw130) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw130) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw130) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 132/512: http.ResponseWriter, httpFlushError, http.Pusher, io.StringWriter +type rw131 rwState + +func (w *rw131) Unwrap() http.ResponseWriter { return w.w } +func (w *rw131) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw131) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw131) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw131) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw131) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw131) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 133/512: http.ResponseWriter, httpFlushError, fullDuplexEnabler +type rw132 rwState + +func (w *rw132) Unwrap() http.ResponseWriter { return w.w } +func (w *rw132) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw132) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw132) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw132) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw132) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 134/512: http.ResponseWriter, httpFlushError, fullDuplexEnabler, io.StringWriter +type rw133 rwState + +func (w *rw133) Unwrap() http.ResponseWriter { return w.w } +func (w *rw133) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw133) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw133) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw133) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw133) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw133) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 135/512: http.ResponseWriter, httpFlushError, fullDuplexEnabler, http.Pusher +type rw134 rwState + +func (w *rw134) Unwrap() http.ResponseWriter { return w.w } +func (w *rw134) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw134) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw134) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw134) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw134) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw134) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 136/512: http.ResponseWriter, httpFlushError, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw135 rwState + +func (w *rw135) Unwrap() http.ResponseWriter { return w.w } +func (w *rw135) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw135) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw135) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw135) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw135) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw135) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw135) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 137/512: http.ResponseWriter, httpFlushError, deadliner +type rw136 rwState + +func (w *rw136) Unwrap() http.ResponseWriter { return w.w } +func (w *rw136) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw136) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw136) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw136) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw136) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw136) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} + +// combination 138/512: http.ResponseWriter, httpFlushError, deadliner, io.StringWriter +type rw137 rwState + +func (w *rw137) Unwrap() http.ResponseWriter { return w.w } +func (w *rw137) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw137) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw137) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw137) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw137) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw137) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw137) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 139/512: http.ResponseWriter, httpFlushError, deadliner, http.Pusher +type rw138 rwState + +func (w *rw138) Unwrap() http.ResponseWriter { return w.w } +func (w *rw138) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw138) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw138) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw138) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw138) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw138) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw138) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 140/512: http.ResponseWriter, httpFlushError, deadliner, http.Pusher, io.StringWriter +type rw139 rwState + +func (w *rw139) Unwrap() http.ResponseWriter { return w.w } +func (w *rw139) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw139) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw139) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw139) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw139) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw139) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw139) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw139) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 141/512: http.ResponseWriter, httpFlushError, deadliner, fullDuplexEnabler +type rw140 rwState + +func (w *rw140) Unwrap() http.ResponseWriter { return w.w } +func (w *rw140) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw140) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw140) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw140) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw140) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw140) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw140) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 142/512: http.ResponseWriter, httpFlushError, deadliner, fullDuplexEnabler, io.StringWriter +type rw141 rwState + +func (w *rw141) Unwrap() http.ResponseWriter { return w.w } +func (w *rw141) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw141) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw141) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw141) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw141) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw141) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw141) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw141) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 143/512: http.ResponseWriter, httpFlushError, deadliner, fullDuplexEnabler, http.Pusher +type rw142 rwState + +func (w *rw142) Unwrap() http.ResponseWriter { return w.w } +func (w *rw142) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw142) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw142) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw142) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw142) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw142) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw142) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw142) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 144/512: http.ResponseWriter, httpFlushError, deadliner, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw143 rwState + +func (w *rw143) Unwrap() http.ResponseWriter { return w.w } +func (w *rw143) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw143) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw143) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw143) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw143) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw143) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw143) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw143) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw143) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 145/512: http.ResponseWriter, httpFlushError, io.ReaderFrom +type rw144 rwState + +func (w *rw144) Unwrap() http.ResponseWriter { return w.w } +func (w *rw144) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw144) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw144) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw144) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw144) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} + +// combination 146/512: http.ResponseWriter, httpFlushError, io.ReaderFrom, io.StringWriter +type rw145 rwState + +func (w *rw145) Unwrap() http.ResponseWriter { return w.w } +func (w *rw145) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw145) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw145) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw145) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw145) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw145) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 147/512: http.ResponseWriter, httpFlushError, io.ReaderFrom, http.Pusher +type rw146 rwState + +func (w *rw146) Unwrap() http.ResponseWriter { return w.w } +func (w *rw146) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw146) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw146) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw146) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw146) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw146) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 148/512: http.ResponseWriter, httpFlushError, io.ReaderFrom, http.Pusher, io.StringWriter +type rw147 rwState + +func (w *rw147) Unwrap() http.ResponseWriter { return w.w } +func (w *rw147) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw147) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw147) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw147) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw147) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw147) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw147) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 149/512: http.ResponseWriter, httpFlushError, io.ReaderFrom, fullDuplexEnabler +type rw148 rwState + +func (w *rw148) Unwrap() http.ResponseWriter { return w.w } +func (w *rw148) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw148) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw148) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw148) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw148) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw148) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 150/512: http.ResponseWriter, httpFlushError, io.ReaderFrom, fullDuplexEnabler, io.StringWriter +type rw149 rwState + +func (w *rw149) Unwrap() http.ResponseWriter { return w.w } +func (w *rw149) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw149) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw149) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw149) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw149) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw149) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw149) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 151/512: http.ResponseWriter, httpFlushError, io.ReaderFrom, fullDuplexEnabler, http.Pusher +type rw150 rwState + +func (w *rw150) Unwrap() http.ResponseWriter { return w.w } +func (w *rw150) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw150) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw150) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw150) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw150) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw150) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw150) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 152/512: http.ResponseWriter, httpFlushError, io.ReaderFrom, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw151 rwState + +func (w *rw151) Unwrap() http.ResponseWriter { return w.w } +func (w *rw151) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw151) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw151) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw151) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw151) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw151) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw151) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw151) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 153/512: http.ResponseWriter, httpFlushError, io.ReaderFrom, deadliner +type rw152 rwState + +func (w *rw152) Unwrap() http.ResponseWriter { return w.w } +func (w *rw152) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw152) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw152) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw152) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw152) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw152) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw152) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} + +// combination 154/512: http.ResponseWriter, httpFlushError, io.ReaderFrom, deadliner, io.StringWriter +type rw153 rwState + +func (w *rw153) Unwrap() http.ResponseWriter { return w.w } +func (w *rw153) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw153) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw153) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw153) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw153) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw153) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw153) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw153) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 155/512: http.ResponseWriter, httpFlushError, io.ReaderFrom, deadliner, http.Pusher +type rw154 rwState + +func (w *rw154) Unwrap() http.ResponseWriter { return w.w } +func (w *rw154) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw154) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw154) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw154) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw154) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw154) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw154) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw154) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 156/512: http.ResponseWriter, httpFlushError, io.ReaderFrom, deadliner, http.Pusher, io.StringWriter +type rw155 rwState + +func (w *rw155) Unwrap() http.ResponseWriter { return w.w } +func (w *rw155) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw155) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw155) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw155) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw155) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw155) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw155) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw155) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw155) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 157/512: http.ResponseWriter, httpFlushError, io.ReaderFrom, deadliner, fullDuplexEnabler +type rw156 rwState + +func (w *rw156) Unwrap() http.ResponseWriter { return w.w } +func (w *rw156) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw156) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw156) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw156) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw156) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw156) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw156) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw156) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 158/512: http.ResponseWriter, httpFlushError, io.ReaderFrom, deadliner, fullDuplexEnabler, io.StringWriter +type rw157 rwState + +func (w *rw157) Unwrap() http.ResponseWriter { return w.w } +func (w *rw157) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw157) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw157) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw157) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw157) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw157) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw157) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw157) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw157) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 159/512: http.ResponseWriter, httpFlushError, io.ReaderFrom, deadliner, fullDuplexEnabler, http.Pusher +type rw158 rwState + +func (w *rw158) Unwrap() http.ResponseWriter { return w.w } +func (w *rw158) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw158) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw158) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw158) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw158) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw158) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw158) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw158) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw158) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 160/512: http.ResponseWriter, httpFlushError, io.ReaderFrom, deadliner, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw159 rwState + +func (w *rw159) Unwrap() http.ResponseWriter { return w.w } +func (w *rw159) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw159) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw159) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw159) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw159) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw159) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw159) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw159) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw159) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw159) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 161/512: http.ResponseWriter, httpFlushError, http.Hijacker +type rw160 rwState + +func (w *rw160) Unwrap() http.ResponseWriter { return w.w } +func (w *rw160) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw160) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw160) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw160) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw160) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} + +// combination 162/512: http.ResponseWriter, httpFlushError, http.Hijacker, io.StringWriter +type rw161 rwState + +func (w *rw161) Unwrap() http.ResponseWriter { return w.w } +func (w *rw161) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw161) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw161) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw161) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw161) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw161) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 163/512: http.ResponseWriter, httpFlushError, http.Hijacker, http.Pusher +type rw162 rwState + +func (w *rw162) Unwrap() http.ResponseWriter { return w.w } +func (w *rw162) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw162) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw162) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw162) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw162) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw162) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 164/512: http.ResponseWriter, httpFlushError, http.Hijacker, http.Pusher, io.StringWriter +type rw163 rwState + +func (w *rw163) Unwrap() http.ResponseWriter { return w.w } +func (w *rw163) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw163) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw163) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw163) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw163) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw163) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw163) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 165/512: http.ResponseWriter, httpFlushError, http.Hijacker, fullDuplexEnabler +type rw164 rwState + +func (w *rw164) Unwrap() http.ResponseWriter { return w.w } +func (w *rw164) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw164) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw164) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw164) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw164) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw164) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 166/512: http.ResponseWriter, httpFlushError, http.Hijacker, fullDuplexEnabler, io.StringWriter +type rw165 rwState + +func (w *rw165) Unwrap() http.ResponseWriter { return w.w } +func (w *rw165) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw165) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw165) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw165) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw165) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw165) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw165) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 167/512: http.ResponseWriter, httpFlushError, http.Hijacker, fullDuplexEnabler, http.Pusher +type rw166 rwState + +func (w *rw166) Unwrap() http.ResponseWriter { return w.w } +func (w *rw166) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw166) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw166) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw166) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw166) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw166) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw166) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 168/512: http.ResponseWriter, httpFlushError, http.Hijacker, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw167 rwState + +func (w *rw167) Unwrap() http.ResponseWriter { return w.w } +func (w *rw167) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw167) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw167) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw167) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw167) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw167) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw167) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw167) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 169/512: http.ResponseWriter, httpFlushError, http.Hijacker, deadliner +type rw168 rwState + +func (w *rw168) Unwrap() http.ResponseWriter { return w.w } +func (w *rw168) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw168) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw168) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw168) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw168) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw168) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw168) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} + +// combination 170/512: http.ResponseWriter, httpFlushError, http.Hijacker, deadliner, io.StringWriter +type rw169 rwState + +func (w *rw169) Unwrap() http.ResponseWriter { return w.w } +func (w *rw169) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw169) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw169) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw169) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw169) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw169) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw169) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw169) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 171/512: http.ResponseWriter, httpFlushError, http.Hijacker, deadliner, http.Pusher +type rw170 rwState + +func (w *rw170) Unwrap() http.ResponseWriter { return w.w } +func (w *rw170) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw170) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw170) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw170) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw170) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw170) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw170) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw170) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 172/512: http.ResponseWriter, httpFlushError, http.Hijacker, deadliner, http.Pusher, io.StringWriter +type rw171 rwState + +func (w *rw171) Unwrap() http.ResponseWriter { return w.w } +func (w *rw171) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw171) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw171) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw171) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw171) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw171) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw171) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw171) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw171) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 173/512: http.ResponseWriter, httpFlushError, http.Hijacker, deadliner, fullDuplexEnabler +type rw172 rwState + +func (w *rw172) Unwrap() http.ResponseWriter { return w.w } +func (w *rw172) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw172) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw172) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw172) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw172) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw172) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw172) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw172) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 174/512: http.ResponseWriter, httpFlushError, http.Hijacker, deadliner, fullDuplexEnabler, io.StringWriter +type rw173 rwState + +func (w *rw173) Unwrap() http.ResponseWriter { return w.w } +func (w *rw173) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw173) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw173) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw173) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw173) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw173) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw173) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw173) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw173) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 175/512: http.ResponseWriter, httpFlushError, http.Hijacker, deadliner, fullDuplexEnabler, http.Pusher +type rw174 rwState + +func (w *rw174) Unwrap() http.ResponseWriter { return w.w } +func (w *rw174) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw174) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw174) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw174) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw174) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw174) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw174) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw174) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw174) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 176/512: http.ResponseWriter, httpFlushError, http.Hijacker, deadliner, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw175 rwState + +func (w *rw175) Unwrap() http.ResponseWriter { return w.w } +func (w *rw175) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw175) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw175) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw175) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw175) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw175) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw175) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw175) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw175) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw175) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 177/512: http.ResponseWriter, httpFlushError, http.Hijacker, io.ReaderFrom +type rw176 rwState + +func (w *rw176) Unwrap() http.ResponseWriter { return w.w } +func (w *rw176) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw176) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw176) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw176) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw176) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw176) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} + +// combination 178/512: http.ResponseWriter, httpFlushError, http.Hijacker, io.ReaderFrom, io.StringWriter +type rw177 rwState + +func (w *rw177) Unwrap() http.ResponseWriter { return w.w } +func (w *rw177) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw177) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw177) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw177) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw177) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw177) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw177) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 179/512: http.ResponseWriter, httpFlushError, http.Hijacker, io.ReaderFrom, http.Pusher +type rw178 rwState + +func (w *rw178) Unwrap() http.ResponseWriter { return w.w } +func (w *rw178) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw178) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw178) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw178) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw178) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw178) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw178) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 180/512: http.ResponseWriter, httpFlushError, http.Hijacker, io.ReaderFrom, http.Pusher, io.StringWriter +type rw179 rwState + +func (w *rw179) Unwrap() http.ResponseWriter { return w.w } +func (w *rw179) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw179) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw179) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw179) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw179) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw179) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw179) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw179) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 181/512: http.ResponseWriter, httpFlushError, http.Hijacker, io.ReaderFrom, fullDuplexEnabler +type rw180 rwState + +func (w *rw180) Unwrap() http.ResponseWriter { return w.w } +func (w *rw180) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw180) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw180) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw180) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw180) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw180) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw180) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 182/512: http.ResponseWriter, httpFlushError, http.Hijacker, io.ReaderFrom, fullDuplexEnabler, io.StringWriter +type rw181 rwState + +func (w *rw181) Unwrap() http.ResponseWriter { return w.w } +func (w *rw181) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw181) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw181) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw181) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw181) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw181) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw181) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw181) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 183/512: http.ResponseWriter, httpFlushError, http.Hijacker, io.ReaderFrom, fullDuplexEnabler, http.Pusher +type rw182 rwState + +func (w *rw182) Unwrap() http.ResponseWriter { return w.w } +func (w *rw182) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw182) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw182) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw182) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw182) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw182) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw182) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw182) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 184/512: http.ResponseWriter, httpFlushError, http.Hijacker, io.ReaderFrom, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw183 rwState + +func (w *rw183) Unwrap() http.ResponseWriter { return w.w } +func (w *rw183) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw183) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw183) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw183) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw183) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw183) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw183) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw183) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw183) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 185/512: http.ResponseWriter, httpFlushError, http.Hijacker, io.ReaderFrom, deadliner +type rw184 rwState + +func (w *rw184) Unwrap() http.ResponseWriter { return w.w } +func (w *rw184) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw184) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw184) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw184) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw184) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw184) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw184) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw184) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} + +// combination 186/512: http.ResponseWriter, httpFlushError, http.Hijacker, io.ReaderFrom, deadliner, io.StringWriter +type rw185 rwState + +func (w *rw185) Unwrap() http.ResponseWriter { return w.w } +func (w *rw185) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw185) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw185) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw185) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw185) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw185) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw185) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw185) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw185) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 187/512: http.ResponseWriter, httpFlushError, http.Hijacker, io.ReaderFrom, deadliner, http.Pusher +type rw186 rwState + +func (w *rw186) Unwrap() http.ResponseWriter { return w.w } +func (w *rw186) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw186) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw186) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw186) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw186) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw186) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw186) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw186) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw186) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 188/512: http.ResponseWriter, httpFlushError, http.Hijacker, io.ReaderFrom, deadliner, http.Pusher, io.StringWriter +type rw187 rwState + +func (w *rw187) Unwrap() http.ResponseWriter { return w.w } +func (w *rw187) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw187) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw187) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw187) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw187) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw187) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw187) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw187) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw187) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw187) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 189/512: http.ResponseWriter, httpFlushError, http.Hijacker, io.ReaderFrom, deadliner, fullDuplexEnabler +type rw188 rwState + +func (w *rw188) Unwrap() http.ResponseWriter { return w.w } +func (w *rw188) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw188) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw188) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw188) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw188) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw188) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw188) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw188) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw188) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 190/512: http.ResponseWriter, httpFlushError, http.Hijacker, io.ReaderFrom, deadliner, fullDuplexEnabler, io.StringWriter +type rw189 rwState + +func (w *rw189) Unwrap() http.ResponseWriter { return w.w } +func (w *rw189) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw189) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw189) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw189) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw189) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw189) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw189) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw189) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw189) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw189) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 191/512: http.ResponseWriter, httpFlushError, http.Hijacker, io.ReaderFrom, deadliner, fullDuplexEnabler, http.Pusher +type rw190 rwState + +func (w *rw190) Unwrap() http.ResponseWriter { return w.w } +func (w *rw190) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw190) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw190) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw190) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw190) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw190) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw190) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw190) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw190) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw190) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 192/512: http.ResponseWriter, httpFlushError, http.Hijacker, io.ReaderFrom, deadliner, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw191 rwState + +func (w *rw191) Unwrap() http.ResponseWriter { return w.w } +func (w *rw191) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw191) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw191) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw191) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw191) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw191) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw191) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw191) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw191) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw191) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw191) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 193/512: http.ResponseWriter, httpFlushError, http.CloseNotifier +type rw192 rwState + +func (w *rw192) Unwrap() http.ResponseWriter { return w.w } +func (w *rw192) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw192) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw192) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw192) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw192) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} + +// combination 194/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, io.StringWriter +type rw193 rwState + +func (w *rw193) Unwrap() http.ResponseWriter { return w.w } +func (w *rw193) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw193) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw193) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw193) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw193) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw193) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 195/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, http.Pusher +type rw194 rwState + +func (w *rw194) Unwrap() http.ResponseWriter { return w.w } +func (w *rw194) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw194) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw194) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw194) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw194) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw194) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 196/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, http.Pusher, io.StringWriter +type rw195 rwState + +func (w *rw195) Unwrap() http.ResponseWriter { return w.w } +func (w *rw195) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw195) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw195) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw195) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw195) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw195) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw195) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 197/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, fullDuplexEnabler +type rw196 rwState + +func (w *rw196) Unwrap() http.ResponseWriter { return w.w } +func (w *rw196) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw196) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw196) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw196) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw196) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw196) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 198/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, fullDuplexEnabler, io.StringWriter +type rw197 rwState + +func (w *rw197) Unwrap() http.ResponseWriter { return w.w } +func (w *rw197) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw197) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw197) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw197) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw197) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw197) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw197) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 199/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, fullDuplexEnabler, http.Pusher +type rw198 rwState + +func (w *rw198) Unwrap() http.ResponseWriter { return w.w } +func (w *rw198) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw198) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw198) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw198) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw198) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw198) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw198) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 200/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw199 rwState + +func (w *rw199) Unwrap() http.ResponseWriter { return w.w } +func (w *rw199) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw199) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw199) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw199) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw199) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw199) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw199) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw199) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 201/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, deadliner +type rw200 rwState + +func (w *rw200) Unwrap() http.ResponseWriter { return w.w } +func (w *rw200) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw200) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw200) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw200) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw200) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw200) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw200) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} + +// combination 202/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, deadliner, io.StringWriter +type rw201 rwState + +func (w *rw201) Unwrap() http.ResponseWriter { return w.w } +func (w *rw201) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw201) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw201) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw201) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw201) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw201) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw201) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw201) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 203/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, deadliner, http.Pusher +type rw202 rwState + +func (w *rw202) Unwrap() http.ResponseWriter { return w.w } +func (w *rw202) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw202) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw202) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw202) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw202) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw202) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw202) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw202) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 204/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, deadliner, http.Pusher, io.StringWriter +type rw203 rwState + +func (w *rw203) Unwrap() http.ResponseWriter { return w.w } +func (w *rw203) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw203) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw203) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw203) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw203) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw203) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw203) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw203) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw203) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 205/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, deadliner, fullDuplexEnabler +type rw204 rwState + +func (w *rw204) Unwrap() http.ResponseWriter { return w.w } +func (w *rw204) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw204) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw204) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw204) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw204) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw204) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw204) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw204) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 206/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, deadliner, fullDuplexEnabler, io.StringWriter +type rw205 rwState + +func (w *rw205) Unwrap() http.ResponseWriter { return w.w } +func (w *rw205) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw205) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw205) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw205) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw205) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw205) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw205) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw205) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw205) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 207/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, deadliner, fullDuplexEnabler, http.Pusher +type rw206 rwState + +func (w *rw206) Unwrap() http.ResponseWriter { return w.w } +func (w *rw206) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw206) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw206) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw206) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw206) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw206) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw206) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw206) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw206) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 208/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, deadliner, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw207 rwState + +func (w *rw207) Unwrap() http.ResponseWriter { return w.w } +func (w *rw207) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw207) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw207) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw207) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw207) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw207) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw207) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw207) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw207) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw207) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 209/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, io.ReaderFrom +type rw208 rwState + +func (w *rw208) Unwrap() http.ResponseWriter { return w.w } +func (w *rw208) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw208) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw208) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw208) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw208) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw208) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} + +// combination 210/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, io.ReaderFrom, io.StringWriter +type rw209 rwState + +func (w *rw209) Unwrap() http.ResponseWriter { return w.w } +func (w *rw209) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw209) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw209) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw209) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw209) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw209) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw209) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 211/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, io.ReaderFrom, http.Pusher +type rw210 rwState + +func (w *rw210) Unwrap() http.ResponseWriter { return w.w } +func (w *rw210) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw210) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw210) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw210) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw210) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw210) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw210) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 212/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, io.ReaderFrom, http.Pusher, io.StringWriter +type rw211 rwState + +func (w *rw211) Unwrap() http.ResponseWriter { return w.w } +func (w *rw211) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw211) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw211) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw211) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw211) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw211) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw211) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw211) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 213/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, io.ReaderFrom, fullDuplexEnabler +type rw212 rwState + +func (w *rw212) Unwrap() http.ResponseWriter { return w.w } +func (w *rw212) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw212) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw212) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw212) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw212) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw212) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw212) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 214/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, io.ReaderFrom, fullDuplexEnabler, io.StringWriter +type rw213 rwState + +func (w *rw213) Unwrap() http.ResponseWriter { return w.w } +func (w *rw213) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw213) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw213) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw213) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw213) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw213) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw213) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw213) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 215/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, io.ReaderFrom, fullDuplexEnabler, http.Pusher +type rw214 rwState + +func (w *rw214) Unwrap() http.ResponseWriter { return w.w } +func (w *rw214) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw214) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw214) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw214) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw214) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw214) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw214) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw214) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 216/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, io.ReaderFrom, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw215 rwState + +func (w *rw215) Unwrap() http.ResponseWriter { return w.w } +func (w *rw215) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw215) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw215) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw215) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw215) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw215) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw215) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw215) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw215) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 217/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, io.ReaderFrom, deadliner +type rw216 rwState + +func (w *rw216) Unwrap() http.ResponseWriter { return w.w } +func (w *rw216) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw216) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw216) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw216) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw216) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw216) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw216) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw216) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} + +// combination 218/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, io.ReaderFrom, deadliner, io.StringWriter +type rw217 rwState + +func (w *rw217) Unwrap() http.ResponseWriter { return w.w } +func (w *rw217) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw217) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw217) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw217) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw217) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw217) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw217) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw217) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw217) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 219/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, io.ReaderFrom, deadliner, http.Pusher +type rw218 rwState + +func (w *rw218) Unwrap() http.ResponseWriter { return w.w } +func (w *rw218) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw218) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw218) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw218) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw218) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw218) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw218) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw218) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw218) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 220/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, io.ReaderFrom, deadliner, http.Pusher, io.StringWriter +type rw219 rwState + +func (w *rw219) Unwrap() http.ResponseWriter { return w.w } +func (w *rw219) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw219) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw219) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw219) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw219) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw219) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw219) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw219) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw219) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw219) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 221/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, io.ReaderFrom, deadliner, fullDuplexEnabler +type rw220 rwState + +func (w *rw220) Unwrap() http.ResponseWriter { return w.w } +func (w *rw220) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw220) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw220) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw220) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw220) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw220) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw220) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw220) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw220) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 222/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, io.ReaderFrom, deadliner, fullDuplexEnabler, io.StringWriter +type rw221 rwState + +func (w *rw221) Unwrap() http.ResponseWriter { return w.w } +func (w *rw221) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw221) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw221) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw221) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw221) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw221) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw221) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw221) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw221) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw221) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 223/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, io.ReaderFrom, deadliner, fullDuplexEnabler, http.Pusher +type rw222 rwState + +func (w *rw222) Unwrap() http.ResponseWriter { return w.w } +func (w *rw222) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw222) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw222) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw222) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw222) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw222) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw222) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw222) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw222) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw222) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 224/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, io.ReaderFrom, deadliner, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw223 rwState + +func (w *rw223) Unwrap() http.ResponseWriter { return w.w } +func (w *rw223) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw223) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw223) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw223) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw223) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw223) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw223) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw223) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw223) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw223) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw223) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 225/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, http.Hijacker +type rw224 rwState + +func (w *rw224) Unwrap() http.ResponseWriter { return w.w } +func (w *rw224) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw224) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw224) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw224) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw224) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw224) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} + +// combination 226/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, http.Hijacker, io.StringWriter +type rw225 rwState + +func (w *rw225) Unwrap() http.ResponseWriter { return w.w } +func (w *rw225) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw225) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw225) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw225) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw225) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw225) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw225) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 227/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, http.Hijacker, http.Pusher +type rw226 rwState + +func (w *rw226) Unwrap() http.ResponseWriter { return w.w } +func (w *rw226) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw226) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw226) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw226) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw226) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw226) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw226) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 228/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, http.Hijacker, http.Pusher, io.StringWriter +type rw227 rwState + +func (w *rw227) Unwrap() http.ResponseWriter { return w.w } +func (w *rw227) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw227) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw227) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw227) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw227) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw227) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw227) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw227) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 229/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, http.Hijacker, fullDuplexEnabler +type rw228 rwState + +func (w *rw228) Unwrap() http.ResponseWriter { return w.w } +func (w *rw228) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw228) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw228) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw228) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw228) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw228) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw228) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 230/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, http.Hijacker, fullDuplexEnabler, io.StringWriter +type rw229 rwState + +func (w *rw229) Unwrap() http.ResponseWriter { return w.w } +func (w *rw229) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw229) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw229) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw229) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw229) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw229) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw229) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw229) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 231/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, http.Hijacker, fullDuplexEnabler, http.Pusher +type rw230 rwState + +func (w *rw230) Unwrap() http.ResponseWriter { return w.w } +func (w *rw230) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw230) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw230) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw230) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw230) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw230) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw230) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw230) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 232/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, http.Hijacker, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw231 rwState + +func (w *rw231) Unwrap() http.ResponseWriter { return w.w } +func (w *rw231) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw231) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw231) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw231) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw231) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw231) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw231) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw231) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw231) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 233/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, http.Hijacker, deadliner +type rw232 rwState + +func (w *rw232) Unwrap() http.ResponseWriter { return w.w } +func (w *rw232) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw232) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw232) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw232) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw232) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw232) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw232) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw232) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} + +// combination 234/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, http.Hijacker, deadliner, io.StringWriter +type rw233 rwState + +func (w *rw233) Unwrap() http.ResponseWriter { return w.w } +func (w *rw233) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw233) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw233) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw233) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw233) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw233) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw233) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw233) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw233) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 235/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, http.Hijacker, deadliner, http.Pusher +type rw234 rwState + +func (w *rw234) Unwrap() http.ResponseWriter { return w.w } +func (w *rw234) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw234) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw234) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw234) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw234) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw234) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw234) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw234) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw234) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 236/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, http.Hijacker, deadliner, http.Pusher, io.StringWriter +type rw235 rwState + +func (w *rw235) Unwrap() http.ResponseWriter { return w.w } +func (w *rw235) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw235) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw235) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw235) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw235) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw235) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw235) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw235) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw235) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw235) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 237/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, http.Hijacker, deadliner, fullDuplexEnabler +type rw236 rwState + +func (w *rw236) Unwrap() http.ResponseWriter { return w.w } +func (w *rw236) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw236) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw236) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw236) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw236) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw236) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw236) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw236) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw236) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 238/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, http.Hijacker, deadliner, fullDuplexEnabler, io.StringWriter +type rw237 rwState + +func (w *rw237) Unwrap() http.ResponseWriter { return w.w } +func (w *rw237) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw237) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw237) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw237) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw237) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw237) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw237) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw237) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw237) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw237) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 239/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, http.Hijacker, deadliner, fullDuplexEnabler, http.Pusher +type rw238 rwState + +func (w *rw238) Unwrap() http.ResponseWriter { return w.w } +func (w *rw238) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw238) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw238) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw238) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw238) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw238) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw238) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw238) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw238) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw238) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 240/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, http.Hijacker, deadliner, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw239 rwState + +func (w *rw239) Unwrap() http.ResponseWriter { return w.w } +func (w *rw239) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw239) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw239) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw239) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw239) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw239) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw239) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw239) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw239) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw239) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw239) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 241/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, http.Hijacker, io.ReaderFrom +type rw240 rwState + +func (w *rw240) Unwrap() http.ResponseWriter { return w.w } +func (w *rw240) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw240) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw240) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw240) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw240) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw240) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw240) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} + +// combination 242/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, http.Hijacker, io.ReaderFrom, io.StringWriter +type rw241 rwState + +func (w *rw241) Unwrap() http.ResponseWriter { return w.w } +func (w *rw241) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw241) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw241) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw241) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw241) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw241) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw241) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw241) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 243/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, http.Hijacker, io.ReaderFrom, http.Pusher +type rw242 rwState + +func (w *rw242) Unwrap() http.ResponseWriter { return w.w } +func (w *rw242) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw242) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw242) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw242) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw242) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw242) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw242) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw242) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 244/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, http.Hijacker, io.ReaderFrom, http.Pusher, io.StringWriter +type rw243 rwState + +func (w *rw243) Unwrap() http.ResponseWriter { return w.w } +func (w *rw243) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw243) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw243) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw243) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw243) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw243) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw243) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw243) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw243) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 245/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, http.Hijacker, io.ReaderFrom, fullDuplexEnabler +type rw244 rwState + +func (w *rw244) Unwrap() http.ResponseWriter { return w.w } +func (w *rw244) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw244) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw244) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw244) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw244) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw244) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw244) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw244) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 246/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, http.Hijacker, io.ReaderFrom, fullDuplexEnabler, io.StringWriter +type rw245 rwState + +func (w *rw245) Unwrap() http.ResponseWriter { return w.w } +func (w *rw245) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw245) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw245) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw245) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw245) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw245) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw245) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw245) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw245) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 247/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, http.Hijacker, io.ReaderFrom, fullDuplexEnabler, http.Pusher +type rw246 rwState + +func (w *rw246) Unwrap() http.ResponseWriter { return w.w } +func (w *rw246) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw246) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw246) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw246) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw246) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw246) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw246) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw246) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw246) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 248/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, http.Hijacker, io.ReaderFrom, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw247 rwState + +func (w *rw247) Unwrap() http.ResponseWriter { return w.w } +func (w *rw247) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw247) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw247) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw247) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw247) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw247) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw247) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw247) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw247) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw247) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 249/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, http.Hijacker, io.ReaderFrom, deadliner +type rw248 rwState + +func (w *rw248) Unwrap() http.ResponseWriter { return w.w } +func (w *rw248) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw248) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw248) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw248) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw248) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw248) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw248) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw248) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw248) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} + +// combination 250/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, http.Hijacker, io.ReaderFrom, deadliner, io.StringWriter +type rw249 rwState + +func (w *rw249) Unwrap() http.ResponseWriter { return w.w } +func (w *rw249) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw249) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw249) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw249) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw249) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw249) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw249) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw249) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw249) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw249) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 251/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, http.Hijacker, io.ReaderFrom, deadliner, http.Pusher +type rw250 rwState + +func (w *rw250) Unwrap() http.ResponseWriter { return w.w } +func (w *rw250) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw250) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw250) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw250) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw250) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw250) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw250) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw250) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw250) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw250) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 252/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, http.Hijacker, io.ReaderFrom, deadliner, http.Pusher, io.StringWriter +type rw251 rwState + +func (w *rw251) Unwrap() http.ResponseWriter { return w.w } +func (w *rw251) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw251) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw251) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw251) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw251) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw251) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw251) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw251) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw251) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw251) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw251) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 253/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, http.Hijacker, io.ReaderFrom, deadliner, fullDuplexEnabler +type rw252 rwState + +func (w *rw252) Unwrap() http.ResponseWriter { return w.w } +func (w *rw252) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw252) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw252) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw252) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw252) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw252) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw252) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw252) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw252) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw252) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 254/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, http.Hijacker, io.ReaderFrom, deadliner, fullDuplexEnabler, io.StringWriter +type rw253 rwState + +func (w *rw253) Unwrap() http.ResponseWriter { return w.w } +func (w *rw253) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw253) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw253) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw253) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw253) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw253) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw253) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw253) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw253) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw253) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw253) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 255/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, http.Hijacker, io.ReaderFrom, deadliner, fullDuplexEnabler, http.Pusher +type rw254 rwState + +func (w *rw254) Unwrap() http.ResponseWriter { return w.w } +func (w *rw254) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw254) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw254) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw254) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw254) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw254) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw254) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw254) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw254) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw254) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw254) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 256/512: http.ResponseWriter, httpFlushError, http.CloseNotifier, http.Hijacker, io.ReaderFrom, deadliner, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw255 rwState + +func (w *rw255) Unwrap() http.ResponseWriter { return w.w } +func (w *rw255) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw255) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw255) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw255) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw255) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw255) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw255) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw255) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw255) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw255) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw255) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw255) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 257/512: http.ResponseWriter, http.Flusher +type rw256 rwState + +func (w *rw256) Unwrap() http.ResponseWriter { return w.w } +func (w *rw256) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw256) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw256) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw256) Flush() { + (*rwState)(w).doFlush() +} + +// combination 258/512: http.ResponseWriter, http.Flusher, io.StringWriter +type rw257 rwState + +func (w *rw257) Unwrap() http.ResponseWriter { return w.w } +func (w *rw257) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw257) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw257) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw257) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw257) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 259/512: http.ResponseWriter, http.Flusher, http.Pusher +type rw258 rwState + +func (w *rw258) Unwrap() http.ResponseWriter { return w.w } +func (w *rw258) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw258) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw258) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw258) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw258) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 260/512: http.ResponseWriter, http.Flusher, http.Pusher, io.StringWriter +type rw259 rwState + +func (w *rw259) Unwrap() http.ResponseWriter { return w.w } +func (w *rw259) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw259) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw259) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw259) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw259) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw259) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 261/512: http.ResponseWriter, http.Flusher, fullDuplexEnabler +type rw260 rwState + +func (w *rw260) Unwrap() http.ResponseWriter { return w.w } +func (w *rw260) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw260) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw260) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw260) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw260) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 262/512: http.ResponseWriter, http.Flusher, fullDuplexEnabler, io.StringWriter +type rw261 rwState + +func (w *rw261) Unwrap() http.ResponseWriter { return w.w } +func (w *rw261) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw261) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw261) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw261) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw261) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw261) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 263/512: http.ResponseWriter, http.Flusher, fullDuplexEnabler, http.Pusher +type rw262 rwState + +func (w *rw262) Unwrap() http.ResponseWriter { return w.w } +func (w *rw262) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw262) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw262) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw262) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw262) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw262) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 264/512: http.ResponseWriter, http.Flusher, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw263 rwState + +func (w *rw263) Unwrap() http.ResponseWriter { return w.w } +func (w *rw263) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw263) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw263) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw263) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw263) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw263) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw263) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 265/512: http.ResponseWriter, http.Flusher, deadliner +type rw264 rwState + +func (w *rw264) Unwrap() http.ResponseWriter { return w.w } +func (w *rw264) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw264) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw264) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw264) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw264) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw264) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} + +// combination 266/512: http.ResponseWriter, http.Flusher, deadliner, io.StringWriter +type rw265 rwState + +func (w *rw265) Unwrap() http.ResponseWriter { return w.w } +func (w *rw265) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw265) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw265) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw265) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw265) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw265) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw265) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 267/512: http.ResponseWriter, http.Flusher, deadliner, http.Pusher +type rw266 rwState + +func (w *rw266) Unwrap() http.ResponseWriter { return w.w } +func (w *rw266) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw266) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw266) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw266) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw266) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw266) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw266) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 268/512: http.ResponseWriter, http.Flusher, deadliner, http.Pusher, io.StringWriter +type rw267 rwState + +func (w *rw267) Unwrap() http.ResponseWriter { return w.w } +func (w *rw267) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw267) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw267) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw267) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw267) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw267) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw267) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw267) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 269/512: http.ResponseWriter, http.Flusher, deadliner, fullDuplexEnabler +type rw268 rwState + +func (w *rw268) Unwrap() http.ResponseWriter { return w.w } +func (w *rw268) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw268) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw268) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw268) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw268) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw268) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw268) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 270/512: http.ResponseWriter, http.Flusher, deadliner, fullDuplexEnabler, io.StringWriter +type rw269 rwState + +func (w *rw269) Unwrap() http.ResponseWriter { return w.w } +func (w *rw269) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw269) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw269) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw269) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw269) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw269) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw269) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw269) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 271/512: http.ResponseWriter, http.Flusher, deadliner, fullDuplexEnabler, http.Pusher +type rw270 rwState + +func (w *rw270) Unwrap() http.ResponseWriter { return w.w } +func (w *rw270) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw270) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw270) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw270) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw270) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw270) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw270) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw270) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 272/512: http.ResponseWriter, http.Flusher, deadliner, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw271 rwState + +func (w *rw271) Unwrap() http.ResponseWriter { return w.w } +func (w *rw271) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw271) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw271) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw271) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw271) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw271) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw271) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw271) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw271) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 273/512: http.ResponseWriter, http.Flusher, io.ReaderFrom +type rw272 rwState + +func (w *rw272) Unwrap() http.ResponseWriter { return w.w } +func (w *rw272) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw272) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw272) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw272) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw272) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} + +// combination 274/512: http.ResponseWriter, http.Flusher, io.ReaderFrom, io.StringWriter +type rw273 rwState + +func (w *rw273) Unwrap() http.ResponseWriter { return w.w } +func (w *rw273) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw273) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw273) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw273) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw273) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw273) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 275/512: http.ResponseWriter, http.Flusher, io.ReaderFrom, http.Pusher +type rw274 rwState + +func (w *rw274) Unwrap() http.ResponseWriter { return w.w } +func (w *rw274) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw274) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw274) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw274) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw274) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw274) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 276/512: http.ResponseWriter, http.Flusher, io.ReaderFrom, http.Pusher, io.StringWriter +type rw275 rwState + +func (w *rw275) Unwrap() http.ResponseWriter { return w.w } +func (w *rw275) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw275) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw275) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw275) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw275) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw275) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw275) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 277/512: http.ResponseWriter, http.Flusher, io.ReaderFrom, fullDuplexEnabler +type rw276 rwState + +func (w *rw276) Unwrap() http.ResponseWriter { return w.w } +func (w *rw276) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw276) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw276) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw276) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw276) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw276) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 278/512: http.ResponseWriter, http.Flusher, io.ReaderFrom, fullDuplexEnabler, io.StringWriter +type rw277 rwState + +func (w *rw277) Unwrap() http.ResponseWriter { return w.w } +func (w *rw277) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw277) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw277) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw277) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw277) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw277) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw277) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 279/512: http.ResponseWriter, http.Flusher, io.ReaderFrom, fullDuplexEnabler, http.Pusher +type rw278 rwState + +func (w *rw278) Unwrap() http.ResponseWriter { return w.w } +func (w *rw278) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw278) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw278) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw278) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw278) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw278) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw278) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 280/512: http.ResponseWriter, http.Flusher, io.ReaderFrom, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw279 rwState + +func (w *rw279) Unwrap() http.ResponseWriter { return w.w } +func (w *rw279) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw279) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw279) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw279) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw279) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw279) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw279) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw279) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 281/512: http.ResponseWriter, http.Flusher, io.ReaderFrom, deadliner +type rw280 rwState + +func (w *rw280) Unwrap() http.ResponseWriter { return w.w } +func (w *rw280) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw280) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw280) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw280) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw280) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw280) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw280) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} + +// combination 282/512: http.ResponseWriter, http.Flusher, io.ReaderFrom, deadliner, io.StringWriter +type rw281 rwState + +func (w *rw281) Unwrap() http.ResponseWriter { return w.w } +func (w *rw281) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw281) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw281) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw281) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw281) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw281) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw281) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw281) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 283/512: http.ResponseWriter, http.Flusher, io.ReaderFrom, deadliner, http.Pusher +type rw282 rwState + +func (w *rw282) Unwrap() http.ResponseWriter { return w.w } +func (w *rw282) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw282) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw282) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw282) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw282) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw282) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw282) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw282) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 284/512: http.ResponseWriter, http.Flusher, io.ReaderFrom, deadliner, http.Pusher, io.StringWriter +type rw283 rwState + +func (w *rw283) Unwrap() http.ResponseWriter { return w.w } +func (w *rw283) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw283) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw283) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw283) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw283) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw283) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw283) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw283) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw283) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 285/512: http.ResponseWriter, http.Flusher, io.ReaderFrom, deadliner, fullDuplexEnabler +type rw284 rwState + +func (w *rw284) Unwrap() http.ResponseWriter { return w.w } +func (w *rw284) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw284) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw284) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw284) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw284) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw284) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw284) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw284) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 286/512: http.ResponseWriter, http.Flusher, io.ReaderFrom, deadliner, fullDuplexEnabler, io.StringWriter +type rw285 rwState + +func (w *rw285) Unwrap() http.ResponseWriter { return w.w } +func (w *rw285) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw285) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw285) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw285) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw285) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw285) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw285) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw285) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw285) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 287/512: http.ResponseWriter, http.Flusher, io.ReaderFrom, deadliner, fullDuplexEnabler, http.Pusher +type rw286 rwState + +func (w *rw286) Unwrap() http.ResponseWriter { return w.w } +func (w *rw286) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw286) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw286) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw286) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw286) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw286) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw286) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw286) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw286) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 288/512: http.ResponseWriter, http.Flusher, io.ReaderFrom, deadliner, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw287 rwState + +func (w *rw287) Unwrap() http.ResponseWriter { return w.w } +func (w *rw287) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw287) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw287) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw287) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw287) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw287) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw287) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw287) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw287) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw287) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 289/512: http.ResponseWriter, http.Flusher, http.Hijacker +type rw288 rwState + +func (w *rw288) Unwrap() http.ResponseWriter { return w.w } +func (w *rw288) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw288) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw288) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw288) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw288) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} + +// combination 290/512: http.ResponseWriter, http.Flusher, http.Hijacker, io.StringWriter +type rw289 rwState + +func (w *rw289) Unwrap() http.ResponseWriter { return w.w } +func (w *rw289) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw289) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw289) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw289) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw289) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw289) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 291/512: http.ResponseWriter, http.Flusher, http.Hijacker, http.Pusher +type rw290 rwState + +func (w *rw290) Unwrap() http.ResponseWriter { return w.w } +func (w *rw290) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw290) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw290) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw290) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw290) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw290) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 292/512: http.ResponseWriter, http.Flusher, http.Hijacker, http.Pusher, io.StringWriter +type rw291 rwState + +func (w *rw291) Unwrap() http.ResponseWriter { return w.w } +func (w *rw291) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw291) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw291) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw291) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw291) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw291) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw291) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 293/512: http.ResponseWriter, http.Flusher, http.Hijacker, fullDuplexEnabler +type rw292 rwState + +func (w *rw292) Unwrap() http.ResponseWriter { return w.w } +func (w *rw292) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw292) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw292) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw292) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw292) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw292) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 294/512: http.ResponseWriter, http.Flusher, http.Hijacker, fullDuplexEnabler, io.StringWriter +type rw293 rwState + +func (w *rw293) Unwrap() http.ResponseWriter { return w.w } +func (w *rw293) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw293) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw293) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw293) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw293) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw293) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw293) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 295/512: http.ResponseWriter, http.Flusher, http.Hijacker, fullDuplexEnabler, http.Pusher +type rw294 rwState + +func (w *rw294) Unwrap() http.ResponseWriter { return w.w } +func (w *rw294) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw294) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw294) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw294) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw294) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw294) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw294) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 296/512: http.ResponseWriter, http.Flusher, http.Hijacker, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw295 rwState + +func (w *rw295) Unwrap() http.ResponseWriter { return w.w } +func (w *rw295) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw295) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw295) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw295) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw295) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw295) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw295) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw295) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 297/512: http.ResponseWriter, http.Flusher, http.Hijacker, deadliner +type rw296 rwState + +func (w *rw296) Unwrap() http.ResponseWriter { return w.w } +func (w *rw296) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw296) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw296) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw296) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw296) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw296) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw296) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} + +// combination 298/512: http.ResponseWriter, http.Flusher, http.Hijacker, deadliner, io.StringWriter +type rw297 rwState + +func (w *rw297) Unwrap() http.ResponseWriter { return w.w } +func (w *rw297) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw297) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw297) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw297) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw297) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw297) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw297) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw297) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 299/512: http.ResponseWriter, http.Flusher, http.Hijacker, deadliner, http.Pusher +type rw298 rwState + +func (w *rw298) Unwrap() http.ResponseWriter { return w.w } +func (w *rw298) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw298) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw298) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw298) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw298) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw298) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw298) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw298) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 300/512: http.ResponseWriter, http.Flusher, http.Hijacker, deadliner, http.Pusher, io.StringWriter +type rw299 rwState + +func (w *rw299) Unwrap() http.ResponseWriter { return w.w } +func (w *rw299) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw299) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw299) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw299) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw299) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw299) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw299) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw299) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw299) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 301/512: http.ResponseWriter, http.Flusher, http.Hijacker, deadliner, fullDuplexEnabler +type rw300 rwState + +func (w *rw300) Unwrap() http.ResponseWriter { return w.w } +func (w *rw300) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw300) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw300) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw300) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw300) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw300) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw300) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw300) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 302/512: http.ResponseWriter, http.Flusher, http.Hijacker, deadliner, fullDuplexEnabler, io.StringWriter +type rw301 rwState + +func (w *rw301) Unwrap() http.ResponseWriter { return w.w } +func (w *rw301) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw301) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw301) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw301) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw301) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw301) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw301) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw301) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw301) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 303/512: http.ResponseWriter, http.Flusher, http.Hijacker, deadliner, fullDuplexEnabler, http.Pusher +type rw302 rwState + +func (w *rw302) Unwrap() http.ResponseWriter { return w.w } +func (w *rw302) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw302) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw302) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw302) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw302) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw302) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw302) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw302) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw302) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 304/512: http.ResponseWriter, http.Flusher, http.Hijacker, deadliner, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw303 rwState + +func (w *rw303) Unwrap() http.ResponseWriter { return w.w } +func (w *rw303) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw303) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw303) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw303) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw303) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw303) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw303) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw303) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw303) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw303) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 305/512: http.ResponseWriter, http.Flusher, http.Hijacker, io.ReaderFrom +type rw304 rwState + +func (w *rw304) Unwrap() http.ResponseWriter { return w.w } +func (w *rw304) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw304) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw304) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw304) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw304) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw304) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} + +// combination 306/512: http.ResponseWriter, http.Flusher, http.Hijacker, io.ReaderFrom, io.StringWriter +type rw305 rwState + +func (w *rw305) Unwrap() http.ResponseWriter { return w.w } +func (w *rw305) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw305) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw305) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw305) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw305) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw305) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw305) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 307/512: http.ResponseWriter, http.Flusher, http.Hijacker, io.ReaderFrom, http.Pusher +type rw306 rwState + +func (w *rw306) Unwrap() http.ResponseWriter { return w.w } +func (w *rw306) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw306) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw306) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw306) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw306) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw306) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw306) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 308/512: http.ResponseWriter, http.Flusher, http.Hijacker, io.ReaderFrom, http.Pusher, io.StringWriter +type rw307 rwState + +func (w *rw307) Unwrap() http.ResponseWriter { return w.w } +func (w *rw307) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw307) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw307) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw307) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw307) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw307) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw307) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw307) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 309/512: http.ResponseWriter, http.Flusher, http.Hijacker, io.ReaderFrom, fullDuplexEnabler +type rw308 rwState + +func (w *rw308) Unwrap() http.ResponseWriter { return w.w } +func (w *rw308) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw308) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw308) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw308) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw308) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw308) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw308) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 310/512: http.ResponseWriter, http.Flusher, http.Hijacker, io.ReaderFrom, fullDuplexEnabler, io.StringWriter +type rw309 rwState + +func (w *rw309) Unwrap() http.ResponseWriter { return w.w } +func (w *rw309) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw309) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw309) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw309) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw309) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw309) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw309) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw309) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 311/512: http.ResponseWriter, http.Flusher, http.Hijacker, io.ReaderFrom, fullDuplexEnabler, http.Pusher +type rw310 rwState + +func (w *rw310) Unwrap() http.ResponseWriter { return w.w } +func (w *rw310) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw310) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw310) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw310) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw310) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw310) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw310) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw310) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 312/512: http.ResponseWriter, http.Flusher, http.Hijacker, io.ReaderFrom, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw311 rwState + +func (w *rw311) Unwrap() http.ResponseWriter { return w.w } +func (w *rw311) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw311) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw311) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw311) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw311) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw311) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw311) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw311) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw311) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 313/512: http.ResponseWriter, http.Flusher, http.Hijacker, io.ReaderFrom, deadliner +type rw312 rwState + +func (w *rw312) Unwrap() http.ResponseWriter { return w.w } +func (w *rw312) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw312) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw312) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw312) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw312) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw312) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw312) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw312) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} + +// combination 314/512: http.ResponseWriter, http.Flusher, http.Hijacker, io.ReaderFrom, deadliner, io.StringWriter +type rw313 rwState + +func (w *rw313) Unwrap() http.ResponseWriter { return w.w } +func (w *rw313) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw313) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw313) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw313) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw313) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw313) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw313) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw313) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw313) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 315/512: http.ResponseWriter, http.Flusher, http.Hijacker, io.ReaderFrom, deadliner, http.Pusher +type rw314 rwState + +func (w *rw314) Unwrap() http.ResponseWriter { return w.w } +func (w *rw314) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw314) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw314) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw314) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw314) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw314) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw314) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw314) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw314) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 316/512: http.ResponseWriter, http.Flusher, http.Hijacker, io.ReaderFrom, deadliner, http.Pusher, io.StringWriter +type rw315 rwState + +func (w *rw315) Unwrap() http.ResponseWriter { return w.w } +func (w *rw315) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw315) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw315) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw315) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw315) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw315) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw315) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw315) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw315) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw315) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 317/512: http.ResponseWriter, http.Flusher, http.Hijacker, io.ReaderFrom, deadliner, fullDuplexEnabler +type rw316 rwState + +func (w *rw316) Unwrap() http.ResponseWriter { return w.w } +func (w *rw316) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw316) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw316) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw316) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw316) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw316) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw316) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw316) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw316) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 318/512: http.ResponseWriter, http.Flusher, http.Hijacker, io.ReaderFrom, deadliner, fullDuplexEnabler, io.StringWriter +type rw317 rwState + +func (w *rw317) Unwrap() http.ResponseWriter { return w.w } +func (w *rw317) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw317) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw317) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw317) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw317) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw317) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw317) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw317) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw317) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw317) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 319/512: http.ResponseWriter, http.Flusher, http.Hijacker, io.ReaderFrom, deadliner, fullDuplexEnabler, http.Pusher +type rw318 rwState + +func (w *rw318) Unwrap() http.ResponseWriter { return w.w } +func (w *rw318) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw318) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw318) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw318) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw318) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw318) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw318) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw318) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw318) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw318) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 320/512: http.ResponseWriter, http.Flusher, http.Hijacker, io.ReaderFrom, deadliner, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw319 rwState + +func (w *rw319) Unwrap() http.ResponseWriter { return w.w } +func (w *rw319) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw319) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw319) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw319) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw319) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw319) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw319) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw319) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw319) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw319) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw319) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 321/512: http.ResponseWriter, http.Flusher, http.CloseNotifier +type rw320 rwState + +func (w *rw320) Unwrap() http.ResponseWriter { return w.w } +func (w *rw320) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw320) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw320) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw320) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw320) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} + +// combination 322/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, io.StringWriter +type rw321 rwState + +func (w *rw321) Unwrap() http.ResponseWriter { return w.w } +func (w *rw321) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw321) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw321) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw321) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw321) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw321) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 323/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, http.Pusher +type rw322 rwState + +func (w *rw322) Unwrap() http.ResponseWriter { return w.w } +func (w *rw322) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw322) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw322) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw322) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw322) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw322) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 324/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, http.Pusher, io.StringWriter +type rw323 rwState + +func (w *rw323) Unwrap() http.ResponseWriter { return w.w } +func (w *rw323) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw323) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw323) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw323) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw323) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw323) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw323) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 325/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, fullDuplexEnabler +type rw324 rwState + +func (w *rw324) Unwrap() http.ResponseWriter { return w.w } +func (w *rw324) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw324) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw324) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw324) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw324) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw324) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 326/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, fullDuplexEnabler, io.StringWriter +type rw325 rwState + +func (w *rw325) Unwrap() http.ResponseWriter { return w.w } +func (w *rw325) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw325) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw325) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw325) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw325) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw325) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw325) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 327/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, fullDuplexEnabler, http.Pusher +type rw326 rwState + +func (w *rw326) Unwrap() http.ResponseWriter { return w.w } +func (w *rw326) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw326) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw326) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw326) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw326) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw326) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw326) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 328/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw327 rwState + +func (w *rw327) Unwrap() http.ResponseWriter { return w.w } +func (w *rw327) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw327) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw327) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw327) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw327) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw327) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw327) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw327) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 329/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, deadliner +type rw328 rwState + +func (w *rw328) Unwrap() http.ResponseWriter { return w.w } +func (w *rw328) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw328) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw328) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw328) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw328) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw328) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw328) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} + +// combination 330/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, deadliner, io.StringWriter +type rw329 rwState + +func (w *rw329) Unwrap() http.ResponseWriter { return w.w } +func (w *rw329) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw329) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw329) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw329) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw329) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw329) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw329) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw329) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 331/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, deadliner, http.Pusher +type rw330 rwState + +func (w *rw330) Unwrap() http.ResponseWriter { return w.w } +func (w *rw330) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw330) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw330) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw330) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw330) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw330) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw330) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw330) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 332/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, deadliner, http.Pusher, io.StringWriter +type rw331 rwState + +func (w *rw331) Unwrap() http.ResponseWriter { return w.w } +func (w *rw331) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw331) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw331) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw331) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw331) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw331) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw331) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw331) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw331) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 333/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, deadliner, fullDuplexEnabler +type rw332 rwState + +func (w *rw332) Unwrap() http.ResponseWriter { return w.w } +func (w *rw332) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw332) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw332) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw332) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw332) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw332) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw332) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw332) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 334/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, deadliner, fullDuplexEnabler, io.StringWriter +type rw333 rwState + +func (w *rw333) Unwrap() http.ResponseWriter { return w.w } +func (w *rw333) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw333) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw333) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw333) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw333) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw333) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw333) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw333) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw333) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 335/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, deadliner, fullDuplexEnabler, http.Pusher +type rw334 rwState + +func (w *rw334) Unwrap() http.ResponseWriter { return w.w } +func (w *rw334) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw334) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw334) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw334) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw334) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw334) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw334) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw334) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw334) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 336/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, deadliner, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw335 rwState + +func (w *rw335) Unwrap() http.ResponseWriter { return w.w } +func (w *rw335) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw335) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw335) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw335) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw335) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw335) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw335) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw335) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw335) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw335) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 337/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, io.ReaderFrom +type rw336 rwState + +func (w *rw336) Unwrap() http.ResponseWriter { return w.w } +func (w *rw336) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw336) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw336) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw336) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw336) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw336) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} + +// combination 338/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, io.ReaderFrom, io.StringWriter +type rw337 rwState + +func (w *rw337) Unwrap() http.ResponseWriter { return w.w } +func (w *rw337) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw337) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw337) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw337) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw337) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw337) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw337) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 339/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, io.ReaderFrom, http.Pusher +type rw338 rwState + +func (w *rw338) Unwrap() http.ResponseWriter { return w.w } +func (w *rw338) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw338) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw338) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw338) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw338) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw338) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw338) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 340/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, io.ReaderFrom, http.Pusher, io.StringWriter +type rw339 rwState + +func (w *rw339) Unwrap() http.ResponseWriter { return w.w } +func (w *rw339) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw339) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw339) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw339) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw339) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw339) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw339) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw339) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 341/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, io.ReaderFrom, fullDuplexEnabler +type rw340 rwState + +func (w *rw340) Unwrap() http.ResponseWriter { return w.w } +func (w *rw340) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw340) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw340) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw340) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw340) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw340) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw340) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 342/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, io.ReaderFrom, fullDuplexEnabler, io.StringWriter +type rw341 rwState + +func (w *rw341) Unwrap() http.ResponseWriter { return w.w } +func (w *rw341) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw341) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw341) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw341) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw341) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw341) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw341) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw341) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 343/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, io.ReaderFrom, fullDuplexEnabler, http.Pusher +type rw342 rwState + +func (w *rw342) Unwrap() http.ResponseWriter { return w.w } +func (w *rw342) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw342) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw342) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw342) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw342) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw342) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw342) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw342) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 344/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, io.ReaderFrom, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw343 rwState + +func (w *rw343) Unwrap() http.ResponseWriter { return w.w } +func (w *rw343) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw343) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw343) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw343) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw343) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw343) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw343) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw343) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw343) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 345/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, io.ReaderFrom, deadliner +type rw344 rwState + +func (w *rw344) Unwrap() http.ResponseWriter { return w.w } +func (w *rw344) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw344) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw344) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw344) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw344) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw344) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw344) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw344) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} + +// combination 346/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, io.ReaderFrom, deadliner, io.StringWriter +type rw345 rwState + +func (w *rw345) Unwrap() http.ResponseWriter { return w.w } +func (w *rw345) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw345) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw345) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw345) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw345) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw345) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw345) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw345) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw345) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 347/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, io.ReaderFrom, deadliner, http.Pusher +type rw346 rwState + +func (w *rw346) Unwrap() http.ResponseWriter { return w.w } +func (w *rw346) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw346) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw346) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw346) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw346) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw346) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw346) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw346) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw346) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 348/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, io.ReaderFrom, deadliner, http.Pusher, io.StringWriter +type rw347 rwState + +func (w *rw347) Unwrap() http.ResponseWriter { return w.w } +func (w *rw347) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw347) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw347) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw347) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw347) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw347) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw347) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw347) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw347) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw347) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 349/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, io.ReaderFrom, deadliner, fullDuplexEnabler +type rw348 rwState + +func (w *rw348) Unwrap() http.ResponseWriter { return w.w } +func (w *rw348) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw348) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw348) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw348) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw348) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw348) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw348) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw348) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw348) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 350/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, io.ReaderFrom, deadliner, fullDuplexEnabler, io.StringWriter +type rw349 rwState + +func (w *rw349) Unwrap() http.ResponseWriter { return w.w } +func (w *rw349) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw349) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw349) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw349) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw349) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw349) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw349) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw349) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw349) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw349) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 351/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, io.ReaderFrom, deadliner, fullDuplexEnabler, http.Pusher +type rw350 rwState + +func (w *rw350) Unwrap() http.ResponseWriter { return w.w } +func (w *rw350) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw350) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw350) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw350) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw350) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw350) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw350) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw350) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw350) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw350) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 352/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, io.ReaderFrom, deadliner, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw351 rwState + +func (w *rw351) Unwrap() http.ResponseWriter { return w.w } +func (w *rw351) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw351) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw351) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw351) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw351) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw351) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw351) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw351) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw351) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw351) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw351) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 353/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, http.Hijacker +type rw352 rwState + +func (w *rw352) Unwrap() http.ResponseWriter { return w.w } +func (w *rw352) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw352) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw352) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw352) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw352) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw352) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} + +// combination 354/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, http.Hijacker, io.StringWriter +type rw353 rwState + +func (w *rw353) Unwrap() http.ResponseWriter { return w.w } +func (w *rw353) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw353) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw353) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw353) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw353) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw353) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw353) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 355/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, http.Hijacker, http.Pusher +type rw354 rwState + +func (w *rw354) Unwrap() http.ResponseWriter { return w.w } +func (w *rw354) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw354) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw354) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw354) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw354) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw354) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw354) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 356/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, http.Hijacker, http.Pusher, io.StringWriter +type rw355 rwState + +func (w *rw355) Unwrap() http.ResponseWriter { return w.w } +func (w *rw355) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw355) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw355) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw355) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw355) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw355) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw355) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw355) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 357/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, http.Hijacker, fullDuplexEnabler +type rw356 rwState + +func (w *rw356) Unwrap() http.ResponseWriter { return w.w } +func (w *rw356) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw356) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw356) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw356) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw356) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw356) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw356) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 358/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, http.Hijacker, fullDuplexEnabler, io.StringWriter +type rw357 rwState + +func (w *rw357) Unwrap() http.ResponseWriter { return w.w } +func (w *rw357) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw357) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw357) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw357) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw357) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw357) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw357) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw357) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 359/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, http.Hijacker, fullDuplexEnabler, http.Pusher +type rw358 rwState + +func (w *rw358) Unwrap() http.ResponseWriter { return w.w } +func (w *rw358) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw358) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw358) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw358) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw358) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw358) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw358) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw358) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 360/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, http.Hijacker, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw359 rwState + +func (w *rw359) Unwrap() http.ResponseWriter { return w.w } +func (w *rw359) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw359) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw359) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw359) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw359) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw359) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw359) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw359) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw359) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 361/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, http.Hijacker, deadliner +type rw360 rwState + +func (w *rw360) Unwrap() http.ResponseWriter { return w.w } +func (w *rw360) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw360) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw360) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw360) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw360) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw360) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw360) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw360) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} + +// combination 362/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, http.Hijacker, deadliner, io.StringWriter +type rw361 rwState + +func (w *rw361) Unwrap() http.ResponseWriter { return w.w } +func (w *rw361) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw361) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw361) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw361) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw361) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw361) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw361) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw361) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw361) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 363/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, http.Hijacker, deadliner, http.Pusher +type rw362 rwState + +func (w *rw362) Unwrap() http.ResponseWriter { return w.w } +func (w *rw362) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw362) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw362) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw362) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw362) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw362) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw362) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw362) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw362) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 364/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, http.Hijacker, deadliner, http.Pusher, io.StringWriter +type rw363 rwState + +func (w *rw363) Unwrap() http.ResponseWriter { return w.w } +func (w *rw363) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw363) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw363) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw363) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw363) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw363) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw363) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw363) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw363) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw363) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 365/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, http.Hijacker, deadliner, fullDuplexEnabler +type rw364 rwState + +func (w *rw364) Unwrap() http.ResponseWriter { return w.w } +func (w *rw364) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw364) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw364) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw364) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw364) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw364) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw364) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw364) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw364) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 366/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, http.Hijacker, deadliner, fullDuplexEnabler, io.StringWriter +type rw365 rwState + +func (w *rw365) Unwrap() http.ResponseWriter { return w.w } +func (w *rw365) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw365) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw365) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw365) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw365) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw365) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw365) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw365) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw365) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw365) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 367/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, http.Hijacker, deadliner, fullDuplexEnabler, http.Pusher +type rw366 rwState + +func (w *rw366) Unwrap() http.ResponseWriter { return w.w } +func (w *rw366) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw366) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw366) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw366) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw366) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw366) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw366) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw366) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw366) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw366) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 368/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, http.Hijacker, deadliner, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw367 rwState + +func (w *rw367) Unwrap() http.ResponseWriter { return w.w } +func (w *rw367) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw367) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw367) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw367) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw367) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw367) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw367) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw367) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw367) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw367) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw367) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 369/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, http.Hijacker, io.ReaderFrom +type rw368 rwState + +func (w *rw368) Unwrap() http.ResponseWriter { return w.w } +func (w *rw368) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw368) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw368) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw368) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw368) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw368) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw368) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} + +// combination 370/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, http.Hijacker, io.ReaderFrom, io.StringWriter +type rw369 rwState + +func (w *rw369) Unwrap() http.ResponseWriter { return w.w } +func (w *rw369) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw369) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw369) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw369) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw369) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw369) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw369) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw369) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 371/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, http.Hijacker, io.ReaderFrom, http.Pusher +type rw370 rwState + +func (w *rw370) Unwrap() http.ResponseWriter { return w.w } +func (w *rw370) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw370) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw370) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw370) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw370) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw370) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw370) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw370) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 372/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, http.Hijacker, io.ReaderFrom, http.Pusher, io.StringWriter +type rw371 rwState + +func (w *rw371) Unwrap() http.ResponseWriter { return w.w } +func (w *rw371) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw371) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw371) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw371) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw371) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw371) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw371) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw371) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw371) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 373/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, http.Hijacker, io.ReaderFrom, fullDuplexEnabler +type rw372 rwState + +func (w *rw372) Unwrap() http.ResponseWriter { return w.w } +func (w *rw372) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw372) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw372) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw372) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw372) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw372) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw372) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw372) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 374/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, http.Hijacker, io.ReaderFrom, fullDuplexEnabler, io.StringWriter +type rw373 rwState + +func (w *rw373) Unwrap() http.ResponseWriter { return w.w } +func (w *rw373) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw373) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw373) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw373) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw373) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw373) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw373) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw373) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw373) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 375/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, http.Hijacker, io.ReaderFrom, fullDuplexEnabler, http.Pusher +type rw374 rwState + +func (w *rw374) Unwrap() http.ResponseWriter { return w.w } +func (w *rw374) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw374) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw374) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw374) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw374) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw374) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw374) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw374) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw374) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 376/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, http.Hijacker, io.ReaderFrom, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw375 rwState + +func (w *rw375) Unwrap() http.ResponseWriter { return w.w } +func (w *rw375) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw375) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw375) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw375) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw375) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw375) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw375) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw375) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw375) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw375) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 377/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, http.Hijacker, io.ReaderFrom, deadliner +type rw376 rwState + +func (w *rw376) Unwrap() http.ResponseWriter { return w.w } +func (w *rw376) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw376) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw376) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw376) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw376) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw376) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw376) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw376) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw376) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} + +// combination 378/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, http.Hijacker, io.ReaderFrom, deadliner, io.StringWriter +type rw377 rwState + +func (w *rw377) Unwrap() http.ResponseWriter { return w.w } +func (w *rw377) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw377) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw377) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw377) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw377) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw377) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw377) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw377) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw377) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw377) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 379/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, http.Hijacker, io.ReaderFrom, deadliner, http.Pusher +type rw378 rwState + +func (w *rw378) Unwrap() http.ResponseWriter { return w.w } +func (w *rw378) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw378) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw378) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw378) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw378) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw378) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw378) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw378) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw378) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw378) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 380/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, http.Hijacker, io.ReaderFrom, deadliner, http.Pusher, io.StringWriter +type rw379 rwState + +func (w *rw379) Unwrap() http.ResponseWriter { return w.w } +func (w *rw379) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw379) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw379) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw379) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw379) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw379) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw379) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw379) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw379) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw379) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw379) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 381/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, http.Hijacker, io.ReaderFrom, deadliner, fullDuplexEnabler +type rw380 rwState + +func (w *rw380) Unwrap() http.ResponseWriter { return w.w } +func (w *rw380) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw380) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw380) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw380) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw380) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw380) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw380) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw380) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw380) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw380) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 382/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, http.Hijacker, io.ReaderFrom, deadliner, fullDuplexEnabler, io.StringWriter +type rw381 rwState + +func (w *rw381) Unwrap() http.ResponseWriter { return w.w } +func (w *rw381) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw381) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw381) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw381) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw381) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw381) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw381) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw381) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw381) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw381) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw381) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 383/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, http.Hijacker, io.ReaderFrom, deadliner, fullDuplexEnabler, http.Pusher +type rw382 rwState + +func (w *rw382) Unwrap() http.ResponseWriter { return w.w } +func (w *rw382) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw382) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw382) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw382) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw382) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw382) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw382) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw382) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw382) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw382) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw382) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 384/512: http.ResponseWriter, http.Flusher, http.CloseNotifier, http.Hijacker, io.ReaderFrom, deadliner, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw383 rwState + +func (w *rw383) Unwrap() http.ResponseWriter { return w.w } +func (w *rw383) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw383) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw383) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw383) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw383) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw383) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw383) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw383) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw383) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw383) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw383) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw383) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 385/512: http.ResponseWriter, http.Flusher, httpFlushError +type rw384 rwState + +func (w *rw384) Unwrap() http.ResponseWriter { return w.w } +func (w *rw384) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw384) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw384) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw384) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw384) FlushError() error { + return (*rwState)(w).doFlushError() +} + +// combination 386/512: http.ResponseWriter, http.Flusher, httpFlushError, io.StringWriter +type rw385 rwState + +func (w *rw385) Unwrap() http.ResponseWriter { return w.w } +func (w *rw385) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw385) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw385) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw385) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw385) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw385) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 387/512: http.ResponseWriter, http.Flusher, httpFlushError, http.Pusher +type rw386 rwState + +func (w *rw386) Unwrap() http.ResponseWriter { return w.w } +func (w *rw386) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw386) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw386) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw386) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw386) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw386) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 388/512: http.ResponseWriter, http.Flusher, httpFlushError, http.Pusher, io.StringWriter +type rw387 rwState + +func (w *rw387) Unwrap() http.ResponseWriter { return w.w } +func (w *rw387) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw387) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw387) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw387) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw387) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw387) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw387) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 389/512: http.ResponseWriter, http.Flusher, httpFlushError, fullDuplexEnabler +type rw388 rwState + +func (w *rw388) Unwrap() http.ResponseWriter { return w.w } +func (w *rw388) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw388) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw388) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw388) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw388) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw388) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 390/512: http.ResponseWriter, http.Flusher, httpFlushError, fullDuplexEnabler, io.StringWriter +type rw389 rwState + +func (w *rw389) Unwrap() http.ResponseWriter { return w.w } +func (w *rw389) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw389) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw389) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw389) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw389) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw389) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw389) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 391/512: http.ResponseWriter, http.Flusher, httpFlushError, fullDuplexEnabler, http.Pusher +type rw390 rwState + +func (w *rw390) Unwrap() http.ResponseWriter { return w.w } +func (w *rw390) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw390) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw390) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw390) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw390) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw390) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw390) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 392/512: http.ResponseWriter, http.Flusher, httpFlushError, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw391 rwState + +func (w *rw391) Unwrap() http.ResponseWriter { return w.w } +func (w *rw391) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw391) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw391) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw391) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw391) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw391) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw391) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw391) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 393/512: http.ResponseWriter, http.Flusher, httpFlushError, deadliner +type rw392 rwState + +func (w *rw392) Unwrap() http.ResponseWriter { return w.w } +func (w *rw392) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw392) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw392) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw392) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw392) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw392) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw392) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} + +// combination 394/512: http.ResponseWriter, http.Flusher, httpFlushError, deadliner, io.StringWriter +type rw393 rwState + +func (w *rw393) Unwrap() http.ResponseWriter { return w.w } +func (w *rw393) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw393) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw393) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw393) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw393) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw393) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw393) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw393) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 395/512: http.ResponseWriter, http.Flusher, httpFlushError, deadliner, http.Pusher +type rw394 rwState + +func (w *rw394) Unwrap() http.ResponseWriter { return w.w } +func (w *rw394) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw394) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw394) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw394) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw394) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw394) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw394) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw394) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 396/512: http.ResponseWriter, http.Flusher, httpFlushError, deadliner, http.Pusher, io.StringWriter +type rw395 rwState + +func (w *rw395) Unwrap() http.ResponseWriter { return w.w } +func (w *rw395) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw395) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw395) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw395) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw395) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw395) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw395) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw395) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw395) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 397/512: http.ResponseWriter, http.Flusher, httpFlushError, deadliner, fullDuplexEnabler +type rw396 rwState + +func (w *rw396) Unwrap() http.ResponseWriter { return w.w } +func (w *rw396) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw396) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw396) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw396) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw396) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw396) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw396) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw396) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 398/512: http.ResponseWriter, http.Flusher, httpFlushError, deadliner, fullDuplexEnabler, io.StringWriter +type rw397 rwState + +func (w *rw397) Unwrap() http.ResponseWriter { return w.w } +func (w *rw397) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw397) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw397) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw397) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw397) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw397) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw397) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw397) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw397) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 399/512: http.ResponseWriter, http.Flusher, httpFlushError, deadliner, fullDuplexEnabler, http.Pusher +type rw398 rwState + +func (w *rw398) Unwrap() http.ResponseWriter { return w.w } +func (w *rw398) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw398) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw398) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw398) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw398) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw398) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw398) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw398) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw398) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 400/512: http.ResponseWriter, http.Flusher, httpFlushError, deadliner, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw399 rwState + +func (w *rw399) Unwrap() http.ResponseWriter { return w.w } +func (w *rw399) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw399) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw399) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw399) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw399) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw399) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw399) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw399) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw399) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw399) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 401/512: http.ResponseWriter, http.Flusher, httpFlushError, io.ReaderFrom +type rw400 rwState + +func (w *rw400) Unwrap() http.ResponseWriter { return w.w } +func (w *rw400) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw400) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw400) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw400) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw400) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw400) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} + +// combination 402/512: http.ResponseWriter, http.Flusher, httpFlushError, io.ReaderFrom, io.StringWriter +type rw401 rwState + +func (w *rw401) Unwrap() http.ResponseWriter { return w.w } +func (w *rw401) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw401) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw401) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw401) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw401) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw401) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw401) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 403/512: http.ResponseWriter, http.Flusher, httpFlushError, io.ReaderFrom, http.Pusher +type rw402 rwState + +func (w *rw402) Unwrap() http.ResponseWriter { return w.w } +func (w *rw402) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw402) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw402) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw402) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw402) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw402) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw402) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 404/512: http.ResponseWriter, http.Flusher, httpFlushError, io.ReaderFrom, http.Pusher, io.StringWriter +type rw403 rwState + +func (w *rw403) Unwrap() http.ResponseWriter { return w.w } +func (w *rw403) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw403) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw403) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw403) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw403) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw403) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw403) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw403) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 405/512: http.ResponseWriter, http.Flusher, httpFlushError, io.ReaderFrom, fullDuplexEnabler +type rw404 rwState + +func (w *rw404) Unwrap() http.ResponseWriter { return w.w } +func (w *rw404) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw404) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw404) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw404) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw404) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw404) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw404) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 406/512: http.ResponseWriter, http.Flusher, httpFlushError, io.ReaderFrom, fullDuplexEnabler, io.StringWriter +type rw405 rwState + +func (w *rw405) Unwrap() http.ResponseWriter { return w.w } +func (w *rw405) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw405) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw405) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw405) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw405) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw405) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw405) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw405) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 407/512: http.ResponseWriter, http.Flusher, httpFlushError, io.ReaderFrom, fullDuplexEnabler, http.Pusher +type rw406 rwState + +func (w *rw406) Unwrap() http.ResponseWriter { return w.w } +func (w *rw406) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw406) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw406) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw406) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw406) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw406) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw406) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw406) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 408/512: http.ResponseWriter, http.Flusher, httpFlushError, io.ReaderFrom, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw407 rwState + +func (w *rw407) Unwrap() http.ResponseWriter { return w.w } +func (w *rw407) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw407) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw407) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw407) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw407) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw407) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw407) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw407) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw407) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 409/512: http.ResponseWriter, http.Flusher, httpFlushError, io.ReaderFrom, deadliner +type rw408 rwState + +func (w *rw408) Unwrap() http.ResponseWriter { return w.w } +func (w *rw408) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw408) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw408) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw408) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw408) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw408) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw408) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw408) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} + +// combination 410/512: http.ResponseWriter, http.Flusher, httpFlushError, io.ReaderFrom, deadliner, io.StringWriter +type rw409 rwState + +func (w *rw409) Unwrap() http.ResponseWriter { return w.w } +func (w *rw409) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw409) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw409) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw409) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw409) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw409) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw409) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw409) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw409) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 411/512: http.ResponseWriter, http.Flusher, httpFlushError, io.ReaderFrom, deadliner, http.Pusher +type rw410 rwState + +func (w *rw410) Unwrap() http.ResponseWriter { return w.w } +func (w *rw410) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw410) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw410) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw410) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw410) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw410) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw410) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw410) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw410) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 412/512: http.ResponseWriter, http.Flusher, httpFlushError, io.ReaderFrom, deadliner, http.Pusher, io.StringWriter +type rw411 rwState + +func (w *rw411) Unwrap() http.ResponseWriter { return w.w } +func (w *rw411) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw411) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw411) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw411) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw411) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw411) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw411) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw411) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw411) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw411) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 413/512: http.ResponseWriter, http.Flusher, httpFlushError, io.ReaderFrom, deadliner, fullDuplexEnabler +type rw412 rwState + +func (w *rw412) Unwrap() http.ResponseWriter { return w.w } +func (w *rw412) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw412) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw412) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw412) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw412) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw412) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw412) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw412) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw412) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 414/512: http.ResponseWriter, http.Flusher, httpFlushError, io.ReaderFrom, deadliner, fullDuplexEnabler, io.StringWriter +type rw413 rwState + +func (w *rw413) Unwrap() http.ResponseWriter { return w.w } +func (w *rw413) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw413) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw413) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw413) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw413) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw413) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw413) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw413) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw413) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw413) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 415/512: http.ResponseWriter, http.Flusher, httpFlushError, io.ReaderFrom, deadliner, fullDuplexEnabler, http.Pusher +type rw414 rwState + +func (w *rw414) Unwrap() http.ResponseWriter { return w.w } +func (w *rw414) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw414) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw414) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw414) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw414) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw414) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw414) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw414) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw414) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw414) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 416/512: http.ResponseWriter, http.Flusher, httpFlushError, io.ReaderFrom, deadliner, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw415 rwState + +func (w *rw415) Unwrap() http.ResponseWriter { return w.w } +func (w *rw415) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw415) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw415) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw415) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw415) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw415) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw415) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw415) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw415) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw415) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw415) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 417/512: http.ResponseWriter, http.Flusher, httpFlushError, http.Hijacker +type rw416 rwState + +func (w *rw416) Unwrap() http.ResponseWriter { return w.w } +func (w *rw416) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw416) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw416) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw416) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw416) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw416) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} + +// combination 418/512: http.ResponseWriter, http.Flusher, httpFlushError, http.Hijacker, io.StringWriter +type rw417 rwState + +func (w *rw417) Unwrap() http.ResponseWriter { return w.w } +func (w *rw417) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw417) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw417) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw417) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw417) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw417) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw417) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 419/512: http.ResponseWriter, http.Flusher, httpFlushError, http.Hijacker, http.Pusher +type rw418 rwState + +func (w *rw418) Unwrap() http.ResponseWriter { return w.w } +func (w *rw418) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw418) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw418) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw418) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw418) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw418) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw418) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 420/512: http.ResponseWriter, http.Flusher, httpFlushError, http.Hijacker, http.Pusher, io.StringWriter +type rw419 rwState + +func (w *rw419) Unwrap() http.ResponseWriter { return w.w } +func (w *rw419) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw419) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw419) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw419) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw419) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw419) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw419) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw419) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 421/512: http.ResponseWriter, http.Flusher, httpFlushError, http.Hijacker, fullDuplexEnabler +type rw420 rwState + +func (w *rw420) Unwrap() http.ResponseWriter { return w.w } +func (w *rw420) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw420) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw420) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw420) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw420) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw420) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw420) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 422/512: http.ResponseWriter, http.Flusher, httpFlushError, http.Hijacker, fullDuplexEnabler, io.StringWriter +type rw421 rwState + +func (w *rw421) Unwrap() http.ResponseWriter { return w.w } +func (w *rw421) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw421) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw421) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw421) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw421) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw421) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw421) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw421) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 423/512: http.ResponseWriter, http.Flusher, httpFlushError, http.Hijacker, fullDuplexEnabler, http.Pusher +type rw422 rwState + +func (w *rw422) Unwrap() http.ResponseWriter { return w.w } +func (w *rw422) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw422) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw422) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw422) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw422) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw422) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw422) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw422) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 424/512: http.ResponseWriter, http.Flusher, httpFlushError, http.Hijacker, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw423 rwState + +func (w *rw423) Unwrap() http.ResponseWriter { return w.w } +func (w *rw423) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw423) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw423) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw423) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw423) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw423) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw423) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw423) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw423) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 425/512: http.ResponseWriter, http.Flusher, httpFlushError, http.Hijacker, deadliner +type rw424 rwState + +func (w *rw424) Unwrap() http.ResponseWriter { return w.w } +func (w *rw424) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw424) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw424) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw424) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw424) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw424) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw424) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw424) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} + +// combination 426/512: http.ResponseWriter, http.Flusher, httpFlushError, http.Hijacker, deadliner, io.StringWriter +type rw425 rwState + +func (w *rw425) Unwrap() http.ResponseWriter { return w.w } +func (w *rw425) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw425) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw425) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw425) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw425) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw425) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw425) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw425) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw425) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 427/512: http.ResponseWriter, http.Flusher, httpFlushError, http.Hijacker, deadliner, http.Pusher +type rw426 rwState + +func (w *rw426) Unwrap() http.ResponseWriter { return w.w } +func (w *rw426) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw426) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw426) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw426) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw426) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw426) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw426) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw426) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw426) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 428/512: http.ResponseWriter, http.Flusher, httpFlushError, http.Hijacker, deadliner, http.Pusher, io.StringWriter +type rw427 rwState + +func (w *rw427) Unwrap() http.ResponseWriter { return w.w } +func (w *rw427) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw427) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw427) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw427) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw427) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw427) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw427) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw427) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw427) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw427) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 429/512: http.ResponseWriter, http.Flusher, httpFlushError, http.Hijacker, deadliner, fullDuplexEnabler +type rw428 rwState + +func (w *rw428) Unwrap() http.ResponseWriter { return w.w } +func (w *rw428) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw428) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw428) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw428) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw428) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw428) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw428) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw428) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw428) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 430/512: http.ResponseWriter, http.Flusher, httpFlushError, http.Hijacker, deadliner, fullDuplexEnabler, io.StringWriter +type rw429 rwState + +func (w *rw429) Unwrap() http.ResponseWriter { return w.w } +func (w *rw429) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw429) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw429) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw429) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw429) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw429) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw429) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw429) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw429) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw429) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 431/512: http.ResponseWriter, http.Flusher, httpFlushError, http.Hijacker, deadliner, fullDuplexEnabler, http.Pusher +type rw430 rwState + +func (w *rw430) Unwrap() http.ResponseWriter { return w.w } +func (w *rw430) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw430) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw430) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw430) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw430) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw430) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw430) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw430) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw430) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw430) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 432/512: http.ResponseWriter, http.Flusher, httpFlushError, http.Hijacker, deadliner, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw431 rwState + +func (w *rw431) Unwrap() http.ResponseWriter { return w.w } +func (w *rw431) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw431) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw431) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw431) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw431) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw431) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw431) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw431) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw431) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw431) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw431) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 433/512: http.ResponseWriter, http.Flusher, httpFlushError, http.Hijacker, io.ReaderFrom +type rw432 rwState + +func (w *rw432) Unwrap() http.ResponseWriter { return w.w } +func (w *rw432) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw432) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw432) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw432) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw432) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw432) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw432) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} + +// combination 434/512: http.ResponseWriter, http.Flusher, httpFlushError, http.Hijacker, io.ReaderFrom, io.StringWriter +type rw433 rwState + +func (w *rw433) Unwrap() http.ResponseWriter { return w.w } +func (w *rw433) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw433) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw433) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw433) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw433) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw433) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw433) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw433) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 435/512: http.ResponseWriter, http.Flusher, httpFlushError, http.Hijacker, io.ReaderFrom, http.Pusher +type rw434 rwState + +func (w *rw434) Unwrap() http.ResponseWriter { return w.w } +func (w *rw434) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw434) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw434) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw434) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw434) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw434) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw434) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw434) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 436/512: http.ResponseWriter, http.Flusher, httpFlushError, http.Hijacker, io.ReaderFrom, http.Pusher, io.StringWriter +type rw435 rwState + +func (w *rw435) Unwrap() http.ResponseWriter { return w.w } +func (w *rw435) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw435) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw435) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw435) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw435) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw435) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw435) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw435) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw435) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 437/512: http.ResponseWriter, http.Flusher, httpFlushError, http.Hijacker, io.ReaderFrom, fullDuplexEnabler +type rw436 rwState + +func (w *rw436) Unwrap() http.ResponseWriter { return w.w } +func (w *rw436) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw436) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw436) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw436) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw436) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw436) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw436) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw436) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 438/512: http.ResponseWriter, http.Flusher, httpFlushError, http.Hijacker, io.ReaderFrom, fullDuplexEnabler, io.StringWriter +type rw437 rwState + +func (w *rw437) Unwrap() http.ResponseWriter { return w.w } +func (w *rw437) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw437) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw437) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw437) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw437) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw437) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw437) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw437) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw437) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 439/512: http.ResponseWriter, http.Flusher, httpFlushError, http.Hijacker, io.ReaderFrom, fullDuplexEnabler, http.Pusher +type rw438 rwState + +func (w *rw438) Unwrap() http.ResponseWriter { return w.w } +func (w *rw438) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw438) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw438) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw438) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw438) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw438) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw438) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw438) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw438) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 440/512: http.ResponseWriter, http.Flusher, httpFlushError, http.Hijacker, io.ReaderFrom, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw439 rwState + +func (w *rw439) Unwrap() http.ResponseWriter { return w.w } +func (w *rw439) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw439) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw439) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw439) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw439) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw439) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw439) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw439) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw439) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw439) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 441/512: http.ResponseWriter, http.Flusher, httpFlushError, http.Hijacker, io.ReaderFrom, deadliner +type rw440 rwState + +func (w *rw440) Unwrap() http.ResponseWriter { return w.w } +func (w *rw440) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw440) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw440) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw440) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw440) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw440) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw440) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw440) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw440) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} + +// combination 442/512: http.ResponseWriter, http.Flusher, httpFlushError, http.Hijacker, io.ReaderFrom, deadliner, io.StringWriter +type rw441 rwState + +func (w *rw441) Unwrap() http.ResponseWriter { return w.w } +func (w *rw441) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw441) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw441) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw441) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw441) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw441) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw441) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw441) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw441) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw441) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 443/512: http.ResponseWriter, http.Flusher, httpFlushError, http.Hijacker, io.ReaderFrom, deadliner, http.Pusher +type rw442 rwState + +func (w *rw442) Unwrap() http.ResponseWriter { return w.w } +func (w *rw442) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw442) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw442) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw442) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw442) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw442) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw442) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw442) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw442) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw442) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 444/512: http.ResponseWriter, http.Flusher, httpFlushError, http.Hijacker, io.ReaderFrom, deadliner, http.Pusher, io.StringWriter +type rw443 rwState + +func (w *rw443) Unwrap() http.ResponseWriter { return w.w } +func (w *rw443) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw443) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw443) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw443) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw443) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw443) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw443) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw443) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw443) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw443) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw443) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 445/512: http.ResponseWriter, http.Flusher, httpFlushError, http.Hijacker, io.ReaderFrom, deadliner, fullDuplexEnabler +type rw444 rwState + +func (w *rw444) Unwrap() http.ResponseWriter { return w.w } +func (w *rw444) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw444) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw444) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw444) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw444) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw444) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw444) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw444) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw444) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw444) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 446/512: http.ResponseWriter, http.Flusher, httpFlushError, http.Hijacker, io.ReaderFrom, deadliner, fullDuplexEnabler, io.StringWriter +type rw445 rwState + +func (w *rw445) Unwrap() http.ResponseWriter { return w.w } +func (w *rw445) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw445) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw445) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw445) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw445) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw445) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw445) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw445) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw445) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw445) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw445) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 447/512: http.ResponseWriter, http.Flusher, httpFlushError, http.Hijacker, io.ReaderFrom, deadliner, fullDuplexEnabler, http.Pusher +type rw446 rwState + +func (w *rw446) Unwrap() http.ResponseWriter { return w.w } +func (w *rw446) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw446) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw446) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw446) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw446) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw446) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw446) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw446) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw446) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw446) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw446) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 448/512: http.ResponseWriter, http.Flusher, httpFlushError, http.Hijacker, io.ReaderFrom, deadliner, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw447 rwState + +func (w *rw447) Unwrap() http.ResponseWriter { return w.w } +func (w *rw447) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw447) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw447) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw447) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw447) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw447) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw447) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw447) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw447) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw447) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw447) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw447) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 449/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier +type rw448 rwState + +func (w *rw448) Unwrap() http.ResponseWriter { return w.w } +func (w *rw448) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw448) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw448) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw448) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw448) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw448) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} + +// combination 450/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, io.StringWriter +type rw449 rwState + +func (w *rw449) Unwrap() http.ResponseWriter { return w.w } +func (w *rw449) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw449) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw449) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw449) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw449) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw449) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw449) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 451/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, http.Pusher +type rw450 rwState + +func (w *rw450) Unwrap() http.ResponseWriter { return w.w } +func (w *rw450) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw450) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw450) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw450) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw450) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw450) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw450) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 452/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, http.Pusher, io.StringWriter +type rw451 rwState + +func (w *rw451) Unwrap() http.ResponseWriter { return w.w } +func (w *rw451) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw451) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw451) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw451) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw451) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw451) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw451) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw451) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 453/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, fullDuplexEnabler +type rw452 rwState + +func (w *rw452) Unwrap() http.ResponseWriter { return w.w } +func (w *rw452) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw452) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw452) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw452) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw452) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw452) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw452) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 454/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, fullDuplexEnabler, io.StringWriter +type rw453 rwState + +func (w *rw453) Unwrap() http.ResponseWriter { return w.w } +func (w *rw453) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw453) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw453) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw453) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw453) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw453) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw453) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw453) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 455/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, fullDuplexEnabler, http.Pusher +type rw454 rwState + +func (w *rw454) Unwrap() http.ResponseWriter { return w.w } +func (w *rw454) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw454) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw454) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw454) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw454) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw454) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw454) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw454) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 456/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw455 rwState + +func (w *rw455) Unwrap() http.ResponseWriter { return w.w } +func (w *rw455) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw455) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw455) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw455) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw455) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw455) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw455) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw455) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw455) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 457/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, deadliner +type rw456 rwState + +func (w *rw456) Unwrap() http.ResponseWriter { return w.w } +func (w *rw456) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw456) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw456) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw456) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw456) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw456) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw456) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw456) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} + +// combination 458/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, deadliner, io.StringWriter +type rw457 rwState + +func (w *rw457) Unwrap() http.ResponseWriter { return w.w } +func (w *rw457) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw457) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw457) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw457) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw457) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw457) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw457) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw457) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw457) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 459/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, deadliner, http.Pusher +type rw458 rwState + +func (w *rw458) Unwrap() http.ResponseWriter { return w.w } +func (w *rw458) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw458) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw458) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw458) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw458) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw458) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw458) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw458) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw458) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 460/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, deadliner, http.Pusher, io.StringWriter +type rw459 rwState + +func (w *rw459) Unwrap() http.ResponseWriter { return w.w } +func (w *rw459) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw459) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw459) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw459) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw459) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw459) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw459) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw459) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw459) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw459) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 461/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, deadliner, fullDuplexEnabler +type rw460 rwState + +func (w *rw460) Unwrap() http.ResponseWriter { return w.w } +func (w *rw460) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw460) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw460) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw460) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw460) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw460) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw460) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw460) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw460) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 462/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, deadliner, fullDuplexEnabler, io.StringWriter +type rw461 rwState + +func (w *rw461) Unwrap() http.ResponseWriter { return w.w } +func (w *rw461) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw461) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw461) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw461) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw461) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw461) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw461) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw461) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw461) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw461) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 463/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, deadliner, fullDuplexEnabler, http.Pusher +type rw462 rwState + +func (w *rw462) Unwrap() http.ResponseWriter { return w.w } +func (w *rw462) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw462) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw462) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw462) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw462) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw462) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw462) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw462) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw462) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw462) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 464/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, deadliner, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw463 rwState + +func (w *rw463) Unwrap() http.ResponseWriter { return w.w } +func (w *rw463) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw463) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw463) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw463) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw463) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw463) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw463) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw463) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw463) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw463) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw463) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 465/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, io.ReaderFrom +type rw464 rwState + +func (w *rw464) Unwrap() http.ResponseWriter { return w.w } +func (w *rw464) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw464) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw464) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw464) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw464) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw464) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw464) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} + +// combination 466/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, io.ReaderFrom, io.StringWriter +type rw465 rwState + +func (w *rw465) Unwrap() http.ResponseWriter { return w.w } +func (w *rw465) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw465) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw465) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw465) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw465) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw465) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw465) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw465) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 467/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, io.ReaderFrom, http.Pusher +type rw466 rwState + +func (w *rw466) Unwrap() http.ResponseWriter { return w.w } +func (w *rw466) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw466) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw466) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw466) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw466) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw466) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw466) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw466) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 468/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, io.ReaderFrom, http.Pusher, io.StringWriter +type rw467 rwState + +func (w *rw467) Unwrap() http.ResponseWriter { return w.w } +func (w *rw467) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw467) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw467) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw467) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw467) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw467) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw467) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw467) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw467) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 469/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, io.ReaderFrom, fullDuplexEnabler +type rw468 rwState + +func (w *rw468) Unwrap() http.ResponseWriter { return w.w } +func (w *rw468) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw468) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw468) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw468) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw468) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw468) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw468) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw468) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 470/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, io.ReaderFrom, fullDuplexEnabler, io.StringWriter +type rw469 rwState + +func (w *rw469) Unwrap() http.ResponseWriter { return w.w } +func (w *rw469) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw469) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw469) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw469) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw469) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw469) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw469) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw469) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw469) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 471/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, io.ReaderFrom, fullDuplexEnabler, http.Pusher +type rw470 rwState + +func (w *rw470) Unwrap() http.ResponseWriter { return w.w } +func (w *rw470) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw470) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw470) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw470) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw470) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw470) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw470) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw470) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw470) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 472/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, io.ReaderFrom, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw471 rwState + +func (w *rw471) Unwrap() http.ResponseWriter { return w.w } +func (w *rw471) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw471) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw471) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw471) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw471) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw471) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw471) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw471) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw471) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw471) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 473/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, io.ReaderFrom, deadliner +type rw472 rwState + +func (w *rw472) Unwrap() http.ResponseWriter { return w.w } +func (w *rw472) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw472) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw472) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw472) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw472) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw472) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw472) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw472) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw472) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} + +// combination 474/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, io.ReaderFrom, deadliner, io.StringWriter +type rw473 rwState + +func (w *rw473) Unwrap() http.ResponseWriter { return w.w } +func (w *rw473) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw473) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw473) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw473) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw473) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw473) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw473) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw473) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw473) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw473) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 475/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, io.ReaderFrom, deadliner, http.Pusher +type rw474 rwState + +func (w *rw474) Unwrap() http.ResponseWriter { return w.w } +func (w *rw474) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw474) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw474) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw474) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw474) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw474) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw474) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw474) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw474) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw474) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 476/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, io.ReaderFrom, deadliner, http.Pusher, io.StringWriter +type rw475 rwState + +func (w *rw475) Unwrap() http.ResponseWriter { return w.w } +func (w *rw475) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw475) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw475) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw475) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw475) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw475) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw475) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw475) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw475) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw475) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw475) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 477/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, io.ReaderFrom, deadliner, fullDuplexEnabler +type rw476 rwState + +func (w *rw476) Unwrap() http.ResponseWriter { return w.w } +func (w *rw476) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw476) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw476) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw476) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw476) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw476) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw476) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw476) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw476) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw476) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 478/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, io.ReaderFrom, deadliner, fullDuplexEnabler, io.StringWriter +type rw477 rwState + +func (w *rw477) Unwrap() http.ResponseWriter { return w.w } +func (w *rw477) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw477) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw477) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw477) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw477) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw477) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw477) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw477) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw477) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw477) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw477) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 479/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, io.ReaderFrom, deadliner, fullDuplexEnabler, http.Pusher +type rw478 rwState + +func (w *rw478) Unwrap() http.ResponseWriter { return w.w } +func (w *rw478) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw478) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw478) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw478) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw478) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw478) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw478) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw478) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw478) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw478) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw478) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 480/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, io.ReaderFrom, deadliner, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw479 rwState + +func (w *rw479) Unwrap() http.ResponseWriter { return w.w } +func (w *rw479) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw479) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw479) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw479) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw479) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw479) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw479) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw479) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw479) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw479) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw479) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw479) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 481/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, http.Hijacker +type rw480 rwState + +func (w *rw480) Unwrap() http.ResponseWriter { return w.w } +func (w *rw480) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw480) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw480) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw480) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw480) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw480) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw480) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} + +// combination 482/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, http.Hijacker, io.StringWriter +type rw481 rwState + +func (w *rw481) Unwrap() http.ResponseWriter { return w.w } +func (w *rw481) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw481) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw481) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw481) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw481) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw481) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw481) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw481) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 483/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, http.Hijacker, http.Pusher +type rw482 rwState + +func (w *rw482) Unwrap() http.ResponseWriter { return w.w } +func (w *rw482) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw482) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw482) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw482) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw482) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw482) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw482) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw482) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 484/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, http.Hijacker, http.Pusher, io.StringWriter +type rw483 rwState + +func (w *rw483) Unwrap() http.ResponseWriter { return w.w } +func (w *rw483) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw483) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw483) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw483) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw483) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw483) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw483) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw483) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw483) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 485/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, http.Hijacker, fullDuplexEnabler +type rw484 rwState + +func (w *rw484) Unwrap() http.ResponseWriter { return w.w } +func (w *rw484) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw484) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw484) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw484) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw484) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw484) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw484) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw484) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 486/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, http.Hijacker, fullDuplexEnabler, io.StringWriter +type rw485 rwState + +func (w *rw485) Unwrap() http.ResponseWriter { return w.w } +func (w *rw485) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw485) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw485) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw485) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw485) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw485) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw485) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw485) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw485) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 487/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, http.Hijacker, fullDuplexEnabler, http.Pusher +type rw486 rwState + +func (w *rw486) Unwrap() http.ResponseWriter { return w.w } +func (w *rw486) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw486) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw486) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw486) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw486) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw486) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw486) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw486) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw486) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 488/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, http.Hijacker, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw487 rwState + +func (w *rw487) Unwrap() http.ResponseWriter { return w.w } +func (w *rw487) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw487) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw487) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw487) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw487) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw487) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw487) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw487) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw487) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw487) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 489/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, http.Hijacker, deadliner +type rw488 rwState + +func (w *rw488) Unwrap() http.ResponseWriter { return w.w } +func (w *rw488) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw488) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw488) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw488) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw488) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw488) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw488) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw488) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw488) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} + +// combination 490/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, http.Hijacker, deadliner, io.StringWriter +type rw489 rwState + +func (w *rw489) Unwrap() http.ResponseWriter { return w.w } +func (w *rw489) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw489) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw489) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw489) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw489) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw489) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw489) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw489) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw489) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw489) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 491/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, http.Hijacker, deadliner, http.Pusher +type rw490 rwState + +func (w *rw490) Unwrap() http.ResponseWriter { return w.w } +func (w *rw490) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw490) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw490) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw490) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw490) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw490) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw490) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw490) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw490) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw490) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 492/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, http.Hijacker, deadliner, http.Pusher, io.StringWriter +type rw491 rwState + +func (w *rw491) Unwrap() http.ResponseWriter { return w.w } +func (w *rw491) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw491) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw491) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw491) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw491) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw491) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw491) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw491) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw491) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw491) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw491) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 493/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, http.Hijacker, deadliner, fullDuplexEnabler +type rw492 rwState + +func (w *rw492) Unwrap() http.ResponseWriter { return w.w } +func (w *rw492) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw492) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw492) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw492) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw492) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw492) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw492) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw492) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw492) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw492) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 494/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, http.Hijacker, deadliner, fullDuplexEnabler, io.StringWriter +type rw493 rwState + +func (w *rw493) Unwrap() http.ResponseWriter { return w.w } +func (w *rw493) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw493) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw493) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw493) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw493) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw493) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw493) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw493) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw493) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw493) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw493) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 495/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, http.Hijacker, deadliner, fullDuplexEnabler, http.Pusher +type rw494 rwState + +func (w *rw494) Unwrap() http.ResponseWriter { return w.w } +func (w *rw494) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw494) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw494) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw494) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw494) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw494) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw494) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw494) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw494) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw494) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw494) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 496/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, http.Hijacker, deadliner, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw495 rwState + +func (w *rw495) Unwrap() http.ResponseWriter { return w.w } +func (w *rw495) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw495) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw495) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw495) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw495) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw495) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw495) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw495) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw495) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw495) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw495) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw495) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 497/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, http.Hijacker, io.ReaderFrom +type rw496 rwState + +func (w *rw496) Unwrap() http.ResponseWriter { return w.w } +func (w *rw496) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw496) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw496) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw496) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw496) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw496) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw496) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw496) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} + +// combination 498/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, http.Hijacker, io.ReaderFrom, io.StringWriter +type rw497 rwState + +func (w *rw497) Unwrap() http.ResponseWriter { return w.w } +func (w *rw497) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw497) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw497) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw497) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw497) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw497) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw497) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw497) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw497) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 499/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, http.Hijacker, io.ReaderFrom, http.Pusher +type rw498 rwState + +func (w *rw498) Unwrap() http.ResponseWriter { return w.w } +func (w *rw498) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw498) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw498) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw498) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw498) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw498) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw498) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw498) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw498) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 500/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, http.Hijacker, io.ReaderFrom, http.Pusher, io.StringWriter +type rw499 rwState + +func (w *rw499) Unwrap() http.ResponseWriter { return w.w } +func (w *rw499) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw499) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw499) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw499) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw499) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw499) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw499) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw499) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw499) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw499) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 501/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, http.Hijacker, io.ReaderFrom, fullDuplexEnabler +type rw500 rwState + +func (w *rw500) Unwrap() http.ResponseWriter { return w.w } +func (w *rw500) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw500) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw500) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw500) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw500) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw500) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw500) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw500) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw500) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 502/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, http.Hijacker, io.ReaderFrom, fullDuplexEnabler, io.StringWriter +type rw501 rwState + +func (w *rw501) Unwrap() http.ResponseWriter { return w.w } +func (w *rw501) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw501) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw501) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw501) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw501) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw501) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw501) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw501) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw501) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw501) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 503/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, http.Hijacker, io.ReaderFrom, fullDuplexEnabler, http.Pusher +type rw502 rwState + +func (w *rw502) Unwrap() http.ResponseWriter { return w.w } +func (w *rw502) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw502) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw502) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw502) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw502) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw502) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw502) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw502) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw502) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw502) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 504/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, http.Hijacker, io.ReaderFrom, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw503 rwState + +func (w *rw503) Unwrap() http.ResponseWriter { return w.w } +func (w *rw503) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw503) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw503) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw503) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw503) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw503) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw503) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw503) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw503) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw503) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw503) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 505/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, http.Hijacker, io.ReaderFrom, deadliner +type rw504 rwState + +func (w *rw504) Unwrap() http.ResponseWriter { return w.w } +func (w *rw504) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw504) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw504) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw504) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw504) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw504) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw504) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw504) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw504) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw504) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} + +// combination 506/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, http.Hijacker, io.ReaderFrom, deadliner, io.StringWriter +type rw505 rwState + +func (w *rw505) Unwrap() http.ResponseWriter { return w.w } +func (w *rw505) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw505) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw505) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw505) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw505) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw505) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw505) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw505) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw505) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw505) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw505) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 507/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, http.Hijacker, io.ReaderFrom, deadliner, http.Pusher +type rw506 rwState + +func (w *rw506) Unwrap() http.ResponseWriter { return w.w } +func (w *rw506) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw506) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw506) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw506) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw506) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw506) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw506) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw506) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw506) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw506) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw506) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 508/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, http.Hijacker, io.ReaderFrom, deadliner, http.Pusher, io.StringWriter +type rw507 rwState + +func (w *rw507) Unwrap() http.ResponseWriter { return w.w } +func (w *rw507) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw507) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw507) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw507) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw507) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw507) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw507) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw507) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw507) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw507) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw507) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw507) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 509/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, http.Hijacker, io.ReaderFrom, deadliner, fullDuplexEnabler +type rw508 rwState + +func (w *rw508) Unwrap() http.ResponseWriter { return w.w } +func (w *rw508) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw508) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw508) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw508) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw508) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw508) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw508) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw508) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw508) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw508) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw508) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} + +// combination 510/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, http.Hijacker, io.ReaderFrom, deadliner, fullDuplexEnabler, io.StringWriter +type rw509 rwState + +func (w *rw509) Unwrap() http.ResponseWriter { return w.w } +func (w *rw509) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw509) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw509) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw509) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw509) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw509) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw509) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw509) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw509) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw509) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw509) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw509) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +// combination 511/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, http.Hijacker, io.ReaderFrom, deadliner, fullDuplexEnabler, http.Pusher +type rw510 rwState + +func (w *rw510) Unwrap() http.ResponseWriter { return w.w } +func (w *rw510) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw510) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw510) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw510) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw510) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw510) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw510) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw510) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw510) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw510) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw510) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw510) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} + +// combination 512/512: http.ResponseWriter, http.Flusher, httpFlushError, http.CloseNotifier, http.Hijacker, io.ReaderFrom, deadliner, fullDuplexEnabler, http.Pusher, io.StringWriter +type rw511 rwState + +func (w *rw511) Unwrap() http.ResponseWriter { return w.w } +func (w *rw511) Header() http.Header { + return (*rwState)(w).doHeader() +} +func (w *rw511) WriteHeader(code int) { + (*rwState)(w).doWriteHeader(code) +} +func (w *rw511) Write(b []byte) (int, error) { + return (*rwState)(w).doWrite(b) +} +func (w *rw511) Flush() { + (*rwState)(w).doFlush() +} +func (w *rw511) FlushError() error { + return (*rwState)(w).doFlushError() +} +func (w *rw511) CloseNotify() <-chan bool { + return (*rwState)(w).doCloseNotify() +} +func (w *rw511) Hijack() (net.Conn, *bufio.ReadWriter, error) { + return (*rwState)(w).doHijack() +} +func (w *rw511) ReadFrom(src io.Reader) (int64, error) { + return (*rwState)(w).doReadFrom(src) +} +func (w *rw511) SetReadDeadline(deadline time.Time) error { + return (*rwState)(w).doSetReadDeadline(deadline) +} +func (w *rw511) SetWriteDeadline(deadline time.Time) error { + return (*rwState)(w).doSetWriteDeadline(deadline) +} +func (w *rw511) EnableFullDuplex() error { + return (*rwState)(w).doEnableFullDuplex() +} +func (w *rw511) Push(target string, opts *http.PushOptions) error { + return (*rwState)(w).doPush(target, opts) +} +func (w *rw511) WriteString(s string) (int, error) { + return (*rwState)(w).doWriteString(s) +} + +type Unwrapper interface { + Unwrap() http.ResponseWriter +} + +// Unwrap returns the underlying http.ResponseWriter from within zero or more +// layers of httpsnoop wrappers. +func Unwrap(w http.ResponseWriter) http.ResponseWriter { + if rw, ok := w.(Unwrapper); ok { + // recurse until rw.Unwrap() returns a non-Unwrapper + return Unwrap(rw.Unwrap()) + } + return w +} diff --git a/vendor/github.com/felixge/httpsnoop/wrap_generated_gteq_1.8.go b/vendor/github.com/felixge/httpsnoop/wrap_generated_gteq_1.8.go deleted file mode 100644 index 101cedde67..0000000000 --- a/vendor/github.com/felixge/httpsnoop/wrap_generated_gteq_1.8.go +++ /dev/null @@ -1,436 +0,0 @@ -// +build go1.8 -// Code generated by "httpsnoop/codegen"; DO NOT EDIT. - -package httpsnoop - -import ( - "bufio" - "io" - "net" - "net/http" -) - -// HeaderFunc is part of the http.ResponseWriter interface. -type HeaderFunc func() http.Header - -// WriteHeaderFunc is part of the http.ResponseWriter interface. -type WriteHeaderFunc func(code int) - -// WriteFunc is part of the http.ResponseWriter interface. -type WriteFunc func(b []byte) (int, error) - -// FlushFunc is part of the http.Flusher interface. -type FlushFunc func() - -// CloseNotifyFunc is part of the http.CloseNotifier interface. -type CloseNotifyFunc func() <-chan bool - -// HijackFunc is part of the http.Hijacker interface. -type HijackFunc func() (net.Conn, *bufio.ReadWriter, error) - -// ReadFromFunc is part of the io.ReaderFrom interface. -type ReadFromFunc func(src io.Reader) (int64, error) - -// PushFunc is part of the http.Pusher interface. -type PushFunc func(target string, opts *http.PushOptions) error - -// Hooks defines a set of method interceptors for methods included in -// http.ResponseWriter as well as some others. You can think of them as -// middleware for the function calls they target. See Wrap for more details. -type Hooks struct { - Header func(HeaderFunc) HeaderFunc - WriteHeader func(WriteHeaderFunc) WriteHeaderFunc - Write func(WriteFunc) WriteFunc - Flush func(FlushFunc) FlushFunc - CloseNotify func(CloseNotifyFunc) CloseNotifyFunc - Hijack func(HijackFunc) HijackFunc - ReadFrom func(ReadFromFunc) ReadFromFunc - Push func(PushFunc) PushFunc -} - -// Wrap returns a wrapped version of w that provides the exact same interface -// as w. Specifically if w implements any combination of: -// -// - http.Flusher -// - http.CloseNotifier -// - http.Hijacker -// - io.ReaderFrom -// - http.Pusher -// -// The wrapped version will implement the exact same combination. If no hooks -// are set, the wrapped version also behaves exactly as w. Hooks targeting -// methods not supported by w are ignored. Any other hooks will intercept the -// method they target and may modify the call's arguments and/or return values. -// The CaptureMetrics implementation serves as a working example for how the -// hooks can be used. -func Wrap(w http.ResponseWriter, hooks Hooks) http.ResponseWriter { - rw := &rw{w: w, h: hooks} - _, i0 := w.(http.Flusher) - _, i1 := w.(http.CloseNotifier) - _, i2 := w.(http.Hijacker) - _, i3 := w.(io.ReaderFrom) - _, i4 := w.(http.Pusher) - switch { - // combination 1/32 - case !i0 && !i1 && !i2 && !i3 && !i4: - return struct { - Unwrapper - http.ResponseWriter - }{rw, rw} - // combination 2/32 - case !i0 && !i1 && !i2 && !i3 && i4: - return struct { - Unwrapper - http.ResponseWriter - http.Pusher - }{rw, rw, rw} - // combination 3/32 - case !i0 && !i1 && !i2 && i3 && !i4: - return struct { - Unwrapper - http.ResponseWriter - io.ReaderFrom - }{rw, rw, rw} - // combination 4/32 - case !i0 && !i1 && !i2 && i3 && i4: - return struct { - Unwrapper - http.ResponseWriter - io.ReaderFrom - http.Pusher - }{rw, rw, rw, rw} - // combination 5/32 - case !i0 && !i1 && i2 && !i3 && !i4: - return struct { - Unwrapper - http.ResponseWriter - http.Hijacker - }{rw, rw, rw} - // combination 6/32 - case !i0 && !i1 && i2 && !i3 && i4: - return struct { - Unwrapper - http.ResponseWriter - http.Hijacker - http.Pusher - }{rw, rw, rw, rw} - // combination 7/32 - case !i0 && !i1 && i2 && i3 && !i4: - return struct { - Unwrapper - http.ResponseWriter - http.Hijacker - io.ReaderFrom - }{rw, rw, rw, rw} - // combination 8/32 - case !i0 && !i1 && i2 && i3 && i4: - return struct { - Unwrapper - http.ResponseWriter - http.Hijacker - io.ReaderFrom - http.Pusher - }{rw, rw, rw, rw, rw} - // combination 9/32 - case !i0 && i1 && !i2 && !i3 && !i4: - return struct { - Unwrapper - http.ResponseWriter - http.CloseNotifier - }{rw, rw, rw} - // combination 10/32 - case !i0 && i1 && !i2 && !i3 && i4: - return struct { - Unwrapper - http.ResponseWriter - http.CloseNotifier - http.Pusher - }{rw, rw, rw, rw} - // combination 11/32 - case !i0 && i1 && !i2 && i3 && !i4: - return struct { - Unwrapper - http.ResponseWriter - http.CloseNotifier - io.ReaderFrom - }{rw, rw, rw, rw} - // combination 12/32 - case !i0 && i1 && !i2 && i3 && i4: - return struct { - Unwrapper - http.ResponseWriter - http.CloseNotifier - io.ReaderFrom - http.Pusher - }{rw, rw, rw, rw, rw} - // combination 13/32 - case !i0 && i1 && i2 && !i3 && !i4: - return struct { - Unwrapper - http.ResponseWriter - http.CloseNotifier - http.Hijacker - }{rw, rw, rw, rw} - // combination 14/32 - case !i0 && i1 && i2 && !i3 && i4: - return struct { - Unwrapper - http.ResponseWriter - http.CloseNotifier - http.Hijacker - http.Pusher - }{rw, rw, rw, rw, rw} - // combination 15/32 - case !i0 && i1 && i2 && i3 && !i4: - return struct { - Unwrapper - http.ResponseWriter - http.CloseNotifier - http.Hijacker - io.ReaderFrom - }{rw, rw, rw, rw, rw} - // combination 16/32 - case !i0 && i1 && i2 && i3 && i4: - return struct { - Unwrapper - http.ResponseWriter - http.CloseNotifier - http.Hijacker - io.ReaderFrom - http.Pusher - }{rw, rw, rw, rw, rw, rw} - // combination 17/32 - case i0 && !i1 && !i2 && !i3 && !i4: - return struct { - Unwrapper - http.ResponseWriter - http.Flusher - }{rw, rw, rw} - // combination 18/32 - case i0 && !i1 && !i2 && !i3 && i4: - return struct { - Unwrapper - http.ResponseWriter - http.Flusher - http.Pusher - }{rw, rw, rw, rw} - // combination 19/32 - case i0 && !i1 && !i2 && i3 && !i4: - return struct { - Unwrapper - http.ResponseWriter - http.Flusher - io.ReaderFrom - }{rw, rw, rw, rw} - // combination 20/32 - case i0 && !i1 && !i2 && i3 && i4: - return struct { - Unwrapper - http.ResponseWriter - http.Flusher - io.ReaderFrom - http.Pusher - }{rw, rw, rw, rw, rw} - // combination 21/32 - case i0 && !i1 && i2 && !i3 && !i4: - return struct { - Unwrapper - http.ResponseWriter - http.Flusher - http.Hijacker - }{rw, rw, rw, rw} - // combination 22/32 - case i0 && !i1 && i2 && !i3 && i4: - return struct { - Unwrapper - http.ResponseWriter - http.Flusher - http.Hijacker - http.Pusher - }{rw, rw, rw, rw, rw} - // combination 23/32 - case i0 && !i1 && i2 && i3 && !i4: - return struct { - Unwrapper - http.ResponseWriter - http.Flusher - http.Hijacker - io.ReaderFrom - }{rw, rw, rw, rw, rw} - // combination 24/32 - case i0 && !i1 && i2 && i3 && i4: - return struct { - Unwrapper - http.ResponseWriter - http.Flusher - http.Hijacker - io.ReaderFrom - http.Pusher - }{rw, rw, rw, rw, rw, rw} - // combination 25/32 - case i0 && i1 && !i2 && !i3 && !i4: - return struct { - Unwrapper - http.ResponseWriter - http.Flusher - http.CloseNotifier - }{rw, rw, rw, rw} - // combination 26/32 - case i0 && i1 && !i2 && !i3 && i4: - return struct { - Unwrapper - http.ResponseWriter - http.Flusher - http.CloseNotifier - http.Pusher - }{rw, rw, rw, rw, rw} - // combination 27/32 - case i0 && i1 && !i2 && i3 && !i4: - return struct { - Unwrapper - http.ResponseWriter - http.Flusher - http.CloseNotifier - io.ReaderFrom - }{rw, rw, rw, rw, rw} - // combination 28/32 - case i0 && i1 && !i2 && i3 && i4: - return struct { - Unwrapper - http.ResponseWriter - http.Flusher - http.CloseNotifier - io.ReaderFrom - http.Pusher - }{rw, rw, rw, rw, rw, rw} - // combination 29/32 - case i0 && i1 && i2 && !i3 && !i4: - return struct { - Unwrapper - http.ResponseWriter - http.Flusher - http.CloseNotifier - http.Hijacker - }{rw, rw, rw, rw, rw} - // combination 30/32 - case i0 && i1 && i2 && !i3 && i4: - return struct { - Unwrapper - http.ResponseWriter - http.Flusher - http.CloseNotifier - http.Hijacker - http.Pusher - }{rw, rw, rw, rw, rw, rw} - // combination 31/32 - case i0 && i1 && i2 && i3 && !i4: - return struct { - Unwrapper - http.ResponseWriter - http.Flusher - http.CloseNotifier - http.Hijacker - io.ReaderFrom - }{rw, rw, rw, rw, rw, rw} - // combination 32/32 - case i0 && i1 && i2 && i3 && i4: - return struct { - Unwrapper - http.ResponseWriter - http.Flusher - http.CloseNotifier - http.Hijacker - io.ReaderFrom - http.Pusher - }{rw, rw, rw, rw, rw, rw, rw} - } - panic("unreachable") -} - -type rw struct { - w http.ResponseWriter - h Hooks -} - -func (w *rw) Unwrap() http.ResponseWriter { - return w.w -} - -func (w *rw) Header() http.Header { - f := w.w.(http.ResponseWriter).Header - if w.h.Header != nil { - f = w.h.Header(f) - } - return f() -} - -func (w *rw) WriteHeader(code int) { - f := w.w.(http.ResponseWriter).WriteHeader - if w.h.WriteHeader != nil { - f = w.h.WriteHeader(f) - } - f(code) -} - -func (w *rw) Write(b []byte) (int, error) { - f := w.w.(http.ResponseWriter).Write - if w.h.Write != nil { - f = w.h.Write(f) - } - return f(b) -} - -func (w *rw) Flush() { - f := w.w.(http.Flusher).Flush - if w.h.Flush != nil { - f = w.h.Flush(f) - } - f() -} - -func (w *rw) CloseNotify() <-chan bool { - f := w.w.(http.CloseNotifier).CloseNotify - if w.h.CloseNotify != nil { - f = w.h.CloseNotify(f) - } - return f() -} - -func (w *rw) Hijack() (net.Conn, *bufio.ReadWriter, error) { - f := w.w.(http.Hijacker).Hijack - if w.h.Hijack != nil { - f = w.h.Hijack(f) - } - return f() -} - -func (w *rw) ReadFrom(src io.Reader) (int64, error) { - f := w.w.(io.ReaderFrom).ReadFrom - if w.h.ReadFrom != nil { - f = w.h.ReadFrom(f) - } - return f(src) -} - -func (w *rw) Push(target string, opts *http.PushOptions) error { - f := w.w.(http.Pusher).Push - if w.h.Push != nil { - f = w.h.Push(f) - } - return f(target, opts) -} - -type Unwrapper interface { - Unwrap() http.ResponseWriter -} - -// Unwrap returns the underlying http.ResponseWriter from within zero or more -// layers of httpsnoop wrappers. -func Unwrap(w http.ResponseWriter) http.ResponseWriter { - if rw, ok := w.(Unwrapper); ok { - // recurse until rw.Unwrap() returns a non-Unwrapper - return Unwrap(rw.Unwrap()) - } else { - return w - } -} diff --git a/vendor/github.com/felixge/httpsnoop/wrap_generated_lt_1.8.go b/vendor/github.com/felixge/httpsnoop/wrap_generated_lt_1.8.go deleted file mode 100644 index e0951df152..0000000000 --- a/vendor/github.com/felixge/httpsnoop/wrap_generated_lt_1.8.go +++ /dev/null @@ -1,278 +0,0 @@ -// +build !go1.8 -// Code generated by "httpsnoop/codegen"; DO NOT EDIT. - -package httpsnoop - -import ( - "bufio" - "io" - "net" - "net/http" -) - -// HeaderFunc is part of the http.ResponseWriter interface. -type HeaderFunc func() http.Header - -// WriteHeaderFunc is part of the http.ResponseWriter interface. -type WriteHeaderFunc func(code int) - -// WriteFunc is part of the http.ResponseWriter interface. -type WriteFunc func(b []byte) (int, error) - -// FlushFunc is part of the http.Flusher interface. -type FlushFunc func() - -// CloseNotifyFunc is part of the http.CloseNotifier interface. -type CloseNotifyFunc func() <-chan bool - -// HijackFunc is part of the http.Hijacker interface. -type HijackFunc func() (net.Conn, *bufio.ReadWriter, error) - -// ReadFromFunc is part of the io.ReaderFrom interface. -type ReadFromFunc func(src io.Reader) (int64, error) - -// Hooks defines a set of method interceptors for methods included in -// http.ResponseWriter as well as some others. You can think of them as -// middleware for the function calls they target. See Wrap for more details. -type Hooks struct { - Header func(HeaderFunc) HeaderFunc - WriteHeader func(WriteHeaderFunc) WriteHeaderFunc - Write func(WriteFunc) WriteFunc - Flush func(FlushFunc) FlushFunc - CloseNotify func(CloseNotifyFunc) CloseNotifyFunc - Hijack func(HijackFunc) HijackFunc - ReadFrom func(ReadFromFunc) ReadFromFunc -} - -// Wrap returns a wrapped version of w that provides the exact same interface -// as w. Specifically if w implements any combination of: -// -// - http.Flusher -// - http.CloseNotifier -// - http.Hijacker -// - io.ReaderFrom -// -// The wrapped version will implement the exact same combination. If no hooks -// are set, the wrapped version also behaves exactly as w. Hooks targeting -// methods not supported by w are ignored. Any other hooks will intercept the -// method they target and may modify the call's arguments and/or return values. -// The CaptureMetrics implementation serves as a working example for how the -// hooks can be used. -func Wrap(w http.ResponseWriter, hooks Hooks) http.ResponseWriter { - rw := &rw{w: w, h: hooks} - _, i0 := w.(http.Flusher) - _, i1 := w.(http.CloseNotifier) - _, i2 := w.(http.Hijacker) - _, i3 := w.(io.ReaderFrom) - switch { - // combination 1/16 - case !i0 && !i1 && !i2 && !i3: - return struct { - Unwrapper - http.ResponseWriter - }{rw, rw} - // combination 2/16 - case !i0 && !i1 && !i2 && i3: - return struct { - Unwrapper - http.ResponseWriter - io.ReaderFrom - }{rw, rw, rw} - // combination 3/16 - case !i0 && !i1 && i2 && !i3: - return struct { - Unwrapper - http.ResponseWriter - http.Hijacker - }{rw, rw, rw} - // combination 4/16 - case !i0 && !i1 && i2 && i3: - return struct { - Unwrapper - http.ResponseWriter - http.Hijacker - io.ReaderFrom - }{rw, rw, rw, rw} - // combination 5/16 - case !i0 && i1 && !i2 && !i3: - return struct { - Unwrapper - http.ResponseWriter - http.CloseNotifier - }{rw, rw, rw} - // combination 6/16 - case !i0 && i1 && !i2 && i3: - return struct { - Unwrapper - http.ResponseWriter - http.CloseNotifier - io.ReaderFrom - }{rw, rw, rw, rw} - // combination 7/16 - case !i0 && i1 && i2 && !i3: - return struct { - Unwrapper - http.ResponseWriter - http.CloseNotifier - http.Hijacker - }{rw, rw, rw, rw} - // combination 8/16 - case !i0 && i1 && i2 && i3: - return struct { - Unwrapper - http.ResponseWriter - http.CloseNotifier - http.Hijacker - io.ReaderFrom - }{rw, rw, rw, rw, rw} - // combination 9/16 - case i0 && !i1 && !i2 && !i3: - return struct { - Unwrapper - http.ResponseWriter - http.Flusher - }{rw, rw, rw} - // combination 10/16 - case i0 && !i1 && !i2 && i3: - return struct { - Unwrapper - http.ResponseWriter - http.Flusher - io.ReaderFrom - }{rw, rw, rw, rw} - // combination 11/16 - case i0 && !i1 && i2 && !i3: - return struct { - Unwrapper - http.ResponseWriter - http.Flusher - http.Hijacker - }{rw, rw, rw, rw} - // combination 12/16 - case i0 && !i1 && i2 && i3: - return struct { - Unwrapper - http.ResponseWriter - http.Flusher - http.Hijacker - io.ReaderFrom - }{rw, rw, rw, rw, rw} - // combination 13/16 - case i0 && i1 && !i2 && !i3: - return struct { - Unwrapper - http.ResponseWriter - http.Flusher - http.CloseNotifier - }{rw, rw, rw, rw} - // combination 14/16 - case i0 && i1 && !i2 && i3: - return struct { - Unwrapper - http.ResponseWriter - http.Flusher - http.CloseNotifier - io.ReaderFrom - }{rw, rw, rw, rw, rw} - // combination 15/16 - case i0 && i1 && i2 && !i3: - return struct { - Unwrapper - http.ResponseWriter - http.Flusher - http.CloseNotifier - http.Hijacker - }{rw, rw, rw, rw, rw} - // combination 16/16 - case i0 && i1 && i2 && i3: - return struct { - Unwrapper - http.ResponseWriter - http.Flusher - http.CloseNotifier - http.Hijacker - io.ReaderFrom - }{rw, rw, rw, rw, rw, rw} - } - panic("unreachable") -} - -type rw struct { - w http.ResponseWriter - h Hooks -} - -func (w *rw) Unwrap() http.ResponseWriter { - return w.w -} - -func (w *rw) Header() http.Header { - f := w.w.(http.ResponseWriter).Header - if w.h.Header != nil { - f = w.h.Header(f) - } - return f() -} - -func (w *rw) WriteHeader(code int) { - f := w.w.(http.ResponseWriter).WriteHeader - if w.h.WriteHeader != nil { - f = w.h.WriteHeader(f) - } - f(code) -} - -func (w *rw) Write(b []byte) (int, error) { - f := w.w.(http.ResponseWriter).Write - if w.h.Write != nil { - f = w.h.Write(f) - } - return f(b) -} - -func (w *rw) Flush() { - f := w.w.(http.Flusher).Flush - if w.h.Flush != nil { - f = w.h.Flush(f) - } - f() -} - -func (w *rw) CloseNotify() <-chan bool { - f := w.w.(http.CloseNotifier).CloseNotify - if w.h.CloseNotify != nil { - f = w.h.CloseNotify(f) - } - return f() -} - -func (w *rw) Hijack() (net.Conn, *bufio.ReadWriter, error) { - f := w.w.(http.Hijacker).Hijack - if w.h.Hijack != nil { - f = w.h.Hijack(f) - } - return f() -} - -func (w *rw) ReadFrom(src io.Reader) (int64, error) { - f := w.w.(io.ReaderFrom).ReadFrom - if w.h.ReadFrom != nil { - f = w.h.ReadFrom(f) - } - return f(src) -} - -type Unwrapper interface { - Unwrap() http.ResponseWriter -} - -// Unwrap returns the underlying http.ResponseWriter from within zero or more -// layers of httpsnoop wrappers. -func Unwrap(w http.ResponseWriter) http.ResponseWriter { - if rw, ok := w.(Unwrapper); ok { - // recurse until rw.Unwrap() returns a non-Unwrapper - return Unwrap(rw.Unwrap()) - } else { - return w - } -} diff --git a/vendor/github.com/go-openapi/jsonpointer/.golangci.yml b/vendor/github.com/go-openapi/jsonpointer/.golangci.yml index dc7c96053d..9d2733176e 100644 --- a/vendor/github.com/go-openapi/jsonpointer/.golangci.yml +++ b/vendor/github.com/go-openapi/jsonpointer/.golangci.yml @@ -4,7 +4,10 @@ linters: disable: - depguard - funlen + - goconst - godox + - gomodguard + - gomodguard_v2 - exhaustruct - nlreturn - nonamedreturns diff --git a/vendor/github.com/go-openapi/jsonpointer/CONTRIBUTORS.md b/vendor/github.com/go-openapi/jsonpointer/CONTRIBUTORS.md index 9990f4a354..de0bf5c04b 100644 --- a/vendor/github.com/go-openapi/jsonpointer/CONTRIBUTORS.md +++ b/vendor/github.com/go-openapi/jsonpointer/CONTRIBUTORS.md @@ -4,21 +4,21 @@ | Total Contributors | Total Contributions | | --- | --- | -| 13 | 111 | +| 13 | 132 | | Username | All Time Contribution Count | All Commits | | --- | --- | --- | -| @fredbi | 63 | | +| @fredbi | 83 | | | @casualjim | 33 | | | @magodo | 3 | | | @youyuanwu | 3 | | +| @alexandear | 2 | | | @gaiaz-iusipov | 1 | | | @gbjk | 1 | | | @gordallott | 1 | | | @ianlancetaylor | 1 | | | @mfleader | 1 | | | @Neo2308 | 1 | | -| @alexandear | 1 | | | @olivierlemasle | 1 | | | @testwill | 1 | | diff --git a/vendor/github.com/go-openapi/jsonpointer/README.md b/vendor/github.com/go-openapi/jsonpointer/README.md index 24fbe1bf68..6e7929c64b 100644 --- a/vendor/github.com/go-openapi/jsonpointer/README.md +++ b/vendor/github.com/go-openapi/jsonpointer/README.md @@ -16,6 +16,14 @@ An implementation of JSON Pointer for golang, which supports go `struct`. ## Announcements +* **2026-07-07** : landing v1.0.0 + * stable API pledge + +* **2026-06-29** : reinsourced external dependency to swag (v0.24.0) + * module `github.com/go-openapi/swag/jsonname` is source directly here, so we no longer have any external dependency + * `jsonname` was never really used by any other package, so it makes sense to deprecate it away from the `swag` family + and retrofit its functionality here. `jsonpointer` no longer get external dependencies, besides test dependencies. + * **2026-04-15** : added support for trailing "-" for arrays (v0.23.0) * this brings full support of [RFC6901][RFC6901] * this is supported for types relying on the reflection-based implemented @@ -30,12 +38,13 @@ An implementation of JSON Pointer for golang, which supports go `struct`. * the default name provider in use is not fully aligned with go JSON stdlib * exposed an option (or global setting) to change the provider that resolves a struct into json keys * the default behavior is not altered - * a new alternate name provider is added (imported from `go-openapi/swag/jsonname`), aligned with JSON stdlib behavior ## Status API is stable and feature-complete. +The project continues to receive regular updates, bug fixes and hygiene maintenance (CI, linting, etc). + ## Import this library in your project ```cmd diff --git a/vendor/github.com/go-openapi/jsonpointer/errors.go b/vendor/github.com/go-openapi/jsonpointer/errors.go index 8813474d44..2ae6e3cfb3 100644 --- a/vendor/github.com/go-openapi/jsonpointer/errors.go +++ b/vendor/github.com/go-openapi/jsonpointer/errors.go @@ -21,14 +21,15 @@ const ( // ErrUnsupportedValueType indicates that a value of the wrong type is being set. ErrUnsupportedValueType pointerError = "only structs, pointers, maps and slices are supported for setting values" - // ErrDashToken indicates use of the RFC 6901 "-" reference token - // in a context where it cannot be resolved. + // ErrDashToken indicates use of the RFC 6901 "-" reference token in a context where it cannot be + // resolved. // - // Per RFC 6901 §4 the "-" token refers to the (nonexistent) element - // after the last array element. It may only be used as the terminal - // token of a [Pointer.Set] against a slice, where it means "append". - // Any other use (get, offset, intermediate traversal, non-slice target) - // is an error condition that wraps this sentinel. + // Per RFC 6901 §4 the "-" token refers to the (nonexistent) element after the last array element. + // It may only be used as the terminal token of a [Pointer.Set] against a slice, where it means + // "append". + // + // Any other use (get, offset, intermediate traversal, non-slice target) is an error condition that + // wraps this sentinel. ErrDashToken pointerError = `the "-" array token cannot be resolved here` //nolint:gosec // G101 false positive: this is a JSON Pointer reference token, not a credential. ) diff --git a/vendor/github.com/go-openapi/jsonpointer/ifaces.go b/vendor/github.com/go-openapi/jsonpointer/ifaces.go index 1e56ac0442..31359c48fa 100644 --- a/vendor/github.com/go-openapi/jsonpointer/ifaces.go +++ b/vendor/github.com/go-openapi/jsonpointer/ifaces.go @@ -5,39 +5,42 @@ package jsonpointer import "reflect" -// JSONPointable is an interface for structs to implement, -// when they need to customize the json pointer process or want to avoid the use of reflection. +// JSONPointable is an interface for structs to implement, when they need to customize the json +// pointer process or want to avoid the use of reflection. type JSONPointable interface { // JSONLookup returns a value pointed at this (unescaped) key. JSONLookup(key string) (any, error) } -// JSONSetable is an interface for structs to implement, -// when they need to customize the json pointer process or want to avoid the use of reflection. +// JSONSetable is an interface for structs to implement, when they need to customize the json +// pointer process or want to avoid the use of reflection. // // # Handling of the RFC 6901 "-" token // -// When a type implementing JSONSetable is the terminal parent of a [Pointer.Set] -// call, the library passes the raw reference token to JSONSet without -// interpretation. In particular, the RFC 6901 "-" token (which conventionally -// means "append" for arrays, per RFC 6902) is forwarded verbatim as the key -// argument. Implementations that model an array-like container are expected -// to give "-" the append semantics; implementations that do not should return -// an error wrapping [ErrDashToken] (or [ErrPointer]) for clarity. +// When a type implementing JSONSetable is the terminal parent of a [Pointer.Set] call, the library +// passes the raw reference token to JSONSet without interpretation. // -// Implementations are responsible for any in-place mutation: the library does -// not attempt to rebind the result of JSONSet into a parent container. +// In particular, the RFC 6901 "-" token (which conventionally means "append" for arrays, per RFC +// 6902) is forwarded verbatim as the key argument. +// +// Implementations that model an array-like container are expected to give "-" the append semantics; +// implementations that do not should return an error wrapping [ErrDashToken] (or [ErrPointer]) for +// clarity. +// +// Implementations are responsible for any in-place mutation: the library does not attempt to rebind +// the result of JSONSet into a parent container. type JSONSetable interface { // JSONSet sets the value pointed at the (unescaped) key. // - // The key may be the RFC 6901 "-" token when the pointer targets a - // slice-like member; see the interface documentation for details. + // The key may be the RFC 6901 "-" token when the pointer targets a slice-like member; see the + // interface documentation for details. JSONSet(key string, value any) error } // NameProvider knows how to resolve go struct fields into json names. // -// The default provider is brought by [github.com/go-openapi/swag/jsonname.DefaultJSONNameProvider]. +// The default provider is brought by +// [github.com/go-openapi/jsonpointer/jsonname.DefaultJSONNameProvider]. type NameProvider interface { // GetGoName gets the go name for a json property name GetGoName(subject any, name string) (string, bool) diff --git a/vendor/github.com/go-openapi/swag/jsonname/doc.go b/vendor/github.com/go-openapi/jsonpointer/jsonname/doc.go similarity index 100% rename from vendor/github.com/go-openapi/swag/jsonname/doc.go rename to vendor/github.com/go-openapi/jsonpointer/jsonname/doc.go diff --git a/vendor/github.com/go-openapi/swag/jsonname/go_name_provider.go b/vendor/github.com/go-openapi/jsonpointer/jsonname/go_name_provider.go similarity index 88% rename from vendor/github.com/go-openapi/swag/jsonname/go_name_provider.go rename to vendor/github.com/go-openapi/jsonpointer/jsonname/go_name_provider.go index adc4426873..5eec18fbfd 100644 --- a/vendor/github.com/go-openapi/swag/jsonname/go_name_provider.go +++ b/vendor/github.com/go-openapi/jsonpointer/jsonname/go_name_provider.go @@ -11,11 +11,11 @@ import ( var _ providerIface = (*GoNameProvider)(nil) -// GoNameProvider resolves json property names to go struct field names following -// the same rules as the standard library's [encoding/json] package. +// GoNameProvider resolves json property names to go struct field names following the same rules as +// the standard library's [encoding/json] package. // -// Contrary to [NameProvider], it considers exported fields without a json tag, -// and promotes fields from anonymous embedded struct types. +// Contrary to [NameProvider], it considers exported fields without a json tag, and promotes fields +// from anonymous embedded struct types. // // Rules (aligned with encoding/json): // @@ -104,9 +104,9 @@ func (n *GoNameProvider) nameIndexFor(tpe reflect.Type) nameIndex { return names } -// fieldEntry captures a candidate field discovered while walking a struct -// along with the indirection path from the root type (used to resolve conflicts -// by depth in the same way encoding/json does). +// fieldEntry captures a candidate field discovered while walking a struct along with the +// indirection path from the root type (used to resolve conflicts by depth in the same way +// encoding/json does). type fieldEntry struct { goName string jsonName string @@ -129,6 +129,8 @@ func buildGoNameIndex(tpe reflect.Type) nameIndex { // collectGoFields walks tpe breadth-first along anonymous struct fields, // reproducing the field selection performed by encoding/json.typeFields. +// +//nolint:gocognit // everything is inlined to help the compiler determine what escapes and what doesn't func collectGoFields(tpe reflect.Type) []fieldEntry { if tpe.Kind() != reflect.Struct { return nil @@ -157,12 +159,12 @@ func collectGoFields(tpe reflect.Type) []fieldEntry { } for _, q := range current { - for i := 0; i < q.typ.NumField(); i++ { + for i := range q.typ.NumField() { sf := q.typ.Field(i) if sf.Anonymous { ft := sf.Type - if ft.Kind() == reflect.Ptr { + if ft.Kind() == reflect.Pointer { ft = ft.Elem() } if !sf.IsExported() && ft.Kind() != reflect.Struct { @@ -180,7 +182,7 @@ func collectGoFields(tpe reflect.Type) []fieldEntry { tagged := jsonName != "" ft := sf.Type - if ft.Kind() == reflect.Ptr { + if ft.Kind() == reflect.Pointer { ft = ft.Elem() } @@ -221,9 +223,9 @@ func collectGoFields(tpe reflect.Type) []fieldEntry { return dominantFields(candidates) } -// dominantFields applies the Go encoding/json conflict resolution rules: -// at each JSON name, the shallowest field wins; at equal depth, a uniquely -// tagged candidate wins; otherwise all candidates for that name are dropped. +// dominantFields applies the Go encoding/json conflict resolution rules: at each JSON name, the +// shallowest field wins; at equal depth, a uniquely tagged candidate wins; otherwise all candidates +// for that name are dropped. func dominantFields(candidates []fieldEntry) []fieldEntry { byName := make(map[string][]fieldEntry, len(candidates)) for _, c := range candidates { @@ -272,14 +274,14 @@ func dominantFields(candidates []fieldEntry) []fieldEntry { return out } -// parseJSONTag returns the name component of a json struct tag and whether -// it carried any non-name option (kept for future-proofing, e.g. "omitempty"). +// parseJSONTag returns the name component of a json struct tag and whether it carried any non-name +// option (kept for future-proofing, e.g. "omitempty"). func parseJSONTag(tag string) (string, string) { if tag == "" { return "", "" } - if idx := strings.IndexByte(tag, ','); idx >= 0 { - return tag[:idx], tag[idx+1:] + if before, after, ok := strings.Cut(tag, ","); ok { + return before, after } return tag, "" diff --git a/vendor/github.com/go-openapi/swag/jsonname/ifaces.go b/vendor/github.com/go-openapi/jsonpointer/jsonname/ifaces.go similarity index 77% rename from vendor/github.com/go-openapi/swag/jsonname/ifaces.go rename to vendor/github.com/go-openapi/jsonpointer/jsonname/ifaces.go index 812ace5639..64871f0d27 100644 --- a/vendor/github.com/go-openapi/swag/jsonname/ifaces.go +++ b/vendor/github.com/go-openapi/jsonpointer/jsonname/ifaces.go @@ -5,9 +5,11 @@ package jsonname import "reflect" -// providerIface is an unexported compile-time contract that every name provider -// in this package is expected to satisfy. -// It mirrors the interface declared by the main consumer of this module: [github.com/go-openapi/jsonpointer.NameProvider]. +// providerIface is an unexported compile-time contract that every name provider in this package is +// expected to satisfy. +// +// It mirrors the interface declared by the main consumer of this module: +// [github.com/go-openapi/jsonpointer.NameProvider]. type providerIface interface { GetGoName(subject any, name string) (string, bool) GetGoNameForType(tpe reflect.Type, name string) (string, bool) diff --git a/vendor/github.com/go-openapi/swag/jsonname/name_provider.go b/vendor/github.com/go-openapi/jsonpointer/jsonname/name_provider.go similarity index 83% rename from vendor/github.com/go-openapi/swag/jsonname/name_provider.go rename to vendor/github.com/go-openapi/jsonpointer/jsonname/name_provider.go index 9f5da7a016..1bec2406b5 100644 --- a/vendor/github.com/go-openapi/swag/jsonname/name_provider.go +++ b/vendor/github.com/go-openapi/jsonpointer/jsonname/name_provider.go @@ -10,12 +10,12 @@ import ( ) // DefaultJSONNameProvider is the default cache for types. -var DefaultJSONNameProvider = NewNameProvider() +var DefaultJSONNameProvider = NewNameProvider() //nolint:gochecknoglobals // default settings, for backward compatible package-level settings var _ providerIface = (*NameProvider)(nil) -// NameProvider represents an object capable of translating from go property names -// to json property names. +// NameProvider represents an object capable of translating from go property names to json property +// names. // // This type is thread-safe. // @@ -30,7 +30,7 @@ type nameIndex struct { goNames map[string]string } -// NewNameProvider creates a new name provider +// NewNameProvider creates a new name provider. func NewNameProvider() *NameProvider { return &NameProvider{ lock: &sync.Mutex{}, @@ -39,7 +39,7 @@ func NewNameProvider() *NameProvider { } func buildnameIndex(tpe reflect.Type, idx, reverseIdx map[string]string) { - for i := 0; i < tpe.NumField(); i++ { + for i := range tpe.NumField() { targetDes := tpe.Field(i) if targetDes.PkgPath != "" { // unexported @@ -73,14 +73,14 @@ func buildnameIndex(tpe reflect.Type, idx, reverseIdx map[string]string) { } func newNameIndex(tpe reflect.Type) nameIndex { - var idx = make(map[string]string, tpe.NumField()) - var reverseIdx = make(map[string]string, tpe.NumField()) + idx := make(map[string]string, tpe.NumField()) + reverseIdx := make(map[string]string, tpe.NumField()) buildnameIndex(tpe, idx, reverseIdx) return nameIndex{jsonNames: idx, goNames: reverseIdx} } -// GetJSONNames gets all the json property names for a type +// GetJSONNames gets all the json property names for a type. func (n *NameProvider) GetJSONNames(subject any) []string { n.lock.Lock() defer n.lock.Unlock() @@ -97,13 +97,13 @@ func (n *NameProvider) GetJSONNames(subject any) []string { return res } -// GetJSONName gets the json name for a go property name +// GetJSONName gets the json name for a go property name. func (n *NameProvider) GetJSONName(subject any, name string) (string, bool) { tpe := reflect.Indirect(reflect.ValueOf(subject)).Type() return n.GetJSONNameForType(tpe, name) } -// GetJSONNameForType gets the json name for a go property name on a given type +// GetJSONNameForType gets the json name for a go property name on a given type. func (n *NameProvider) GetJSONNameForType(tpe reflect.Type, name string) (string, bool) { n.lock.Lock() defer n.lock.Unlock() @@ -115,13 +115,13 @@ func (n *NameProvider) GetJSONNameForType(tpe reflect.Type, name string) (string return nme, ok } -// GetGoName gets the go name for a json property name +// GetGoName gets the go name for a json property name. func (n *NameProvider) GetGoName(subject any, name string) (string, bool) { tpe := reflect.Indirect(reflect.ValueOf(subject)).Type() return n.GetGoNameForType(tpe, name) } -// GetGoNameForType gets the go name for a given type for a json property name +// GetGoNameForType gets the go name for a given type for a json property name. func (n *NameProvider) GetGoNameForType(tpe reflect.Type, name string) (string, bool) { n.lock.Lock() defer n.lock.Unlock() diff --git a/vendor/github.com/go-openapi/jsonpointer/options.go b/vendor/github.com/go-openapi/jsonpointer/options.go index d52caab222..223c1e5ff0 100644 --- a/vendor/github.com/go-openapi/jsonpointer/options.go +++ b/vendor/github.com/go-openapi/jsonpointer/options.go @@ -6,7 +6,7 @@ package jsonpointer import ( "sync" - "github.com/go-openapi/swag/jsonname" + "github.com/go-openapi/jsonpointer/jsonname" ) // Option to tune the behavior of a JSON [Pointer]. @@ -25,9 +25,9 @@ var ( // // By default, the default provider is [jsonname.DefaultJSONNameProvider]. // -// It is safe to call concurrently with [Pointer.Get], [Pointer.Set], -// [GetForToken] and [SetForToken]. The typical usage is to call it once -// at initialization time. +// It is safe to call concurrently with [Pointer.Get], [Pointer.Set], [GetForToken] and +// [SetForToken]. +// The typical usage is to call it once at initialization time. // // A nil provider is ignored. func SetDefaultNameProvider(provider NameProvider) { @@ -41,16 +41,15 @@ func SetDefaultNameProvider(provider NameProvider) { defaultOptions.provider = provider } -// UseGoNameProvider sets the [NameProvider] as a package-level default -// to the alternative provider [jsonname.GoNameProvider], that covers a few areas -// not supported by the default name provider. +// UseGoNameProvider sets the [NameProvider] as a package-level default to the alternative provider +// [jsonname.GoNameProvider], that covers a few areas not supported by the default name provider. // // This implementation supports untagged exported fields and embedded types in go struct. // It follows strictly the behavior of the JSON standard library regarding field naming conventions. // -// It is safe to call concurrently with [Pointer.Get], [Pointer.Set], -// [GetForToken] and [SetForToken]. The typical usage is to call it once -// at initialization time. +// It is safe to call concurrently with [Pointer.Get], [Pointer.Set], [GetForToken] and +// [SetForToken]. +// The typical usage is to call it once at initialization time. func UseGoNameProvider() { SetDefaultNameProvider(jsonname.NewGoNameProvider()) } diff --git a/vendor/github.com/go-openapi/jsonpointer/pointer.go b/vendor/github.com/go-openapi/jsonpointer/pointer.go index 2369c1827e..05fc863ee6 100644 --- a/vendor/github.com/go-openapi/jsonpointer/pointer.go +++ b/vendor/github.com/go-openapi/jsonpointer/pointer.go @@ -34,7 +34,8 @@ const ( // // For struct s resolved by reflection, key mappings honor the conventional struct tag `json`. // -// Fields that do not specify a `json` tag, or specify an empty one, or are tagged as `json:"-"` are ignored. +// Fields that do not specify a `json` tag, or specify an empty one, or are tagged as `json:"-"` are +// ignored. // // # Limitations // @@ -61,23 +62,24 @@ func (p *Pointer) Get(document any, opts ...Option) (any, reflect.Kind, error) { return p.get(document, o.provider) } -// Set uses the pointer to set a value from a data type -// that represent a JSON document. +// Set uses the pointer to set a value from a data type that represent a JSON document. // // # Mutation contract // -// Set mutates the provided document in place whenever Go's type system allows -// it: when document is a map, a pointer, or when the targeted value is reached -// through an addressable ancestor (e.g. a struct field traversed via a pointer, -// a slice element). Callers that rely on this in-place behavior may continue -// to ignore the returned document. +// Set mutates the provided document in place whenever Go's type system allows it: when document is +// a map, a pointer, or when the targeted value is reached through an addressable ancestor (e.g. a +// struct field traversed via a pointer, a slice element). +// +// Callers that rely on this in-place behavior may continue to ignore the returned document. // // The returned document is only load-bearing when Set cannot mutate in place. -// This happens in one specific case: appending to a top-level slice passed by -// value (e.g. document of type []T rather than *[]T) via the RFC 6901 "-" -// terminal token. reflect.Append produces a new slice header that the library -// cannot rebind into the caller's variable; the updated document is returned -// instead. Pass *[]T if you want in-place rebind for that case as well. +// +// This happens in one specific case: appending to a top-level slice passed by value (e.g. document +// of type []T rather than *[]T) via the RFC 6901 "-" terminal token. reflect.Append produces a new +// slice header that the library cannot rebind into the caller's variable; the updated document is +// returned instead. +// +// Pass *[]T if you want in-place rebind for that case as well. // // See [ErrDashToken] for the semantics of the "-" token. func (p *Pointer) Set(document any, value any, opts ...Option) (any, error) { @@ -112,23 +114,23 @@ func (p *Pointer) String() string { return pointerSeparator + strings.Join(p.referenceTokens, pointerSeparator) } -// Offset returns the byte offset, in the raw JSON text of document, of the -// location referenced by this pointer's terminal token. +// Offset returns the byte offset, in the raw JSON text of document, of the location referenced by +// this pointer's terminal token. +// +// Unlike [Pointer.Get] and [Pointer.Set], which operate on a decoded Go value, Offset operates +// directly on the textual JSON source. // -// Unlike [Pointer.Get] and [Pointer.Set], which operate on a decoded Go value, -// Offset operates directly on the textual JSON source. It drives an -// [encoding/json.Decoder] over the string and stops at the terminal token, -// returning the position at which the decoder was about to read that token. +// It drives an [encoding/json.Decoder] over the string and stops at the terminal token, returning +// the position at which the decoder was about to read that token. // -// It is primarily intended for tooling that needs to map a pointer back to a -// region of the original source: reporting line/column for validation or -// parse diagnostics, extracting a sub-document by slicing the raw bytes, or -// highlighting the referenced span in an editor. +// It is primarily intended for tooling that needs to map a pointer back to a region of the original +// source: reporting line/column for validation or parse diagnostics, extracting a sub-document by +// slicing the raw bytes, or highlighting the referenced span in an editor. // // # Offset semantics // -// The meaning of the returned offset depends on whether the terminal token -// addresses an object property or an array element: +// The meaning of the returned offset depends on whether the terminal token addresses an object +// property or an array element: // // - Object property: the offset points to the first byte of the key (its // opening quote character), not to the associated value. For example, @@ -183,16 +185,15 @@ func (p *Pointer) Offset(document string) (int64, error) { return skipJSONSeparator(document, offset), nil } -// skipJSONSeparator advances offset past trailing JSON whitespace and at most -// one value separator (comma) in document, so the result points at the first -// byte of the next JSON token. +// skipJSONSeparator advances offset past trailing JSON whitespace and at most one value separator +// (comma) in document, so the result points at the first byte of the next JSON token. // -// The streaming decoder's InputOffset sits right after the most recently -// consumed token, which between values is the comma (or whitespace) — not -// the following token. Normalizing here keeps Offset's contract uniform: -// for both object keys and array elements, and regardless of position within -// the parent container, the returned offset always points at the first byte -// of the addressed token. +// The streaming decoder's InputOffset sits right after the most recently consumed token, which +// between values is the comma (or whitespace) — not the following token. +// +// Normalizing here keeps Offset's contract uniform: for both object keys and array elements, and +// regardless of position within the parent container, the returned offset always points at the +// first byte of the addressed token. func skipJSONSeparator(document string, offset int64) int64 { n := int64(len(document)) for offset < n && isJSONWhitespace(document[offset]) { @@ -279,14 +280,13 @@ func (p *Pointer) set(node, data any, nameProvider NameProvider) (any, error) { return p.setAt(node, p.referenceTokens, data, nameProvider) } -// setAt recursively walks the token list, setting the data at the terminal -// token and rebinding any new child reference (e.g. a slice header returned -// by an "-" append) into its parent on the way back up. +// setAt recursively walks the token list, setting the data at the terminal token and rebinding any +// new child reference (e.g. a slice header returned by an "-" append) into its parent on the way +// back up. // -// Returning the (possibly new) node at each level is what makes append work -// at any depth without requiring the caller to pass a pointer to the -// containing slice: the new slice header propagates up and each parent -// rebinds it via the appropriate kind-specific setter. +// Returning the (possibly new) node at each level is what makes append work at any depth without +// requiring the caller to pass a pointer to the containing slice: the new slice header propagates +// up and each parent rebinds it via the appropriate kind-specific setter. func (p *Pointer) setAt(node any, tokens []string, data any, nameProvider NameProvider) (any, error) { decodedToken := Unescape(tokens[0]) @@ -309,15 +309,14 @@ func (p *Pointer) setAt(node any, tokens []string, data any, nameProvider NamePr // rebindChild writes newChild back into node at decodedToken. // -// For cases where the child was already mutated in place (pointer aliasing, -// addressable slice elements) the rebind is a safe no-op. For cases where -// the child was returned by value (map entries holding a slice, slices -// reached through a non-addressable ancestor), the rebind propagates the -// new value into the parent. +// For cases where the child was already mutated in place (pointer aliasing, addressable slice +// elements) the rebind is a safe no-op. +// +// For cases where the child was returned by value (map entries holding a slice, slices reached +// through a non-addressable ancestor), the rebind propagates the new value into the parent. // -// Parents implementing [JSONPointable] are left alone: they took ownership -// of the child via JSONLookup and did not opt into a JSONSet-based rebind -// on intermediate tokens. +// Parents implementing [JSONPointable] are left alone: they took ownership of the child via +// JSONLookup and did not opt into a JSONSet-based rebind on intermediate tokens. func rebindChild(node any, decodedToken string, newChild any, nameProvider NameProvider) (any, error) { if _, ok := node.(JSONPointable); ok { return node, nil @@ -362,9 +361,9 @@ func rebindChild(node any, decodedToken string, newChild any, nameProvider NameP } } -// assignReflectValue assigns src into dst, unwrapping a pointer when dst -// expects the pointee type. This tolerates the pointer-wrapping performed -// by [typeFromValue] for addressable fields. +// assignReflectValue assigns src into dst, unwrapping a pointer when dst expects the pointee type. +// +// This tolerates the pointer-wrapping performed by [typeFromValue] for addressable fields. func assignReflectValue(dst reflect.Value, src any) { nv := reflect.ValueOf(src) if !nv.IsValid() { @@ -474,8 +473,8 @@ func GetForToken(document any, decodedToken string, opts ...Option) (any, reflec // SetForToken sets a value for a json pointer token 1 level deep. // -// See [Pointer.Set] for the mutation contract, in particular the handling of -// the RFC 6901 "-" token on slices. +// See [Pointer.Set] for the mutation contract, in particular the handling of the RFC 6901 "-" token +// on slices. func SetForToken(document any, decodedToken string, value any, opts ...Option) (any, error) { o := optionsWithDefaults(opts) @@ -586,10 +585,10 @@ func setSingleImpl(node, data any, decodedToken string, nameProvider NameProvide case reflect.Slice: if decodedToken == dashToken { - // RFC 6901 §4 / RFC 6902 append semantics: terminal "-" appends - // the value to the slice. We rebind in place when the slice is - // reachable via an addressable ancestor; otherwise we return the - // new slice header for the parent (or the public Set) to rebind. + // RFC 6901 §4 / RFC 6902 append semantics: terminal "-" appends the value to the slice. + // + // We rebind in place when the slice is reachable via an addressable ancestor; otherwise we + // return the new slice header for the parent (or the public Set) to rebind. value := reflect.ValueOf(data) elemType := rValue.Type().Elem() if !value.Type().AssignableTo(elemType) { @@ -650,8 +649,8 @@ func offsetSingleObject(dec *json.Decoder, decodedToken string) (int64, error) { return offset, nil } - // Consume the associated value. Scalars are fully read by a single - // Token() call; composite values must be drained. + // Consume the associated value. + // Scalars are fully read by a single Token() call; composite values must be drained. tk, err = dec.Token() if err != nil { return 0, err @@ -736,10 +735,7 @@ func drainSingle(dec *json.Decoder) error { return nil } -// JSON pointer encoding: -// ~0 => ~ -// ~1 => / -// ... and vice versa +// JSON pointer encoding: ~0 => ~ ~1 => / ... and vice versa. const ( encRefTok0 = `~0` diff --git a/vendor/github.com/go-openapi/jsonreference/.gitignore b/vendor/github.com/go-openapi/jsonreference/.gitignore index 885dc27ab0..d8f4186fe5 100644 --- a/vendor/github.com/go-openapi/jsonreference/.gitignore +++ b/vendor/github.com/go-openapi/jsonreference/.gitignore @@ -3,4 +3,3 @@ .idea .env .mcp.json -.claude/ diff --git a/vendor/github.com/go-openapi/jsonreference/CONTRIBUTORS.md b/vendor/github.com/go-openapi/jsonreference/CONTRIBUTORS.md index 7faeb83a77..d20737c946 100644 --- a/vendor/github.com/go-openapi/jsonreference/CONTRIBUTORS.md +++ b/vendor/github.com/go-openapi/jsonreference/CONTRIBUTORS.md @@ -4,18 +4,18 @@ | Total Contributors | Total Contributions | | --- | --- | -| 9 | 73 | +| 9 | 83 | | Username | All Time Contribution Count | All Commits | | --- | --- | --- | -| @fredbi | 36 | https://github.com/go-openapi/jsonreference/commits?author=fredbi | -| @casualjim | 25 | https://github.com/go-openapi/jsonreference/commits?author=casualjim | -| @youyuanwu | 5 | https://github.com/go-openapi/jsonreference/commits?author=youyuanwu | -| @olivierlemasle | 2 | https://github.com/go-openapi/jsonreference/commits?author=olivierlemasle | -| @apelisse | 1 | https://github.com/go-openapi/jsonreference/commits?author=apelisse | -| @gbjk | 1 | https://github.com/go-openapi/jsonreference/commits?author=gbjk | -| @honza | 1 | https://github.com/go-openapi/jsonreference/commits?author=honza | -| @Neo2308 | 1 | https://github.com/go-openapi/jsonreference/commits?author=Neo2308 | -| @erraggy | 1 | https://github.com/go-openapi/jsonreference/commits?author=erraggy | +| @fredbi | 46 | | +| @casualjim | 25 | | +| @youyuanwu | 5 | | +| @olivierlemasle | 2 | | +| @apelisse | 1 | | +| @gbjk | 1 | | +| @honza | 1 | | +| @Neo2308 | 1 | | +| @erraggy | 1 | | - _this file was generated by the [Contributors GitHub Action](https://github.com/github/contributors)_ + _this file was generated by the [Contributors GitHub Action](https://github.com/github-community-projects/contributors)_ diff --git a/vendor/github.com/go-openapi/jsonreference/README.md b/vendor/github.com/go-openapi/jsonreference/README.md index adea160619..fbd16cf892 100644 --- a/vendor/github.com/go-openapi/jsonreference/README.md +++ b/vendor/github.com/go-openapi/jsonreference/README.md @@ -16,13 +16,8 @@ An implementation of JSON Reference for golang. ## Announcements -* **2025-12-19** : new community chat on discord - * a new discord community channel is available to be notified of changes and support users - * our venerable Slack channel remains open, and will be eventually discontinued on **2026-03-31** - -You may join the discord community by clicking the invite link on the discord badge (also above). [![Discord Channel][discord-badge]][discord-url] - -Or join our Slack channel: [![Slack Channel][slack-logo]![slack-badge]][slack-url] +* **2026-07-07** : landing v1.0.0 + * stable API pledge ## Status @@ -74,9 +69,9 @@ on top of which it has been built. ## Other documentation * [All-time contributors](./CONTRIBUTORS.md) -* [Contributing guidelines](.github/CONTRIBUTING.md) -* [Maintainers documentation](docs/MAINTAINERS.md) -* [Code style](docs/STYLE.md) +* [Contributing guidelines][contributing-doc-site] +* [Maintainers documentation][maintainers-doc-site] +* [Code style][style-doc-site] ## Cutting a new release @@ -111,11 +106,8 @@ Maintainers can cut a new release by either: [doc-url]: https://goswagger.io/go-openapi [godoc-badge]: https://pkg.go.dev/badge/github.com/go-openapi/jsonreference [godoc-url]: http://pkg.go.dev/github.com/go-openapi/jsonreference -[slack-logo]: https://a.slack-edge.com/e6a93c1/img/icons/favicon-32.png -[slack-badge]: https://img.shields.io/badge/slack-blue?link=https%3A%2F%2Fgoswagger.slack.com%2Farchives%2FC04R30YM -[slack-url]: https://goswagger.slack.com/archives/C04R30YMU [discord-badge]: https://img.shields.io/discord/1446918742398341256?logo=discord&label=discord&color=blue -[discord-url]: https://discord.gg/twZ9BwT3 +[discord-url]: https://discord.gg/FfnFYaC3k5 [license-badge]: http://img.shields.io/badge/license-Apache%20v2-orange.svg @@ -125,3 +117,7 @@ Maintainers can cut a new release by either: [goversion-url]: https://github.com/go-openapi/jsonreference/blob/master/go.mod [top-badge]: https://img.shields.io/github/languages/top/go-openapi/jsonreference [commits-badge]: https://img.shields.io/github/commits-since/go-openapi/jsonreference/latest + +[contributing-doc-site]: https://go-openapi.github.io/doc-site/contributing/contributing/index.html +[maintainers-doc-site]: https://go-openapi.github.io/doc-site/maintainers/index.html +[style-doc-site]: https://go-openapi.github.io/doc-site/contributing/style/index.html diff --git a/vendor/github.com/go-openapi/swag/.gitignore b/vendor/github.com/go-openapi/swag/.gitignore index 1680db44c0..3ceb596fa2 100644 --- a/vendor/github.com/go-openapi/swag/.gitignore +++ b/vendor/github.com/go-openapi/swag/.gitignore @@ -4,3 +4,4 @@ Godeps .idea *.out .mcp.json +.worktrees diff --git a/vendor/github.com/go-openapi/swag/.golangci.yml b/vendor/github.com/go-openapi/swag/.golangci.yml index 126264a6b8..099c0a78c6 100644 --- a/vendor/github.com/go-openapi/swag/.golangci.yml +++ b/vendor/github.com/go-openapi/swag/.golangci.yml @@ -14,7 +14,10 @@ linters: - gocognit - godot - godox + - goconst - gomoddirectives + - gomodguard + - gomodguard_v2 - gosmopolitan - inamedparam - intrange diff --git a/vendor/github.com/go-openapi/swag/CONTRIBUTORS.md b/vendor/github.com/go-openapi/swag/CONTRIBUTORS.md index 286878acff..0f0711cd5f 100644 --- a/vendor/github.com/go-openapi/swag/CONTRIBUTORS.md +++ b/vendor/github.com/go-openapi/swag/CONTRIBUTORS.md @@ -4,11 +4,11 @@ | Total Contributors | Total Contributions | | --- | --- | -| 24 | 242 | +| 24 | 251 | | Username | All Time Contribution Count | All Commits | | --- | --- | --- | -| @fredbi | 112 | | +| @fredbi | 121 | | | @casualjim | 98 | | | @alexandear | 4 | | | @orisano | 3 | | diff --git a/vendor/github.com/go-openapi/swag/README.md b/vendor/github.com/go-openapi/swag/README.md index 64f6671039..c6c2d21e94 100644 --- a/vendor/github.com/go-openapi/swag/README.md +++ b/vendor/github.com/go-openapi/swag/README.md @@ -34,12 +34,9 @@ You may also use it standalone for your projects. * **2025-12-19** : new community chat on discord * a new discord community channel is available to be notified of changes and support users - * our venerable Slack channel remains open, and will be eventually discontinued on **2026-03-31** You may join the discord community by clicking the invite link on the discord badge (also above). [![Discord Channel][discord-badge]][discord-url] -Or join our Slack channel: [![Slack Channel][slack-logo]![slack-badge]][slack-url] - ## Status API is stable. @@ -70,11 +67,12 @@ Child modules will continue to evolve and some new ones may be added in the futu | `cmdutils` | utilities to work with CLIs || | `conv` | type conversion utilities | convert between values and pointers for any types
convert from string to builtin types (wraps `strconv`)
require `./typeutils` (test dependency)
| | `fileutils` | file utilities | | -| `jsonname` | JSON utilities | infer JSON names from `go` properties
| +| `jsonname` | JSON utilities (deprecated) | infer JSON names from `go` properties
use `github.com/go-openapi/jsonpointer/jsonname` instead | | `jsonutils` | JSON utilities | fast json concatenation
read and write JSON from and to dynamic `go` data structures
~require `github.com/mailru/easyjson`~
| | `loading` | file loading | load from file or http
require `./yamlutils`
| | `mangling` | safe name generation | name mangling for `go`
| | `netutils` | networking utilities | host, port from address
| +| `pools` | utilities to work with sync.Pools | | | `stringutils` | `string` utilities | search in slice (with case-insensitive)
split/join query parameters as arrays
| | `typeutils` | `go` types utilities | check the zero value for any type
safe check for a nil value
| | `yamlutils` | YAML utilities | converting YAML to JSON
loading YAML into a dynamic YAML document
maintaining the original order of keys in YAML objects
require `./jsonutils`
~require `github.com/mailru/easyjson`~
require `go.yaml.in/yaml/v3`
| @@ -171,9 +169,9 @@ on top of which it has been built. ## Other documentation * [All-time contributors](./CONTRIBUTORS.md) -* [Contributing guidelines](.github/CONTRIBUTING.md) -* [Maintainers documentation](docs/MAINTAINERS.md) -* [Code style](docs/STYLE.md) +* [Contributing guidelines][contributing-doc-site] +* [Maintainers documentation][maintainers-doc-site] +* [Code style][style-doc-site] ## Cutting a new release @@ -208,9 +206,6 @@ Maintainers can cut a new release by either: [doc-url]: https://goswagger.io/go-openapi [godoc-badge]: https://pkg.go.dev/badge/github.com/go-openapi/swag [godoc-url]: http://pkg.go.dev/github.com/go-openapi/swag -[slack-logo]: https://a.slack-edge.com/e6a93c1/img/icons/favicon-32.png -[slack-badge]: https://img.shields.io/badge/slack-blue?link=https%3A%2F%2Fgoswagger.slack.com%2Farchives%2FC04R30YM -[slack-url]: https://goswagger.slack.com/archives/C04R30YMU [discord-badge]: https://img.shields.io/discord/1446918742398341256?logo=discord&label=discord&color=blue [discord-url]: https://discord.gg/FfnFYaC3k5 @@ -222,3 +217,7 @@ Maintainers can cut a new release by either: [goversion-url]: https://github.com/go-openapi/swag/blob/master/go.mod [top-badge]: https://img.shields.io/github/languages/top/go-openapi/swag [commits-badge]: https://img.shields.io/github/commits-since/go-openapi/swag/latest + +[contributing-doc-site]: https://go-openapi.github.io/doc-site/contributing/contributing/index.html +[maintainers-doc-site]: https://go-openapi.github.io/doc-site/maintainers/index.html +[style-doc-site]: https://go-openapi.github.io/doc-site/contributing/style/index.html diff --git a/vendor/github.com/go-openapi/swag/conv/format.go b/vendor/github.com/go-openapi/swag/conv/format.go index 5b87b8e146..e14e5bfcfb 100644 --- a/vendor/github.com/go-openapi/swag/conv/format.go +++ b/vendor/github.com/go-openapi/swag/conv/format.go @@ -7,14 +7,16 @@ import ( "strconv" ) +const baseDecimal = 10 + // FormatInteger turns an integer type into a string. func FormatInteger[T Signed](value T) string { - return strconv.FormatInt(int64(value), 10) + return strconv.FormatInt(int64(value), baseDecimal) } // FormatUinteger turns an unsigned integer type into a string. func FormatUinteger[T Unsigned](value T) string { - return strconv.FormatUint(uint64(value), 10) + return strconv.FormatUint(uint64(value), baseDecimal) } // FormatFloat turns a floating point numerical value into a string. @@ -26,3 +28,23 @@ func FormatFloat[T Float](value T) string { func FormatBool(value bool) string { return strconv.FormatBool(value) } + +// AppendInteger appends the decimal representation of an integer to a slice of bytes. +func AppendInteger[T Signed](dst []byte, value T) []byte { + return strconv.AppendInt(dst, int64(value), baseDecimal) +} + +// AppendUinteger appends the decimal representation of an unsigned integer to a slice of bytes. +func AppendUinteger[T Unsigned](dst []byte, value T) []byte { + return strconv.AppendUint(dst, uint64(value), baseDecimal) +} + +// AppendFloat appends the decimal representation of a floating point number to a slice of bytes. +func AppendFloat[T Float](dst []byte, value T) []byte { + return strconv.AppendFloat(dst, float64(value), 'g', -1, bitsize(value)) +} + +// AppendBool appends the text representation of a boolean to a slice of bytes. +func AppendBool(dst []byte, value bool) []byte { + return strconv.AppendBool(dst, value) +} diff --git a/vendor/github.com/go-openapi/swag/go.work b/vendor/github.com/go-openapi/swag/go.work index 8537cb2a76..f1dddc436e 100644 --- a/vendor/github.com/go-openapi/swag/go.work +++ b/vendor/github.com/go-openapi/swag/go.work @@ -12,6 +12,7 @@ use ( ./loading ./mangling ./netutils + ./pools ./stringutils ./typeutils ./yamlutils diff --git a/vendor/github.com/go-openapi/swag/jsonname_iface.go b/vendor/github.com/go-openapi/swag/jsonname_iface.go index 303a007f6f..443560caad 100644 --- a/vendor/github.com/go-openapi/swag/jsonname_iface.go +++ b/vendor/github.com/go-openapi/swag/jsonname_iface.go @@ -4,21 +4,21 @@ package swag import ( - "github.com/go-openapi/swag/jsonname" + "github.com/go-openapi/jsonpointer/jsonname" ) // DefaultJSONNameProvider is the default cache for types // -// Deprecated: use [jsonname.DefaultJSONNameProvider] instead. +// Deprecated: use [github.com/go-openapi/jsonpointer/jsonname.DefaultJSONNameProvider] instead. var DefaultJSONNameProvider = jsonname.DefaultJSONNameProvider // NameProvider represents an object capable of translating from go property names // to json property names. // -// Deprecated: use [jsonname.NameProvider] instead. +// Deprecated: use [github.com/go-openapi/jsonpointer/jsonname.NameProvider] instead. type NameProvider = jsonname.NameProvider // NewNameProvider creates a new name provider // -// Deprecated: use [jsonname.NewNameProvider] instead. +// Deprecated: use [github.com/go-openapi/jsonpointer/jsonname.NewNameProvider] instead. func NewNameProvider() *NameProvider { return jsonname.NewNameProvider() } diff --git a/vendor/github.com/go-openapi/swag/jsonutils/adapters/stdlib/json/adapter.go b/vendor/github.com/go-openapi/swag/jsonutils/adapters/stdlib/json/adapter.go index 0213ff5c29..94185f79c1 100644 --- a/vendor/github.com/go-openapi/swag/jsonutils/adapters/stdlib/json/adapter.go +++ b/vendor/github.com/go-openapi/swag/jsonutils/adapters/stdlib/json/adapter.go @@ -5,6 +5,7 @@ package json import ( stdjson "encoding/json" + "fmt" "github.com/go-openapi/swag/jsonutils/adapters/ifaces" "github.com/go-openapi/swag/typeutils" @@ -24,11 +25,16 @@ var ErrStdlib jsonError = "error from the JSON adapter stdlib" var _ ifaces.Adapter = &Adapter{} type Adapter struct { + options } // NewAdapter yields an [ifaces.Adapter] using the standard library. -func NewAdapter() *Adapter { - return &Adapter{} +func NewAdapter(opts ...Option) *Adapter { + var o options + + return &Adapter{ + options: buildOptions(o, opts), + } } func (a *Adapter) Marshal(value any) ([]byte, error) { @@ -40,45 +46,18 @@ func (a *Adapter) Unmarshal(data []byte, value any) error { } func (a *Adapter) OrderedMarshal(value ifaces.Ordered) ([]byte, error) { - w := poolOfWriters.Borrow() - defer func() { - poolOfWriters.Redeem(w) - }() - - if typeutils.IsNil(value) { - w.RawString("null") - - return w.BuildBytes() - } - - w.RawByte('{') - first := true - for k, v := range value.OrderedItems() { - if first { - first = false - } else { - w.RawByte(',') - } + w, redeem := poolOfWriters.BorrowWithRedeem() + defer redeem() + w.setBuf() - w.String(k) - w.RawByte(':') - - switch val := v.(type) { - case ifaces.Ordered: - w.Raw(a.OrderedMarshal(val)) - default: - w.Raw(stdjson.Marshal(v)) - } - } - - w.RawByte('}') + a.orderedMarshal(w, value, 1) return w.BuildBytes() } func (a *Adapter) OrderedUnmarshal(data []byte, value ifaces.SetOrdered) error { var m MapSlice - if err := m.OrderedUnmarshalJSON(data); err != nil { + if err := m.orderedUnmarshalJSON(data, a.maxDepth()); err != nil { return err } @@ -112,4 +91,43 @@ func (a *Adapter) Redeem() { } func (a *Adapter) Reset() { + a.options = options{} +} + +// orderedMarshal writes value to w, tracking the container nesting depth to guard +// against stack overflow on deeply nested structures. +func (a *Adapter) orderedMarshal(w *jwriter, value ifaces.Ordered, depth int) { + if typeutils.IsNil(value) { + w.RawString("null") + + return + } + + if maxDepth := a.maxDepth(); depth > maxDepth { + w.SetErr(fmt.Errorf("maximum nesting depth of %d exceeded: %w", maxDepth, ErrStdlib)) + + return + } + + w.RawByte('{') + first := true + for k, v := range value.OrderedItems() { + if first { + first = false + } else { + w.RawByte(',') + } + + w.String(k) + w.RawByte(':') + + switch val := v.(type) { + case ifaces.Ordered: + a.orderedMarshal(w, val, depth+1) + default: + w.Raw(stdjson.Marshal(v)) + } + } + + w.RawByte('}') } diff --git a/vendor/github.com/go-openapi/swag/jsonutils/adapters/stdlib/json/lexer.go b/vendor/github.com/go-openapi/swag/jsonutils/adapters/stdlib/json/lexer.go index b5aa1c7972..ac81cbc75f 100644 --- a/vendor/github.com/go-openapi/swag/jsonutils/adapters/stdlib/json/lexer.go +++ b/vendor/github.com/go-openapi/swag/jsonutils/adapters/stdlib/json/lexer.go @@ -54,7 +54,7 @@ func (t token) Delim() byte { return 0 } - return byte(r) + return byte(r) //nolint:gosec // delimiter runes are single byte } type tokenKind uint8 @@ -91,6 +91,13 @@ type jlexer struct { // current token next token // started bool + + // depth tracks the current JSON container nesting level, and maxDepth caps it + // to guard against stack-overflow on adversarially deep documents. The standard + // library's streaming [encoding/json.Decoder.Token] API (used here) does not + // enforce the max-depth guard that [encoding/json.Unmarshal] provides, so we do. + depth int + maxDepth int } type bytesReader struct { @@ -130,7 +137,8 @@ var _ io.Reader = &bytesReader{} func newLexer(data []byte) *jlexer { l := &jlexer{ // current: undefToken, - next: undefToken, + next: undefToken, + maxDepth: defaultMaxNestingDepth, } l.buf = &bytesReader{ buf: data, @@ -143,7 +151,11 @@ func newLexer(data []byte) *jlexer { func (l *jlexer) Reset() { l.err = nil l.next = undefToken - // leave l.dec and l.buf alone, since they are replaced at every Borrow + l.depth = 0 + l.maxDepth = defaultMaxNestingDepth + l.dec = nil + // leave l.buf alone, since they are replaced at every Borrow + l.buf = nil } func (l *jlexer) Error() error { @@ -228,6 +240,21 @@ func (l *jlexer) Delim(c byte) { if tok.Delim() != c { l.err = fmt.Errorf("expected delimiter '%q' but got '%q': %w", c, tok.Delim(), ErrStdlib) + + return + } + + // Track container nesting depth centrally: every '{' or '[' opens a level and + // every '}' or ']' closes one. This guards the mutually-recursive unmarshal + // routines (unmarshalObject/unmarshalArray/asInterface) against stack overflow. + switch c { + case '{', '[': + l.depth++ + if l.maxDepth > 0 && l.depth > l.maxDepth { + l.err = fmt.Errorf("maximum nesting depth of %d exceeded: %w", l.maxDepth, ErrStdlib) + } + case '}', ']': + l.depth-- } } @@ -318,3 +345,12 @@ func (l *jlexer) fetchToken() token { return token{Token: jtok} } + +func (l *jlexer) setBuf(data []byte) func() { + rdr, redeemBuf := poolOfReaders.BorrowWithRedeem() + l.buf = rdr + l.buf.buf = data + l.dec = stdjson.NewDecoder(l.buf) // cannot pool, not exposed by the encoding/json API + + return redeemBuf +} diff --git a/vendor/github.com/go-openapi/swag/jsonutils/adapters/stdlib/json/options.go b/vendor/github.com/go-openapi/swag/jsonutils/adapters/stdlib/json/options.go new file mode 100644 index 0000000000..f114f1f1a1 --- /dev/null +++ b/vendor/github.com/go-openapi/swag/jsonutils/adapters/stdlib/json/options.go @@ -0,0 +1,52 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package json + +// defaultMaxNestingDepth is the default maximum number of nested JSON containers +// ('{' or '[') that the ordered-JSON marshaler and unmarshaler will process before +// returning an error. +// +// It mirrors the limit enforced by the standard library's [encoding/json] decoder +// (see encoding/json's internal maxNestingDepth), which this adapter would otherwise +// not benefit from since it drives [encoding/json.Decoder.Token] directly. +const defaultMaxNestingDepth = 10000 + +// Option selects options for the stdlib adapter. +type Option func(o options) options + +type options struct { + maxNestingDepth int +} + +func buildOptions(o options, opts []Option) options { + for _, apply := range opts { + o = apply(o) + } + + return o +} + +// maxDepth returns the configured maximum nesting depth, or the default when unset. +func (o options) maxDepth() int { + if o.maxNestingDepth <= 0 { + return defaultMaxNestingDepth + } + + return o.maxNestingDepth +} + +// WithMaxNestingDepth sets the maximum number of nested JSON containers accepted +// when marshaling or unmarshaling ordered JSON. +// +// A value <= 0 selects the default (10,000). +// +// This guards against stack-overflow crashes on deeply nested (possibly adversarial) +// JSON documents or in-memory structures. +func WithMaxNestingDepth(depth int) Option { + return func(o options) options { + o.maxNestingDepth = depth + + return o + } +} diff --git a/vendor/github.com/go-openapi/swag/jsonutils/adapters/stdlib/json/ordered_map.go b/vendor/github.com/go-openapi/swag/jsonutils/adapters/stdlib/json/ordered_map.go index 54deef406f..a5a8f4b631 100644 --- a/vendor/github.com/go-openapi/swag/jsonutils/adapters/stdlib/json/ordered_map.go +++ b/vendor/github.com/go-openapi/swag/jsonutils/adapters/stdlib/json/ordered_map.go @@ -70,12 +70,11 @@ func (s MapSlice) MarshalJSON() ([]byte, error) { } func (s MapSlice) OrderedMarshalJSON() ([]byte, error) { - w := poolOfWriters.Borrow() - defer func() { - poolOfWriters.Redeem(w) - }() + w, redeem := poolOfWriters.BorrowWithRedeem() + defer redeem() + w.setBuf() - s.marshalObject(w) + s.marshalObject(w, 1) return w.BuildBytes() // this clones data, so it's okay to redeem the writer and its buffer } @@ -88,23 +87,38 @@ func (s *MapSlice) UnmarshalJSON(data []byte) error { } func (s *MapSlice) OrderedUnmarshalJSON(data []byte) error { - l := poolOfLexers.Borrow(data) - defer func() { - poolOfLexers.Redeem(l) - }() + return s.orderedUnmarshalJSON(data, defaultMaxNestingDepth) +} + +func (s *MapSlice) orderedUnmarshalJSON(data []byte, maxDepth int) error { + l, redeem := poolOfLexers.BorrowWithRedeem() + defer redeem() + + redeemBuf := l.setBuf(data) + defer redeemBuf() + + if maxDepth > 0 { + l.maxDepth = maxDepth + } s.unmarshalObject(l) return l.Error() } -func (s MapSlice) marshalObject(w *jwriter) { +func (s MapSlice) marshalObject(w *jwriter, depth int) { if s == nil { w.RawString("null") return } + if depth > defaultMaxNestingDepth { + w.SetErr(fmt.Errorf("maximum nesting depth of %d exceeded: %w", defaultMaxNestingDepth, ErrStdlib)) + + return + } + w.RawByte('{') if len(s) == 0 { @@ -113,11 +127,11 @@ func (s MapSlice) marshalObject(w *jwriter) { return } - s[0].marshalJSON(w) + s[0].marshalJSON(w, depth) for i := 1; i < len(s); i++ { w.RawByte(',') - s[i].marshalJSON(w) + s[i].marshalJSON(w, depth) } w.RawByte('}') @@ -162,9 +176,18 @@ type MapItem struct { Value any } -func (s MapItem) marshalJSON(w *jwriter) { +func (s MapItem) marshalJSON(w *jwriter, depth int) { w.String(s.Key) w.RawByte(':') + + // Recurse internally for nested ordered maps so the depth guard is not lost across + // the stdjson.Marshal boundary (which would reset it and re-enable stack overflow). + if nested, ok := s.Value.(MapSlice); ok { + nested.marshalObject(w, depth+1) + + return + } + w.Raw(stdjson.Marshal(s.Value)) } diff --git a/vendor/github.com/go-openapi/swag/jsonutils/adapters/stdlib/json/pool.go b/vendor/github.com/go-openapi/swag/jsonutils/adapters/stdlib/json/pool.go index 709b97c304..2f06b88e80 100644 --- a/vendor/github.com/go-openapi/swag/jsonutils/adapters/stdlib/json/pool.go +++ b/vendor/github.com/go-openapi/swag/jsonutils/adapters/stdlib/json/pool.go @@ -4,118 +4,15 @@ package json import ( - "encoding/json" - "sync" - "github.com/go-openapi/swag/jsonutils/adapters/ifaces" + "github.com/go-openapi/swag/pools" ) -type adaptersPool struct { - sync.Pool -} - -func (p *adaptersPool) Borrow() *Adapter { - return p.Get().(*Adapter) -} - -func (p *adaptersPool) BorrowIface() ifaces.Adapter { - return p.Get().(*Adapter) -} - -func (p *adaptersPool) Redeem(a *Adapter) { - p.Put(a) -} - -type writersPool struct { - sync.Pool -} - -func (p *writersPool) Borrow() *jwriter { - ptr := p.Get() - - jw := ptr.(*jwriter) - jw.Reset() - - return jw -} - -func (p *writersPool) Redeem(w *jwriter) { - p.Put(w) -} - -type lexersPool struct { - sync.Pool -} - -func (p *lexersPool) Borrow(data []byte) *jlexer { - ptr := p.Get() - - l := ptr.(*jlexer) - l.buf = poolOfReaders.Borrow(data) - l.dec = json.NewDecoder(l.buf) // cannot pool, not exposed by the encoding/json API - l.Reset() - - return l -} - -func (p *lexersPool) Redeem(l *jlexer) { - l.dec = nil - discard := l.buf - l.buf = nil - poolOfReaders.Redeem(discard) - p.Put(l) -} - -type readersPool struct { - sync.Pool -} - -func (p *readersPool) Borrow(data []byte) *bytesReader { - ptr := p.Get() - - b := ptr.(*bytesReader) - b.Reset() - b.buf = data - - return b -} - -func (p *readersPool) Redeem(b *bytesReader) { - p.Put(b) -} - var ( - poolOfAdapters = &adaptersPool{ - Pool: sync.Pool{ - New: func() any { - return NewAdapter() - }, - }, - } - - poolOfWriters = &writersPool{ - Pool: sync.Pool{ - New: func() any { - return newJWriter() - }, - }, - } - - poolOfLexers = &lexersPool{ - Pool: sync.Pool{ - New: func() any { - return newLexer(nil) - }, - }, - } - - poolOfReaders = &readersPool{ - Pool: sync.Pool{ - New: func() any { - return &bytesReader{} - }, - }, - } + poolOfAdapters = pools.New[Adapter]() + poolOfWriters = pools.NewRedeemable[jwriter]() + poolOfLexers = pools.NewRedeemable[jlexer]() + poolOfReaders = pools.NewRedeemable[bytesReader]() ) // BorrowAdapter borrows an [Adapter] from the pool, recycling already allocated instances. @@ -124,10 +21,12 @@ func BorrowAdapter() *Adapter { } // BorrowAdapterIface borrows a stdlib [Adapter] and converts it directly -// to [ifaces.Adapter]. This is useful to avoid further allocations when -// translating the concrete type into an interface. +// to [ifaces.Adapter]. +// +// This is useful to avoid further allocations when translating the concrete type into +// an interface. func BorrowAdapterIface() ifaces.Adapter { - return poolOfAdapters.BorrowIface() + return poolOfAdapters.Borrow() } // RedeemAdapter redeems an [Adapter] to the pool, so it may be recycled. diff --git a/vendor/github.com/go-openapi/swag/jsonutils/adapters/stdlib/json/register.go b/vendor/github.com/go-openapi/swag/jsonutils/adapters/stdlib/json/register.go index fc8818694e..0dec85425b 100644 --- a/vendor/github.com/go-openapi/swag/jsonutils/adapters/stdlib/json/register.go +++ b/vendor/github.com/go-openapi/swag/jsonutils/adapters/stdlib/json/register.go @@ -10,14 +10,22 @@ import ( "github.com/go-openapi/swag/jsonutils/adapters/ifaces" ) -func Register(dispatcher ifaces.Registrar) { +func Register(dispatcher ifaces.Registrar, opts ...Option) { t := reflect.TypeOf(Adapter{}) + var o options + o = buildOptions(o, opts) + dispatcher.RegisterFor( ifaces.RegistryEntry{ - Who: fmt.Sprintf("%s.%s", t.PkgPath(), t.Name()), - What: ifaces.AllCapabilities, - Constructor: BorrowAdapterIface, - Support: support, + Who: fmt.Sprintf("%s.%s", t.PkgPath(), t.Name()), + What: ifaces.AllCapabilities, + Constructor: func() ifaces.Adapter { + a := BorrowAdapter() + a.options = o + + return a + }, + Support: support, }) } diff --git a/vendor/github.com/go-openapi/swag/jsonutils/adapters/stdlib/json/writer.go b/vendor/github.com/go-openapi/swag/jsonutils/adapters/stdlib/json/writer.go index dc2325c1a3..c84e02cd83 100644 --- a/vendor/github.com/go-openapi/swag/jsonutils/adapters/stdlib/json/writer.go +++ b/vendor/github.com/go-openapi/swag/jsonutils/adapters/stdlib/json/writer.go @@ -14,17 +14,21 @@ type jwriter struct { err error } -func newJWriter() *jwriter { - buf := make([]byte, 0, sensibleBufferSize) - - return &jwriter{buf: bytes.NewBuffer(buf)} -} - func (w *jwriter) Reset() { - w.buf.Reset() + if w.buf != nil { + w.buf.Reset() + } w.err = nil } +// SetErr records the first error encountered while building the JSON output. +func (w *jwriter) SetErr(err error) { + if w.err != nil { + return + } + w.err = err +} + func (w *jwriter) RawString(s string) { if w.err != nil { return @@ -73,3 +77,12 @@ func (w *jwriter) BuildBytes() ([]byte, error) { return bytes.Clone(w.buf.Bytes()), nil } + +func (w *jwriter) setBuf() { + if w.buf != nil { + return + } + + buf := make([]byte, 0, sensibleBufferSize) + w.buf = bytes.NewBuffer(buf) +} diff --git a/vendor/github.com/go-openapi/swag/loading/doc.go b/vendor/github.com/go-openapi/swag/loading/doc.go index 8cf7bcb8b9..112c49968b 100644 --- a/vendor/github.com/go-openapi/swag/loading/doc.go +++ b/vendor/github.com/go-openapi/swag/loading/doc.go @@ -2,4 +2,28 @@ // SPDX-License-Identifier: Apache-2.0 // Package loading provides tools to load a file from http or from a local file system. +// +// # Security +// +// By default, the local loader reads any path the process can access, including absolute +// paths and "file://" URIs (for example "file:///etc/passwd"). Applications that pass +// untrusted input to [LoadFromFileOrHTTP], [JSONDoc] (or to downstream consumers such as +// go-openapi/loads) must confine local loading to a trusted directory. +// +// Use [WithRoot] to do so: it resolves every requested path relative to a chosen directory +// and rejects anything that escapes it, including via symlink. It is built on [os.Root] +// and is therefore safer than passing an [os.DirFS] to [WithFS], which does not block +// symlink escapes. +// +// Remote loading uses a standard [net/http] client. +// By default it follows redirects and performs no destination filtering — exactly like [net/http.DefaultClient]. +// +// A caller-controlled URL may therefore reach internal services or cloud metadata endpoints +// (server-side request forgery). +// +// This package does not, and should not, embed a network policy: +// when the URL may derive from untrusted input, supply a restricted client with +// [WithHTTPClient] whose transport rejects unwanted destinations at dial time — which also +// covers redirects and DNS rebinding. +// See the example on [LoadFromFileOrHTTP]. package loading diff --git a/vendor/github.com/go-openapi/swag/loading/loading.go b/vendor/github.com/go-openapi/swag/loading/loading.go index 269fb74d16..b06450c64d 100644 --- a/vendor/github.com/go-openapi/swag/loading/loading.go +++ b/vendor/github.com/go-openapi/swag/loading/loading.go @@ -17,7 +17,11 @@ import ( "strings" ) -// LoadFromFileOrHTTP loads the bytes from a file or a remote http server based on the path passed in +// LoadFromFileOrHTTP loads the bytes from a file or a remote http server based on the path passed in. +// +// Security: by default a local path is read with no confinement, so a caller-controlled path +// (including a "file://" URI or an absolute path) may read any file the process can access. +// When the path may derive from untrusted input, confine local loading with [WithRoot]. func LoadFromFileOrHTTP(pth string, opts ...Option) ([]byte, error) { o := optionsWithDefaults(opts) return LoadStrategy(pth, o.ReadFileFunc(), loadHTTPBytes(opts...), opts...)(pth) @@ -54,11 +58,14 @@ func LoadFromFileOrHTTP(pth string, opts ...Option) ([]byte, error) { // - `file:///c:/folder/file` becomes `C:\folder\file` // - `file://c:/folder/file` is tolerated (without leading `/`) and becomes `c:\folder\file` func LoadStrategy(pth string, local, remote func(string) ([]byte, error), opts ...Option) func(string) ([]byte, error) { - if strings.HasPrefix(pth, "http") { + if hasHTTPScheme(pth) { return remote } o := optionsWithDefaults(opts) _, isEmbedFS := o.fs.(embed.FS) + // any loader backed by an fs.FS or an os.Root consumes forward-slash paths on every + // platform, so it must not go through the windows-native file:// preprocessing below. + isFSBacked := o.fs != nil || o.root != "" return func(p string) ([]byte, error) { upth, err := url.PathUnescape(p) @@ -67,14 +74,22 @@ func LoadStrategy(pth string, local, remote func(string) ([]byte, error), opts . } cpth, hasPrefix := strings.CutPrefix(upth, "file://") - if !hasPrefix || isEmbedFS || runtime.GOOS != "windows" { + if !hasPrefix || isFSBacked || runtime.GOOS != "windows" { // crude processing: trim the file:// prefix. This leaves full URIs with a host with a (mostly) unexpected result // regular file path provided: just normalize slashes if isEmbedFS { - // on windows, we need to slash the path if FS is an embed FS. + // embed.FS always uses "/" as separator, even on windows, and rejects leading "./" or "/". return local(strings.TrimLeft(filepath.ToSlash(cpth), "./")) // remove invalid leading characters for embed FS } + if isFSBacked { + // other fs.FS (e.g. os.DirFS) and os.Root loaders also use "/" on every platform. + // Path confinement is enforced by the loader, not here: the os.Root loader rebases + // absolute in-root paths and rejects escaping paths ("..", out-of-root absolute, + // escaping symlinks); an fs.FS loader rejects what its file system does not allow. + return local(filepath.ToSlash(cpth)) + } + return local(filepath.FromSlash(cpth)) } @@ -113,6 +128,21 @@ func LoadStrategy(pth string, local, remote func(string) ([]byte, error), opts . } } +// hasHTTPScheme reports whether pth is an absolute URL with an http or https scheme, +// selecting the remote loader. The comparison is case-insensitive, as URL schemes are. +// +// Requiring the "://" separator (rather than a bare "http" prefix) avoids misrouting a +// local file whose name merely starts with "http" (e.g. "httpbin.json") to the remote loader. +func hasHTTPScheme(pth string) bool { + for _, scheme := range [...]string{"http://", "https://"} { + if len(pth) >= len(scheme) && strings.EqualFold(pth[:len(scheme)], scheme) { + return true + } + } + + return false +} + func loadHTTPBytes(opts ...Option) func(path string) ([]byte, error) { o := optionsWithDefaults(opts) diff --git a/vendor/github.com/go-openapi/swag/loading/options.go b/vendor/github.com/go-openapi/swag/loading/options.go index 6674ac69e6..539987547d 100644 --- a/vendor/github.com/go-openapi/swag/loading/options.go +++ b/vendor/github.com/go-openapi/swag/loading/options.go @@ -4,9 +4,12 @@ package loading import ( + "errors" "io/fs" "net/http" "os" + "path/filepath" + "runtime" "time" ) @@ -23,7 +26,8 @@ type ( } fileOptions struct { - fs fs.ReadFileFS + fs fs.ReadFileFS + root string // when non-empty, local reads are confined to this directory via os.Root } options struct { @@ -33,6 +37,28 @@ type ( ) func (fo fileOptions) ReadFileFunc() func(string) ([]byte, error) { + if fo.root != "" { + root := fo.root + + return func(name string) ([]byte, error) { + // os.Root only accepts paths relative to the root, but callers (and this package's + // own file:// handling) routinely produce absolute paths. Rebase an absolute path + // onto the root before handing it to os.Root. + rel, err := rootRelative(root, name) + if err != nil { + return nil, errors.Join(err, ErrLoader) + } + + r, err := os.OpenRoot(root) + if err != nil { + return nil, errors.Join(err, ErrLoader) + } + defer func() { _ = r.Close() }() + + return r.ReadFile(rel) + } + } + if fo.fs == nil { return os.ReadFile } @@ -40,6 +66,61 @@ func (fo fileOptions) ReadFileFunc() func(string) ([]byte, error) { return fo.fs.ReadFile } +// rootRelative expresses name as a path relative to root, so that it can be resolved by os.Root. +// +// A relative name is returned unchanged: os.Root confines it directly (including "../" traversal +// and symlink escapes, which it rejects at open time). +// +// An absolute name is rebased onto root. If it cannot be expressed relative to root — for +// example because it lives on a different volume on Windows — filepath.Rel returns an error, +// which is propagated so the read is rejected rather than silently escaping the root. An +// absolute path that lexically escapes root yields a "../" prefix here and is then rejected by +// os.Root. +func rootRelative(root, name string) (string, error) { + osName := toOSPath(name) + if !filepath.IsAbs(osName) { + return name, nil + } + + absRoot, err := filepath.Abs(toOSPath(root)) + if err != nil { + return "", err + } + + return filepath.Rel(absRoot, osName) +} + +// toOSPath converts a slash-separated path to an OS-native path. +// +// On Windows it additionally normalizes the "/C:/dir" form — a leading separator before a drive +// letter — that file URIs and URL-style path normalization (as performed by +// github.com/go-openapi/spec) produce. Without this, filepath.IsAbs does not recognize such a +// path as absolute and os.Root rejects an otherwise in-root target. This mirrors the file:// +// drive-letter handling in LoadStrategy, which the os.Root loader bypasses. +func toOSPath(p string) string { + p = filepath.FromSlash(p) + if runtime.GOOS == "windows" { + p = stripLeadingDriveSlash(p) + } + + return p +} + +// stripLeadingDriveSlash removes a leading separator that precedes a Windows drive letter, +// turning "\C:\dir" (from a "/C:/dir" URL path) into "C:\dir". Any other path is returned +// unchanged. It is pure (no OS dependency) so that its logic can be tested on any platform. +func stripLeadingDriveSlash(p string) string { + if len(p) >= 3 && (p[0] == '/' || p[0] == '\\') && p[2] == ':' && isASCIILetter(p[1]) { + return p[1:] + } + + return p +} + +func isASCIILetter(b byte) bool { + return ('a' <= b && b <= 'z') || ('A' <= b && b <= 'Z') +} + // WithTimeout sets a timeout for the remote file loader. // // The default timeout is 30s. @@ -87,8 +168,15 @@ func WithHTTPClient(client *http.Client) Option { // By default, the file system is the one provided by the os package. // // For example, this may be set to consume from an embedded file system, or a rooted FS. +// +// WithFS and [WithRoot] are mutually exclusive: the last one applied wins. +// +// Security note: a file system built from [os.DirFS] confines paths but does NOT protect +// against symlinks that escape the root. To load from a directory derived from untrusted +// input, prefer [WithRoot], which is symlink-escape resistant. func WithFS(filesystem fs.FS) Option { return func(o *options) { + o.root = "" // last-wins vs WithRoot if rfs, ok := filesystem.(fs.ReadFileFS); ok { o.fs = rfs @@ -98,6 +186,30 @@ func WithFS(filesystem fs.FS) Option { } } +// WithRoot confines local file loading to dir. +// +// Every requested path is resolved within dir. A relative path is resolved against dir; an +// absolute path is rebased onto dir (so a caller that normalizes references to absolute paths, +// such as github.com/go-openapi/spec, still resolves correctly). Any path that would escape dir +// — through ".." traversal, an absolute path pointing outside dir, or a symlink pointing outside +// dir — is rejected. This is built on [os.Root] and is therefore resistant to the symlink +// escapes that a plain [os.DirFS] does not prevent. +// +// WithRoot is the recommended option when loading specs from a location derived from +// untrusted input. It applies to local loading only and has no effect on remote +// (http/https) loading. WithRoot and [WithFS] are mutually exclusive: the last one applied +// wins. +// +// Note: [os.Root] confines path resolution but does not, by itself, protect against +// traversal of mount/bind boundaries, /proc special files, or device files. Point WithRoot +// at a directory that holds only the documents you intend to expose. +func WithRoot(dir string) Option { + return func(o *options) { + o.root = dir + o.fs = nil // last-wins vs WithFS + } +} + type readFileFS struct { fs.FS } diff --git a/vendor/github.com/go-openapi/swag/loading_iface.go b/vendor/github.com/go-openapi/swag/loading_iface.go index 27ec3fb8c3..78dadfccdf 100644 --- a/vendor/github.com/go-openapi/swag/loading_iface.go +++ b/vendor/github.com/go-openapi/swag/loading_iface.go @@ -80,11 +80,13 @@ func YAMLData(path string) (any, error) { // loadingOptionsWithDefaults bridges deprecated default settings that use package-level variables, // with the recommended use of loading.Option. func loadingOptionsWithDefaults(opts []loading.Option) []loading.Option { - o := []loading.Option{ + const defaultOptions = 3 + o := make([]loading.Option, 0, defaultOptions+len(opts)) + o = append(o, []loading.Option{ loading.WithTimeout(LoadHTTPTimeout), loading.WithBasicAuth(LoadHTTPBasicAuthUsername, LoadHTTPBasicAuthPassword), loading.WithCustomHeaders(LoadHTTPCustomHeaders), - } + }...) o = append(o, opts...) return o diff --git a/vendor/github.com/go-openapi/swag/jsonname/LICENSE b/vendor/github.com/go-openapi/swag/pools/LICENSE similarity index 100% rename from vendor/github.com/go-openapi/swag/jsonname/LICENSE rename to vendor/github.com/go-openapi/swag/pools/LICENSE diff --git a/vendor/github.com/go-openapi/swag/pools/README.md b/vendor/github.com/go-openapi/swag/pools/README.md new file mode 100644 index 0000000000..1966461cb5 --- /dev/null +++ b/vendor/github.com/go-openapi/swag/pools/README.md @@ -0,0 +1 @@ +# pools diff --git a/vendor/github.com/go-openapi/swag/pools/debug.go b/vendor/github.com/go-openapi/swag/pools/debug.go new file mode 100644 index 0000000000..94415e989e --- /dev/null +++ b/vendor/github.com/go-openapi/swag/pools/debug.go @@ -0,0 +1,17 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package pools + +// TB is the subset of [testing.TB] used by [AssertNoLeaks]. +// +// It is satisfied by *[testing.T] and *[testing.B]. +// +// A local interface is used (rather than importing "testing") so that the +// release build does not pull the testing package — and its flags — into +// production binaries. +type TB interface { + Helper() + Errorf(format string, args ...any) + Logf(format string, args ...any) +} diff --git a/vendor/github.com/go-openapi/swag/pools/debug_off.go b/vendor/github.com/go-openapi/swag/pools/debug_off.go new file mode 100644 index 0000000000..9163d6d60e --- /dev/null +++ b/vendor/github.com/go-openapi/swag/pools/debug_off.go @@ -0,0 +1,51 @@ +//go:build !poolsdebug + +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package pools + +// This is the release implementation of the pool instrumentation: it does +// nothing. +// +// tracker is an empty struct, so it adds no field to the pool types and its +// methods inline away to nothing. +// +// Build with -tags poolsdebug to get the instrumented variant (see +// debug_on.go). + +// debugBuild reports whether the pool instrumentation is compiled in (the +// poolsdebug tag). +const debugBuild = false + +// DebugBuild reports whether the pool instrumentation is compiled in (the +// poolsdebug build tag). +// +// It lets a test that must run in both modes skip the parts that are invalid +// under instrumentation — e.g. an allocation-count assertion, since the +// instrumented build allocates a per-borrow tracker. +const DebugBuild = debugBuild + +type tracker[T any] struct{} + +func (tracker[T]) register() {} + +func (tracker[T]) onBorrow(*T) {} + +func (tracker[T]) onRedeem(*T) {} + +func (tracker[T]) borrowRedeemer(_ *T, cached func()) func() { return cached } + +// AssertNoLeaks reports whether every borrowed object has been redeemed across +// all pools. +// +// It is only meaningful in the instrumented build (-tags poolsdebug). +// +// In a release build it is a no-op that always reports true, so the same test +// can run in both modes. +func AssertNoLeaks(TB) bool { return true } + +// ResetTracking clears all recorded borrow/redeem tracking. +// +// This is a no-op in a release build. +func ResetTracking() {} diff --git a/vendor/github.com/go-openapi/swag/pools/debug_on.go b/vendor/github.com/go-openapi/swag/pools/debug_on.go new file mode 100644 index 0000000000..64ccc57d38 --- /dev/null +++ b/vendor/github.com/go-openapi/swag/pools/debug_on.go @@ -0,0 +1,237 @@ +//go:build poolsdebug + +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package pools + +import ( + "fmt" + "runtime" + "sync" +) + +// This is the instrumented implementation of the pool tracking, enabled with +// -tags poolsdebug. +// +// Each pool carries a tracker that records, per recycled pointer, whether it is +// currently borrowed or redeemed, together with the call sites of the last +// borrow and redeem. +// It panics loudly (with those call sites) when it detects misuse: +// +// - a double redeem (the same object returned to the pool twice — corrupts sync.Pool); +// - for the redeemable pools, a redeem of a stale borrow (the slot was re-borrowed since — the +// ABA case the production atomic guard cannot catch), thanks to a per-borrow generation; +// - a redeem of an object the pool never handed out; +// - a borrow of an object still checked out (a symptom of an earlier double-Put). +// +// Borrowed-but-never-redeemed objects (leaks) are reported by [AssertNoLeaks]. + +// debugBuild reports whether the pool instrumentation is compiled in (the +// poolsdebug tag). +const debugBuild = true + +// DebugBuild reports whether the pool instrumentation is compiled in (the +// poolsdebug build tag). +// +// See the release-build doc for usage. +const DebugBuild = debugBuild + +type trackStatus uint8 + +const ( + trackBorrowed trackStatus = iota + 1 + trackRedeemed +) + +type trackEntry struct { + status trackStatus + gen uint64 // identifies the current borrow, to detect a redeem racing a re-borrow (ABA) + borrowedAt string + redeemedAt string +} + +type tracker[T any] struct { + mu sync.Mutex + entries map[*T]*trackEntry + nextGen uint64 +} + +func (t *tracker[T]) register() { + t.mu.Lock() + if t.entries == nil { + t.entries = make(map[*T]*trackEntry) + } + t.mu.Unlock() + + registerLeakChecker(t) +} + +// markBorrow records a borrow of ptr and returns its generation. +// +// Caller must hold no lock. +func (t *tracker[T]) markBorrow(ptr *T, site string) uint64 { + t.mu.Lock() + defer t.mu.Unlock() + + e := t.entries[ptr] + if e == nil { + e = &trackEntry{} + t.entries[ptr] = e + } else if e.status == trackBorrowed { + panic(fmt.Sprintf( + "pools: borrow of an object still checked out (borrowed at %s); "+ + "this usually means it was redeemed twice earlier", e.borrowedAt)) + } + + t.nextGen++ + e.status = trackBorrowed + e.gen = t.nextGen + e.borrowedAt = site + + return t.nextGen +} + +// markRedeem validates and records a redeem of ptr. gen is the borrow +// generation the caller is redeeming, or 0 to skip the ABA check (plain +// Pool[T], which has no per-borrow token). +func (t *tracker[T]) markRedeem(ptr *T, gen uint64, site string) { + t.mu.Lock() + defer t.mu.Unlock() + + e := t.entries[ptr] + switch { + case e == nil: + panic("pools: redeem of an object this pool never handed out") + case e.status != trackBorrowed: + panic(fmt.Sprintf("pools: double redeem (first redeemed at %s)", e.redeemedAt)) + case gen != 0 && e.gen != gen: + panic(fmt.Sprintf( + "pools: redeem of a stale borrow (the slot was re-borrowed at %s since this borrow); "+ + "a redeem is racing a re-borrow of the same slot (ABA)", e.borrowedAt)) + } + + e.status = trackRedeemed + e.redeemedAt = site +} + +const stackOffset = 3 + +func (t *tracker[T]) onBorrow(ptr *T) { + t.markBorrow(ptr, caller(stackOffset)) +} + +func (t *tracker[T]) onRedeem(ptr *T) { + t.markRedeem(ptr, 0, caller(stackOffset)) +} + +// borrowRedeemer records the borrow and returns a generation-stamped redeemer +// that validates the redeem (catching double-redeem and ABA) before delegating +// to the cached redeemer. +func (t *tracker[T]) borrowRedeemer(ptr *T, cached func()) func() { + gen := t.markBorrow(ptr, caller(stackOffset)) + + return func() { + t.markRedeem(ptr, gen, caller(stackOffset-1)) + cached() + } +} + +func (t *tracker[T]) checkLeaks(tb TB) bool { + t.mu.Lock() + defer t.mu.Unlock() + + ok := true + for _, e := range t.entries { + if e.status != trackRedeemed { + tb.Logf("pools: object borrowed but never redeemed (borrowed at %s)", e.borrowedAt) + ok = false + } + } + + return ok +} + +func (t *tracker[T]) resetTracking() { + t.mu.Lock() + t.entries = make(map[*T]*trackEntry) + t.nextGen = 0 + t.mu.Unlock() +} + +// leakChecker is the build-erased view of a tracker that the global registry +// holds, so trackers of different element types can be checked uniformly. +type leakChecker interface { + checkLeaks(tb TB) bool + resetTracking() +} + +var ( + registryMu sync.Mutex + registry []leakChecker +) + +func registerLeakChecker(c leakChecker) { + registryMu.Lock() + registry = append(registry, c) + registryMu.Unlock() +} + +// AssertNoLeaks reports whether every borrowed object has been redeemed across +// all pools created so far. +// +// It logs the borrow call site of each leaked object and fails tb when any are +// found. +// +// Typical use, with [ResetTracking] to isolate the test from earlier ones: +// +// func TestX(t *testing.T) { +// pools.ResetTracking() +// t.Cleanup(func() { pools.AssertNoLeaks(t) }) +// // ... exercise code that borrows/redeems ... +// } +func AssertNoLeaks(tb TB) bool { + tb.Helper() + registryMu.Lock() + defer registryMu.Unlock() + + ok := true + for _, c := range registry { + if !c.checkLeaks(tb) { + ok = false + } + } + if !ok { + tb.Errorf("pools: leaked pooled objects detected (borrowed but never redeemed)") + } + + return ok +} + +// ResetTracking clears all recorded borrow/redeem tracking across every pool. +// +// Call it at the start of a test so leaks from earlier tests are not attributed +// to it. +func ResetTracking() { + registryMu.Lock() + defer registryMu.Unlock() + + for _, c := range registry { + c.resetTracking() + } +} + +// caller returns "file:line" of the frame skip levels above caller itself. +func caller(skip int) string { + pc, _, _, ok := runtime.Caller(skip) + if !ok { + return "unknown" + } + fn := runtime.FuncForPC(pc) + if fn == nil { + return "unknown" + } + file, line := fn.FileLine(pc) + + return fmt.Sprintf("%s:%d", file, line) +} diff --git a/vendor/github.com/go-openapi/swag/pools/doc.go b/vendor/github.com/go-openapi/swag/pools/doc.go new file mode 100644 index 0000000000..395c24d29a --- /dev/null +++ b/vendor/github.com/go-openapi/swag/pools/doc.go @@ -0,0 +1,26 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +// Package pools provide utilities to recycle allocated objects. +// +// This package provides: +// +// - a generic [Pool] type that wraps [sync.Pool], +// - a [PoolRedeemable] variant that hands out a cached redeem closure, +// - a [PoolSlice] for recycling slices without juggling pointers. +// +// # Debug build +// +// Building with the "poolsdebug" tag (go test -tags poolsdebug ./...) turns on +// instrumentation that tracks every borrow and redeem and panics on misuse: +// +// - double redeem (including the A -> B -> A case for the redeemable pools), +// - redeem of a foreign object, +// - borrow of an object still checked out +// +// It reports the offending call sites. +// +// [AssertNoLeaks] then reports any object borrowed but never redeemed. +// +// The instrumentation is a no-op with zero overhead when the tag is absent. +package pools diff --git a/vendor/github.com/go-openapi/swag/pools/pools.go b/vendor/github.com/go-openapi/swag/pools/pools.go new file mode 100644 index 0000000000..d78ea5790a --- /dev/null +++ b/vendor/github.com/go-openapi/swag/pools/pools.go @@ -0,0 +1,410 @@ +// SPDX-FileCopyrightText: Copyright 2015-2025 go-swagger maintainers +// SPDX-License-Identifier: Apache-2.0 + +package pools + +import ( + "iter" + "slices" + "sync" + "sync/atomic" +) + +// Resettable is an interface for types that want to recycle a clean instance +// from a [Pool]. +// +// When T (or rather *T) implements [Resettable], the pool calls Reset on an +// instance both when it is redeemed and when it is borrowed: +// +// - on redeem, so that no references held by the instance are retained while it sits idle in the +// pool (which would pin a reference graph alive across a GC cycle); +// - on borrow, so that the next borrower receives a clean object regardless of how the instance +// reached the pool. +// +// Reset must be safe to call more than once on the same instance (it runs at +// least twice per cycle). +type Resettable interface { + Reset() +} + +// resetIfResettable calls Reset on v when *T implements [Resettable]. +func resetIfResettable[T any](v *T) { + if r, ok := any(v).(Resettable); ok { + r.Reset() + } +} + +// borrow state of a [redeemable] wrapper, used to detect double-redeem. +const ( + stateIdle uint32 = iota // sitting in the pool (or freshly created), not checked out + stateBorrowed // checked out by a borrower +) + +type redeemable[T any] struct { + inner *T + redeemer func() + // state guards against a double-redeem (the same wrapper Put into the pool + // twice, which would let one object be handed to two borrowers). + // + // It is set to stateBorrowed on borrow and atomically flipped back to + // stateIdle on redeem; a redeem that finds it already idle panics. + state atomic.Uint32 +} + +// redeemPanic is the message raised when a slot is redeemed while already idle. +const redeemPanic = "pools: " + + "double redeem detected (object already returned to the pool); " + + "a borrowed object must be redeemed exactly once" + +// Pool wraps a [sync.Pool] to make it available for any type. +// +// T must be the value type of the pooled object (e.g. Pool[bytes.Buffer]): +// [Pool.Borrow] returns a *T. Using a pointer type as T (e.g. +// Pool[*bytes.Buffer]) would yield a **T and is almost certainly a mistake. +type Pool[T any] struct { + pool sync.Pool + tracker tracker[T] // empty (zero-cost) unless built with the poolsdebug tag +} + +// PoolRedeemable wraps a [sync.Pool] to make it available for any type. +// +// It differs from [Pool] in the way objects are redeemed to the pool: borrowing +// also yields a cached redeem closure, so no closure is allocated at redeem +// time. +type PoolRedeemable[T any] struct { + pool sync.Pool + tracker tracker[redeemable[T]] // empty (zero-cost) unless built with the poolsdebug tag +} + +// New builds a new [Pool] to recycle allocations of type T explicitly using +// [Pool.Redeem] and the allocated pointer. +// +// Freshly allocated instances of type T are set to their zero value; like +// recycled instances they are reset (if [Resettable]) when borrowed, so +// [Pool.Borrow] always yields a clean object. +func New[T any]() *Pool[T] { + p := &Pool[T]{} + p.pool = sync.Pool{ + New: func() any { + return new(T) + }, + } + p.tracker.register() + + return p +} + +// NewRedeemable builds a new redeemable [Pool] to recycle allocations of type +// T, and use the inner redeemer to relinquish objects to the pool. +func NewRedeemable[T any]() *PoolRedeemable[T] { + p := &PoolRedeemable[T]{} + p.pool = sync.Pool{ + New: func() any { + r := &redeemable[T]{inner: new(T)} + r.redeemer = func() { + if !r.state.CompareAndSwap(stateBorrowed, stateIdle) { + panic(redeemPanic) + } + resetIfResettable(r.inner) + p.pool.Put(r) + } + + return r + }, + } + p.tracker.register() + + return p +} + +// Borrow an instance from the pool. +// +// If the type implements [Resettable], the returned instance is reset before +// being handed out, so it is always clean. +func (p *Pool[T]) Borrow() *T { + target := p.pool.Get().(*T) + resetIfResettable(target) + p.tracker.onBorrow(target) + + return target +} + +// Redeem a borrowed instance to the pool. +// +// A nil pointer is ignored (it would otherwise corrupt the pool: a typed-nil +// boxed into an interface is not the nil interface that [sync.Pool.Put] skips). +// +// The instance is reset (if it implements [Resettable]) before being returned +// to the pool. +// After calling Redeem, the caller must drop its reference to ptr: continuing +// to use it is a use-after-redeem bug. +// +// Unlike [PoolRedeemable], this plain pool holds no per-object state, so it +// cannot detect a double-redeem of the same pointer (which corrupts the pool). +// +// Prefer [PoolRedeemable] when you want that guard, or the debug build for full +// tracking. +func (p *Pool[T]) Redeem(ptr *T) { + if ptr == nil { + return + } + p.tracker.onRedeem(ptr) + resetIfResettable(ptr) + p.pool.Put(ptr) +} + +// BorrowWithRedeem borrows an instance from the pool and provides the +// corresponding redeem function. +// +// This is useful for instance to use with defer. +// +// The instance is reset (if it implements [Resettable]) both when borrowed and +// when the returned redeem closure is called. +// After calling the redeem closure, the caller must drop its reference to the +// returned instance. +// +// Calling the redeem closure more than once panics (see [redeemable.state]): a +// borrowed instance must be redeemed exactly once. +func (p *PoolRedeemable[T]) BorrowWithRedeem() (*T, func()) { + container := p.pool.Get().(*redeemable[T]) + container.state.Store(stateBorrowed) + resetIfResettable(container.inner) + + // In release builds borrowRedeemer returns container.redeemer unchanged (zero + // cost). + // Under the poolsdebug tag it returns a generation-stamped wrapper that tracks + // the borrow and detects double-redeem (incl. + // + // ABA), foreign-redeem and leaks. + return container.inner, p.tracker.borrowRedeemer(container, container.redeemer) +} + +// Slice is a struct that wraps a slice []T. +// +// This is useful to borrow and redeem slices from a pool, without having to +// constantly manipulate pointers to the slice. +// +// The wrapper holds the authoritative slice header. +// +// Its mutating methods ([Slice.Append], [Slice.Concat], [Slice.Grow]) return +// the current backing slice for convenience, so it reads as an idiomatic []T. +// +// But the returned slice is only a snapshot of the wrapper's state at that +// moment: if you keep it and grow it yourself with the builtin append and it +// reallocates, the new backing array lives only in your local copy and is NOT +// tracked by the wrapper — it will not be recycled when the wrapper is +// redeemed (and a later borrower would get the old, smaller array). +// +// Rule of thumb: it is fine to read or pass the returned []T to a consumer; but +// if you plan to grow the slice, keep calling the wrapper's methods so the +// growth is tracked and recycled. +type Slice[T any] struct { + length int + inner []T +} + +// Slice returns the inner slice. +// +// Treat the result as a read-only view (for ranging or passing to a consumer), +// valid until the next mutation or redeem. +// To grow or append, use the wrapper methods so the new backing array is +// tracked and recycled (see [Slice]). +func (s *Slice[T]) Slice() []T { + return s.inner +} + +// Grow the inner slice so it can accommodate at least size more elements +// without reallocating, and return the current backing slice. +// +// Growth is tracked by the wrapper, so the enlarged backing array is recycled +// on redeem. +// See [Slice] for the caveat about growing the returned slice yourself. +func (s *Slice[T]) Grow(size int) []T { + s.inner = slices.Grow(s.inner, size) + + return s.inner +} + +func (s *Slice[T]) Len() int { + return len(s.inner) +} + +func (s *Slice[T]) Cap() int { + return cap(s.inner) +} + +// Append elements to the inner slice and return the current backing slice. +// +// This should be preferred to the append builtin if you plan that the slice will +// grow and you want the newly allocated space to be tracked and recycled. +// See [Slice] for the caveat about growing the returned slice yourself. +func (s *Slice[T]) Append(elems ...T) []T { + s.inner = append(s.inner, elems...) + + return s.inner +} + +// Concat another slice to the inner slice and return the current backing slice. +// +// Unlike [slices.Concat], this reuses the inner slice's capacity instead of +// always allocating a fresh backing array. +// See [Slice] for the caveat about growing the returned slice yourself. +func (s *Slice[T]) Concat(slice []T) []T { + s.inner = append(s.inner, slice...) + + return s.inner +} + +// IndexedElems iterates over the inner slice. +func (s *Slice[T]) IndexedElems() iter.Seq2[int, T] { + return func(yield func(int, T) bool) { + for i, elem := range s.inner { + if !yield(i, elem) { + return + } + } + } +} + +// Reset the inner slice to its configured initial length, keeping allocated +// capacity. +// +// All elements are zeroed, so the pool never retains stale element references +// (which would keep a referenced graph alive for slices of pointers) and so a +// [WithLength] slice is handed out clean rather than carrying data from a +// previous borrower. +func (s *Slice[T]) Reset() { + clear(s.inner) + if s.length > cap(s.inner) { + s.inner = slices.Grow(s.inner[:0], s.length) + } + s.inner = s.inner[:s.length] +} + +// Clip removes unused capacity from the inner slice. +func (s *Slice[T]) Clip() { + s.inner = slices.Clip(s.inner) +} + +// resetWithCapacity discards the current backing array and replaces it with a +// fresh one of the configured length and the given capacity. +// +// It is used by a capacity-capped pool to stop recycling an oversized backing +// array (the old array is left for the GC). +func (s *Slice[T]) resetWithCapacity(capacity int) { + s.inner = make([]T, s.length, max(s.length, capacity)) +} + +// PoolSlice is a pool of [Slice[T]]. +// +// [PoolSlice.BorrowWithRedeem] will return an empty inner slice by default. +// This default may be altered using [WithMinimumCapacity]. +// +// Use [PoolSlice.BorrowWithSizeAndRedeem] or [Slice.Grow] to grow the capacity +// of the inner slice. +type PoolSlice[T any] struct { + // redeemable is held as an unexported field rather than embedded, so the + // underlying [PoolRedeemable] and its [sync.Pool] are not part of PoolSlice's + // public surface. + redeemable *PoolRedeemable[Slice[T]] +} + +// PoolSliceOption alters the default settings to allocate new pooled slices +type PoolSliceOption func(*poolSliceOptions) + +type poolSliceOptions struct { + minCapacity int + length int + maxCapacity int +} + +func WithMinimumCapacity(size int) PoolSliceOption { + return func(o *poolSliceOptions) { + o.minCapacity = size + } +} + +// WithMaxCapacity bounds the capacity of recycled slices. +// +// When a borrowed slice has grown past size at redeem time, its (oversized) +// backing array is discarded and replaced with a fresh one sized to the minimum +// capacity, instead of being recycled. +// +// This stops the pool from accumulating large backing arrays after an +// occasional large request, keeping the steady-state memory bounded. +// +// The trade-off: a workload that genuinely needs slices larger than size will +// reallocate on every cycle. +// Set size from the high-water mark you actually expect, not below it. +// A size of 0 (the default) means no cap: grown slices are recycled as-is. +func WithMaxCapacity(size int) PoolSliceOption { + return func(o *poolSliceOptions) { + o.maxCapacity = size + } +} + +// WithLength ensures that the borrowed slices have a fixed given initial +// length. +// +// By default, the borrowed slices are reset to length 0. +func WithLength(size int) PoolSliceOption { + return func(o *poolSliceOptions) { + o.length = size + } +} + +// NewPoolSlice builds a pool to recycle slices of type []T. +func NewPoolSlice[T any](opts ...PoolSliceOption) *PoolSlice[T] { + var o poolSliceOptions + for _, apply := range opts { + apply(&o) + } + + rp := &PoolRedeemable[Slice[T]]{} + rp.pool = sync.Pool{ + New: func() any { + s := &redeemable[Slice[T]]{ + inner: &Slice[T]{ + length: o.length, + inner: make([]T, o.length, max(o.length, o.minCapacity)), + }, + } + + s.redeemer = func() { + if !s.state.CompareAndSwap(stateBorrowed, stateIdle) { + panic(redeemPanic) + } + if o.maxCapacity > 0 && s.inner.Cap() > o.maxCapacity { + s.inner.resetWithCapacity(o.minCapacity) + } else { + s.inner.Reset() + } + rp.pool.Put(s) + } + + return s + }, + } + rp.tracker.register() + + return &PoolSlice[T]{redeemable: rp} +} + +// BorrowWithRedeem returns the slice wrapper and the redeem closure to +// relinquish the allocated wrapper. +// +// The wrapper is reset (elements zeroed, length restored) both on borrow and +// when the redeem closure is called. +// Calling the redeem closure more than once panics. +func (p *PoolSlice[T]) BorrowWithRedeem() (*Slice[T], func()) { + return p.redeemable.BorrowWithRedeem() +} + +// BorrowWithSizeAndRedeem borrows a slice []T from the pool and ensures that +// its capacity is at least the provided size. +func (p *PoolSlice[T]) BorrowWithSizeAndRedeem(size int) (*Slice[T], func()) { + s, redeem := p.BorrowWithRedeem() + s.Grow(size) + + return s, redeem +} diff --git a/vendor/github.com/go-openapi/swag/yamlutils/ordered_map.go b/vendor/github.com/go-openapi/swag/yamlutils/ordered_map.go index 3daf68dbba..24d951f8de 100644 --- a/vendor/github.com/go-openapi/swag/yamlutils/ordered_map.go +++ b/vendor/github.com/go-openapi/swag/yamlutils/ordered_map.go @@ -123,7 +123,7 @@ func (s YAMLMapSlice) MarshalYAML() (any, error) { var nodes []*yaml.Node for _, item := range s { - nn, err := json2yaml(item.Value) + nn, err := json2yaml(item.Value, 1) if err != nil { return nil, err } @@ -153,6 +153,17 @@ func (s YAMLMapSlice) MarshalYAML() (any, error) { // // It implements [yaml.Unmarshaler]. func (s *YAMLMapSlice) UnmarshalYAML(node *yaml.Node) error { + return s.unmarshalYAML(newYAMLWalker(), node, 0) +} + +// unmarshalYAML builds the slice from a [yaml.Node], tracking the recursion depth (against +// stack-overflow) and threading the [yamlWalker] so anchor/alias expansion stays bounded +// across the whole document. +func (s *YAMLMapSlice) unmarshalYAML(w *yamlWalker, node *yaml.Node, depth int) error { + if depth > defaultMaxNestingDepth { + return errMaxNestingDepth + } + if typeutils.IsNil(*s) { // allow to unmarshal with a simple var declaration (nil slice) *s = YAMLMapSlice{} @@ -167,13 +178,17 @@ func (s *YAMLMapSlice) UnmarshalYAML(node *yaml.Node) error { m = m[:0] for i := 0; i < len(node.Content); i += 2 { + if err := w.account(); err != nil { // account the key node + return err + } + var nmi YAMLMapItem k, err := yamlStringScalarC(node.Content[i]) if err != nil { return fmt.Errorf("unable to decode YAML map key: %w: %w", err, ErrYAML) } nmi.Key = k - v, err := yamlNode(node.Content[i+1]) + v, err := w.node(node.Content[i+1], depth+1) if err != nil { return fmt.Errorf("unable to process YAML map value for key %q: %w: %w", k, err, ErrYAML) } @@ -186,7 +201,11 @@ func (s *YAMLMapSlice) UnmarshalYAML(node *yaml.Node) error { return nil } -func json2yaml(item any) (*yaml.Node, error) { +func json2yaml(item any, depth int) (*yaml.Node, error) { + if depth > defaultMaxNestingDepth { + return nil, errMaxNestingDepth + } + if typeutils.IsNil(item) { return &yaml.Node{ Kind: yaml.ScalarNode, @@ -196,7 +215,7 @@ func json2yaml(item any) (*yaml.Node, error) { switch val := item.(type) { case ifaces.Ordered: - return orderedYAML(val) + return orderedYAML(val, depth) case map[string]any: var n yaml.Node @@ -209,7 +228,7 @@ func json2yaml(item any) (*yaml.Node, error) { for _, k := range keys { v := val[k] - childNode, err := json2yaml(v) + childNode, err := json2yaml(v, depth+1) if err != nil { return nil, err } @@ -225,7 +244,7 @@ func json2yaml(item any) (*yaml.Node, error) { var n yaml.Node n.Kind = yaml.SequenceNode for i := range val { - childNode, err := json2yaml(val[i]) + childNode, err := json2yaml(val[i], depth+1) if err != nil { return nil, err } @@ -297,11 +316,11 @@ func uintegerNode[T conv.Unsigned](val T) (*yaml.Node, error) { }, nil } -func orderedYAML[T ifaces.Ordered](val T) (*yaml.Node, error) { +func orderedYAML[T ifaces.Ordered](val T, depth int) (*yaml.Node, error) { var n yaml.Node n.Kind = yaml.MappingNode for key, value := range val.OrderedItems() { - childNode, err := json2yaml(value) + childNode, err := json2yaml(value, depth+1) if err != nil { return nil, err } diff --git a/vendor/github.com/go-openapi/swag/yamlutils/yaml.go b/vendor/github.com/go-openapi/swag/yamlutils/yaml.go index e3aff3c2fd..d4b5335f6f 100644 --- a/vendor/github.com/go-openapi/swag/yamlutils/yaml.go +++ b/vendor/github.com/go-openapi/swag/yamlutils/yaml.go @@ -12,13 +12,99 @@ import ( yaml "go.yaml.in/yaml/v3" ) +// defaultMaxNestingDepth caps the recursion depth of the YAML<->JSON transforms to +// guard against stack-overflow on deeply nested (possibly adversarial) input. +// +// It matches the limit enforced by go.yaml.in/yaml/v3's own parser and by +// encoding/json's decoder. +const defaultMaxNestingDepth = 10000 + +// Bounds on YAML anchor/alias expansion. +// +// go.yaml.in/yaml/v3 enforces these when decoding into Go values, but that guard is +// coupled to the library's own tree walk: when we decode into a low-level [yaml.Node] +// (to preserve key order) and expand aliases ourselves in [yamlWalker.node], we bypass +// it. We therefore reproduce it here, with the same constants and ratio schedule as the +// library's decoder (see go.yaml.in/yaml/v3 decode.go, "excessive aliasing"). +const ( + aliasCountThreshold = 100 + decodeCountThreshold = 1000 + + // 400,000 decode operations is ~500kb of dense object declarations, or + // ~5kb of dense object declarations with 10000% alias expansion. + aliasRatioRangeLow = 400000 + // 4,000,000 decode operations is ~5MB of dense object declarations. + aliasRatioRangeHigh = 4000000 + aliasRatioRange = float64(aliasRatioRangeHigh - aliasRatioRangeLow) + + // tolerated share of alias-driven decodes: from aliasRatioSmall (small/medium documents) + // down to aliasRatioLarge (very large ones), interpolated with slope aliasRatioSlope. + aliasRatioSmall = 0.99 + aliasRatioLarge = 0.10 + aliasRatioSlope = aliasRatioSmall - aliasRatioLarge +) + +var ( + // errMaxNestingDepth is returned when a document nests deeper than [defaultMaxNestingDepth]. + errMaxNestingDepth = fmt.Errorf("maximum nesting depth of %d exceeded: %w", defaultMaxNestingDepth, ErrYAML) + + // errExcessiveAliasing is returned when anchor/alias expansion is disproportionate to the + // size of the document, i.e. an "alias bomb". + errExcessiveAliasing = fmt.Errorf("document contains excessive aliasing: %w", ErrYAML) +) + +// allowedAliasRatio scales the tolerated share of alias-driven decode operations from 99% +// for small-to-medium documents down to 10% for very large ones, mirroring go.yaml.in/yaml/v3. +func allowedAliasRatio(decodeCount int) float64 { + switch { + case decodeCount <= aliasRatioRangeLow: + return aliasRatioSmall + case decodeCount >= aliasRatioRangeHigh: + return aliasRatioLarge + default: + return aliasRatioSmall - aliasRatioSlope*(float64(decodeCount-aliasRatioRangeLow)/aliasRatioRange) + } +} + +// yamlWalker carries the state needed to bound a single YAML-tree traversal: +// anchor/alias expansion accounting and cycle detection. +// +// A fresh walker is created per top-level conversion; it is threaded (not copied) through +// the whole recursive walk so its counters accumulate across the entire document. +type yamlWalker struct { + decodeCount int + aliasCount int + aliasDepth int + aliases map[*yaml.Node]bool // anchors currently being expanded, for cycle detection +} + +func newYAMLWalker() *yamlWalker { + return &yamlWalker{aliases: make(map[*yaml.Node]bool)} +} + +// account records one processed node and fails if alias expansion has become excessive. +func (w *yamlWalker) account() error { + w.decodeCount++ + if w.aliasDepth > 0 { + w.aliasCount++ + } + + if w.aliasCount > aliasCountThreshold && + w.decodeCount > decodeCountThreshold && + float64(w.aliasCount)/float64(w.decodeCount) > allowedAliasRatio(w.decodeCount) { + return errExcessiveAliasing + } + + return nil +} + // YAMLToJSON converts a YAML document into JSON bytes. // // Note: a YAML document is the output from a [yaml.Marshaler], e.g a pointer to a [yaml.Node]. // // [YAMLToJSON] is typically called after [BytesToYAMLDoc]. func YAMLToJSON(value any) (json.RawMessage, error) { - jm, err := transformData(value) + jm, err := transformData(value, 0) if err != nil { return nil, err } @@ -44,46 +130,73 @@ func BytesToYAMLDoc(data []byte) (any, error) { return &document, nil } -func yamlNode(root *yaml.Node) (any, error) { +func (w *yamlWalker) node(root *yaml.Node, depth int) (any, error) { + if depth > defaultMaxNestingDepth { + return nil, errMaxNestingDepth + } + if err := w.account(); err != nil { + return nil, err + } + switch root.Kind { case yaml.DocumentNode: - return yamlDocument(root) + return w.document(root, depth) case yaml.SequenceNode: - return yamlSequence(root) + return w.sequence(root, depth) case yaml.MappingNode: - return yamlMapping(root) + return w.mapping(root, depth) case yaml.ScalarNode: return yamlScalar(root) case yaml.AliasNode: - return yamlNode(root.Alias) + return w.alias(root, depth) default: return nil, fmt.Errorf("unsupported YAML node type: %v: %w", root.Kind, ErrYAML) } } -func yamlDocument(node *yaml.Node) (any, error) { +// alias resolves an anchor reference, expanding the anchored subtree. It detects cycles +// (an anchor whose expansion transitively references itself) and accounts the expansion +// against the alias-bomb budget via [yamlWalker.aliasDepth]. +func (w *yamlWalker) alias(node *yaml.Node, depth int) (any, error) { + if node.Alias == nil { + return nil, fmt.Errorf("invalid YAML alias node %q: %w", node.Value, ErrYAML) + } + if w.aliases[node.Alias] { + return nil, fmt.Errorf("anchor %q contains itself: %w", node.Value, ErrYAML) + } + + w.aliases[node.Alias] = true + w.aliasDepth++ + out, err := w.node(node.Alias, depth+1) + w.aliasDepth-- + delete(w.aliases, node.Alias) + + return out, err +} + +func (w *yamlWalker) document(node *yaml.Node, depth int) (any, error) { if len(node.Content) != 1 { return nil, fmt.Errorf("unexpected YAML Document node content length: %d: %w", len(node.Content), ErrYAML) } - return yamlNode(node.Content[0]) + return w.node(node.Content[0], depth+1) } -func yamlMapping(node *yaml.Node) (any, error) { +func (w *yamlWalker) mapping(node *yaml.Node, depth int) (any, error) { const sensibleAllocDivider = 2 // nodes concatenate (key,value) sequences m := make(YAMLMapSlice, len(node.Content)/sensibleAllocDivider) - if err := m.UnmarshalYAML(node); err != nil { + if err := m.unmarshalYAML(w, node, depth); err != nil { return nil, err } return m, nil } -func yamlSequence(node *yaml.Node) (any, error) { +func (w *yamlWalker) sequence(node *yaml.Node, depth int) (any, error) { s := make([]any, 0) for i := range len(node.Content) { - v, err := yamlNode(node.Content[i]) + v, err := w.node(node.Content[i], depth+1) if err != nil { return nil, fmt.Errorf("unable to decode YAML sequence value: %w: %w", err, ErrYAML) } @@ -174,12 +287,16 @@ func format(t any) (string, error) { } } -func transformData(input any) (out any, err error) { +func transformData(input any, depth int) (out any, err error) { + if depth > defaultMaxNestingDepth { + return nil, errMaxNestingDepth + } + switch in := input.(type) { case yaml.Node: - return yamlNode(&in) + return newYAMLWalker().node(&in, depth) case *yaml.Node: - return yamlNode(in) + return newYAMLWalker().node(in, depth) case map[any]any: o := make(YAMLMapSlice, 0, len(in)) for ke, va := range in { @@ -188,7 +305,7 @@ func transformData(input any) (out any, err error) { return nil, err } - v, ert := transformData(va) + v, ert := transformData(va, depth+1) if ert != nil { return nil, ert } @@ -200,7 +317,7 @@ func transformData(input any) (out any, err error) { len1 := len(in) o := make([]any, len1) for i := range len1 { - o[i], err = transformData(in[i]) + o[i], err = transformData(in[i], depth+1) if err != nil { return nil, err } diff --git a/vendor/go.opentelemetry.io/contrib/instrumentation/google.golang.org/grpc/otelgrpc/config.go b/vendor/go.opentelemetry.io/contrib/instrumentation/google.golang.org/grpc/otelgrpc/config.go index 7f3a935220..7ba1b654f8 100644 --- a/vendor/go.opentelemetry.io/contrib/instrumentation/google.golang.org/grpc/otelgrpc/config.go +++ b/vendor/go.opentelemetry.io/contrib/instrumentation/google.golang.org/grpc/otelgrpc/config.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package otelgrpc // import "go.opentelemetry.io/contrib/instrumentation/google.golang.org/grpc/otelgrpc" +package otelgrpc import ( "context" @@ -47,7 +47,6 @@ type config struct { TracerProvider trace.TracerProvider MeterProvider metric.MeterProvider SpanKind trace.SpanKind - SpanStartOptions []trace.SpanStartOption SpanAttributes []attribute.KeyValue MetricAttributes []attribute.KeyValue MetricAttributesFn func(ctx context.Context) []attribute.KeyValue @@ -204,16 +203,6 @@ func WithMessageEvents(events ...Event) Option { }) } -// WithSpanOptions configures an additional set of -// trace.SpanOptions, which are applied to each new span. -// -// Deprecated: It is only used by the deprecated interceptor, and is unused by [NewClientHandler] and [NewServerHandler]. -func WithSpanOptions(opts ...trace.SpanStartOption) Option { - return optionFunc(func(c *config) { - c.SpanStartOptions = append(c.SpanStartOptions, opts...) - }) -} - // WithSpanKind returns an Option to set the span kind for spans created by // the handler. // diff --git a/vendor/go.opentelemetry.io/contrib/instrumentation/google.golang.org/grpc/otelgrpc/doc.go b/vendor/go.opentelemetry.io/contrib/instrumentation/google.golang.org/grpc/otelgrpc/doc.go index b8b836b00f..353e288bb6 100644 --- a/vendor/go.opentelemetry.io/contrib/instrumentation/google.golang.org/grpc/otelgrpc/doc.go +++ b/vendor/go.opentelemetry.io/contrib/instrumentation/google.golang.org/grpc/otelgrpc/doc.go @@ -8,4 +8,4 @@ Use [NewClientHandler] with [grpc.WithStatsHandler] to instrument a gRPC client. Use [NewServerHandler] with [grpc.StatsHandler] to instrument a gRPC server. */ -package otelgrpc // import "go.opentelemetry.io/contrib/instrumentation/google.golang.org/grpc/otelgrpc" +package otelgrpc diff --git a/vendor/go.opentelemetry.io/contrib/instrumentation/google.golang.org/grpc/otelgrpc/interceptor.go b/vendor/go.opentelemetry.io/contrib/instrumentation/google.golang.org/grpc/otelgrpc/interceptor.go index 69e8506ffd..c8065028e9 100644 --- a/vendor/go.opentelemetry.io/contrib/instrumentation/google.golang.org/grpc/otelgrpc/interceptor.go +++ b/vendor/go.opentelemetry.io/contrib/instrumentation/google.golang.org/grpc/otelgrpc/interceptor.go @@ -1,21 +1,62 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package otelgrpc // import "go.opentelemetry.io/contrib/instrumentation/google.golang.org/grpc/otelgrpc" +package otelgrpc // gRPC tracing middleware // https://opentelemetry.io/docs/specs/semconv/rpc/ import ( "net" + "net/url" "strconv" + "strings" "go.opentelemetry.io/otel/attribute" "go.opentelemetry.io/otel/codes" - semconv "go.opentelemetry.io/otel/semconv/v1.40.0" + semconv "go.opentelemetry.io/otel/semconv/v1.43.0" grpc_codes "google.golang.org/grpc/codes" "google.golang.org/grpc/status" ) +// serverAddrAttrsFromCanonicalTarget extracts server address attributes from a +// canonical gRPC target as returned by [google.golang.org/grpc.ClientConn.CanonicalTarget]. +// Canonical targets always have the form "scheme://[authority]/endpoint", e.g.: +// +// passthrough:///127.0.0.1:7777 → ServerAddress("127.0.0.1"), ServerPort(7777) +// dns:///example.com:443 → ServerAddress("example.com"), ServerPort(443) +// dns://authority/example.com:443 → ServerAddress("example.com"), ServerPort(443) +// unix:///tmp/grpc.sock → ServerAddress("/tmp/grpc.sock") +func serverAddrAttrsFromCanonicalTarget(target string) []attribute.KeyValue { + // Fast path: confirmed host:port with numeric port, no scheme involved. + if h, pStr, err := net.SplitHostPort(target); err == nil { + if p, err := strconv.Atoi(pStr); err == nil { + return []attribute.KeyValue{ + semconv.ServerAddress(h), + semconv.ServerPort(p), + } + } + } + // gRPC URI: scheme://authority/endpoint → endpoint in Path + // scheme:endpoint → endpoint in Opaque + u, err := url.Parse(target) + if err != nil { + return []attribute.KeyValue{semconv.ServerAddress(target)} + } + ep := u.Path + if u.Scheme != "unix" && u.Scheme != "unix-abstract" { + // Strip the leading "/" added by url.Parse for hierarchical URIs; + // preserve it for unix socket paths where the slash is meaningful. + ep = strings.TrimPrefix(ep, "/") + } + if ep == "" { + ep = u.Opaque + } + if ep != "" { + return serverAddrAttrs(ep) + } + return []attribute.KeyValue{semconv.ServerAddress(target)} +} + // serverAddrAttrs returns the server address attributes for the hostport. func serverAddrAttrs(hostport string) []attribute.KeyValue { h, pStr, err := net.SplitHostPort(hostport) diff --git a/vendor/go.opentelemetry.io/contrib/instrumentation/google.golang.org/grpc/otelgrpc/interceptorinfo.go b/vendor/go.opentelemetry.io/contrib/instrumentation/google.golang.org/grpc/otelgrpc/interceptorinfo.go index b62f7cd7c4..7a3083f3ca 100644 --- a/vendor/go.opentelemetry.io/contrib/instrumentation/google.golang.org/grpc/otelgrpc/interceptorinfo.go +++ b/vendor/go.opentelemetry.io/contrib/instrumentation/google.golang.org/grpc/otelgrpc/interceptorinfo.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package otelgrpc // import "go.opentelemetry.io/contrib/instrumentation/google.golang.org/grpc/otelgrpc" +package otelgrpc import ( "google.golang.org/grpc" diff --git a/vendor/go.opentelemetry.io/contrib/instrumentation/google.golang.org/grpc/otelgrpc/internal/parse.go b/vendor/go.opentelemetry.io/contrib/instrumentation/google.golang.org/grpc/otelgrpc/internal/parse.go index 5174f4dd19..aa4bbfa4ac 100644 --- a/vendor/go.opentelemetry.io/contrib/instrumentation/google.golang.org/grpc/otelgrpc/internal/parse.go +++ b/vendor/go.opentelemetry.io/contrib/instrumentation/google.golang.org/grpc/otelgrpc/internal/parse.go @@ -2,14 +2,14 @@ // SPDX-License-Identifier: Apache-2.0 // Package internal provides internal functionality for the otelgrpc package. -package internal // import "go.opentelemetry.io/contrib/instrumentation/google.golang.org/grpc/otelgrpc/internal" +package internal import ( "strings" "go.opentelemetry.io/otel/attribute" oldsemconv "go.opentelemetry.io/otel/semconv/v1.37.0" //nolint:depguard // Use of v1.37.0 is required for backward compatibility stability opt-in. - semconv "go.opentelemetry.io/otel/semconv/v1.40.0" + semconv "go.opentelemetry.io/otel/semconv/v1.43.0" ) // ParseFullMethod returns a span name following the OpenTelemetry semantic diff --git a/vendor/go.opentelemetry.io/contrib/instrumentation/google.golang.org/grpc/otelgrpc/metadata_supplier.go b/vendor/go.opentelemetry.io/contrib/instrumentation/google.golang.org/grpc/otelgrpc/metadata_supplier.go index 4c62341d66..6651e8bd80 100644 --- a/vendor/go.opentelemetry.io/contrib/instrumentation/google.golang.org/grpc/otelgrpc/metadata_supplier.go +++ b/vendor/go.opentelemetry.io/contrib/instrumentation/google.golang.org/grpc/otelgrpc/metadata_supplier.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package otelgrpc // import "go.opentelemetry.io/contrib/instrumentation/google.golang.org/grpc/otelgrpc" +package otelgrpc import ( "context" diff --git a/vendor/go.opentelemetry.io/contrib/instrumentation/google.golang.org/grpc/otelgrpc/stats_handler.go b/vendor/go.opentelemetry.io/contrib/instrumentation/google.golang.org/grpc/otelgrpc/stats_handler.go index c9c44c1592..1d0fc06226 100644 --- a/vendor/go.opentelemetry.io/contrib/instrumentation/google.golang.org/grpc/otelgrpc/stats_handler.go +++ b/vendor/go.opentelemetry.io/contrib/instrumentation/google.golang.org/grpc/otelgrpc/stats_handler.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package otelgrpc // import "go.opentelemetry.io/contrib/instrumentation/google.golang.org/grpc/otelgrpc" +package otelgrpc import ( "context" @@ -13,8 +13,8 @@ import ( "go.opentelemetry.io/otel/codes" "go.opentelemetry.io/otel/metric" oldrpcconv "go.opentelemetry.io/otel/semconv/v1.37.0/rpcconv" //nolint:depguard // Use of v1.37.0 is required for backward compatibility stability opt-in. - semconv "go.opentelemetry.io/otel/semconv/v1.40.0" - "go.opentelemetry.io/otel/semconv/v1.40.0/rpcconv" + semconv "go.opentelemetry.io/otel/semconv/v1.43.0" + "go.opentelemetry.io/otel/semconv/v1.43.0/rpcconv" "go.opentelemetry.io/otel/trace" grpc_codes "google.golang.org/grpc/codes" @@ -26,6 +26,11 @@ import ( type gRPCContextKey struct{} +// dialTargetContextKey carries the dial target seeded by client interceptors +// so the stats handler can use the hostname for server.address instead of the +// post-DNS IP from RemoteAddr. +type dialTargetContextKey struct{} + type gRPCContext struct { metricAttrs []attribute.KeyValue record bool @@ -328,6 +333,20 @@ func (*config) handleRPC( switch rs := rs.(type) { case *stats.Begin: + // Set server.address early from the dial target when available (upcoming + // interceptors will seed this). Covers both success and failure paths since Begin + // fires on every RPC regardless of outcome. + if rs.Client { + if target, ok := ctx.Value(dialTargetContextKey{}).(string); ok && target != "" { + attrs := serverAddrAttrsFromCanonicalTarget(target) + if span.IsRecording() { + span.SetAttributes(attrs...) + } + if gctx != nil { + gctx.metricAttrs = append(gctx.metricAttrs, attrs...) + } + } + } case *stats.InPayload: case *stats.InHeader: if !rs.Client && rs.LocalAddr != nil { @@ -339,13 +358,18 @@ func (*config) handleRPC( case *stats.OutPayload: case *stats.OutTrailer: case *stats.OutHeader: + // Only use the resolved IP from RemoteAddr when no dial target was seeded + // (i.e. NewClientHandler callers without interceptors). When dialTargetContextKey + // is present, Begin already set server.address to the hostname. if rs.Client && rs.RemoteAddr != nil && (span.IsRecording() || gctx != nil) { - attrs := serverAddrAttrs(rs.RemoteAddr.String()) - if span.IsRecording() { - span.SetAttributes(attrs...) - } - if gctx != nil { - gctx.metricAttrs = append(gctx.metricAttrs, attrs...) + if target, ok := ctx.Value(dialTargetContextKey{}).(string); !ok || target == "" { + attrs := serverAddrAttrs(rs.RemoteAddr.String()) + if span.IsRecording() { + span.SetAttributes(attrs...) + } + if gctx != nil { + gctx.metricAttrs = append(gctx.metricAttrs, attrs...) + } } } case *stats.End: @@ -367,27 +391,39 @@ func (*config) handleRPC( span.End() } - var metricAttrs []attribute.KeyValue - if gctx != nil { - // Don't use gctx.metricAttrSet here, because it requires passing - // multiple RecordOptions, which would call metric.mergeSets and - // allocate a new set for each Record call. - metricAttrs = make([]attribute.KeyValue, 0, len(gctx.metricAttrs)+1) - metricAttrs = append(metricAttrs, gctx.metricAttrs...) - } - metricAttrs = append(metricAttrs, rpcStatusAttr) - // Allocate vararg slice once. - recordOpts := []metric.RecordOption{metric.WithAttributeSet(attribute.NewSet(metricAttrs...))} - - // Use floating point division here for higher precision (instead of Millisecond method). - // Measure right before calling Record() to capture as much elapsed time as possible. - elapsedTime := float64(rs.EndTime.Sub(rs.BeginTime)) / float64(time.Second) + var durationEnabled bool + var oldDurationEnabled bool if duration != nil { - duration.Record(ctx, elapsedTime, recordOpts...) + durationEnabled = duration.Enabled(ctx) } if oldDuration != nil { - oldDuration.Record(ctx, elapsedTime*1000.0, recordOpts...) + oldDurationEnabled = oldDuration.Enabled(ctx) + } + + if durationEnabled || oldDurationEnabled { + var metricAttrs []attribute.KeyValue + if gctx != nil { + // Don't use gctx.metricAttrSet here, because it requires passing + // multiple RecordOptions, which would call metric.mergeSets and + // allocate a new set for each Record call. + metricAttrs = make([]attribute.KeyValue, 0, len(gctx.metricAttrs)+1) + metricAttrs = append(metricAttrs, gctx.metricAttrs...) + } + metricAttrs = append(metricAttrs, rpcStatusAttr) + // Allocate vararg slice once. + recordOpts := []metric.RecordOption{metric.WithAttributeSet(attribute.NewSet(metricAttrs...))} + + // Use floating point division here for higher precision (instead of Millisecond method). + // Measure right before calling Record() to capture as much elapsed time as possible. + elapsedTime := float64(rs.EndTime.Sub(rs.BeginTime)) / float64(time.Second) + + if durationEnabled { + duration.Record(ctx, elapsedTime, recordOpts...) + } + if oldDurationEnabled { + oldDuration.Record(ctx, elapsedTime*1000.0, recordOpts...) + } } default: diff --git a/vendor/go.opentelemetry.io/contrib/instrumentation/google.golang.org/grpc/otelgrpc/version.go b/vendor/go.opentelemetry.io/contrib/instrumentation/google.golang.org/grpc/otelgrpc/version.go index 1e81d31fec..23fda6f503 100644 --- a/vendor/go.opentelemetry.io/contrib/instrumentation/google.golang.org/grpc/otelgrpc/version.go +++ b/vendor/go.opentelemetry.io/contrib/instrumentation/google.golang.org/grpc/otelgrpc/version.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package otelgrpc // import "go.opentelemetry.io/contrib/instrumentation/google.golang.org/grpc/otelgrpc" +package otelgrpc // Version is the current release version of the gRPC instrumentation. -const Version = "0.68.0" +const Version = "0.70.0" diff --git a/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/common.go b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/common.go index 3ae0824344..733b75dca7 100644 --- a/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/common.go +++ b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/common.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package otelhttp // import "go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp" +package otelhttp import ( "net/http" diff --git a/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/config.go b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/config.go index a7d4b2a815..08ba0778f6 100644 --- a/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/config.go +++ b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/config.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package otelhttp // import "go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp" +package otelhttp import ( "context" diff --git a/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/doc.go b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/doc.go index 1c9aa3ff42..09a2103fe4 100644 --- a/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/doc.go +++ b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/doc.go @@ -3,4 +3,4 @@ // Package otelhttp provides an http.Handler and functions that are intended // to be used to add tracing by wrapping existing handlers. -package otelhttp // import "go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp" +package otelhttp diff --git a/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/handler.go b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/handler.go index 204588b849..844363a090 100644 --- a/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/handler.go +++ b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/handler.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package otelhttp // import "go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp" +package otelhttp import ( "net/http" diff --git a/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/request/body_wrapper.go b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/request/body_wrapper.go index d032aa841b..aeff416046 100644 --- a/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/request/body_wrapper.go +++ b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/request/body_wrapper.go @@ -1,12 +1,12 @@ -// Code generated by gotmpl. DO NOT MODIFY. -// source: internal/shared/request/body_wrapper.go.tmpl - // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 +// DO NOT MODIFY. Generated by gotmpl. +// source: internal/shared/request/body_wrapper.go.tmpl + // Package request provides types and functionality to handle HTTP request // handling. -package request // import "go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/request" +package request import ( "io" diff --git a/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/request/gen.go b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/request/gen.go index 9e00dd2fce..98f7bdbfcf 100644 --- a/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/request/gen.go +++ b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/request/gen.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package request // import "go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/request" +package request // Generate request package: //go:generate gotmpl --body=../../../../../../internal/shared/request/body_wrapper.go.tmpl "--data={}" --out=body_wrapper.go diff --git a/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/request/resp_writer_wrapper.go b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/request/resp_writer_wrapper.go index f29f9b7c96..6b523cb74f 100644 --- a/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/request/resp_writer_wrapper.go +++ b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/request/resp_writer_wrapper.go @@ -1,10 +1,10 @@ -// Code generated by gotmpl. DO NOT MODIFY. -// source: internal/shared/request/resp_writer_wrapper.go.tmpl - // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package request // import "go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/request" +// DO NOT MODIFY. Generated by gotmpl. +// source: internal/shared/request/resp_writer_wrapper.go.tmpl + +package request import ( "net/http" diff --git a/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconv/client.go b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconv/client.go index 0241b08e85..c275b5f051 100644 --- a/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconv/client.go +++ b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconv/client.go @@ -1,12 +1,12 @@ -// Code generated by gotmpl. DO NOT MODIFY. -// source: internal/shared/semconv/client.go.tmpl - // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 +// DO NOT MODIFY. Generated by gotmpl. +// source: internal/shared/semconv/client.go.tmpl + // Package semconv provides OpenTelemetry semantic convention types and // functionality. -package semconv // import "go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconv" +package semconv import ( "context" @@ -20,8 +20,8 @@ import ( "go.opentelemetry.io/otel/attribute" "go.opentelemetry.io/otel/codes" "go.opentelemetry.io/otel/metric" - "go.opentelemetry.io/otel/semconv/v1.41.0" - "go.opentelemetry.io/otel/semconv/v1.41.0/httpconv" + semconv "go.opentelemetry.io/otel/semconv/v1.43.0" + "go.opentelemetry.io/otel/semconv/v1.43.0/httpconv" ) type HTTPClient struct { @@ -45,7 +45,7 @@ func NewHTTPClient(meter metric.Meter) HTTPClient { return client } -func (n HTTPClient) Status(code int) (codes.Code, string) { +func (HTTPClient) Status(code int) (codes.Code, string) { if code < 100 || code >= 600 { return codes.Error, fmt.Sprintf("Invalid HTTP status code %d", code) } @@ -120,9 +120,7 @@ func (n HTTPClient) RequestTraceAttrs(req *http.Request) []attribute.KeyValue { // Restore any username/password info that was removed. req.URL.User = userinfo } - attrs = append(attrs, semconv.URLFull(u)) - - attrs = append(attrs, semconv.ServerAddress(requestHost)) + attrs = append(attrs, semconv.URLFull(u), semconv.ServerAddress(requestHost)) if eligiblePort > 0 { attrs = append(attrs, semconv.ServerPort(eligiblePort)) } @@ -138,11 +136,13 @@ func (n HTTPClient) RequestTraceAttrs(req *http.Request) []attribute.KeyValue { } // ResponseTraceAttrs returns trace attributes for an HTTP response made by a client. -func (n HTTPClient) ResponseTraceAttrs(resp *http.Response) []attribute.KeyValue { +func (HTTPClient) ResponseTraceAttrs(resp *http.Response) []attribute.KeyValue { /* below attributes are returned: - http.response.status_code - error.type + - network.protocol.name (only when it is not "http") + - network.protocol.version */ var count int if resp.StatusCode > 0 { @@ -153,6 +153,21 @@ func (n HTTPClient) ResponseTraceAttrs(resp *http.Response) []attribute.KeyValue count++ } + // The protocol version is only known for certain once the response + // arrives: req.Proto reflects what the caller asked for, but the + // transport may negotiate a different version (for example HTTP/2 via + // ALPN). Report resp.Proto here so it overrides the request-time value + // on the span. As in RequestTraceAttrs, network.protocol.name is omitted + // when it is "http": the spec only requires it when the name differs from + // the protocol implied by http.request.method. + protoName, protoVersion := netProtocol(resp.Proto) + if protoName != "" && protoName != "http" { + count++ + } + if protoVersion != "" { + count++ + } + attrs := make([]attribute.KeyValue, 0, count) if resp.StatusCode > 0 { attrs = append(attrs, semconv.HTTPResponseStatusCode(resp.StatusCode)) @@ -162,10 +177,17 @@ func (n HTTPClient) ResponseTraceAttrs(resp *http.Response) []attribute.KeyValue errorType := strconv.Itoa(resp.StatusCode) attrs = append(attrs, semconv.ErrorTypeKey.String(errorType)) } + + if protoName != "" && protoName != "http" { + attrs = append(attrs, semconv.NetworkProtocolName(protoName)) + } + if protoVersion != "" { + attrs = append(attrs, semconv.NetworkProtocolVersion(protoVersion)) + } return attrs } -func (n HTTPClient) method(method string) (attribute.KeyValue, attribute.KeyValue) { +func (HTTPClient) method(method string) (attribute.KeyValue, attribute.KeyValue) { if method == "" { return semconv.HTTPRequestMethodOther, attribute.KeyValue{} } @@ -180,7 +202,7 @@ func (n HTTPClient) method(method string) (attribute.KeyValue, attribute.KeyValu return semconv.HTTPRequestMethodOther, orig } -func (n HTTPClient) MetricAttributes(req *http.Request, statusCode int, additionalAttributes []attribute.KeyValue) []attribute.KeyValue { +func (n HTTPClient) MetricAttributes(req *http.Request, resp *http.Response, statusCode int, additionalAttributes []attribute.KeyValue) []attribute.KeyValue { num := len(additionalAttributes) + 2 var h string if req.URL != nil { @@ -200,7 +222,14 @@ func (n HTTPClient) MetricAttributes(req *http.Request, statusCode int, addition num++ } - protoName, protoVersion := netProtocol(req.Proto) + // Prefer the negotiated protocol reported on the response: req.Proto is + // only what the caller asked for, and the transport may have upgraded + // the connection (for example HTTP/2 via ALPN). + proto := req.Proto + if resp != nil && resp.Proto != "" { + proto = resp.Proto + } + protoName, protoVersion := netProtocol(proto) if protoName != "" { num++ } @@ -213,7 +242,8 @@ func (n HTTPClient) MetricAttributes(req *http.Request, statusCode int, addition } attributes := slices.Grow(additionalAttributes, num) - attributes = append(attributes, + attributes = append( + attributes, semconv.HTTPRequestMethodKey.String(standardizeHTTPMethod(req.Method)), semconv.ServerAddress(requestHost), n.scheme(req), @@ -249,7 +279,7 @@ func (o MetricOpts) AddOptions() metric.AddOption { } func (n HTTPClient) MetricOptions(ma MetricAttributes) MetricOpts { - attributes := n.MetricAttributes(ma.Req, ma.StatusCode, ma.AdditionalAttributes) + attributes := n.MetricAttributes(ma.Req, ma.Resp, ma.StatusCode, ma.AdditionalAttributes) if ma.StatusCode == 0 && ma.Err != nil { attributes = append(attributes, n.ErrorType(ma.Err)) } @@ -269,12 +299,12 @@ func (n HTTPClient) MetricOptions(ma MetricAttributes) MetricOpts { // type per failure keeps attribute cardinality bounded, as required by the // OTel spec (error.type SHOULD have low cardinality). Callers that need // finer-grained error distinctions should inspect the error themselves. -func (n HTTPClient) ErrorType(err error) attribute.KeyValue { +func (HTTPClient) ErrorType(err error) attribute.KeyValue { t := reflect.TypeOf(err) if t == nil { return semconv.ErrorTypeOther } - if t.Kind() == reflect.Ptr { + if t.Kind() == reflect.Pointer { t = t.Elem() } var value string @@ -307,13 +337,13 @@ func (n HTTPClient) RecordMetrics(ctx context.Context, md MetricData, opts Metri } // TraceAttributes returns attributes for httptrace. -func (n HTTPClient) TraceAttributes(host string) []attribute.KeyValue { +func (HTTPClient) TraceAttributes(host string) []attribute.KeyValue { return []attribute.KeyValue{ semconv.ServerAddress(host), } } -func (n HTTPClient) scheme(req *http.Request) attribute.KeyValue { +func (HTTPClient) scheme(req *http.Request) attribute.KeyValue { if req.URL != nil && req.URL.Scheme != "" { return semconv.URLScheme(req.URL.Scheme) } diff --git a/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconv/gen.go b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconv/gen.go index a8a0d58df3..fbcd4f6b23 100644 --- a/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconv/gen.go +++ b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconv/gen.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package semconv // import "go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconv" +package semconv // Generate semconv package: //go:generate gotmpl --body=../../../../../../internal/shared/semconv/bench_test.go.tmpl "--data={ \"pkg\": \"go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp\" }" --out=bench_test.go diff --git a/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconv/server.go b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconv/server.go index 8e0430863d..35e744e41d 100644 --- a/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconv/server.go +++ b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconv/server.go @@ -1,12 +1,12 @@ -// Code generated by gotmpl. DO NOT MODIFY. -// source: internal/shared/semconv/server.go.tmpl - // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 +// DO NOT MODIFY. Generated by gotmpl. +// source: internal/shared/semconv/server.go.tmpl + // Package semconv provides OpenTelemetry semantic convention types and // functionality. -package semconv // import "go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconv" +package semconv import ( "context" @@ -20,8 +20,8 @@ import ( "go.opentelemetry.io/otel/attribute" "go.opentelemetry.io/otel/codes" "go.opentelemetry.io/otel/metric" - "go.opentelemetry.io/otel/semconv/v1.41.0" - "go.opentelemetry.io/otel/semconv/v1.41.0/httpconv" + semconv "go.opentelemetry.io/otel/semconv/v1.43.0" + "go.opentelemetry.io/otel/semconv/v1.43.0/httpconv" ) type RequestTraceAttrsOpts struct { @@ -67,7 +67,7 @@ func NewHTTPServer(meter metric.Meter) HTTPServer { // Status returns a span status code and message for an HTTP status code // value returned by a server. Status codes in the 400-499 range are not // returned as errors. -func (n HTTPServer) Status(code int) (codes.Code, string) { +func (HTTPServer) Status(code int) (codes.Code, string) { if code < 100 || code >= 600 { return codes.Error, fmt.Sprintf("Invalid HTTP status code %d", code) } @@ -168,7 +168,8 @@ func (n HTTPServer) RequestTraceAttrs(server string, req *http.Request, opts Req } attrs := make([]attribute.KeyValue, 0, count) - attrs = append(attrs, + attrs = append( + attrs, semconv.ServerAddress(host), method, scheme, @@ -216,7 +217,7 @@ func (n HTTPServer) RequestTraceAttrs(server string, req *http.Request, opts Req return attrs } -func (s HTTPServer) NetworkTransportAttr(network string) []attribute.KeyValue { +func (HTTPServer) NetworkTransportAttr(network string) []attribute.KeyValue { attr := semconv.NetworkTransportPipe switch network { case "tcp", "tcp4", "tcp6": @@ -239,7 +240,11 @@ type ServerMetricData struct { } type MetricAttributes struct { - Req *http.Request + Req *http.Request + // Resp is the client response, if any. It is only consulted by + // HTTPClient.MetricAttributes to source the negotiated protocol version; + // server-side metric recording ignores it. + Resp *http.Response StatusCode int Route string AdditionalAttributes []attribute.KeyValue @@ -274,7 +279,7 @@ func (n HTTPServer) RecordMetrics(ctx context.Context, md ServerMetricData) { // It returns "{method} {route}" when the request has a pattern, // or just "{method}" when no route is available. // Non-standard HTTP methods are replaced by "HTTP". -func (n HTTPServer) SpanName(r *http.Request) string { +func (HTTPServer) SpanName(r *http.Request) string { method := strings.ToUpper(r.Method) if _, ok := methodLookup[method]; !ok { method = "HTTP" @@ -287,7 +292,7 @@ func (n HTTPServer) SpanName(r *http.Request) string { return method } -func (n HTTPServer) method(method string) (attribute.KeyValue, attribute.KeyValue) { +func (HTTPServer) method(method string) (attribute.KeyValue, attribute.KeyValue) { if method == "" { return semconv.HTTPRequestMethodOther, attribute.KeyValue{} } @@ -314,7 +319,7 @@ func (n HTTPServer) scheme(https bool) attribute.KeyValue { //nolint:revive // i // // If any of the fields in the ResponseTelemetry are not set the attribute will // be omitted. -func (n HTTPServer) ResponseTraceAttrs(resp ResponseTelemetry) []attribute.KeyValue { +func (HTTPServer) ResponseTraceAttrs(resp ResponseTelemetry) []attribute.KeyValue { var count int if resp.ReadBytes > 0 { @@ -330,17 +335,20 @@ func (n HTTPServer) ResponseTraceAttrs(resp ResponseTelemetry) []attribute.KeyVa attributes := make([]attribute.KeyValue, 0, count) if resp.ReadBytes > 0 { - attributes = append(attributes, + attributes = append( + attributes, semconv.HTTPRequestBodySize(int(resp.ReadBytes)), ) } if resp.WriteBytes > 0 { - attributes = append(attributes, + attributes = append( + attributes, semconv.HTTPResponseBodySize(int(resp.WriteBytes)), ) } if resp.StatusCode > 0 { - attributes = append(attributes, + attributes = append( + attributes, semconv.HTTPResponseStatusCode(resp.StatusCode), ) } @@ -349,7 +357,7 @@ func (n HTTPServer) ResponseTraceAttrs(resp ResponseTelemetry) []attribute.KeyVa } // Route returns the attribute for the route. -func (n HTTPServer) Route(route string) attribute.KeyValue { +func (HTTPServer) Route(route string) attribute.KeyValue { return semconv.HTTPRoute(route) } diff --git a/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconv/util.go b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconv/util.go index d6842ed2ab..0de0bd83c4 100644 --- a/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconv/util.go +++ b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconv/util.go @@ -1,10 +1,10 @@ -// Code generated by gotmpl. DO NOT MODIFY. -// source: internal/shared/semconv/util.go.tmpl - // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package semconv // import "go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconv" +// DO NOT MODIFY. Generated by gotmpl. +// source: internal/shared/semconv/util.go.tmpl + +package semconv import ( "net" @@ -15,7 +15,7 @@ import ( "go.opentelemetry.io/otel" "go.opentelemetry.io/otel/attribute" - semconvNew "go.opentelemetry.io/otel/semconv/v1.41.0" + semconvNew "go.opentelemetry.io/otel/semconv/v1.43.0" ) // SplitHostPort splits a network address hostport of the form "host", @@ -32,29 +32,29 @@ func SplitHostPort(hostport string) (host string, port int) { addrEnd := strings.LastIndexByte(hostport, ']') if addrEnd < 0 { // Invalid hostport. - return + return host, port } if i := strings.LastIndexByte(hostport[addrEnd:], ':'); i < 0 { host = hostport[1:addrEnd] - return + return host, port } } else { if i := strings.LastIndexByte(hostport, ':'); i < 0 { host = hostport - return + return host, port } } host, pStr, err := net.SplitHostPort(hostport) if err != nil { - return + return host, port } p, err := strconv.ParseUint(pStr, 10, 16) if err != nil { - return + return host, port } - return host, int(p) //nolint:gosec // Byte size checked 16 above. + return host, int(p) } func requiredHTTPPort(https bool, port int) int { //nolint:revive // ignore linter @@ -84,7 +84,7 @@ func httpRoute(pattern string) string { return "" } -func netProtocol(proto string) (name string, version string) { +func netProtocol(proto string) (name, version string) { name, version, _ = strings.Cut(proto, "/") switch name { case "HTTP": diff --git a/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/labeler.go b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/labeler.go index d62ce44b00..8362b82468 100644 --- a/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/labeler.go +++ b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/labeler.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package otelhttp // import "go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp" +package otelhttp import ( "context" diff --git a/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/start_time_context.go b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/start_time_context.go index 9476ef01b0..9b6c0a889b 100644 --- a/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/start_time_context.go +++ b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/start_time_context.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package otelhttp // import "go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp" +package otelhttp import ( "context" diff --git a/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/transport.go b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/transport.go index b15895cee2..82501eab32 100644 --- a/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/transport.go +++ b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/transport.go @@ -1,10 +1,11 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package otelhttp // import "go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp" +package otelhttp import ( "context" + "fmt" "io" "net/http" "net/http/httptrace" @@ -15,7 +16,7 @@ import ( "go.opentelemetry.io/otel/attribute" "go.opentelemetry.io/otel/codes" "go.opentelemetry.io/otel/propagation" - otelsemconv "go.opentelemetry.io/otel/semconv/v1.41.0" + otelsemconv "go.opentelemetry.io/otel/semconv/v1.43.0" "go.opentelemetry.io/otel/trace" "go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/request" @@ -142,6 +143,9 @@ func (t *Transport) RoundTrip(r *http.Request) (*http.Response, error) { t.propagators.Inject(ctx, propagation.HeaderCarrier(r.Header)) res, err := t.rt.RoundTrip(r) + if err == nil { + res, err = ensureResponseBody(t.rt, r, res) + } // Record the metrics on error or no error. statusCode := 0 @@ -160,6 +164,7 @@ func (t *Transport) RoundTrip(r *http.Request) (*http.Response, error) { }, t.semconv.MetricOptions(semconv.MetricAttributes{ Req: r, + Resp: res, StatusCode: statusCode, Err: err, AdditionalAttributes: append(labeler.Get(), t.metricAttributesFromRequest(r)...), @@ -183,6 +188,20 @@ func (t *Transport) RoundTrip(r *http.Request) (*http.Response, error) { return res, nil } +func ensureResponseBody(rt http.RoundTripper, r *http.Request, res *http.Response) (*http.Response, error) { + switch { + case res == nil: + return nil, fmt.Errorf("http: RoundTripper implementation (%T) returned a nil *Response with a nil error", rt) + case res.Body != nil: + return res, nil + case res.ContentLength > 0 && r.Method != http.MethodHead: + return nil, fmt.Errorf("http: RoundTripper implementation (%T) returned a *Response with content length %d but a nil Body", rt, res.ContentLength) + default: + res.Body = http.NoBody + return res, nil + } +} + func (t *Transport) metricAttributesFromRequest(r *http.Request) []attribute.KeyValue { var attributeForRequest []attribute.KeyValue if t.metricAttributesFn != nil { diff --git a/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/version.go b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/version.go index 2feb885000..b757d6e9d0 100644 --- a/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/version.go +++ b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/version.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package otelhttp // import "go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp" +package otelhttp // Version is the current release version of the otelhttp instrumentation. -const Version = "0.69.0" +const Version = "0.70.0" diff --git a/vendor/go.opentelemetry.io/otel/exporters/stdout/stdouttrace/config.go b/vendor/go.opentelemetry.io/otel/exporters/stdout/stdouttrace/config.go index 0ba3424e29..4abadf76f3 100644 --- a/vendor/go.opentelemetry.io/otel/exporters/stdout/stdouttrace/config.go +++ b/vendor/go.opentelemetry.io/otel/exporters/stdout/stdouttrace/config.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package stdouttrace // import "go.opentelemetry.io/otel/exporters/stdout/stdouttrace" +package stdouttrace import ( "io" diff --git a/vendor/go.opentelemetry.io/otel/exporters/stdout/stdouttrace/doc.go b/vendor/go.opentelemetry.io/otel/exporters/stdout/stdouttrace/doc.go index 648bc0749f..9e2f2a439e 100644 --- a/vendor/go.opentelemetry.io/otel/exporters/stdout/stdouttrace/doc.go +++ b/vendor/go.opentelemetry.io/otel/exporters/stdout/stdouttrace/doc.go @@ -6,4 +6,4 @@ // // See [go.opentelemetry.io/otel/exporters/stdout/stdouttrace/internal/x] for information about // the experimental features. -package stdouttrace // import "go.opentelemetry.io/otel/exporters/stdout/stdouttrace" +package stdouttrace diff --git a/vendor/go.opentelemetry.io/otel/exporters/stdout/stdouttrace/internal/counter/counter.go b/vendor/go.opentelemetry.io/otel/exporters/stdout/stdouttrace/internal/counter/counter.go index 8c780afb02..57c6acb781 100644 --- a/vendor/go.opentelemetry.io/otel/exporters/stdout/stdouttrace/internal/counter/counter.go +++ b/vendor/go.opentelemetry.io/otel/exporters/stdout/stdouttrace/internal/counter/counter.go @@ -1,14 +1,14 @@ -// Code generated by gotmpl. DO NOT MODIFY. -// source: internal/shared/counter/counter.go.tmpl - // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 +// DO NOT MODIFY. Generated by gotmpl. +// source: internal/shared/counter/counter.go.tmpl + // Package counter provides a simple counter for generating unique IDs. // // This package is used to generate unique IDs while allowing testing packages // to reset the counter. -package counter // import "go.opentelemetry.io/otel/exporters/stdout/stdouttrace/internal/counter" +package counter import "sync/atomic" diff --git a/vendor/go.opentelemetry.io/otel/exporters/stdout/stdouttrace/internal/gen.go b/vendor/go.opentelemetry.io/otel/exporters/stdout/stdouttrace/internal/gen.go index 6d14e32da7..05754b615d 100644 --- a/vendor/go.opentelemetry.io/otel/exporters/stdout/stdouttrace/internal/gen.go +++ b/vendor/go.opentelemetry.io/otel/exporters/stdout/stdouttrace/internal/gen.go @@ -3,9 +3,9 @@ // Package internal provides internal functionality for the stdouttrace // package. -package internal // import "go.opentelemetry.io/otel/exporters/stdout/stdouttrace/internal" +package internal -//go:generate gotmpl --body=../../../../internal/shared/counter/counter.go.tmpl "--data={ \"pkg\": \"go.opentelemetry.io/otel/exporters/stdout/stdouttrace/internal/counter\" }" --out=counter/counter.go +//go:generate gotmpl --body=../../../../internal/shared/counter/counter.go.tmpl "--data={}" --out=counter/counter.go //go:generate gotmpl --body=../../../../internal/shared/counter/counter_test.go.tmpl "--data={}" --out=counter/counter_test.go //go:generate gotmpl --body=../../../../internal/shared/x/x.go.tmpl "--data={ \"pkg\": \"go.opentelemetry.io/otel/exporters/stdout/stdouttrace\" }" --out=x/x.go diff --git a/vendor/go.opentelemetry.io/otel/exporters/stdout/stdouttrace/internal/observ/instrumentation.go b/vendor/go.opentelemetry.io/otel/exporters/stdout/stdouttrace/internal/observ/instrumentation.go index 08e276786a..217952803f 100644 --- a/vendor/go.opentelemetry.io/otel/exporters/stdout/stdouttrace/internal/observ/instrumentation.go +++ b/vendor/go.opentelemetry.io/otel/exporters/stdout/stdouttrace/internal/observ/instrumentation.go @@ -3,7 +3,7 @@ // Package observ provides experimental observability instrumentation // for the stdout trace exporter. -package observ // import "go.opentelemetry.io/otel/exporters/stdout/stdouttrace/internal/observ" +package observ import ( "context" @@ -17,8 +17,8 @@ import ( "go.opentelemetry.io/otel/exporters/stdout/stdouttrace/internal" "go.opentelemetry.io/otel/exporters/stdout/stdouttrace/internal/x" "go.opentelemetry.io/otel/metric" - semconv "go.opentelemetry.io/otel/semconv/v1.41.0" - "go.opentelemetry.io/otel/semconv/v1.41.0/otelconv" + semconv "go.opentelemetry.io/otel/semconv/v1.43.0" + "go.opentelemetry.io/otel/semconv/v1.43.0/otelconv" ) const ( @@ -205,7 +205,7 @@ func (e ExportOp) End(success int64, err error) { } mOpt := e.inst.setOpt - if err != nil && exportedSpansEnable { + if err != nil && (exportedSpansEnable || opDurationEnable) { attrs := get[attribute.KeyValue](measureAttrsPool) defer put(measureAttrsPool, attrs) *attrs = append(*attrs, e.inst.attrs...) @@ -216,10 +216,11 @@ func (e ExportOp) End(success int64, err error) { set := attribute.NewSet(*attrs...) mOpt = metric.WithAttributeSet(set) - // Reset addOpt with new attribute set. - *addOpt = append((*addOpt)[:0], mOpt) - - e.inst.exportedSpans.Add(e.ctx, e.nSpans-success, *addOpt...) + if exportedSpansEnable { + // Reset addOpt with new attribute set. + *addOpt = append((*addOpt)[:0], mOpt) + e.inst.exportedSpans.Add(e.ctx, e.nSpans-success, *addOpt...) + } } if opDurationEnable { diff --git a/vendor/go.opentelemetry.io/otel/exporters/stdout/stdouttrace/internal/version.go b/vendor/go.opentelemetry.io/otel/exporters/stdout/stdouttrace/internal/version.go index c22b38fd5e..ea80d309b7 100644 --- a/vendor/go.opentelemetry.io/otel/exporters/stdout/stdouttrace/internal/version.go +++ b/vendor/go.opentelemetry.io/otel/exporters/stdout/stdouttrace/internal/version.go @@ -1,8 +1,8 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package internal // import "go.opentelemetry.io/otel/exporters/stdout/stdouttrace/internal" +package internal // Version is the current release version of the OpenTelemetry stdouttrace // exporter in use. -const Version = "1.44.0" +const Version = "1.45.0" diff --git a/vendor/go.opentelemetry.io/otel/exporters/stdout/stdouttrace/internal/x/features.go b/vendor/go.opentelemetry.io/otel/exporters/stdout/stdouttrace/internal/x/features.go index 5c638d3b0c..4c9894f0a6 100644 --- a/vendor/go.opentelemetry.io/otel/exporters/stdout/stdouttrace/internal/x/features.go +++ b/vendor/go.opentelemetry.io/otel/exporters/stdout/stdouttrace/internal/x/features.go @@ -2,7 +2,7 @@ // SPDX-License-Identifier: Apache-2.0 // Package x documents experimental features for [go.opentelemetry.io/otel/exporters/stdout/stdouttrace]. -package x // import "go.opentelemetry.io/otel/exporters/stdout/stdouttrace/internal/x" +package x import "strings" diff --git a/vendor/go.opentelemetry.io/otel/exporters/stdout/stdouttrace/internal/x/x.go b/vendor/go.opentelemetry.io/otel/exporters/stdout/stdouttrace/internal/x/x.go index 614242892e..be10386b2a 100644 --- a/vendor/go.opentelemetry.io/otel/exporters/stdout/stdouttrace/internal/x/x.go +++ b/vendor/go.opentelemetry.io/otel/exporters/stdout/stdouttrace/internal/x/x.go @@ -1,11 +1,11 @@ -// Code generated by gotmpl. DO NOT MODIFY. -// source: internal/shared/x/x.go.tmpl - // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 +// DO NOT MODIFY. Generated by gotmpl. +// source: internal/shared/x/x.go.tmpl + // Package x documents experimental features for [go.opentelemetry.io/otel/exporters/stdout/stdouttrace]. -package x // import "go.opentelemetry.io/otel/exporters/stdout/stdouttrace/internal/x" +package x import ( "os" diff --git a/vendor/go.opentelemetry.io/otel/exporters/stdout/stdouttrace/trace.go b/vendor/go.opentelemetry.io/otel/exporters/stdout/stdouttrace/trace.go index 822ed5d7ee..d123b208cc 100644 --- a/vendor/go.opentelemetry.io/otel/exporters/stdout/stdouttrace/trace.go +++ b/vendor/go.opentelemetry.io/otel/exporters/stdout/stdouttrace/trace.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package stdouttrace // import "go.opentelemetry.io/otel/exporters/stdout/stdouttrace" +package stdouttrace import ( "context" diff --git a/vendor/go.opentelemetry.io/otel/sdk/instrumentation/doc.go b/vendor/go.opentelemetry.io/otel/sdk/instrumentation/doc.go index a4faa6a03d..39b34eabea 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/instrumentation/doc.go +++ b/vendor/go.opentelemetry.io/otel/sdk/instrumentation/doc.go @@ -10,4 +10,4 @@ // and // https://github.com/open-telemetry/oteps/blob/d226b677d73a785523fe9b9701be13225ebc528d/text/0201-scope-attributes.md // for more information. -package instrumentation // import "go.opentelemetry.io/otel/sdk/instrumentation" +package instrumentation diff --git a/vendor/go.opentelemetry.io/otel/sdk/instrumentation/library.go b/vendor/go.opentelemetry.io/otel/sdk/instrumentation/library.go index f2cdf3c651..8baf8dbb35 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/instrumentation/library.go +++ b/vendor/go.opentelemetry.io/otel/sdk/instrumentation/library.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package instrumentation // import "go.opentelemetry.io/otel/sdk/instrumentation" +package instrumentation // Library represents the instrumentation library. // diff --git a/vendor/go.opentelemetry.io/otel/sdk/instrumentation/scope.go b/vendor/go.opentelemetry.io/otel/sdk/instrumentation/scope.go index 34852a47b2..1fd06db75b 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/instrumentation/scope.go +++ b/vendor/go.opentelemetry.io/otel/sdk/instrumentation/scope.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package instrumentation // import "go.opentelemetry.io/otel/sdk/instrumentation" +package instrumentation import "go.opentelemetry.io/otel/attribute" diff --git a/vendor/go.opentelemetry.io/otel/sdk/internal/attrnorm/dedup.go b/vendor/go.opentelemetry.io/otel/sdk/internal/attrnorm/dedup.go new file mode 100644 index 0000000000..fe9ddc96db --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/internal/attrnorm/dedup.go @@ -0,0 +1,300 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// DO NOT MODIFY. Generated by gotmpl. +// source: internal/shared/attrnorm/dedup.go.tmpl + +// Package attrnorm normalizes attribute values. +package attrnorm + +import ( + "reflect" + "unsafe" + + "go.opentelemetry.io/otel/attribute" +) + +var ( + keyValueType = reflect.TypeFor[attribute.KeyValue]() + valueType = reflect.TypeFor[attribute.Value]() +) + +// rawValue mirrors attribute.Value. It is used only to read immutable slice +// storage without calling AsMap or AsSlice on no-op paths. +type rawValue struct { + vtype attribute.Type + numeric uint64 + stringly string + slice any +} + +// Value returns value with all map values deduplicated and whether it changed. +// +// Duplicate map keys are resolved using last-value-wins semantics. +func Value(value attribute.Value) (attribute.Value, bool) { + switch value.Type() { + case attribute.SLICE: + return deduplicateSliceValue(value) + case attribute.MAP: + return deduplicateMapValue(value) + default: + return value, false + } +} + +// KeyValue returns kv with all map values deduplicated and whether it changed. +func KeyValue(kv attribute.KeyValue) (attribute.KeyValue, bool) { + value, changed := Value(kv.Value) + if changed { + kv.Value = value + } + return kv, changed +} + +// KeyValues returns kvs with all map values deduplicated and whether they changed. +// +// The returned slice is the original kvs slice if no value needs +// deduplication. Top-level keys in kvs are not deduplicated. +func KeyValues(kvs []attribute.KeyValue) ([]attribute.KeyValue, bool) { + // Preserve the caller's slice on the common no-op path. Once a changed + // value is found, copy the prior values exactly once and fill the rest in + // place as the scan continues. + var normalized []attribute.KeyValue + for i, kv := range kvs { + kv, changed := KeyValue(kv) + if normalized != nil { + normalized[i] = kv + continue + } + if !changed { + continue + } + + normalized = make([]attribute.KeyValue, len(kvs)) + copy(normalized, kvs[:i]) + normalized[i] = kv + } + if normalized == nil { + return kvs, false + } + return normalized, true +} + +// Set returns set with all map values deduplicated and whether it changed. +// +// The returned Set is the original set if no value needs deduplication. +// Top-level key uniqueness remains attribute.Set's responsibility; this only +// normalizes map attribute values. +func Set(set attribute.Set) (attribute.Set, bool) { + if set.Len() == 0 { + return set, false + } + + // Most attribute sets contain no duplicate map keys. Delay allocation until + // the first changed value so the no-op path returns the original Set. + var normalized []attribute.KeyValue + for i := range set.Len() { + kv, _ := set.Get(i) + kv, changed := KeyValue(kv) + if normalized != nil { + normalized = append(normalized, kv) + continue + } + if !changed { + continue + } + + normalized = make([]attribute.KeyValue, 0, set.Len()) + for j := range i { + prior, _ := set.Get(j) + normalized = append(normalized, prior) + } + normalized = append(normalized, kv) + } + if normalized == nil { + return set, false + } + + return attribute.NewSet(normalized...), true +} + +func deduplicateSliceValue(value attribute.Value) (attribute.Value, bool) { + storage := valueStorage(value) + length := valueLen(storage) + + // Slice values can contain map values, so recurse into each element while + // keeping the original attribute.Value when no element changes. + var normalized []attribute.Value + for i := range length { + elem := valueAt(storage, i) + elem, changed := Value(elem) + if normalized != nil { + normalized[i] = elem + continue + } + if !changed { + continue + } + + normalized = make([]attribute.Value, length) + for j := range i { + normalized[j] = valueAt(storage, j) + } + normalized[i] = elem + } + if normalized == nil { + return value, false + } + return attribute.SliceValue(normalized...), true +} + +func deduplicateMapValue(value attribute.Value) (attribute.Value, bool) { + storage := valueStorage(value) + length := keyValueLen(storage) + if length <= 1 { + // A single map entry cannot duplicate its own key, but its value might + // contain a map or slice that needs recursive normalization. + if length == 1 { + kv, changed := KeyValue(keyValueAt(storage, 0)) + if changed { + return attribute.MapValue(kv), true + } + } + return value, false + } + + var normalized []attribute.KeyValue + for i := 0; i < length; { + // attribute.MapValue stores key-values sorted by key using a stable + // sort. Equal keys therefore form a contiguous run, and the last + // element in that run is the last value provided by the caller. + first := keyValueAt(storage, i) + j := i + 1 + for j < length && keyValueAt(storage, j).Key == first.Key { + j++ + } + + kv, nestedChanged := KeyValue(keyValueAt(storage, j-1)) + // j-i > 1 means the current key run contained duplicates. + changed := nestedChanged || j-i > 1 + if normalized != nil { + normalized = append(normalized, kv) + } else if changed { + normalized = make([]attribute.KeyValue, 0, length) + for k := range i { + normalized = append(normalized, keyValueAt(storage, k)) + } + normalized = append(normalized, kv) + } + i = j + } + if normalized == nil { + return value, false + } + return attribute.MapValue(normalized...), true +} + +func valueStorage(value attribute.Value) any { + // attribute.Value does not expose allocation-free map/slice iteration. + // The raw mirror lets us read the immutable backing array directly and + // reserve AsMap/AsSlice-style allocation for paths that actually change. + return (*rawValue)( + unsafe.Pointer(&value), + ).slice //nolint:gosec // Read-only mirror of attribute.Value for allocation-free iteration. +} + +func valueLen(storage any) int { + // attribute.Value stores small slices in fixed-size array values. Handle + // the common sizes directly and fall back to reflection for larger arrays. + switch storage.(type) { + case [0]attribute.Value: + return 0 + case [1]attribute.Value: + return 1 + case [2]attribute.Value: + return 2 + case [3]attribute.Value: + return 3 + case [4]attribute.Value: + return 4 + case [5]attribute.Value: + return 5 + default: + return arrayLen(storage, valueType) + } +} + +func valueAt(storage any, i int) attribute.Value { + switch values := storage.(type) { + case [1]attribute.Value: + return values[i] + case [2]attribute.Value: + return values[i] + case [3]attribute.Value: + return values[i] + case [4]attribute.Value: + return values[i] + case [5]attribute.Value: + return values[i] + default: + return arrayAt[attribute.Value](storage, valueType, i) + } +} + +func keyValueLen(storage any) int { + // attribute.Value stores small maps in fixed-size key-value arrays. Handle + // the common sizes directly and fall back to reflection for larger arrays. + switch storage.(type) { + case [0]attribute.KeyValue: + return 0 + case [1]attribute.KeyValue: + return 1 + case [2]attribute.KeyValue: + return 2 + case [3]attribute.KeyValue: + return 3 + case [4]attribute.KeyValue: + return 4 + case [5]attribute.KeyValue: + return 5 + default: + return arrayLen(storage, keyValueType) + } +} + +func keyValueAt(storage any, i int) attribute.KeyValue { + switch kvs := storage.(type) { + case [1]attribute.KeyValue: + return kvs[i] + case [2]attribute.KeyValue: + return kvs[i] + case [3]attribute.KeyValue: + return kvs[i] + case [4]attribute.KeyValue: + return kvs[i] + case [5]attribute.KeyValue: + return kvs[i] + default: + return arrayAt[attribute.KeyValue](storage, keyValueType, i) + } +} + +func arrayLen(storage any, elem reflect.Type) int { + // Be defensive around invalid or unexpected Value storage. Returning zero + // makes malformed storage a no-op instead of panicking in telemetry paths. + array := reflect.ValueOf(storage) + if array.Kind() != reflect.Array || array.Type().Elem() != elem { + return 0 + } + return array.Len() +} + +func arrayAt[T any](storage any, elem reflect.Type, i int) T { + // Match arrayLen's fail-closed behavior for unexpected storage. + array := reflect.ValueOf(storage) + if array.Kind() != reflect.Array || array.Type().Elem() != elem || i < 0 || i >= array.Len() { + var zero T + return zero + } + return array.Index(i).Interface().(T) +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/internal/attrnorm/truncate.go b/vendor/go.opentelemetry.io/otel/sdk/internal/attrnorm/truncate.go new file mode 100644 index 0000000000..9955e90726 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/internal/attrnorm/truncate.go @@ -0,0 +1,232 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// DO NOT MODIFY. Generated by gotmpl. +// source: internal/shared/attrnorm/truncate.go.tmpl + +package attrnorm + +import ( + "slices" + "strings" + "unicode/utf8" + + "go.opentelemetry.io/otel/attribute" +) + +// Truncate returns a truncated version of attr. Only string, string slice, +// byte slice, slice, and map attribute values are truncated. String values are +// truncated to at most a length of limit. Each string slice value is truncated +// in this fashion (the slice length itself is unaffected), and byte slice +// values are truncated to at most limit bytes. For slice and map attribute +// values, the limit is applied recursively to contained values. +// +// No truncation is performed for a negative limit. +func Truncate(limit int, attr attribute.KeyValue) attribute.KeyValue { + if limit < 0 { + return attr + } + switch attr.Value.Type() { + case attribute.STRING: + v := attr.Value.AsString() + return attr.Key.String(truncate(limit, v)) + case attribute.STRINGSLICE: + v := attr.Value.AsStringSlice() + for i := range v { + v[i] = truncate(limit, v[i]) + } + return attr.Key.StringSlice(v) + case attribute.BYTESLICE: + v := attr.Value.AsString() + if len(v) > limit { + return attr.Key.ByteSlice([]byte(v[:limit])) + } + return attr + case attribute.SLICE: + v := attr.Value.AsSlice() + if !slices.ContainsFunc(v, func(e attribute.Value) bool { return needsTruncation(limit, e) }) { + return attr + } + newV := make([]attribute.Value, len(v)) + for i, elem := range v { + newV[i] = TruncateValue(limit, elem) + } + return attr.Key.Slice(newV...) + case attribute.MAP: + v := attr.Value.AsMap() + if !slices.ContainsFunc(v, func(kv attribute.KeyValue) bool { return needsTruncation(limit, kv.Value) }) { + return attr + } + newV := make([]attribute.KeyValue, len(v)) + for i, elem := range v { + elem.Value = TruncateValue(limit, elem.Value) + newV[i] = elem + } + return attr.Key.Map(newV...) + } + return attr +} + +// TruncateValue returns a truncated version of v. Only string, string +// slice, byte slice, and (recursively) slice and map values are modified. +// +// No truncation is performed for a negative limit. +func TruncateValue(limit int, v attribute.Value) attribute.Value { + if limit < 0 { + return v + } + + switch v.Type() { + case attribute.STRING: + return attribute.StringValue(truncate(limit, v.AsString())) + case attribute.STRINGSLICE: + ss := v.AsStringSlice() + for i := range ss { + ss[i] = truncate(limit, ss[i]) + } + return attribute.StringSliceValue(ss) + case attribute.BYTESLICE: + // len(v.AsString()) is identical to len(v.AsByteSlice()) but + // avoids allocating the full slice before truncation. + s := v.AsString() + if limit >= 0 && len(s) > limit { + return attribute.ByteSliceValue([]byte(s[:limit])) + } + case attribute.SLICE: + sl := v.AsSlice() + if !slices.ContainsFunc(sl, func(e attribute.Value) bool { return needsTruncation(limit, e) }) { + return v + } + newSl := make([]attribute.Value, len(sl)) + for i, elem := range sl { + newSl[i] = TruncateValue(limit, elem) + } + return attribute.SliceValue(newSl...) + case attribute.MAP: + m := v.AsMap() + if !slices.ContainsFunc(m, func(kv attribute.KeyValue) bool { return needsTruncation(limit, kv.Value) }) { + return v + } + newM := make([]attribute.KeyValue, len(m)) + for i, elem := range m { + elem.Value = TruncateValue(limit, elem.Value) + newM[i] = elem + } + return attribute.MapValue(newM...) + } + return v +} + +// stringNeedsTruncation reports whether s would be modified by truncate for the +// given limit. +func stringNeedsTruncation(limit int, s string) bool { + if limit < 0 || len(s) <= limit { + return false + } + return utf8.RuneCountInString(s) > limit || !utf8.ValidString(s) +} + +// needsTruncation reports whether v would be modified by TruncateValue for the +// given limit. +func needsTruncation(limit int, v attribute.Value) bool { + switch v.Type() { + case attribute.STRING: + return stringNeedsTruncation(limit, v.AsString()) + case attribute.BYTESLICE: + // len(v.AsString()) is identical to len(v.AsByteSlice()) but + // avoids memory allocation. + if limit >= 0 && len(v.AsString()) > limit { + return true + } + case attribute.STRINGSLICE: + for _, s := range v.AsStringSlice() { + if stringNeedsTruncation(limit, s) { + return true + } + } + case attribute.SLICE: + return slices.ContainsFunc(v.AsSlice(), func(e attribute.Value) bool { return needsTruncation(limit, e) }) + case attribute.MAP: + return slices.ContainsFunc( + v.AsMap(), + func(kv attribute.KeyValue) bool { return needsTruncation(limit, kv.Value) }, + ) + } + return false +} + +// truncate returns a truncated version of s such that it contains less than +// the limit number of characters. Truncation is applied by returning the limit +// number of valid characters contained in s. +// +// If limit is negative, it returns the original string. +// +// UTF-8 is supported. When truncating, all invalid characters are dropped +// before applying truncation. +// +// If s already contains less than the limit number of bytes, it is returned +// unchanged. No invalid characters are removed. +func truncate(limit int, s string) string { + // This prioritize performance in the following order based on the most + // common expected use-cases. + // + // - Short values less than the default limit (128). + // - Strings with valid encodings that exceed the limit. + // - No limit. + // - Strings with invalid encodings that exceed the limit. + if limit < 0 || len(s) <= limit { + return s + } + + // Optimistically, assume all valid UTF-8. + var b strings.Builder + count := 0 + for i, c := range s { + if c != utf8.RuneError { + count++ + if count > limit { + return s[:i] + } + continue + } + + _, size := utf8.DecodeRuneInString(s[i:]) + if size == 1 { + // Invalid encoding. + b.Grow(len(s) - 1) + _, _ = b.WriteString(s[:i]) + s = s[i:] + break + } + } + + // Fast-path, no invalid input. + if b.Cap() == 0 { + return s + } + + // Truncate while validating UTF-8. + for i := 0; i < len(s) && count < limit; { + c := s[i] + if c < utf8.RuneSelf { + // Optimization for single byte runes (common case). + _ = b.WriteByte(c) + i++ + count++ + continue + } + + _, size := utf8.DecodeRuneInString(s[i:]) + if size == 1 { + // We checked for all 1-byte runes above, this is a RuneError. + i++ + continue + } + + _, _ = b.WriteString(s[i : i+size]) + i += size + count++ + } + + return b.String() +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/internal/x/features.go b/vendor/go.opentelemetry.io/otel/sdk/internal/x/features.go index 694b64a318..13ff34b276 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/internal/x/features.go +++ b/vendor/go.opentelemetry.io/otel/sdk/internal/x/features.go @@ -2,7 +2,7 @@ // SPDX-License-Identifier: Apache-2.0 // Package x documents experimental features for [go.opentelemetry.io/otel/sdk]. -package x // import "go.opentelemetry.io/otel/sdk/internal/x" +package x import "strings" diff --git a/vendor/go.opentelemetry.io/otel/sdk/internal/x/x.go b/vendor/go.opentelemetry.io/otel/sdk/internal/x/x.go index 13347e5605..e829d17948 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/internal/x/x.go +++ b/vendor/go.opentelemetry.io/otel/sdk/internal/x/x.go @@ -1,11 +1,11 @@ -// Code generated by gotmpl. DO NOT MODIFY. -// source: internal/shared/x/x.go.tmpl - // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 +// DO NOT MODIFY. Generated by gotmpl. +// source: internal/shared/x/x.go.tmpl + // Package x documents experimental features for [go.opentelemetry.io/otel/sdk]. -package x // import "go.opentelemetry.io/otel/sdk/internal/x" +package x import ( "os" diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/aggregation.go b/vendor/go.opentelemetry.io/otel/sdk/metric/aggregation.go index e6f5cfb2ad..f52e7ea542 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/metric/aggregation.go +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/aggregation.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package metric // import "go.opentelemetry.io/otel/sdk/metric" +package metric import ( "errors" diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/cache.go b/vendor/go.opentelemetry.io/otel/sdk/metric/cache.go index 63b88f0866..1d6f6a089a 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/metric/cache.go +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/cache.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package metric // import "go.opentelemetry.io/otel/sdk/metric" +package metric import ( "sync" diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/config.go b/vendor/go.opentelemetry.io/otel/sdk/metric/config.go index dda4e086db..444a8cfda9 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/metric/config.go +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/config.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package metric // import "go.opentelemetry.io/otel/sdk/metric" +package metric import ( "context" @@ -157,6 +157,8 @@ func WithView(views ...View) Option { // exemplar reservoir, but the exemplar reservoir makes the final decision of // whether to store an exemplar. // +// The filter must not be nil. +// // By default, the [exemplar.TraceBasedFilter] // is used. Exemplars can be entirely disabled by providing the // [exemplar.AlwaysOffFilter]. diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/doc.go b/vendor/go.opentelemetry.io/otel/sdk/metric/doc.go index 51e168c750..61410b3309 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/metric/doc.go +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/doc.go @@ -86,4 +86,4 @@ // // See [go.opentelemetry.io/otel/sdk/metric/internal/x] for information about // the experimental features. -package metric // import "go.opentelemetry.io/otel/sdk/metric" +package metric diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/env.go b/vendor/go.opentelemetry.io/otel/sdk/metric/env.go index a6c403797f..132664a7e6 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/metric/env.go +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/env.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package metric // import "go.opentelemetry.io/otel/sdk/metric" +package metric import ( "os" diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar.go b/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar.go index 993f001ae9..fb124052c6 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar.go +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package metric // import "go.opentelemetry.io/otel/sdk/metric" +package metric import ( "reflect" diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/doc.go b/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/doc.go index 9f23893768..f7e5476176 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/doc.go +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/doc.go @@ -3,4 +3,4 @@ // Package exemplar provides an implementation of the OpenTelemetry exemplar // reservoir to be used in metric collection pipelines. -package exemplar // import "go.opentelemetry.io/otel/sdk/metric/exemplar" +package exemplar diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/exemplar.go b/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/exemplar.go index 1ab6946786..32913a6e5d 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/exemplar.go +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/exemplar.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package exemplar // import "go.opentelemetry.io/otel/sdk/metric/exemplar" +package exemplar import ( "time" diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/filter.go b/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/filter.go index b50f5c1531..a9efd20d1a 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/filter.go +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/filter.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package exemplar // import "go.opentelemetry.io/otel/sdk/metric/exemplar" +package exemplar import ( "context" diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/fixed_size_reservoir.go b/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/fixed_size_reservoir.go index ce97ab1bf7..48f2b464cb 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/fixed_size_reservoir.go +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/fixed_size_reservoir.go @@ -1,12 +1,10 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package exemplar // import "go.opentelemetry.io/otel/sdk/metric/exemplar" +package exemplar import ( "context" - "math" - "math/rand/v2" "sync" "time" @@ -26,7 +24,12 @@ func FixedSizeReservoirProvider(k int) ReservoirProvider { // sample each one. If there are more than k, the Reservoir will then randomly // sample all additional measurement with a decreasing probability. func NewFixedSizeReservoir(k int) *FixedSizeReservoir { - return newFixedSizeReservoir(newStorage(k)) + r := &FixedSizeReservoir{ + storage: make([]measurement, k), + } + r.nt.k = k + r.nt.reset() + return r } var _ Reservoir = &FixedSizeReservoir{} @@ -37,43 +40,9 @@ var _ Reservoir = &FixedSizeReservoir{} // additional measurement with a decreasing probability. type FixedSizeReservoir struct { reservoir.ConcurrentSafe - *storage - mu sync.Mutex - - // count is the number of measurement seen. - count int64 - // next is the next count that will store a measurement at a random index - // once the reservoir has been filled. - next int64 - // w is the largest random number in a distribution that is used to compute - // the next next. - w float64 -} - -func newFixedSizeReservoir(s *storage) *FixedSizeReservoir { - r := &FixedSizeReservoir{ - storage: s, - } - if cap(r.measurements) > 0 { - r.reset() - } - return r -} - -// randomFloat64 returns, as a float64, a uniform pseudo-random number in the -// open interval (0.0,1.0). -func (*FixedSizeReservoir) randomFloat64() float64 { - // TODO: Use an algorithm that avoids rejection sampling. For example: - // - // const precision = 1 << 53 // 2^53 - // // Generate an integer in [1, 2^53 - 1] - // v := rand.Uint64() % (precision - 1) + 1 - // return float64(v) / float64(precision) - f := rand.Float64() - for f == 0 { - f = rand.Float64() - } - return f + mu sync.Mutex + storage []measurement + nt nextTracker } // Offer accepts the parameters associated with a measurement. The @@ -88,128 +57,39 @@ func (*FixedSizeReservoir) randomFloat64() float64 { // parameters are the value and dropped (filtered) attributes of the // measurement respectively. func (r *FixedSizeReservoir) Offer(ctx context.Context, t time.Time, n Value, a []attribute.KeyValue) { - if cap(r.measurements) == 0 { + if len(r.storage) == 0 { return } - // The following algorithm is "Algorithm L" from Li, Kim-Hung (4 December - // 1994). "Reservoir-Sampling Algorithms of Time Complexity - // O(n(1+log(N/n)))". ACM Transactions on Mathematical Software. 20 (4): - // 481–493 (https://dl.acm.org/doi/10.1145/198429.198435). - // - // A high-level overview of "Algorithm L": - // 0) Pre-calculate the random count greater than the storage size when - // an exemplar will be replaced. - // 1) Accept all measurements offered until the configured storage size is - // reached. - // 2) Loop: - // a) When the pre-calculate count is reached, replace a random - // existing exemplar with the offered measurement. - // b) Calculate the next random count greater than the existing one - // which will replace another exemplars - // - // The way a "replacement" count is computed is by looking at `n` number of - // independent random numbers each corresponding to an offered measurement. - // Of these numbers the smallest `k` (the same size as the storage - // capacity) of them are kept as a subset. The maximum value in this - // subset, called `w` is used to weight another random number generation - // for the next count that will be considered. - // - // By weighting the next count computation like described, it is able to - // perform a uniformly-weighted sampling algorithm based on the number of - // samples the reservoir has seen so far. The sampling will "slow down" as - // more and more samples are offered so as to reduce a bias towards those - // offered just prior to the end of the collection. - // - // This algorithm is preferred because of its balance of simplicity and - // performance. It will compute three random numbers (the bulk of - // computation time) for each item that becomes part of the reservoir, but - // it does not spend any time on items that do not. In particular it has an - // asymptotic runtime of O(k(1 + log(n/k)) where n is the number of - // measurements offered and k is the reservoir size. - // - // See https://en.wikipedia.org/wiki/Reservoir_sampling for an overview of - // this and other reservoir sampling algorithms. See - // https://github.com/MrAlias/reservoir-sampling for a performance - // comparison of reservoir sampling algorithms. - r.mu.Lock() defer r.mu.Unlock() - if int(r.count) < cap(r.measurements) { - r.store(ctx, int(r.count), t, n, a) - } else if r.count == r.next { - // Overwrite a random existing measurement with the one offered. - idx := int(rand.Int64N(int64(cap(r.measurements)))) - r.store(ctx, idx, t, n, a) - r.advance() + sampled, idx := r.nt.shouldSample() + if sampled { + r.storage[idx].store(ctx, t, n, a) } - r.count++ -} - -// reset resets r to the initial state. -func (r *FixedSizeReservoir) reset() { - // This resets the number of exemplars known. - r.count = 0 - // Random index inserts should only happen after the storage is full. - r.next = int64(cap(r.measurements)) - - // Initial random number in the series used to generate r.next. - // - // This is set before r.advance to reset or initialize the random number - // series. Without doing so it would always be 0 or never restart a new - // random number series. - // - // This maps the uniform random number in (0,1) to a geometric distribution - // over the same interval. The mean of the distribution is inversely - // proportional to the storage capacity. - r.w = math.Exp(math.Log(r.randomFloat64()) / float64(cap(r.measurements))) - - r.advance() -} - -// advance updates the count at which the offered measurement will overwrite an -// existing exemplar. -func (r *FixedSizeReservoir) advance() { - // Calculate the next value in the random number series. - // - // The current value of r.w is based on the max of a distribution of random - // numbers (i.e. `w = max(u_1,u_2,...,u_k)` for `k` equal to the capacity - // of the storage and each `u` in the interval (0,w)). To calculate the - // next r.w we use the fact that when the next exemplar is selected to be - // included in the storage an existing one will be dropped, and the - // corresponding random number in the set used to calculate r.w will also - // be replaced. The replacement random number will also be within (0,w), - // therefore the next r.w will be based on the same distribution (i.e. - // `max(u_1,u_2,...,u_k)`). Therefore, we can sample the next r.w by - // computing the next random number `u` and take r.w as `w * u^(1/k)`. - r.w *= math.Exp(math.Log(r.randomFloat64()) / float64(cap(r.measurements))) - // Use the new random number in the series to calculate the count of the - // next measurement that will be stored. - // - // Given 0 < r.w < 1, each iteration will result in subsequent r.w being - // smaller. This translates here into the next next being selected against - // a distribution with a higher mean (i.e. the expected value will increase - // and replacements become less likely) - // - // Important to note, the new r.next will always be at least 1 more than - // the last r.next. - r.next += int64(math.Log(r.randomFloat64())/math.Log(1-r.w)) + 1 } // Collect returns all the held exemplars. // -// The Reservoir state is preserved after this call. +// The stored exemplars are preserved after this call, but the sampling state is reset. func (r *FixedSizeReservoir) Collect(dest *[]Exemplar) { - if cap(r.measurements) == 0 { + if len(r.storage) == 0 { *dest = (*dest)[:0] return } r.mu.Lock() defer r.mu.Unlock() - r.storage.Collect(dest) + *dest = reset(*dest, len(r.storage), len(r.storage)) + var n int + for i := range r.storage { + if r.storage[i].exemplar(&(*dest)[n]) { + n++ + } + } + *dest = (*dest)[:n] // Call reset here even though it will reset r.count and restart the random // number series. This will persist any old exemplars as long as no new // measurements are offered, but it will also prioritize those new // measurements that are made over the older collection cycle ones. - r.reset() + r.nt.reset() } diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/histogram_reservoir.go b/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/histogram_reservoir.go index dacac3ebae..e1001e4dc7 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/histogram_reservoir.go +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/histogram_reservoir.go @@ -1,12 +1,13 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package exemplar // import "go.opentelemetry.io/otel/sdk/metric/exemplar" +package exemplar import ( "context" "slices" "sort" + "sync" "time" "go.opentelemetry.io/otel/attribute" @@ -22,29 +23,39 @@ func HistogramReservoirProvider(bounds []float64) ReservoirProvider { } } -// NewHistogramReservoir returns a [HistogramReservoir] that samples the last -// measurement that falls within a histogram bucket. The histogram bucket -// upper-boundaries are define by bounds. +type bucket struct { + mu sync.Mutex + nt nextTracker + measurement +} + +// NewHistogramReservoir returns a [HistogramReservoir] that samples +// measurements that fall within a histogram bucket using Algorithm L. The +// histogram bucket upper-boundaries are defined by bounds. // // The passed bounds must be sorted before calling this function. func NewHistogramReservoir(bounds []float64) *HistogramReservoir { + buckets := make([]bucket, len(bounds)+1) + for i := range buckets { + buckets[i].nt.k = 1 + buckets[i].nt.reset() + } return &HistogramReservoir{ bounds: bounds, - storage: newStorage(len(bounds) + 1), + buckets: buckets, } } var _ Reservoir = &HistogramReservoir{} -// HistogramReservoir is a [Reservoir] that samples the last measurement that -// falls within a histogram bucket. The histogram bucket upper-boundaries are -// define by bounds. +// HistogramReservoir is a [Reservoir] that samples +// measurements that fall within a histogram bucket using Algorithm L. The +// histogram bucket upper-boundaries are defined by bounds. type HistogramReservoir struct { reservoir.ConcurrentSafe - *storage - // bounds are bucket bounds in ascending order. - bounds []float64 + bounds []float64 + buckets []bucket } // Offer accepts the parameters associated with a measurement. The @@ -69,14 +80,31 @@ func (r *HistogramReservoir) Offer(ctx context.Context, t time.Time, v Value, a panic("unknown value type") } - idx := sort.SearchFloat64s(r.bounds, n) + b := &r.buckets[sort.SearchFloat64s(r.bounds, n)] - r.store(ctx, idx, t, v, a) + b.mu.Lock() + defer b.mu.Unlock() + + sampled, _ := b.nt.shouldSample() + if sampled { + b.store(ctx, t, v, a) + } } // Collect returns all the held exemplars. // -// The Reservoir state is preserved after this call. +// The stored exemplars are preserved after this call, but the sampling state is reset. func (r *HistogramReservoir) Collect(dest *[]Exemplar) { - r.storage.Collect(dest) + *dest = reset(*dest, len(r.buckets), len(r.buckets)) + var n int + for i := range r.buckets { + b := &r.buckets[i] + b.mu.Lock() + if b.exemplar(&(*dest)[n]) { + n++ + } + b.nt.reset() + b.mu.Unlock() + } + *dest = (*dest)[:n] } diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/next_tracker.go b/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/next_tracker.go new file mode 100644 index 0000000000..da5eb241c8 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/next_tracker.go @@ -0,0 +1,154 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package exemplar + +import ( + "math" + "math/rand/v2" +) + +// nextTracker tracks the next measurement that should be sampled using Algorithm L. +type nextTracker struct { + // count is the number of measurements seen. + count int64 + // next is the next count that will store a measurement at a random index + // once the reservoir has been filled. + next int64 + // w is the largest random number in a distribution that is used to compute + // the next next. + w float64 + // k is the size of the reservoir. + k int +} + +// reset resets the tracker to the initial state for a reservoir of size k. +func (t *nextTracker) reset() { + t.count = 0 + if t.k <= 0 { + return + } + // Random index inserts should only happen after the storage is full. + // -1 accounts for the fact that advance() will unconditionally add 1 to + // t.next below. + t.next = int64(t.k) - 1 + + // Initial random number in the series used to generate t.next. + // + // This is set before t.advance to reset or initialize the random number + // series. Without doing so it would always be 0 or never restart a new + // random number series. + // + // This maps the uniform random number in (0,1) to a geometric distribution + // over the same interval. The mean of the distribution is inversely + // proportional to the storage capacity. + t.w = math.Exp(math.Log(randomFloat64()) / float64(t.k)) + t.advance() +} + +// advance updates the count at which the offered measurement will overwrite an +// existing exemplar. +func (t *nextTracker) advance() { + // Use the current random number in the series to calculate the count of the + // next measurement that will be stored. + // + // Given 0 < t.w < 1, each iteration will result in subsequent t.w being + // smaller. This translates here into the next next being selected against + // a distribution with a higher mean (i.e. the expected value will increase + // and replacements become less likely) + // + // Important to note, the new t.next will always be at least 1 more than + // the last t.next. + t.next += int64(math.Log(randomFloat64())/math.Log(1-t.w)) + 1 + + // Calculate the next value in the random number series. + // + // The current value of t.w is based on the max of a distribution of random + // numbers (i.e. `w = max(u_1,u_2,...,u_k)` for `k` equal to the capacity + // of the storage and each `u` in the interval (0,w)). To calculate the + // next t.w we use the fact that when the next exemplar is selected to be + // included in the storage an existing one will be dropped, and the + // corresponding random number in the set used to calculate t.w will also + // be replaced. The replacement random number will also be within (0,w), + // therefore the next t.w will be based on the same distribution (i.e. + // `max(u_1,u_2,...,u_k)`). Therefore, we can sample the next t.w by + // computing the next random number `u` and take t.w as `w * u^(1/k)`. + t.w *= math.Exp(math.Log(randomFloat64()) / float64(t.k)) +} + +// shouldSample returns true if the measurement should be sampled. +// It also returns the index at which the measurement should be stored. +// +// The following algorithm is "Algorithm L" from Li, Kim-Hung (4 December +// 1994). "Reservoir-Sampling Algorithms of Time Complexity +// O(n(1+log(N/n)))". ACM Transactions on Mathematical Software. 20 (4): +// 481–493 (https://dl.acm.org/doi/10.1145/198429.198435). +// +// A high-level overview of "Algorithm L": +// 0. Pre-calculate the random count greater than the storage size when +// an exemplar will be replaced. +// 1. Accept all measurements offered until the configured storage size is +// reached. +// 2. Loop: +// a) When the pre-calculate count is reached, replace a random +// existing exemplar with the offered measurement. +// b) Calculate the next random count greater than the existing one +// which will replace another exemplars +// +// The way a "replacement" count is computed is by looking at `n` number of +// independent random numbers each corresponding to an offered measurement. +// Of these numbers the smallest `k` (the same size as the storage +// capacity) of them are kept as a subset. The maximum value in this +// subset, called `w` is used to weight another random number generation +// for the next count that will be considered. +// +// By weighting the next count computation like described, it is able to +// perform a uniformly-weighted sampling algorithm based on the number of +// samples the reservoir has seen so far. The sampling will "slow down" as +// more and more samples are offered so as to reduce a bias towards those +// offered just prior to the end of the collection. +// +// This algorithm is preferred because of its balance of simplicity and +// performance. It will compute three random numbers (the bulk of +// computation time) for each item that becomes part of the reservoir, but +// it does not spend any time on items that do not. In particular it has an +// asymptotic runtime of O(k(1 + log(n/k))) where n is the number of +// measurements offered and k is the reservoir size. +// +// See https://en.wikipedia.org/wiki/Reservoir_sampling for an overview of +// this and other reservoir sampling algorithms. See +// https://github.com/MrAlias/reservoir-sampling for a performance +// comparison of reservoir sampling algorithms. +func (t *nextTracker) shouldSample() (bool, int) { + if t.k <= 0 { + return false, 0 + } + if t.count < int64(t.k) { + idx := int(t.count) + t.count++ + return true, idx + } + if t.count == t.next { + idx := 0 + if t.k > 1 { + idx = int(rand.Int64N(int64(t.k))) + } + t.advance() + t.count++ + return true, idx + } + t.count++ + return false, 0 +} + +// randomFloat64 returns a pseudo-random value uniformly selected from +// {k / 2^53 | 1 <= k < 2^53}. +func randomFloat64() float64 { + // rand.Float64 returns a value in [0, 1). Retry in the extremely + // unlikely event that it returns zero to produce a value in (0, 1). + f := rand.Float64() + for f == 0 { + f = rand.Float64() + } + return f +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/reservoir.go b/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/reservoir.go index ba5cd1a6b3..a6cfdf44f9 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/reservoir.go +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/reservoir.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package exemplar // import "go.opentelemetry.io/otel/sdk/metric/exemplar" +package exemplar import ( "context" diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/storage.go b/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/storage.go index 790496027d..9a0be05a24 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/storage.go +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/storage.go @@ -1,74 +1,41 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package exemplar // import "go.opentelemetry.io/otel/sdk/metric/exemplar" +package exemplar import ( "context" - "sync" "time" "go.opentelemetry.io/otel/attribute" "go.opentelemetry.io/otel/trace" ) -// storage is an exemplar storage for [Reservoir] implementations. -type storage struct { - // measurements are the measurements sampled. - // - // This does not use []metricdata.Exemplar because it potentially would - // require an allocation for trace and span IDs in the hot path of Offer. - measurements []measurement -} - -func newStorage(n int) *storage { - return &storage{measurements: make([]measurement, n)} -} - -func (r *storage) store(ctx context.Context, idx int, ts time.Time, v Value, droppedAttr []attribute.KeyValue) { - r.measurements[idx].mux.Lock() - defer r.measurements[idx].mux.Unlock() - r.measurements[idx].FilteredAttributes = droppedAttr - r.measurements[idx].Time = ts - r.measurements[idx].Value = v - r.measurements[idx].Ctx = ctx - r.measurements[idx].valid = true -} - -// Collect returns all the held exemplars. -// -// The Reservoir state is preserved after this call. -func (r *storage) Collect(dest *[]Exemplar) { - *dest = reset(*dest, len(r.measurements), len(r.measurements)) - var n int - for i := range r.measurements { - if r.measurements[i].exemplar(&(*dest)[n]) { - n++ - } - } - *dest = (*dest)[:n] -} - // measurement is a measurement made by a telemetry system. type measurement struct { - mux sync.Mutex // FilteredAttributes are the attributes dropped during the measurement. FilteredAttributes []attribute.KeyValue // Time is the time when the measurement was made. Time time.Time // Value is the value of the measurement. Value Value - // Ctx is the context active when a measurement was made. - Ctx context.Context + // SpanContext is the SpanContext active when a measurement was made. + SpanContext trace.SpanContext valid bool } +func (m *measurement) store(ctx context.Context, ts time.Time, v Value, droppedAttr []attribute.KeyValue) { + m.FilteredAttributes = droppedAttr + m.Time = ts + m.Value = v + m.SpanContext = trace.SpanContextFromContext(ctx) + m.valid = true +} + // exemplar returns m as an [Exemplar]. // returns true if it populated the exemplar. func (m *measurement) exemplar(dest *Exemplar) bool { - m.mux.Lock() - defer m.mux.Unlock() if !m.valid { return false } @@ -77,7 +44,7 @@ func (m *measurement) exemplar(dest *Exemplar) bool { dest.Time = m.Time dest.Value = m.Value - sc := trace.SpanContextFromContext(m.Ctx) + sc := m.SpanContext if sc.HasTraceID() { traceID := sc.TraceID() dest.TraceID = traceID[:] diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/value.go b/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/value.go index 590b089a80..c7d1645b6e 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/value.go +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/value.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package exemplar // import "go.opentelemetry.io/otel/sdk/metric/exemplar" +package exemplar import "math" diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/exporter.go b/vendor/go.opentelemetry.io/otel/sdk/metric/exporter.go index 1969cb42cf..7bec415296 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/metric/exporter.go +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/exporter.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package metric // import "go.opentelemetry.io/otel/sdk/metric" +package metric import ( "context" diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/instrument.go b/vendor/go.opentelemetry.io/otel/sdk/metric/instrument.go index dfb4964d9f..31f7afef90 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/metric/instrument.go +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/instrument.go @@ -3,7 +3,7 @@ //go:generate stringer -type=InstrumentKind -trimprefix=InstrumentKind -package metric // import "go.opentelemetry.io/otel/sdk/metric" +package metric import ( "context" @@ -16,6 +16,7 @@ import ( "go.opentelemetry.io/otel/metric/embedded" "go.opentelemetry.io/otel/sdk/instrumentation" "go.opentelemetry.io/otel/sdk/metric/internal/aggregate" + "go.opentelemetry.io/otel/sdk/metric/internal/attrnorm" ) var zeroScope instrumentation.Scope @@ -180,6 +181,46 @@ func (i instID) normalize() instID { return i } +type rawAttributesOption interface { + RawAttributes() []attribute.KeyValue + Experimental() +} + +func extractRawKVs[T any](opts []T) []attribute.KeyValue { + var rawKVs []attribute.KeyValue + var count int + for _, opt := range opts { + if r, ok := any(opt).(rawAttributesOption); ok { + count++ + if count == 1 { + rawKVs = r.RawAttributes() + } else { + if count == 2 { + // Create a new slice to avoid modifying the original slice from the first option. + rawKVs = append([]attribute.KeyValue(nil), rawKVs...) + } + rawKVs = append(rawKVs, r.RawAttributes()...) + } + } + } + return rawKVs +} + +func resolveAttributes(configAttrs attribute.Set, rawKVs []attribute.KeyValue) attribute.Set { + configAttrs, _ = attrnorm.Set(configAttrs) + if len(rawKVs) == 0 { + return configAttrs + } + rawKVs, _ = attrnorm.KeyValues(rawKVs) + merged := make([]attribute.KeyValue, 0, configAttrs.Len()+len(rawKVs)) + merged = append(merged, configAttrs.ToSlice()...) + // rawKVs are appended after configAttrs, meaning they will override any duplicate keys in configAttrs. + // This behavior is documented in WithUnsafeAttributes. + merged = append(merged, rawKVs...) + // TODO(#7743): Defer computing the full attribute.NewSet. + return attribute.NewSet(merged...) +} + type int64Inst struct { measures []aggregate.Measure[int64] @@ -198,12 +239,14 @@ var ( func (i *int64Inst) Add(ctx context.Context, val int64, opts ...metric.AddOption) { c := metric.NewAddConfig(opts) - i.aggregate(ctx, val, c.Attributes()) + rawKVs := extractRawKVs(opts) + i.aggregate(ctx, val, resolveAttributes(c.Attributes(), rawKVs)) } func (i *int64Inst) Record(ctx context.Context, val int64, opts ...metric.RecordOption) { c := metric.NewRecordConfig(opts) - i.aggregate(ctx, val, c.Attributes()) + rawKVs := extractRawKVs(opts) + i.aggregate(ctx, val, resolveAttributes(c.Attributes(), rawKVs)) } func (i *int64Inst) Enabled(context.Context) bool { @@ -238,12 +281,14 @@ var ( func (i *float64Inst) Add(ctx context.Context, val float64, opts ...metric.AddOption) { c := metric.NewAddConfig(opts) - i.aggregate(ctx, val, c.Attributes()) + rawKVs := extractRawKVs(opts) + i.aggregate(ctx, val, resolveAttributes(c.Attributes(), rawKVs)) } func (i *float64Inst) Record(ctx context.Context, val float64, opts ...metric.RecordOption) { c := metric.NewRecordConfig(opts) - i.aggregate(ctx, val, c.Attributes()) + rawKVs := extractRawKVs(opts) + i.aggregate(ctx, val, resolveAttributes(c.Attributes(), rawKVs)) } func (i *float64Inst) Enabled(context.Context) bool { diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/aggregate.go b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/aggregate.go index a35f3bcc1b..696fc21cab 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/aggregate.go +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/aggregate.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package aggregate // import "go.opentelemetry.io/otel/sdk/metric/internal/aggregate" +package aggregate import ( "context" diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/atomic.go b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/atomic.go index eb69e96507..675c23fc3c 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/atomic.go +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/atomic.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package aggregate // import "go.opentelemetry.io/otel/sdk/metric/internal/aggregate" +package aggregate import ( "math" @@ -221,23 +221,23 @@ func (l *hotColdWaitGroup) swapHotAndWait() uint64 { // limitedSyncMap is a sync.Map which enforces the aggregation limit on // attribute sets and provides a Len() function. -type limitedSyncMap struct { +type limitedSyncMap[V any] struct { sync.Map aggLimit int len int lenMux sync.Mutex } -func (m *limitedSyncMap) LoadOrStoreAttr(fltrAttr attribute.Set, newValue func(attribute.Set) any) any { +func (m *limitedSyncMap[V]) LoadOrStoreAttr(fltrAttr attribute.Set, newValue func(attribute.Set) V) V { actual, loaded := m.Load(fltrAttr.Equivalent()) if loaded { - return actual + return actual.(V) } // If the overflow set exists, assume we have already overflowed and don't // bother with the slow path below. actual, loaded = m.Load(overflowSet.Equivalent()) if loaded { - return actual + return actual.(V) } // Slow path: add a new attribute set. m.lenMux.Lock() @@ -248,7 +248,7 @@ func (m *limitedSyncMap) LoadOrStoreAttr(fltrAttr attribute.Set, newValue func(a // concurrently. actual, loaded = m.Load(fltrAttr.Equivalent()) if loaded { - return actual + return actual.(V) } if m.aggLimit > 0 && m.len >= m.aggLimit-1 { @@ -258,17 +258,17 @@ func (m *limitedSyncMap) LoadOrStoreAttr(fltrAttr attribute.Set, newValue func(a if !loaded { m.len++ } - return actual + return actual.(V) } -func (m *limitedSyncMap) Clear() { +func (m *limitedSyncMap[V]) Clear() { m.lenMux.Lock() defer m.lenMux.Unlock() m.len = 0 m.Map.Clear() } -func (m *limitedSyncMap) Len() int { +func (m *limitedSyncMap[V]) Len() int { m.lenMux.Lock() defer m.lenMux.Unlock() return m.len diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/doc.go b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/doc.go index 7b7225e6ef..c0399c4087 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/doc.go +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/doc.go @@ -4,4 +4,4 @@ // Package aggregate provides aggregate types used compute aggregations and // cycle the state of metric measurements made by the SDK. These types and // functionality are meant only for internal SDK use. -package aggregate // import "go.opentelemetry.io/otel/sdk/metric/internal/aggregate" +package aggregate diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/drop.go b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/drop.go index 7adfcaf853..47ec26dba9 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/drop.go +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/drop.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package aggregate // import "go.opentelemetry.io/otel/sdk/metric/internal/aggregate" +package aggregate import ( "context" diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/exemplar.go b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/exemplar.go index 25d709948e..45b6204192 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/exemplar.go +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/exemplar.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package aggregate // import "go.opentelemetry.io/otel/sdk/metric/internal/aggregate" +package aggregate import ( "sync" diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/exponential_histogram.go b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/exponential_histogram.go index 767b1d6dc7..77c20a315c 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/exponential_histogram.go +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/exponential_histogram.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package aggregate // import "go.opentelemetry.io/otel/sdk/metric/internal/aggregate" +package aggregate import ( "context" @@ -412,12 +412,15 @@ func (e *expoHistogram[N]) delta( if !e.noSum { hDPts[i].Sum = val.sum.load() + } else { + hDPts[i].Sum = 0 } - if !e.noMinMax { - if val.minMax.set.Load() { - hDPts[i].Min = metricdata.NewExtrema(val.minMax.minimum.Load()) - hDPts[i].Max = metricdata.NewExtrema(val.minMax.maximum.Load()) - } + if !e.noMinMax && val.minMax.set.Load() { + hDPts[i].Min = metricdata.NewExtrema(val.minMax.minimum.Load()) + hDPts[i].Max = metricdata.NewExtrema(val.minMax.maximum.Load()) + } else { + hDPts[i].Min = metricdata.Extrema[N]{} + hDPts[i].Max = metricdata.Extrema[N]{} } collectExemplars(&hDPts[i].Exemplars, val.res.Collect) @@ -488,12 +491,15 @@ func (e *expoHistogram[N]) cumulative( if !e.noSum { hDPts[i].Sum = val.sum.load() + } else { + hDPts[i].Sum = 0 } - if !e.noMinMax { - if val.minMax.set.Load() { - hDPts[i].Min = metricdata.NewExtrema(val.minMax.minimum.Load()) - hDPts[i].Max = metricdata.NewExtrema(val.minMax.maximum.Load()) - } + if !e.noMinMax && val.minMax.set.Load() { + hDPts[i].Min = metricdata.NewExtrema(val.minMax.minimum.Load()) + hDPts[i].Max = metricdata.NewExtrema(val.minMax.maximum.Load()) + } else { + hDPts[i].Min = metricdata.Extrema[N]{} + hDPts[i].Max = metricdata.Extrema[N]{} } collectExemplars(&hDPts[i].Exemplars, val.res.Collect) diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/filtered_reservoir.go b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/filtered_reservoir.go index e4f9409bc8..9aac90f035 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/filtered_reservoir.go +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/filtered_reservoir.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package aggregate // import "go.opentelemetry.io/otel/sdk/metric/internal/aggregate" +package aggregate import ( "context" diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/histogram.go b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/histogram.go index 50c82ff32f..17807e11e4 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/histogram.go +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/histogram.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package aggregate // import "go.opentelemetry.io/otel/sdk/metric/internal/aggregate" +package aggregate import ( "context" @@ -44,8 +44,6 @@ type histogramPointCounters[N int64 | float64] struct { } func (b *histogramPointCounters[N]) loadCountsInto(into *[]uint64) uint64 { - // TODO (#3047): Making copies for counts incurs a large - // memory allocation footprint. Alternatives should be explored. counts := reset(*into, len(b.counts), len(b.counts)) count := uint64(0) for i := range b.counts { @@ -97,7 +95,7 @@ func (b *histogramPointCounters[N]) mergeIntoAndReset( // nolint:revive // Inten // unused attribute sets do not report in subsequent collect() calls. type deltaHistogram[N int64 | float64] struct { hcwg hotColdWaitGroup - hotColdValMap [2]limitedSyncMap + hotColdValMap [2]limitedSyncMap[*histogramPoint[N]] start time.Time noMinMax bool @@ -114,7 +112,7 @@ func (s *deltaHistogram[N]) measure( ) { hotIdx := s.hcwg.start() defer s.hcwg.done(hotIdx) - h := s.hotColdValMap[hotIdx].LoadOrStoreAttr(fltrAttr, func(attr attribute.Set) any { + h := s.hotColdValMap[hotIdx].LoadOrStoreAttr(fltrAttr, func(attr attribute.Set) *histogramPoint[N] { r := s.newRes(attr) _, isDrop := r.(*dropRes[N]) hPt := &histogramPoint[N]{ @@ -131,7 +129,7 @@ func (s *deltaHistogram[N]) measure( histogramPointCounters: histogramPointCounters[N]{counts: make([]atomic.Uint64, len(s.bounds)+1)}, } return hPt - }).(*histogramPoint[N]) + }) // This search will return an index in the range [0, len(s.bounds)], where // it will return len(s.bounds) if value is greater than the last element @@ -171,7 +169,7 @@ func newDeltaHistogram[N int64 | float64]( noSum: noSum, bounds: b, newRes: r, - hotColdValMap: [2]limitedSyncMap{ + hotColdValMap: [2]limitedSyncMap[*histogramPoint[N]]{ {aggLimit: limit}, {aggLimit: limit}, }, @@ -212,13 +210,16 @@ func (s *deltaHistogram[N]) collect( if !s.noSum { hDPts[i].Sum = val.total.load() + } else { + hDPts[i].Sum = 0 } - if !s.noMinMax { - if val.minMax.set.Load() { - hDPts[i].Min = metricdata.NewExtrema(val.minMax.minimum.Load()) - hDPts[i].Max = metricdata.NewExtrema(val.minMax.maximum.Load()) - } + if !s.noMinMax && val.minMax.set.Load() { + hDPts[i].Min = metricdata.NewExtrema(val.minMax.minimum.Load()) + hDPts[i].Max = metricdata.NewExtrema(val.minMax.maximum.Load()) + } else { + hDPts[i].Min = metricdata.Extrema[N]{} + hDPts[i].Max = metricdata.Extrema[N]{} } collectExemplars(&hDPts[i].Exemplars, val.res.Collect) @@ -249,7 +250,7 @@ func (s *deltaHistogram[N]) collect( // to reading. Unlike deltaHistogram, this maintains a single map so that the // preserved attribute sets do not change when collect() is called. type cumulativeHistogram[N int64 | float64] struct { - values limitedSyncMap + values limitedSyncMap[*hotColdHistogramPoint[N]] start time.Time noMinMax bool @@ -278,7 +279,7 @@ func newCumulativeHistogram[N int64 | float64]( noSum: noSum, bounds: b, newRes: r, - values: limitedSyncMap{aggLimit: limit}, + values: limitedSyncMap[*hotColdHistogramPoint[N]]{aggLimit: limit}, } } @@ -288,7 +289,7 @@ func (s *cumulativeHistogram[N]) measure( fltrAttr attribute.Set, droppedAttr []attribute.KeyValue, ) { - h := s.values.LoadOrStoreAttr(fltrAttr, func(attr attribute.Set) any { + h := s.values.LoadOrStoreAttr(fltrAttr, func(attr attribute.Set) *hotColdHistogramPoint[N] { r := s.newRes(attr) _, isDrop := r.(*dropRes[N]) hPt := &hotColdHistogramPoint[N]{ @@ -313,7 +314,7 @@ func (s *cumulativeHistogram[N]) measure( }, } return hPt - }).(*hotColdHistogramPoint[N]) + }) // This search will return an index in the range [0, len(s.bounds)], where // it will return len(s.bounds) if value is greater than the last element @@ -350,9 +351,16 @@ func (s *cumulativeHistogram[N]) collect( // Do not allow modification of our copy of bounds. bounds := slices.Clone(s.bounds) - // Values are being concurrently written while we iterate, so only use the - // current length for capacity. - hDPts := reset(h.DataPoints, 0, s.values.Len()) + // Pre-size hDPts so per-series destination slots are addressable by index. + // This lets loadCountsInto and collectExemplars reuse each slot's existing + // BucketCounts/Exemplars slices from the previous cycle. s.values is + // append-only here during cumulative collect, and limitedSyncMap only + // increments its len after a successful underlying LoadOrStore, so Range + // will visit at least n entries. Concurrent measurers may add more between + // Len() and Range; those extra slots are appended on demand inside the + // loop. + n := s.values.Len() + hDPts := reset(h.DataPoints, n, n) perSeriesStartTimeEnabled := x.PerSeriesStartTimestamps.Enabled() @@ -366,35 +374,41 @@ func (s *cumulativeHistogram[N]) collect( } // swap, observe, and clear the point readIdx := val.hcwg.swapHotAndWait() - var bucketCounts []uint64 - count := val.hotColdPoint[readIdx].loadCountsInto(&bucketCounts) - newPt := metricdata.HistogramDataPoint[N]{ - Attributes: val.attrs, - StartTime: startTime, - Time: t, - Count: count, - Bounds: bounds, - // The HistogramDataPoint field values returned need to be copies of - // the histogramPoint value as we will keep updating them. - BucketCounts: bucketCounts, - } + // Concurrent writers can grow s.values between Len() and Range. + // Cold-path grow. + if i >= len(hDPts) { + hDPts = append(hDPts, metricdata.HistogramDataPoint[N]{}) + } + dp := &hDPts[i] + + count := val.hotColdPoint[readIdx].loadCountsInto(&dp.BucketCounts) + dp.Attributes = val.attrs + dp.StartTime = startTime + dp.Time = t + dp.Count = count + dp.Bounds = bounds if !s.noSum { - newPt.Sum = val.hotColdPoint[readIdx].total.load() + dp.Sum = val.hotColdPoint[readIdx].total.load() + } else { + // Slot may be reused; clear stale Sum from previous series. + var zero N + dp.Sum = zero } - if !s.noMinMax { - if val.hotColdPoint[readIdx].minMax.set.Load() { - newPt.Min = metricdata.NewExtrema(val.hotColdPoint[readIdx].minMax.minimum.Load()) - newPt.Max = metricdata.NewExtrema(val.hotColdPoint[readIdx].minMax.maximum.Load()) - } + if !s.noMinMax && val.hotColdPoint[readIdx].minMax.set.Load() { + dp.Min = metricdata.NewExtrema(val.hotColdPoint[readIdx].minMax.minimum.Load()) + dp.Max = metricdata.NewExtrema(val.hotColdPoint[readIdx].minMax.maximum.Load()) + } else { + // Slot may be reused; clear stale Min/Max from previous series. + dp.Min = metricdata.Extrema[N]{} + dp.Max = metricdata.Extrema[N]{} } // Once we've read the point, merge it back into the hot histogram // point since it is cumulative. hotIdx := (readIdx + 1) % 2 val.hotColdPoint[readIdx].mergeIntoAndReset(&val.hotColdPoint[hotIdx], s.noMinMax, s.noSum) - collectExemplars(&newPt.Exemplars, val.res.Collect) - hDPts = append(hDPts, newPt) + collectExemplars(&dp.Exemplars, val.res.Collect) i++ // TODO (#3006): This will use an unbounded amount of memory if there diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/lastvalue.go b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/lastvalue.go index 2af252ec5d..0fddc9dcc9 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/lastvalue.go +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/lastvalue.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package aggregate // import "go.opentelemetry.io/otel/sdk/metric/internal/aggregate" +package aggregate import ( "context" @@ -24,7 +24,7 @@ type lastValuePoint[N int64 | float64] struct { // lastValueMap summarizes a set of measurements as the last one made. type lastValueMap[N int64 | float64] struct { newRes func(attribute.Set) FilteredExemplarReservoir[N] - values limitedSyncMap + values limitedSyncMap[*lastValuePoint[N]] } func (s *lastValueMap[N]) measure( @@ -33,7 +33,7 @@ func (s *lastValueMap[N]) measure( fltrAttr attribute.Set, droppedAttr []attribute.KeyValue, ) { - lv := s.values.LoadOrStoreAttr(fltrAttr, func(attr attribute.Set) any { + lv := s.values.LoadOrStoreAttr(fltrAttr, func(attr attribute.Set) *lastValuePoint[N] { r := s.newRes(attr) _, isDrop := r.(*dropRes[N]) p := &lastValuePoint[N]{ @@ -44,7 +44,7 @@ func (s *lastValueMap[N]) measure( } p.value.Store(value) return p - }).(*lastValuePoint[N]) + }) lv.value.Store(value) if !lv.dropExemplars { @@ -61,12 +61,12 @@ func newDeltaLastValue[N int64 | float64]( start: now(), hotColdValMap: [2]lastValueMap[N]{ { - values: limitedSyncMap{aggLimit: limit}, newRes: r, + values: limitedSyncMap[*lastValuePoint[N]]{aggLimit: limit}, }, { - values: limitedSyncMap{aggLimit: limit}, newRes: r, + values: limitedSyncMap[*lastValuePoint[N]]{aggLimit: limit}, }, }, } @@ -148,8 +148,8 @@ func newCumulativeLastValue[N int64 | float64]( ) *cumulativeLastValue[N] { return &cumulativeLastValue[N]{ lastValueMap: lastValueMap[N]{ - values: limitedSyncMap{aggLimit: limit}, newRes: r, + values: limitedSyncMap[*lastValuePoint[N]]{aggLimit: limit}, }, start: now(), } diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/limit.go b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/limit.go index c19a1aff68..426a8b275e 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/limit.go +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/limit.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package aggregate // import "go.opentelemetry.io/otel/sdk/metric/internal/aggregate" +package aggregate import "go.opentelemetry.io/otel/attribute" diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/sum.go b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/sum.go index 0cd3c94575..bee5ca3701 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/sum.go +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/sum.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package aggregate // import "go.opentelemetry.io/otel/sdk/metric/internal/aggregate" +package aggregate import ( "context" @@ -21,8 +21,8 @@ type sumValue[N int64 | float64] struct { } type sumValueMap[N int64 | float64] struct { - values limitedSyncMap newRes func(attribute.Set) FilteredExemplarReservoir[N] + values limitedSyncMap[*sumValue[N]] } func (s *sumValueMap[N]) measure( @@ -31,7 +31,7 @@ func (s *sumValueMap[N]) measure( fltrAttr attribute.Set, droppedAttr []attribute.KeyValue, ) { - sv := s.values.LoadOrStoreAttr(fltrAttr, func(attr attribute.Set) any { + sv := s.values.LoadOrStoreAttr(fltrAttr, func(attr attribute.Set) *sumValue[N] { r := s.newRes(attr) _, isDrop := r.(*dropRes[N]) return &sumValue[N]{ @@ -40,7 +40,7 @@ func (s *sumValueMap[N]) measure( startTime: now(), dropExemplars: isDrop, } - }).(*sumValue[N]) + }) sv.n.add(value) // It is possible for collection to race with measurement and observe the // exemplar in the batch of metrics after the add() for cumulative sums. @@ -63,12 +63,12 @@ func newDeltaSum[N int64 | float64]( start: now(), hotColdValMap: [2]sumValueMap[N]{ { - values: limitedSyncMap{aggLimit: limit}, newRes: r, + values: limitedSyncMap[*sumValue[N]]{aggLimit: limit}, }, { - values: limitedSyncMap{aggLimit: limit}, newRes: r, + values: limitedSyncMap[*sumValue[N]]{aggLimit: limit}, }, }, } @@ -140,8 +140,8 @@ func newCumulativeSum[N int64 | float64]( monotonic: monotonic, start: now(), sumValueMap: sumValueMap[N]{ - values: limitedSyncMap{aggLimit: limit}, newRes: r, + values: limitedSyncMap[*sumValue[N]]{aggLimit: limit}, }, } } diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/internal/attrnorm/dedup.go b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/attrnorm/dedup.go new file mode 100644 index 0000000000..fe9ddc96db --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/attrnorm/dedup.go @@ -0,0 +1,300 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// DO NOT MODIFY. Generated by gotmpl. +// source: internal/shared/attrnorm/dedup.go.tmpl + +// Package attrnorm normalizes attribute values. +package attrnorm + +import ( + "reflect" + "unsafe" + + "go.opentelemetry.io/otel/attribute" +) + +var ( + keyValueType = reflect.TypeFor[attribute.KeyValue]() + valueType = reflect.TypeFor[attribute.Value]() +) + +// rawValue mirrors attribute.Value. It is used only to read immutable slice +// storage without calling AsMap or AsSlice on no-op paths. +type rawValue struct { + vtype attribute.Type + numeric uint64 + stringly string + slice any +} + +// Value returns value with all map values deduplicated and whether it changed. +// +// Duplicate map keys are resolved using last-value-wins semantics. +func Value(value attribute.Value) (attribute.Value, bool) { + switch value.Type() { + case attribute.SLICE: + return deduplicateSliceValue(value) + case attribute.MAP: + return deduplicateMapValue(value) + default: + return value, false + } +} + +// KeyValue returns kv with all map values deduplicated and whether it changed. +func KeyValue(kv attribute.KeyValue) (attribute.KeyValue, bool) { + value, changed := Value(kv.Value) + if changed { + kv.Value = value + } + return kv, changed +} + +// KeyValues returns kvs with all map values deduplicated and whether they changed. +// +// The returned slice is the original kvs slice if no value needs +// deduplication. Top-level keys in kvs are not deduplicated. +func KeyValues(kvs []attribute.KeyValue) ([]attribute.KeyValue, bool) { + // Preserve the caller's slice on the common no-op path. Once a changed + // value is found, copy the prior values exactly once and fill the rest in + // place as the scan continues. + var normalized []attribute.KeyValue + for i, kv := range kvs { + kv, changed := KeyValue(kv) + if normalized != nil { + normalized[i] = kv + continue + } + if !changed { + continue + } + + normalized = make([]attribute.KeyValue, len(kvs)) + copy(normalized, kvs[:i]) + normalized[i] = kv + } + if normalized == nil { + return kvs, false + } + return normalized, true +} + +// Set returns set with all map values deduplicated and whether it changed. +// +// The returned Set is the original set if no value needs deduplication. +// Top-level key uniqueness remains attribute.Set's responsibility; this only +// normalizes map attribute values. +func Set(set attribute.Set) (attribute.Set, bool) { + if set.Len() == 0 { + return set, false + } + + // Most attribute sets contain no duplicate map keys. Delay allocation until + // the first changed value so the no-op path returns the original Set. + var normalized []attribute.KeyValue + for i := range set.Len() { + kv, _ := set.Get(i) + kv, changed := KeyValue(kv) + if normalized != nil { + normalized = append(normalized, kv) + continue + } + if !changed { + continue + } + + normalized = make([]attribute.KeyValue, 0, set.Len()) + for j := range i { + prior, _ := set.Get(j) + normalized = append(normalized, prior) + } + normalized = append(normalized, kv) + } + if normalized == nil { + return set, false + } + + return attribute.NewSet(normalized...), true +} + +func deduplicateSliceValue(value attribute.Value) (attribute.Value, bool) { + storage := valueStorage(value) + length := valueLen(storage) + + // Slice values can contain map values, so recurse into each element while + // keeping the original attribute.Value when no element changes. + var normalized []attribute.Value + for i := range length { + elem := valueAt(storage, i) + elem, changed := Value(elem) + if normalized != nil { + normalized[i] = elem + continue + } + if !changed { + continue + } + + normalized = make([]attribute.Value, length) + for j := range i { + normalized[j] = valueAt(storage, j) + } + normalized[i] = elem + } + if normalized == nil { + return value, false + } + return attribute.SliceValue(normalized...), true +} + +func deduplicateMapValue(value attribute.Value) (attribute.Value, bool) { + storage := valueStorage(value) + length := keyValueLen(storage) + if length <= 1 { + // A single map entry cannot duplicate its own key, but its value might + // contain a map or slice that needs recursive normalization. + if length == 1 { + kv, changed := KeyValue(keyValueAt(storage, 0)) + if changed { + return attribute.MapValue(kv), true + } + } + return value, false + } + + var normalized []attribute.KeyValue + for i := 0; i < length; { + // attribute.MapValue stores key-values sorted by key using a stable + // sort. Equal keys therefore form a contiguous run, and the last + // element in that run is the last value provided by the caller. + first := keyValueAt(storage, i) + j := i + 1 + for j < length && keyValueAt(storage, j).Key == first.Key { + j++ + } + + kv, nestedChanged := KeyValue(keyValueAt(storage, j-1)) + // j-i > 1 means the current key run contained duplicates. + changed := nestedChanged || j-i > 1 + if normalized != nil { + normalized = append(normalized, kv) + } else if changed { + normalized = make([]attribute.KeyValue, 0, length) + for k := range i { + normalized = append(normalized, keyValueAt(storage, k)) + } + normalized = append(normalized, kv) + } + i = j + } + if normalized == nil { + return value, false + } + return attribute.MapValue(normalized...), true +} + +func valueStorage(value attribute.Value) any { + // attribute.Value does not expose allocation-free map/slice iteration. + // The raw mirror lets us read the immutable backing array directly and + // reserve AsMap/AsSlice-style allocation for paths that actually change. + return (*rawValue)( + unsafe.Pointer(&value), + ).slice //nolint:gosec // Read-only mirror of attribute.Value for allocation-free iteration. +} + +func valueLen(storage any) int { + // attribute.Value stores small slices in fixed-size array values. Handle + // the common sizes directly and fall back to reflection for larger arrays. + switch storage.(type) { + case [0]attribute.Value: + return 0 + case [1]attribute.Value: + return 1 + case [2]attribute.Value: + return 2 + case [3]attribute.Value: + return 3 + case [4]attribute.Value: + return 4 + case [5]attribute.Value: + return 5 + default: + return arrayLen(storage, valueType) + } +} + +func valueAt(storage any, i int) attribute.Value { + switch values := storage.(type) { + case [1]attribute.Value: + return values[i] + case [2]attribute.Value: + return values[i] + case [3]attribute.Value: + return values[i] + case [4]attribute.Value: + return values[i] + case [5]attribute.Value: + return values[i] + default: + return arrayAt[attribute.Value](storage, valueType, i) + } +} + +func keyValueLen(storage any) int { + // attribute.Value stores small maps in fixed-size key-value arrays. Handle + // the common sizes directly and fall back to reflection for larger arrays. + switch storage.(type) { + case [0]attribute.KeyValue: + return 0 + case [1]attribute.KeyValue: + return 1 + case [2]attribute.KeyValue: + return 2 + case [3]attribute.KeyValue: + return 3 + case [4]attribute.KeyValue: + return 4 + case [5]attribute.KeyValue: + return 5 + default: + return arrayLen(storage, keyValueType) + } +} + +func keyValueAt(storage any, i int) attribute.KeyValue { + switch kvs := storage.(type) { + case [1]attribute.KeyValue: + return kvs[i] + case [2]attribute.KeyValue: + return kvs[i] + case [3]attribute.KeyValue: + return kvs[i] + case [4]attribute.KeyValue: + return kvs[i] + case [5]attribute.KeyValue: + return kvs[i] + default: + return arrayAt[attribute.KeyValue](storage, keyValueType, i) + } +} + +func arrayLen(storage any, elem reflect.Type) int { + // Be defensive around invalid or unexpected Value storage. Returning zero + // makes malformed storage a no-op instead of panicking in telemetry paths. + array := reflect.ValueOf(storage) + if array.Kind() != reflect.Array || array.Type().Elem() != elem { + return 0 + } + return array.Len() +} + +func arrayAt[T any](storage any, elem reflect.Type, i int) T { + // Match arrayLen's fail-closed behavior for unexpected storage. + array := reflect.ValueOf(storage) + if array.Kind() != reflect.Array || array.Type().Elem() != elem || i < 0 || i >= array.Len() { + var zero T + return zero + } + return array.Index(i).Interface().(T) +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/internal/gen.go b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/gen.go new file mode 100644 index 0000000000..5f077dfe93 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/gen.go @@ -0,0 +1,10 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Package internal provides internal functionality for the sdk/metric package. +package internal + +//go:generate gotmpl --body=../../../internal/shared/x/x.go.tmpl "--data={ \"pkg\": \"go.opentelemetry.io/otel/sdk/metric\" }" --out=x/x.go +//go:generate gotmpl --body=../../../internal/shared/x/x_test.go.tmpl "--data={}" --out=x/x_test.go +//go:generate gotmpl --body=../../../internal/shared/attrnorm/dedup.go.tmpl "--data={}" --out=attrnorm/dedup.go +//go:generate gotmpl --body=../../../internal/shared/attrnorm/dedup_test.go.tmpl "--data={}" --out=attrnorm/dedup_test.go diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/internal/observ/instrumentation.go b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/observ/instrumentation.go index c580dcc30d..b09748a79f 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/metric/internal/observ/instrumentation.go +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/observ/instrumentation.go @@ -3,7 +3,7 @@ // Package observ provides experimental observability instrumentation for the // metric reader. -package observ // import "go.opentelemetry.io/otel/sdk/metric/internal/observ" +package observ import ( "context" @@ -16,8 +16,8 @@ import ( "go.opentelemetry.io/otel/metric" "go.opentelemetry.io/otel/sdk" "go.opentelemetry.io/otel/sdk/internal/x" - semconv "go.opentelemetry.io/otel/semconv/v1.41.0" - "go.opentelemetry.io/otel/semconv/v1.41.0/otelconv" + semconv "go.opentelemetry.io/otel/semconv/v1.43.0" + "go.opentelemetry.io/otel/semconv/v1.43.0/otelconv" ) const ( diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/internal/reservoir/concurrent_safe.go b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/reservoir/concurrent_safe.go index 3be234a410..8542fd94bd 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/metric/internal/reservoir/concurrent_safe.go +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/reservoir/concurrent_safe.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package reservoir // import "go.opentelemetry.io/otel/sdk/metric/internal/reservoir" +package reservoir // ConcurrentSafe is an interface that can be embedded in an // exemplar.Reservoir to indicate to the SDK that it is safe to invoke its diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/internal/reservoir/doc.go b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/reservoir/doc.go index 6cd213b5f3..6dbf906c8a 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/metric/internal/reservoir/doc.go +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/reservoir/doc.go @@ -3,4 +3,4 @@ // Package reservoir contains experimental features used by built-in exemplar // reservoirs which require coordination with the metrics SDK. -package reservoir // import "go.opentelemetry.io/otel/sdk/metric/internal/reservoir" +package reservoir diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/internal/reuse_slice.go b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/reuse_slice.go index ea452be6c2..6ddf01473b 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/metric/internal/reuse_slice.go +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/reuse_slice.go @@ -2,7 +2,7 @@ // SPDX-License-Identifier: Apache-2.0 // Package internal provides internal functionality for the metric package. -package internal // import "go.opentelemetry.io/otel/sdk/metric/internal" +package internal // ReuseSlice returns a zeroed view of slice if its capacity is greater than or // equal to n. Otherwise, it returns a new []T with capacity equal to n. diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/internal/x/features.go b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/x/features.go new file mode 100644 index 0000000000..a8268702a6 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/x/features.go @@ -0,0 +1,22 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package x + +import "strconv" + +// MetricExportBatchSize is an experimental feature flag that controls the +// max export batch size for metric data. +// +// To enable this feature set the OTEL_GO_X_METRIC_EXPORT_BATCH_SIZE environment +// variable to a positive integer value. +var MetricExportBatchSize = newFeature( + []string{"METRIC_EXPORT_BATCH_SIZE"}, + func(v string) (int, bool) { + val, err := strconv.Atoi(v) + if err == nil && val > 0 { + return val, true + } + return 0, false + }, +) diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/internal/x/x.go b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/x/x.go index 8e3c62a13d..f501984ae5 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/metric/internal/x/x.go +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/x/x.go @@ -1,36 +1,38 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -// Package x contains support for OTel metric SDK experimental features. -// -// This package should only be used for features defined in the specification. -// It should not be used for experiments or new project ideas. -package x // import "go.opentelemetry.io/otel/sdk/metric/internal/x" +// DO NOT MODIFY. Generated by gotmpl. +// source: internal/shared/x/x.go.tmpl + +// Package x documents experimental features for [go.opentelemetry.io/otel/sdk/metric]. +package x import ( "os" - "strconv" ) // Feature is an experimental feature control flag. It provides a uniform way // to interact with these feature flags and parse their values. type Feature[T any] struct { - key string + keys []string parse func(v string) (T, bool) } -//nolint:unused -func newFeature[T any](suffix string, parse func(string) (T, bool)) Feature[T] { +func newFeature[T any](suffix []string, parse func(string) (T, bool)) Feature[T] { const envKeyRoot = "OTEL_GO_X_" + keys := make([]string, 0, len(suffix)) + for _, s := range suffix { + keys = append(keys, envKeyRoot+s) + } return Feature[T]{ - key: envKeyRoot + suffix, + keys: keys, parse: parse, } } -// Key returns the environment variable key that needs to be set to enable the +// Keys returns the environment variable keys that can be set to enable the // feature. -func (f Feature[T]) Key() string { return f.key } +func (f Feature[T]) Keys() []string { return f.keys } // Lookup returns the user configured value for the feature and true if the // user has enabled the feature. Otherwise, if the feature is not enabled, a @@ -40,11 +42,13 @@ func (f Feature[T]) Lookup() (v T, ok bool) { // // > The SDK MUST interpret an empty value of an environment variable the // > same way as when the variable is unset. - vRaw := os.Getenv(f.key) - if vRaw == "" { - return v, ok + for _, key := range f.keys { + vRaw := os.Getenv(key) + if vRaw != "" { + return f.parse(vRaw) + } } - return f.parse(vRaw) + return v, ok } // Enabled reports whether the feature is enabled. @@ -52,19 +56,3 @@ func (f Feature[T]) Enabled() bool { _, ok := f.Lookup() return ok } - -// MetricExportBatchSize is an experimental feature flag that controls the -// max export batch size for metric data. -// -// To enable this feature set the OTEL_GO_X_METRIC_EXPORT_BATCH_SIZE environment -// variable to a positive integer value. -var MetricExportBatchSize = newFeature( - "METRIC_EXPORT_BATCH_SIZE", - func(v string) (int, bool) { - val, err := strconv.Atoi(v) - if err == nil && val > 0 { - return val, true - } - return 0, false - }, -) diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/manual_reader.go b/vendor/go.opentelemetry.io/otel/sdk/metric/manual_reader.go index 7e0cccdff6..b98e255d8c 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/metric/manual_reader.go +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/manual_reader.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package metric // import "go.opentelemetry.io/otel/sdk/metric" +package metric import ( "context" diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/meter.go b/vendor/go.opentelemetry.io/otel/sdk/metric/meter.go index e9a2d59572..8c54974e06 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/metric/meter.go +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/meter.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package metric // import "go.opentelemetry.io/otel/sdk/metric" +package metric import ( "context" @@ -593,11 +593,13 @@ func (r observer) ObserveFloat64(o metric.Float64Observable, v float64, opts ... return } c := metric.NewObserveConfig(opts) + rawKVs := extractRawKVs(opts) + set := resolveAttributes(c.Attributes(), rawKVs) // Access to r.pipe.float64Measure is already guarded by a lock in pipeline.produce. // TODO (#5946): Refactor pipeline and observable measures. measures := r.pipe.float64Measures[oImpl.observableID] for _, m := range measures { - m(context.Background(), v, c.Attributes()) + m(context.Background(), v, set) } } @@ -624,11 +626,13 @@ func (r observer) ObserveInt64(o metric.Int64Observable, v int64, opts ...metric return } c := metric.NewObserveConfig(opts) + rawKVs := extractRawKVs(opts) + set := resolveAttributes(c.Attributes(), rawKVs) // Access to r.pipe.int64Measures is already guarded b a lock in pipeline.produce. // TODO (#5946): Refactor pipeline and observable measures. measures := r.pipe.int64Measures[oImpl.observableID] for _, m := range measures { - m(context.Background(), v, c.Attributes()) + m(context.Background(), v, set) } } @@ -793,7 +797,8 @@ type int64Observer struct { func (o int64Observer) Observe(val int64, opts ...metric.ObserveOption) { c := metric.NewObserveConfig(opts) - o.observe(val, c.Attributes()) + rawKVs := extractRawKVs(opts) + o.observe(val, resolveAttributes(c.Attributes(), rawKVs)) } type float64Observer struct { @@ -803,7 +808,8 @@ type float64Observer struct { func (o float64Observer) Observe(val float64, opts ...metric.ObserveOption) { c := metric.NewObserveConfig(opts) - o.observe(val, c.Attributes()) + rawKVs := extractRawKVs(opts) + o.observe(val, resolveAttributes(c.Attributes(), rawKVs)) } func defaultAttributes[T any](opts []T) []attribute.Key { diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/metricdata/data.go b/vendor/go.opentelemetry.io/otel/sdk/metric/metricdata/data.go index af835e9d99..1caed336e9 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/metric/metricdata/data.go +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/metricdata/data.go @@ -2,7 +2,7 @@ // SPDX-License-Identifier: Apache-2.0 // Package metricdata provides types for the metric SDK data model. -package metricdata // import "go.opentelemetry.io/otel/sdk/metric/metricdata" +package metricdata import ( "encoding/json" diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/metricdata/temporality.go b/vendor/go.opentelemetry.io/otel/sdk/metric/metricdata/temporality.go index 2ac840ff35..8d7c89d857 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/metric/metricdata/temporality.go +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/metricdata/temporality.go @@ -3,7 +3,7 @@ //go:generate stringer -type=Temporality -package metricdata // import "go.opentelemetry.io/otel/sdk/metric/metricdata" +package metricdata // Temporality defines the window that an aggregation was calculated over. type Temporality uint8 diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/periodic_reader.go b/vendor/go.opentelemetry.io/otel/sdk/metric/periodic_reader.go index c1c2e3e2f0..9f7712bd51 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/metric/periodic_reader.go +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/periodic_reader.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package metric // import "go.opentelemetry.io/otel/sdk/metric" +package metric import ( "context" @@ -16,7 +16,7 @@ import ( "go.opentelemetry.io/otel/sdk/metric/internal/observ" "go.opentelemetry.io/otel/sdk/metric/internal/x" "go.opentelemetry.io/otel/sdk/metric/metricdata" - semconv "go.opentelemetry.io/otel/semconv/v1.41.0" + semconv "go.opentelemetry.io/otel/semconv/v1.43.0" ) // Default periodic reader timing. diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/pipeline.go b/vendor/go.opentelemetry.io/otel/sdk/metric/pipeline.go index 09d10eeb5f..f04c2ddcec 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/metric/pipeline.go +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/pipeline.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package metric // import "go.opentelemetry.io/otel/sdk/metric" +package metric import ( "container/list" diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/provider.go b/vendor/go.opentelemetry.io/otel/sdk/metric/provider.go index fd4cdccd0f..9f9f01f432 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/metric/provider.go +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/provider.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package metric // import "go.opentelemetry.io/otel/sdk/metric" +package metric import ( "context" @@ -12,6 +12,7 @@ import ( "go.opentelemetry.io/otel/metric/embedded" "go.opentelemetry.io/otel/metric/noop" "go.opentelemetry.io/otel/sdk/instrumentation" + "go.opentelemetry.io/otel/sdk/metric/internal/attrnorm" ) // MeterProvider handles the creation and coordination of Meters. All Meters @@ -76,11 +77,12 @@ func (mp *MeterProvider) Meter(name string, options ...metric.MeterOption) metri } c := metric.NewMeterConfig(options...) + attrs, _ := attrnorm.Set(c.InstrumentationAttributes()) s := instrumentation.Scope{ Name: name, Version: c.InstrumentationVersion(), SchemaURL: c.SchemaURL(), - Attributes: c.InstrumentationAttributes(), + Attributes: attrs, } global.Info( diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/reader.go b/vendor/go.opentelemetry.io/otel/sdk/metric/reader.go index 556afcea6b..505c9ad938 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/metric/reader.go +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/reader.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package metric // import "go.opentelemetry.io/otel/sdk/metric" +package metric import ( "context" diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/splitmetrics.go b/vendor/go.opentelemetry.io/otel/sdk/metric/splitmetrics.go index a7931412bb..b183cf4863 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/metric/splitmetrics.go +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/splitmetrics.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package metric // import "go.opentelemetry.io/otel/sdk/metric" +package metric import ( "go.opentelemetry.io/otel/sdk/metric/metricdata" diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/version.go b/vendor/go.opentelemetry.io/otel/sdk/metric/version.go index 3e1bea4b44..4c1cd75e2c 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/metric/version.go +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/version.go @@ -1,9 +1,9 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package metric // import "go.opentelemetry.io/otel/sdk/metric" +package metric // version is the current release version of the metric SDK in use. func version() string { - return "1.44.0" + return "1.45.0" } diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/view.go b/vendor/go.opentelemetry.io/otel/sdk/metric/view.go index 13fb7143ce..3f98928f96 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/metric/view.go +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/view.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package metric // import "go.opentelemetry.io/otel/sdk/metric" +package metric import ( "errors" diff --git a/vendor/go.opentelemetry.io/otel/sdk/resource/auto.go b/vendor/go.opentelemetry.io/otel/sdk/resource/auto.go index c02aeefdde..8754313af9 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/resource/auto.go +++ b/vendor/go.opentelemetry.io/otel/sdk/resource/auto.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package resource // import "go.opentelemetry.io/otel/sdk/resource" +package resource import ( "context" diff --git a/vendor/go.opentelemetry.io/otel/sdk/resource/builtin.go b/vendor/go.opentelemetry.io/otel/sdk/resource/builtin.go index 28823edd53..d5f6dc0a6d 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/resource/builtin.go +++ b/vendor/go.opentelemetry.io/otel/sdk/resource/builtin.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package resource // import "go.opentelemetry.io/otel/sdk/resource" +package resource import ( "context" @@ -13,7 +13,7 @@ import ( "go.opentelemetry.io/otel/attribute" "go.opentelemetry.io/otel/sdk" - semconv "go.opentelemetry.io/otel/semconv/v1.41.0" + semconv "go.opentelemetry.io/otel/semconv/v1.43.0" ) type ( diff --git a/vendor/go.opentelemetry.io/otel/sdk/resource/config.go b/vendor/go.opentelemetry.io/otel/sdk/resource/config.go index a3d647d92c..c5ffa45d02 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/resource/config.go +++ b/vendor/go.opentelemetry.io/otel/sdk/resource/config.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package resource // import "go.opentelemetry.io/otel/sdk/resource" +package resource import ( "context" @@ -23,7 +23,9 @@ type Option interface { apply(config) config } -// WithAttributes adds attributes to the configured Resource. +// WithAttributes adds attributes to the configured Resource. Duplicate +// top-level attribute keys and duplicate keys inside map values are +// resolved using last-value-wins semantics. func WithAttributes(attributes ...attribute.KeyValue) Option { return WithDetectors(detectAttributes{attributes}) } diff --git a/vendor/go.opentelemetry.io/otel/sdk/resource/container.go b/vendor/go.opentelemetry.io/otel/sdk/resource/container.go index ce03e24c41..c81163bf85 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/resource/container.go +++ b/vendor/go.opentelemetry.io/otel/sdk/resource/container.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package resource // import "go.opentelemetry.io/otel/sdk/resource" +package resource import ( "bufio" @@ -11,7 +11,7 @@ import ( "os" "regexp" - semconv "go.opentelemetry.io/otel/semconv/v1.41.0" + semconv "go.opentelemetry.io/otel/semconv/v1.43.0" ) type containerIDProvider func() (string, error) diff --git a/vendor/go.opentelemetry.io/otel/sdk/resource/doc.go b/vendor/go.opentelemetry.io/otel/sdk/resource/doc.go index 64939a2713..f5a79d3fe4 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/resource/doc.go +++ b/vendor/go.opentelemetry.io/otel/sdk/resource/doc.go @@ -17,4 +17,4 @@ // // While this package provides a stable API, // the attributes added by resource detectors may change. -package resource // import "go.opentelemetry.io/otel/sdk/resource" +package resource diff --git a/vendor/go.opentelemetry.io/otel/sdk/resource/env.go b/vendor/go.opentelemetry.io/otel/sdk/resource/env.go index ac5691c08d..0eeb1e2ae5 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/resource/env.go +++ b/vendor/go.opentelemetry.io/otel/sdk/resource/env.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package resource // import "go.opentelemetry.io/otel/sdk/resource" +package resource import ( "context" @@ -12,7 +12,7 @@ import ( "go.opentelemetry.io/otel" "go.opentelemetry.io/otel/attribute" - semconv "go.opentelemetry.io/otel/semconv/v1.41.0" + semconv "go.opentelemetry.io/otel/semconv/v1.43.0" ) const ( diff --git a/vendor/go.opentelemetry.io/otel/sdk/resource/host_id.go b/vendor/go.opentelemetry.io/otel/sdk/resource/host_id.go index cb38fa1a8b..47219be223 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/resource/host_id.go +++ b/vendor/go.opentelemetry.io/otel/sdk/resource/host_id.go @@ -1,14 +1,14 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package resource // import "go.opentelemetry.io/otel/sdk/resource" +package resource import ( "context" "errors" "strings" - semconv "go.opentelemetry.io/otel/semconv/v1.41.0" + semconv "go.opentelemetry.io/otel/semconv/v1.43.0" ) type hostIDProvider func() (string, error) diff --git a/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_bsd.go b/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_bsd.go index 4c1c30f256..bcd174342b 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_bsd.go +++ b/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_bsd.go @@ -3,7 +3,7 @@ //go:build dragonfly || freebsd || netbsd || openbsd || solaris -package resource // import "go.opentelemetry.io/otel/sdk/resource" +package resource var platformHostIDReader hostIDReader = &hostIDReaderBSD{ execCommand: execCommand, diff --git a/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_darwin.go b/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_darwin.go index b09fde3b73..81ece5b34d 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_darwin.go +++ b/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_darwin.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package resource // import "go.opentelemetry.io/otel/sdk/resource" +package resource var platformHostIDReader hostIDReader = &hostIDReaderDarwin{ execCommand: execCommand, diff --git a/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_exec.go b/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_exec.go index e239ead028..c058f0d26b 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_exec.go +++ b/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_exec.go @@ -3,7 +3,7 @@ //go:build darwin || dragonfly || freebsd || netbsd || openbsd || solaris -package resource // import "go.opentelemetry.io/otel/sdk/resource" +package resource import ( "context" diff --git a/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_linux.go b/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_linux.go index 4a26096c8d..26cf6a5d1e 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_linux.go +++ b/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_linux.go @@ -3,7 +3,7 @@ //go:build linux -package resource // import "go.opentelemetry.io/otel/sdk/resource" +package resource var platformHostIDReader hostIDReader = &hostIDReaderLinux{ readFile: readFile, diff --git a/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_readfile.go b/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_readfile.go index c95d87685c..d955c2c909 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_readfile.go +++ b/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_readfile.go @@ -3,7 +3,7 @@ //go:build linux || dragonfly || freebsd || netbsd || openbsd || solaris -package resource // import "go.opentelemetry.io/otel/sdk/resource" +package resource import "os" diff --git a/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_unsupported.go b/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_unsupported.go index 63ad2fa4e0..9f6ca82118 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_unsupported.go +++ b/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_unsupported.go @@ -3,7 +3,7 @@ //go:build !darwin && !dragonfly && !freebsd && !linux && !netbsd && !openbsd && !solaris && !windows -package resource // import "go.opentelemetry.io/otel/sdk/resource" +package resource // hostIDReaderUnsupported is a placeholder implementation for operating systems // for which this project currently doesn't support host.id diff --git a/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_windows.go b/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_windows.go index 2b8ca20b38..e9e4a03848 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_windows.go +++ b/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_windows.go @@ -3,7 +3,7 @@ //go:build windows -package resource // import "go.opentelemetry.io/otel/sdk/resource" +package resource import ( "golang.org/x/sys/windows/registry" diff --git a/vendor/go.opentelemetry.io/otel/sdk/resource/os.go b/vendor/go.opentelemetry.io/otel/sdk/resource/os.go index 4c0def4148..6af4915679 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/resource/os.go +++ b/vendor/go.opentelemetry.io/otel/sdk/resource/os.go @@ -1,14 +1,14 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package resource // import "go.opentelemetry.io/otel/sdk/resource" +package resource import ( "context" "strings" "go.opentelemetry.io/otel/attribute" - semconv "go.opentelemetry.io/otel/semconv/v1.41.0" + semconv "go.opentelemetry.io/otel/semconv/v1.43.0" ) type osDescriptionProvider func() (string, error) diff --git a/vendor/go.opentelemetry.io/otel/sdk/resource/os_release_darwin.go b/vendor/go.opentelemetry.io/otel/sdk/resource/os_release_darwin.go index 3d703c5d98..f12876d17a 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/resource/os_release_darwin.go +++ b/vendor/go.opentelemetry.io/otel/sdk/resource/os_release_darwin.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package resource // import "go.opentelemetry.io/otel/sdk/resource" +package resource import ( "encoding/xml" diff --git a/vendor/go.opentelemetry.io/otel/sdk/resource/os_release_unix.go b/vendor/go.opentelemetry.io/otel/sdk/resource/os_release_unix.go index a1763267c2..ad92858546 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/resource/os_release_unix.go +++ b/vendor/go.opentelemetry.io/otel/sdk/resource/os_release_unix.go @@ -3,7 +3,7 @@ //go:build aix || dragonfly || freebsd || linux || netbsd || openbsd || solaris || zos -package resource // import "go.opentelemetry.io/otel/sdk/resource" +package resource import ( "bufio" diff --git a/vendor/go.opentelemetry.io/otel/sdk/resource/os_unix.go b/vendor/go.opentelemetry.io/otel/sdk/resource/os_unix.go index 1cd87c3983..ba5e48db24 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/resource/os_unix.go +++ b/vendor/go.opentelemetry.io/otel/sdk/resource/os_unix.go @@ -3,7 +3,7 @@ //go:build aix || darwin || dragonfly || freebsd || linux || netbsd || openbsd || solaris || zos -package resource // import "go.opentelemetry.io/otel/sdk/resource" +package resource import ( "fmt" diff --git a/vendor/go.opentelemetry.io/otel/sdk/resource/os_unsupported.go b/vendor/go.opentelemetry.io/otel/sdk/resource/os_unsupported.go index 25f629532a..e2c19c2b3a 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/resource/os_unsupported.go +++ b/vendor/go.opentelemetry.io/otel/sdk/resource/os_unsupported.go @@ -3,7 +3,7 @@ //go:build !aix && !darwin && !dragonfly && !freebsd && !linux && !netbsd && !openbsd && !solaris && !windows && !zos -package resource // import "go.opentelemetry.io/otel/sdk/resource" +package resource // platformOSDescription is a placeholder implementation for OSes // for which this project currently doesn't support os.description diff --git a/vendor/go.opentelemetry.io/otel/sdk/resource/os_windows.go b/vendor/go.opentelemetry.io/otel/sdk/resource/os_windows.go index ebd50826d6..9b76489577 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/resource/os_windows.go +++ b/vendor/go.opentelemetry.io/otel/sdk/resource/os_windows.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package resource // import "go.opentelemetry.io/otel/sdk/resource" +package resource import ( "fmt" diff --git a/vendor/go.opentelemetry.io/otel/sdk/resource/process.go b/vendor/go.opentelemetry.io/otel/sdk/resource/process.go index b015f8233c..a578fc3258 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/resource/process.go +++ b/vendor/go.opentelemetry.io/otel/sdk/resource/process.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package resource // import "go.opentelemetry.io/otel/sdk/resource" +package resource import ( "context" @@ -11,7 +11,7 @@ import ( "path/filepath" "runtime" - semconv "go.opentelemetry.io/otel/semconv/v1.41.0" + semconv "go.opentelemetry.io/otel/semconv/v1.43.0" ) type ( diff --git a/vendor/go.opentelemetry.io/otel/sdk/resource/resource.go b/vendor/go.opentelemetry.io/otel/sdk/resource/resource.go index f715be53ed..68ab274d2f 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/resource/resource.go +++ b/vendor/go.opentelemetry.io/otel/sdk/resource/resource.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package resource // import "go.opentelemetry.io/otel/sdk/resource" +package resource import ( "context" @@ -11,6 +11,7 @@ import ( "go.opentelemetry.io/otel" "go.opentelemetry.io/otel/attribute" + "go.opentelemetry.io/otel/sdk/internal/attrnorm" "go.opentelemetry.io/otel/sdk/internal/x" ) @@ -47,6 +48,8 @@ var ( var ErrSchemaURLConflict = errors.New("conflicting Schema URL") // New returns a [Resource] built using opts. +// Duplicate top-level attribute keys and duplicate keys inside map +// values are resolved using last-value-wins semantics. // // This may return a partial Resource along with an error containing // [ErrPartialResource] if options that provide a [Detector] are used and that @@ -66,25 +69,29 @@ func New(ctx context.Context, opts ...Option) (*Resource, error) { return r, detect(ctx, r, cfg.detectors) } -// NewWithAttributes creates a resource from attrs and associates the resource with a -// schema URL. If attrs contains duplicate keys, the last value will be used. If attrs -// contains any invalid items those items will be dropped. The attrs are assumed to be -// in a schema identified by schemaURL. +// NewWithAttributes creates a resource from attrs and associates the resource +// with a schema URL. If attrs contains duplicate top-level attribute keys or +// duplicate keys inside map values, the last value will be used. If attrs +// contains any invalid items those items will be dropped. The attrs are assumed +// to be in a schema identified by schemaURL. func NewWithAttributes(schemaURL string, attrs ...attribute.KeyValue) *Resource { resource := NewSchemaless(attrs...) resource.schemaURL = schemaURL return resource } -// NewSchemaless creates a resource from attrs. If attrs contains duplicate keys, -// the last value will be used. If attrs contains any invalid items those items will -// be dropped. The resource will not be associated with a schema URL. If the schema +// NewSchemaless creates a resource from attrs. If attrs contains duplicate +// top-level attribute keys or duplicate keys inside map values, the last +// value will be used. If attrs contains any invalid items those items will be +// dropped. The resource will not be associated with a schema URL. If the schema // of the attrs is known use NewWithAttributes instead. func NewSchemaless(attrs ...attribute.KeyValue) *Resource { if len(attrs) == 0 { return &Resource{} } + attrs, _ = attrnorm.KeyValues(attrs) + // Ensure attributes comply with the specification: // https://github.com/open-telemetry/opentelemetry-specification/blob/v1.20.0/specification/common/README.md#attribute s, _ := attribute.NewSetWithFiltered(attrs, func(kv attribute.KeyValue) bool { diff --git a/vendor/go.opentelemetry.io/otel/sdk/trace/batch_span_processor.go b/vendor/go.opentelemetry.io/otel/sdk/trace/batch_span_processor.go index f9f2a6c2c8..2b9560ee7f 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/trace/batch_span_processor.go +++ b/vendor/go.opentelemetry.io/otel/sdk/trace/batch_span_processor.go @@ -1,11 +1,12 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package trace // import "go.opentelemetry.io/otel/sdk/trace" +package trace import ( "context" "errors" + "fmt" "sync" "sync/atomic" "time" @@ -435,11 +436,11 @@ func (bsp *batchSpanProcessor) enqueueDrop(ctx context.Context, sd ReadOnlySpan) func (bsp *batchSpanProcessor) MarshalLog() any { return struct { Type string - SpanExporter SpanExporter + SpanExporter string Config BatchSpanProcessorOptions }{ Type: "BatchSpanProcessor", - SpanExporter: bsp.e, + SpanExporter: fmt.Sprintf("%T", bsp.e), Config: bsp.o, } } diff --git a/vendor/go.opentelemetry.io/otel/sdk/trace/doc.go b/vendor/go.opentelemetry.io/otel/sdk/trace/doc.go index b502c7d479..b292fa3113 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/trace/doc.go +++ b/vendor/go.opentelemetry.io/otel/sdk/trace/doc.go @@ -10,4 +10,4 @@ See https://opentelemetry.io. See [go.opentelemetry.io/otel/sdk/internal/x] for information about the experimental features. */ -package trace // import "go.opentelemetry.io/otel/sdk/trace" +package trace diff --git a/vendor/go.opentelemetry.io/otel/sdk/trace/event.go b/vendor/go.opentelemetry.io/otel/sdk/trace/event.go index 60a7ed1349..49eac0459f 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/trace/event.go +++ b/vendor/go.opentelemetry.io/otel/sdk/trace/event.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package trace // import "go.opentelemetry.io/otel/sdk/trace" +package trace import ( "time" diff --git a/vendor/go.opentelemetry.io/otel/sdk/trace/evictedqueue.go b/vendor/go.opentelemetry.io/otel/sdk/trace/evictedqueue.go index 8c308dd60a..1f62b528c3 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/trace/evictedqueue.go +++ b/vendor/go.opentelemetry.io/otel/sdk/trace/evictedqueue.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package trace // import "go.opentelemetry.io/otel/sdk/trace" +package trace import ( "slices" diff --git a/vendor/go.opentelemetry.io/otel/sdk/trace/id_generator.go b/vendor/go.opentelemetry.io/otel/sdk/trace/id_generator.go index 3649322a6e..be22ac6322 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/trace/id_generator.go +++ b/vendor/go.opentelemetry.io/otel/sdk/trace/id_generator.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package trace // import "go.opentelemetry.io/otel/sdk/trace" +package trace import ( "context" diff --git a/vendor/go.opentelemetry.io/otel/sdk/trace/internal/env/env.go b/vendor/go.opentelemetry.io/otel/sdk/trace/internal/env/env.go index 58f68df441..1385ae6fc2 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/trace/internal/env/env.go +++ b/vendor/go.opentelemetry.io/otel/sdk/trace/internal/env/env.go @@ -3,7 +3,7 @@ // Package env provides types and functionality for environment variable support // in the OpenTelemetry SDK. -package env // import "go.opentelemetry.io/otel/sdk/trace/internal/env" +package env import ( "os" diff --git a/vendor/go.opentelemetry.io/otel/sdk/trace/internal/observ/batch_span_processor.go b/vendor/go.opentelemetry.io/otel/sdk/trace/internal/observ/batch_span_processor.go index c725ebf372..896ed517f0 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/trace/internal/observ/batch_span_processor.go +++ b/vendor/go.opentelemetry.io/otel/sdk/trace/internal/observ/batch_span_processor.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package observ // import "go.opentelemetry.io/otel/sdk/trace/internal/observ" +package observ import ( "context" @@ -13,8 +13,8 @@ import ( "go.opentelemetry.io/otel/metric" "go.opentelemetry.io/otel/sdk" "go.opentelemetry.io/otel/sdk/internal/x" - semconv "go.opentelemetry.io/otel/semconv/v1.41.0" - "go.opentelemetry.io/otel/semconv/v1.41.0/otelconv" + semconv "go.opentelemetry.io/otel/semconv/v1.43.0" + "go.opentelemetry.io/otel/semconv/v1.43.0/otelconv" ) const ( diff --git a/vendor/go.opentelemetry.io/otel/sdk/trace/internal/observ/doc.go b/vendor/go.opentelemetry.io/otel/sdk/trace/internal/observ/doc.go index b542121e6a..64fd5238d0 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/trace/internal/observ/doc.go +++ b/vendor/go.opentelemetry.io/otel/sdk/trace/internal/observ/doc.go @@ -3,4 +3,4 @@ // Package observ provides observability instrumentation for the OTel trace SDK // package. -package observ // import "go.opentelemetry.io/otel/sdk/trace/internal/observ" +package observ diff --git a/vendor/go.opentelemetry.io/otel/sdk/trace/internal/observ/simple_span_processor.go b/vendor/go.opentelemetry.io/otel/sdk/trace/internal/observ/simple_span_processor.go index cf4b5d481f..89922e4b80 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/trace/internal/observ/simple_span_processor.go +++ b/vendor/go.opentelemetry.io/otel/sdk/trace/internal/observ/simple_span_processor.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package observ // import "go.opentelemetry.io/otel/sdk/trace/internal/observ" +package observ import ( "context" @@ -13,8 +13,8 @@ import ( "go.opentelemetry.io/otel/metric" "go.opentelemetry.io/otel/sdk" "go.opentelemetry.io/otel/sdk/internal/x" - semconv "go.opentelemetry.io/otel/semconv/v1.41.0" - "go.opentelemetry.io/otel/semconv/v1.41.0/otelconv" + semconv "go.opentelemetry.io/otel/semconv/v1.43.0" + "go.opentelemetry.io/otel/semconv/v1.43.0/otelconv" ) var measureAttrsPool = sync.Pool{ diff --git a/vendor/go.opentelemetry.io/otel/sdk/trace/internal/observ/tracer.go b/vendor/go.opentelemetry.io/otel/sdk/trace/internal/observ/tracer.go index 5aae89e883..3428aa8949 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/trace/internal/observ/tracer.go +++ b/vendor/go.opentelemetry.io/otel/sdk/trace/internal/observ/tracer.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package observ // import "go.opentelemetry.io/otel/sdk/trace/internal/observ" +package observ import ( "context" @@ -13,7 +13,7 @@ import ( "go.opentelemetry.io/otel/metric" "go.opentelemetry.io/otel/sdk" "go.opentelemetry.io/otel/sdk/internal/x" - "go.opentelemetry.io/otel/semconv/v1.41.0/otelconv" + "go.opentelemetry.io/otel/semconv/v1.43.0/otelconv" "go.opentelemetry.io/otel/trace" ) diff --git a/vendor/go.opentelemetry.io/otel/sdk/trace/link.go b/vendor/go.opentelemetry.io/otel/sdk/trace/link.go index c03bdc90f6..d4a07a714b 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/trace/link.go +++ b/vendor/go.opentelemetry.io/otel/sdk/trace/link.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package trace // import "go.opentelemetry.io/otel/sdk/trace" +package trace import ( "go.opentelemetry.io/otel/attribute" diff --git a/vendor/go.opentelemetry.io/otel/sdk/trace/provider.go b/vendor/go.opentelemetry.io/otel/sdk/trace/provider.go index 9d90c2eda5..6b2368413a 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/trace/provider.go +++ b/vendor/go.opentelemetry.io/otel/sdk/trace/provider.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package trace // import "go.opentelemetry.io/otel/sdk/trace" +package trace import ( "context" @@ -13,6 +13,7 @@ import ( "go.opentelemetry.io/otel" "go.opentelemetry.io/otel/internal/global" "go.opentelemetry.io/otel/sdk/instrumentation" + "go.opentelemetry.io/otel/sdk/internal/attrnorm" "go.opentelemetry.io/otel/sdk/resource" "go.opentelemetry.io/otel/sdk/trace/internal/observ" "go.opentelemetry.io/otel/trace" @@ -42,22 +43,27 @@ type tracerProviderConfig struct { // resource contains attributes representing an entity that produces telemetry. resource *resource.Resource + + // panicRecordingDisabled disables recording exception events from panics. + panicRecordingDisabled bool } // MarshalLog is the marshaling function used by the logging system to represent this Provider. func (cfg tracerProviderConfig) MarshalLog() any { return struct { - SpanProcessors []SpanProcessor - SamplerType string - IDGeneratorType string - SpanLimits SpanLimits - Resource *resource.Resource + SpanProcessors []SpanProcessor + SamplerType string + IDGeneratorType string + SpanLimits SpanLimits + Resource *resource.Resource + PanicRecordingDisabled bool }{ - SpanProcessors: cfg.processors, - SamplerType: fmt.Sprintf("%T", cfg.sampler), - IDGeneratorType: fmt.Sprintf("%T", cfg.idGenerator), - SpanLimits: cfg.spanLimits, - Resource: cfg.resource, + SpanProcessors: cfg.processors, + SamplerType: fmt.Sprintf("%T", cfg.sampler), + IDGeneratorType: fmt.Sprintf("%T", cfg.idGenerator), + SpanLimits: cfg.spanLimits, + Resource: cfg.resource, + PanicRecordingDisabled: cfg.panicRecordingDisabled, } } @@ -74,10 +80,11 @@ type TracerProvider struct { // These fields are not protected by the lock mu. They are assumed to be // immutable after creation of the TracerProvider. - sampler Sampler - idGenerator IDGenerator - spanLimits SpanLimits - resource *resource.Resource + sampler Sampler + idGenerator IDGenerator + spanLimits SpanLimits + resource *resource.Resource + panicRecordingDisabled bool } var _ trace.TracerProvider = &TracerProvider{} @@ -112,11 +119,12 @@ func NewTracerProvider(opts ...TracerProviderOption) *TracerProvider { o = ensureValidTracerProviderConfig(o) tp := &TracerProvider{ - namedTracer: make(map[instrumentation.Scope]*tracer), - sampler: o.sampler, - idGenerator: o.idGenerator, - spanLimits: o.spanLimits, - resource: o.resource, + namedTracer: make(map[instrumentation.Scope]*tracer), + sampler: o.sampler, + idGenerator: o.idGenerator, + spanLimits: o.spanLimits, + resource: o.resource, + panicRecordingDisabled: o.panicRecordingDisabled, } global.Info("TracerProvider created", "config", o) @@ -142,6 +150,7 @@ func (p *TracerProvider) Tracer(name string, opts ...trace.TracerOption) trace.T return noop.NewTracerProvider().Tracer(name, opts...) } c := trace.NewTracerConfig(opts...) + attrs, _ := attrnorm.Set(c.InstrumentationAttributes()) if name == "" { name = defaultTracerName } @@ -149,7 +158,7 @@ func (p *TracerProvider) Tracer(name string, opts ...trace.TracerOption) trace.T Name: name, Version: c.InstrumentationVersion(), SchemaURL: c.SchemaURL(), - Attributes: c.InstrumentationAttributes(), + Attributes: attrs, } t, ok := func() (trace.Tracer, bool) { @@ -357,6 +366,16 @@ func WithSpanProcessor(sp SpanProcessor) TracerProviderOption { }) } +// WithoutPanicRecording configures the TracerProvider to not record exception +// events when a Span is ended while panicking. The panic continues to +// propagate, and the span is ended without adding the event. +func WithoutPanicRecording() TracerProviderOption { + return traceProviderOptionFunc(func(cfg tracerProviderConfig) tracerProviderConfig { + cfg.panicRecordingDisabled = true + return cfg + }) +} + // WithResource returns a TracerProviderOption that will configure the // Resource r as a TracerProvider's Resource. The configured Resource is // referenced by all the Tracers the TracerProvider creates. It represents the diff --git a/vendor/go.opentelemetry.io/otel/sdk/trace/sampler_env.go b/vendor/go.opentelemetry.io/otel/sdk/trace/sampler_env.go index 9b672a1d70..b0fa94ed2d 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/trace/sampler_env.go +++ b/vendor/go.opentelemetry.io/otel/sdk/trace/sampler_env.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package trace // import "go.opentelemetry.io/otel/sdk/trace" +package trace import ( "errors" diff --git a/vendor/go.opentelemetry.io/otel/sdk/trace/sampling.go b/vendor/go.opentelemetry.io/otel/sdk/trace/sampling.go index 5a4c74318b..c79177ae8d 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/trace/sampling.go +++ b/vendor/go.opentelemetry.io/otel/sdk/trace/sampling.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package trace // import "go.opentelemetry.io/otel/sdk/trace" +package trace import ( "context" diff --git a/vendor/go.opentelemetry.io/otel/sdk/trace/simple_span_processor.go b/vendor/go.opentelemetry.io/otel/sdk/trace/simple_span_processor.go index 771e427a4c..e9bec43948 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/trace/simple_span_processor.go +++ b/vendor/go.opentelemetry.io/otel/sdk/trace/simple_span_processor.go @@ -1,10 +1,11 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package trace // import "go.opentelemetry.io/otel/sdk/trace" +package trace import ( "context" + "fmt" "sync" "sync/atomic" @@ -140,11 +141,18 @@ func (*simpleSpanProcessor) ForceFlush(context.Context) error { // MarshalLog is the marshaling function used by the logging system to represent // this Span Processor. func (ssp *simpleSpanProcessor) MarshalLog() any { + // Shutdown clears exporter under exporterMu. + // Copy it while holding the same lock so MarshalLog + // can run concurrently without racing with Shutdown. + ssp.exporterMu.Lock() + exp := ssp.exporter + ssp.exporterMu.Unlock() + return struct { Type string - Exporter SpanExporter + Exporter string }{ Type: "SimpleSpanProcessor", - Exporter: ssp.exporter, + Exporter: fmt.Sprintf("%T", exp), } } diff --git a/vendor/go.opentelemetry.io/otel/sdk/trace/snapshot.go b/vendor/go.opentelemetry.io/otel/sdk/trace/snapshot.go index 63aa337800..8893dc39f1 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/trace/snapshot.go +++ b/vendor/go.opentelemetry.io/otel/sdk/trace/snapshot.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package trace // import "go.opentelemetry.io/otel/sdk/trace" +package trace import ( "time" diff --git a/vendor/go.opentelemetry.io/otel/sdk/trace/span.go b/vendor/go.opentelemetry.io/otel/sdk/trace/span.go index d1d9af29d7..0aae5f5bb2 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/trace/span.go +++ b/vendor/go.opentelemetry.io/otel/sdk/trace/span.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package trace // import "go.opentelemetry.io/otel/sdk/trace" +package trace import ( "context" @@ -10,17 +10,16 @@ import ( "runtime" rt "runtime/trace" "slices" - "strings" "sync" "time" - "unicode/utf8" "go.opentelemetry.io/otel/attribute" "go.opentelemetry.io/otel/codes" "go.opentelemetry.io/otel/internal/global" "go.opentelemetry.io/otel/sdk/instrumentation" + "go.opentelemetry.io/otel/sdk/internal/attrnorm" "go.opentelemetry.io/otel/sdk/resource" - semconv "go.opentelemetry.io/otel/semconv/v1.41.0" + semconv "go.opentelemetry.io/otel/semconv/v1.43.0" "go.opentelemetry.io/otel/trace" "go.opentelemetry.io/otel/trace/embedded" ) @@ -269,7 +268,8 @@ func (s *recordingSpan) SetAttributes(attributes ...attribute.KeyValue) { s.addDroppedAttr(1) continue } - a = truncateAttr(s.tracer.provider.spanLimits.AttributeValueLengthLimit, a) + a = dedupAttr(a) + a = attrnorm.Truncate(s.tracer.provider.spanLimits.AttributeValueLengthLimit, a) s.attributes = append(s.attributes, a) } } @@ -329,7 +329,8 @@ func (s *recordingSpan) addOverCapAttrs(limit int, attrs []attribute.KeyValue) { if idx, ok := exists[a.Key]; ok { // Perform all updates before dropping, even when at capacity. - a = truncateAttr(s.tracer.provider.spanLimits.AttributeValueLengthLimit, a) + a = dedupAttr(a) + a = attrnorm.Truncate(s.tracer.provider.spanLimits.AttributeValueLengthLimit, a) s.attributes[idx] = a continue } @@ -339,208 +340,31 @@ func (s *recordingSpan) addOverCapAttrs(limit int, attrs []attribute.KeyValue) { // updates are checked and performed. s.addDroppedAttr(1) } else { - a = truncateAttr(s.tracer.provider.spanLimits.AttributeValueLengthLimit, a) + a = dedupAttr(a) + a = attrnorm.Truncate(s.tracer.provider.spanLimits.AttributeValueLengthLimit, a) s.attributes = append(s.attributes, a) exists[a.Key] = len(s.attributes) - 1 } } } -// truncateAttr returns a truncated version of attr. Only string, string -// slice, byte slice, and slice attribute values are truncated. String values are truncated -// to at most a length of limit. Each string slice value is truncated in this -// fashion (the slice length itself is unaffected), and byte slice values are truncated to at most -// limit bytes. For slice attribute values, the limit is applied to each -// element recursively. -// -// No truncation is performed for a negative limit. -func truncateAttr(limit int, attr attribute.KeyValue) attribute.KeyValue { - if limit < 0 { - return attr - } +func dedupAttr(attr attribute.KeyValue) attribute.KeyValue { switch attr.Value.Type() { - case attribute.STRING: - v := attr.Value.AsString() - return attr.Key.String(truncate(limit, v)) - case attribute.STRINGSLICE: - v := attr.Value.AsStringSlice() - for i := range v { - v[i] = truncate(limit, v[i]) - } - return attr.Key.StringSlice(v) - case attribute.BYTESLICE: - v := attr.Value.AsString() - if len(v) > limit { - return attr.Key.ByteSlice([]byte(v[:limit])) - } + case attribute.SLICE, attribute.MAP: + attr, _ = attrnorm.KeyValue(attr) + return attr + default: return attr - case attribute.SLICE: - v := attr.Value.AsSlice() - if !slices.ContainsFunc(v, func(e attribute.Value) bool { return needsTruncation(limit, e) }) { - return attr - } - newV := make([]attribute.Value, len(v)) - for i, elem := range v { - newV[i] = truncateValue(limit, elem) - } - return attr.Key.Slice(newV...) - } - return attr -} - -// truncateValue returns a truncated version of v. Only string, string slice, -// byte slice, and (recursively) slice values are modified. -// -// No truncation is performed for a negative limit. -func truncateValue(limit int, v attribute.Value) attribute.Value { - switch v.Type() { - case attribute.STRING: - return attribute.StringValue(truncate(limit, v.AsString())) - case attribute.STRINGSLICE: - ss := v.AsStringSlice() - for i := range ss { - ss[i] = truncate(limit, ss[i]) - } - return attribute.StringSliceValue(ss) - - case attribute.BYTESLICE: - // len(v.AsString()) is identical to len(v.AsByteSlice()) but - // avoids allocating the full slice before truncation. - s := v.AsString() - if limit >= 0 && len(s) > limit { - return attribute.ByteSliceValue([]byte(s[:limit])) - } - case attribute.SLICE: - sl := v.AsSlice() - if !slices.ContainsFunc(sl, func(e attribute.Value) bool { return needsTruncation(limit, e) }) { - return v - } - newSl := make([]attribute.Value, len(sl)) - for i, elem := range sl { - newSl[i] = truncateValue(limit, elem) - } - return attribute.SliceValue(newSl...) - } - return v -} - -// stringNeedsTruncation reports whether s would be modified by truncate for the -// given limit. -func stringNeedsTruncation(limit int, s string) bool { - if limit < 0 || len(s) <= limit { - return false - } - return utf8.RuneCountInString(s) > limit || !utf8.ValidString(s) -} - -// needsTruncation reports whether v would be modified by truncateValue for the -// given limit. -func needsTruncation(limit int, v attribute.Value) bool { - switch v.Type() { - case attribute.STRING: - return stringNeedsTruncation(limit, v.AsString()) - case attribute.BYTESLICE: - // len(v.AsString()) is identical to len(v.AsByteSlice()) but - // avoids memory allocation. - if limit >= 0 && len(v.AsString()) > limit { - return true - } - case attribute.STRINGSLICE: - for _, s := range v.AsStringSlice() { - if stringNeedsTruncation(limit, s) { - return true - } - } - case attribute.SLICE: - return slices.ContainsFunc(v.AsSlice(), func(e attribute.Value) bool { return needsTruncation(limit, e) }) - } - return false -} - -// truncate returns a truncated version of s such that it contains less than -// the limit number of characters. Truncation is applied by returning the limit -// number of valid characters contained in s. -// -// If limit is negative, it returns the original string. -// -// UTF-8 is supported. When truncating, all invalid characters are dropped -// before applying truncation. -// -// If s already contains less than the limit number of bytes, it is returned -// unchanged. No invalid characters are removed. -func truncate(limit int, s string) string { - // This prioritize performance in the following order based on the most - // common expected use-cases. - // - // - Short values less than the default limit (128). - // - Strings with valid encodings that exceed the limit. - // - No limit. - // - Strings with invalid encodings that exceed the limit. - if limit < 0 || len(s) <= limit { - return s - } - - // Optimistically, assume all valid UTF-8. - var b strings.Builder - count := 0 - for i, c := range s { - if c != utf8.RuneError { - count++ - if count > limit { - return s[:i] - } - continue - } - - _, size := utf8.DecodeRuneInString(s[i:]) - if size == 1 { - // Invalid encoding. - b.Grow(len(s) - 1) - _, _ = b.WriteString(s[:i]) - s = s[i:] - break - } - } - - // Fast-path, no invalid input. - if b.Cap() == 0 { - return s - } - - // Truncate while validating UTF-8. - for i := 0; i < len(s) && count < limit; { - c := s[i] - if c < utf8.RuneSelf { - // Optimization for single byte runes (common case). - _ = b.WriteByte(c) - i++ - count++ - continue - } - - _, size := utf8.DecodeRuneInString(s[i:]) - if size == 1 { - // We checked for all 1-byte runes above, this is a RuneError. - i++ - continue - } - - _, _ = b.WriteString(s[i : i+size]) - i += size - count++ } - - return b.String() } // End ends the span. This method does nothing if the span is already ended or // is not being recorded. // -// The only SpanEndOption currently supported are [trace.WithTimestamp], and -// [trace.WithStackTrace]. -// -// If this method is called while panicking an error event is added to the -// Span before ending it and the panic is continued. +// The only supported SpanEndOptions are [trace.WithTimestamp] and [trace.WithStackTrace]. +// If this method is called while panicking and panic recording is not disabled +// on the TracerProvider, an error event is added to the Span before ending it +// and the panic is continued. func (s *recordingSpan) End(options ...trace.SpanEndOption) { // Do not start by checking if the span is being recorded which requires // acquiring a lock. Make a minimal check that the span is not nil. @@ -560,23 +384,25 @@ func (s *recordingSpan) End(options ...trace.SpanEndOption) { } config := trace.NewSpanEndConfig(options...) - if recovered := recover(); recovered != nil { - // Record but don't stop the panic. - defer panic(recovered) - opts := []trace.EventOption{ - trace.WithAttributes( - semconv.ExceptionType(typeStr(recovered)), - semconv.ExceptionMessage(fmt.Sprint(recovered)), - ), - } + if !s.tracer.provider.panicRecordingDisabled { + if recovered := recover(); recovered != nil { + // Record but don't stop the panic. + defer panic(recovered) + opts := []trace.EventOption{ + trace.WithAttributes( + semconv.ExceptionType(typeStr(recovered)), + semconv.ExceptionMessage(fmt.Sprint(recovered)), + ), + } - if config.StackTrace() { - opts = append(opts, trace.WithAttributes( - semconv.ExceptionStacktrace(recordStackTrace()), - )) - } + if config.StackTrace() { + opts = append(opts, trace.WithAttributes( + semconv.ExceptionStacktrace(recordStackTrace()), + )) + } - s.addEvent(semconv.ExceptionEventName, opts...) + s.addEvent(semconv.ExceptionEventName, opts...) + } } if s.executionTracerTaskEnd != nil { @@ -690,7 +516,8 @@ func (s *recordingSpan) AddEvent(name string, o ...trace.EventOption) { // This method assumes s.mu.Lock is held by the caller. func (s *recordingSpan) addEvent(name string, o ...trace.EventOption) { c := trace.NewEventConfig(o...) - e := Event{Name: name, Attributes: c.Attributes(), Time: c.Timestamp()} + attrs, _ := attrnorm.KeyValues(c.Attributes()) + e := Event{Name: name, Attributes: attrs, Time: c.Timestamp()} // Discard attributes over limit. limit := s.tracer.provider.spanLimits.AttributePerEventCountLimit @@ -863,7 +690,8 @@ func (s *recordingSpan) AddLink(link trace.Link) { return } - l := Link{SpanContext: link.SpanContext, Attributes: link.Attributes} + attrs, _ := attrnorm.KeyValues(link.Attributes) + l := Link{SpanContext: link.SpanContext, Attributes: attrs} // Discard attributes over limit. limit := s.tracer.provider.spanLimits.AttributePerLinkCountLimit diff --git a/vendor/go.opentelemetry.io/otel/sdk/trace/span_exporter.go b/vendor/go.opentelemetry.io/otel/sdk/trace/span_exporter.go index 6bdda3d94a..fad839a24e 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/trace/span_exporter.go +++ b/vendor/go.opentelemetry.io/otel/sdk/trace/span_exporter.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package trace // import "go.opentelemetry.io/otel/sdk/trace" +package trace import "context" diff --git a/vendor/go.opentelemetry.io/otel/sdk/trace/span_limits.go b/vendor/go.opentelemetry.io/otel/sdk/trace/span_limits.go index 348ee0e808..5ee15a8848 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/trace/span_limits.go +++ b/vendor/go.opentelemetry.io/otel/sdk/trace/span_limits.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package trace // import "go.opentelemetry.io/otel/sdk/trace" +package trace import "go.opentelemetry.io/otel/sdk/trace/internal/env" @@ -35,10 +35,10 @@ const ( type SpanLimits struct { // AttributeValueLengthLimit is the maximum allowed attribute value length. // - // This limit only applies to string, string slice, byte slice, and slice attribute - // values. Any string and byte slice longer than this value will be truncated to this - // length. For slice attribute values, the limit is applied to each string and byte slice - // element recursively. + // This limit only applies to string, string slice, byte slice, slice, and + // map attribute values. Any string and byte slice longer than this value + // will be truncated to this length. For slice and map attribute values, + // the limit is applied recursively to contained values. // // Setting this to a negative value means no limit is applied. AttributeValueLengthLimit int diff --git a/vendor/go.opentelemetry.io/otel/sdk/trace/span_processor.go b/vendor/go.opentelemetry.io/otel/sdk/trace/span_processor.go index af7f9177fc..ffd093a2f7 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/trace/span_processor.go +++ b/vendor/go.opentelemetry.io/otel/sdk/trace/span_processor.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package trace // import "go.opentelemetry.io/otel/sdk/trace" +package trace import ( "context" diff --git a/vendor/go.opentelemetry.io/otel/sdk/trace/tracer.go b/vendor/go.opentelemetry.io/otel/sdk/trace/tracer.go index e1d08fd4d8..be576ffe08 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/trace/tracer.go +++ b/vendor/go.opentelemetry.io/otel/sdk/trace/tracer.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package trace // import "go.opentelemetry.io/otel/sdk/trace" +package trace import ( "context" diff --git a/vendor/go.opentelemetry.io/otel/sdk/trace/tracetest/exporter.go b/vendor/go.opentelemetry.io/otel/sdk/trace/tracetest/exporter.go index e12fa67e63..4aa2d562fd 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/trace/tracetest/exporter.go +++ b/vendor/go.opentelemetry.io/otel/sdk/trace/tracetest/exporter.go @@ -4,7 +4,7 @@ // Package tracetest is a testing helper package for the SDK. User can // configure no-op or in-memory exporters to verify different SDK behaviors or // custom instrumentation. -package tracetest // import "go.opentelemetry.io/otel/sdk/trace/tracetest" +package tracetest import ( "context" diff --git a/vendor/go.opentelemetry.io/otel/sdk/trace/tracetest/recorder.go b/vendor/go.opentelemetry.io/otel/sdk/trace/tracetest/recorder.go index ca63038f34..11e3d5b3f6 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/trace/tracetest/recorder.go +++ b/vendor/go.opentelemetry.io/otel/sdk/trace/tracetest/recorder.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package tracetest // import "go.opentelemetry.io/otel/sdk/trace/tracetest" +package tracetest import ( "context" diff --git a/vendor/go.opentelemetry.io/otel/sdk/trace/tracetest/span.go b/vendor/go.opentelemetry.io/otel/sdk/trace/tracetest/span.go index 12b384b088..6ee1b3f985 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/trace/tracetest/span.go +++ b/vendor/go.opentelemetry.io/otel/sdk/trace/tracetest/span.go @@ -1,7 +1,7 @@ // Copyright The OpenTelemetry Authors // SPDX-License-Identifier: Apache-2.0 -package tracetest // import "go.opentelemetry.io/otel/sdk/trace/tracetest" +package tracetest import ( "time" diff --git a/vendor/go.opentelemetry.io/otel/sdk/version.go b/vendor/go.opentelemetry.io/otel/sdk/version.go index 218dce1f56..1619fb3fa1 100644 --- a/vendor/go.opentelemetry.io/otel/sdk/version.go +++ b/vendor/go.opentelemetry.io/otel/sdk/version.go @@ -2,9 +2,9 @@ // SPDX-License-Identifier: Apache-2.0 // Package sdk provides the OpenTelemetry default SDK for Go. -package sdk // import "go.opentelemetry.io/otel/sdk" +package sdk // Version is the current release version of the OpenTelemetry SDK in use. func Version() string { - return "1.44.0" + return "1.45.0" } diff --git a/vendor/go.opentelemetry.io/otel/semconv/v1.40.0/MIGRATION.md b/vendor/go.opentelemetry.io/otel/semconv/v1.40.0/MIGRATION.md deleted file mode 100644 index e246b1692d..0000000000 --- a/vendor/go.opentelemetry.io/otel/semconv/v1.40.0/MIGRATION.md +++ /dev/null @@ -1,27 +0,0 @@ - -# Migration from v1.39.0 to v1.40.0 - -The `go.opentelemetry.io/otel/semconv/v1.40.0` package should be a drop-in replacement for `go.opentelemetry.io/otel/semconv/v1.39.0` with the following exceptions. - -## Removed - -The following declarations have been removed. -Refer to the [OpenTelemetry Semantic Conventions documentation] for deprecation instructions. - -If the type is not listed in the documentation as deprecated, it has been removed in this version due to lack of applicability or use. -If you use any of these non-deprecated declarations in your Go application, please [open an issue] describing your use-case. - -- `ErrorMessage` -- `ErrorMessageKey` -- `RPCMessageCompressedSize` -- `RPCMessageCompressedSizeKey` -- `RPCMessageID` -- `RPCMessageIDKey` -- `RPCMessageTypeKey` -- `RPCMessageTypeReceived` -- `RPCMessageTypeSent` -- `RPCMessageUncompressedSize` -- `RPCMessageUncompressedSizeKey` - -[OpenTelemetry Semantic Conventions documentation]: https://github.com/open-telemetry/semantic-conventions -[open an issue]: https://github.com/open-telemetry/opentelemetry-go/issues/new?template=Blank+issue diff --git a/vendor/go.opentelemetry.io/otel/semconv/v1.40.0/README.md b/vendor/go.opentelemetry.io/otel/semconv/v1.40.0/README.md deleted file mode 100644 index c51b7fb7b0..0000000000 --- a/vendor/go.opentelemetry.io/otel/semconv/v1.40.0/README.md +++ /dev/null @@ -1,3 +0,0 @@ -# Semconv v1.40.0 - -[![PkgGoDev](https://pkg.go.dev/badge/go.opentelemetry.io/otel/semconv/v1.40.0)](https://pkg.go.dev/go.opentelemetry.io/otel/semconv/v1.40.0) diff --git a/vendor/go.opentelemetry.io/otel/semconv/v1.40.0/attribute_group.go b/vendor/go.opentelemetry.io/otel/semconv/v1.40.0/attribute_group.go deleted file mode 100644 index eb6f8fdf4b..0000000000 --- a/vendor/go.opentelemetry.io/otel/semconv/v1.40.0/attribute_group.go +++ /dev/null @@ -1,16865 +0,0 @@ -// Copyright The OpenTelemetry Authors -// SPDX-License-Identifier: Apache-2.0 - -// Code generated from semantic convention specification. DO NOT EDIT. - -package semconv - -import "go.opentelemetry.io/otel/attribute" - -// Namespace: android -const ( - // AndroidAppStateKey is the attribute Key conforming to the "android.app.state" - // semantic conventions. It represents the this attribute represents the state - // of the application. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "created" - // Note: The Android lifecycle states are defined in - // [Activity lifecycle callbacks], and from which the `OS identifiers` are - // derived. - // - // [Activity lifecycle callbacks]: https://developer.android.com/guide/components/activities/activity-lifecycle#lc - AndroidAppStateKey = attribute.Key("android.app.state") - - // AndroidOSAPILevelKey is the attribute Key conforming to the - // "android.os.api_level" semantic conventions. It represents the uniquely - // identifies the framework API revision offered by a version (`os.version`) of - // the android operating system. More information can be found in the - // [Android API levels documentation]. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "33", "32" - // - // [Android API levels documentation]: https://developer.android.com/guide/topics/manifest/uses-sdk-element#ApiLevels - AndroidOSAPILevelKey = attribute.Key("android.os.api_level") -) - -// AndroidOSAPILevel returns an attribute KeyValue conforming to the -// "android.os.api_level" semantic conventions. It represents the uniquely -// identifies the framework API revision offered by a version (`os.version`) of -// the android operating system. More information can be found in the -// [Android API levels documentation]. -// -// [Android API levels documentation]: https://developer.android.com/guide/topics/manifest/uses-sdk-element#ApiLevels -func AndroidOSAPILevel(val string) attribute.KeyValue { - return AndroidOSAPILevelKey.String(val) -} - -// Enum values for android.app.state -var ( - // Any time before Activity.onResume() or, if the app has no Activity, - // Context.startService() has been called in the app for the first time. - // - // Stability: development - AndroidAppStateCreated = AndroidAppStateKey.String("created") - // Any time after Activity.onPause() or, if the app has no Activity, - // Context.stopService() has been called when the app was in the foreground - // state. - // - // Stability: development - AndroidAppStateBackground = AndroidAppStateKey.String("background") - // Any time after Activity.onResume() or, if the app has no Activity, - // Context.startService() has been called when the app was in either the created - // or background states. - // - // Stability: development - AndroidAppStateForeground = AndroidAppStateKey.String("foreground") -) - -// Namespace: app -const ( - // AppBuildIDKey is the attribute Key conforming to the "app.build_id" semantic - // conventions. It represents the unique identifier for a particular build or - // compilation of the application. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "6cff0a7e-cefc-4668-96f5-1273d8b334d0", - // "9f2b833506aa6973a92fde9733e6271f", "my-app-1.0.0-code-123" - AppBuildIDKey = attribute.Key("app.build_id") - - // AppInstallationIDKey is the attribute Key conforming to the - // "app.installation.id" semantic conventions. It represents a unique identifier - // representing the installation of an application on a specific device. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "2ab2916d-a51f-4ac8-80ee-45ac31a28092" - // Note: Its value SHOULD persist across launches of the same application - // installation, including through application upgrades. - // It SHOULD change if the application is uninstalled or if all applications of - // the vendor are uninstalled. - // Additionally, users might be able to reset this value (e.g. by clearing - // application data). - // If an app is installed multiple times on the same device (e.g. in different - // accounts on Android), each `app.installation.id` SHOULD have a different - // value. - // If multiple OpenTelemetry SDKs are used within the same application, they - // SHOULD use the same value for `app.installation.id`. - // Hardware IDs (e.g. serial number, IMEI, MAC address) MUST NOT be used as the - // `app.installation.id`. - // - // For iOS, this value SHOULD be equal to the [vendor identifier]. - // - // For Android, examples of `app.installation.id` implementations include: - // - // - [Firebase Installation ID]. - // - A globally unique UUID which is persisted across sessions in your - // application. - // - [App set ID]. - // - [`Settings.getString(Settings.Secure.ANDROID_ID)`]. - // - // More information about Android identifier best practices can be found in the - // [Android user data IDs guide]. - // - // [vendor identifier]: https://developer.apple.com/documentation/uikit/uidevice/identifierforvendor - // [Firebase Installation ID]: https://firebase.google.com/docs/projects/manage-installations - // [App set ID]: https://developer.android.com/identity/app-set-id - // [`Settings.getString(Settings.Secure.ANDROID_ID)`]: https://developer.android.com/reference/android/provider/Settings.Secure#ANDROID_ID - // [Android user data IDs guide]: https://developer.android.com/training/articles/user-data-ids - AppInstallationIDKey = attribute.Key("app.installation.id") - - // AppJankFrameCountKey is the attribute Key conforming to the - // "app.jank.frame_count" semantic conventions. It represents a number of frame - // renders that experienced jank. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 9, 42 - // Note: Depending on platform limitations, the value provided MAY be - // approximation. - AppJankFrameCountKey = attribute.Key("app.jank.frame_count") - - // AppJankPeriodKey is the attribute Key conforming to the "app.jank.period" - // semantic conventions. It represents the time period, in seconds, for which - // this jank is being reported. - // - // Type: double - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 1.0, 5.0, 10.24 - AppJankPeriodKey = attribute.Key("app.jank.period") - - // AppJankThresholdKey is the attribute Key conforming to the - // "app.jank.threshold" semantic conventions. It represents the minimum - // rendering threshold for this jank, in seconds. - // - // Type: double - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 0.016, 0.7, 1.024 - AppJankThresholdKey = attribute.Key("app.jank.threshold") - - // AppScreenCoordinateXKey is the attribute Key conforming to the - // "app.screen.coordinate.x" semantic conventions. It represents the x - // (horizontal) coordinate of a screen coordinate, in screen pixels. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 0, 131 - AppScreenCoordinateXKey = attribute.Key("app.screen.coordinate.x") - - // AppScreenCoordinateYKey is the attribute Key conforming to the - // "app.screen.coordinate.y" semantic conventions. It represents the y - // (vertical) component of a screen coordinate, in screen pixels. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 12, 99 - AppScreenCoordinateYKey = attribute.Key("app.screen.coordinate.y") - - // AppScreenIDKey is the attribute Key conforming to the "app.screen.id" - // semantic conventions. It represents an identifier that uniquely - // differentiates this screen from other screens in the same application. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "f9bc787d-ff05-48ad-90e1-fca1d46130b3", - // "com.example.app.MainActivity", "com.example.shop.ProductDetailFragment", - // "MyApp.ProfileView", "MyApp.ProfileViewController" - // Note: A screen represents only the part of the device display drawn by the - // app. It typically contains multiple widgets or UI components and is larger in - // scope than individual widgets. Multiple screens can coexist on the same - // display simultaneously (e.g., split view on tablets). - AppScreenIDKey = attribute.Key("app.screen.id") - - // AppScreenNameKey is the attribute Key conforming to the "app.screen.name" - // semantic conventions. It represents the name of an application screen. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "MainActivity", "ProductDetailFragment", "ProfileView", - // "ProfileViewController" - // Note: A screen represents only the part of the device display drawn by the - // app. It typically contains multiple widgets or UI components and is larger in - // scope than individual widgets. Multiple screens can coexist on the same - // display simultaneously (e.g., split view on tablets). - AppScreenNameKey = attribute.Key("app.screen.name") - - // AppWidgetIDKey is the attribute Key conforming to the "app.widget.id" - // semantic conventions. It represents an identifier that uniquely - // differentiates this widget from other widgets in the same application. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "f9bc787d-ff05-48ad-90e1-fca1d46130b3", "submit_order_1829" - // Note: A widget is an application component, typically an on-screen visual GUI - // element. - AppWidgetIDKey = attribute.Key("app.widget.id") - - // AppWidgetNameKey is the attribute Key conforming to the "app.widget.name" - // semantic conventions. It represents the name of an application widget. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "submit", "attack", "Clear Cart" - // Note: A widget is an application component, typically an on-screen visual GUI - // element. - AppWidgetNameKey = attribute.Key("app.widget.name") -) - -// AppBuildID returns an attribute KeyValue conforming to the "app.build_id" -// semantic conventions. It represents the unique identifier for a particular -// build or compilation of the application. -func AppBuildID(val string) attribute.KeyValue { - return AppBuildIDKey.String(val) -} - -// AppInstallationID returns an attribute KeyValue conforming to the -// "app.installation.id" semantic conventions. It represents a unique identifier -// representing the installation of an application on a specific device. -func AppInstallationID(val string) attribute.KeyValue { - return AppInstallationIDKey.String(val) -} - -// AppJankFrameCount returns an attribute KeyValue conforming to the -// "app.jank.frame_count" semantic conventions. It represents a number of frame -// renders that experienced jank. -func AppJankFrameCount(val int) attribute.KeyValue { - return AppJankFrameCountKey.Int(val) -} - -// AppJankPeriod returns an attribute KeyValue conforming to the -// "app.jank.period" semantic conventions. It represents the time period, in -// seconds, for which this jank is being reported. -func AppJankPeriod(val float64) attribute.KeyValue { - return AppJankPeriodKey.Float64(val) -} - -// AppJankThreshold returns an attribute KeyValue conforming to the -// "app.jank.threshold" semantic conventions. It represents the minimum rendering -// threshold for this jank, in seconds. -func AppJankThreshold(val float64) attribute.KeyValue { - return AppJankThresholdKey.Float64(val) -} - -// AppScreenCoordinateX returns an attribute KeyValue conforming to the -// "app.screen.coordinate.x" semantic conventions. It represents the x -// (horizontal) coordinate of a screen coordinate, in screen pixels. -func AppScreenCoordinateX(val int) attribute.KeyValue { - return AppScreenCoordinateXKey.Int(val) -} - -// AppScreenCoordinateY returns an attribute KeyValue conforming to the -// "app.screen.coordinate.y" semantic conventions. It represents the y (vertical) -// component of a screen coordinate, in screen pixels. -func AppScreenCoordinateY(val int) attribute.KeyValue { - return AppScreenCoordinateYKey.Int(val) -} - -// AppScreenID returns an attribute KeyValue conforming to the "app.screen.id" -// semantic conventions. It represents an identifier that uniquely differentiates -// this screen from other screens in the same application. -func AppScreenID(val string) attribute.KeyValue { - return AppScreenIDKey.String(val) -} - -// AppScreenName returns an attribute KeyValue conforming to the -// "app.screen.name" semantic conventions. It represents the name of an -// application screen. -func AppScreenName(val string) attribute.KeyValue { - return AppScreenNameKey.String(val) -} - -// AppWidgetID returns an attribute KeyValue conforming to the "app.widget.id" -// semantic conventions. It represents an identifier that uniquely differentiates -// this widget from other widgets in the same application. -func AppWidgetID(val string) attribute.KeyValue { - return AppWidgetIDKey.String(val) -} - -// AppWidgetName returns an attribute KeyValue conforming to the -// "app.widget.name" semantic conventions. It represents the name of an -// application widget. -func AppWidgetName(val string) attribute.KeyValue { - return AppWidgetNameKey.String(val) -} - -// Namespace: artifact -const ( - // ArtifactAttestationFilenameKey is the attribute Key conforming to the - // "artifact.attestation.filename" semantic conventions. It represents the - // provenance filename of the built attestation which directly relates to the - // build artifact filename. This filename SHOULD accompany the artifact at - // publish time. See the [SLSA Relationship] specification for more information. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "golang-binary-amd64-v0.1.0.attestation", - // "docker-image-amd64-v0.1.0.intoto.json1", "release-1.tar.gz.attestation", - // "file-name-package.tar.gz.intoto.json1" - // - // [SLSA Relationship]: https://slsa.dev/spec/v1.0/distributing-provenance#relationship-between-artifacts-and-attestations - ArtifactAttestationFilenameKey = attribute.Key("artifact.attestation.filename") - - // ArtifactAttestationHashKey is the attribute Key conforming to the - // "artifact.attestation.hash" semantic conventions. It represents the full - // [hash value (see glossary)], of the built attestation. Some envelopes in the - // [software attestation space] also refer to this as the **digest**. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "1b31dfcd5b7f9267bf2ff47651df1cfb9147b9e4df1f335accf65b4cda498408" - // - // [hash value (see glossary)]: https://nvlpubs.nist.gov/nistpubs/FIPS/NIST.FIPS.186-5.pdf - // [software attestation space]: https://github.com/in-toto/attestation/tree/main/spec - ArtifactAttestationHashKey = attribute.Key("artifact.attestation.hash") - - // ArtifactAttestationIDKey is the attribute Key conforming to the - // "artifact.attestation.id" semantic conventions. It represents the id of the - // build [software attestation]. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "123" - // - // [software attestation]: https://slsa.dev/attestation-model - ArtifactAttestationIDKey = attribute.Key("artifact.attestation.id") - - // ArtifactFilenameKey is the attribute Key conforming to the - // "artifact.filename" semantic conventions. It represents the human readable - // file name of the artifact, typically generated during build and release - // processes. Often includes the package name and version in the file name. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "golang-binary-amd64-v0.1.0", "docker-image-amd64-v0.1.0", - // "release-1.tar.gz", "file-name-package.tar.gz" - // Note: This file name can also act as the [Package Name] - // in cases where the package ecosystem maps accordingly. - // Additionally, the artifact [can be published] - // for others, but that is not a guarantee. - // - // [Package Name]: https://slsa.dev/spec/v1.0/terminology#package-model - // [can be published]: https://slsa.dev/spec/v1.0/terminology#software-supply-chain - ArtifactFilenameKey = attribute.Key("artifact.filename") - - // ArtifactHashKey is the attribute Key conforming to the "artifact.hash" - // semantic conventions. It represents the full [hash value (see glossary)], - // often found in checksum.txt on a release of the artifact and used to verify - // package integrity. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "9ff4c52759e2c4ac70b7d517bc7fcdc1cda631ca0045271ddd1b192544f8a3e9" - // Note: The specific algorithm used to create the cryptographic hash value is - // not defined. In situations where an artifact has multiple - // cryptographic hashes, it is up to the implementer to choose which - // hash value to set here; this should be the most secure hash algorithm - // that is suitable for the situation and consistent with the - // corresponding attestation. The implementer can then provide the other - // hash values through an additional set of attribute extensions as they - // deem necessary. - // - // [hash value (see glossary)]: https://nvlpubs.nist.gov/nistpubs/FIPS/NIST.FIPS.186-5.pdf - ArtifactHashKey = attribute.Key("artifact.hash") - - // ArtifactPurlKey is the attribute Key conforming to the "artifact.purl" - // semantic conventions. It represents the [Package URL] of the - // [package artifact] provides a standard way to identify and locate the - // packaged artifact. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "pkg:github/package-url/purl-spec@1209109710924", - // "pkg:npm/foo@12.12.3" - // - // [Package URL]: https://github.com/package-url/purl-spec - // [package artifact]: https://slsa.dev/spec/v1.0/terminology#package-model - ArtifactPurlKey = attribute.Key("artifact.purl") - - // ArtifactVersionKey is the attribute Key conforming to the "artifact.version" - // semantic conventions. It represents the version of the artifact. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "v0.1.0", "1.2.1", "122691-build" - ArtifactVersionKey = attribute.Key("artifact.version") -) - -// ArtifactAttestationFilename returns an attribute KeyValue conforming to the -// "artifact.attestation.filename" semantic conventions. It represents the -// provenance filename of the built attestation which directly relates to the -// build artifact filename. This filename SHOULD accompany the artifact at -// publish time. See the [SLSA Relationship] specification for more information. -// -// [SLSA Relationship]: https://slsa.dev/spec/v1.0/distributing-provenance#relationship-between-artifacts-and-attestations -func ArtifactAttestationFilename(val string) attribute.KeyValue { - return ArtifactAttestationFilenameKey.String(val) -} - -// ArtifactAttestationHash returns an attribute KeyValue conforming to the -// "artifact.attestation.hash" semantic conventions. It represents the full -// [hash value (see glossary)], of the built attestation. Some envelopes in the -// [software attestation space] also refer to this as the **digest**. -// -// [hash value (see glossary)]: https://nvlpubs.nist.gov/nistpubs/FIPS/NIST.FIPS.186-5.pdf -// [software attestation space]: https://github.com/in-toto/attestation/tree/main/spec -func ArtifactAttestationHash(val string) attribute.KeyValue { - return ArtifactAttestationHashKey.String(val) -} - -// ArtifactAttestationID returns an attribute KeyValue conforming to the -// "artifact.attestation.id" semantic conventions. It represents the id of the -// build [software attestation]. -// -// [software attestation]: https://slsa.dev/attestation-model -func ArtifactAttestationID(val string) attribute.KeyValue { - return ArtifactAttestationIDKey.String(val) -} - -// ArtifactFilename returns an attribute KeyValue conforming to the -// "artifact.filename" semantic conventions. It represents the human readable -// file name of the artifact, typically generated during build and release -// processes. Often includes the package name and version in the file name. -func ArtifactFilename(val string) attribute.KeyValue { - return ArtifactFilenameKey.String(val) -} - -// ArtifactHash returns an attribute KeyValue conforming to the "artifact.hash" -// semantic conventions. It represents the full [hash value (see glossary)], -// often found in checksum.txt on a release of the artifact and used to verify -// package integrity. -// -// [hash value (see glossary)]: https://nvlpubs.nist.gov/nistpubs/FIPS/NIST.FIPS.186-5.pdf -func ArtifactHash(val string) attribute.KeyValue { - return ArtifactHashKey.String(val) -} - -// ArtifactPurl returns an attribute KeyValue conforming to the "artifact.purl" -// semantic conventions. It represents the [Package URL] of the -// [package artifact] provides a standard way to identify and locate the packaged -// artifact. -// -// [Package URL]: https://github.com/package-url/purl-spec -// [package artifact]: https://slsa.dev/spec/v1.0/terminology#package-model -func ArtifactPurl(val string) attribute.KeyValue { - return ArtifactPurlKey.String(val) -} - -// ArtifactVersion returns an attribute KeyValue conforming to the -// "artifact.version" semantic conventions. It represents the version of the -// artifact. -func ArtifactVersion(val string) attribute.KeyValue { - return ArtifactVersionKey.String(val) -} - -// Namespace: aws -const ( - // AWSBedrockGuardrailIDKey is the attribute Key conforming to the - // "aws.bedrock.guardrail.id" semantic conventions. It represents the unique - // identifier of the AWS Bedrock Guardrail. A [guardrail] helps safeguard and - // prevent unwanted behavior from model responses or user messages. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "sgi5gkybzqak" - // - // [guardrail]: https://docs.aws.amazon.com/bedrock/latest/userguide/guardrails.html - AWSBedrockGuardrailIDKey = attribute.Key("aws.bedrock.guardrail.id") - - // AWSBedrockKnowledgeBaseIDKey is the attribute Key conforming to the - // "aws.bedrock.knowledge_base.id" semantic conventions. It represents the - // unique identifier of the AWS Bedrock Knowledge base. A [knowledge base] is a - // bank of information that can be queried by models to generate more relevant - // responses and augment prompts. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "XFWUPB9PAW" - // - // [knowledge base]: https://docs.aws.amazon.com/bedrock/latest/userguide/knowledge-base.html - AWSBedrockKnowledgeBaseIDKey = attribute.Key("aws.bedrock.knowledge_base.id") - - // AWSDynamoDBAttributeDefinitionsKey is the attribute Key conforming to the - // "aws.dynamodb.attribute_definitions" semantic conventions. It represents the - // JSON-serialized value of each item in the `AttributeDefinitions` request - // field. - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "{ "AttributeName": "string", "AttributeType": "string" }" - AWSDynamoDBAttributeDefinitionsKey = attribute.Key("aws.dynamodb.attribute_definitions") - - // AWSDynamoDBAttributesToGetKey is the attribute Key conforming to the - // "aws.dynamodb.attributes_to_get" semantic conventions. It represents the - // value of the `AttributesToGet` request parameter. - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "lives", "id" - AWSDynamoDBAttributesToGetKey = attribute.Key("aws.dynamodb.attributes_to_get") - - // AWSDynamoDBConsistentReadKey is the attribute Key conforming to the - // "aws.dynamodb.consistent_read" semantic conventions. It represents the value - // of the `ConsistentRead` request parameter. - // - // Type: boolean - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - AWSDynamoDBConsistentReadKey = attribute.Key("aws.dynamodb.consistent_read") - - // AWSDynamoDBConsumedCapacityKey is the attribute Key conforming to the - // "aws.dynamodb.consumed_capacity" semantic conventions. It represents the - // JSON-serialized value of each item in the `ConsumedCapacity` response field. - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "{ "CapacityUnits": number, "GlobalSecondaryIndexes": { "string" : - // { "CapacityUnits": number, "ReadCapacityUnits": number, "WriteCapacityUnits": - // number } }, "LocalSecondaryIndexes": { "string" : { "CapacityUnits": number, - // "ReadCapacityUnits": number, "WriteCapacityUnits": number } }, - // "ReadCapacityUnits": number, "Table": { "CapacityUnits": number, - // "ReadCapacityUnits": number, "WriteCapacityUnits": number }, "TableName": - // "string", "WriteCapacityUnits": number }" - AWSDynamoDBConsumedCapacityKey = attribute.Key("aws.dynamodb.consumed_capacity") - - // AWSDynamoDBCountKey is the attribute Key conforming to the - // "aws.dynamodb.count" semantic conventions. It represents the value of the - // `Count` response parameter. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 10 - AWSDynamoDBCountKey = attribute.Key("aws.dynamodb.count") - - // AWSDynamoDBExclusiveStartTableKey is the attribute Key conforming to the - // "aws.dynamodb.exclusive_start_table" semantic conventions. It represents the - // value of the `ExclusiveStartTableName` request parameter. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Users", "CatsTable" - AWSDynamoDBExclusiveStartTableKey = attribute.Key("aws.dynamodb.exclusive_start_table") - - // AWSDynamoDBGlobalSecondaryIndexUpdatesKey is the attribute Key conforming to - // the "aws.dynamodb.global_secondary_index_updates" semantic conventions. It - // represents the JSON-serialized value of each item in the - // `GlobalSecondaryIndexUpdates` request field. - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "{ "Create": { "IndexName": "string", "KeySchema": [ { - // "AttributeName": "string", "KeyType": "string" } ], "Projection": { - // "NonKeyAttributes": [ "string" ], "ProjectionType": "string" }, - // "ProvisionedThroughput": { "ReadCapacityUnits": number, "WriteCapacityUnits": - // number } }" - AWSDynamoDBGlobalSecondaryIndexUpdatesKey = attribute.Key("aws.dynamodb.global_secondary_index_updates") - - // AWSDynamoDBGlobalSecondaryIndexesKey is the attribute Key conforming to the - // "aws.dynamodb.global_secondary_indexes" semantic conventions. It represents - // the JSON-serialized value of each item of the `GlobalSecondaryIndexes` - // request field. - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "{ "IndexName": "string", "KeySchema": [ { "AttributeName": - // "string", "KeyType": "string" } ], "Projection": { "NonKeyAttributes": [ - // "string" ], "ProjectionType": "string" }, "ProvisionedThroughput": { - // "ReadCapacityUnits": number, "WriteCapacityUnits": number } }" - AWSDynamoDBGlobalSecondaryIndexesKey = attribute.Key("aws.dynamodb.global_secondary_indexes") - - // AWSDynamoDBIndexNameKey is the attribute Key conforming to the - // "aws.dynamodb.index_name" semantic conventions. It represents the value of - // the `IndexName` request parameter. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "name_to_group" - AWSDynamoDBIndexNameKey = attribute.Key("aws.dynamodb.index_name") - - // AWSDynamoDBItemCollectionMetricsKey is the attribute Key conforming to the - // "aws.dynamodb.item_collection_metrics" semantic conventions. It represents - // the JSON-serialized value of the `ItemCollectionMetrics` response field. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "{ "string" : [ { "ItemCollectionKey": { "string" : { "B": blob, - // "BOOL": boolean, "BS": [ blob ], "L": [ "AttributeValue" ], "M": { "string" : - // "AttributeValue" }, "N": "string", "NS": [ "string" ], "NULL": boolean, "S": - // "string", "SS": [ "string" ] } }, "SizeEstimateRangeGB": [ number ] } ] }" - AWSDynamoDBItemCollectionMetricsKey = attribute.Key("aws.dynamodb.item_collection_metrics") - - // AWSDynamoDBLimitKey is the attribute Key conforming to the - // "aws.dynamodb.limit" semantic conventions. It represents the value of the - // `Limit` request parameter. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 10 - AWSDynamoDBLimitKey = attribute.Key("aws.dynamodb.limit") - - // AWSDynamoDBLocalSecondaryIndexesKey is the attribute Key conforming to the - // "aws.dynamodb.local_secondary_indexes" semantic conventions. It represents - // the JSON-serialized value of each item of the `LocalSecondaryIndexes` request - // field. - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "{ "IndexArn": "string", "IndexName": "string", "IndexSizeBytes": - // number, "ItemCount": number, "KeySchema": [ { "AttributeName": "string", - // "KeyType": "string" } ], "Projection": { "NonKeyAttributes": [ "string" ], - // "ProjectionType": "string" } }" - AWSDynamoDBLocalSecondaryIndexesKey = attribute.Key("aws.dynamodb.local_secondary_indexes") - - // AWSDynamoDBProjectionKey is the attribute Key conforming to the - // "aws.dynamodb.projection" semantic conventions. It represents the value of - // the `ProjectionExpression` request parameter. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Title", "Title, Price, Color", "Title, Description, RelatedItems, - // ProductReviews" - AWSDynamoDBProjectionKey = attribute.Key("aws.dynamodb.projection") - - // AWSDynamoDBProvisionedReadCapacityKey is the attribute Key conforming to the - // "aws.dynamodb.provisioned_read_capacity" semantic conventions. It represents - // the value of the `ProvisionedThroughput.ReadCapacityUnits` request parameter. - // - // Type: double - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 1.0, 2.0 - AWSDynamoDBProvisionedReadCapacityKey = attribute.Key("aws.dynamodb.provisioned_read_capacity") - - // AWSDynamoDBProvisionedWriteCapacityKey is the attribute Key conforming to the - // "aws.dynamodb.provisioned_write_capacity" semantic conventions. It represents - // the value of the `ProvisionedThroughput.WriteCapacityUnits` request - // parameter. - // - // Type: double - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 1.0, 2.0 - AWSDynamoDBProvisionedWriteCapacityKey = attribute.Key("aws.dynamodb.provisioned_write_capacity") - - // AWSDynamoDBScanForwardKey is the attribute Key conforming to the - // "aws.dynamodb.scan_forward" semantic conventions. It represents the value of - // the `ScanIndexForward` request parameter. - // - // Type: boolean - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - AWSDynamoDBScanForwardKey = attribute.Key("aws.dynamodb.scan_forward") - - // AWSDynamoDBScannedCountKey is the attribute Key conforming to the - // "aws.dynamodb.scanned_count" semantic conventions. It represents the value of - // the `ScannedCount` response parameter. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 50 - AWSDynamoDBScannedCountKey = attribute.Key("aws.dynamodb.scanned_count") - - // AWSDynamoDBSegmentKey is the attribute Key conforming to the - // "aws.dynamodb.segment" semantic conventions. It represents the value of the - // `Segment` request parameter. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 10 - AWSDynamoDBSegmentKey = attribute.Key("aws.dynamodb.segment") - - // AWSDynamoDBSelectKey is the attribute Key conforming to the - // "aws.dynamodb.select" semantic conventions. It represents the value of the - // `Select` request parameter. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "ALL_ATTRIBUTES", "COUNT" - AWSDynamoDBSelectKey = attribute.Key("aws.dynamodb.select") - - // AWSDynamoDBTableCountKey is the attribute Key conforming to the - // "aws.dynamodb.table_count" semantic conventions. It represents the number of - // items in the `TableNames` response parameter. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 20 - AWSDynamoDBTableCountKey = attribute.Key("aws.dynamodb.table_count") - - // AWSDynamoDBTableNamesKey is the attribute Key conforming to the - // "aws.dynamodb.table_names" semantic conventions. It represents the keys in - // the `RequestItems` object field. - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Users", "Cats" - AWSDynamoDBTableNamesKey = attribute.Key("aws.dynamodb.table_names") - - // AWSDynamoDBTotalSegmentsKey is the attribute Key conforming to the - // "aws.dynamodb.total_segments" semantic conventions. It represents the value - // of the `TotalSegments` request parameter. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 100 - AWSDynamoDBTotalSegmentsKey = attribute.Key("aws.dynamodb.total_segments") - - // AWSECSClusterARNKey is the attribute Key conforming to the - // "aws.ecs.cluster.arn" semantic conventions. It represents the ARN of an - // [ECS cluster]. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "arn:aws:ecs:us-west-2:123456789123:cluster/my-cluster" - // - // [ECS cluster]: https://docs.aws.amazon.com/AmazonECS/latest/developerguide/clusters.html - AWSECSClusterARNKey = attribute.Key("aws.ecs.cluster.arn") - - // AWSECSContainerARNKey is the attribute Key conforming to the - // "aws.ecs.container.arn" semantic conventions. It represents the Amazon - // Resource Name (ARN) of an [ECS container instance]. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // "arn:aws:ecs:us-west-1:123456789123:container/32624152-9086-4f0e-acae-1a75b14fe4d9" - // - // [ECS container instance]: https://docs.aws.amazon.com/AmazonECS/latest/developerguide/ECS_instances.html - AWSECSContainerARNKey = attribute.Key("aws.ecs.container.arn") - - // AWSECSLaunchtypeKey is the attribute Key conforming to the - // "aws.ecs.launchtype" semantic conventions. It represents the [launch type] - // for an ECS task. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // - // [launch type]: https://docs.aws.amazon.com/AmazonECS/latest/developerguide/launch_types.html - AWSECSLaunchtypeKey = attribute.Key("aws.ecs.launchtype") - - // AWSECSTaskARNKey is the attribute Key conforming to the "aws.ecs.task.arn" - // semantic conventions. It represents the ARN of a running [ECS task]. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // "arn:aws:ecs:us-west-1:123456789123:task/10838bed-421f-43ef-870a-f43feacbbb5b", - // "arn:aws:ecs:us-west-1:123456789123:task/my-cluster/task-id/23ebb8ac-c18f-46c6-8bbe-d55d0e37cfbd" - // - // [ECS task]: https://docs.aws.amazon.com/AmazonECS/latest/developerguide/ecs-account-settings.html#ecs-resource-ids - AWSECSTaskARNKey = attribute.Key("aws.ecs.task.arn") - - // AWSECSTaskFamilyKey is the attribute Key conforming to the - // "aws.ecs.task.family" semantic conventions. It represents the family name of - // the [ECS task definition] used to create the ECS task. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "opentelemetry-family" - // - // [ECS task definition]: https://docs.aws.amazon.com/AmazonECS/latest/developerguide/task_definitions.html - AWSECSTaskFamilyKey = attribute.Key("aws.ecs.task.family") - - // AWSECSTaskIDKey is the attribute Key conforming to the "aws.ecs.task.id" - // semantic conventions. It represents the ID of a running ECS task. The ID MUST - // be extracted from `task.arn`. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "10838bed-421f-43ef-870a-f43feacbbb5b", - // "23ebb8ac-c18f-46c6-8bbe-d55d0e37cfbd" - AWSECSTaskIDKey = attribute.Key("aws.ecs.task.id") - - // AWSECSTaskRevisionKey is the attribute Key conforming to the - // "aws.ecs.task.revision" semantic conventions. It represents the revision for - // the task definition used to create the ECS task. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "8", "26" - AWSECSTaskRevisionKey = attribute.Key("aws.ecs.task.revision") - - // AWSEKSClusterARNKey is the attribute Key conforming to the - // "aws.eks.cluster.arn" semantic conventions. It represents the ARN of an EKS - // cluster. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "arn:aws:ecs:us-west-2:123456789123:cluster/my-cluster" - AWSEKSClusterARNKey = attribute.Key("aws.eks.cluster.arn") - - // AWSExtendedRequestIDKey is the attribute Key conforming to the - // "aws.extended_request_id" semantic conventions. It represents the AWS - // extended request ID as returned in the response header `x-amz-id-2`. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // "wzHcyEWfmOGDIE5QOhTAqFDoDWP3y8IUvpNINCwL9N4TEHbUw0/gZJ+VZTmCNCWR7fezEN3eCiQ=" - AWSExtendedRequestIDKey = attribute.Key("aws.extended_request_id") - - // AWSKinesisStreamNameKey is the attribute Key conforming to the - // "aws.kinesis.stream_name" semantic conventions. It represents the name of the - // AWS Kinesis [stream] the request refers to. Corresponds to the - // `--stream-name` parameter of the Kinesis [describe-stream] operation. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "some-stream-name" - // - // [stream]: https://docs.aws.amazon.com/streams/latest/dev/introduction.html - // [describe-stream]: https://docs.aws.amazon.com/cli/latest/reference/kinesis/describe-stream.html - AWSKinesisStreamNameKey = attribute.Key("aws.kinesis.stream_name") - - // AWSLambdaInvokedARNKey is the attribute Key conforming to the - // "aws.lambda.invoked_arn" semantic conventions. It represents the full invoked - // ARN as provided on the `Context` passed to the function ( - // `Lambda-Runtime-Invoked-Function-Arn` header on the - // `/runtime/invocation/next` applicable). - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "arn:aws:lambda:us-east-1:123456:function:myfunction:myalias" - // Note: This may be different from `cloud.resource_id` if an alias is involved. - AWSLambdaInvokedARNKey = attribute.Key("aws.lambda.invoked_arn") - - // AWSLambdaResourceMappingIDKey is the attribute Key conforming to the - // "aws.lambda.resource_mapping.id" semantic conventions. It represents the UUID - // of the [AWS Lambda EvenSource Mapping]. An event source is mapped to a lambda - // function. It's contents are read by Lambda and used to trigger a function. - // This isn't available in the lambda execution context or the lambda runtime - // environtment. This is going to be populated by the AWS SDK for each language - // when that UUID is present. Some of these operations are - // Create/Delete/Get/List/Update EventSourceMapping. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "587ad24b-03b9-4413-8202-bbd56b36e5b7" - // - // [AWS Lambda EvenSource Mapping]: https://docs.aws.amazon.com/AWSCloudFormation/latest/UserGuide/aws-resource-lambda-eventsourcemapping.html - AWSLambdaResourceMappingIDKey = attribute.Key("aws.lambda.resource_mapping.id") - - // AWSLogGroupARNsKey is the attribute Key conforming to the - // "aws.log.group.arns" semantic conventions. It represents the Amazon Resource - // Name(s) (ARN) of the AWS log group(s). - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "arn:aws:logs:us-west-1:123456789012:log-group:/aws/my/group:*" - // Note: See the [log group ARN format documentation]. - // - // [log group ARN format documentation]: https://docs.aws.amazon.com/AmazonCloudWatch/latest/logs/iam-access-control-overview-cwl.html#CWL_ARN_Format - AWSLogGroupARNsKey = attribute.Key("aws.log.group.arns") - - // AWSLogGroupNamesKey is the attribute Key conforming to the - // "aws.log.group.names" semantic conventions. It represents the name(s) of the - // AWS log group(s) an application is writing to. - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "/aws/lambda/my-function", "opentelemetry-service" - // Note: Multiple log groups must be supported for cases like multi-container - // applications, where a single application has sidecar containers, and each - // write to their own log group. - AWSLogGroupNamesKey = attribute.Key("aws.log.group.names") - - // AWSLogStreamARNsKey is the attribute Key conforming to the - // "aws.log.stream.arns" semantic conventions. It represents the ARN(s) of the - // AWS log stream(s). - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // "arn:aws:logs:us-west-1:123456789012:log-group:/aws/my/group:log-stream:logs/main/10838bed-421f-43ef-870a-f43feacbbb5b" - // Note: See the [log stream ARN format documentation]. One log group can - // contain several log streams, so these ARNs necessarily identify both a log - // group and a log stream. - // - // [log stream ARN format documentation]: https://docs.aws.amazon.com/AmazonCloudWatch/latest/logs/iam-access-control-overview-cwl.html#CWL_ARN_Format - AWSLogStreamARNsKey = attribute.Key("aws.log.stream.arns") - - // AWSLogStreamNamesKey is the attribute Key conforming to the - // "aws.log.stream.names" semantic conventions. It represents the name(s) of the - // AWS log stream(s) an application is writing to. - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "logs/main/10838bed-421f-43ef-870a-f43feacbbb5b" - AWSLogStreamNamesKey = attribute.Key("aws.log.stream.names") - - // AWSRequestIDKey is the attribute Key conforming to the "aws.request_id" - // semantic conventions. It represents the AWS request ID as returned in the - // response headers `x-amzn-requestid`, `x-amzn-request-id` or - // `x-amz-request-id`. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "79b9da39-b7ae-508a-a6bc-864b2829c622", "C9ER4AJX75574TDJ" - AWSRequestIDKey = attribute.Key("aws.request_id") - - // AWSS3BucketKey is the attribute Key conforming to the "aws.s3.bucket" - // semantic conventions. It represents the S3 bucket name the request refers to. - // Corresponds to the `--bucket` parameter of the [S3 API] operations. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "some-bucket-name" - // Note: The `bucket` attribute is applicable to all S3 operations that - // reference a bucket, i.e. that require the bucket name as a mandatory - // parameter. - // This applies to almost all S3 operations except `list-buckets`. - // - // [S3 API]: https://docs.aws.amazon.com/cli/latest/reference/s3api/index.html - AWSS3BucketKey = attribute.Key("aws.s3.bucket") - - // AWSS3CopySourceKey is the attribute Key conforming to the - // "aws.s3.copy_source" semantic conventions. It represents the source object - // (in the form `bucket`/`key`) for the copy operation. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "someFile.yml" - // Note: The `copy_source` attribute applies to S3 copy operations and - // corresponds to the `--copy-source` parameter - // of the [copy-object operation within the S3 API]. - // This applies in particular to the following operations: - // - // - [copy-object] - // - [upload-part-copy] - // - // - // [copy-object operation within the S3 API]: https://docs.aws.amazon.com/cli/latest/reference/s3api/copy-object.html - // [copy-object]: https://docs.aws.amazon.com/cli/latest/reference/s3api/copy-object.html - // [upload-part-copy]: https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part-copy.html - AWSS3CopySourceKey = attribute.Key("aws.s3.copy_source") - - // AWSS3DeleteKey is the attribute Key conforming to the "aws.s3.delete" - // semantic conventions. It represents the delete request container that - // specifies the objects to be deleted. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // "Objects=[{Key=string,VersionId=string},{Key=string,VersionId=string}],Quiet=boolean" - // Note: The `delete` attribute is only applicable to the [delete-object] - // operation. - // The `delete` attribute corresponds to the `--delete` parameter of the - // [delete-objects operation within the S3 API]. - // - // [delete-object]: https://docs.aws.amazon.com/cli/latest/reference/s3api/delete-object.html - // [delete-objects operation within the S3 API]: https://docs.aws.amazon.com/cli/latest/reference/s3api/delete-objects.html - AWSS3DeleteKey = attribute.Key("aws.s3.delete") - - // AWSS3KeyKey is the attribute Key conforming to the "aws.s3.key" semantic - // conventions. It represents the S3 object key the request refers to. - // Corresponds to the `--key` parameter of the [S3 API] operations. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "someFile.yml" - // Note: The `key` attribute is applicable to all object-related S3 operations, - // i.e. that require the object key as a mandatory parameter. - // This applies in particular to the following operations: - // - // - [copy-object] - // - [delete-object] - // - [get-object] - // - [head-object] - // - [put-object] - // - [restore-object] - // - [select-object-content] - // - [abort-multipart-upload] - // - [complete-multipart-upload] - // - [create-multipart-upload] - // - [list-parts] - // - [upload-part] - // - [upload-part-copy] - // - // - // [S3 API]: https://docs.aws.amazon.com/cli/latest/reference/s3api/index.html - // [copy-object]: https://docs.aws.amazon.com/cli/latest/reference/s3api/copy-object.html - // [delete-object]: https://docs.aws.amazon.com/cli/latest/reference/s3api/delete-object.html - // [get-object]: https://docs.aws.amazon.com/cli/latest/reference/s3api/get-object.html - // [head-object]: https://docs.aws.amazon.com/cli/latest/reference/s3api/head-object.html - // [put-object]: https://docs.aws.amazon.com/cli/latest/reference/s3api/put-object.html - // [restore-object]: https://docs.aws.amazon.com/cli/latest/reference/s3api/restore-object.html - // [select-object-content]: https://docs.aws.amazon.com/cli/latest/reference/s3api/select-object-content.html - // [abort-multipart-upload]: https://docs.aws.amazon.com/cli/latest/reference/s3api/abort-multipart-upload.html - // [complete-multipart-upload]: https://docs.aws.amazon.com/cli/latest/reference/s3api/complete-multipart-upload.html - // [create-multipart-upload]: https://docs.aws.amazon.com/cli/latest/reference/s3api/create-multipart-upload.html - // [list-parts]: https://docs.aws.amazon.com/cli/latest/reference/s3api/list-parts.html - // [upload-part]: https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part.html - // [upload-part-copy]: https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part-copy.html - AWSS3KeyKey = attribute.Key("aws.s3.key") - - // AWSS3PartNumberKey is the attribute Key conforming to the - // "aws.s3.part_number" semantic conventions. It represents the part number of - // the part being uploaded in a multipart-upload operation. This is a positive - // integer between 1 and 10,000. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 3456 - // Note: The `part_number` attribute is only applicable to the [upload-part] - // and [upload-part-copy] operations. - // The `part_number` attribute corresponds to the `--part-number` parameter of - // the - // [upload-part operation within the S3 API]. - // - // [upload-part]: https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part.html - // [upload-part-copy]: https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part-copy.html - // [upload-part operation within the S3 API]: https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part.html - AWSS3PartNumberKey = attribute.Key("aws.s3.part_number") - - // AWSS3UploadIDKey is the attribute Key conforming to the "aws.s3.upload_id" - // semantic conventions. It represents the upload ID that identifies the - // multipart upload. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "dfRtDYWFbkRONycy.Yxwh66Yjlx.cph0gtNBtJ" - // Note: The `upload_id` attribute applies to S3 multipart-upload operations and - // corresponds to the `--upload-id` parameter - // of the [S3 API] multipart operations. - // This applies in particular to the following operations: - // - // - [abort-multipart-upload] - // - [complete-multipart-upload] - // - [list-parts] - // - [upload-part] - // - [upload-part-copy] - // - // - // [S3 API]: https://docs.aws.amazon.com/cli/latest/reference/s3api/index.html - // [abort-multipart-upload]: https://docs.aws.amazon.com/cli/latest/reference/s3api/abort-multipart-upload.html - // [complete-multipart-upload]: https://docs.aws.amazon.com/cli/latest/reference/s3api/complete-multipart-upload.html - // [list-parts]: https://docs.aws.amazon.com/cli/latest/reference/s3api/list-parts.html - // [upload-part]: https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part.html - // [upload-part-copy]: https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part-copy.html - AWSS3UploadIDKey = attribute.Key("aws.s3.upload_id") - - // AWSSecretsmanagerSecretARNKey is the attribute Key conforming to the - // "aws.secretsmanager.secret.arn" semantic conventions. It represents the ARN - // of the Secret stored in the Secrets Mangger. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // "arn:aws:secretsmanager:us-east-1:123456789012:secret:SecretName-6RandomCharacters" - AWSSecretsmanagerSecretARNKey = attribute.Key("aws.secretsmanager.secret.arn") - - // AWSSNSTopicARNKey is the attribute Key conforming to the "aws.sns.topic.arn" - // semantic conventions. It represents the ARN of the AWS SNS Topic. An Amazon - // SNS [topic] is a logical access point that acts as a communication channel. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "arn:aws:sns:us-east-1:123456789012:mystack-mytopic-NZJ5JSMVGFIE" - // - // [topic]: https://docs.aws.amazon.com/sns/latest/dg/sns-create-topic.html - AWSSNSTopicARNKey = attribute.Key("aws.sns.topic.arn") - - // AWSSQSQueueURLKey is the attribute Key conforming to the "aws.sqs.queue.url" - // semantic conventions. It represents the URL of the AWS SQS Queue. It's a - // unique identifier for a queue in Amazon Simple Queue Service (SQS) and is - // used to access the queue and perform actions on it. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "https://sqs.us-east-1.amazonaws.com/123456789012/MyQueue" - AWSSQSQueueURLKey = attribute.Key("aws.sqs.queue.url") - - // AWSStepFunctionsActivityARNKey is the attribute Key conforming to the - // "aws.step_functions.activity.arn" semantic conventions. It represents the ARN - // of the AWS Step Functions Activity. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "arn:aws:states:us-east-1:123456789012:activity:get-greeting" - AWSStepFunctionsActivityARNKey = attribute.Key("aws.step_functions.activity.arn") - - // AWSStepFunctionsStateMachineARNKey is the attribute Key conforming to the - // "aws.step_functions.state_machine.arn" semantic conventions. It represents - // the ARN of the AWS Step Functions State Machine. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // "arn:aws:states:us-east-1:123456789012:stateMachine:myStateMachine:1" - AWSStepFunctionsStateMachineARNKey = attribute.Key("aws.step_functions.state_machine.arn") -) - -// AWSBedrockGuardrailID returns an attribute KeyValue conforming to the -// "aws.bedrock.guardrail.id" semantic conventions. It represents the unique -// identifier of the AWS Bedrock Guardrail. A [guardrail] helps safeguard and -// prevent unwanted behavior from model responses or user messages. -// -// [guardrail]: https://docs.aws.amazon.com/bedrock/latest/userguide/guardrails.html -func AWSBedrockGuardrailID(val string) attribute.KeyValue { - return AWSBedrockGuardrailIDKey.String(val) -} - -// AWSBedrockKnowledgeBaseID returns an attribute KeyValue conforming to the -// "aws.bedrock.knowledge_base.id" semantic conventions. It represents the unique -// identifier of the AWS Bedrock Knowledge base. A [knowledge base] is a bank of -// information that can be queried by models to generate more relevant responses -// and augment prompts. -// -// [knowledge base]: https://docs.aws.amazon.com/bedrock/latest/userguide/knowledge-base.html -func AWSBedrockKnowledgeBaseID(val string) attribute.KeyValue { - return AWSBedrockKnowledgeBaseIDKey.String(val) -} - -// AWSDynamoDBAttributeDefinitions returns an attribute KeyValue conforming to -// the "aws.dynamodb.attribute_definitions" semantic conventions. It represents -// the JSON-serialized value of each item in the `AttributeDefinitions` request -// field. -func AWSDynamoDBAttributeDefinitions(val ...string) attribute.KeyValue { - return AWSDynamoDBAttributeDefinitionsKey.StringSlice(val) -} - -// AWSDynamoDBAttributesToGet returns an attribute KeyValue conforming to the -// "aws.dynamodb.attributes_to_get" semantic conventions. It represents the value -// of the `AttributesToGet` request parameter. -func AWSDynamoDBAttributesToGet(val ...string) attribute.KeyValue { - return AWSDynamoDBAttributesToGetKey.StringSlice(val) -} - -// AWSDynamoDBConsistentRead returns an attribute KeyValue conforming to the -// "aws.dynamodb.consistent_read" semantic conventions. It represents the value -// of the `ConsistentRead` request parameter. -func AWSDynamoDBConsistentRead(val bool) attribute.KeyValue { - return AWSDynamoDBConsistentReadKey.Bool(val) -} - -// AWSDynamoDBConsumedCapacity returns an attribute KeyValue conforming to the -// "aws.dynamodb.consumed_capacity" semantic conventions. It represents the -// JSON-serialized value of each item in the `ConsumedCapacity` response field. -func AWSDynamoDBConsumedCapacity(val ...string) attribute.KeyValue { - return AWSDynamoDBConsumedCapacityKey.StringSlice(val) -} - -// AWSDynamoDBCount returns an attribute KeyValue conforming to the -// "aws.dynamodb.count" semantic conventions. It represents the value of the -// `Count` response parameter. -func AWSDynamoDBCount(val int) attribute.KeyValue { - return AWSDynamoDBCountKey.Int(val) -} - -// AWSDynamoDBExclusiveStartTable returns an attribute KeyValue conforming to the -// "aws.dynamodb.exclusive_start_table" semantic conventions. It represents the -// value of the `ExclusiveStartTableName` request parameter. -func AWSDynamoDBExclusiveStartTable(val string) attribute.KeyValue { - return AWSDynamoDBExclusiveStartTableKey.String(val) -} - -// AWSDynamoDBGlobalSecondaryIndexUpdates returns an attribute KeyValue -// conforming to the "aws.dynamodb.global_secondary_index_updates" semantic -// conventions. It represents the JSON-serialized value of each item in the -// `GlobalSecondaryIndexUpdates` request field. -func AWSDynamoDBGlobalSecondaryIndexUpdates(val ...string) attribute.KeyValue { - return AWSDynamoDBGlobalSecondaryIndexUpdatesKey.StringSlice(val) -} - -// AWSDynamoDBGlobalSecondaryIndexes returns an attribute KeyValue conforming to -// the "aws.dynamodb.global_secondary_indexes" semantic conventions. It -// represents the JSON-serialized value of each item of the -// `GlobalSecondaryIndexes` request field. -func AWSDynamoDBGlobalSecondaryIndexes(val ...string) attribute.KeyValue { - return AWSDynamoDBGlobalSecondaryIndexesKey.StringSlice(val) -} - -// AWSDynamoDBIndexName returns an attribute KeyValue conforming to the -// "aws.dynamodb.index_name" semantic conventions. It represents the value of the -// `IndexName` request parameter. -func AWSDynamoDBIndexName(val string) attribute.KeyValue { - return AWSDynamoDBIndexNameKey.String(val) -} - -// AWSDynamoDBItemCollectionMetrics returns an attribute KeyValue conforming to -// the "aws.dynamodb.item_collection_metrics" semantic conventions. It represents -// the JSON-serialized value of the `ItemCollectionMetrics` response field. -func AWSDynamoDBItemCollectionMetrics(val string) attribute.KeyValue { - return AWSDynamoDBItemCollectionMetricsKey.String(val) -} - -// AWSDynamoDBLimit returns an attribute KeyValue conforming to the -// "aws.dynamodb.limit" semantic conventions. It represents the value of the -// `Limit` request parameter. -func AWSDynamoDBLimit(val int) attribute.KeyValue { - return AWSDynamoDBLimitKey.Int(val) -} - -// AWSDynamoDBLocalSecondaryIndexes returns an attribute KeyValue conforming to -// the "aws.dynamodb.local_secondary_indexes" semantic conventions. It represents -// the JSON-serialized value of each item of the `LocalSecondaryIndexes` request -// field. -func AWSDynamoDBLocalSecondaryIndexes(val ...string) attribute.KeyValue { - return AWSDynamoDBLocalSecondaryIndexesKey.StringSlice(val) -} - -// AWSDynamoDBProjection returns an attribute KeyValue conforming to the -// "aws.dynamodb.projection" semantic conventions. It represents the value of the -// `ProjectionExpression` request parameter. -func AWSDynamoDBProjection(val string) attribute.KeyValue { - return AWSDynamoDBProjectionKey.String(val) -} - -// AWSDynamoDBProvisionedReadCapacity returns an attribute KeyValue conforming to -// the "aws.dynamodb.provisioned_read_capacity" semantic conventions. It -// represents the value of the `ProvisionedThroughput.ReadCapacityUnits` request -// parameter. -func AWSDynamoDBProvisionedReadCapacity(val float64) attribute.KeyValue { - return AWSDynamoDBProvisionedReadCapacityKey.Float64(val) -} - -// AWSDynamoDBProvisionedWriteCapacity returns an attribute KeyValue conforming -// to the "aws.dynamodb.provisioned_write_capacity" semantic conventions. It -// represents the value of the `ProvisionedThroughput.WriteCapacityUnits` request -// parameter. -func AWSDynamoDBProvisionedWriteCapacity(val float64) attribute.KeyValue { - return AWSDynamoDBProvisionedWriteCapacityKey.Float64(val) -} - -// AWSDynamoDBScanForward returns an attribute KeyValue conforming to the -// "aws.dynamodb.scan_forward" semantic conventions. It represents the value of -// the `ScanIndexForward` request parameter. -func AWSDynamoDBScanForward(val bool) attribute.KeyValue { - return AWSDynamoDBScanForwardKey.Bool(val) -} - -// AWSDynamoDBScannedCount returns an attribute KeyValue conforming to the -// "aws.dynamodb.scanned_count" semantic conventions. It represents the value of -// the `ScannedCount` response parameter. -func AWSDynamoDBScannedCount(val int) attribute.KeyValue { - return AWSDynamoDBScannedCountKey.Int(val) -} - -// AWSDynamoDBSegment returns an attribute KeyValue conforming to the -// "aws.dynamodb.segment" semantic conventions. It represents the value of the -// `Segment` request parameter. -func AWSDynamoDBSegment(val int) attribute.KeyValue { - return AWSDynamoDBSegmentKey.Int(val) -} - -// AWSDynamoDBSelect returns an attribute KeyValue conforming to the -// "aws.dynamodb.select" semantic conventions. It represents the value of the -// `Select` request parameter. -func AWSDynamoDBSelect(val string) attribute.KeyValue { - return AWSDynamoDBSelectKey.String(val) -} - -// AWSDynamoDBTableCount returns an attribute KeyValue conforming to the -// "aws.dynamodb.table_count" semantic conventions. It represents the number of -// items in the `TableNames` response parameter. -func AWSDynamoDBTableCount(val int) attribute.KeyValue { - return AWSDynamoDBTableCountKey.Int(val) -} - -// AWSDynamoDBTableNames returns an attribute KeyValue conforming to the -// "aws.dynamodb.table_names" semantic conventions. It represents the keys in the -// `RequestItems` object field. -func AWSDynamoDBTableNames(val ...string) attribute.KeyValue { - return AWSDynamoDBTableNamesKey.StringSlice(val) -} - -// AWSDynamoDBTotalSegments returns an attribute KeyValue conforming to the -// "aws.dynamodb.total_segments" semantic conventions. It represents the value of -// the `TotalSegments` request parameter. -func AWSDynamoDBTotalSegments(val int) attribute.KeyValue { - return AWSDynamoDBTotalSegmentsKey.Int(val) -} - -// AWSECSClusterARN returns an attribute KeyValue conforming to the -// "aws.ecs.cluster.arn" semantic conventions. It represents the ARN of an -// [ECS cluster]. -// -// [ECS cluster]: https://docs.aws.amazon.com/AmazonECS/latest/developerguide/clusters.html -func AWSECSClusterARN(val string) attribute.KeyValue { - return AWSECSClusterARNKey.String(val) -} - -// AWSECSContainerARN returns an attribute KeyValue conforming to the -// "aws.ecs.container.arn" semantic conventions. It represents the Amazon -// Resource Name (ARN) of an [ECS container instance]. -// -// [ECS container instance]: https://docs.aws.amazon.com/AmazonECS/latest/developerguide/ECS_instances.html -func AWSECSContainerARN(val string) attribute.KeyValue { - return AWSECSContainerARNKey.String(val) -} - -// AWSECSTaskARN returns an attribute KeyValue conforming to the -// "aws.ecs.task.arn" semantic conventions. It represents the ARN of a running -// [ECS task]. -// -// [ECS task]: https://docs.aws.amazon.com/AmazonECS/latest/developerguide/ecs-account-settings.html#ecs-resource-ids -func AWSECSTaskARN(val string) attribute.KeyValue { - return AWSECSTaskARNKey.String(val) -} - -// AWSECSTaskFamily returns an attribute KeyValue conforming to the -// "aws.ecs.task.family" semantic conventions. It represents the family name of -// the [ECS task definition] used to create the ECS task. -// -// [ECS task definition]: https://docs.aws.amazon.com/AmazonECS/latest/developerguide/task_definitions.html -func AWSECSTaskFamily(val string) attribute.KeyValue { - return AWSECSTaskFamilyKey.String(val) -} - -// AWSECSTaskID returns an attribute KeyValue conforming to the "aws.ecs.task.id" -// semantic conventions. It represents the ID of a running ECS task. The ID MUST -// be extracted from `task.arn`. -func AWSECSTaskID(val string) attribute.KeyValue { - return AWSECSTaskIDKey.String(val) -} - -// AWSECSTaskRevision returns an attribute KeyValue conforming to the -// "aws.ecs.task.revision" semantic conventions. It represents the revision for -// the task definition used to create the ECS task. -func AWSECSTaskRevision(val string) attribute.KeyValue { - return AWSECSTaskRevisionKey.String(val) -} - -// AWSEKSClusterARN returns an attribute KeyValue conforming to the -// "aws.eks.cluster.arn" semantic conventions. It represents the ARN of an EKS -// cluster. -func AWSEKSClusterARN(val string) attribute.KeyValue { - return AWSEKSClusterARNKey.String(val) -} - -// AWSExtendedRequestID returns an attribute KeyValue conforming to the -// "aws.extended_request_id" semantic conventions. It represents the AWS extended -// request ID as returned in the response header `x-amz-id-2`. -func AWSExtendedRequestID(val string) attribute.KeyValue { - return AWSExtendedRequestIDKey.String(val) -} - -// AWSKinesisStreamName returns an attribute KeyValue conforming to the -// "aws.kinesis.stream_name" semantic conventions. It represents the name of the -// AWS Kinesis [stream] the request refers to. Corresponds to the `--stream-name` -// -// parameter of the Kinesis [describe-stream] operation. -// -// [stream]: https://docs.aws.amazon.com/streams/latest/dev/introduction.html -// -// [describe-stream]: https://docs.aws.amazon.com/cli/latest/reference/kinesis/describe-stream.html -func AWSKinesisStreamName(val string) attribute.KeyValue { - return AWSKinesisStreamNameKey.String(val) -} - -// AWSLambdaInvokedARN returns an attribute KeyValue conforming to the -// "aws.lambda.invoked_arn" semantic conventions. It represents the full invoked -// ARN as provided on the `Context` passed to the function ( -// `Lambda-Runtime-Invoked-Function-Arn` header on the `/runtime/invocation/next` -// -// applicable). -func AWSLambdaInvokedARN(val string) attribute.KeyValue { - return AWSLambdaInvokedARNKey.String(val) -} - -// AWSLambdaResourceMappingID returns an attribute KeyValue conforming to the -// "aws.lambda.resource_mapping.id" semantic conventions. It represents the UUID -// of the [AWS Lambda EvenSource Mapping]. An event source is mapped to a lambda -// function. It's contents are read by Lambda and used to trigger a function. -// This isn't available in the lambda execution context or the lambda runtime -// environtment. This is going to be populated by the AWS SDK for each language -// when that UUID is present. Some of these operations are -// Create/Delete/Get/List/Update EventSourceMapping. -// -// [AWS Lambda EvenSource Mapping]: https://docs.aws.amazon.com/AWSCloudFormation/latest/UserGuide/aws-resource-lambda-eventsourcemapping.html -func AWSLambdaResourceMappingID(val string) attribute.KeyValue { - return AWSLambdaResourceMappingIDKey.String(val) -} - -// AWSLogGroupARNs returns an attribute KeyValue conforming to the -// "aws.log.group.arns" semantic conventions. It represents the Amazon Resource -// Name(s) (ARN) of the AWS log group(s). -func AWSLogGroupARNs(val ...string) attribute.KeyValue { - return AWSLogGroupARNsKey.StringSlice(val) -} - -// AWSLogGroupNames returns an attribute KeyValue conforming to the -// "aws.log.group.names" semantic conventions. It represents the name(s) of the -// AWS log group(s) an application is writing to. -func AWSLogGroupNames(val ...string) attribute.KeyValue { - return AWSLogGroupNamesKey.StringSlice(val) -} - -// AWSLogStreamARNs returns an attribute KeyValue conforming to the -// "aws.log.stream.arns" semantic conventions. It represents the ARN(s) of the -// AWS log stream(s). -func AWSLogStreamARNs(val ...string) attribute.KeyValue { - return AWSLogStreamARNsKey.StringSlice(val) -} - -// AWSLogStreamNames returns an attribute KeyValue conforming to the -// "aws.log.stream.names" semantic conventions. It represents the name(s) of the -// AWS log stream(s) an application is writing to. -func AWSLogStreamNames(val ...string) attribute.KeyValue { - return AWSLogStreamNamesKey.StringSlice(val) -} - -// AWSRequestID returns an attribute KeyValue conforming to the "aws.request_id" -// semantic conventions. It represents the AWS request ID as returned in the -// response headers `x-amzn-requestid`, `x-amzn-request-id` or `x-amz-request-id` -// . -func AWSRequestID(val string) attribute.KeyValue { - return AWSRequestIDKey.String(val) -} - -// AWSS3Bucket returns an attribute KeyValue conforming to the "aws.s3.bucket" -// semantic conventions. It represents the S3 bucket name the request refers to. -// Corresponds to the `--bucket` parameter of the [S3 API] operations. -// -// [S3 API]: https://docs.aws.amazon.com/cli/latest/reference/s3api/index.html -func AWSS3Bucket(val string) attribute.KeyValue { - return AWSS3BucketKey.String(val) -} - -// AWSS3CopySource returns an attribute KeyValue conforming to the -// "aws.s3.copy_source" semantic conventions. It represents the source object (in -// the form `bucket`/`key`) for the copy operation. -func AWSS3CopySource(val string) attribute.KeyValue { - return AWSS3CopySourceKey.String(val) -} - -// AWSS3Delete returns an attribute KeyValue conforming to the "aws.s3.delete" -// semantic conventions. It represents the delete request container that -// specifies the objects to be deleted. -func AWSS3Delete(val string) attribute.KeyValue { - return AWSS3DeleteKey.String(val) -} - -// AWSS3Key returns an attribute KeyValue conforming to the "aws.s3.key" semantic -// conventions. It represents the S3 object key the request refers to. -// Corresponds to the `--key` parameter of the [S3 API] operations. -// -// [S3 API]: https://docs.aws.amazon.com/cli/latest/reference/s3api/index.html -func AWSS3Key(val string) attribute.KeyValue { - return AWSS3KeyKey.String(val) -} - -// AWSS3PartNumber returns an attribute KeyValue conforming to the -// "aws.s3.part_number" semantic conventions. It represents the part number of -// the part being uploaded in a multipart-upload operation. This is a positive -// integer between 1 and 10,000. -func AWSS3PartNumber(val int) attribute.KeyValue { - return AWSS3PartNumberKey.Int(val) -} - -// AWSS3UploadID returns an attribute KeyValue conforming to the -// "aws.s3.upload_id" semantic conventions. It represents the upload ID that -// identifies the multipart upload. -func AWSS3UploadID(val string) attribute.KeyValue { - return AWSS3UploadIDKey.String(val) -} - -// AWSSecretsmanagerSecretARN returns an attribute KeyValue conforming to the -// "aws.secretsmanager.secret.arn" semantic conventions. It represents the ARN of -// the Secret stored in the Secrets Mangger. -func AWSSecretsmanagerSecretARN(val string) attribute.KeyValue { - return AWSSecretsmanagerSecretARNKey.String(val) -} - -// AWSSNSTopicARN returns an attribute KeyValue conforming to the -// "aws.sns.topic.arn" semantic conventions. It represents the ARN of the AWS SNS -// Topic. An Amazon SNS [topic] is a logical access point that acts as a -// communication channel. -// -// [topic]: https://docs.aws.amazon.com/sns/latest/dg/sns-create-topic.html -func AWSSNSTopicARN(val string) attribute.KeyValue { - return AWSSNSTopicARNKey.String(val) -} - -// AWSSQSQueueURL returns an attribute KeyValue conforming to the -// "aws.sqs.queue.url" semantic conventions. It represents the URL of the AWS SQS -// Queue. It's a unique identifier for a queue in Amazon Simple Queue Service -// (SQS) and is used to access the queue and perform actions on it. -func AWSSQSQueueURL(val string) attribute.KeyValue { - return AWSSQSQueueURLKey.String(val) -} - -// AWSStepFunctionsActivityARN returns an attribute KeyValue conforming to the -// "aws.step_functions.activity.arn" semantic conventions. It represents the ARN -// of the AWS Step Functions Activity. -func AWSStepFunctionsActivityARN(val string) attribute.KeyValue { - return AWSStepFunctionsActivityARNKey.String(val) -} - -// AWSStepFunctionsStateMachineARN returns an attribute KeyValue conforming to -// the "aws.step_functions.state_machine.arn" semantic conventions. It represents -// the ARN of the AWS Step Functions State Machine. -func AWSStepFunctionsStateMachineARN(val string) attribute.KeyValue { - return AWSStepFunctionsStateMachineARNKey.String(val) -} - -// Enum values for aws.ecs.launchtype -var ( - // Amazon EC2 - // Stability: development - AWSECSLaunchtypeEC2 = AWSECSLaunchtypeKey.String("ec2") - // Amazon Fargate - // Stability: development - AWSECSLaunchtypeFargate = AWSECSLaunchtypeKey.String("fargate") -) - -// Namespace: azure -const ( - // AzureClientIDKey is the attribute Key conforming to the "azure.client.id" - // semantic conventions. It represents the unique identifier of the client - // instance. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "3ba4827d-4422-483f-b59f-85b74211c11d", "storage-client-1" - AzureClientIDKey = attribute.Key("azure.client.id") - - // AzureCosmosDBConnectionModeKey is the attribute Key conforming to the - // "azure.cosmosdb.connection.mode" semantic conventions. It represents the - // cosmos client connection mode. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - AzureCosmosDBConnectionModeKey = attribute.Key("azure.cosmosdb.connection.mode") - - // AzureCosmosDBConsistencyLevelKey is the attribute Key conforming to the - // "azure.cosmosdb.consistency.level" semantic conventions. It represents the - // account or request [consistency level]. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Eventual", "ConsistentPrefix", "BoundedStaleness", "Strong", - // "Session" - // - // [consistency level]: https://learn.microsoft.com/azure/cosmos-db/consistency-levels - AzureCosmosDBConsistencyLevelKey = attribute.Key("azure.cosmosdb.consistency.level") - - // AzureCosmosDBOperationContactedRegionsKey is the attribute Key conforming to - // the "azure.cosmosdb.operation.contacted_regions" semantic conventions. It - // represents the list of regions contacted during operation in the order that - // they were contacted. If there is more than one region listed, it indicates - // that the operation was performed on multiple regions i.e. cross-regional - // call. - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "North Central US", "Australia East", "Australia Southeast" - // Note: Region name matches the format of `displayName` in [Azure Location API] - // - // [Azure Location API]: https://learn.microsoft.com/rest/api/resources/subscriptions/list-locations - AzureCosmosDBOperationContactedRegionsKey = attribute.Key("azure.cosmosdb.operation.contacted_regions") - - // AzureCosmosDBOperationRequestChargeKey is the attribute Key conforming to the - // "azure.cosmosdb.operation.request_charge" semantic conventions. It represents - // the number of request units consumed by the operation. - // - // Type: double - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 46.18, 1.0 - AzureCosmosDBOperationRequestChargeKey = attribute.Key("azure.cosmosdb.operation.request_charge") - - // AzureCosmosDBRequestBodySizeKey is the attribute Key conforming to the - // "azure.cosmosdb.request.body.size" semantic conventions. It represents the - // request payload size in bytes. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - AzureCosmosDBRequestBodySizeKey = attribute.Key("azure.cosmosdb.request.body.size") - - // AzureCosmosDBResponseSubStatusCodeKey is the attribute Key conforming to the - // "azure.cosmosdb.response.sub_status_code" semantic conventions. It represents - // the cosmos DB sub status code. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 1000, 1002 - AzureCosmosDBResponseSubStatusCodeKey = attribute.Key("azure.cosmosdb.response.sub_status_code") - - // AzureResourceProviderNamespaceKey is the attribute Key conforming to the - // "azure.resource_provider.namespace" semantic conventions. It represents the - // [Azure Resource Provider Namespace] as recognized by the client. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Microsoft.Storage", "Microsoft.KeyVault", "Microsoft.ServiceBus" - // - // [Azure Resource Provider Namespace]: https://learn.microsoft.com/azure/azure-resource-manager/management/azure-services-resource-providers - AzureResourceProviderNamespaceKey = attribute.Key("azure.resource_provider.namespace") - - // AzureServiceRequestIDKey is the attribute Key conforming to the - // "azure.service.request.id" semantic conventions. It represents the unique - // identifier of the service request. It's generated by the Azure service and - // returned with the response. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "00000000-0000-0000-0000-000000000000" - AzureServiceRequestIDKey = attribute.Key("azure.service.request.id") -) - -// AzureClientID returns an attribute KeyValue conforming to the -// "azure.client.id" semantic conventions. It represents the unique identifier of -// the client instance. -func AzureClientID(val string) attribute.KeyValue { - return AzureClientIDKey.String(val) -} - -// AzureCosmosDBOperationContactedRegions returns an attribute KeyValue -// conforming to the "azure.cosmosdb.operation.contacted_regions" semantic -// conventions. It represents the list of regions contacted during operation in -// the order that they were contacted. If there is more than one region listed, -// it indicates that the operation was performed on multiple regions i.e. -// cross-regional call. -func AzureCosmosDBOperationContactedRegions(val ...string) attribute.KeyValue { - return AzureCosmosDBOperationContactedRegionsKey.StringSlice(val) -} - -// AzureCosmosDBOperationRequestCharge returns an attribute KeyValue conforming -// to the "azure.cosmosdb.operation.request_charge" semantic conventions. It -// represents the number of request units consumed by the operation. -func AzureCosmosDBOperationRequestCharge(val float64) attribute.KeyValue { - return AzureCosmosDBOperationRequestChargeKey.Float64(val) -} - -// AzureCosmosDBRequestBodySize returns an attribute KeyValue conforming to the -// "azure.cosmosdb.request.body.size" semantic conventions. It represents the -// request payload size in bytes. -func AzureCosmosDBRequestBodySize(val int) attribute.KeyValue { - return AzureCosmosDBRequestBodySizeKey.Int(val) -} - -// AzureCosmosDBResponseSubStatusCode returns an attribute KeyValue conforming to -// the "azure.cosmosdb.response.sub_status_code" semantic conventions. It -// represents the cosmos DB sub status code. -func AzureCosmosDBResponseSubStatusCode(val int) attribute.KeyValue { - return AzureCosmosDBResponseSubStatusCodeKey.Int(val) -} - -// AzureResourceProviderNamespace returns an attribute KeyValue conforming to the -// "azure.resource_provider.namespace" semantic conventions. It represents the -// [Azure Resource Provider Namespace] as recognized by the client. -// -// [Azure Resource Provider Namespace]: https://learn.microsoft.com/azure/azure-resource-manager/management/azure-services-resource-providers -func AzureResourceProviderNamespace(val string) attribute.KeyValue { - return AzureResourceProviderNamespaceKey.String(val) -} - -// AzureServiceRequestID returns an attribute KeyValue conforming to the -// "azure.service.request.id" semantic conventions. It represents the unique -// identifier of the service request. It's generated by the Azure service and -// returned with the response. -func AzureServiceRequestID(val string) attribute.KeyValue { - return AzureServiceRequestIDKey.String(val) -} - -// Enum values for azure.cosmosdb.connection.mode -var ( - // Gateway (HTTP) connection. - // Stability: development - AzureCosmosDBConnectionModeGateway = AzureCosmosDBConnectionModeKey.String("gateway") - // Direct connection. - // Stability: development - AzureCosmosDBConnectionModeDirect = AzureCosmosDBConnectionModeKey.String("direct") -) - -// Enum values for azure.cosmosdb.consistency.level -var ( - // Strong - // Stability: development - AzureCosmosDBConsistencyLevelStrong = AzureCosmosDBConsistencyLevelKey.String("Strong") - // Bounded Staleness - // Stability: development - AzureCosmosDBConsistencyLevelBoundedStaleness = AzureCosmosDBConsistencyLevelKey.String("BoundedStaleness") - // Session - // Stability: development - AzureCosmosDBConsistencyLevelSession = AzureCosmosDBConsistencyLevelKey.String("Session") - // Eventual - // Stability: development - AzureCosmosDBConsistencyLevelEventual = AzureCosmosDBConsistencyLevelKey.String("Eventual") - // Consistent Prefix - // Stability: development - AzureCosmosDBConsistencyLevelConsistentPrefix = AzureCosmosDBConsistencyLevelKey.String("ConsistentPrefix") -) - -// Namespace: browser -const ( - // BrowserBrandsKey is the attribute Key conforming to the "browser.brands" - // semantic conventions. It represents the array of brand name and version - // separated by a space. - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: " Not A;Brand 99", "Chromium 99", "Chrome 99" - // Note: This value is intended to be taken from the [UA client hints API] ( - // `navigator.userAgentData.brands`). - // - // [UA client hints API]: https://wicg.github.io/ua-client-hints/#interface - BrowserBrandsKey = attribute.Key("browser.brands") - - // BrowserLanguageKey is the attribute Key conforming to the "browser.language" - // semantic conventions. It represents the preferred language of the user using - // the browser. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "en", "en-US", "fr", "fr-FR" - // Note: This value is intended to be taken from the Navigator API - // `navigator.language`. - BrowserLanguageKey = attribute.Key("browser.language") - - // BrowserMobileKey is the attribute Key conforming to the "browser.mobile" - // semantic conventions. It represents a boolean that is true if the browser is - // running on a mobile device. - // - // Type: boolean - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // Note: This value is intended to be taken from the [UA client hints API] ( - // `navigator.userAgentData.mobile`). If unavailable, this attribute SHOULD be - // left unset. - // - // [UA client hints API]: https://wicg.github.io/ua-client-hints/#interface - BrowserMobileKey = attribute.Key("browser.mobile") - - // BrowserPlatformKey is the attribute Key conforming to the "browser.platform" - // semantic conventions. It represents the platform on which the browser is - // running. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Windows", "macOS", "Android" - // Note: This value is intended to be taken from the [UA client hints API] ( - // `navigator.userAgentData.platform`). If unavailable, the legacy - // `navigator.platform` API SHOULD NOT be used instead and this attribute SHOULD - // be left unset in order for the values to be consistent. - // The list of possible values is defined in the - // [W3C User-Agent Client Hints specification]. Note that some (but not all) of - // these values can overlap with values in the - // [`os.type` and `os.name` attributes]. However, for consistency, the values in - // the `browser.platform` attribute should capture the exact value that the user - // agent provides. - // - // [UA client hints API]: https://wicg.github.io/ua-client-hints/#interface - // [W3C User-Agent Client Hints specification]: https://wicg.github.io/ua-client-hints/#sec-ch-ua-platform - // [`os.type` and `os.name` attributes]: ./os.md - BrowserPlatformKey = attribute.Key("browser.platform") -) - -// BrowserBrands returns an attribute KeyValue conforming to the "browser.brands" -// semantic conventions. It represents the array of brand name and version -// separated by a space. -func BrowserBrands(val ...string) attribute.KeyValue { - return BrowserBrandsKey.StringSlice(val) -} - -// BrowserLanguage returns an attribute KeyValue conforming to the -// "browser.language" semantic conventions. It represents the preferred language -// of the user using the browser. -func BrowserLanguage(val string) attribute.KeyValue { - return BrowserLanguageKey.String(val) -} - -// BrowserMobile returns an attribute KeyValue conforming to the "browser.mobile" -// semantic conventions. It represents a boolean that is true if the browser is -// running on a mobile device. -func BrowserMobile(val bool) attribute.KeyValue { - return BrowserMobileKey.Bool(val) -} - -// BrowserPlatform returns an attribute KeyValue conforming to the -// "browser.platform" semantic conventions. It represents the platform on which -// the browser is running. -func BrowserPlatform(val string) attribute.KeyValue { - return BrowserPlatformKey.String(val) -} - -// Namespace: cassandra -const ( - // CassandraConsistencyLevelKey is the attribute Key conforming to the - // "cassandra.consistency.level" semantic conventions. It represents the - // consistency level of the query. Based on consistency values from [CQL]. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // - // [CQL]: https://docs.datastax.com/en/cassandra-oss/3.0/cassandra/dml/dmlConfigConsistency.html - CassandraConsistencyLevelKey = attribute.Key("cassandra.consistency.level") - - // CassandraCoordinatorDCKey is the attribute Key conforming to the - // "cassandra.coordinator.dc" semantic conventions. It represents the data - // center of the coordinating node for a query. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: us-west-2 - CassandraCoordinatorDCKey = attribute.Key("cassandra.coordinator.dc") - - // CassandraCoordinatorIDKey is the attribute Key conforming to the - // "cassandra.coordinator.id" semantic conventions. It represents the ID of the - // coordinating node for a query. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: be13faa2-8574-4d71-926d-27f16cf8a7af - CassandraCoordinatorIDKey = attribute.Key("cassandra.coordinator.id") - - // CassandraPageSizeKey is the attribute Key conforming to the - // "cassandra.page.size" semantic conventions. It represents the fetch size used - // for paging, i.e. how many rows will be returned at once. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 5000 - CassandraPageSizeKey = attribute.Key("cassandra.page.size") - - // CassandraQueryIdempotentKey is the attribute Key conforming to the - // "cassandra.query.idempotent" semantic conventions. It represents the whether - // or not the query is idempotent. - // - // Type: boolean - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - CassandraQueryIdempotentKey = attribute.Key("cassandra.query.idempotent") - - // CassandraSpeculativeExecutionCountKey is the attribute Key conforming to the - // "cassandra.speculative_execution.count" semantic conventions. It represents - // the number of times a query was speculatively executed. Not set or `0` if the - // query was not executed speculatively. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 0, 2 - CassandraSpeculativeExecutionCountKey = attribute.Key("cassandra.speculative_execution.count") -) - -// CassandraCoordinatorDC returns an attribute KeyValue conforming to the -// "cassandra.coordinator.dc" semantic conventions. It represents the data center -// of the coordinating node for a query. -func CassandraCoordinatorDC(val string) attribute.KeyValue { - return CassandraCoordinatorDCKey.String(val) -} - -// CassandraCoordinatorID returns an attribute KeyValue conforming to the -// "cassandra.coordinator.id" semantic conventions. It represents the ID of the -// coordinating node for a query. -func CassandraCoordinatorID(val string) attribute.KeyValue { - return CassandraCoordinatorIDKey.String(val) -} - -// CassandraPageSize returns an attribute KeyValue conforming to the -// "cassandra.page.size" semantic conventions. It represents the fetch size used -// for paging, i.e. how many rows will be returned at once. -func CassandraPageSize(val int) attribute.KeyValue { - return CassandraPageSizeKey.Int(val) -} - -// CassandraQueryIdempotent returns an attribute KeyValue conforming to the -// "cassandra.query.idempotent" semantic conventions. It represents the whether -// or not the query is idempotent. -func CassandraQueryIdempotent(val bool) attribute.KeyValue { - return CassandraQueryIdempotentKey.Bool(val) -} - -// CassandraSpeculativeExecutionCount returns an attribute KeyValue conforming to -// the "cassandra.speculative_execution.count" semantic conventions. It -// represents the number of times a query was speculatively executed. Not set or -// `0` if the query was not executed speculatively. -func CassandraSpeculativeExecutionCount(val int) attribute.KeyValue { - return CassandraSpeculativeExecutionCountKey.Int(val) -} - -// Enum values for cassandra.consistency.level -var ( - // All - // Stability: development - CassandraConsistencyLevelAll = CassandraConsistencyLevelKey.String("all") - // Each Quorum - // Stability: development - CassandraConsistencyLevelEachQuorum = CassandraConsistencyLevelKey.String("each_quorum") - // Quorum - // Stability: development - CassandraConsistencyLevelQuorum = CassandraConsistencyLevelKey.String("quorum") - // Local Quorum - // Stability: development - CassandraConsistencyLevelLocalQuorum = CassandraConsistencyLevelKey.String("local_quorum") - // One - // Stability: development - CassandraConsistencyLevelOne = CassandraConsistencyLevelKey.String("one") - // Two - // Stability: development - CassandraConsistencyLevelTwo = CassandraConsistencyLevelKey.String("two") - // Three - // Stability: development - CassandraConsistencyLevelThree = CassandraConsistencyLevelKey.String("three") - // Local One - // Stability: development - CassandraConsistencyLevelLocalOne = CassandraConsistencyLevelKey.String("local_one") - // Any - // Stability: development - CassandraConsistencyLevelAny = CassandraConsistencyLevelKey.String("any") - // Serial - // Stability: development - CassandraConsistencyLevelSerial = CassandraConsistencyLevelKey.String("serial") - // Local Serial - // Stability: development - CassandraConsistencyLevelLocalSerial = CassandraConsistencyLevelKey.String("local_serial") -) - -// Namespace: cicd -const ( - // CICDPipelineActionNameKey is the attribute Key conforming to the - // "cicd.pipeline.action.name" semantic conventions. It represents the kind of - // action a pipeline run is performing. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "BUILD", "RUN", "SYNC" - CICDPipelineActionNameKey = attribute.Key("cicd.pipeline.action.name") - - // CICDPipelineNameKey is the attribute Key conforming to the - // "cicd.pipeline.name" semantic conventions. It represents the human readable - // name of the pipeline within a CI/CD system. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Build and Test", "Lint", "Deploy Go Project", - // "deploy_to_environment" - CICDPipelineNameKey = attribute.Key("cicd.pipeline.name") - - // CICDPipelineResultKey is the attribute Key conforming to the - // "cicd.pipeline.result" semantic conventions. It represents the result of a - // pipeline run. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "success", "failure", "timeout", "skipped" - CICDPipelineResultKey = attribute.Key("cicd.pipeline.result") - - // CICDPipelineRunIDKey is the attribute Key conforming to the - // "cicd.pipeline.run.id" semantic conventions. It represents the unique - // identifier of a pipeline run within a CI/CD system. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "120912" - CICDPipelineRunIDKey = attribute.Key("cicd.pipeline.run.id") - - // CICDPipelineRunStateKey is the attribute Key conforming to the - // "cicd.pipeline.run.state" semantic conventions. It represents the pipeline - // run goes through these states during its lifecycle. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "pending", "executing", "finalizing" - CICDPipelineRunStateKey = attribute.Key("cicd.pipeline.run.state") - - // CICDPipelineRunURLFullKey is the attribute Key conforming to the - // "cicd.pipeline.run.url.full" semantic conventions. It represents the [URL] of - // the pipeline run, providing the complete address in order to locate and - // identify the pipeline run. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // "https://github.com/open-telemetry/semantic-conventions/actions/runs/9753949763?pr=1075" - // - // [URL]: https://wikipedia.org/wiki/URL - CICDPipelineRunURLFullKey = attribute.Key("cicd.pipeline.run.url.full") - - // CICDPipelineTaskNameKey is the attribute Key conforming to the - // "cicd.pipeline.task.name" semantic conventions. It represents the human - // readable name of a task within a pipeline. Task here most closely aligns with - // a [computing process] in a pipeline. Other terms for tasks include commands, - // steps, and procedures. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Run GoLang Linter", "Go Build", "go-test", "deploy_binary" - // - // [computing process]: https://wikipedia.org/wiki/Pipeline_(computing) - CICDPipelineTaskNameKey = attribute.Key("cicd.pipeline.task.name") - - // CICDPipelineTaskRunIDKey is the attribute Key conforming to the - // "cicd.pipeline.task.run.id" semantic conventions. It represents the unique - // identifier of a task run within a pipeline. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "12097" - CICDPipelineTaskRunIDKey = attribute.Key("cicd.pipeline.task.run.id") - - // CICDPipelineTaskRunResultKey is the attribute Key conforming to the - // "cicd.pipeline.task.run.result" semantic conventions. It represents the - // result of a task run. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "success", "failure", "timeout", "skipped" - CICDPipelineTaskRunResultKey = attribute.Key("cicd.pipeline.task.run.result") - - // CICDPipelineTaskRunURLFullKey is the attribute Key conforming to the - // "cicd.pipeline.task.run.url.full" semantic conventions. It represents the - // [URL] of the pipeline task run, providing the complete address in order to - // locate and identify the pipeline task run. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // "https://github.com/open-telemetry/semantic-conventions/actions/runs/9753949763/job/26920038674?pr=1075" - // - // [URL]: https://wikipedia.org/wiki/URL - CICDPipelineTaskRunURLFullKey = attribute.Key("cicd.pipeline.task.run.url.full") - - // CICDPipelineTaskTypeKey is the attribute Key conforming to the - // "cicd.pipeline.task.type" semantic conventions. It represents the type of the - // task within a pipeline. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "build", "test", "deploy" - CICDPipelineTaskTypeKey = attribute.Key("cicd.pipeline.task.type") - - // CICDSystemComponentKey is the attribute Key conforming to the - // "cicd.system.component" semantic conventions. It represents the name of a - // component of the CICD system. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "controller", "scheduler", "agent" - CICDSystemComponentKey = attribute.Key("cicd.system.component") - - // CICDWorkerIDKey is the attribute Key conforming to the "cicd.worker.id" - // semantic conventions. It represents the unique identifier of a worker within - // a CICD system. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "abc123", "10.0.1.2", "controller" - CICDWorkerIDKey = attribute.Key("cicd.worker.id") - - // CICDWorkerNameKey is the attribute Key conforming to the "cicd.worker.name" - // semantic conventions. It represents the name of a worker within a CICD - // system. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "agent-abc", "controller", "Ubuntu LTS" - CICDWorkerNameKey = attribute.Key("cicd.worker.name") - - // CICDWorkerStateKey is the attribute Key conforming to the "cicd.worker.state" - // semantic conventions. It represents the state of a CICD worker / agent. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "idle", "busy", "down" - CICDWorkerStateKey = attribute.Key("cicd.worker.state") - - // CICDWorkerURLFullKey is the attribute Key conforming to the - // "cicd.worker.url.full" semantic conventions. It represents the [URL] of the - // worker, providing the complete address in order to locate and identify the - // worker. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "https://cicd.example.org/worker/abc123" - // - // [URL]: https://wikipedia.org/wiki/URL - CICDWorkerURLFullKey = attribute.Key("cicd.worker.url.full") -) - -// CICDPipelineName returns an attribute KeyValue conforming to the -// "cicd.pipeline.name" semantic conventions. It represents the human readable -// name of the pipeline within a CI/CD system. -func CICDPipelineName(val string) attribute.KeyValue { - return CICDPipelineNameKey.String(val) -} - -// CICDPipelineRunID returns an attribute KeyValue conforming to the -// "cicd.pipeline.run.id" semantic conventions. It represents the unique -// identifier of a pipeline run within a CI/CD system. -func CICDPipelineRunID(val string) attribute.KeyValue { - return CICDPipelineRunIDKey.String(val) -} - -// CICDPipelineRunURLFull returns an attribute KeyValue conforming to the -// "cicd.pipeline.run.url.full" semantic conventions. It represents the [URL] of -// the pipeline run, providing the complete address in order to locate and -// identify the pipeline run. -// -// [URL]: https://wikipedia.org/wiki/URL -func CICDPipelineRunURLFull(val string) attribute.KeyValue { - return CICDPipelineRunURLFullKey.String(val) -} - -// CICDPipelineTaskName returns an attribute KeyValue conforming to the -// "cicd.pipeline.task.name" semantic conventions. It represents the human -// readable name of a task within a pipeline. Task here most closely aligns with -// a [computing process] in a pipeline. Other terms for tasks include commands, -// steps, and procedures. -// -// [computing process]: https://wikipedia.org/wiki/Pipeline_(computing) -func CICDPipelineTaskName(val string) attribute.KeyValue { - return CICDPipelineTaskNameKey.String(val) -} - -// CICDPipelineTaskRunID returns an attribute KeyValue conforming to the -// "cicd.pipeline.task.run.id" semantic conventions. It represents the unique -// identifier of a task run within a pipeline. -func CICDPipelineTaskRunID(val string) attribute.KeyValue { - return CICDPipelineTaskRunIDKey.String(val) -} - -// CICDPipelineTaskRunURLFull returns an attribute KeyValue conforming to the -// "cicd.pipeline.task.run.url.full" semantic conventions. It represents the -// [URL] of the pipeline task run, providing the complete address in order to -// locate and identify the pipeline task run. -// -// [URL]: https://wikipedia.org/wiki/URL -func CICDPipelineTaskRunURLFull(val string) attribute.KeyValue { - return CICDPipelineTaskRunURLFullKey.String(val) -} - -// CICDSystemComponent returns an attribute KeyValue conforming to the -// "cicd.system.component" semantic conventions. It represents the name of a -// component of the CICD system. -func CICDSystemComponent(val string) attribute.KeyValue { - return CICDSystemComponentKey.String(val) -} - -// CICDWorkerID returns an attribute KeyValue conforming to the "cicd.worker.id" -// semantic conventions. It represents the unique identifier of a worker within a -// CICD system. -func CICDWorkerID(val string) attribute.KeyValue { - return CICDWorkerIDKey.String(val) -} - -// CICDWorkerName returns an attribute KeyValue conforming to the -// "cicd.worker.name" semantic conventions. It represents the name of a worker -// within a CICD system. -func CICDWorkerName(val string) attribute.KeyValue { - return CICDWorkerNameKey.String(val) -} - -// CICDWorkerURLFull returns an attribute KeyValue conforming to the -// "cicd.worker.url.full" semantic conventions. It represents the [URL] of the -// worker, providing the complete address in order to locate and identify the -// worker. -// -// [URL]: https://wikipedia.org/wiki/URL -func CICDWorkerURLFull(val string) attribute.KeyValue { - return CICDWorkerURLFullKey.String(val) -} - -// Enum values for cicd.pipeline.action.name -var ( - // The pipeline run is executing a build. - // Stability: development - CICDPipelineActionNameBuild = CICDPipelineActionNameKey.String("BUILD") - // The pipeline run is executing. - // Stability: development - CICDPipelineActionNameRun = CICDPipelineActionNameKey.String("RUN") - // The pipeline run is executing a sync. - // Stability: development - CICDPipelineActionNameSync = CICDPipelineActionNameKey.String("SYNC") -) - -// Enum values for cicd.pipeline.result -var ( - // The pipeline run finished successfully. - // Stability: development - CICDPipelineResultSuccess = CICDPipelineResultKey.String("success") - // The pipeline run did not finish successfully, eg. due to a compile error or a - // failing test. Such failures are usually detected by non-zero exit codes of - // the tools executed in the pipeline run. - // Stability: development - CICDPipelineResultFailure = CICDPipelineResultKey.String("failure") - // The pipeline run failed due to an error in the CICD system, eg. due to the - // worker being killed. - // Stability: development - CICDPipelineResultError = CICDPipelineResultKey.String("error") - // A timeout caused the pipeline run to be interrupted. - // Stability: development - CICDPipelineResultTimeout = CICDPipelineResultKey.String("timeout") - // The pipeline run was cancelled, eg. by a user manually cancelling the - // pipeline run. - // Stability: development - CICDPipelineResultCancellation = CICDPipelineResultKey.String("cancellation") - // The pipeline run was skipped, eg. due to a precondition not being met. - // Stability: development - CICDPipelineResultSkip = CICDPipelineResultKey.String("skip") -) - -// Enum values for cicd.pipeline.run.state -var ( - // The run pending state spans from the event triggering the pipeline run until - // the execution of the run starts (eg. time spent in a queue, provisioning - // agents, creating run resources). - // - // Stability: development - CICDPipelineRunStatePending = CICDPipelineRunStateKey.String("pending") - // The executing state spans the execution of any run tasks (eg. build, test). - // Stability: development - CICDPipelineRunStateExecuting = CICDPipelineRunStateKey.String("executing") - // The finalizing state spans from when the run has finished executing (eg. - // cleanup of run resources). - // Stability: development - CICDPipelineRunStateFinalizing = CICDPipelineRunStateKey.String("finalizing") -) - -// Enum values for cicd.pipeline.task.run.result -var ( - // The task run finished successfully. - // Stability: development - CICDPipelineTaskRunResultSuccess = CICDPipelineTaskRunResultKey.String("success") - // The task run did not finish successfully, eg. due to a compile error or a - // failing test. Such failures are usually detected by non-zero exit codes of - // the tools executed in the task run. - // Stability: development - CICDPipelineTaskRunResultFailure = CICDPipelineTaskRunResultKey.String("failure") - // The task run failed due to an error in the CICD system, eg. due to the worker - // being killed. - // Stability: development - CICDPipelineTaskRunResultError = CICDPipelineTaskRunResultKey.String("error") - // A timeout caused the task run to be interrupted. - // Stability: development - CICDPipelineTaskRunResultTimeout = CICDPipelineTaskRunResultKey.String("timeout") - // The task run was cancelled, eg. by a user manually cancelling the task run. - // Stability: development - CICDPipelineTaskRunResultCancellation = CICDPipelineTaskRunResultKey.String("cancellation") - // The task run was skipped, eg. due to a precondition not being met. - // Stability: development - CICDPipelineTaskRunResultSkip = CICDPipelineTaskRunResultKey.String("skip") -) - -// Enum values for cicd.pipeline.task.type -var ( - // build - // Stability: development - CICDPipelineTaskTypeBuild = CICDPipelineTaskTypeKey.String("build") - // test - // Stability: development - CICDPipelineTaskTypeTest = CICDPipelineTaskTypeKey.String("test") - // deploy - // Stability: development - CICDPipelineTaskTypeDeploy = CICDPipelineTaskTypeKey.String("deploy") -) - -// Enum values for cicd.worker.state -var ( - // The worker is not performing work for the CICD system. It is available to the - // CICD system to perform work on (online / idle). - // Stability: development - CICDWorkerStateAvailable = CICDWorkerStateKey.String("available") - // The worker is performing work for the CICD system. - // Stability: development - CICDWorkerStateBusy = CICDWorkerStateKey.String("busy") - // The worker is not available to the CICD system (disconnected / down). - // Stability: development - CICDWorkerStateOffline = CICDWorkerStateKey.String("offline") -) - -// Namespace: client -const ( - // ClientAddressKey is the attribute Key conforming to the "client.address" - // semantic conventions. It represents the client address - domain name if - // available without reverse DNS lookup; otherwise, IP address or Unix domain - // socket name. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "client.example.com", "10.1.2.80", "/tmp/my.sock" - // Note: When observed from the server side, and when communicating through an - // intermediary, `client.address` SHOULD represent the client address behind any - // intermediaries, for example proxies, if it's available. - ClientAddressKey = attribute.Key("client.address") - - // ClientPortKey is the attribute Key conforming to the "client.port" semantic - // conventions. It represents the client port number. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: 65123 - // Note: When observed from the server side, and when communicating through an - // intermediary, `client.port` SHOULD represent the client port behind any - // intermediaries, for example proxies, if it's available. - ClientPortKey = attribute.Key("client.port") -) - -// ClientAddress returns an attribute KeyValue conforming to the "client.address" -// semantic conventions. It represents the client address - domain name if -// available without reverse DNS lookup; otherwise, IP address or Unix domain -// socket name. -func ClientAddress(val string) attribute.KeyValue { - return ClientAddressKey.String(val) -} - -// ClientPort returns an attribute KeyValue conforming to the "client.port" -// semantic conventions. It represents the client port number. -func ClientPort(val int) attribute.KeyValue { - return ClientPortKey.Int(val) -} - -// Namespace: cloud -const ( - // CloudAccountIDKey is the attribute Key conforming to the "cloud.account.id" - // semantic conventions. It represents the cloud account ID the resource is - // assigned to. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "111111111111", "opentelemetry" - CloudAccountIDKey = attribute.Key("cloud.account.id") - - // CloudAvailabilityZoneKey is the attribute Key conforming to the - // "cloud.availability_zone" semantic conventions. It represents the cloud - // regions often have multiple, isolated locations known as zones to increase - // availability. Availability zone represents the zone where the resource is - // running. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "us-east-1c" - // Note: Availability zones are called "zones" on Alibaba Cloud and Google - // Cloud. - CloudAvailabilityZoneKey = attribute.Key("cloud.availability_zone") - - // CloudPlatformKey is the attribute Key conforming to the "cloud.platform" - // semantic conventions. It represents the cloud platform in use. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // Note: The prefix of the service SHOULD match the one specified in - // `cloud.provider`. - CloudPlatformKey = attribute.Key("cloud.platform") - - // CloudProviderKey is the attribute Key conforming to the "cloud.provider" - // semantic conventions. It represents the name of the cloud provider. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - CloudProviderKey = attribute.Key("cloud.provider") - - // CloudRegionKey is the attribute Key conforming to the "cloud.region" semantic - // conventions. It represents the geographical region within a cloud provider. - // When associated with a resource, this attribute specifies the region where - // the resource operates. When calling services or APIs deployed on a cloud, - // this attribute identifies the region where the called destination is - // deployed. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "us-central1", "us-east-1" - // Note: Refer to your provider's docs to see the available regions, for example - // [Alibaba Cloud regions], [AWS regions], [Azure regions], - // [Google Cloud regions], or [Tencent Cloud regions]. - // - // [Alibaba Cloud regions]: https://www.alibabacloud.com/help/doc-detail/40654.htm - // [AWS regions]: https://aws.amazon.com/about-aws/global-infrastructure/regions_az/ - // [Azure regions]: https://azure.microsoft.com/global-infrastructure/geographies/ - // [Google Cloud regions]: https://cloud.google.com/about/locations - // [Tencent Cloud regions]: https://www.tencentcloud.com/document/product/213/6091 - CloudRegionKey = attribute.Key("cloud.region") - - // CloudResourceIDKey is the attribute Key conforming to the "cloud.resource_id" - // semantic conventions. It represents the cloud provider-specific native - // identifier of the monitored cloud resource (e.g. an [ARN] on AWS, a - // [fully qualified resource ID] on Azure, a [full resource name] on GCP). - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "arn:aws:lambda:REGION:ACCOUNT_ID:function:my-function", - // "//run.googleapis.com/projects/PROJECT_ID/locations/LOCATION_ID/services/SERVICE_ID", - // "/subscriptions//resourceGroups/ - // /providers/Microsoft.Web/sites//functions/" - // Note: On some cloud providers, it may not be possible to determine the full - // ID at startup, - // so it may be necessary to set `cloud.resource_id` as a span attribute - // instead. - // - // The exact value to use for `cloud.resource_id` depends on the cloud provider. - // The following well-known definitions MUST be used if you set this attribute - // and they apply: - // - // - **AWS Lambda:** The function [ARN]. - // Take care not to use the "invoked ARN" directly but replace any - // [alias suffix] - // with the resolved function version, as the same runtime instance may be - // invocable with - // multiple different aliases. - // - **GCP:** The [URI of the resource] - // - **Azure:** The [Fully Qualified Resource ID] of the invoked function, - // *not* the function app, having the form - // - // `/subscriptions//resourceGroups//providers/Microsoft.Web/sites//functions/` - // . - // This means that a span attribute MUST be used, as an Azure function app - // can host multiple functions that would usually share - // a TracerProvider. - // - // - // [ARN]: https://docs.aws.amazon.com/general/latest/gr/aws-arns-and-namespaces.html - // [fully qualified resource ID]: https://learn.microsoft.com/rest/api/resources/resources/get-by-id - // [full resource name]: https://google.aip.dev/122#full-resource-names - // [ARN]: https://docs.aws.amazon.com/general/latest/gr/aws-arns-and-namespaces.html - // [alias suffix]: https://docs.aws.amazon.com/lambda/latest/dg/configuration-aliases.html - // [URI of the resource]: https://cloud.google.com/iam/docs/full-resource-names - // [Fully Qualified Resource ID]: https://learn.microsoft.com/rest/api/resources/resources/get-by-id - CloudResourceIDKey = attribute.Key("cloud.resource_id") -) - -// CloudAccountID returns an attribute KeyValue conforming to the -// "cloud.account.id" semantic conventions. It represents the cloud account ID -// the resource is assigned to. -func CloudAccountID(val string) attribute.KeyValue { - return CloudAccountIDKey.String(val) -} - -// CloudAvailabilityZone returns an attribute KeyValue conforming to the -// "cloud.availability_zone" semantic conventions. It represents the cloud -// regions often have multiple, isolated locations known as zones to increase -// availability. Availability zone represents the zone where the resource is -// running. -func CloudAvailabilityZone(val string) attribute.KeyValue { - return CloudAvailabilityZoneKey.String(val) -} - -// CloudRegion returns an attribute KeyValue conforming to the "cloud.region" -// semantic conventions. It represents the geographical region within a cloud -// provider. When associated with a resource, this attribute specifies the region -// where the resource operates. When calling services or APIs deployed on a -// cloud, this attribute identifies the region where the called destination is -// deployed. -func CloudRegion(val string) attribute.KeyValue { - return CloudRegionKey.String(val) -} - -// CloudResourceID returns an attribute KeyValue conforming to the -// "cloud.resource_id" semantic conventions. It represents the cloud -// provider-specific native identifier of the monitored cloud resource (e.g. an -// [ARN] on AWS, a [fully qualified resource ID] on Azure, a [full resource name] -// -// on GCP). -// -// [ARN]: https://docs.aws.amazon.com/general/latest/gr/aws-arns-and-namespaces.html -// [fully qualified resource ID]: https://learn.microsoft.com/rest/api/resources/resources/get-by-id -// [full resource name]: https://google.aip.dev/122#full-resource-names -func CloudResourceID(val string) attribute.KeyValue { - return CloudResourceIDKey.String(val) -} - -// Enum values for cloud.platform -var ( - // Akamai Cloud Compute - // Stability: development - CloudPlatformAkamaiCloudCompute = CloudPlatformKey.String("akamai_cloud.compute") - // Alibaba Cloud Elastic Compute Service - // Stability: development - CloudPlatformAlibabaCloudECS = CloudPlatformKey.String("alibaba_cloud_ecs") - // Alibaba Cloud Function Compute - // Stability: development - CloudPlatformAlibabaCloudFC = CloudPlatformKey.String("alibaba_cloud_fc") - // Red Hat OpenShift on Alibaba Cloud - // Stability: development - CloudPlatformAlibabaCloudOpenShift = CloudPlatformKey.String("alibaba_cloud_openshift") - // AWS Elastic Compute Cloud - // Stability: development - CloudPlatformAWSEC2 = CloudPlatformKey.String("aws_ec2") - // AWS Elastic Container Service - // Stability: development - CloudPlatformAWSECS = CloudPlatformKey.String("aws_ecs") - // AWS Elastic Kubernetes Service - // Stability: development - CloudPlatformAWSEKS = CloudPlatformKey.String("aws_eks") - // AWS Lambda - // Stability: development - CloudPlatformAWSLambda = CloudPlatformKey.String("aws_lambda") - // AWS Elastic Beanstalk - // Stability: development - CloudPlatformAWSElasticBeanstalk = CloudPlatformKey.String("aws_elastic_beanstalk") - // AWS App Runner - // Stability: development - CloudPlatformAWSAppRunner = CloudPlatformKey.String("aws_app_runner") - // Red Hat OpenShift on AWS (ROSA) - // Stability: development - CloudPlatformAWSOpenShift = CloudPlatformKey.String("aws_openshift") - // Azure Virtual Machines - // Stability: development - CloudPlatformAzureVM = CloudPlatformKey.String("azure.vm") - // Azure Container Apps - // Stability: development - CloudPlatformAzureContainerApps = CloudPlatformKey.String("azure.container_apps") - // Azure Container Instances - // Stability: development - CloudPlatformAzureContainerInstances = CloudPlatformKey.String("azure.container_instances") - // Azure Kubernetes Service - // Stability: development - CloudPlatformAzureAKS = CloudPlatformKey.String("azure.aks") - // Azure Functions - // Stability: development - CloudPlatformAzureFunctions = CloudPlatformKey.String("azure.functions") - // Azure App Service - // Stability: development - CloudPlatformAzureAppService = CloudPlatformKey.String("azure.app_service") - // Azure Red Hat OpenShift - // Stability: development - CloudPlatformAzureOpenShift = CloudPlatformKey.String("azure.openshift") - // Google Vertex AI Agent Engine - // Stability: development - CloudPlatformGCPAgentEngine = CloudPlatformKey.String("gcp.agent_engine") - // Google Bare Metal Solution (BMS) - // Stability: development - CloudPlatformGCPBareMetalSolution = CloudPlatformKey.String("gcp_bare_metal_solution") - // Google Cloud Compute Engine (GCE) - // Stability: development - CloudPlatformGCPComputeEngine = CloudPlatformKey.String("gcp_compute_engine") - // Google Cloud Run - // Stability: development - CloudPlatformGCPCloudRun = CloudPlatformKey.String("gcp_cloud_run") - // Google Cloud Kubernetes Engine (GKE) - // Stability: development - CloudPlatformGCPKubernetesEngine = CloudPlatformKey.String("gcp_kubernetes_engine") - // Google Cloud Functions (GCF) - // Stability: development - CloudPlatformGCPCloudFunctions = CloudPlatformKey.String("gcp_cloud_functions") - // Google Cloud App Engine (GAE) - // Stability: development - CloudPlatformGCPAppEngine = CloudPlatformKey.String("gcp_app_engine") - // Red Hat OpenShift on Google Cloud - // Stability: development - CloudPlatformGCPOpenShift = CloudPlatformKey.String("gcp_openshift") - // Server on Hetzner Cloud - // Stability: development - CloudPlatformHetznerCloudServer = CloudPlatformKey.String("hetzner.cloud_server") - // Red Hat OpenShift on IBM Cloud - // Stability: development - CloudPlatformIBMCloudOpenShift = CloudPlatformKey.String("ibm_cloud_openshift") - // Compute on Oracle Cloud Infrastructure (OCI) - // Stability: development - CloudPlatformOracleCloudCompute = CloudPlatformKey.String("oracle_cloud_compute") - // Kubernetes Engine (OKE) on Oracle Cloud Infrastructure (OCI) - // Stability: development - CloudPlatformOracleCloudOKE = CloudPlatformKey.String("oracle_cloud_oke") - // Tencent Cloud Cloud Virtual Machine (CVM) - // Stability: development - CloudPlatformTencentCloudCVM = CloudPlatformKey.String("tencent_cloud_cvm") - // Tencent Cloud Elastic Kubernetes Service (EKS) - // Stability: development - CloudPlatformTencentCloudEKS = CloudPlatformKey.String("tencent_cloud_eks") - // Tencent Cloud Serverless Cloud Function (SCF) - // Stability: development - CloudPlatformTencentCloudSCF = CloudPlatformKey.String("tencent_cloud_scf") - // Vultr Cloud Compute - // Stability: development - CloudPlatformVultrCloudCompute = CloudPlatformKey.String("vultr.cloud_compute") -) - -// Enum values for cloud.provider -var ( - // Akamai Cloud - // Stability: development - CloudProviderAkamaiCloud = CloudProviderKey.String("akamai_cloud") - // Alibaba Cloud - // Stability: development - CloudProviderAlibabaCloud = CloudProviderKey.String("alibaba_cloud") - // Amazon Web Services - // Stability: development - CloudProviderAWS = CloudProviderKey.String("aws") - // Microsoft Azure - // Stability: development - CloudProviderAzure = CloudProviderKey.String("azure") - // Google Cloud Platform - // Stability: development - CloudProviderGCP = CloudProviderKey.String("gcp") - // Heroku Platform as a Service - // Stability: development - CloudProviderHeroku = CloudProviderKey.String("heroku") - // Hetzner - // Stability: development - CloudProviderHetzner = CloudProviderKey.String("hetzner") - // IBM Cloud - // Stability: development - CloudProviderIBMCloud = CloudProviderKey.String("ibm_cloud") - // Oracle Cloud Infrastructure (OCI) - // Stability: development - CloudProviderOracleCloud = CloudProviderKey.String("oracle_cloud") - // Tencent Cloud - // Stability: development - CloudProviderTencentCloud = CloudProviderKey.String("tencent_cloud") - // Vultr - // Stability: development - CloudProviderVultr = CloudProviderKey.String("vultr") -) - -// Namespace: cloudevents -const ( - // CloudEventsEventIDKey is the attribute Key conforming to the - // "cloudevents.event_id" semantic conventions. It represents the [event_id] - // uniquely identifies the event. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "123e4567-e89b-12d3-a456-426614174000", "0001" - // - // [event_id]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#id - CloudEventsEventIDKey = attribute.Key("cloudevents.event_id") - - // CloudEventsEventSourceKey is the attribute Key conforming to the - // "cloudevents.event_source" semantic conventions. It represents the [source] - // identifies the context in which an event happened. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "https://github.com/cloudevents", "/cloudevents/spec/pull/123", - // "my-service" - // - // [source]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#source-1 - CloudEventsEventSourceKey = attribute.Key("cloudevents.event_source") - - // CloudEventsEventSpecVersionKey is the attribute Key conforming to the - // "cloudevents.event_spec_version" semantic conventions. It represents the - // [version of the CloudEvents specification] which the event uses. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 1.0 - // - // [version of the CloudEvents specification]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#specversion - CloudEventsEventSpecVersionKey = attribute.Key("cloudevents.event_spec_version") - - // CloudEventsEventSubjectKey is the attribute Key conforming to the - // "cloudevents.event_subject" semantic conventions. It represents the [subject] - // of the event in the context of the event producer (identified by source). - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: mynewfile.jpg - // - // [subject]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#subject - CloudEventsEventSubjectKey = attribute.Key("cloudevents.event_subject") - - // CloudEventsEventTypeKey is the attribute Key conforming to the - // "cloudevents.event_type" semantic conventions. It represents the [event_type] - // contains a value describing the type of event related to the originating - // occurrence. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "com.github.pull_request.opened", "com.example.object.deleted.v2" - // - // [event_type]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#type - CloudEventsEventTypeKey = attribute.Key("cloudevents.event_type") -) - -// CloudEventsEventID returns an attribute KeyValue conforming to the -// "cloudevents.event_id" semantic conventions. It represents the [event_id] -// uniquely identifies the event. -// -// [event_id]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#id -func CloudEventsEventID(val string) attribute.KeyValue { - return CloudEventsEventIDKey.String(val) -} - -// CloudEventsEventSource returns an attribute KeyValue conforming to the -// "cloudevents.event_source" semantic conventions. It represents the [source] -// identifies the context in which an event happened. -// -// [source]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#source-1 -func CloudEventsEventSource(val string) attribute.KeyValue { - return CloudEventsEventSourceKey.String(val) -} - -// CloudEventsEventSpecVersion returns an attribute KeyValue conforming to the -// "cloudevents.event_spec_version" semantic conventions. It represents the -// [version of the CloudEvents specification] which the event uses. -// -// [version of the CloudEvents specification]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#specversion -func CloudEventsEventSpecVersion(val string) attribute.KeyValue { - return CloudEventsEventSpecVersionKey.String(val) -} - -// CloudEventsEventSubject returns an attribute KeyValue conforming to the -// "cloudevents.event_subject" semantic conventions. It represents the [subject] -// of the event in the context of the event producer (identified by source). -// -// [subject]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#subject -func CloudEventsEventSubject(val string) attribute.KeyValue { - return CloudEventsEventSubjectKey.String(val) -} - -// CloudEventsEventType returns an attribute KeyValue conforming to the -// "cloudevents.event_type" semantic conventions. It represents the [event_type] -// contains a value describing the type of event related to the originating -// occurrence. -// -// [event_type]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#type -func CloudEventsEventType(val string) attribute.KeyValue { - return CloudEventsEventTypeKey.String(val) -} - -// Namespace: cloudfoundry -const ( - // CloudFoundryAppIDKey is the attribute Key conforming to the - // "cloudfoundry.app.id" semantic conventions. It represents the guid of the - // application. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "218fc5a9-a5f1-4b54-aa05-46717d0ab26d" - // Note: Application instrumentation should use the value from environment - // variable `VCAP_APPLICATION.application_id`. This is the same value as - // reported by `cf app --guid`. - CloudFoundryAppIDKey = attribute.Key("cloudfoundry.app.id") - - // CloudFoundryAppInstanceIDKey is the attribute Key conforming to the - // "cloudfoundry.app.instance.id" semantic conventions. It represents the index - // of the application instance. 0 when just one instance is active. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "0", "1" - // Note: CloudFoundry defines the `instance_id` in the [Loggregator v2 envelope] - // . - // It is used for logs and metrics emitted by CloudFoundry. It is - // supposed to contain the application instance index for applications - // deployed on the runtime. - // - // Application instrumentation should use the value from environment - // variable `CF_INSTANCE_INDEX`. - // - // [Loggregator v2 envelope]: https://github.com/cloudfoundry/loggregator-api#v2-envelope - CloudFoundryAppInstanceIDKey = attribute.Key("cloudfoundry.app.instance.id") - - // CloudFoundryAppNameKey is the attribute Key conforming to the - // "cloudfoundry.app.name" semantic conventions. It represents the name of the - // application. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "my-app-name" - // Note: Application instrumentation should use the value from environment - // variable `VCAP_APPLICATION.application_name`. This is the same value - // as reported by `cf apps`. - CloudFoundryAppNameKey = attribute.Key("cloudfoundry.app.name") - - // CloudFoundryOrgIDKey is the attribute Key conforming to the - // "cloudfoundry.org.id" semantic conventions. It represents the guid of the - // CloudFoundry org the application is running in. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "218fc5a9-a5f1-4b54-aa05-46717d0ab26d" - // Note: Application instrumentation should use the value from environment - // variable `VCAP_APPLICATION.org_id`. This is the same value as - // reported by `cf org --guid`. - CloudFoundryOrgIDKey = attribute.Key("cloudfoundry.org.id") - - // CloudFoundryOrgNameKey is the attribute Key conforming to the - // "cloudfoundry.org.name" semantic conventions. It represents the name of the - // CloudFoundry organization the app is running in. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "my-org-name" - // Note: Application instrumentation should use the value from environment - // variable `VCAP_APPLICATION.org_name`. This is the same value as - // reported by `cf orgs`. - CloudFoundryOrgNameKey = attribute.Key("cloudfoundry.org.name") - - // CloudFoundryProcessIDKey is the attribute Key conforming to the - // "cloudfoundry.process.id" semantic conventions. It represents the UID - // identifying the process. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "218fc5a9-a5f1-4b54-aa05-46717d0ab26d" - // Note: Application instrumentation should use the value from environment - // variable `VCAP_APPLICATION.process_id`. It is supposed to be equal to - // `VCAP_APPLICATION.app_id` for applications deployed to the runtime. - // For system components, this could be the actual PID. - CloudFoundryProcessIDKey = attribute.Key("cloudfoundry.process.id") - - // CloudFoundryProcessTypeKey is the attribute Key conforming to the - // "cloudfoundry.process.type" semantic conventions. It represents the type of - // process. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "web" - // Note: CloudFoundry applications can consist of multiple jobs. Usually the - // main process will be of type `web`. There can be additional background - // tasks or side-cars with different process types. - CloudFoundryProcessTypeKey = attribute.Key("cloudfoundry.process.type") - - // CloudFoundrySpaceIDKey is the attribute Key conforming to the - // "cloudfoundry.space.id" semantic conventions. It represents the guid of the - // CloudFoundry space the application is running in. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "218fc5a9-a5f1-4b54-aa05-46717d0ab26d" - // Note: Application instrumentation should use the value from environment - // variable `VCAP_APPLICATION.space_id`. This is the same value as - // reported by `cf space --guid`. - CloudFoundrySpaceIDKey = attribute.Key("cloudfoundry.space.id") - - // CloudFoundrySpaceNameKey is the attribute Key conforming to the - // "cloudfoundry.space.name" semantic conventions. It represents the name of the - // CloudFoundry space the application is running in. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "my-space-name" - // Note: Application instrumentation should use the value from environment - // variable `VCAP_APPLICATION.space_name`. This is the same value as - // reported by `cf spaces`. - CloudFoundrySpaceNameKey = attribute.Key("cloudfoundry.space.name") - - // CloudFoundrySystemIDKey is the attribute Key conforming to the - // "cloudfoundry.system.id" semantic conventions. It represents a guid or - // another name describing the event source. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "cf/gorouter" - // Note: CloudFoundry defines the `source_id` in the [Loggregator v2 envelope]. - // It is used for logs and metrics emitted by CloudFoundry. It is - // supposed to contain the component name, e.g. "gorouter", for - // CloudFoundry components. - // - // When system components are instrumented, values from the - // [Bosh spec] - // should be used. The `system.id` should be set to - // `spec.deployment/spec.name`. - // - // [Loggregator v2 envelope]: https://github.com/cloudfoundry/loggregator-api#v2-envelope - // [Bosh spec]: https://bosh.io/docs/jobs/#properties-spec - CloudFoundrySystemIDKey = attribute.Key("cloudfoundry.system.id") - - // CloudFoundrySystemInstanceIDKey is the attribute Key conforming to the - // "cloudfoundry.system.instance.id" semantic conventions. It represents a guid - // describing the concrete instance of the event source. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "218fc5a9-a5f1-4b54-aa05-46717d0ab26d" - // Note: CloudFoundry defines the `instance_id` in the [Loggregator v2 envelope] - // . - // It is used for logs and metrics emitted by CloudFoundry. It is - // supposed to contain the vm id for CloudFoundry components. - // - // When system components are instrumented, values from the - // [Bosh spec] - // should be used. The `system.instance.id` should be set to `spec.id`. - // - // [Loggregator v2 envelope]: https://github.com/cloudfoundry/loggregator-api#v2-envelope - // [Bosh spec]: https://bosh.io/docs/jobs/#properties-spec - CloudFoundrySystemInstanceIDKey = attribute.Key("cloudfoundry.system.instance.id") -) - -// CloudFoundryAppID returns an attribute KeyValue conforming to the -// "cloudfoundry.app.id" semantic conventions. It represents the guid of the -// application. -func CloudFoundryAppID(val string) attribute.KeyValue { - return CloudFoundryAppIDKey.String(val) -} - -// CloudFoundryAppInstanceID returns an attribute KeyValue conforming to the -// "cloudfoundry.app.instance.id" semantic conventions. It represents the index -// of the application instance. 0 when just one instance is active. -func CloudFoundryAppInstanceID(val string) attribute.KeyValue { - return CloudFoundryAppInstanceIDKey.String(val) -} - -// CloudFoundryAppName returns an attribute KeyValue conforming to the -// "cloudfoundry.app.name" semantic conventions. It represents the name of the -// application. -func CloudFoundryAppName(val string) attribute.KeyValue { - return CloudFoundryAppNameKey.String(val) -} - -// CloudFoundryOrgID returns an attribute KeyValue conforming to the -// "cloudfoundry.org.id" semantic conventions. It represents the guid of the -// CloudFoundry org the application is running in. -func CloudFoundryOrgID(val string) attribute.KeyValue { - return CloudFoundryOrgIDKey.String(val) -} - -// CloudFoundryOrgName returns an attribute KeyValue conforming to the -// "cloudfoundry.org.name" semantic conventions. It represents the name of the -// CloudFoundry organization the app is running in. -func CloudFoundryOrgName(val string) attribute.KeyValue { - return CloudFoundryOrgNameKey.String(val) -} - -// CloudFoundryProcessID returns an attribute KeyValue conforming to the -// "cloudfoundry.process.id" semantic conventions. It represents the UID -// identifying the process. -func CloudFoundryProcessID(val string) attribute.KeyValue { - return CloudFoundryProcessIDKey.String(val) -} - -// CloudFoundryProcessType returns an attribute KeyValue conforming to the -// "cloudfoundry.process.type" semantic conventions. It represents the type of -// process. -func CloudFoundryProcessType(val string) attribute.KeyValue { - return CloudFoundryProcessTypeKey.String(val) -} - -// CloudFoundrySpaceID returns an attribute KeyValue conforming to the -// "cloudfoundry.space.id" semantic conventions. It represents the guid of the -// CloudFoundry space the application is running in. -func CloudFoundrySpaceID(val string) attribute.KeyValue { - return CloudFoundrySpaceIDKey.String(val) -} - -// CloudFoundrySpaceName returns an attribute KeyValue conforming to the -// "cloudfoundry.space.name" semantic conventions. It represents the name of the -// CloudFoundry space the application is running in. -func CloudFoundrySpaceName(val string) attribute.KeyValue { - return CloudFoundrySpaceNameKey.String(val) -} - -// CloudFoundrySystemID returns an attribute KeyValue conforming to the -// "cloudfoundry.system.id" semantic conventions. It represents a guid or another -// name describing the event source. -func CloudFoundrySystemID(val string) attribute.KeyValue { - return CloudFoundrySystemIDKey.String(val) -} - -// CloudFoundrySystemInstanceID returns an attribute KeyValue conforming to the -// "cloudfoundry.system.instance.id" semantic conventions. It represents a guid -// describing the concrete instance of the event source. -func CloudFoundrySystemInstanceID(val string) attribute.KeyValue { - return CloudFoundrySystemInstanceIDKey.String(val) -} - -// Namespace: code -const ( - // CodeColumnNumberKey is the attribute Key conforming to the - // "code.column.number" semantic conventions. It represents the column number in - // `code.file.path` best representing the operation. It SHOULD point within the - // code unit named in `code.function.name`. This attribute MUST NOT be used on - // the Profile signal since the data is already captured in 'message Line'. This - // constraint is imposed to prevent redundancy and maintain data integrity. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Stable - CodeColumnNumberKey = attribute.Key("code.column.number") - - // CodeFilePathKey is the attribute Key conforming to the "code.file.path" - // semantic conventions. It represents the source code file name that identifies - // the code unit as uniquely as possible (preferably an absolute file path). - // This attribute MUST NOT be used on the Profile signal since the data is - // already captured in 'message Function'. This constraint is imposed to prevent - // redundancy and maintain data integrity. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: /usr/local/MyApplication/content_root/app/index.php - CodeFilePathKey = attribute.Key("code.file.path") - - // CodeFunctionNameKey is the attribute Key conforming to the - // "code.function.name" semantic conventions. It represents the method or - // function fully-qualified name without arguments. The value should fit the - // natural representation of the language runtime, which is also likely the same - // used within `code.stacktrace` attribute value. This attribute MUST NOT be - // used on the Profile signal since the data is already captured in 'message - // Function'. This constraint is imposed to prevent redundancy and maintain data - // integrity. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "com.example.MyHttpService.serveRequest", - // "GuzzleHttp\Client::transfer", "fopen" - // Note: Values and format depends on each language runtime, thus it is - // impossible to provide an exhaustive list of examples. - // The values are usually the same (or prefixes of) the ones found in native - // stack trace representation stored in - // `code.stacktrace` without information on arguments. - // - // Examples: - // - // - Java method: `com.example.MyHttpService.serveRequest` - // - Java anonymous class method: `com.mycompany.Main$1.myMethod` - // - Java lambda method: - // `com.mycompany.Main$$Lambda/0x0000748ae4149c00.myMethod` - // - PHP function: `GuzzleHttp\Client::transfer` - // - Go function: `github.com/my/repo/pkg.foo.func5` - // - Elixir: `OpenTelemetry.Ctx.new` - // - Erlang: `opentelemetry_ctx:new` - // - Rust: `playground::my_module::my_cool_func` - // - C function: `fopen` - CodeFunctionNameKey = attribute.Key("code.function.name") - - // CodeLineNumberKey is the attribute Key conforming to the "code.line.number" - // semantic conventions. It represents the line number in `code.file.path` best - // representing the operation. It SHOULD point within the code unit named in - // `code.function.name`. This attribute MUST NOT be used on the Profile signal - // since the data is already captured in 'message Line'. This constraint is - // imposed to prevent redundancy and maintain data integrity. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Stable - CodeLineNumberKey = attribute.Key("code.line.number") - - // CodeStacktraceKey is the attribute Key conforming to the "code.stacktrace" - // semantic conventions. It represents a stacktrace as a string in the natural - // representation for the language runtime. The representation is identical to - // [`exception.stacktrace`]. This attribute MUST NOT be used on the Profile - // signal since the data is already captured in 'message Location'. This - // constraint is imposed to prevent redundancy and maintain data integrity. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: at com.example.GenerateTrace.methodB(GenerateTrace.java:13)\n at - // com.example.GenerateTrace.methodA(GenerateTrace.java:9)\n at - // com.example.GenerateTrace.main(GenerateTrace.java:5) - // - // [`exception.stacktrace`]: /docs/exceptions/exceptions-spans.md#stacktrace-representation - CodeStacktraceKey = attribute.Key("code.stacktrace") -) - -// CodeColumnNumber returns an attribute KeyValue conforming to the -// "code.column.number" semantic conventions. It represents the column number in -// `code.file.path` best representing the operation. It SHOULD point within the -// code unit named in `code.function.name`. This attribute MUST NOT be used on -// the Profile signal since the data is already captured in 'message Line'. This -// constraint is imposed to prevent redundancy and maintain data integrity. -func CodeColumnNumber(val int) attribute.KeyValue { - return CodeColumnNumberKey.Int(val) -} - -// CodeFilePath returns an attribute KeyValue conforming to the "code.file.path" -// semantic conventions. It represents the source code file name that identifies -// the code unit as uniquely as possible (preferably an absolute file path). This -// attribute MUST NOT be used on the Profile signal since the data is already -// captured in 'message Function'. This constraint is imposed to prevent -// redundancy and maintain data integrity. -func CodeFilePath(val string) attribute.KeyValue { - return CodeFilePathKey.String(val) -} - -// CodeFunctionName returns an attribute KeyValue conforming to the -// "code.function.name" semantic conventions. It represents the method or -// function fully-qualified name without arguments. The value should fit the -// natural representation of the language runtime, which is also likely the same -// used within `code.stacktrace` attribute value. This attribute MUST NOT be used -// on the Profile signal since the data is already captured in 'message -// Function'. This constraint is imposed to prevent redundancy and maintain data -// integrity. -func CodeFunctionName(val string) attribute.KeyValue { - return CodeFunctionNameKey.String(val) -} - -// CodeLineNumber returns an attribute KeyValue conforming to the -// "code.line.number" semantic conventions. It represents the line number in -// `code.file.path` best representing the operation. It SHOULD point within the -// code unit named in `code.function.name`. This attribute MUST NOT be used on -// the Profile signal since the data is already captured in 'message Line'. This -// constraint is imposed to prevent redundancy and maintain data integrity. -func CodeLineNumber(val int) attribute.KeyValue { - return CodeLineNumberKey.Int(val) -} - -// CodeStacktrace returns an attribute KeyValue conforming to the -// "code.stacktrace" semantic conventions. It represents a stacktrace as a string -// in the natural representation for the language runtime. The representation is -// identical to [`exception.stacktrace`]. This attribute MUST NOT be used on the -// Profile signal since the data is already captured in 'message Location'. This -// constraint is imposed to prevent redundancy and maintain data integrity. -// -// [`exception.stacktrace`]: /docs/exceptions/exceptions-spans.md#stacktrace-representation -func CodeStacktrace(val string) attribute.KeyValue { - return CodeStacktraceKey.String(val) -} - -// Namespace: container -const ( - // ContainerCommandKey is the attribute Key conforming to the - // "container.command" semantic conventions. It represents the command used to - // run the container (i.e. the command name). - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "otelcontribcol" - // Note: If using embedded credentials or sensitive data, it is recommended to - // remove them to prevent potential leakage. - ContainerCommandKey = attribute.Key("container.command") - - // ContainerCommandArgsKey is the attribute Key conforming to the - // "container.command_args" semantic conventions. It represents the all the - // command arguments (including the command/executable itself) run by the - // container. - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "otelcontribcol", "--config", "config.yaml" - ContainerCommandArgsKey = attribute.Key("container.command_args") - - // ContainerCommandLineKey is the attribute Key conforming to the - // "container.command_line" semantic conventions. It represents the full command - // run by the container as a single string representing the full command. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "otelcontribcol --config config.yaml" - ContainerCommandLineKey = attribute.Key("container.command_line") - - // ContainerCSIPluginNameKey is the attribute Key conforming to the - // "container.csi.plugin.name" semantic conventions. It represents the name of - // the CSI ([Container Storage Interface]) plugin used by the volume. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "pd.csi.storage.gke.io" - // Note: This can sometimes be referred to as a "driver" in CSI implementations. - // This should represent the `name` field of the GetPluginInfo RPC. - // - // [Container Storage Interface]: https://github.com/container-storage-interface/spec - ContainerCSIPluginNameKey = attribute.Key("container.csi.plugin.name") - - // ContainerCSIVolumeIDKey is the attribute Key conforming to the - // "container.csi.volume.id" semantic conventions. It represents the unique - // volume ID returned by the CSI ([Container Storage Interface]) plugin. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "projects/my-gcp-project/zones/my-gcp-zone/disks/my-gcp-disk" - // Note: This can sometimes be referred to as a "volume handle" in CSI - // implementations. This should represent the `Volume.volume_id` field in CSI - // spec. - // - // [Container Storage Interface]: https://github.com/container-storage-interface/spec - ContainerCSIVolumeIDKey = attribute.Key("container.csi.volume.id") - - // ContainerIDKey is the attribute Key conforming to the "container.id" semantic - // conventions. It represents the container ID. Usually a UUID, as for example - // used to [identify Docker containers]. The UUID might be abbreviated. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Beta - // - // Examples: "a3bf90e006b2" - // - // [identify Docker containers]: https://docs.docker.com/engine/containers/run/#container-identification - ContainerIDKey = attribute.Key("container.id") - - // ContainerImageIDKey is the attribute Key conforming to the - // "container.image.id" semantic conventions. It represents the runtime specific - // image identifier. Usually a hash algorithm followed by a UUID. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // "sha256:19c92d0a00d1b66d897bceaa7319bee0dd38a10a851c60bcec9474aa3f01e50f" - // Note: Docker defines a sha256 of the image id; `container.image.id` - // corresponds to the `Image` field from the Docker container inspect [API] - // endpoint. - // K8s defines a link to the container registry repository with digest - // `"imageID": "registry.azurecr.io /namespace/service/dockerfile@sha256:bdeabd40c3a8a492eaf9e8e44d0ebbb84bac7ee25ac0cf8a7159d25f62555625"` - // . - // The ID is assigned by the container runtime and can vary in different - // environments. Consider using `oci.manifest.digest` if it is important to - // identify the same image in different environments/runtimes. - // - // [API]: https://docs.docker.com/reference/api/engine/version/v1.52/#tag/Container/operation/ContainerInspect - ContainerImageIDKey = attribute.Key("container.image.id") - - // ContainerImageNameKey is the attribute Key conforming to the - // "container.image.name" semantic conventions. It represents the name of the - // image the container was built on. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Beta - // - // Examples: "gcr.io/opentelemetry/operator" - ContainerImageNameKey = attribute.Key("container.image.name") - - // ContainerImageRepoDigestsKey is the attribute Key conforming to the - // "container.image.repo_digests" semantic conventions. It represents the repo - // digests of the container image as provided by the container runtime. - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Beta - // - // Examples: - // "example@sha256:afcc7f1ac1b49db317a7196c902e61c6c3c4607d63599ee1a82d702d249a0ccb", - // "internal.registry.example.com:5000/example@sha256:b69959407d21e8a062e0416bf13405bb2b71ed7a84dde4158ebafacfa06f5578" - // Note: [Docker] and [CRI] report those under the `RepoDigests` field. - // - // [Docker]: https://docs.docker.com/reference/api/engine/version/v1.52/#tag/Image/operation/ImageInspect - // [CRI]: https://github.com/kubernetes/cri-api/blob/c75ef5b473bbe2d0a4fc92f82235efd665ea8e9f/pkg/apis/runtime/v1/api.proto#L1237-L1238 - ContainerImageRepoDigestsKey = attribute.Key("container.image.repo_digests") - - // ContainerImageTagsKey is the attribute Key conforming to the - // "container.image.tags" semantic conventions. It represents the container - // image tags. An example can be found in [Docker Image Inspect]. Should be only - // the `` section of the full name for example from - // `registry.example.com/my-org/my-image:`. - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Beta - // - // Examples: "v1.27.1", "3.5.7-0" - // - // [Docker Image Inspect]: https://docs.docker.com/reference/api/engine/version/v1.52/#tag/Image/operation/ImageInspect - ContainerImageTagsKey = attribute.Key("container.image.tags") - - // ContainerNameKey is the attribute Key conforming to the "container.name" - // semantic conventions. It represents the container name used by container - // runtime. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "opentelemetry-autoconf" - ContainerNameKey = attribute.Key("container.name") - - // ContainerRuntimeDescriptionKey is the attribute Key conforming to the - // "container.runtime.description" semantic conventions. It represents a - // description about the runtime which could include, for example details about - // the CRI/API version being used or other customisations. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "docker://19.3.1 - CRI: 1.22.0" - ContainerRuntimeDescriptionKey = attribute.Key("container.runtime.description") - - // ContainerRuntimeNameKey is the attribute Key conforming to the - // "container.runtime.name" semantic conventions. It represents the container - // runtime managing this container. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "docker", "containerd", "rkt" - ContainerRuntimeNameKey = attribute.Key("container.runtime.name") - - // ContainerRuntimeVersionKey is the attribute Key conforming to the - // "container.runtime.version" semantic conventions. It represents the version - // of the runtime of this process, as returned by the runtime without - // modification. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 1.0.0 - ContainerRuntimeVersionKey = attribute.Key("container.runtime.version") -) - -// ContainerCommand returns an attribute KeyValue conforming to the -// "container.command" semantic conventions. It represents the command used to -// run the container (i.e. the command name). -func ContainerCommand(val string) attribute.KeyValue { - return ContainerCommandKey.String(val) -} - -// ContainerCommandArgs returns an attribute KeyValue conforming to the -// "container.command_args" semantic conventions. It represents the all the -// command arguments (including the command/executable itself) run by the -// container. -func ContainerCommandArgs(val ...string) attribute.KeyValue { - return ContainerCommandArgsKey.StringSlice(val) -} - -// ContainerCommandLine returns an attribute KeyValue conforming to the -// "container.command_line" semantic conventions. It represents the full command -// run by the container as a single string representing the full command. -func ContainerCommandLine(val string) attribute.KeyValue { - return ContainerCommandLineKey.String(val) -} - -// ContainerCSIPluginName returns an attribute KeyValue conforming to the -// "container.csi.plugin.name" semantic conventions. It represents the name of -// the CSI ([Container Storage Interface]) plugin used by the volume. -// -// [Container Storage Interface]: https://github.com/container-storage-interface/spec -func ContainerCSIPluginName(val string) attribute.KeyValue { - return ContainerCSIPluginNameKey.String(val) -} - -// ContainerCSIVolumeID returns an attribute KeyValue conforming to the -// "container.csi.volume.id" semantic conventions. It represents the unique -// volume ID returned by the CSI ([Container Storage Interface]) plugin. -// -// [Container Storage Interface]: https://github.com/container-storage-interface/spec -func ContainerCSIVolumeID(val string) attribute.KeyValue { - return ContainerCSIVolumeIDKey.String(val) -} - -// ContainerID returns an attribute KeyValue conforming to the "container.id" -// semantic conventions. It represents the container ID. Usually a UUID, as for -// example used to [identify Docker containers]. The UUID might be abbreviated. -// -// [identify Docker containers]: https://docs.docker.com/engine/containers/run/#container-identification -func ContainerID(val string) attribute.KeyValue { - return ContainerIDKey.String(val) -} - -// ContainerImageID returns an attribute KeyValue conforming to the -// "container.image.id" semantic conventions. It represents the runtime specific -// image identifier. Usually a hash algorithm followed by a UUID. -func ContainerImageID(val string) attribute.KeyValue { - return ContainerImageIDKey.String(val) -} - -// ContainerImageName returns an attribute KeyValue conforming to the -// "container.image.name" semantic conventions. It represents the name of the -// image the container was built on. -func ContainerImageName(val string) attribute.KeyValue { - return ContainerImageNameKey.String(val) -} - -// ContainerImageRepoDigests returns an attribute KeyValue conforming to the -// "container.image.repo_digests" semantic conventions. It represents the repo -// digests of the container image as provided by the container runtime. -func ContainerImageRepoDigests(val ...string) attribute.KeyValue { - return ContainerImageRepoDigestsKey.StringSlice(val) -} - -// ContainerImageTags returns an attribute KeyValue conforming to the -// "container.image.tags" semantic conventions. It represents the container image -// tags. An example can be found in [Docker Image Inspect]. Should be only the -// `` section of the full name for example from -// `registry.example.com/my-org/my-image:`. -// -// [Docker Image Inspect]: https://docs.docker.com/reference/api/engine/version/v1.52/#tag/Image/operation/ImageInspect -func ContainerImageTags(val ...string) attribute.KeyValue { - return ContainerImageTagsKey.StringSlice(val) -} - -// ContainerLabel returns an attribute KeyValue conforming to the -// "container.label" semantic conventions. It represents the container labels, -// `` being the label name, the value being the label value. -func ContainerLabel(key string, val string) attribute.KeyValue { - return attribute.String("container.label."+key, val) -} - -// ContainerName returns an attribute KeyValue conforming to the "container.name" -// semantic conventions. It represents the container name used by container -// runtime. -func ContainerName(val string) attribute.KeyValue { - return ContainerNameKey.String(val) -} - -// ContainerRuntimeDescription returns an attribute KeyValue conforming to the -// "container.runtime.description" semantic conventions. It represents a -// description about the runtime which could include, for example details about -// the CRI/API version being used or other customisations. -func ContainerRuntimeDescription(val string) attribute.KeyValue { - return ContainerRuntimeDescriptionKey.String(val) -} - -// ContainerRuntimeName returns an attribute KeyValue conforming to the -// "container.runtime.name" semantic conventions. It represents the container -// runtime managing this container. -func ContainerRuntimeName(val string) attribute.KeyValue { - return ContainerRuntimeNameKey.String(val) -} - -// ContainerRuntimeVersion returns an attribute KeyValue conforming to the -// "container.runtime.version" semantic conventions. It represents the version of -// the runtime of this process, as returned by the runtime without modification. -func ContainerRuntimeVersion(val string) attribute.KeyValue { - return ContainerRuntimeVersionKey.String(val) -} - -// Namespace: cpu -const ( - // CPULogicalNumberKey is the attribute Key conforming to the - // "cpu.logical_number" semantic conventions. It represents the logical CPU - // number [0..n-1]. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 1 - CPULogicalNumberKey = attribute.Key("cpu.logical_number") - - // CPUModeKey is the attribute Key conforming to the "cpu.mode" semantic - // conventions. It represents the mode of the CPU. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "user", "system" - CPUModeKey = attribute.Key("cpu.mode") -) - -// CPULogicalNumber returns an attribute KeyValue conforming to the -// "cpu.logical_number" semantic conventions. It represents the logical CPU -// number [0..n-1]. -func CPULogicalNumber(val int) attribute.KeyValue { - return CPULogicalNumberKey.Int(val) -} - -// Enum values for cpu.mode -var ( - // User - // Stability: development - CPUModeUser = CPUModeKey.String("user") - // System - // Stability: development - CPUModeSystem = CPUModeKey.String("system") - // Nice - // Stability: development - CPUModeNice = CPUModeKey.String("nice") - // Idle - // Stability: development - CPUModeIdle = CPUModeKey.String("idle") - // IO Wait - // Stability: development - CPUModeIOWait = CPUModeKey.String("iowait") - // Interrupt - // Stability: development - CPUModeInterrupt = CPUModeKey.String("interrupt") - // Steal - // Stability: development - CPUModeSteal = CPUModeKey.String("steal") - // Kernel - // Stability: development - CPUModeKernel = CPUModeKey.String("kernel") -) - -// Namespace: db -const ( - // DBClientConnectionPoolNameKey is the attribute Key conforming to the - // "db.client.connection.pool.name" semantic conventions. It represents the name - // of the connection pool; unique within the instrumented application. In case - // the connection pool implementation doesn't provide a name, instrumentation - // SHOULD use a combination of parameters that would make the name unique, for - // example, combining attributes `server.address`, `server.port`, and - // `db.namespace`, formatted as `server.address:server.port/db.namespace`. - // Instrumentations that generate connection pool name following different - // patterns SHOULD document it. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "myDataSource" - DBClientConnectionPoolNameKey = attribute.Key("db.client.connection.pool.name") - - // DBClientConnectionStateKey is the attribute Key conforming to the - // "db.client.connection.state" semantic conventions. It represents the state of - // a connection in the pool. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "idle" - DBClientConnectionStateKey = attribute.Key("db.client.connection.state") - - // DBCollectionNameKey is the attribute Key conforming to the - // "db.collection.name" semantic conventions. It represents the name of a - // collection (table, container) within the database. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "public.users", "customers" - // Note: It is RECOMMENDED to capture the value as provided by the application - // without attempting to do any case normalization. - // - // The collection name SHOULD NOT be extracted from `db.query.text`, - // when the database system supports query text with multiple collections - // in non-batch operations. - // - // For batch operations, if the individual operations are known to have the same - // collection name then that collection name SHOULD be used. - DBCollectionNameKey = attribute.Key("db.collection.name") - - // DBNamespaceKey is the attribute Key conforming to the "db.namespace" semantic - // conventions. It represents the name of the database, fully qualified within - // the server address and port. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "customers", "test.users" - // Note: If a database system has multiple namespace components, they SHOULD be - // concatenated from the most general to the most specific namespace component, - // using `|` as a separator between the components. Any missing components (and - // their associated separators) SHOULD be omitted. - // Semantic conventions for individual database systems SHOULD document what - // `db.namespace` means in the context of that system. - // It is RECOMMENDED to capture the value as provided by the application without - // attempting to do any case normalization. - DBNamespaceKey = attribute.Key("db.namespace") - - // DBOperationBatchSizeKey is the attribute Key conforming to the - // "db.operation.batch.size" semantic conventions. It represents the number of - // queries included in a batch operation. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: 2, 3, 4 - // Note: Operations are only considered batches when they contain two or more - // operations, and so `db.operation.batch.size` SHOULD never be `1`. - DBOperationBatchSizeKey = attribute.Key("db.operation.batch.size") - - // DBOperationNameKey is the attribute Key conforming to the "db.operation.name" - // semantic conventions. It represents the name of the operation or command - // being executed. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "findAndModify", "HMSET", "SELECT" - // Note: It is RECOMMENDED to capture the value as provided by the application - // without attempting to do any case normalization. - // - // The operation name SHOULD NOT be extracted from `db.query.text`, - // when the database system supports query text with multiple operations - // in non-batch operations. - // - // If spaces can occur in the operation name, multiple consecutive spaces - // SHOULD be normalized to a single space. - // - // For batch operations, if the individual operations are known to have the same - // operation name - // then that operation name SHOULD be used prepended by `BATCH `, - // otherwise `db.operation.name` SHOULD be `BATCH` or some other database - // system specific term if more applicable. - DBOperationNameKey = attribute.Key("db.operation.name") - - // DBQuerySummaryKey is the attribute Key conforming to the "db.query.summary" - // semantic conventions. It represents the low cardinality summary of a database - // query. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "SELECT wuser_table", "INSERT shipping_details SELECT orders", "get - // user by id" - // Note: The query summary describes a class of database queries and is useful - // as a grouping key, especially when analyzing telemetry for database - // calls involving complex queries. - // - // Summary may be available to the instrumentation through - // instrumentation hooks or other means. If it is not available, - // instrumentations - // that support query parsing SHOULD generate a summary following - // [Generating query summary] - // section. - // - // For batch operations, if the individual operations are known to have the same - // query summary - // then that query summary SHOULD be used prepended by `BATCH `, - // otherwise `db.query.summary` SHOULD be `BATCH` or some other database - // system specific term if more applicable. - // - // [Generating query summary]: /docs/db/database-spans.md#generating-a-summary-of-the-query - DBQuerySummaryKey = attribute.Key("db.query.summary") - - // DBQueryTextKey is the attribute Key conforming to the "db.query.text" - // semantic conventions. It represents the database query being executed. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "SELECT * FROM wuser_table where username = ?", "SET mykey ?" - // Note: For sanitization see [Sanitization of `db.query.text`]. - // For batch operations, if the individual operations are known to have the same - // query text then that query text SHOULD be used, otherwise all of the - // individual query texts SHOULD be concatenated with separator `; ` or some - // other database system specific separator if more applicable. - // Parameterized query text SHOULD NOT be sanitized. Even though parameterized - // query text can potentially have sensitive data, by using a parameterized - // query the user is giving a strong signal that any sensitive data will be - // passed as parameter values, and the benefit to observability of capturing the - // static part of the query text by default outweighs the risk. - // - // [Sanitization of `db.query.text`]: /docs/db/database-spans.md#sanitization-of-dbquerytext - DBQueryTextKey = attribute.Key("db.query.text") - - // DBResponseReturnedRowsKey is the attribute Key conforming to the - // "db.response.returned_rows" semantic conventions. It represents the number of - // rows returned by the operation. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 10, 30, 1000 - DBResponseReturnedRowsKey = attribute.Key("db.response.returned_rows") - - // DBResponseStatusCodeKey is the attribute Key conforming to the - // "db.response.status_code" semantic conventions. It represents the database - // response status code. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "102", "ORA-17002", "08P01", "404" - // Note: The status code returned by the database. Usually it represents an - // error code, but may also represent partial success, warning, or differentiate - // between various types of successful outcomes. - // Semantic conventions for individual database systems SHOULD document what - // `db.response.status_code` means in the context of that system. - DBResponseStatusCodeKey = attribute.Key("db.response.status_code") - - // DBStoredProcedureNameKey is the attribute Key conforming to the - // "db.stored_procedure.name" semantic conventions. It represents the name of a - // stored procedure within the database. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "GetCustomer" - // Note: It is RECOMMENDED to capture the value as provided by the application - // without attempting to do any case normalization. - // - // For batch operations, if the individual operations are known to have the same - // stored procedure name then that stored procedure name SHOULD be used. - DBStoredProcedureNameKey = attribute.Key("db.stored_procedure.name") - - // DBSystemNameKey is the attribute Key conforming to the "db.system.name" - // semantic conventions. It represents the database management system (DBMS) - // product as identified by the client instrumentation. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: - // Note: The actual DBMS may differ from the one identified by the client. For - // example, when using PostgreSQL client libraries to connect to a CockroachDB, - // the `db.system.name` is set to `postgresql` based on the instrumentation's - // best knowledge. - DBSystemNameKey = attribute.Key("db.system.name") -) - -// DBClientConnectionPoolName returns an attribute KeyValue conforming to the -// "db.client.connection.pool.name" semantic conventions. It represents the name -// of the connection pool; unique within the instrumented application. In case -// the connection pool implementation doesn't provide a name, instrumentation -// SHOULD use a combination of parameters that would make the name unique, for -// example, combining attributes `server.address`, `server.port`, and -// `db.namespace`, formatted as `server.address:server.port/db.namespace`. -// Instrumentations that generate connection pool name following different -// patterns SHOULD document it. -func DBClientConnectionPoolName(val string) attribute.KeyValue { - return DBClientConnectionPoolNameKey.String(val) -} - -// DBCollectionName returns an attribute KeyValue conforming to the -// "db.collection.name" semantic conventions. It represents the name of a -// collection (table, container) within the database. -func DBCollectionName(val string) attribute.KeyValue { - return DBCollectionNameKey.String(val) -} - -// DBNamespace returns an attribute KeyValue conforming to the "db.namespace" -// semantic conventions. It represents the name of the database, fully qualified -// within the server address and port. -func DBNamespace(val string) attribute.KeyValue { - return DBNamespaceKey.String(val) -} - -// DBOperationBatchSize returns an attribute KeyValue conforming to the -// "db.operation.batch.size" semantic conventions. It represents the number of -// queries included in a batch operation. -func DBOperationBatchSize(val int) attribute.KeyValue { - return DBOperationBatchSizeKey.Int(val) -} - -// DBOperationName returns an attribute KeyValue conforming to the -// "db.operation.name" semantic conventions. It represents the name of the -// operation or command being executed. -func DBOperationName(val string) attribute.KeyValue { - return DBOperationNameKey.String(val) -} - -// DBOperationParameter returns an attribute KeyValue conforming to the -// "db.operation.parameter" semantic conventions. It represents a database -// operation parameter, with `` being the parameter name, and the attribute -// value being a string representation of the parameter value. -func DBOperationParameter(key string, val string) attribute.KeyValue { - return attribute.String("db.operation.parameter."+key, val) -} - -// DBQueryParameter returns an attribute KeyValue conforming to the -// "db.query.parameter" semantic conventions. It represents a database query -// parameter, with `` being the parameter name, and the attribute value -// being a string representation of the parameter value. -func DBQueryParameter(key string, val string) attribute.KeyValue { - return attribute.String("db.query.parameter."+key, val) -} - -// DBQuerySummary returns an attribute KeyValue conforming to the -// "db.query.summary" semantic conventions. It represents the low cardinality -// summary of a database query. -func DBQuerySummary(val string) attribute.KeyValue { - return DBQuerySummaryKey.String(val) -} - -// DBQueryText returns an attribute KeyValue conforming to the "db.query.text" -// semantic conventions. It represents the database query being executed. -func DBQueryText(val string) attribute.KeyValue { - return DBQueryTextKey.String(val) -} - -// DBResponseReturnedRows returns an attribute KeyValue conforming to the -// "db.response.returned_rows" semantic conventions. It represents the number of -// rows returned by the operation. -func DBResponseReturnedRows(val int) attribute.KeyValue { - return DBResponseReturnedRowsKey.Int(val) -} - -// DBResponseStatusCode returns an attribute KeyValue conforming to the -// "db.response.status_code" semantic conventions. It represents the database -// response status code. -func DBResponseStatusCode(val string) attribute.KeyValue { - return DBResponseStatusCodeKey.String(val) -} - -// DBStoredProcedureName returns an attribute KeyValue conforming to the -// "db.stored_procedure.name" semantic conventions. It represents the name of a -// stored procedure within the database. -func DBStoredProcedureName(val string) attribute.KeyValue { - return DBStoredProcedureNameKey.String(val) -} - -// Enum values for db.client.connection.state -var ( - // idle - // Stability: development - DBClientConnectionStateIdle = DBClientConnectionStateKey.String("idle") - // used - // Stability: development - DBClientConnectionStateUsed = DBClientConnectionStateKey.String("used") -) - -// Enum values for db.system.name -var ( - // Some other SQL database. Fallback only. - // Stability: development - DBSystemNameOtherSQL = DBSystemNameKey.String("other_sql") - // [Adabas (Adaptable Database System)] - // Stability: development - // - // [Adabas (Adaptable Database System)]: https://documentation.softwareag.com/?pf=adabas - DBSystemNameSoftwareagAdabas = DBSystemNameKey.String("softwareag.adabas") - // [Actian Ingres] - // Stability: development - // - // [Actian Ingres]: https://www.actian.com/databases/ingres/ - DBSystemNameActianIngres = DBSystemNameKey.String("actian.ingres") - // [Amazon DynamoDB] - // Stability: development - // - // [Amazon DynamoDB]: https://aws.amazon.com/pm/dynamodb/ - DBSystemNameAWSDynamoDB = DBSystemNameKey.String("aws.dynamodb") - // [Amazon Redshift] - // Stability: development - // - // [Amazon Redshift]: https://aws.amazon.com/redshift/ - DBSystemNameAWSRedshift = DBSystemNameKey.String("aws.redshift") - // [Azure Cosmos DB] - // Stability: development - // - // [Azure Cosmos DB]: https://learn.microsoft.com/azure/cosmos-db - DBSystemNameAzureCosmosDB = DBSystemNameKey.String("azure.cosmosdb") - // [InterSystems Caché] - // Stability: development - // - // [InterSystems Caché]: https://www.intersystems.com/products/cache/ - DBSystemNameIntersystemsCache = DBSystemNameKey.String("intersystems.cache") - // [Apache Cassandra] - // Stability: development - // - // [Apache Cassandra]: https://cassandra.apache.org/ - DBSystemNameCassandra = DBSystemNameKey.String("cassandra") - // [ClickHouse] - // Stability: development - // - // [ClickHouse]: https://clickhouse.com/ - DBSystemNameClickHouse = DBSystemNameKey.String("clickhouse") - // [CockroachDB] - // Stability: development - // - // [CockroachDB]: https://www.cockroachlabs.com/ - DBSystemNameCockroachDB = DBSystemNameKey.String("cockroachdb") - // [Couchbase] - // Stability: development - // - // [Couchbase]: https://www.couchbase.com/ - DBSystemNameCouchbase = DBSystemNameKey.String("couchbase") - // [Apache CouchDB] - // Stability: development - // - // [Apache CouchDB]: https://couchdb.apache.org/ - DBSystemNameCouchDB = DBSystemNameKey.String("couchdb") - // [Apache Derby] - // Stability: development - // - // [Apache Derby]: https://db.apache.org/derby/ - DBSystemNameDerby = DBSystemNameKey.String("derby") - // [Elasticsearch] - // Stability: development - // - // [Elasticsearch]: https://www.elastic.co/elasticsearch - DBSystemNameElasticsearch = DBSystemNameKey.String("elasticsearch") - // [Firebird] - // Stability: development - // - // [Firebird]: https://www.firebirdsql.org/ - DBSystemNameFirebirdSQL = DBSystemNameKey.String("firebirdsql") - // [Google Cloud Spanner] - // Stability: development - // - // [Google Cloud Spanner]: https://cloud.google.com/spanner - DBSystemNameGCPSpanner = DBSystemNameKey.String("gcp.spanner") - // [Apache Geode] - // Stability: development - // - // [Apache Geode]: https://geode.apache.org/ - DBSystemNameGeode = DBSystemNameKey.String("geode") - // [H2 Database] - // Stability: development - // - // [H2 Database]: https://h2database.com/ - DBSystemNameH2database = DBSystemNameKey.String("h2database") - // [Apache HBase] - // Stability: development - // - // [Apache HBase]: https://hbase.apache.org/ - DBSystemNameHBase = DBSystemNameKey.String("hbase") - // [Apache Hive] - // Stability: development - // - // [Apache Hive]: https://hive.apache.org/ - DBSystemNameHive = DBSystemNameKey.String("hive") - // [HyperSQL Database] - // Stability: development - // - // [HyperSQL Database]: https://hsqldb.org/ - DBSystemNameHSQLDB = DBSystemNameKey.String("hsqldb") - // [IBM Db2] - // Stability: development - // - // [IBM Db2]: https://www.ibm.com/db2 - DBSystemNameIBMDB2 = DBSystemNameKey.String("ibm.db2") - // [IBM Informix] - // Stability: development - // - // [IBM Informix]: https://www.ibm.com/products/informix - DBSystemNameIBMInformix = DBSystemNameKey.String("ibm.informix") - // [IBM Netezza] - // Stability: development - // - // [IBM Netezza]: https://www.ibm.com/products/netezza - DBSystemNameIBMNetezza = DBSystemNameKey.String("ibm.netezza") - // [InfluxDB] - // Stability: development - // - // [InfluxDB]: https://www.influxdata.com/ - DBSystemNameInfluxDB = DBSystemNameKey.String("influxdb") - // [Instant] - // Stability: development - // - // [Instant]: https://www.instantdb.com/ - DBSystemNameInstantDB = DBSystemNameKey.String("instantdb") - // [MariaDB] - // Stability: stable - // - // [MariaDB]: https://mariadb.org/ - DBSystemNameMariaDB = DBSystemNameKey.String("mariadb") - // [Memcached] - // Stability: development - // - // [Memcached]: https://memcached.org/ - DBSystemNameMemcached = DBSystemNameKey.String("memcached") - // [MongoDB] - // Stability: development - // - // [MongoDB]: https://www.mongodb.com/ - DBSystemNameMongoDB = DBSystemNameKey.String("mongodb") - // [Microsoft SQL Server] - // Stability: stable - // - // [Microsoft SQL Server]: https://www.microsoft.com/sql-server - DBSystemNameMicrosoftSQLServer = DBSystemNameKey.String("microsoft.sql_server") - // [MySQL] - // Stability: stable - // - // [MySQL]: https://www.mysql.com/ - DBSystemNameMySQL = DBSystemNameKey.String("mysql") - // [Neo4j] - // Stability: development - // - // [Neo4j]: https://neo4j.com/ - DBSystemNameNeo4j = DBSystemNameKey.String("neo4j") - // [OpenSearch] - // Stability: development - // - // [OpenSearch]: https://opensearch.org/ - DBSystemNameOpenSearch = DBSystemNameKey.String("opensearch") - // [Oracle Database] - // Stability: development - // - // [Oracle Database]: https://www.oracle.com/database/ - DBSystemNameOracleDB = DBSystemNameKey.String("oracle.db") - // [PostgreSQL] - // Stability: stable - // - // [PostgreSQL]: https://www.postgresql.org/ - DBSystemNamePostgreSQL = DBSystemNameKey.String("postgresql") - // [Redis] - // Stability: development - // - // [Redis]: https://redis.io/ - DBSystemNameRedis = DBSystemNameKey.String("redis") - // [SAP HANA] - // Stability: development - // - // [SAP HANA]: https://www.sap.com/products/technology-platform/hana/what-is-sap-hana.html - DBSystemNameSAPHANA = DBSystemNameKey.String("sap.hana") - // [SAP MaxDB] - // Stability: development - // - // [SAP MaxDB]: https://maxdb.sap.com/ - DBSystemNameSAPMaxDB = DBSystemNameKey.String("sap.maxdb") - // [SQLite] - // Stability: development - // - // [SQLite]: https://www.sqlite.org/ - DBSystemNameSQLite = DBSystemNameKey.String("sqlite") - // [Teradata] - // Stability: development - // - // [Teradata]: https://www.teradata.com/ - DBSystemNameTeradata = DBSystemNameKey.String("teradata") - // [Trino] - // Stability: development - // - // [Trino]: https://trino.io/ - DBSystemNameTrino = DBSystemNameKey.String("trino") -) - -// Namespace: deployment -const ( - // DeploymentEnvironmentNameKey is the attribute Key conforming to the - // "deployment.environment.name" semantic conventions. It represents the name of - // the [deployment environment] (aka deployment tier). - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "staging", "production" - // Note: `deployment.environment.name` does not affect the uniqueness - // constraints defined through - // the `service.namespace`, `service.name` and `service.instance.id` resource - // attributes. - // This implies that resources carrying the following attribute combinations - // MUST be - // considered to be identifying the same service: - // - // - `service.name=frontend`, `deployment.environment.name=production` - // - `service.name=frontend`, `deployment.environment.name=staging`. - // - // - // [deployment environment]: https://wikipedia.org/wiki/Deployment_environment - DeploymentEnvironmentNameKey = attribute.Key("deployment.environment.name") - - // DeploymentIDKey is the attribute Key conforming to the "deployment.id" - // semantic conventions. It represents the id of the deployment. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "1208" - DeploymentIDKey = attribute.Key("deployment.id") - - // DeploymentNameKey is the attribute Key conforming to the "deployment.name" - // semantic conventions. It represents the name of the deployment. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "deploy my app", "deploy-frontend" - DeploymentNameKey = attribute.Key("deployment.name") - - // DeploymentStatusKey is the attribute Key conforming to the - // "deployment.status" semantic conventions. It represents the status of the - // deployment. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - DeploymentStatusKey = attribute.Key("deployment.status") -) - -// DeploymentEnvironmentName returns an attribute KeyValue conforming to the -// "deployment.environment.name" semantic conventions. It represents the name of -// the [deployment environment] (aka deployment tier). -// -// [deployment environment]: https://wikipedia.org/wiki/Deployment_environment -func DeploymentEnvironmentName(val string) attribute.KeyValue { - return DeploymentEnvironmentNameKey.String(val) -} - -// DeploymentID returns an attribute KeyValue conforming to the "deployment.id" -// semantic conventions. It represents the id of the deployment. -func DeploymentID(val string) attribute.KeyValue { - return DeploymentIDKey.String(val) -} - -// DeploymentName returns an attribute KeyValue conforming to the -// "deployment.name" semantic conventions. It represents the name of the -// deployment. -func DeploymentName(val string) attribute.KeyValue { - return DeploymentNameKey.String(val) -} - -// Enum values for deployment.status -var ( - // failed - // Stability: development - DeploymentStatusFailed = DeploymentStatusKey.String("failed") - // succeeded - // Stability: development - DeploymentStatusSucceeded = DeploymentStatusKey.String("succeeded") -) - -// Namespace: destination -const ( - // DestinationAddressKey is the attribute Key conforming to the - // "destination.address" semantic conventions. It represents the destination - // address - domain name if available without reverse DNS lookup; otherwise, IP - // address or Unix domain socket name. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "destination.example.com", "10.1.2.80", "/tmp/my.sock" - // Note: When observed from the source side, and when communicating through an - // intermediary, `destination.address` SHOULD represent the destination address - // behind any intermediaries, for example proxies, if it's available. - DestinationAddressKey = attribute.Key("destination.address") - - // DestinationPortKey is the attribute Key conforming to the "destination.port" - // semantic conventions. It represents the destination port number. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 3389, 2888 - DestinationPortKey = attribute.Key("destination.port") -) - -// DestinationAddress returns an attribute KeyValue conforming to the -// "destination.address" semantic conventions. It represents the destination -// address - domain name if available without reverse DNS lookup; otherwise, IP -// address or Unix domain socket name. -func DestinationAddress(val string) attribute.KeyValue { - return DestinationAddressKey.String(val) -} - -// DestinationPort returns an attribute KeyValue conforming to the -// "destination.port" semantic conventions. It represents the destination port -// number. -func DestinationPort(val int) attribute.KeyValue { - return DestinationPortKey.Int(val) -} - -// Namespace: device -const ( - // DeviceIDKey is the attribute Key conforming to the "device.id" semantic - // conventions. It represents a unique identifier representing the device. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "123456789012345", "01:23:45:67:89:AB" - // Note: Its value SHOULD be identical for all apps on a device and it SHOULD - // NOT change if an app is uninstalled and re-installed. - // However, it might be resettable by the user for all apps on a device. - // Hardware IDs (e.g. vendor-specific serial number, IMEI or MAC address) MAY be - // used as values. - // - // More information about Android identifier best practices can be found in the - // [Android user data IDs guide]. - // - // > [!WARNING]> This attribute may contain sensitive (PII) information. Caution - // > should be taken when storing personal data or anything which can identify a - // > user. GDPR and data protection laws may apply, - // > ensure you do your own due diligence.> Due to these reasons, this - // > identifier is not recommended for consumer applications and will likely - // > result in rejection from both Google Play and App Store. - // > However, it may be appropriate for specific enterprise scenarios, such as - // > kiosk devices or enterprise-managed devices, with appropriate compliance - // > clearance. - // > Any instrumentation providing this identifier MUST implement it as an - // > opt-in feature.> See [`app.installation.id`]> for a more - // > privacy-preserving alternative. - // - // [Android user data IDs guide]: https://developer.android.com/training/articles/user-data-ids - // [`app.installation.id`]: /docs/registry/attributes/app.md#app-installation-id - DeviceIDKey = attribute.Key("device.id") - - // DeviceManufacturerKey is the attribute Key conforming to the - // "device.manufacturer" semantic conventions. It represents the name of the - // device manufacturer. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Apple", "Samsung" - // Note: The Android OS provides this field via [Build]. iOS apps SHOULD - // hardcode the value `Apple`. - // - // [Build]: https://developer.android.com/reference/android/os/Build#MANUFACTURER - DeviceManufacturerKey = attribute.Key("device.manufacturer") - - // DeviceModelIdentifierKey is the attribute Key conforming to the - // "device.model.identifier" semantic conventions. It represents the model - // identifier for the device. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "iPhone3,4", "SM-G920F" - // Note: It's recommended this value represents a machine-readable version of - // the model identifier rather than the market or consumer-friendly name of the - // device. - DeviceModelIdentifierKey = attribute.Key("device.model.identifier") - - // DeviceModelNameKey is the attribute Key conforming to the "device.model.name" - // semantic conventions. It represents the marketing name for the device model. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "iPhone 6s Plus", "Samsung Galaxy S6" - // Note: It's recommended this value represents a human-readable version of the - // device model rather than a machine-readable alternative. - DeviceModelNameKey = attribute.Key("device.model.name") -) - -// DeviceID returns an attribute KeyValue conforming to the "device.id" semantic -// conventions. It represents a unique identifier representing the device. -func DeviceID(val string) attribute.KeyValue { - return DeviceIDKey.String(val) -} - -// DeviceManufacturer returns an attribute KeyValue conforming to the -// "device.manufacturer" semantic conventions. It represents the name of the -// device manufacturer. -func DeviceManufacturer(val string) attribute.KeyValue { - return DeviceManufacturerKey.String(val) -} - -// DeviceModelIdentifier returns an attribute KeyValue conforming to the -// "device.model.identifier" semantic conventions. It represents the model -// identifier for the device. -func DeviceModelIdentifier(val string) attribute.KeyValue { - return DeviceModelIdentifierKey.String(val) -} - -// DeviceModelName returns an attribute KeyValue conforming to the -// "device.model.name" semantic conventions. It represents the marketing name for -// the device model. -func DeviceModelName(val string) attribute.KeyValue { - return DeviceModelNameKey.String(val) -} - -// Namespace: disk -const ( - // DiskIODirectionKey is the attribute Key conforming to the "disk.io.direction" - // semantic conventions. It represents the disk IO operation direction. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "read" - DiskIODirectionKey = attribute.Key("disk.io.direction") -) - -// Enum values for disk.io.direction -var ( - // read - // Stability: development - DiskIODirectionRead = DiskIODirectionKey.String("read") - // write - // Stability: development - DiskIODirectionWrite = DiskIODirectionKey.String("write") -) - -// Namespace: dns -const ( - // DNSAnswersKey is the attribute Key conforming to the "dns.answers" semantic - // conventions. It represents the list of IPv4 or IPv6 addresses resolved during - // DNS lookup. - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "10.0.0.1", "2001:0db8:85a3:0000:0000:8a2e:0370:7334" - DNSAnswersKey = attribute.Key("dns.answers") - - // DNSQuestionNameKey is the attribute Key conforming to the "dns.question.name" - // semantic conventions. It represents the name being queried. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "www.example.com", "opentelemetry.io" - // Note: The name represents the queried domain name as it appears in the DNS - // query without any additional normalization. - DNSQuestionNameKey = attribute.Key("dns.question.name") -) - -// DNSAnswers returns an attribute KeyValue conforming to the "dns.answers" -// semantic conventions. It represents the list of IPv4 or IPv6 addresses -// resolved during DNS lookup. -func DNSAnswers(val ...string) attribute.KeyValue { - return DNSAnswersKey.StringSlice(val) -} - -// DNSQuestionName returns an attribute KeyValue conforming to the -// "dns.question.name" semantic conventions. It represents the name being -// queried. -func DNSQuestionName(val string) attribute.KeyValue { - return DNSQuestionNameKey.String(val) -} - -// Namespace: elasticsearch -const ( - // ElasticsearchNodeNameKey is the attribute Key conforming to the - // "elasticsearch.node.name" semantic conventions. It represents the represents - // the human-readable identifier of the node/instance to which a request was - // routed. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "instance-0000000001" - ElasticsearchNodeNameKey = attribute.Key("elasticsearch.node.name") -) - -// ElasticsearchNodeName returns an attribute KeyValue conforming to the -// "elasticsearch.node.name" semantic conventions. It represents the represents -// the human-readable identifier of the node/instance to which a request was -// routed. -func ElasticsearchNodeName(val string) attribute.KeyValue { - return ElasticsearchNodeNameKey.String(val) -} - -// Namespace: enduser -const ( - // EnduserIDKey is the attribute Key conforming to the "enduser.id" semantic - // conventions. It represents the unique identifier of an end user in the - // system. It maybe a username, email address, or other identifier. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "username" - // Note: Unique identifier of an end user in the system. - // - // > [!Warning] - // > This field contains sensitive (PII) information. - EnduserIDKey = attribute.Key("enduser.id") - - // EnduserPseudoIDKey is the attribute Key conforming to the "enduser.pseudo.id" - // semantic conventions. It represents the pseudonymous identifier of an end - // user. This identifier should be a random value that is not directly linked or - // associated with the end user's actual identity. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "QdH5CAWJgqVT4rOr0qtumf" - // Note: Pseudonymous identifier of an end user. - // - // > [!Warning] - // > This field contains sensitive (linkable PII) information. - EnduserPseudoIDKey = attribute.Key("enduser.pseudo.id") -) - -// EnduserID returns an attribute KeyValue conforming to the "enduser.id" -// semantic conventions. It represents the unique identifier of an end user in -// the system. It maybe a username, email address, or other identifier. -func EnduserID(val string) attribute.KeyValue { - return EnduserIDKey.String(val) -} - -// EnduserPseudoID returns an attribute KeyValue conforming to the -// "enduser.pseudo.id" semantic conventions. It represents the pseudonymous -// identifier of an end user. This identifier should be a random value that is -// not directly linked or associated with the end user's actual identity. -func EnduserPseudoID(val string) attribute.KeyValue { - return EnduserPseudoIDKey.String(val) -} - -// Namespace: error -const ( - // ErrorTypeKey is the attribute Key conforming to the "error.type" semantic - // conventions. It represents the describes a class of error the operation ended - // with. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "timeout", "java.net.UnknownHostException", - // "server_certificate_invalid", "500" - // Note: The `error.type` SHOULD be predictable, and SHOULD have low - // cardinality. - // - // When `error.type` is set to a type (e.g., an exception type), its - // canonical class name identifying the type within the artifact SHOULD be used. - // - // Instrumentations SHOULD document the list of errors they report. - // - // The cardinality of `error.type` within one instrumentation library SHOULD be - // low. - // Telemetry consumers that aggregate data from multiple instrumentation - // libraries and applications - // should be prepared for `error.type` to have high cardinality at query time - // when no - // additional filters are applied. - // - // If the operation has completed successfully, instrumentations SHOULD NOT set - // `error.type`. - // - // If a specific domain defines its own set of error identifiers (such as HTTP - // or RPC status codes), - // it's RECOMMENDED to: - // - // - Use a domain-specific attribute - // - Set `error.type` to capture all errors, regardless of whether they are - // defined within the domain-specific set or not. - ErrorTypeKey = attribute.Key("error.type") -) - -// Enum values for error.type -var ( - // A fallback error value to be used when the instrumentation doesn't define a - // custom value. - // - // Stability: stable - ErrorTypeOther = ErrorTypeKey.String("_OTHER") -) - -// Namespace: exception -const ( - // ExceptionMessageKey is the attribute Key conforming to the - // "exception.message" semantic conventions. It represents the exception - // message. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "Division by zero", "Can't convert 'int' object to str implicitly" - // Note: > [!WARNING] - // - // > This attribute may contain sensitive information. - ExceptionMessageKey = attribute.Key("exception.message") - - // ExceptionStacktraceKey is the attribute Key conforming to the - // "exception.stacktrace" semantic conventions. It represents a stacktrace as a - // string in the natural representation for the language runtime. The - // representation is to be determined and documented by each language SIG. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: Exception in thread "main" java.lang.RuntimeException: Test - // exception\n at com.example.GenerateTrace.methodB(GenerateTrace.java:13)\n at - // com.example.GenerateTrace.methodA(GenerateTrace.java:9)\n at - // com.example.GenerateTrace.main(GenerateTrace.java:5) - ExceptionStacktraceKey = attribute.Key("exception.stacktrace") - - // ExceptionTypeKey is the attribute Key conforming to the "exception.type" - // semantic conventions. It represents the type of the exception (its - // fully-qualified class name, if applicable). The dynamic type of the exception - // should be preferred over the static type in languages that support it. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "java.net.ConnectException", "OSError" - ExceptionTypeKey = attribute.Key("exception.type") -) - -// ExceptionMessage returns an attribute KeyValue conforming to the -// "exception.message" semantic conventions. It represents the exception message. -func ExceptionMessage(val string) attribute.KeyValue { - return ExceptionMessageKey.String(val) -} - -// ExceptionStacktrace returns an attribute KeyValue conforming to the -// "exception.stacktrace" semantic conventions. It represents a stacktrace as a -// string in the natural representation for the language runtime. The -// representation is to be determined and documented by each language SIG. -func ExceptionStacktrace(val string) attribute.KeyValue { - return ExceptionStacktraceKey.String(val) -} - -// ExceptionType returns an attribute KeyValue conforming to the "exception.type" -// semantic conventions. It represents the type of the exception (its -// fully-qualified class name, if applicable). The dynamic type of the exception -// should be preferred over the static type in languages that support it. -func ExceptionType(val string) attribute.KeyValue { - return ExceptionTypeKey.String(val) -} - -// Namespace: faas -const ( - // FaaSColdstartKey is the attribute Key conforming to the "faas.coldstart" - // semantic conventions. It represents a boolean that is true if the serverless - // function is executed for the first time (aka cold-start). - // - // Type: boolean - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - FaaSColdstartKey = attribute.Key("faas.coldstart") - - // FaaSCronKey is the attribute Key conforming to the "faas.cron" semantic - // conventions. It represents a string containing the schedule period as - // [Cron Expression]. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 0/5 * * * ? * - // - // [Cron Expression]: https://docs.oracle.com/cd/E12058_01/doc/doc.1014/e12030/cron_expressions.htm - FaaSCronKey = attribute.Key("faas.cron") - - // FaaSDocumentCollectionKey is the attribute Key conforming to the - // "faas.document.collection" semantic conventions. It represents the name of - // the source on which the triggering operation was performed. For example, in - // Cloud Storage or S3 corresponds to the bucket name, and in Cosmos DB to the - // database name. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "myBucketName", "myDbName" - FaaSDocumentCollectionKey = attribute.Key("faas.document.collection") - - // FaaSDocumentNameKey is the attribute Key conforming to the - // "faas.document.name" semantic conventions. It represents the document - // name/table subjected to the operation. For example, in Cloud Storage or S3 is - // the name of the file, and in Cosmos DB the table name. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "myFile.txt", "myTableName" - FaaSDocumentNameKey = attribute.Key("faas.document.name") - - // FaaSDocumentOperationKey is the attribute Key conforming to the - // "faas.document.operation" semantic conventions. It represents the describes - // the type of the operation that was performed on the data. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - FaaSDocumentOperationKey = attribute.Key("faas.document.operation") - - // FaaSDocumentTimeKey is the attribute Key conforming to the - // "faas.document.time" semantic conventions. It represents a string containing - // the time when the data was accessed in the [ISO 8601] format expressed in - // [UTC]. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 2020-01-23T13:47:06Z - // - // [ISO 8601]: https://www.iso.org/iso-8601-date-and-time-format.html - // [UTC]: https://www.w3.org/TR/NOTE-datetime - FaaSDocumentTimeKey = attribute.Key("faas.document.time") - - // FaaSInstanceKey is the attribute Key conforming to the "faas.instance" - // semantic conventions. It represents the execution environment ID as a string, - // that will be potentially reused for other invocations to the same - // function/function version. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "2021/06/28/[$LATEST]2f399eb14537447da05ab2a2e39309de" - // Note: - **AWS Lambda:** Use the (full) log stream name. - FaaSInstanceKey = attribute.Key("faas.instance") - - // FaaSInvocationIDKey is the attribute Key conforming to the - // "faas.invocation_id" semantic conventions. It represents the invocation ID of - // the current function invocation. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: af9d5aa4-a685-4c5f-a22b-444f80b3cc28 - FaaSInvocationIDKey = attribute.Key("faas.invocation_id") - - // FaaSInvokedNameKey is the attribute Key conforming to the "faas.invoked_name" - // semantic conventions. It represents the name of the invoked function. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: my-function - // Note: SHOULD be equal to the `faas.name` resource attribute of the invoked - // function. - FaaSInvokedNameKey = attribute.Key("faas.invoked_name") - - // FaaSInvokedProviderKey is the attribute Key conforming to the - // "faas.invoked_provider" semantic conventions. It represents the cloud - // provider of the invoked function. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // Note: SHOULD be equal to the `cloud.provider` resource attribute of the - // invoked function. - FaaSInvokedProviderKey = attribute.Key("faas.invoked_provider") - - // FaaSInvokedRegionKey is the attribute Key conforming to the - // "faas.invoked_region" semantic conventions. It represents the cloud region of - // the invoked function. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: eu-central-1 - // Note: SHOULD be equal to the `cloud.region` resource attribute of the invoked - // function. - FaaSInvokedRegionKey = attribute.Key("faas.invoked_region") - - // FaaSMaxMemoryKey is the attribute Key conforming to the "faas.max_memory" - // semantic conventions. It represents the amount of memory available to the - // serverless function converted to Bytes. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Note: It's recommended to set this attribute since e.g. too little memory can - // easily stop a Java AWS Lambda function from working correctly. On AWS Lambda, - // the environment variable `AWS_LAMBDA_FUNCTION_MEMORY_SIZE` provides this - // information (which must be multiplied by 1,048,576). - FaaSMaxMemoryKey = attribute.Key("faas.max_memory") - - // FaaSNameKey is the attribute Key conforming to the "faas.name" semantic - // conventions. It represents the name of the single function that this runtime - // instance executes. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "my-function", "myazurefunctionapp/some-function-name" - // Note: This is the name of the function as configured/deployed on the FaaS - // platform and is usually different from the name of the callback - // function (which may be stored in the - // [`code.namespace`/`code.function.name`] - // span attributes). - // - // For some cloud providers, the above definition is ambiguous. The following - // definition of function name MUST be used for this attribute - // (and consequently the span name) for the listed cloud providers/products: - // - // - **Azure:** The full name `/`, i.e., function app name - // followed by a forward slash followed by the function name (this form - // can also be seen in the resource JSON for the function). - // This means that a span attribute MUST be used, as an Azure function - // app can host multiple functions that would usually share - // a TracerProvider (see also the `cloud.resource_id` attribute). - // - // - // [`code.namespace`/`code.function.name`]: /docs/general/attributes.md#source-code-attributes - FaaSNameKey = attribute.Key("faas.name") - - // FaaSTimeKey is the attribute Key conforming to the "faas.time" semantic - // conventions. It represents a string containing the function invocation time - // in the [ISO 8601] format expressed in [UTC]. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 2020-01-23T13:47:06Z - // - // [ISO 8601]: https://www.iso.org/iso-8601-date-and-time-format.html - // [UTC]: https://www.w3.org/TR/NOTE-datetime - FaaSTimeKey = attribute.Key("faas.time") - - // FaaSTriggerKey is the attribute Key conforming to the "faas.trigger" semantic - // conventions. It represents the type of the trigger which caused this function - // invocation. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - FaaSTriggerKey = attribute.Key("faas.trigger") - - // FaaSVersionKey is the attribute Key conforming to the "faas.version" semantic - // conventions. It represents the immutable version of the function being - // executed. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "26", "pinkfroid-00002" - // Note: Depending on the cloud provider and platform, use: - // - // - **AWS Lambda:** The [function version] - // (an integer represented as a decimal string). - // - **Google Cloud Run (Services):** The [revision] - // (i.e., the function name plus the revision suffix). - // - **Google Cloud Functions:** The value of the - // [`K_REVISION` environment variable]. - // - **Azure Functions:** Not applicable. Do not set this attribute. - // - // - // [function version]: https://docs.aws.amazon.com/lambda/latest/dg/configuration-versions.html - // [revision]: https://cloud.google.com/run/docs/managing/revisions - // [`K_REVISION` environment variable]: https://cloud.google.com/run/docs/container-contract#services-env-vars - FaaSVersionKey = attribute.Key("faas.version") -) - -// FaaSColdstart returns an attribute KeyValue conforming to the "faas.coldstart" -// semantic conventions. It represents a boolean that is true if the serverless -// function is executed for the first time (aka cold-start). -func FaaSColdstart(val bool) attribute.KeyValue { - return FaaSColdstartKey.Bool(val) -} - -// FaaSCron returns an attribute KeyValue conforming to the "faas.cron" semantic -// conventions. It represents a string containing the schedule period as -// [Cron Expression]. -// -// [Cron Expression]: https://docs.oracle.com/cd/E12058_01/doc/doc.1014/e12030/cron_expressions.htm -func FaaSCron(val string) attribute.KeyValue { - return FaaSCronKey.String(val) -} - -// FaaSDocumentCollection returns an attribute KeyValue conforming to the -// "faas.document.collection" semantic conventions. It represents the name of the -// source on which the triggering operation was performed. For example, in Cloud -// Storage or S3 corresponds to the bucket name, and in Cosmos DB to the database -// name. -func FaaSDocumentCollection(val string) attribute.KeyValue { - return FaaSDocumentCollectionKey.String(val) -} - -// FaaSDocumentName returns an attribute KeyValue conforming to the -// "faas.document.name" semantic conventions. It represents the document -// name/table subjected to the operation. For example, in Cloud Storage or S3 is -// the name of the file, and in Cosmos DB the table name. -func FaaSDocumentName(val string) attribute.KeyValue { - return FaaSDocumentNameKey.String(val) -} - -// FaaSDocumentTime returns an attribute KeyValue conforming to the -// "faas.document.time" semantic conventions. It represents a string containing -// the time when the data was accessed in the [ISO 8601] format expressed in -// [UTC]. -// -// [ISO 8601]: https://www.iso.org/iso-8601-date-and-time-format.html -// [UTC]: https://www.w3.org/TR/NOTE-datetime -func FaaSDocumentTime(val string) attribute.KeyValue { - return FaaSDocumentTimeKey.String(val) -} - -// FaaSInstance returns an attribute KeyValue conforming to the "faas.instance" -// semantic conventions. It represents the execution environment ID as a string, -// that will be potentially reused for other invocations to the same -// function/function version. -func FaaSInstance(val string) attribute.KeyValue { - return FaaSInstanceKey.String(val) -} - -// FaaSInvocationID returns an attribute KeyValue conforming to the -// "faas.invocation_id" semantic conventions. It represents the invocation ID of -// the current function invocation. -func FaaSInvocationID(val string) attribute.KeyValue { - return FaaSInvocationIDKey.String(val) -} - -// FaaSInvokedName returns an attribute KeyValue conforming to the -// "faas.invoked_name" semantic conventions. It represents the name of the -// invoked function. -func FaaSInvokedName(val string) attribute.KeyValue { - return FaaSInvokedNameKey.String(val) -} - -// FaaSInvokedRegion returns an attribute KeyValue conforming to the -// "faas.invoked_region" semantic conventions. It represents the cloud region of -// the invoked function. -func FaaSInvokedRegion(val string) attribute.KeyValue { - return FaaSInvokedRegionKey.String(val) -} - -// FaaSMaxMemory returns an attribute KeyValue conforming to the -// "faas.max_memory" semantic conventions. It represents the amount of memory -// available to the serverless function converted to Bytes. -func FaaSMaxMemory(val int) attribute.KeyValue { - return FaaSMaxMemoryKey.Int(val) -} - -// FaaSName returns an attribute KeyValue conforming to the "faas.name" semantic -// conventions. It represents the name of the single function that this runtime -// instance executes. -func FaaSName(val string) attribute.KeyValue { - return FaaSNameKey.String(val) -} - -// FaaSTime returns an attribute KeyValue conforming to the "faas.time" semantic -// conventions. It represents a string containing the function invocation time in -// the [ISO 8601] format expressed in [UTC]. -// -// [ISO 8601]: https://www.iso.org/iso-8601-date-and-time-format.html -// [UTC]: https://www.w3.org/TR/NOTE-datetime -func FaaSTime(val string) attribute.KeyValue { - return FaaSTimeKey.String(val) -} - -// FaaSVersion returns an attribute KeyValue conforming to the "faas.version" -// semantic conventions. It represents the immutable version of the function -// being executed. -func FaaSVersion(val string) attribute.KeyValue { - return FaaSVersionKey.String(val) -} - -// Enum values for faas.document.operation -var ( - // When a new object is created. - // Stability: development - FaaSDocumentOperationInsert = FaaSDocumentOperationKey.String("insert") - // When an object is modified. - // Stability: development - FaaSDocumentOperationEdit = FaaSDocumentOperationKey.String("edit") - // When an object is deleted. - // Stability: development - FaaSDocumentOperationDelete = FaaSDocumentOperationKey.String("delete") -) - -// Enum values for faas.invoked_provider -var ( - // Alibaba Cloud - // Stability: development - FaaSInvokedProviderAlibabaCloud = FaaSInvokedProviderKey.String("alibaba_cloud") - // Amazon Web Services - // Stability: development - FaaSInvokedProviderAWS = FaaSInvokedProviderKey.String("aws") - // Microsoft Azure - // Stability: development - FaaSInvokedProviderAzure = FaaSInvokedProviderKey.String("azure") - // Google Cloud Platform - // Stability: development - FaaSInvokedProviderGCP = FaaSInvokedProviderKey.String("gcp") - // Tencent Cloud - // Stability: development - FaaSInvokedProviderTencentCloud = FaaSInvokedProviderKey.String("tencent_cloud") -) - -// Enum values for faas.trigger -var ( - // A response to some data source operation such as a database or filesystem - // read/write - // Stability: development - FaaSTriggerDatasource = FaaSTriggerKey.String("datasource") - // To provide an answer to an inbound HTTP request - // Stability: development - FaaSTriggerHTTP = FaaSTriggerKey.String("http") - // A function is set to be executed when messages are sent to a messaging system - // Stability: development - FaaSTriggerPubSub = FaaSTriggerKey.String("pubsub") - // A function is scheduled to be executed regularly - // Stability: development - FaaSTriggerTimer = FaaSTriggerKey.String("timer") - // If none of the others apply - // Stability: development - FaaSTriggerOther = FaaSTriggerKey.String("other") -) - -// Namespace: feature_flag -const ( - // FeatureFlagContextIDKey is the attribute Key conforming to the - // "feature_flag.context.id" semantic conventions. It represents the unique - // identifier for the flag evaluation context. For example, the targeting key. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Release_Candidate - // - // Examples: "5157782b-2203-4c80-a857-dbbd5e7761db" - FeatureFlagContextIDKey = attribute.Key("feature_flag.context.id") - - // FeatureFlagErrorMessageKey is the attribute Key conforming to the - // "feature_flag.error.message" semantic conventions. It represents a message - // providing more detail about an error that occurred during feature flag - // evaluation in human-readable form. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Release_Candidate - // - // Examples: "Unexpected input type: string", "The user has exceeded their - // storage quota" - FeatureFlagErrorMessageKey = attribute.Key("feature_flag.error.message") - - // FeatureFlagKeyKey is the attribute Key conforming to the "feature_flag.key" - // semantic conventions. It represents the lookup key of the feature flag. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Release_Candidate - // - // Examples: "logo-color" - FeatureFlagKeyKey = attribute.Key("feature_flag.key") - - // FeatureFlagProviderNameKey is the attribute Key conforming to the - // "feature_flag.provider.name" semantic conventions. It represents the - // identifies the feature flag provider. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Release_Candidate - // - // Examples: "Flag Manager" - FeatureFlagProviderNameKey = attribute.Key("feature_flag.provider.name") - - // FeatureFlagResultReasonKey is the attribute Key conforming to the - // "feature_flag.result.reason" semantic conventions. It represents the reason - // code which shows how a feature flag value was determined. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Release_Candidate - // - // Examples: "static", "targeting_match", "error", "default" - FeatureFlagResultReasonKey = attribute.Key("feature_flag.result.reason") - - // FeatureFlagResultValueKey is the attribute Key conforming to the - // "feature_flag.result.value" semantic conventions. It represents the evaluated - // value of the feature flag. - // - // Type: any - // RequirementLevel: Recommended - // Stability: Release_Candidate - // - // Examples: "#ff0000", true, 3 - // Note: With some feature flag providers, feature flag results can be quite - // large or contain private or sensitive details. - // Because of this, `feature_flag.result.variant` is often the preferred - // attribute if it is available. - // - // It may be desirable to redact or otherwise limit the size and scope of - // `feature_flag.result.value` if possible. - // Because the evaluated flag value is unstructured and may be any type, it is - // left to the instrumentation author to determine how best to achieve this. - FeatureFlagResultValueKey = attribute.Key("feature_flag.result.value") - - // FeatureFlagResultVariantKey is the attribute Key conforming to the - // "feature_flag.result.variant" semantic conventions. It represents a semantic - // identifier for an evaluated flag value. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Release_Candidate - // - // Examples: "red", "true", "on" - // Note: A semantic identifier, commonly referred to as a variant, provides a - // means - // for referring to a value without including the value itself. This can - // provide additional context for understanding the meaning behind a value. - // For example, the variant `red` maybe be used for the value `#c05543`. - FeatureFlagResultVariantKey = attribute.Key("feature_flag.result.variant") - - // FeatureFlagSetIDKey is the attribute Key conforming to the - // "feature_flag.set.id" semantic conventions. It represents the identifier of - // the [flag set] to which the feature flag belongs. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Release_Candidate - // - // Examples: "proj-1", "ab98sgs", "service1/dev" - // - // [flag set]: https://openfeature.dev/specification/glossary/#flag-set - FeatureFlagSetIDKey = attribute.Key("feature_flag.set.id") - - // FeatureFlagVersionKey is the attribute Key conforming to the - // "feature_flag.version" semantic conventions. It represents the version of the - // ruleset used during the evaluation. This may be any stable value which - // uniquely identifies the ruleset. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Release_Candidate - // - // Examples: "1", "01ABCDEF" - FeatureFlagVersionKey = attribute.Key("feature_flag.version") -) - -// FeatureFlagContextID returns an attribute KeyValue conforming to the -// "feature_flag.context.id" semantic conventions. It represents the unique -// identifier for the flag evaluation context. For example, the targeting key. -func FeatureFlagContextID(val string) attribute.KeyValue { - return FeatureFlagContextIDKey.String(val) -} - -// FeatureFlagErrorMessage returns an attribute KeyValue conforming to the -// "feature_flag.error.message" semantic conventions. It represents a message -// providing more detail about an error that occurred during feature flag -// evaluation in human-readable form. -func FeatureFlagErrorMessage(val string) attribute.KeyValue { - return FeatureFlagErrorMessageKey.String(val) -} - -// FeatureFlagKey returns an attribute KeyValue conforming to the -// "feature_flag.key" semantic conventions. It represents the lookup key of the -// feature flag. -func FeatureFlagKey(val string) attribute.KeyValue { - return FeatureFlagKeyKey.String(val) -} - -// FeatureFlagProviderName returns an attribute KeyValue conforming to the -// "feature_flag.provider.name" semantic conventions. It represents the -// identifies the feature flag provider. -func FeatureFlagProviderName(val string) attribute.KeyValue { - return FeatureFlagProviderNameKey.String(val) -} - -// FeatureFlagResultVariant returns an attribute KeyValue conforming to the -// "feature_flag.result.variant" semantic conventions. It represents a semantic -// identifier for an evaluated flag value. -func FeatureFlagResultVariant(val string) attribute.KeyValue { - return FeatureFlagResultVariantKey.String(val) -} - -// FeatureFlagSetID returns an attribute KeyValue conforming to the -// "feature_flag.set.id" semantic conventions. It represents the identifier of -// the [flag set] to which the feature flag belongs. -// -// [flag set]: https://openfeature.dev/specification/glossary/#flag-set -func FeatureFlagSetID(val string) attribute.KeyValue { - return FeatureFlagSetIDKey.String(val) -} - -// FeatureFlagVersion returns an attribute KeyValue conforming to the -// "feature_flag.version" semantic conventions. It represents the version of the -// ruleset used during the evaluation. This may be any stable value which -// uniquely identifies the ruleset. -func FeatureFlagVersion(val string) attribute.KeyValue { - return FeatureFlagVersionKey.String(val) -} - -// Enum values for feature_flag.result.reason -var ( - // The resolved value is static (no dynamic evaluation). - // Stability: release_candidate - FeatureFlagResultReasonStatic = FeatureFlagResultReasonKey.String("static") - // The resolved value fell back to a pre-configured value (no dynamic evaluation - // occurred or dynamic evaluation yielded no result). - // Stability: release_candidate - FeatureFlagResultReasonDefault = FeatureFlagResultReasonKey.String("default") - // The resolved value was the result of a dynamic evaluation, such as a rule or - // specific user-targeting. - // Stability: release_candidate - FeatureFlagResultReasonTargetingMatch = FeatureFlagResultReasonKey.String("targeting_match") - // The resolved value was the result of pseudorandom assignment. - // Stability: release_candidate - FeatureFlagResultReasonSplit = FeatureFlagResultReasonKey.String("split") - // The resolved value was retrieved from cache. - // Stability: release_candidate - FeatureFlagResultReasonCached = FeatureFlagResultReasonKey.String("cached") - // The resolved value was the result of the flag being disabled in the - // management system. - // Stability: release_candidate - FeatureFlagResultReasonDisabled = FeatureFlagResultReasonKey.String("disabled") - // The reason for the resolved value could not be determined. - // Stability: release_candidate - FeatureFlagResultReasonUnknown = FeatureFlagResultReasonKey.String("unknown") - // The resolved value is non-authoritative or possibly out of date - // Stability: release_candidate - FeatureFlagResultReasonStale = FeatureFlagResultReasonKey.String("stale") - // The resolved value was the result of an error. - // Stability: release_candidate - FeatureFlagResultReasonError = FeatureFlagResultReasonKey.String("error") -) - -// Namespace: file -const ( - // FileAccessedKey is the attribute Key conforming to the "file.accessed" - // semantic conventions. It represents the time when the file was last accessed, - // in ISO 8601 format. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "2021-01-01T12:00:00Z" - // Note: This attribute might not be supported by some file systems — NFS, - // FAT32, in embedded OS, etc. - FileAccessedKey = attribute.Key("file.accessed") - - // FileAttributesKey is the attribute Key conforming to the "file.attributes" - // semantic conventions. It represents the array of file attributes. - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "readonly", "hidden" - // Note: Attributes names depend on the OS or file system. Here’s a - // non-exhaustive list of values expected for this attribute: `archive`, - // `compressed`, `directory`, `encrypted`, `execute`, `hidden`, `immutable`, - // `journaled`, `read`, `readonly`, `symbolic link`, `system`, `temporary`, - // `write`. - FileAttributesKey = attribute.Key("file.attributes") - - // FileChangedKey is the attribute Key conforming to the "file.changed" semantic - // conventions. It represents the time when the file attributes or metadata was - // last changed, in ISO 8601 format. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "2021-01-01T12:00:00Z" - // Note: `file.changed` captures the time when any of the file's properties or - // attributes (including the content) are changed, while `file.modified` - // captures the timestamp when the file content is modified. - FileChangedKey = attribute.Key("file.changed") - - // FileCreatedKey is the attribute Key conforming to the "file.created" semantic - // conventions. It represents the time when the file was created, in ISO 8601 - // format. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "2021-01-01T12:00:00Z" - // Note: This attribute might not be supported by some file systems — NFS, - // FAT32, in embedded OS, etc. - FileCreatedKey = attribute.Key("file.created") - - // FileDirectoryKey is the attribute Key conforming to the "file.directory" - // semantic conventions. It represents the directory where the file is located. - // It should include the drive letter, when appropriate. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "/home/user", "C:\Program Files\MyApp" - FileDirectoryKey = attribute.Key("file.directory") - - // FileExtensionKey is the attribute Key conforming to the "file.extension" - // semantic conventions. It represents the file extension, excluding the leading - // dot. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "png", "gz" - // Note: When the file name has multiple extensions (example.tar.gz), only the - // last one should be captured ("gz", not "tar.gz"). - FileExtensionKey = attribute.Key("file.extension") - - // FileForkNameKey is the attribute Key conforming to the "file.fork_name" - // semantic conventions. It represents the name of the fork. A fork is - // additional data associated with a filesystem object. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Zone.Identifier" - // Note: On Linux, a resource fork is used to store additional data with a - // filesystem object. A file always has at least one fork for the data portion, - // and additional forks may exist. - // On NTFS, this is analogous to an Alternate Data Stream (ADS), and the default - // data stream for a file is just called $DATA. Zone.Identifier is commonly used - // by Windows to track contents downloaded from the Internet. An ADS is - // typically of the form: C:\path\to\filename.extension:some_fork_name, and - // some_fork_name is the value that should populate `fork_name`. - // `filename.extension` should populate `file.name`, and `extension` should - // populate `file.extension`. The full path, `file.path`, will include the fork - // name. - FileForkNameKey = attribute.Key("file.fork_name") - - // FileGroupIDKey is the attribute Key conforming to the "file.group.id" - // semantic conventions. It represents the primary Group ID (GID) of the file. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "1000" - FileGroupIDKey = attribute.Key("file.group.id") - - // FileGroupNameKey is the attribute Key conforming to the "file.group.name" - // semantic conventions. It represents the primary group name of the file. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "users" - FileGroupNameKey = attribute.Key("file.group.name") - - // FileInodeKey is the attribute Key conforming to the "file.inode" semantic - // conventions. It represents the inode representing the file in the filesystem. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "256383" - FileInodeKey = attribute.Key("file.inode") - - // FileModeKey is the attribute Key conforming to the "file.mode" semantic - // conventions. It represents the mode of the file in octal representation. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "0640" - FileModeKey = attribute.Key("file.mode") - - // FileModifiedKey is the attribute Key conforming to the "file.modified" - // semantic conventions. It represents the time when the file content was last - // modified, in ISO 8601 format. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "2021-01-01T12:00:00Z" - FileModifiedKey = attribute.Key("file.modified") - - // FileNameKey is the attribute Key conforming to the "file.name" semantic - // conventions. It represents the name of the file including the extension, - // without the directory. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "example.png" - FileNameKey = attribute.Key("file.name") - - // FileOwnerIDKey is the attribute Key conforming to the "file.owner.id" - // semantic conventions. It represents the user ID (UID) or security identifier - // (SID) of the file owner. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "1000" - FileOwnerIDKey = attribute.Key("file.owner.id") - - // FileOwnerNameKey is the attribute Key conforming to the "file.owner.name" - // semantic conventions. It represents the username of the file owner. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "root" - FileOwnerNameKey = attribute.Key("file.owner.name") - - // FilePathKey is the attribute Key conforming to the "file.path" semantic - // conventions. It represents the full path to the file, including the file - // name. It should include the drive letter, when appropriate. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "/home/alice/example.png", "C:\Program Files\MyApp\myapp.exe" - FilePathKey = attribute.Key("file.path") - - // FileSizeKey is the attribute Key conforming to the "file.size" semantic - // conventions. It represents the file size in bytes. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - FileSizeKey = attribute.Key("file.size") - - // FileSymbolicLinkTargetPathKey is the attribute Key conforming to the - // "file.symbolic_link.target_path" semantic conventions. It represents the path - // to the target of a symbolic link. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "/usr/bin/python3" - // Note: This attribute is only applicable to symbolic links. - FileSymbolicLinkTargetPathKey = attribute.Key("file.symbolic_link.target_path") -) - -// FileAccessed returns an attribute KeyValue conforming to the "file.accessed" -// semantic conventions. It represents the time when the file was last accessed, -// in ISO 8601 format. -func FileAccessed(val string) attribute.KeyValue { - return FileAccessedKey.String(val) -} - -// FileAttributes returns an attribute KeyValue conforming to the -// "file.attributes" semantic conventions. It represents the array of file -// attributes. -func FileAttributes(val ...string) attribute.KeyValue { - return FileAttributesKey.StringSlice(val) -} - -// FileChanged returns an attribute KeyValue conforming to the "file.changed" -// semantic conventions. It represents the time when the file attributes or -// metadata was last changed, in ISO 8601 format. -func FileChanged(val string) attribute.KeyValue { - return FileChangedKey.String(val) -} - -// FileCreated returns an attribute KeyValue conforming to the "file.created" -// semantic conventions. It represents the time when the file was created, in ISO -// 8601 format. -func FileCreated(val string) attribute.KeyValue { - return FileCreatedKey.String(val) -} - -// FileDirectory returns an attribute KeyValue conforming to the "file.directory" -// semantic conventions. It represents the directory where the file is located. -// It should include the drive letter, when appropriate. -func FileDirectory(val string) attribute.KeyValue { - return FileDirectoryKey.String(val) -} - -// FileExtension returns an attribute KeyValue conforming to the "file.extension" -// semantic conventions. It represents the file extension, excluding the leading -// dot. -func FileExtension(val string) attribute.KeyValue { - return FileExtensionKey.String(val) -} - -// FileForkName returns an attribute KeyValue conforming to the "file.fork_name" -// semantic conventions. It represents the name of the fork. A fork is additional -// data associated with a filesystem object. -func FileForkName(val string) attribute.KeyValue { - return FileForkNameKey.String(val) -} - -// FileGroupID returns an attribute KeyValue conforming to the "file.group.id" -// semantic conventions. It represents the primary Group ID (GID) of the file. -func FileGroupID(val string) attribute.KeyValue { - return FileGroupIDKey.String(val) -} - -// FileGroupName returns an attribute KeyValue conforming to the -// "file.group.name" semantic conventions. It represents the primary group name -// of the file. -func FileGroupName(val string) attribute.KeyValue { - return FileGroupNameKey.String(val) -} - -// FileInode returns an attribute KeyValue conforming to the "file.inode" -// semantic conventions. It represents the inode representing the file in the -// filesystem. -func FileInode(val string) attribute.KeyValue { - return FileInodeKey.String(val) -} - -// FileMode returns an attribute KeyValue conforming to the "file.mode" semantic -// conventions. It represents the mode of the file in octal representation. -func FileMode(val string) attribute.KeyValue { - return FileModeKey.String(val) -} - -// FileModified returns an attribute KeyValue conforming to the "file.modified" -// semantic conventions. It represents the time when the file content was last -// modified, in ISO 8601 format. -func FileModified(val string) attribute.KeyValue { - return FileModifiedKey.String(val) -} - -// FileName returns an attribute KeyValue conforming to the "file.name" semantic -// conventions. It represents the name of the file including the extension, -// without the directory. -func FileName(val string) attribute.KeyValue { - return FileNameKey.String(val) -} - -// FileOwnerID returns an attribute KeyValue conforming to the "file.owner.id" -// semantic conventions. It represents the user ID (UID) or security identifier -// (SID) of the file owner. -func FileOwnerID(val string) attribute.KeyValue { - return FileOwnerIDKey.String(val) -} - -// FileOwnerName returns an attribute KeyValue conforming to the -// "file.owner.name" semantic conventions. It represents the username of the file -// owner. -func FileOwnerName(val string) attribute.KeyValue { - return FileOwnerNameKey.String(val) -} - -// FilePath returns an attribute KeyValue conforming to the "file.path" semantic -// conventions. It represents the full path to the file, including the file name. -// It should include the drive letter, when appropriate. -func FilePath(val string) attribute.KeyValue { - return FilePathKey.String(val) -} - -// FileSize returns an attribute KeyValue conforming to the "file.size" semantic -// conventions. It represents the file size in bytes. -func FileSize(val int) attribute.KeyValue { - return FileSizeKey.Int(val) -} - -// FileSymbolicLinkTargetPath returns an attribute KeyValue conforming to the -// "file.symbolic_link.target_path" semantic conventions. It represents the path -// to the target of a symbolic link. -func FileSymbolicLinkTargetPath(val string) attribute.KeyValue { - return FileSymbolicLinkTargetPathKey.String(val) -} - -// Namespace: gcp -const ( - // GCPAppHubApplicationContainerKey is the attribute Key conforming to the - // "gcp.apphub.application.container" semantic conventions. It represents the - // container within GCP where the AppHub application is defined. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "projects/my-container-project" - GCPAppHubApplicationContainerKey = attribute.Key("gcp.apphub.application.container") - - // GCPAppHubApplicationIDKey is the attribute Key conforming to the - // "gcp.apphub.application.id" semantic conventions. It represents the name of - // the application as configured in AppHub. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "my-application" - GCPAppHubApplicationIDKey = attribute.Key("gcp.apphub.application.id") - - // GCPAppHubApplicationLocationKey is the attribute Key conforming to the - // "gcp.apphub.application.location" semantic conventions. It represents the GCP - // zone or region where the application is defined. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "us-central1" - GCPAppHubApplicationLocationKey = attribute.Key("gcp.apphub.application.location") - - // GCPAppHubServiceCriticalityTypeKey is the attribute Key conforming to the - // "gcp.apphub.service.criticality_type" semantic conventions. It represents the - // criticality of a service indicates its importance to the business. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // Note: [See AppHub type enum] - // - // [See AppHub type enum]: https://cloud.google.com/app-hub/docs/reference/rest/v1/Attributes#type - GCPAppHubServiceCriticalityTypeKey = attribute.Key("gcp.apphub.service.criticality_type") - - // GCPAppHubServiceEnvironmentTypeKey is the attribute Key conforming to the - // "gcp.apphub.service.environment_type" semantic conventions. It represents the - // environment of a service is the stage of a software lifecycle. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // Note: [See AppHub environment type] - // - // [See AppHub environment type]: https://cloud.google.com/app-hub/docs/reference/rest/v1/Attributes#type_1 - GCPAppHubServiceEnvironmentTypeKey = attribute.Key("gcp.apphub.service.environment_type") - - // GCPAppHubServiceIDKey is the attribute Key conforming to the - // "gcp.apphub.service.id" semantic conventions. It represents the name of the - // service as configured in AppHub. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "my-service" - GCPAppHubServiceIDKey = attribute.Key("gcp.apphub.service.id") - - // GCPAppHubWorkloadCriticalityTypeKey is the attribute Key conforming to the - // "gcp.apphub.workload.criticality_type" semantic conventions. It represents - // the criticality of a workload indicates its importance to the business. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // Note: [See AppHub type enum] - // - // [See AppHub type enum]: https://cloud.google.com/app-hub/docs/reference/rest/v1/Attributes#type - GCPAppHubWorkloadCriticalityTypeKey = attribute.Key("gcp.apphub.workload.criticality_type") - - // GCPAppHubWorkloadEnvironmentTypeKey is the attribute Key conforming to the - // "gcp.apphub.workload.environment_type" semantic conventions. It represents - // the environment of a workload is the stage of a software lifecycle. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // Note: [See AppHub environment type] - // - // [See AppHub environment type]: https://cloud.google.com/app-hub/docs/reference/rest/v1/Attributes#type_1 - GCPAppHubWorkloadEnvironmentTypeKey = attribute.Key("gcp.apphub.workload.environment_type") - - // GCPAppHubWorkloadIDKey is the attribute Key conforming to the - // "gcp.apphub.workload.id" semantic conventions. It represents the name of the - // workload as configured in AppHub. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "my-workload" - GCPAppHubWorkloadIDKey = attribute.Key("gcp.apphub.workload.id") - - // GCPAppHubDestinationApplicationContainerKey is the attribute Key conforming - // to the "gcp.apphub_destination.application.container" semantic conventions. - // It represents the container within GCP where the AppHub destination - // application is defined. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "projects/my-container-project" - GCPAppHubDestinationApplicationContainerKey = attribute.Key("gcp.apphub_destination.application.container") - - // GCPAppHubDestinationApplicationIDKey is the attribute Key conforming to the - // "gcp.apphub_destination.application.id" semantic conventions. It represents - // the name of the destination application as configured in AppHub. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "my-application" - GCPAppHubDestinationApplicationIDKey = attribute.Key("gcp.apphub_destination.application.id") - - // GCPAppHubDestinationApplicationLocationKey is the attribute Key conforming to - // the "gcp.apphub_destination.application.location" semantic conventions. It - // represents the GCP zone or region where the destination application is - // defined. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "us-central1" - GCPAppHubDestinationApplicationLocationKey = attribute.Key("gcp.apphub_destination.application.location") - - // GCPAppHubDestinationServiceCriticalityTypeKey is the attribute Key conforming - // to the "gcp.apphub_destination.service.criticality_type" semantic - // conventions. It represents the criticality of a destination workload - // indicates its importance to the business as specified in [AppHub type enum]. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // - // [AppHub type enum]: https://cloud.google.com/app-hub/docs/reference/rest/v1/Attributes#type - GCPAppHubDestinationServiceCriticalityTypeKey = attribute.Key("gcp.apphub_destination.service.criticality_type") - - // GCPAppHubDestinationServiceEnvironmentTypeKey is the attribute Key conforming - // to the "gcp.apphub_destination.service.environment_type" semantic - // conventions. It represents the software lifecycle stage of a destination - // service as defined [AppHub environment type]. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // - // [AppHub environment type]: https://cloud.google.com/app-hub/docs/reference/rest/v1/Attributes#type_1 - GCPAppHubDestinationServiceEnvironmentTypeKey = attribute.Key("gcp.apphub_destination.service.environment_type") - - // GCPAppHubDestinationServiceIDKey is the attribute Key conforming to the - // "gcp.apphub_destination.service.id" semantic conventions. It represents the - // name of the destination service as configured in AppHub. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "my-service" - GCPAppHubDestinationServiceIDKey = attribute.Key("gcp.apphub_destination.service.id") - - // GCPAppHubDestinationWorkloadCriticalityTypeKey is the attribute Key - // conforming to the "gcp.apphub_destination.workload.criticality_type" semantic - // conventions. It represents the criticality of a destination workload - // indicates its importance to the business as specified in [AppHub type enum]. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // - // [AppHub type enum]: https://cloud.google.com/app-hub/docs/reference/rest/v1/Attributes#type - GCPAppHubDestinationWorkloadCriticalityTypeKey = attribute.Key("gcp.apphub_destination.workload.criticality_type") - - // GCPAppHubDestinationWorkloadEnvironmentTypeKey is the attribute Key - // conforming to the "gcp.apphub_destination.workload.environment_type" semantic - // conventions. It represents the environment of a destination workload is the - // stage of a software lifecycle as provided in the [AppHub environment type]. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // - // [AppHub environment type]: https://cloud.google.com/app-hub/docs/reference/rest/v1/Attributes#type_1 - GCPAppHubDestinationWorkloadEnvironmentTypeKey = attribute.Key("gcp.apphub_destination.workload.environment_type") - - // GCPAppHubDestinationWorkloadIDKey is the attribute Key conforming to the - // "gcp.apphub_destination.workload.id" semantic conventions. It represents the - // name of the destination workload as configured in AppHub. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "my-workload" - GCPAppHubDestinationWorkloadIDKey = attribute.Key("gcp.apphub_destination.workload.id") - - // GCPClientServiceKey is the attribute Key conforming to the - // "gcp.client.service" semantic conventions. It represents the identifies the - // Google Cloud service for which the official client library is intended. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "appengine", "run", "firestore", "alloydb", "spanner" - // Note: Intended to be a stable identifier for Google Cloud client libraries - // that is uniform across implementation languages. The value should be derived - // from the canonical service domain for the service; for example, - // 'foo.googleapis.com' should result in a value of 'foo'. - GCPClientServiceKey = attribute.Key("gcp.client.service") - - // GCPCloudRunJobExecutionKey is the attribute Key conforming to the - // "gcp.cloud_run.job.execution" semantic conventions. It represents the name of - // the Cloud Run [execution] being run for the Job, as set by the - // [`CLOUD_RUN_EXECUTION`] environment variable. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "job-name-xxxx", "sample-job-mdw84" - // - // [execution]: https://cloud.google.com/run/docs/managing/job-executions - // [`CLOUD_RUN_EXECUTION`]: https://cloud.google.com/run/docs/container-contract#jobs-env-vars - GCPCloudRunJobExecutionKey = attribute.Key("gcp.cloud_run.job.execution") - - // GCPCloudRunJobTaskIndexKey is the attribute Key conforming to the - // "gcp.cloud_run.job.task_index" semantic conventions. It represents the index - // for a task within an execution as provided by the [`CLOUD_RUN_TASK_INDEX`] - // environment variable. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 0, 1 - // - // [`CLOUD_RUN_TASK_INDEX`]: https://cloud.google.com/run/docs/container-contract#jobs-env-vars - GCPCloudRunJobTaskIndexKey = attribute.Key("gcp.cloud_run.job.task_index") - - // GCPGCEInstanceHostnameKey is the attribute Key conforming to the - // "gcp.gce.instance.hostname" semantic conventions. It represents the hostname - // of a GCE instance. This is the full value of the default or [custom hostname] - // . - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "my-host1234.example.com", - // "sample-vm.us-west1-b.c.my-project.internal" - // - // [custom hostname]: https://cloud.google.com/compute/docs/instances/custom-hostname-vm - GCPGCEInstanceHostnameKey = attribute.Key("gcp.gce.instance.hostname") - - // GCPGCEInstanceNameKey is the attribute Key conforming to the - // "gcp.gce.instance.name" semantic conventions. It represents the instance name - // of a GCE instance. This is the value provided by `host.name`, the visible - // name of the instance in the Cloud Console UI, and the prefix for the default - // hostname of the instance as defined by the [default internal DNS name]. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "instance-1", "my-vm-name" - // - // [default internal DNS name]: https://cloud.google.com/compute/docs/internal-dns#instance-fully-qualified-domain-names - GCPGCEInstanceNameKey = attribute.Key("gcp.gce.instance.name") - - // GCPGCEInstanceGroupManagerNameKey is the attribute Key conforming to the - // "gcp.gce.instance_group_manager.name" semantic conventions. It represents the - // name of the Instance Group Manager (IGM) that manages this VM, if any. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "web-igm", "my-managed-group" - GCPGCEInstanceGroupManagerNameKey = attribute.Key("gcp.gce.instance_group_manager.name") - - // GCPGCEInstanceGroupManagerRegionKey is the attribute Key conforming to the - // "gcp.gce.instance_group_manager.region" semantic conventions. It represents - // the region of a **regional** Instance Group Manager (e.g., `us-central1`). - // Set this **only** when the IGM is regional. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "us-central1", "europe-west1" - GCPGCEInstanceGroupManagerRegionKey = attribute.Key("gcp.gce.instance_group_manager.region") - - // GCPGCEInstanceGroupManagerZoneKey is the attribute Key conforming to the - // "gcp.gce.instance_group_manager.zone" semantic conventions. It represents the - // zone of a **zonal** Instance Group Manager (e.g., `us-central1-a`). Set this - // **only** when the IGM is zonal. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "us-central1-a", "europe-west1-b" - GCPGCEInstanceGroupManagerZoneKey = attribute.Key("gcp.gce.instance_group_manager.zone") -) - -// GCPAppHubApplicationContainer returns an attribute KeyValue conforming to the -// "gcp.apphub.application.container" semantic conventions. It represents the -// container within GCP where the AppHub application is defined. -func GCPAppHubApplicationContainer(val string) attribute.KeyValue { - return GCPAppHubApplicationContainerKey.String(val) -} - -// GCPAppHubApplicationID returns an attribute KeyValue conforming to the -// "gcp.apphub.application.id" semantic conventions. It represents the name of -// the application as configured in AppHub. -func GCPAppHubApplicationID(val string) attribute.KeyValue { - return GCPAppHubApplicationIDKey.String(val) -} - -// GCPAppHubApplicationLocation returns an attribute KeyValue conforming to the -// "gcp.apphub.application.location" semantic conventions. It represents the GCP -// zone or region where the application is defined. -func GCPAppHubApplicationLocation(val string) attribute.KeyValue { - return GCPAppHubApplicationLocationKey.String(val) -} - -// GCPAppHubServiceID returns an attribute KeyValue conforming to the -// "gcp.apphub.service.id" semantic conventions. It represents the name of the -// service as configured in AppHub. -func GCPAppHubServiceID(val string) attribute.KeyValue { - return GCPAppHubServiceIDKey.String(val) -} - -// GCPAppHubWorkloadID returns an attribute KeyValue conforming to the -// "gcp.apphub.workload.id" semantic conventions. It represents the name of the -// workload as configured in AppHub. -func GCPAppHubWorkloadID(val string) attribute.KeyValue { - return GCPAppHubWorkloadIDKey.String(val) -} - -// GCPAppHubDestinationApplicationContainer returns an attribute KeyValue -// conforming to the "gcp.apphub_destination.application.container" semantic -// conventions. It represents the container within GCP where the AppHub -// destination application is defined. -func GCPAppHubDestinationApplicationContainer(val string) attribute.KeyValue { - return GCPAppHubDestinationApplicationContainerKey.String(val) -} - -// GCPAppHubDestinationApplicationID returns an attribute KeyValue conforming to -// the "gcp.apphub_destination.application.id" semantic conventions. It -// represents the name of the destination application as configured in AppHub. -func GCPAppHubDestinationApplicationID(val string) attribute.KeyValue { - return GCPAppHubDestinationApplicationIDKey.String(val) -} - -// GCPAppHubDestinationApplicationLocation returns an attribute KeyValue -// conforming to the "gcp.apphub_destination.application.location" semantic -// conventions. It represents the GCP zone or region where the destination -// application is defined. -func GCPAppHubDestinationApplicationLocation(val string) attribute.KeyValue { - return GCPAppHubDestinationApplicationLocationKey.String(val) -} - -// GCPAppHubDestinationServiceID returns an attribute KeyValue conforming to the -// "gcp.apphub_destination.service.id" semantic conventions. It represents the -// name of the destination service as configured in AppHub. -func GCPAppHubDestinationServiceID(val string) attribute.KeyValue { - return GCPAppHubDestinationServiceIDKey.String(val) -} - -// GCPAppHubDestinationWorkloadID returns an attribute KeyValue conforming to the -// "gcp.apphub_destination.workload.id" semantic conventions. It represents the -// name of the destination workload as configured in AppHub. -func GCPAppHubDestinationWorkloadID(val string) attribute.KeyValue { - return GCPAppHubDestinationWorkloadIDKey.String(val) -} - -// GCPClientService returns an attribute KeyValue conforming to the -// "gcp.client.service" semantic conventions. It represents the identifies the -// Google Cloud service for which the official client library is intended. -func GCPClientService(val string) attribute.KeyValue { - return GCPClientServiceKey.String(val) -} - -// GCPCloudRunJobExecution returns an attribute KeyValue conforming to the -// "gcp.cloud_run.job.execution" semantic conventions. It represents the name of -// the Cloud Run [execution] being run for the Job, as set by the -// [`CLOUD_RUN_EXECUTION`] environment variable. -// -// [execution]: https://cloud.google.com/run/docs/managing/job-executions -// [`CLOUD_RUN_EXECUTION`]: https://cloud.google.com/run/docs/container-contract#jobs-env-vars -func GCPCloudRunJobExecution(val string) attribute.KeyValue { - return GCPCloudRunJobExecutionKey.String(val) -} - -// GCPCloudRunJobTaskIndex returns an attribute KeyValue conforming to the -// "gcp.cloud_run.job.task_index" semantic conventions. It represents the index -// for a task within an execution as provided by the [`CLOUD_RUN_TASK_INDEX`] -// environment variable. -// -// [`CLOUD_RUN_TASK_INDEX`]: https://cloud.google.com/run/docs/container-contract#jobs-env-vars -func GCPCloudRunJobTaskIndex(val int) attribute.KeyValue { - return GCPCloudRunJobTaskIndexKey.Int(val) -} - -// GCPGCEInstanceHostname returns an attribute KeyValue conforming to the -// "gcp.gce.instance.hostname" semantic conventions. It represents the hostname -// of a GCE instance. This is the full value of the default or [custom hostname] -// . -// -// [custom hostname]: https://cloud.google.com/compute/docs/instances/custom-hostname-vm -func GCPGCEInstanceHostname(val string) attribute.KeyValue { - return GCPGCEInstanceHostnameKey.String(val) -} - -// GCPGCEInstanceName returns an attribute KeyValue conforming to the -// "gcp.gce.instance.name" semantic conventions. It represents the instance name -// of a GCE instance. This is the value provided by `host.name`, the visible name -// of the instance in the Cloud Console UI, and the prefix for the default -// hostname of the instance as defined by the [default internal DNS name]. -// -// [default internal DNS name]: https://cloud.google.com/compute/docs/internal-dns#instance-fully-qualified-domain-names -func GCPGCEInstanceName(val string) attribute.KeyValue { - return GCPGCEInstanceNameKey.String(val) -} - -// GCPGCEInstanceGroupManagerName returns an attribute KeyValue conforming to the -// "gcp.gce.instance_group_manager.name" semantic conventions. It represents the -// name of the Instance Group Manager (IGM) that manages this VM, if any. -func GCPGCEInstanceGroupManagerName(val string) attribute.KeyValue { - return GCPGCEInstanceGroupManagerNameKey.String(val) -} - -// GCPGCEInstanceGroupManagerRegion returns an attribute KeyValue conforming to -// the "gcp.gce.instance_group_manager.region" semantic conventions. It -// represents the region of a **regional** Instance Group Manager (e.g., -// `us-central1`). Set this **only** when the IGM is regional. -func GCPGCEInstanceGroupManagerRegion(val string) attribute.KeyValue { - return GCPGCEInstanceGroupManagerRegionKey.String(val) -} - -// GCPGCEInstanceGroupManagerZone returns an attribute KeyValue conforming to the -// "gcp.gce.instance_group_manager.zone" semantic conventions. It represents the -// zone of a **zonal** Instance Group Manager (e.g., `us-central1-a`). Set this -// **only** when the IGM is zonal. -func GCPGCEInstanceGroupManagerZone(val string) attribute.KeyValue { - return GCPGCEInstanceGroupManagerZoneKey.String(val) -} - -// Enum values for gcp.apphub.service.criticality_type -var ( - // Mission critical service. - // Stability: development - GCPAppHubServiceCriticalityTypeMissionCritical = GCPAppHubServiceCriticalityTypeKey.String("MISSION_CRITICAL") - // High impact. - // Stability: development - GCPAppHubServiceCriticalityTypeHigh = GCPAppHubServiceCriticalityTypeKey.String("HIGH") - // Medium impact. - // Stability: development - GCPAppHubServiceCriticalityTypeMedium = GCPAppHubServiceCriticalityTypeKey.String("MEDIUM") - // Low impact. - // Stability: development - GCPAppHubServiceCriticalityTypeLow = GCPAppHubServiceCriticalityTypeKey.String("LOW") -) - -// Enum values for gcp.apphub.service.environment_type -var ( - // Production environment. - // Stability: development - GCPAppHubServiceEnvironmentTypeProduction = GCPAppHubServiceEnvironmentTypeKey.String("PRODUCTION") - // Staging environment. - // Stability: development - GCPAppHubServiceEnvironmentTypeStaging = GCPAppHubServiceEnvironmentTypeKey.String("STAGING") - // Test environment. - // Stability: development - GCPAppHubServiceEnvironmentTypeTest = GCPAppHubServiceEnvironmentTypeKey.String("TEST") - // Development environment. - // Stability: development - GCPAppHubServiceEnvironmentTypeDevelopment = GCPAppHubServiceEnvironmentTypeKey.String("DEVELOPMENT") -) - -// Enum values for gcp.apphub.workload.criticality_type -var ( - // Mission critical service. - // Stability: development - GCPAppHubWorkloadCriticalityTypeMissionCritical = GCPAppHubWorkloadCriticalityTypeKey.String("MISSION_CRITICAL") - // High impact. - // Stability: development - GCPAppHubWorkloadCriticalityTypeHigh = GCPAppHubWorkloadCriticalityTypeKey.String("HIGH") - // Medium impact. - // Stability: development - GCPAppHubWorkloadCriticalityTypeMedium = GCPAppHubWorkloadCriticalityTypeKey.String("MEDIUM") - // Low impact. - // Stability: development - GCPAppHubWorkloadCriticalityTypeLow = GCPAppHubWorkloadCriticalityTypeKey.String("LOW") -) - -// Enum values for gcp.apphub.workload.environment_type -var ( - // Production environment. - // Stability: development - GCPAppHubWorkloadEnvironmentTypeProduction = GCPAppHubWorkloadEnvironmentTypeKey.String("PRODUCTION") - // Staging environment. - // Stability: development - GCPAppHubWorkloadEnvironmentTypeStaging = GCPAppHubWorkloadEnvironmentTypeKey.String("STAGING") - // Test environment. - // Stability: development - GCPAppHubWorkloadEnvironmentTypeTest = GCPAppHubWorkloadEnvironmentTypeKey.String("TEST") - // Development environment. - // Stability: development - GCPAppHubWorkloadEnvironmentTypeDevelopment = GCPAppHubWorkloadEnvironmentTypeKey.String("DEVELOPMENT") -) - -// Enum values for gcp.apphub_destination.service.criticality_type -var ( - // Mission critical service. - // Stability: development - GCPAppHubDestinationServiceCriticalityTypeMissionCritical = GCPAppHubDestinationServiceCriticalityTypeKey.String("MISSION_CRITICAL") - // High impact. - // Stability: development - GCPAppHubDestinationServiceCriticalityTypeHigh = GCPAppHubDestinationServiceCriticalityTypeKey.String("HIGH") - // Medium impact. - // Stability: development - GCPAppHubDestinationServiceCriticalityTypeMedium = GCPAppHubDestinationServiceCriticalityTypeKey.String("MEDIUM") - // Low impact. - // Stability: development - GCPAppHubDestinationServiceCriticalityTypeLow = GCPAppHubDestinationServiceCriticalityTypeKey.String("LOW") -) - -// Enum values for gcp.apphub_destination.service.environment_type -var ( - // Production environment. - // Stability: development - GCPAppHubDestinationServiceEnvironmentTypeProduction = GCPAppHubDestinationServiceEnvironmentTypeKey.String("PRODUCTION") - // Staging environment. - // Stability: development - GCPAppHubDestinationServiceEnvironmentTypeStaging = GCPAppHubDestinationServiceEnvironmentTypeKey.String("STAGING") - // Test environment. - // Stability: development - GCPAppHubDestinationServiceEnvironmentTypeTest = GCPAppHubDestinationServiceEnvironmentTypeKey.String("TEST") - // Development environment. - // Stability: development - GCPAppHubDestinationServiceEnvironmentTypeDevelopment = GCPAppHubDestinationServiceEnvironmentTypeKey.String("DEVELOPMENT") -) - -// Enum values for gcp.apphub_destination.workload.criticality_type -var ( - // Mission critical service. - // Stability: development - GCPAppHubDestinationWorkloadCriticalityTypeMissionCritical = GCPAppHubDestinationWorkloadCriticalityTypeKey.String("MISSION_CRITICAL") - // High impact. - // Stability: development - GCPAppHubDestinationWorkloadCriticalityTypeHigh = GCPAppHubDestinationWorkloadCriticalityTypeKey.String("HIGH") - // Medium impact. - // Stability: development - GCPAppHubDestinationWorkloadCriticalityTypeMedium = GCPAppHubDestinationWorkloadCriticalityTypeKey.String("MEDIUM") - // Low impact. - // Stability: development - GCPAppHubDestinationWorkloadCriticalityTypeLow = GCPAppHubDestinationWorkloadCriticalityTypeKey.String("LOW") -) - -// Enum values for gcp.apphub_destination.workload.environment_type -var ( - // Production environment. - // Stability: development - GCPAppHubDestinationWorkloadEnvironmentTypeProduction = GCPAppHubDestinationWorkloadEnvironmentTypeKey.String("PRODUCTION") - // Staging environment. - // Stability: development - GCPAppHubDestinationWorkloadEnvironmentTypeStaging = GCPAppHubDestinationWorkloadEnvironmentTypeKey.String("STAGING") - // Test environment. - // Stability: development - GCPAppHubDestinationWorkloadEnvironmentTypeTest = GCPAppHubDestinationWorkloadEnvironmentTypeKey.String("TEST") - // Development environment. - // Stability: development - GCPAppHubDestinationWorkloadEnvironmentTypeDevelopment = GCPAppHubDestinationWorkloadEnvironmentTypeKey.String("DEVELOPMENT") -) - -// Namespace: gen_ai -const ( - // GenAIAgentDescriptionKey is the attribute Key conforming to the - // "gen_ai.agent.description" semantic conventions. It represents the free-form - // description of the GenAI agent provided by the application. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Helps with math problems", "Generates fiction stories" - GenAIAgentDescriptionKey = attribute.Key("gen_ai.agent.description") - - // GenAIAgentIDKey is the attribute Key conforming to the "gen_ai.agent.id" - // semantic conventions. It represents the unique identifier of the GenAI agent. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "asst_5j66UpCpwteGg4YSxUnt7lPY" - GenAIAgentIDKey = attribute.Key("gen_ai.agent.id") - - // GenAIAgentNameKey is the attribute Key conforming to the "gen_ai.agent.name" - // semantic conventions. It represents the human-readable name of the GenAI - // agent provided by the application. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Math Tutor", "Fiction Writer" - GenAIAgentNameKey = attribute.Key("gen_ai.agent.name") - - // GenAIAgentVersionKey is the attribute Key conforming to the - // "gen_ai.agent.version" semantic conventions. It represents the version of the - // GenAI agent. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "1.0.0", "2025-05-01" - GenAIAgentVersionKey = attribute.Key("gen_ai.agent.version") - - // GenAIConversationIDKey is the attribute Key conforming to the - // "gen_ai.conversation.id" semantic conventions. It represents the unique - // identifier for a conversation (session, thread), used to store and correlate - // messages within this conversation. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "conv_5j66UpCpwteGg4YSxUnt7lPY" - GenAIConversationIDKey = attribute.Key("gen_ai.conversation.id") - - // GenAIDataSourceIDKey is the attribute Key conforming to the - // "gen_ai.data_source.id" semantic conventions. It represents the data source - // identifier. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "H7STPQYOND" - // Note: Data sources are used by AI agents and RAG applications to store - // grounding data. A data source may be an external database, object store, - // document collection, website, or any other storage system used by the GenAI - // agent or application. The `gen_ai.data_source.id` SHOULD match the identifier - // used by the GenAI system rather than a name specific to the external storage, - // such as a database or object store. Semantic conventions referencing - // `gen_ai.data_source.id` MAY also leverage additional attributes, such as - // `db.*`, to further identify and describe the data source. - GenAIDataSourceIDKey = attribute.Key("gen_ai.data_source.id") - - // GenAIEmbeddingsDimensionCountKey is the attribute Key conforming to the - // "gen_ai.embeddings.dimension.count" semantic conventions. It represents the - // number of dimensions the resulting output embeddings should have. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 512, 1024 - GenAIEmbeddingsDimensionCountKey = attribute.Key("gen_ai.embeddings.dimension.count") - - // GenAIEvaluationExplanationKey is the attribute Key conforming to the - // "gen_ai.evaluation.explanation" semantic conventions. It represents a - // free-form explanation for the assigned score provided by the evaluator. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "The response is factually accurate but lacks sufficient detail to - // fully address the question." - GenAIEvaluationExplanationKey = attribute.Key("gen_ai.evaluation.explanation") - - // GenAIEvaluationNameKey is the attribute Key conforming to the - // "gen_ai.evaluation.name" semantic conventions. It represents the name of the - // evaluation metric used for the GenAI response. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Relevance", "IntentResolution" - GenAIEvaluationNameKey = attribute.Key("gen_ai.evaluation.name") - - // GenAIEvaluationScoreLabelKey is the attribute Key conforming to the - // "gen_ai.evaluation.score.label" semantic conventions. It represents the human - // readable label for evaluation. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "relevant", "not_relevant", "correct", "incorrect", "pass", "fail" - // Note: This attribute provides a human-readable interpretation of the - // evaluation score produced by an evaluator. For example, a score value of 1 - // could mean "relevant" in one evaluation system and "not relevant" in another, - // depending on the scoring range and evaluator. The label SHOULD have low - // cardinality. Possible values depend on the evaluation metric and evaluator - // used; implementations SHOULD document the possible values. - GenAIEvaluationScoreLabelKey = attribute.Key("gen_ai.evaluation.score.label") - - // GenAIEvaluationScoreValueKey is the attribute Key conforming to the - // "gen_ai.evaluation.score.value" semantic conventions. It represents the - // evaluation score returned by the evaluator. - // - // Type: double - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 4.0 - GenAIEvaluationScoreValueKey = attribute.Key("gen_ai.evaluation.score.value") - - // GenAIInputMessagesKey is the attribute Key conforming to the - // "gen_ai.input.messages" semantic conventions. It represents the chat history - // provided to the model as an input. - // - // Type: any - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "[\n {\n "role": "user",\n "parts": [\n {\n "type": "text",\n - // "content": "Weather in Paris?"\n }\n ]\n },\n {\n "role": "assistant",\n - // "parts": [\n {\n "type": "tool_call",\n "id": - // "call_VSPygqKTWdrhaFErNvMV18Yl",\n "name": "get_weather",\n "arguments": {\n - // "location": "Paris"\n }\n }\n ]\n },\n {\n "role": "tool",\n "parts": [\n {\n - // "type": "tool_call_response",\n "id": " call_VSPygqKTWdrhaFErNvMV18Yl",\n - // "result": "rainy, 57°F"\n }\n ]\n }\n]\n" - // Note: Instrumentations MUST follow [Input messages JSON schema]. - // When the attribute is recorded on events, it MUST be recorded in structured - // form. When recorded on spans, it MAY be recorded as a JSON string if - // structured - // format is not supported and SHOULD be recorded in structured form otherwise. - // - // Messages MUST be provided in the order they were sent to the model. - // Instrumentations MAY provide a way for users to filter or truncate - // input messages. - // - // > [!Warning] - // > This attribute is likely to contain sensitive information including - // > user/PII data. - // - // See [Recording content on attributes] - // section for more details. - // - // [Input messages JSON schema]: /docs/gen-ai/gen-ai-input-messages.json - // [Recording content on attributes]: /docs/gen-ai/gen-ai-spans.md#recording-content-on-attributes - GenAIInputMessagesKey = attribute.Key("gen_ai.input.messages") - - // GenAIOperationNameKey is the attribute Key conforming to the - // "gen_ai.operation.name" semantic conventions. It represents the name of the - // operation being performed. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // Note: If one of the predefined values applies, but specific system uses a - // different name it's RECOMMENDED to document it in the semantic conventions - // for specific GenAI system and use system-specific name in the - // instrumentation. If a different name is not documented, instrumentation - // libraries SHOULD use applicable predefined value. - GenAIOperationNameKey = attribute.Key("gen_ai.operation.name") - - // GenAIOutputMessagesKey is the attribute Key conforming to the - // "gen_ai.output.messages" semantic conventions. It represents the messages - // returned by the model where each message represents a specific model response - // (choice, candidate). - // - // Type: any - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "[\n {\n "role": "assistant",\n "parts": [\n {\n "type": "text",\n - // "content": "The weather in Paris is currently rainy with a temperature of - // 57°F."\n }\n ],\n "finish_reason": "stop"\n }\n]\n" - // Note: Instrumentations MUST follow [Output messages JSON schema] - // - // Each message represents a single output choice/candidate generated by - // the model. Each message corresponds to exactly one generation - // (choice/candidate) and vice versa - one choice cannot be split across - // multiple messages or one message cannot contain parts from multiple choices. - // - // When the attribute is recorded on events, it MUST be recorded in structured - // form. When recorded on spans, it MAY be recorded as a JSON string if - // structured - // format is not supported and SHOULD be recorded in structured form otherwise. - // - // Instrumentations MAY provide a way for users to filter or truncate - // output messages. - // - // > [!Warning] - // > This attribute is likely to contain sensitive information including - // > user/PII data. - // - // See [Recording content on attributes] - // section for more details. - // - // [Output messages JSON schema]: /docs/gen-ai/gen-ai-output-messages.json - // [Recording content on attributes]: /docs/gen-ai/gen-ai-spans.md#recording-content-on-attributes - GenAIOutputMessagesKey = attribute.Key("gen_ai.output.messages") - - // GenAIOutputTypeKey is the attribute Key conforming to the - // "gen_ai.output.type" semantic conventions. It represents the represents the - // content type requested by the client. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // Note: This attribute SHOULD be used when the client requests output of a - // specific type. The model may return zero or more outputs of this type. - // This attribute specifies the output modality and not the actual output - // format. For example, if an image is requested, the actual output could be a - // URL pointing to an image file. - // Additional output format details may be recorded in the future in the - // `gen_ai.output.{type}.*` attributes. - GenAIOutputTypeKey = attribute.Key("gen_ai.output.type") - - // GenAIPromptNameKey is the attribute Key conforming to the - // "gen_ai.prompt.name" semantic conventions. It represents the name of the - // prompt that uniquely identifies it. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "analyze-code" - GenAIPromptNameKey = attribute.Key("gen_ai.prompt.name") - - // GenAIProviderNameKey is the attribute Key conforming to the - // "gen_ai.provider.name" semantic conventions. It represents the Generative AI - // provider as identified by the client or server instrumentation. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // Note: The attribute SHOULD be set based on the instrumentation's best - // knowledge and may differ from the actual model provider. - // - // Multiple providers, including Azure OpenAI, Gemini, and AI hosting platforms - // are accessible using the OpenAI REST API and corresponding client libraries, - // but may proxy or host models from different providers. - // - // The `gen_ai.request.model`, `gen_ai.response.model`, and `server.address` - // attributes may help identify the actual system in use. - // - // The `gen_ai.provider.name` attribute acts as a discriminator that - // identifies the GenAI telemetry format flavor specific to that provider - // within GenAI semantic conventions. - // It SHOULD be set consistently with provider-specific attributes and signals. - // For example, GenAI spans, metrics, and events related to AWS Bedrock - // should have the `gen_ai.provider.name` set to `aws.bedrock` and include - // applicable `aws.bedrock.*` attributes and are not expected to include - // `openai.*` attributes. - GenAIProviderNameKey = attribute.Key("gen_ai.provider.name") - - // GenAIRequestChoiceCountKey is the attribute Key conforming to the - // "gen_ai.request.choice.count" semantic conventions. It represents the target - // number of candidate completions to return. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 3 - GenAIRequestChoiceCountKey = attribute.Key("gen_ai.request.choice.count") - - // GenAIRequestEncodingFormatsKey is the attribute Key conforming to the - // "gen_ai.request.encoding_formats" semantic conventions. It represents the - // encoding formats requested in an embeddings operation, if specified. - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "base64"], ["float", "binary" - // Note: In some GenAI systems the encoding formats are called embedding types. - // Also, some GenAI systems only accept a single format per request. - GenAIRequestEncodingFormatsKey = attribute.Key("gen_ai.request.encoding_formats") - - // GenAIRequestFrequencyPenaltyKey is the attribute Key conforming to the - // "gen_ai.request.frequency_penalty" semantic conventions. It represents the - // frequency penalty setting for the GenAI request. - // - // Type: double - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 0.1 - GenAIRequestFrequencyPenaltyKey = attribute.Key("gen_ai.request.frequency_penalty") - - // GenAIRequestMaxTokensKey is the attribute Key conforming to the - // "gen_ai.request.max_tokens" semantic conventions. It represents the maximum - // number of tokens the model generates for a request. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 100 - GenAIRequestMaxTokensKey = attribute.Key("gen_ai.request.max_tokens") - - // GenAIRequestModelKey is the attribute Key conforming to the - // "gen_ai.request.model" semantic conventions. It represents the name of the - // GenAI model a request is being made to. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: gpt-4 - GenAIRequestModelKey = attribute.Key("gen_ai.request.model") - - // GenAIRequestPresencePenaltyKey is the attribute Key conforming to the - // "gen_ai.request.presence_penalty" semantic conventions. It represents the - // presence penalty setting for the GenAI request. - // - // Type: double - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 0.1 - GenAIRequestPresencePenaltyKey = attribute.Key("gen_ai.request.presence_penalty") - - // GenAIRequestSeedKey is the attribute Key conforming to the - // "gen_ai.request.seed" semantic conventions. It represents the requests with - // same seed value more likely to return same result. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 100 - GenAIRequestSeedKey = attribute.Key("gen_ai.request.seed") - - // GenAIRequestStopSequencesKey is the attribute Key conforming to the - // "gen_ai.request.stop_sequences" semantic conventions. It represents the list - // of sequences that the model will use to stop generating further tokens. - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "forest", "lived" - GenAIRequestStopSequencesKey = attribute.Key("gen_ai.request.stop_sequences") - - // GenAIRequestTemperatureKey is the attribute Key conforming to the - // "gen_ai.request.temperature" semantic conventions. It represents the - // temperature setting for the GenAI request. - // - // Type: double - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 0.0 - GenAIRequestTemperatureKey = attribute.Key("gen_ai.request.temperature") - - // GenAIRequestTopKKey is the attribute Key conforming to the - // "gen_ai.request.top_k" semantic conventions. It represents the top_k sampling - // setting for the GenAI request. - // - // Type: double - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 1.0 - GenAIRequestTopKKey = attribute.Key("gen_ai.request.top_k") - - // GenAIRequestTopPKey is the attribute Key conforming to the - // "gen_ai.request.top_p" semantic conventions. It represents the top_p sampling - // setting for the GenAI request. - // - // Type: double - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 1.0 - GenAIRequestTopPKey = attribute.Key("gen_ai.request.top_p") - - // GenAIResponseFinishReasonsKey is the attribute Key conforming to the - // "gen_ai.response.finish_reasons" semantic conventions. It represents the - // array of reasons the model stopped generating tokens, corresponding to each - // generation received. - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "stop"], ["stop", "length" - GenAIResponseFinishReasonsKey = attribute.Key("gen_ai.response.finish_reasons") - - // GenAIResponseIDKey is the attribute Key conforming to the - // "gen_ai.response.id" semantic conventions. It represents the unique - // identifier for the completion. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "chatcmpl-123" - GenAIResponseIDKey = attribute.Key("gen_ai.response.id") - - // GenAIResponseModelKey is the attribute Key conforming to the - // "gen_ai.response.model" semantic conventions. It represents the name of the - // model that generated the response. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "gpt-4-0613" - GenAIResponseModelKey = attribute.Key("gen_ai.response.model") - - // GenAIRetrievalDocumentsKey is the attribute Key conforming to the - // "gen_ai.retrieval.documents" semantic conventions. It represents the - // documents retrieved. - // - // Type: any - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "[\n {\n "id": "doc_123",\n "score": 0.95\n },\n {\n "id": - // "doc_456",\n "score": 0.87\n },\n {\n "id": "doc_789",\n "score": 0.82\n - // }\n]\n" - // Note: Instrumentations MUST follow [Retrieval documents JSON schema]. - // When the attribute is recorded on events, it MUST be recorded in structured - // form. When recorded on spans, it MAY be recorded as a JSON string if - // structured - // format is not supported and SHOULD be recorded in structured form otherwise. - // - // Each document object SHOULD contain at least the following properties: - // `id` (string): A unique identifier for the document, `score` (double): The - // relevance score of the document - // - // [Retrieval documents JSON schema]: /docs/gen-ai/gen-ai-retrieval-documents.json - GenAIRetrievalDocumentsKey = attribute.Key("gen_ai.retrieval.documents") - - // GenAIRetrievalQueryTextKey is the attribute Key conforming to the - // "gen_ai.retrieval.query.text" semantic conventions. It represents the query - // text used for retrieval. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "What is the capital of France?", "weather in Paris" - // Note: > [!Warning] - // - // > This attribute may contain sensitive information. - GenAIRetrievalQueryTextKey = attribute.Key("gen_ai.retrieval.query.text") - - // GenAISystemInstructionsKey is the attribute Key conforming to the - // "gen_ai.system_instructions" semantic conventions. It represents the system - // message or instructions provided to the GenAI model separately from the chat - // history. - // - // Type: any - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "[\n {\n "type": "text",\n "content": "You are an Agent that greet - // users, always use greetings tool to respond"\n }\n]\n", "[\n {\n "type": - // "text",\n "content": "You are a language translator."\n },\n {\n "type": - // "text",\n "content": "Your mission is to translate text in English to - // French."\n }\n]\n" - // Note: This attribute SHOULD be used when the corresponding provider or API - // allows to provide system instructions or messages separately from the - // chat history. - // - // Instructions that are part of the chat history SHOULD be recorded in - // `gen_ai.input.messages` attribute instead. - // - // Instrumentations MUST follow [System instructions JSON schema]. - // - // When recorded on spans, it MAY be recorded as a JSON string if structured - // format is not supported and SHOULD be recorded in structured form otherwise. - // - // Instrumentations MAY provide a way for users to filter or truncate - // system instructions. - // - // > [!Warning] - // > This attribute may contain sensitive information. - // - // See [Recording content on attributes] - // section for more details. - // - // [System instructions JSON schema]: /docs/gen-ai/gen-ai-system-instructions.json - // [Recording content on attributes]: /docs/gen-ai/gen-ai-spans.md#recording-content-on-attributes - GenAISystemInstructionsKey = attribute.Key("gen_ai.system_instructions") - - // GenAITokenTypeKey is the attribute Key conforming to the "gen_ai.token.type" - // semantic conventions. It represents the type of token being counted. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "input", "output" - GenAITokenTypeKey = attribute.Key("gen_ai.token.type") - - // GenAIToolCallArgumentsKey is the attribute Key conforming to the - // "gen_ai.tool.call.arguments" semantic conventions. It represents the - // parameters passed to the tool call. - // - // Type: any - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "{\n "location": "San Francisco?",\n "date": "2025-10-01"\n}\n" - // Note: > [!WARNING] - // - // > This attribute may contain sensitive information. - // - // It's expected to be an object - in case a serialized string is available - // to the instrumentation, the instrumentation SHOULD do the best effort to - // deserialize it to an object. When recorded on spans, it MAY be recorded as a - // JSON string if structured format is not supported and SHOULD be recorded in - // structured form otherwise. - GenAIToolCallArgumentsKey = attribute.Key("gen_ai.tool.call.arguments") - - // GenAIToolCallIDKey is the attribute Key conforming to the - // "gen_ai.tool.call.id" semantic conventions. It represents the tool call - // identifier. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "call_mszuSIzqtI65i1wAUOE8w5H4" - GenAIToolCallIDKey = attribute.Key("gen_ai.tool.call.id") - - // GenAIToolCallResultKey is the attribute Key conforming to the - // "gen_ai.tool.call.result" semantic conventions. It represents the result - // returned by the tool call (if any and if execution was successful). - // - // Type: any - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "{\n "temperature_range": {\n "high": 75,\n "low": 60\n },\n - // "conditions": "sunny"\n}\n" - // Note: > [!WARNING] - // - // > This attribute may contain sensitive information. - // - // It's expected to be an object - in case a serialized string is available - // to the instrumentation, the instrumentation SHOULD do the best effort to - // deserialize it to an object. When recorded on spans, it MAY be recorded as a - // JSON string if structured format is not supported and SHOULD be recorded in - // structured form otherwise. - GenAIToolCallResultKey = attribute.Key("gen_ai.tool.call.result") - - // GenAIToolDefinitionsKey is the attribute Key conforming to the - // "gen_ai.tool.definitions" semantic conventions. It represents the list of - // source system tool definitions available to the GenAI agent or model. - // - // Type: any - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "[\n {\n "type": "function",\n "name": "get_current_weather",\n - // "description": "Get the current weather in a given location",\n "parameters": - // {\n "type": "object",\n "properties": {\n "location": {\n "type": "string",\n - // "description": "The city and state, e.g. San Francisco, CA"\n },\n "unit": - // {\n "type": "string",\n "enum": [\n "celsius",\n "fahrenheit"\n ]\n }\n },\n - // "required": [\n "location",\n "unit"\n ]\n }\n }\n]\n" - // Note: The value of this attribute matches source system tool definition - // format. - // - // It's expected to be an array of objects where each object represents a tool - // definition. In case a serialized string is available - // to the instrumentation, the instrumentation SHOULD do the best effort to - // deserialize it to an array. When recorded on spans, it MAY be recorded as a - // JSON string if structured format is not supported and SHOULD be recorded in - // structured form otherwise. - // - // Since this attribute could be large, it's NOT RECOMMENDED to populate - // it by default. Instrumentations MAY provide a way to enable - // populating this attribute. - GenAIToolDefinitionsKey = attribute.Key("gen_ai.tool.definitions") - - // GenAIToolDescriptionKey is the attribute Key conforming to the - // "gen_ai.tool.description" semantic conventions. It represents the tool - // description. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Multiply two numbers" - GenAIToolDescriptionKey = attribute.Key("gen_ai.tool.description") - - // GenAIToolNameKey is the attribute Key conforming to the "gen_ai.tool.name" - // semantic conventions. It represents the name of the tool utilized by the - // agent. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Flights" - GenAIToolNameKey = attribute.Key("gen_ai.tool.name") - - // GenAIToolTypeKey is the attribute Key conforming to the "gen_ai.tool.type" - // semantic conventions. It represents the type of the tool utilized by the - // agent. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "function", "extension", "datastore" - // Note: Extension: A tool executed on the agent-side to directly call external - // APIs, bridging the gap between the agent and real-world systems. - // Agent-side operations involve actions that are performed by the agent on the - // server or within the agent's controlled environment. - // Function: A tool executed on the client-side, where the agent generates - // parameters for a predefined function, and the client executes the logic. - // Client-side operations are actions taken on the user's end or within the - // client application. - // Datastore: A tool used by the agent to access and query structured or - // unstructured external data for retrieval-augmented tasks or knowledge - // updates. - GenAIToolTypeKey = attribute.Key("gen_ai.tool.type") - - // GenAIUsageCacheCreationInputTokensKey is the attribute Key conforming to the - // "gen_ai.usage.cache_creation.input_tokens" semantic conventions. It - // represents the number of input tokens written to a provider-managed cache. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 25 - // Note: The value SHOULD be included in `gen_ai.usage.input_tokens`. - GenAIUsageCacheCreationInputTokensKey = attribute.Key("gen_ai.usage.cache_creation.input_tokens") - - // GenAIUsageCacheReadInputTokensKey is the attribute Key conforming to the - // "gen_ai.usage.cache_read.input_tokens" semantic conventions. It represents - // the number of input tokens served from a provider-managed cache. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 50 - // Note: The value SHOULD be included in `gen_ai.usage.input_tokens`. - GenAIUsageCacheReadInputTokensKey = attribute.Key("gen_ai.usage.cache_read.input_tokens") - - // GenAIUsageInputTokensKey is the attribute Key conforming to the - // "gen_ai.usage.input_tokens" semantic conventions. It represents the number of - // tokens used in the GenAI input (prompt). - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 100 - // Note: This value SHOULD include all types of input tokens, including cached - // tokens. - // Instrumentations SHOULD make a best effort to populate this value, using a - // total - // provided by the provider when available or, depending on the provider API, - // by summing different token types parsed from the provider output. - GenAIUsageInputTokensKey = attribute.Key("gen_ai.usage.input_tokens") - - // GenAIUsageOutputTokensKey is the attribute Key conforming to the - // "gen_ai.usage.output_tokens" semantic conventions. It represents the number - // of tokens used in the GenAI response (completion). - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 180 - GenAIUsageOutputTokensKey = attribute.Key("gen_ai.usage.output_tokens") -) - -// GenAIAgentDescription returns an attribute KeyValue conforming to the -// "gen_ai.agent.description" semantic conventions. It represents the free-form -// description of the GenAI agent provided by the application. -func GenAIAgentDescription(val string) attribute.KeyValue { - return GenAIAgentDescriptionKey.String(val) -} - -// GenAIAgentID returns an attribute KeyValue conforming to the "gen_ai.agent.id" -// semantic conventions. It represents the unique identifier of the GenAI agent. -func GenAIAgentID(val string) attribute.KeyValue { - return GenAIAgentIDKey.String(val) -} - -// GenAIAgentName returns an attribute KeyValue conforming to the -// "gen_ai.agent.name" semantic conventions. It represents the human-readable -// name of the GenAI agent provided by the application. -func GenAIAgentName(val string) attribute.KeyValue { - return GenAIAgentNameKey.String(val) -} - -// GenAIAgentVersion returns an attribute KeyValue conforming to the -// "gen_ai.agent.version" semantic conventions. It represents the version of the -// GenAI agent. -func GenAIAgentVersion(val string) attribute.KeyValue { - return GenAIAgentVersionKey.String(val) -} - -// GenAIConversationID returns an attribute KeyValue conforming to the -// "gen_ai.conversation.id" semantic conventions. It represents the unique -// identifier for a conversation (session, thread), used to store and correlate -// messages within this conversation. -func GenAIConversationID(val string) attribute.KeyValue { - return GenAIConversationIDKey.String(val) -} - -// GenAIDataSourceID returns an attribute KeyValue conforming to the -// "gen_ai.data_source.id" semantic conventions. It represents the data source -// identifier. -func GenAIDataSourceID(val string) attribute.KeyValue { - return GenAIDataSourceIDKey.String(val) -} - -// GenAIEmbeddingsDimensionCount returns an attribute KeyValue conforming to the -// "gen_ai.embeddings.dimension.count" semantic conventions. It represents the -// number of dimensions the resulting output embeddings should have. -func GenAIEmbeddingsDimensionCount(val int) attribute.KeyValue { - return GenAIEmbeddingsDimensionCountKey.Int(val) -} - -// GenAIEvaluationExplanation returns an attribute KeyValue conforming to the -// "gen_ai.evaluation.explanation" semantic conventions. It represents a -// free-form explanation for the assigned score provided by the evaluator. -func GenAIEvaluationExplanation(val string) attribute.KeyValue { - return GenAIEvaluationExplanationKey.String(val) -} - -// GenAIEvaluationName returns an attribute KeyValue conforming to the -// "gen_ai.evaluation.name" semantic conventions. It represents the name of the -// evaluation metric used for the GenAI response. -func GenAIEvaluationName(val string) attribute.KeyValue { - return GenAIEvaluationNameKey.String(val) -} - -// GenAIEvaluationScoreLabel returns an attribute KeyValue conforming to the -// "gen_ai.evaluation.score.label" semantic conventions. It represents the human -// readable label for evaluation. -func GenAIEvaluationScoreLabel(val string) attribute.KeyValue { - return GenAIEvaluationScoreLabelKey.String(val) -} - -// GenAIEvaluationScoreValue returns an attribute KeyValue conforming to the -// "gen_ai.evaluation.score.value" semantic conventions. It represents the -// evaluation score returned by the evaluator. -func GenAIEvaluationScoreValue(val float64) attribute.KeyValue { - return GenAIEvaluationScoreValueKey.Float64(val) -} - -// GenAIPromptName returns an attribute KeyValue conforming to the -// "gen_ai.prompt.name" semantic conventions. It represents the name of the -// prompt that uniquely identifies it. -func GenAIPromptName(val string) attribute.KeyValue { - return GenAIPromptNameKey.String(val) -} - -// GenAIRequestChoiceCount returns an attribute KeyValue conforming to the -// "gen_ai.request.choice.count" semantic conventions. It represents the target -// number of candidate completions to return. -func GenAIRequestChoiceCount(val int) attribute.KeyValue { - return GenAIRequestChoiceCountKey.Int(val) -} - -// GenAIRequestEncodingFormats returns an attribute KeyValue conforming to the -// "gen_ai.request.encoding_formats" semantic conventions. It represents the -// encoding formats requested in an embeddings operation, if specified. -func GenAIRequestEncodingFormats(val ...string) attribute.KeyValue { - return GenAIRequestEncodingFormatsKey.StringSlice(val) -} - -// GenAIRequestFrequencyPenalty returns an attribute KeyValue conforming to the -// "gen_ai.request.frequency_penalty" semantic conventions. It represents the -// frequency penalty setting for the GenAI request. -func GenAIRequestFrequencyPenalty(val float64) attribute.KeyValue { - return GenAIRequestFrequencyPenaltyKey.Float64(val) -} - -// GenAIRequestMaxTokens returns an attribute KeyValue conforming to the -// "gen_ai.request.max_tokens" semantic conventions. It represents the maximum -// number of tokens the model generates for a request. -func GenAIRequestMaxTokens(val int) attribute.KeyValue { - return GenAIRequestMaxTokensKey.Int(val) -} - -// GenAIRequestModel returns an attribute KeyValue conforming to the -// "gen_ai.request.model" semantic conventions. It represents the name of the -// GenAI model a request is being made to. -func GenAIRequestModel(val string) attribute.KeyValue { - return GenAIRequestModelKey.String(val) -} - -// GenAIRequestPresencePenalty returns an attribute KeyValue conforming to the -// "gen_ai.request.presence_penalty" semantic conventions. It represents the -// presence penalty setting for the GenAI request. -func GenAIRequestPresencePenalty(val float64) attribute.KeyValue { - return GenAIRequestPresencePenaltyKey.Float64(val) -} - -// GenAIRequestSeed returns an attribute KeyValue conforming to the -// "gen_ai.request.seed" semantic conventions. It represents the requests with -// same seed value more likely to return same result. -func GenAIRequestSeed(val int) attribute.KeyValue { - return GenAIRequestSeedKey.Int(val) -} - -// GenAIRequestStopSequences returns an attribute KeyValue conforming to the -// "gen_ai.request.stop_sequences" semantic conventions. It represents the list -// of sequences that the model will use to stop generating further tokens. -func GenAIRequestStopSequences(val ...string) attribute.KeyValue { - return GenAIRequestStopSequencesKey.StringSlice(val) -} - -// GenAIRequestTemperature returns an attribute KeyValue conforming to the -// "gen_ai.request.temperature" semantic conventions. It represents the -// temperature setting for the GenAI request. -func GenAIRequestTemperature(val float64) attribute.KeyValue { - return GenAIRequestTemperatureKey.Float64(val) -} - -// GenAIRequestTopK returns an attribute KeyValue conforming to the -// "gen_ai.request.top_k" semantic conventions. It represents the top_k sampling -// setting for the GenAI request. -func GenAIRequestTopK(val float64) attribute.KeyValue { - return GenAIRequestTopKKey.Float64(val) -} - -// GenAIRequestTopP returns an attribute KeyValue conforming to the -// "gen_ai.request.top_p" semantic conventions. It represents the top_p sampling -// setting for the GenAI request. -func GenAIRequestTopP(val float64) attribute.KeyValue { - return GenAIRequestTopPKey.Float64(val) -} - -// GenAIResponseFinishReasons returns an attribute KeyValue conforming to the -// "gen_ai.response.finish_reasons" semantic conventions. It represents the array -// of reasons the model stopped generating tokens, corresponding to each -// generation received. -func GenAIResponseFinishReasons(val ...string) attribute.KeyValue { - return GenAIResponseFinishReasonsKey.StringSlice(val) -} - -// GenAIResponseID returns an attribute KeyValue conforming to the -// "gen_ai.response.id" semantic conventions. It represents the unique identifier -// for the completion. -func GenAIResponseID(val string) attribute.KeyValue { - return GenAIResponseIDKey.String(val) -} - -// GenAIResponseModel returns an attribute KeyValue conforming to the -// "gen_ai.response.model" semantic conventions. It represents the name of the -// model that generated the response. -func GenAIResponseModel(val string) attribute.KeyValue { - return GenAIResponseModelKey.String(val) -} - -// GenAIRetrievalQueryText returns an attribute KeyValue conforming to the -// "gen_ai.retrieval.query.text" semantic conventions. It represents the query -// text used for retrieval. -func GenAIRetrievalQueryText(val string) attribute.KeyValue { - return GenAIRetrievalQueryTextKey.String(val) -} - -// GenAIToolCallID returns an attribute KeyValue conforming to the -// "gen_ai.tool.call.id" semantic conventions. It represents the tool call -// identifier. -func GenAIToolCallID(val string) attribute.KeyValue { - return GenAIToolCallIDKey.String(val) -} - -// GenAIToolDescription returns an attribute KeyValue conforming to the -// "gen_ai.tool.description" semantic conventions. It represents the tool -// description. -func GenAIToolDescription(val string) attribute.KeyValue { - return GenAIToolDescriptionKey.String(val) -} - -// GenAIToolName returns an attribute KeyValue conforming to the -// "gen_ai.tool.name" semantic conventions. It represents the name of the tool -// utilized by the agent. -func GenAIToolName(val string) attribute.KeyValue { - return GenAIToolNameKey.String(val) -} - -// GenAIToolType returns an attribute KeyValue conforming to the -// "gen_ai.tool.type" semantic conventions. It represents the type of the tool -// utilized by the agent. -func GenAIToolType(val string) attribute.KeyValue { - return GenAIToolTypeKey.String(val) -} - -// GenAIUsageCacheCreationInputTokens returns an attribute KeyValue conforming to -// the "gen_ai.usage.cache_creation.input_tokens" semantic conventions. It -// represents the number of input tokens written to a provider-managed cache. -func GenAIUsageCacheCreationInputTokens(val int) attribute.KeyValue { - return GenAIUsageCacheCreationInputTokensKey.Int(val) -} - -// GenAIUsageCacheReadInputTokens returns an attribute KeyValue conforming to the -// "gen_ai.usage.cache_read.input_tokens" semantic conventions. It represents the -// number of input tokens served from a provider-managed cache. -func GenAIUsageCacheReadInputTokens(val int) attribute.KeyValue { - return GenAIUsageCacheReadInputTokensKey.Int(val) -} - -// GenAIUsageInputTokens returns an attribute KeyValue conforming to the -// "gen_ai.usage.input_tokens" semantic conventions. It represents the number of -// tokens used in the GenAI input (prompt). -func GenAIUsageInputTokens(val int) attribute.KeyValue { - return GenAIUsageInputTokensKey.Int(val) -} - -// GenAIUsageOutputTokens returns an attribute KeyValue conforming to the -// "gen_ai.usage.output_tokens" semantic conventions. It represents the number of -// tokens used in the GenAI response (completion). -func GenAIUsageOutputTokens(val int) attribute.KeyValue { - return GenAIUsageOutputTokensKey.Int(val) -} - -// Enum values for gen_ai.operation.name -var ( - // Chat completion operation such as [OpenAI Chat API] - // Stability: development - // - // [OpenAI Chat API]: https://platform.openai.com/docs/api-reference/chat - GenAIOperationNameChat = GenAIOperationNameKey.String("chat") - // Multimodal content generation operation such as [Gemini Generate Content] - // Stability: development - // - // [Gemini Generate Content]: https://ai.google.dev/api/generate-content - GenAIOperationNameGenerateContent = GenAIOperationNameKey.String("generate_content") - // Text completions operation such as [OpenAI Completions API (Legacy)] - // Stability: development - // - // [OpenAI Completions API (Legacy)]: https://platform.openai.com/docs/api-reference/completions - GenAIOperationNameTextCompletion = GenAIOperationNameKey.String("text_completion") - // Embeddings operation such as [OpenAI Create embeddings API] - // Stability: development - // - // [OpenAI Create embeddings API]: https://platform.openai.com/docs/api-reference/embeddings/create - GenAIOperationNameEmbeddings = GenAIOperationNameKey.String("embeddings") - // Retrieval operation such as [OpenAI Search Vector Store API] - // Stability: development - // - // [OpenAI Search Vector Store API]: https://platform.openai.com/docs/api-reference/vector-stores/search - GenAIOperationNameRetrieval = GenAIOperationNameKey.String("retrieval") - // Create GenAI agent - // Stability: development - GenAIOperationNameCreateAgent = GenAIOperationNameKey.String("create_agent") - // Invoke GenAI agent - // Stability: development - GenAIOperationNameInvokeAgent = GenAIOperationNameKey.String("invoke_agent") - // Execute a tool - // Stability: development - GenAIOperationNameExecuteTool = GenAIOperationNameKey.String("execute_tool") -) - -// Enum values for gen_ai.output.type -var ( - // Plain text - // Stability: development - GenAIOutputTypeText = GenAIOutputTypeKey.String("text") - // JSON object with known or unknown schema - // Stability: development - GenAIOutputTypeJSON = GenAIOutputTypeKey.String("json") - // Image - // Stability: development - GenAIOutputTypeImage = GenAIOutputTypeKey.String("image") - // Speech - // Stability: development - GenAIOutputTypeSpeech = GenAIOutputTypeKey.String("speech") -) - -// Enum values for gen_ai.provider.name -var ( - // [OpenAI] - // Stability: development - // - // [OpenAI]: https://openai.com/ - GenAIProviderNameOpenAI = GenAIProviderNameKey.String("openai") - // Any Google generative AI endpoint - // Stability: development - GenAIProviderNameGCPGenAI = GenAIProviderNameKey.String("gcp.gen_ai") - // [Vertex AI] - // Stability: development - // - // [Vertex AI]: https://cloud.google.com/vertex-ai - GenAIProviderNameGCPVertexAI = GenAIProviderNameKey.String("gcp.vertex_ai") - // [Gemini] - // Stability: development - // - // [Gemini]: https://cloud.google.com/products/gemini - GenAIProviderNameGCPGemini = GenAIProviderNameKey.String("gcp.gemini") - // [Anthropic] - // Stability: development - // - // [Anthropic]: https://www.anthropic.com/ - GenAIProviderNameAnthropic = GenAIProviderNameKey.String("anthropic") - // [Cohere] - // Stability: development - // - // [Cohere]: https://cohere.com/ - GenAIProviderNameCohere = GenAIProviderNameKey.String("cohere") - // Azure AI Inference - // Stability: development - GenAIProviderNameAzureAIInference = GenAIProviderNameKey.String("azure.ai.inference") - // [Azure OpenAI] - // Stability: development - // - // [Azure OpenAI]: https://azure.microsoft.com/products/ai-services/openai-service/ - GenAIProviderNameAzureAIOpenAI = GenAIProviderNameKey.String("azure.ai.openai") - // [IBM Watsonx AI] - // Stability: development - // - // [IBM Watsonx AI]: https://www.ibm.com/products/watsonx-ai - GenAIProviderNameIBMWatsonxAI = GenAIProviderNameKey.String("ibm.watsonx.ai") - // [AWS Bedrock] - // Stability: development - // - // [AWS Bedrock]: https://aws.amazon.com/bedrock - GenAIProviderNameAWSBedrock = GenAIProviderNameKey.String("aws.bedrock") - // [Perplexity] - // Stability: development - // - // [Perplexity]: https://www.perplexity.ai/ - GenAIProviderNamePerplexity = GenAIProviderNameKey.String("perplexity") - // [xAI] - // Stability: development - // - // [xAI]: https://x.ai/ - GenAIProviderNameXAI = GenAIProviderNameKey.String("x_ai") - // [DeepSeek] - // Stability: development - // - // [DeepSeek]: https://www.deepseek.com/ - GenAIProviderNameDeepseek = GenAIProviderNameKey.String("deepseek") - // [Groq] - // Stability: development - // - // [Groq]: https://groq.com/ - GenAIProviderNameGroq = GenAIProviderNameKey.String("groq") - // [Mistral AI] - // Stability: development - // - // [Mistral AI]: https://mistral.ai/ - GenAIProviderNameMistralAI = GenAIProviderNameKey.String("mistral_ai") -) - -// Enum values for gen_ai.token.type -var ( - // Input tokens (prompt, input, etc.) - // Stability: development - GenAITokenTypeInput = GenAITokenTypeKey.String("input") - // Output tokens (completion, response, etc.) - // Stability: development - GenAITokenTypeOutput = GenAITokenTypeKey.String("output") -) - -// Namespace: geo -const ( - // GeoContinentCodeKey is the attribute Key conforming to the - // "geo.continent.code" semantic conventions. It represents the two-letter code - // representing continent’s name. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - GeoContinentCodeKey = attribute.Key("geo.continent.code") - - // GeoCountryISOCodeKey is the attribute Key conforming to the - // "geo.country.iso_code" semantic conventions. It represents the two-letter ISO - // Country Code ([ISO 3166-1 alpha2]). - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "CA" - // - // [ISO 3166-1 alpha2]: https://wikipedia.org/wiki/ISO_3166-1#Codes - GeoCountryISOCodeKey = attribute.Key("geo.country.iso_code") - - // GeoLocalityNameKey is the attribute Key conforming to the "geo.locality.name" - // semantic conventions. It represents the locality name. Represents the name of - // a city, town, village, or similar populated place. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Montreal", "Berlin" - GeoLocalityNameKey = attribute.Key("geo.locality.name") - - // GeoLocationLatKey is the attribute Key conforming to the "geo.location.lat" - // semantic conventions. It represents the latitude of the geo location in - // [WGS84]. - // - // Type: double - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 45.505918 - // - // [WGS84]: https://wikipedia.org/wiki/World_Geodetic_System#WGS84 - GeoLocationLatKey = attribute.Key("geo.location.lat") - - // GeoLocationLonKey is the attribute Key conforming to the "geo.location.lon" - // semantic conventions. It represents the longitude of the geo location in - // [WGS84]. - // - // Type: double - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: -73.61483 - // - // [WGS84]: https://wikipedia.org/wiki/World_Geodetic_System#WGS84 - GeoLocationLonKey = attribute.Key("geo.location.lon") - - // GeoPostalCodeKey is the attribute Key conforming to the "geo.postal_code" - // semantic conventions. It represents the postal code associated with the - // location. Values appropriate for this field may also be known as a postcode - // or ZIP code and will vary widely from country to country. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "94040" - GeoPostalCodeKey = attribute.Key("geo.postal_code") - - // GeoRegionISOCodeKey is the attribute Key conforming to the - // "geo.region.iso_code" semantic conventions. It represents the region ISO code - // ([ISO 3166-2]). - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "CA-QC" - // - // [ISO 3166-2]: https://wikipedia.org/wiki/ISO_3166-2 - GeoRegionISOCodeKey = attribute.Key("geo.region.iso_code") -) - -// GeoCountryISOCode returns an attribute KeyValue conforming to the -// "geo.country.iso_code" semantic conventions. It represents the two-letter ISO -// Country Code ([ISO 3166-1 alpha2]). -// -// [ISO 3166-1 alpha2]: https://wikipedia.org/wiki/ISO_3166-1#Codes -func GeoCountryISOCode(val string) attribute.KeyValue { - return GeoCountryISOCodeKey.String(val) -} - -// GeoLocalityName returns an attribute KeyValue conforming to the -// "geo.locality.name" semantic conventions. It represents the locality name. -// Represents the name of a city, town, village, or similar populated place. -func GeoLocalityName(val string) attribute.KeyValue { - return GeoLocalityNameKey.String(val) -} - -// GeoLocationLat returns an attribute KeyValue conforming to the -// "geo.location.lat" semantic conventions. It represents the latitude of the geo -// location in [WGS84]. -// -// [WGS84]: https://wikipedia.org/wiki/World_Geodetic_System#WGS84 -func GeoLocationLat(val float64) attribute.KeyValue { - return GeoLocationLatKey.Float64(val) -} - -// GeoLocationLon returns an attribute KeyValue conforming to the -// "geo.location.lon" semantic conventions. It represents the longitude of the -// geo location in [WGS84]. -// -// [WGS84]: https://wikipedia.org/wiki/World_Geodetic_System#WGS84 -func GeoLocationLon(val float64) attribute.KeyValue { - return GeoLocationLonKey.Float64(val) -} - -// GeoPostalCode returns an attribute KeyValue conforming to the -// "geo.postal_code" semantic conventions. It represents the postal code -// associated with the location. Values appropriate for this field may also be -// known as a postcode or ZIP code and will vary widely from country to country. -func GeoPostalCode(val string) attribute.KeyValue { - return GeoPostalCodeKey.String(val) -} - -// GeoRegionISOCode returns an attribute KeyValue conforming to the -// "geo.region.iso_code" semantic conventions. It represents the region ISO code -// ([ISO 3166-2]). -// -// [ISO 3166-2]: https://wikipedia.org/wiki/ISO_3166-2 -func GeoRegionISOCode(val string) attribute.KeyValue { - return GeoRegionISOCodeKey.String(val) -} - -// Enum values for geo.continent.code -var ( - // Africa - // Stability: development - GeoContinentCodeAf = GeoContinentCodeKey.String("AF") - // Antarctica - // Stability: development - GeoContinentCodeAn = GeoContinentCodeKey.String("AN") - // Asia - // Stability: development - GeoContinentCodeAs = GeoContinentCodeKey.String("AS") - // Europe - // Stability: development - GeoContinentCodeEu = GeoContinentCodeKey.String("EU") - // North America - // Stability: development - GeoContinentCodeNa = GeoContinentCodeKey.String("NA") - // Oceania - // Stability: development - GeoContinentCodeOc = GeoContinentCodeKey.String("OC") - // South America - // Stability: development - GeoContinentCodeSa = GeoContinentCodeKey.String("SA") -) - -// Namespace: go -const ( - // GoMemoryTypeKey is the attribute Key conforming to the "go.memory.type" - // semantic conventions. It represents the type of memory. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "other", "stack" - GoMemoryTypeKey = attribute.Key("go.memory.type") -) - -// Enum values for go.memory.type -var ( - // Memory allocated from the heap that is reserved for stack space, whether or - // not it is currently in-use. - // Stability: development - GoMemoryTypeStack = GoMemoryTypeKey.String("stack") - // Memory used by the Go runtime, excluding other categories of memory usage - // described in this enumeration. - // Stability: development - GoMemoryTypeOther = GoMemoryTypeKey.String("other") -) - -// Namespace: graphql -const ( - // GraphQLDocumentKey is the attribute Key conforming to the "graphql.document" - // semantic conventions. It represents the GraphQL document being executed. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: query findBookById { bookById(id: ?) { name } } - // Note: The value may be sanitized to exclude sensitive information. - GraphQLDocumentKey = attribute.Key("graphql.document") - - // GraphQLOperationNameKey is the attribute Key conforming to the - // "graphql.operation.name" semantic conventions. It represents the name of the - // operation being executed. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: findBookById - GraphQLOperationNameKey = attribute.Key("graphql.operation.name") - - // GraphQLOperationTypeKey is the attribute Key conforming to the - // "graphql.operation.type" semantic conventions. It represents the type of the - // operation being executed. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "query", "mutation", "subscription" - GraphQLOperationTypeKey = attribute.Key("graphql.operation.type") -) - -// GraphQLDocument returns an attribute KeyValue conforming to the -// "graphql.document" semantic conventions. It represents the GraphQL document -// being executed. -func GraphQLDocument(val string) attribute.KeyValue { - return GraphQLDocumentKey.String(val) -} - -// GraphQLOperationName returns an attribute KeyValue conforming to the -// "graphql.operation.name" semantic conventions. It represents the name of the -// operation being executed. -func GraphQLOperationName(val string) attribute.KeyValue { - return GraphQLOperationNameKey.String(val) -} - -// Enum values for graphql.operation.type -var ( - // GraphQL query - // Stability: development - GraphQLOperationTypeQuery = GraphQLOperationTypeKey.String("query") - // GraphQL mutation - // Stability: development - GraphQLOperationTypeMutation = GraphQLOperationTypeKey.String("mutation") - // GraphQL subscription - // Stability: development - GraphQLOperationTypeSubscription = GraphQLOperationTypeKey.String("subscription") -) - -// Namespace: heroku -const ( - // HerokuAppIDKey is the attribute Key conforming to the "heroku.app.id" - // semantic conventions. It represents the unique identifier for the - // application. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "2daa2797-e42b-4624-9322-ec3f968df4da" - HerokuAppIDKey = attribute.Key("heroku.app.id") - - // HerokuReleaseCommitKey is the attribute Key conforming to the - // "heroku.release.commit" semantic conventions. It represents the commit hash - // for the current release. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "e6134959463efd8966b20e75b913cafe3f5ec" - HerokuReleaseCommitKey = attribute.Key("heroku.release.commit") - - // HerokuReleaseCreationTimestampKey is the attribute Key conforming to the - // "heroku.release.creation_timestamp" semantic conventions. It represents the - // time and date the release was created. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "2022-10-23T18:00:42Z" - HerokuReleaseCreationTimestampKey = attribute.Key("heroku.release.creation_timestamp") -) - -// HerokuAppID returns an attribute KeyValue conforming to the "heroku.app.id" -// semantic conventions. It represents the unique identifier for the application. -func HerokuAppID(val string) attribute.KeyValue { - return HerokuAppIDKey.String(val) -} - -// HerokuReleaseCommit returns an attribute KeyValue conforming to the -// "heroku.release.commit" semantic conventions. It represents the commit hash -// for the current release. -func HerokuReleaseCommit(val string) attribute.KeyValue { - return HerokuReleaseCommitKey.String(val) -} - -// HerokuReleaseCreationTimestamp returns an attribute KeyValue conforming to the -// "heroku.release.creation_timestamp" semantic conventions. It represents the -// time and date the release was created. -func HerokuReleaseCreationTimestamp(val string) attribute.KeyValue { - return HerokuReleaseCreationTimestampKey.String(val) -} - -// Namespace: host -const ( - // HostArchKey is the attribute Key conforming to the "host.arch" semantic - // conventions. It represents the CPU architecture the host system is running - // on. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - HostArchKey = attribute.Key("host.arch") - - // HostCPUCacheL2SizeKey is the attribute Key conforming to the - // "host.cpu.cache.l2.size" semantic conventions. It represents the amount of - // level 2 memory cache available to the processor (in Bytes). - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 12288000 - HostCPUCacheL2SizeKey = attribute.Key("host.cpu.cache.l2.size") - - // HostCPUFamilyKey is the attribute Key conforming to the "host.cpu.family" - // semantic conventions. It represents the family or generation of the CPU. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "6", "PA-RISC 1.1e" - HostCPUFamilyKey = attribute.Key("host.cpu.family") - - // HostCPUModelIDKey is the attribute Key conforming to the "host.cpu.model.id" - // semantic conventions. It represents the model identifier. It provides more - // granular information about the CPU, distinguishing it from other CPUs within - // the same family. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "6", "9000/778/B180L" - HostCPUModelIDKey = attribute.Key("host.cpu.model.id") - - // HostCPUModelNameKey is the attribute Key conforming to the - // "host.cpu.model.name" semantic conventions. It represents the model - // designation of the processor. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "11th Gen Intel(R) Core(TM) i7-1185G7 @ 3.00GHz" - HostCPUModelNameKey = attribute.Key("host.cpu.model.name") - - // HostCPUSteppingKey is the attribute Key conforming to the "host.cpu.stepping" - // semantic conventions. It represents the stepping or core revisions. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "1", "r1p1" - HostCPUSteppingKey = attribute.Key("host.cpu.stepping") - - // HostCPUVendorIDKey is the attribute Key conforming to the - // "host.cpu.vendor.id" semantic conventions. It represents the processor - // manufacturer identifier. A maximum 12-character string. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "GenuineIntel" - // Note: [CPUID] command returns the vendor ID string in EBX, EDX and ECX - // registers. Writing these to memory in this order results in a 12-character - // string. - // - // [CPUID]: https://wiki.osdev.org/CPUID - HostCPUVendorIDKey = attribute.Key("host.cpu.vendor.id") - - // HostIDKey is the attribute Key conforming to the "host.id" semantic - // conventions. It represents the unique host ID. For Cloud, this must be the - // instance_id assigned by the cloud provider. For non-containerized systems, - // this should be the `machine-id`. See the table below for the sources to use - // to determine the `machine-id` based on operating system. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "fdbf79e8af94cb7f9e8df36789187052" - HostIDKey = attribute.Key("host.id") - - // HostImageIDKey is the attribute Key conforming to the "host.image.id" - // semantic conventions. It represents the VM image ID or host OS image ID. For - // Cloud, this value is from the provider. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "ami-07b06b442921831e5" - HostImageIDKey = attribute.Key("host.image.id") - - // HostImageNameKey is the attribute Key conforming to the "host.image.name" - // semantic conventions. It represents the name of the VM image or OS install - // the host was instantiated from. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "infra-ami-eks-worker-node-7d4ec78312", "CentOS-8-x86_64-1905" - HostImageNameKey = attribute.Key("host.image.name") - - // HostImageVersionKey is the attribute Key conforming to the - // "host.image.version" semantic conventions. It represents the version string - // of the VM image or host OS as defined in [Version Attributes]. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "0.1" - // - // [Version Attributes]: /docs/resource/README.md#version-attributes - HostImageVersionKey = attribute.Key("host.image.version") - - // HostIPKey is the attribute Key conforming to the "host.ip" semantic - // conventions. It represents the available IP addresses of the host, excluding - // loopback interfaces. - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "192.168.1.140", "fe80::abc2:4a28:737a:609e" - // Note: IPv4 Addresses MUST be specified in dotted-quad notation. IPv6 - // addresses MUST be specified in the [RFC 5952] format. - // - // [RFC 5952]: https://www.rfc-editor.org/rfc/rfc5952.html - HostIPKey = attribute.Key("host.ip") - - // HostMacKey is the attribute Key conforming to the "host.mac" semantic - // conventions. It represents the available MAC addresses of the host, excluding - // loopback interfaces. - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "AC-DE-48-23-45-67", "AC-DE-48-23-45-67-01-9F" - // Note: MAC Addresses MUST be represented in [IEEE RA hexadecimal form]: as - // hyphen-separated octets in uppercase hexadecimal form from most to least - // significant. - // - // [IEEE RA hexadecimal form]: https://standards.ieee.org/wp-content/uploads/import/documents/tutorials/eui.pdf - HostMacKey = attribute.Key("host.mac") - - // HostNameKey is the attribute Key conforming to the "host.name" semantic - // conventions. It represents the name of the host. On Unix systems, it may - // contain what the hostname command returns, or the fully qualified hostname, - // or another name specified by the user. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "opentelemetry-test" - HostNameKey = attribute.Key("host.name") - - // HostTypeKey is the attribute Key conforming to the "host.type" semantic - // conventions. It represents the type of host. For Cloud, this must be the - // machine type. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "n1-standard-1" - HostTypeKey = attribute.Key("host.type") -) - -// HostCPUCacheL2Size returns an attribute KeyValue conforming to the -// "host.cpu.cache.l2.size" semantic conventions. It represents the amount of -// level 2 memory cache available to the processor (in Bytes). -func HostCPUCacheL2Size(val int) attribute.KeyValue { - return HostCPUCacheL2SizeKey.Int(val) -} - -// HostCPUFamily returns an attribute KeyValue conforming to the -// "host.cpu.family" semantic conventions. It represents the family or generation -// of the CPU. -func HostCPUFamily(val string) attribute.KeyValue { - return HostCPUFamilyKey.String(val) -} - -// HostCPUModelID returns an attribute KeyValue conforming to the -// "host.cpu.model.id" semantic conventions. It represents the model identifier. -// It provides more granular information about the CPU, distinguishing it from -// other CPUs within the same family. -func HostCPUModelID(val string) attribute.KeyValue { - return HostCPUModelIDKey.String(val) -} - -// HostCPUModelName returns an attribute KeyValue conforming to the -// "host.cpu.model.name" semantic conventions. It represents the model -// designation of the processor. -func HostCPUModelName(val string) attribute.KeyValue { - return HostCPUModelNameKey.String(val) -} - -// HostCPUStepping returns an attribute KeyValue conforming to the -// "host.cpu.stepping" semantic conventions. It represents the stepping or core -// revisions. -func HostCPUStepping(val string) attribute.KeyValue { - return HostCPUSteppingKey.String(val) -} - -// HostCPUVendorID returns an attribute KeyValue conforming to the -// "host.cpu.vendor.id" semantic conventions. It represents the processor -// manufacturer identifier. A maximum 12-character string. -func HostCPUVendorID(val string) attribute.KeyValue { - return HostCPUVendorIDKey.String(val) -} - -// HostID returns an attribute KeyValue conforming to the "host.id" semantic -// conventions. It represents the unique host ID. For Cloud, this must be the -// instance_id assigned by the cloud provider. For non-containerized systems, -// this should be the `machine-id`. See the table below for the sources to use to -// determine the `machine-id` based on operating system. -func HostID(val string) attribute.KeyValue { - return HostIDKey.String(val) -} - -// HostImageID returns an attribute KeyValue conforming to the "host.image.id" -// semantic conventions. It represents the VM image ID or host OS image ID. For -// Cloud, this value is from the provider. -func HostImageID(val string) attribute.KeyValue { - return HostImageIDKey.String(val) -} - -// HostImageName returns an attribute KeyValue conforming to the -// "host.image.name" semantic conventions. It represents the name of the VM image -// or OS install the host was instantiated from. -func HostImageName(val string) attribute.KeyValue { - return HostImageNameKey.String(val) -} - -// HostImageVersion returns an attribute KeyValue conforming to the -// "host.image.version" semantic conventions. It represents the version string of -// the VM image or host OS as defined in [Version Attributes]. -// -// [Version Attributes]: /docs/resource/README.md#version-attributes -func HostImageVersion(val string) attribute.KeyValue { - return HostImageVersionKey.String(val) -} - -// HostIP returns an attribute KeyValue conforming to the "host.ip" semantic -// conventions. It represents the available IP addresses of the host, excluding -// loopback interfaces. -func HostIP(val ...string) attribute.KeyValue { - return HostIPKey.StringSlice(val) -} - -// HostMac returns an attribute KeyValue conforming to the "host.mac" semantic -// conventions. It represents the available MAC addresses of the host, excluding -// loopback interfaces. -func HostMac(val ...string) attribute.KeyValue { - return HostMacKey.StringSlice(val) -} - -// HostName returns an attribute KeyValue conforming to the "host.name" semantic -// conventions. It represents the name of the host. On Unix systems, it may -// contain what the hostname command returns, or the fully qualified hostname, or -// another name specified by the user. -func HostName(val string) attribute.KeyValue { - return HostNameKey.String(val) -} - -// HostType returns an attribute KeyValue conforming to the "host.type" semantic -// conventions. It represents the type of host. For Cloud, this must be the -// machine type. -func HostType(val string) attribute.KeyValue { - return HostTypeKey.String(val) -} - -// Enum values for host.arch -var ( - // AMD64 - // Stability: development - HostArchAMD64 = HostArchKey.String("amd64") - // ARM32 - // Stability: development - HostArchARM32 = HostArchKey.String("arm32") - // ARM64 - // Stability: development - HostArchARM64 = HostArchKey.String("arm64") - // Itanium - // Stability: development - HostArchIA64 = HostArchKey.String("ia64") - // 32-bit PowerPC - // Stability: development - HostArchPPC32 = HostArchKey.String("ppc32") - // 64-bit PowerPC - // Stability: development - HostArchPPC64 = HostArchKey.String("ppc64") - // IBM z/Architecture - // Stability: development - HostArchS390x = HostArchKey.String("s390x") - // 32-bit x86 - // Stability: development - HostArchX86 = HostArchKey.String("x86") -) - -// Namespace: http -const ( - // HTTPConnectionStateKey is the attribute Key conforming to the - // "http.connection.state" semantic conventions. It represents the state of the - // HTTP connection in the HTTP connection pool. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "active", "idle" - HTTPConnectionStateKey = attribute.Key("http.connection.state") - - // HTTPRequestBodySizeKey is the attribute Key conforming to the - // "http.request.body.size" semantic conventions. It represents the size of the - // request payload body in bytes. This is the number of bytes transferred - // excluding headers and is often, but not always, present as the - // [Content-Length] header. For requests using transport encoding, this should - // be the compressed size. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // [Content-Length]: https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length - HTTPRequestBodySizeKey = attribute.Key("http.request.body.size") - - // HTTPRequestMethodKey is the attribute Key conforming to the - // "http.request.method" semantic conventions. It represents the HTTP request - // method. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "GET", "POST", "HEAD" - // Note: HTTP request method value SHOULD be "known" to the instrumentation. - // By default, this convention defines "known" methods as the ones listed in - // [RFC9110], - // the PATCH method defined in [RFC5789] - // and the QUERY method defined in [httpbis-safe-method-w-body]. - // - // If the HTTP request method is not known to instrumentation, it MUST set the - // `http.request.method` attribute to `_OTHER`. - // - // If the HTTP instrumentation could end up converting valid HTTP request - // methods to `_OTHER`, then it MUST provide a way to override - // the list of known HTTP methods. If this override is done via environment - // variable, then the environment variable MUST be named - // OTEL_INSTRUMENTATION_HTTP_KNOWN_METHODS and support a comma-separated list of - // case-sensitive known HTTP methods. - // - // - // If this override is done via declarative configuration, then the list MUST be - // configurable via the `known_methods` property - // (an array of case-sensitive strings with minimum items 0) under - // `.instrumentation/development.general.http.client` and/or - // `.instrumentation/development.general.http.server`. - // - // In either case, this list MUST be a full override of the default known - // methods, - // it is not a list of known methods in addition to the defaults. - // - // HTTP method names are case-sensitive and `http.request.method` attribute - // value MUST match a known HTTP method name exactly. - // Instrumentations for specific web frameworks that consider HTTP methods to be - // case insensitive, SHOULD populate a canonical equivalent. - // Tracing instrumentations that do so, MUST also set - // `http.request.method_original` to the original value. - // - // [RFC9110]: https://www.rfc-editor.org/rfc/rfc9110.html#name-methods - // [RFC5789]: https://www.rfc-editor.org/rfc/rfc5789.html - // [httpbis-safe-method-w-body]: https://datatracker.ietf.org/doc/draft-ietf-httpbis-safe-method-w-body/?include_text=1 - HTTPRequestMethodKey = attribute.Key("http.request.method") - - // HTTPRequestMethodOriginalKey is the attribute Key conforming to the - // "http.request.method_original" semantic conventions. It represents the - // original HTTP method sent by the client in the request line. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "GeT", "ACL", "foo" - HTTPRequestMethodOriginalKey = attribute.Key("http.request.method_original") - - // HTTPRequestResendCountKey is the attribute Key conforming to the - // "http.request.resend_count" semantic conventions. It represents the ordinal - // number of request resending attempt (for any reason, including redirects). - // - // Type: int - // RequirementLevel: Recommended - // Stability: Stable - // - // Note: The resend count SHOULD be updated each time an HTTP request gets - // resent by the client, regardless of what was the cause of the resending (e.g. - // redirection, authorization failure, 503 Server Unavailable, network issues, - // or any other). - HTTPRequestResendCountKey = attribute.Key("http.request.resend_count") - - // HTTPRequestSizeKey is the attribute Key conforming to the "http.request.size" - // semantic conventions. It represents the total size of the request in bytes. - // This should be the total number of bytes sent over the wire, including the - // request line (HTTP/1.1), framing (HTTP/2 and HTTP/3), headers, and request - // body if any. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - HTTPRequestSizeKey = attribute.Key("http.request.size") - - // HTTPResponseBodySizeKey is the attribute Key conforming to the - // "http.response.body.size" semantic conventions. It represents the size of the - // response payload body in bytes. This is the number of bytes transferred - // excluding headers and is often, but not always, present as the - // [Content-Length] header. For requests using transport encoding, this should - // be the compressed size. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // [Content-Length]: https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length - HTTPResponseBodySizeKey = attribute.Key("http.response.body.size") - - // HTTPResponseSizeKey is the attribute Key conforming to the - // "http.response.size" semantic conventions. It represents the total size of - // the response in bytes. This should be the total number of bytes sent over the - // wire, including the status line (HTTP/1.1), framing (HTTP/2 and HTTP/3), - // headers, and response body and trailers if any. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - HTTPResponseSizeKey = attribute.Key("http.response.size") - - // HTTPResponseStatusCodeKey is the attribute Key conforming to the - // "http.response.status_code" semantic conventions. It represents the - // [HTTP response status code]. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: 200 - // - // [HTTP response status code]: https://tools.ietf.org/html/rfc7231#section-6 - HTTPResponseStatusCodeKey = attribute.Key("http.response.status_code") - - // HTTPRouteKey is the attribute Key conforming to the "http.route" semantic - // conventions. It represents the matched route template for the request. This - // MUST be low-cardinality and include all static path segments, with dynamic - // path segments represented with placeholders. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "/users/:userID?", "my-controller/my-action/{id?}" - // Note: MUST NOT be populated when this is not supported by the HTTP server - // framework as the route attribute should have low-cardinality and the URI path - // can NOT substitute it. - // SHOULD include the [application root] if there is one. - // - // A static path segment is a part of the route template with a fixed, - // low-cardinality value. This includes literal strings like `/users/` and - // placeholders that - // are constrained to a finite, predefined set of values, e.g. `{controller}` or - // `{action}`. - // - // A dynamic path segment is a placeholder for a value that can have high - // cardinality and is not constrained to a predefined list like static path - // segments. - // - // Instrumentations SHOULD use routing information provided by the corresponding - // web framework. They SHOULD pick the most precise source of routing - // information and MAY - // support custom route formatting. Instrumentations SHOULD document the format - // and the API used to obtain the route string. - // - // [application root]: /docs/http/http-spans.md#http-server-definitions - HTTPRouteKey = attribute.Key("http.route") -) - -// HTTPRequestBodySize returns an attribute KeyValue conforming to the -// "http.request.body.size" semantic conventions. It represents the size of the -// request payload body in bytes. This is the number of bytes transferred -// excluding headers and is often, but not always, present as the -// [Content-Length] header. For requests using transport encoding, this should be -// the compressed size. -// -// [Content-Length]: https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length -func HTTPRequestBodySize(val int) attribute.KeyValue { - return HTTPRequestBodySizeKey.Int(val) -} - -// HTTPRequestHeader returns an attribute KeyValue conforming to the -// "http.request.header" semantic conventions. It represents the HTTP request -// headers, `` being the normalized HTTP Header name (lowercase), the value -// being the header values. -func HTTPRequestHeader(key string, val ...string) attribute.KeyValue { - return attribute.StringSlice("http.request.header."+key, val) -} - -// HTTPRequestMethodOriginal returns an attribute KeyValue conforming to the -// "http.request.method_original" semantic conventions. It represents the -// original HTTP method sent by the client in the request line. -func HTTPRequestMethodOriginal(val string) attribute.KeyValue { - return HTTPRequestMethodOriginalKey.String(val) -} - -// HTTPRequestResendCount returns an attribute KeyValue conforming to the -// "http.request.resend_count" semantic conventions. It represents the ordinal -// number of request resending attempt (for any reason, including redirects). -func HTTPRequestResendCount(val int) attribute.KeyValue { - return HTTPRequestResendCountKey.Int(val) -} - -// HTTPRequestSize returns an attribute KeyValue conforming to the -// "http.request.size" semantic conventions. It represents the total size of the -// request in bytes. This should be the total number of bytes sent over the wire, -// including the request line (HTTP/1.1), framing (HTTP/2 and HTTP/3), headers, -// and request body if any. -func HTTPRequestSize(val int) attribute.KeyValue { - return HTTPRequestSizeKey.Int(val) -} - -// HTTPResponseBodySize returns an attribute KeyValue conforming to the -// "http.response.body.size" semantic conventions. It represents the size of the -// response payload body in bytes. This is the number of bytes transferred -// excluding headers and is often, but not always, present as the -// [Content-Length] header. For requests using transport encoding, this should be -// the compressed size. -// -// [Content-Length]: https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length -func HTTPResponseBodySize(val int) attribute.KeyValue { - return HTTPResponseBodySizeKey.Int(val) -} - -// HTTPResponseHeader returns an attribute KeyValue conforming to the -// "http.response.header" semantic conventions. It represents the HTTP response -// headers, `` being the normalized HTTP Header name (lowercase), the value -// being the header values. -func HTTPResponseHeader(key string, val ...string) attribute.KeyValue { - return attribute.StringSlice("http.response.header."+key, val) -} - -// HTTPResponseSize returns an attribute KeyValue conforming to the -// "http.response.size" semantic conventions. It represents the total size of the -// response in bytes. This should be the total number of bytes sent over the -// wire, including the status line (HTTP/1.1), framing (HTTP/2 and HTTP/3), -// headers, and response body and trailers if any. -func HTTPResponseSize(val int) attribute.KeyValue { - return HTTPResponseSizeKey.Int(val) -} - -// HTTPResponseStatusCode returns an attribute KeyValue conforming to the -// "http.response.status_code" semantic conventions. It represents the -// [HTTP response status code]. -// -// [HTTP response status code]: https://tools.ietf.org/html/rfc7231#section-6 -func HTTPResponseStatusCode(val int) attribute.KeyValue { - return HTTPResponseStatusCodeKey.Int(val) -} - -// HTTPRoute returns an attribute KeyValue conforming to the "http.route" -// semantic conventions. It represents the matched route template for the -// request. This MUST be low-cardinality and include all static path segments, -// with dynamic path segments represented with placeholders. -func HTTPRoute(val string) attribute.KeyValue { - return HTTPRouteKey.String(val) -} - -// Enum values for http.connection.state -var ( - // active state. - // Stability: development - HTTPConnectionStateActive = HTTPConnectionStateKey.String("active") - // idle state. - // Stability: development - HTTPConnectionStateIdle = HTTPConnectionStateKey.String("idle") -) - -// Enum values for http.request.method -var ( - // CONNECT method. - // Stability: stable - HTTPRequestMethodConnect = HTTPRequestMethodKey.String("CONNECT") - // DELETE method. - // Stability: stable - HTTPRequestMethodDelete = HTTPRequestMethodKey.String("DELETE") - // GET method. - // Stability: stable - HTTPRequestMethodGet = HTTPRequestMethodKey.String("GET") - // HEAD method. - // Stability: stable - HTTPRequestMethodHead = HTTPRequestMethodKey.String("HEAD") - // OPTIONS method. - // Stability: stable - HTTPRequestMethodOptions = HTTPRequestMethodKey.String("OPTIONS") - // PATCH method. - // Stability: stable - HTTPRequestMethodPatch = HTTPRequestMethodKey.String("PATCH") - // POST method. - // Stability: stable - HTTPRequestMethodPost = HTTPRequestMethodKey.String("POST") - // PUT method. - // Stability: stable - HTTPRequestMethodPut = HTTPRequestMethodKey.String("PUT") - // TRACE method. - // Stability: stable - HTTPRequestMethodTrace = HTTPRequestMethodKey.String("TRACE") - // QUERY method. - // Stability: development - HTTPRequestMethodQuery = HTTPRequestMethodKey.String("QUERY") - // Any HTTP method that the instrumentation has no prior knowledge of. - // Stability: stable - HTTPRequestMethodOther = HTTPRequestMethodKey.String("_OTHER") -) - -// Namespace: hw -const ( - // HwBatteryCapacityKey is the attribute Key conforming to the - // "hw.battery.capacity" semantic conventions. It represents the design capacity - // in Watts-hours or Amper-hours. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "9.3Ah", "50Wh" - HwBatteryCapacityKey = attribute.Key("hw.battery.capacity") - - // HwBatteryChemistryKey is the attribute Key conforming to the - // "hw.battery.chemistry" semantic conventions. It represents the battery - // [chemistry], e.g. Lithium-Ion, Nickel-Cadmium, etc. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Li-ion", "NiMH" - // - // [chemistry]: https://schemas.dmtf.org/wbem/cim-html/2.31.0/CIM_Battery.html - HwBatteryChemistryKey = attribute.Key("hw.battery.chemistry") - - // HwBatteryStateKey is the attribute Key conforming to the "hw.battery.state" - // semantic conventions. It represents the current state of the battery. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - HwBatteryStateKey = attribute.Key("hw.battery.state") - - // HwBiosVersionKey is the attribute Key conforming to the "hw.bios_version" - // semantic conventions. It represents the BIOS version of the hardware - // component. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "1.2.3" - HwBiosVersionKey = attribute.Key("hw.bios_version") - - // HwDriverVersionKey is the attribute Key conforming to the "hw.driver_version" - // semantic conventions. It represents the driver version for the hardware - // component. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "10.2.1-3" - HwDriverVersionKey = attribute.Key("hw.driver_version") - - // HwEnclosureTypeKey is the attribute Key conforming to the "hw.enclosure.type" - // semantic conventions. It represents the type of the enclosure (useful for - // modular systems). - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Computer", "Storage", "Switch" - HwEnclosureTypeKey = attribute.Key("hw.enclosure.type") - - // HwFirmwareVersionKey is the attribute Key conforming to the - // "hw.firmware_version" semantic conventions. It represents the firmware - // version of the hardware component. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "2.0.1" - HwFirmwareVersionKey = attribute.Key("hw.firmware_version") - - // HwGpuTaskKey is the attribute Key conforming to the "hw.gpu.task" semantic - // conventions. It represents the type of task the GPU is performing. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - HwGpuTaskKey = attribute.Key("hw.gpu.task") - - // HwIDKey is the attribute Key conforming to the "hw.id" semantic conventions. - // It represents an identifier for the hardware component, unique within the - // monitored host. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "win32battery_battery_testsysa33_1" - HwIDKey = attribute.Key("hw.id") - - // HwLimitTypeKey is the attribute Key conforming to the "hw.limit_type" - // semantic conventions. It represents the type of limit for hardware - // components. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - HwLimitTypeKey = attribute.Key("hw.limit_type") - - // HwLogicalDiskRaidLevelKey is the attribute Key conforming to the - // "hw.logical_disk.raid_level" semantic conventions. It represents the RAID - // Level of the logical disk. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "RAID0+1", "RAID5", "RAID10" - HwLogicalDiskRaidLevelKey = attribute.Key("hw.logical_disk.raid_level") - - // HwLogicalDiskStateKey is the attribute Key conforming to the - // "hw.logical_disk.state" semantic conventions. It represents the state of the - // logical disk space usage. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - HwLogicalDiskStateKey = attribute.Key("hw.logical_disk.state") - - // HwMemoryTypeKey is the attribute Key conforming to the "hw.memory.type" - // semantic conventions. It represents the type of the memory module. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "DDR4", "DDR5", "LPDDR5" - HwMemoryTypeKey = attribute.Key("hw.memory.type") - - // HwModelKey is the attribute Key conforming to the "hw.model" semantic - // conventions. It represents the descriptive model name of the hardware - // component. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "PERC H740P", "Intel(R) Core(TM) i7-10700K", "Dell XPS 15 Battery" - HwModelKey = attribute.Key("hw.model") - - // HwNameKey is the attribute Key conforming to the "hw.name" semantic - // conventions. It represents an easily-recognizable name for the hardware - // component. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "eth0" - HwNameKey = attribute.Key("hw.name") - - // HwNetworkLogicalAddressesKey is the attribute Key conforming to the - // "hw.network.logical_addresses" semantic conventions. It represents the - // logical addresses of the adapter (e.g. IP address, or WWPN). - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "172.16.8.21", "57.11.193.42" - HwNetworkLogicalAddressesKey = attribute.Key("hw.network.logical_addresses") - - // HwNetworkPhysicalAddressKey is the attribute Key conforming to the - // "hw.network.physical_address" semantic conventions. It represents the - // physical address of the adapter (e.g. MAC address, or WWNN). - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "00-90-F5-E9-7B-36" - HwNetworkPhysicalAddressKey = attribute.Key("hw.network.physical_address") - - // HwParentKey is the attribute Key conforming to the "hw.parent" semantic - // conventions. It represents the unique identifier of the parent component - // (typically the `hw.id` attribute of the enclosure, or disk controller). - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "dellStorage_perc_0" - HwParentKey = attribute.Key("hw.parent") - - // HwPhysicalDiskSmartAttributeKey is the attribute Key conforming to the - // "hw.physical_disk.smart_attribute" semantic conventions. It represents the - // [S.M.A.R.T.] (Self-Monitoring, Analysis, and Reporting Technology) attribute - // of the physical disk. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Spin Retry Count", "Seek Error Rate", "Raw Read Error Rate" - // - // [S.M.A.R.T.]: https://wikipedia.org/wiki/S.M.A.R.T. - HwPhysicalDiskSmartAttributeKey = attribute.Key("hw.physical_disk.smart_attribute") - - // HwPhysicalDiskStateKey is the attribute Key conforming to the - // "hw.physical_disk.state" semantic conventions. It represents the state of the - // physical disk endurance utilization. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - HwPhysicalDiskStateKey = attribute.Key("hw.physical_disk.state") - - // HwPhysicalDiskTypeKey is the attribute Key conforming to the - // "hw.physical_disk.type" semantic conventions. It represents the type of the - // physical disk. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "HDD", "SSD", "10K" - HwPhysicalDiskTypeKey = attribute.Key("hw.physical_disk.type") - - // HwSensorLocationKey is the attribute Key conforming to the - // "hw.sensor_location" semantic conventions. It represents the location of the - // sensor. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "cpu0", "ps1", "INLET", "CPU0_DIE", "AMBIENT", "MOTHERBOARD", "PS0 - // V3_3", "MAIN_12V", "CPU_VCORE" - HwSensorLocationKey = attribute.Key("hw.sensor_location") - - // HwSerialNumberKey is the attribute Key conforming to the "hw.serial_number" - // semantic conventions. It represents the serial number of the hardware - // component. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "CNFCP0123456789" - HwSerialNumberKey = attribute.Key("hw.serial_number") - - // HwStateKey is the attribute Key conforming to the "hw.state" semantic - // conventions. It represents the current state of the component. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - HwStateKey = attribute.Key("hw.state") - - // HwTapeDriveOperationTypeKey is the attribute Key conforming to the - // "hw.tape_drive.operation_type" semantic conventions. It represents the type - // of tape drive operation. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - HwTapeDriveOperationTypeKey = attribute.Key("hw.tape_drive.operation_type") - - // HwTypeKey is the attribute Key conforming to the "hw.type" semantic - // conventions. It represents the type of the component. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // Note: Describes the category of the hardware component for which `hw.state` - // is being reported. For example, `hw.type=temperature` along with - // `hw.state=degraded` would indicate that the temperature of the hardware - // component has been reported as `degraded`. - HwTypeKey = attribute.Key("hw.type") - - // HwVendorKey is the attribute Key conforming to the "hw.vendor" semantic - // conventions. It represents the vendor name of the hardware component. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Dell", "HP", "Intel", "AMD", "LSI", "Lenovo" - HwVendorKey = attribute.Key("hw.vendor") -) - -// HwBatteryCapacity returns an attribute KeyValue conforming to the -// "hw.battery.capacity" semantic conventions. It represents the design capacity -// in Watts-hours or Amper-hours. -func HwBatteryCapacity(val string) attribute.KeyValue { - return HwBatteryCapacityKey.String(val) -} - -// HwBatteryChemistry returns an attribute KeyValue conforming to the -// "hw.battery.chemistry" semantic conventions. It represents the battery -// [chemistry], e.g. Lithium-Ion, Nickel-Cadmium, etc. -// -// [chemistry]: https://schemas.dmtf.org/wbem/cim-html/2.31.0/CIM_Battery.html -func HwBatteryChemistry(val string) attribute.KeyValue { - return HwBatteryChemistryKey.String(val) -} - -// HwBiosVersion returns an attribute KeyValue conforming to the -// "hw.bios_version" semantic conventions. It represents the BIOS version of the -// hardware component. -func HwBiosVersion(val string) attribute.KeyValue { - return HwBiosVersionKey.String(val) -} - -// HwDriverVersion returns an attribute KeyValue conforming to the -// "hw.driver_version" semantic conventions. It represents the driver version for -// the hardware component. -func HwDriverVersion(val string) attribute.KeyValue { - return HwDriverVersionKey.String(val) -} - -// HwEnclosureType returns an attribute KeyValue conforming to the -// "hw.enclosure.type" semantic conventions. It represents the type of the -// enclosure (useful for modular systems). -func HwEnclosureType(val string) attribute.KeyValue { - return HwEnclosureTypeKey.String(val) -} - -// HwFirmwareVersion returns an attribute KeyValue conforming to the -// "hw.firmware_version" semantic conventions. It represents the firmware version -// of the hardware component. -func HwFirmwareVersion(val string) attribute.KeyValue { - return HwFirmwareVersionKey.String(val) -} - -// HwID returns an attribute KeyValue conforming to the "hw.id" semantic -// conventions. It represents an identifier for the hardware component, unique -// within the monitored host. -func HwID(val string) attribute.KeyValue { - return HwIDKey.String(val) -} - -// HwLogicalDiskRaidLevel returns an attribute KeyValue conforming to the -// "hw.logical_disk.raid_level" semantic conventions. It represents the RAID -// Level of the logical disk. -func HwLogicalDiskRaidLevel(val string) attribute.KeyValue { - return HwLogicalDiskRaidLevelKey.String(val) -} - -// HwMemoryType returns an attribute KeyValue conforming to the "hw.memory.type" -// semantic conventions. It represents the type of the memory module. -func HwMemoryType(val string) attribute.KeyValue { - return HwMemoryTypeKey.String(val) -} - -// HwModel returns an attribute KeyValue conforming to the "hw.model" semantic -// conventions. It represents the descriptive model name of the hardware -// component. -func HwModel(val string) attribute.KeyValue { - return HwModelKey.String(val) -} - -// HwName returns an attribute KeyValue conforming to the "hw.name" semantic -// conventions. It represents an easily-recognizable name for the hardware -// component. -func HwName(val string) attribute.KeyValue { - return HwNameKey.String(val) -} - -// HwNetworkLogicalAddresses returns an attribute KeyValue conforming to the -// "hw.network.logical_addresses" semantic conventions. It represents the logical -// addresses of the adapter (e.g. IP address, or WWPN). -func HwNetworkLogicalAddresses(val ...string) attribute.KeyValue { - return HwNetworkLogicalAddressesKey.StringSlice(val) -} - -// HwNetworkPhysicalAddress returns an attribute KeyValue conforming to the -// "hw.network.physical_address" semantic conventions. It represents the physical -// address of the adapter (e.g. MAC address, or WWNN). -func HwNetworkPhysicalAddress(val string) attribute.KeyValue { - return HwNetworkPhysicalAddressKey.String(val) -} - -// HwParent returns an attribute KeyValue conforming to the "hw.parent" semantic -// conventions. It represents the unique identifier of the parent component -// (typically the `hw.id` attribute of the enclosure, or disk controller). -func HwParent(val string) attribute.KeyValue { - return HwParentKey.String(val) -} - -// HwPhysicalDiskSmartAttribute returns an attribute KeyValue conforming to the -// "hw.physical_disk.smart_attribute" semantic conventions. It represents the -// [S.M.A.R.T.] (Self-Monitoring, Analysis, and Reporting Technology) attribute -// of the physical disk. -// -// [S.M.A.R.T.]: https://wikipedia.org/wiki/S.M.A.R.T. -func HwPhysicalDiskSmartAttribute(val string) attribute.KeyValue { - return HwPhysicalDiskSmartAttributeKey.String(val) -} - -// HwPhysicalDiskType returns an attribute KeyValue conforming to the -// "hw.physical_disk.type" semantic conventions. It represents the type of the -// physical disk. -func HwPhysicalDiskType(val string) attribute.KeyValue { - return HwPhysicalDiskTypeKey.String(val) -} - -// HwSensorLocation returns an attribute KeyValue conforming to the -// "hw.sensor_location" semantic conventions. It represents the location of the -// sensor. -func HwSensorLocation(val string) attribute.KeyValue { - return HwSensorLocationKey.String(val) -} - -// HwSerialNumber returns an attribute KeyValue conforming to the -// "hw.serial_number" semantic conventions. It represents the serial number of -// the hardware component. -func HwSerialNumber(val string) attribute.KeyValue { - return HwSerialNumberKey.String(val) -} - -// HwVendor returns an attribute KeyValue conforming to the "hw.vendor" semantic -// conventions. It represents the vendor name of the hardware component. -func HwVendor(val string) attribute.KeyValue { - return HwVendorKey.String(val) -} - -// Enum values for hw.battery.state -var ( - // Charging - // Stability: development - HwBatteryStateCharging = HwBatteryStateKey.String("charging") - // Discharging - // Stability: development - HwBatteryStateDischarging = HwBatteryStateKey.String("discharging") -) - -// Enum values for hw.gpu.task -var ( - // Decoder - // Stability: development - HwGpuTaskDecoder = HwGpuTaskKey.String("decoder") - // Encoder - // Stability: development - HwGpuTaskEncoder = HwGpuTaskKey.String("encoder") - // General - // Stability: development - HwGpuTaskGeneral = HwGpuTaskKey.String("general") -) - -// Enum values for hw.limit_type -var ( - // Critical - // Stability: development - HwLimitTypeCritical = HwLimitTypeKey.String("critical") - // Degraded - // Stability: development - HwLimitTypeDegraded = HwLimitTypeKey.String("degraded") - // High Critical - // Stability: development - HwLimitTypeHighCritical = HwLimitTypeKey.String("high.critical") - // High Degraded - // Stability: development - HwLimitTypeHighDegraded = HwLimitTypeKey.String("high.degraded") - // Low Critical - // Stability: development - HwLimitTypeLowCritical = HwLimitTypeKey.String("low.critical") - // Low Degraded - // Stability: development - HwLimitTypeLowDegraded = HwLimitTypeKey.String("low.degraded") - // Maximum - // Stability: development - HwLimitTypeMax = HwLimitTypeKey.String("max") - // Throttled - // Stability: development - HwLimitTypeThrottled = HwLimitTypeKey.String("throttled") - // Turbo - // Stability: development - HwLimitTypeTurbo = HwLimitTypeKey.String("turbo") -) - -// Enum values for hw.logical_disk.state -var ( - // Used - // Stability: development - HwLogicalDiskStateUsed = HwLogicalDiskStateKey.String("used") - // Free - // Stability: development - HwLogicalDiskStateFree = HwLogicalDiskStateKey.String("free") -) - -// Enum values for hw.physical_disk.state -var ( - // Remaining - // Stability: development - HwPhysicalDiskStateRemaining = HwPhysicalDiskStateKey.String("remaining") -) - -// Enum values for hw.state -var ( - // Degraded - // Stability: development - HwStateDegraded = HwStateKey.String("degraded") - // Failed - // Stability: development - HwStateFailed = HwStateKey.String("failed") - // Needs Cleaning - // Stability: development - HwStateNeedsCleaning = HwStateKey.String("needs_cleaning") - // OK - // Stability: development - HwStateOk = HwStateKey.String("ok") - // Predicted Failure - // Stability: development - HwStatePredictedFailure = HwStateKey.String("predicted_failure") -) - -// Enum values for hw.tape_drive.operation_type -var ( - // Mount - // Stability: development - HwTapeDriveOperationTypeMount = HwTapeDriveOperationTypeKey.String("mount") - // Unmount - // Stability: development - HwTapeDriveOperationTypeUnmount = HwTapeDriveOperationTypeKey.String("unmount") - // Clean - // Stability: development - HwTapeDriveOperationTypeClean = HwTapeDriveOperationTypeKey.String("clean") -) - -// Enum values for hw.type -var ( - // Battery - // Stability: development - HwTypeBattery = HwTypeKey.String("battery") - // CPU - // Stability: development - HwTypeCPU = HwTypeKey.String("cpu") - // Disk controller - // Stability: development - HwTypeDiskController = HwTypeKey.String("disk_controller") - // Enclosure - // Stability: development - HwTypeEnclosure = HwTypeKey.String("enclosure") - // Fan - // Stability: development - HwTypeFan = HwTypeKey.String("fan") - // GPU - // Stability: development - HwTypeGpu = HwTypeKey.String("gpu") - // Logical disk - // Stability: development - HwTypeLogicalDisk = HwTypeKey.String("logical_disk") - // Memory - // Stability: development - HwTypeMemory = HwTypeKey.String("memory") - // Network - // Stability: development - HwTypeNetwork = HwTypeKey.String("network") - // Physical disk - // Stability: development - HwTypePhysicalDisk = HwTypeKey.String("physical_disk") - // Power supply - // Stability: development - HwTypePowerSupply = HwTypeKey.String("power_supply") - // Tape drive - // Stability: development - HwTypeTapeDrive = HwTypeKey.String("tape_drive") - // Temperature - // Stability: development - HwTypeTemperature = HwTypeKey.String("temperature") - // Voltage - // Stability: development - HwTypeVoltage = HwTypeKey.String("voltage") -) - -// Namespace: ios -const ( - // IOSAppStateKey is the attribute Key conforming to the "ios.app.state" - // semantic conventions. It represents the this attribute represents the state - // of the application. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // Note: The iOS lifecycle states are defined in the - // [UIApplicationDelegate documentation], and from which the `OS terminology` - // column values are derived. - // - // [UIApplicationDelegate documentation]: https://developer.apple.com/documentation/uikit/uiapplicationdelegate - IOSAppStateKey = attribute.Key("ios.app.state") -) - -// Enum values for ios.app.state -var ( - // The app has become `active`. Associated with UIKit notification - // `applicationDidBecomeActive`. - // - // Stability: development - IOSAppStateActive = IOSAppStateKey.String("active") - // The app is now `inactive`. Associated with UIKit notification - // `applicationWillResignActive`. - // - // Stability: development - IOSAppStateInactive = IOSAppStateKey.String("inactive") - // The app is now in the background. This value is associated with UIKit - // notification `applicationDidEnterBackground`. - // - // Stability: development - IOSAppStateBackground = IOSAppStateKey.String("background") - // The app is now in the foreground. This value is associated with UIKit - // notification `applicationWillEnterForeground`. - // - // Stability: development - IOSAppStateForeground = IOSAppStateKey.String("foreground") - // The app is about to terminate. Associated with UIKit notification - // `applicationWillTerminate`. - // - // Stability: development - IOSAppStateTerminate = IOSAppStateKey.String("terminate") -) - -// Namespace: jsonrpc -const ( - // JSONRPCProtocolVersionKey is the attribute Key conforming to the - // "jsonrpc.protocol.version" semantic conventions. It represents the protocol - // version, as specified in the `jsonrpc` property of the request and its - // corresponding response. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "2.0", "1.0" - JSONRPCProtocolVersionKey = attribute.Key("jsonrpc.protocol.version") - - // JSONRPCRequestIDKey is the attribute Key conforming to the - // "jsonrpc.request.id" semantic conventions. It represents a string - // representation of the `id` property of the request and its corresponding - // response. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "10", "request-7" - // Note: Under the [JSON-RPC specification], the `id` property may be a string, - // number, null, or omitted entirely. When omitted, the request is treated as a - // notification. Using `null` is not equivalent to omitting the `id`, but it is - // discouraged. - // Instrumentations SHOULD NOT capture this attribute when the `id` is `null` or - // omitted. - // - // [JSON-RPC specification]: https://www.jsonrpc.org/specification - JSONRPCRequestIDKey = attribute.Key("jsonrpc.request.id") -) - -// JSONRPCProtocolVersion returns an attribute KeyValue conforming to the -// "jsonrpc.protocol.version" semantic conventions. It represents the protocol -// version, as specified in the `jsonrpc` property of the request and its -// corresponding response. -func JSONRPCProtocolVersion(val string) attribute.KeyValue { - return JSONRPCProtocolVersionKey.String(val) -} - -// JSONRPCRequestID returns an attribute KeyValue conforming to the -// "jsonrpc.request.id" semantic conventions. It represents a string -// representation of the `id` property of the request and its corresponding -// response. -func JSONRPCRequestID(val string) attribute.KeyValue { - return JSONRPCRequestIDKey.String(val) -} - -// Namespace: k8s -const ( - // K8SClusterNameKey is the attribute Key conforming to the "k8s.cluster.name" - // semantic conventions. It represents the name of the cluster. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Beta - // - // Examples: "opentelemetry-cluster" - K8SClusterNameKey = attribute.Key("k8s.cluster.name") - - // K8SClusterUIDKey is the attribute Key conforming to the "k8s.cluster.uid" - // semantic conventions. It represents a pseudo-ID for the cluster, set to the - // UID of the `kube-system` namespace. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Beta - // - // Examples: "218fc5a9-a5f1-4b54-aa05-46717d0ab26d" - // Note: K8s doesn't have support for obtaining a cluster ID. If this is ever - // added, we will recommend collecting the `k8s.cluster.uid` through the - // official APIs. In the meantime, we are able to use the `uid` of the - // `kube-system` namespace as a proxy for cluster ID. Read on for the - // rationale. - // - // Every object created in a K8s cluster is assigned a distinct UID. The - // `kube-system` namespace is used by Kubernetes itself and will exist - // for the lifetime of the cluster. Using the `uid` of the `kube-system` - // namespace is a reasonable proxy for the K8s ClusterID as it will only - // change if the cluster is rebuilt. Furthermore, Kubernetes UIDs are - // UUIDs as standardized by - // [ISO/IEC 9834-8 and ITU-T X.667]. - // Which states: - // - // > If generated according to one of the mechanisms defined in Rec. - // > ITU-T X.667 | ISO/IEC 9834-8, a UUID is either guaranteed to be - // > different from all other UUIDs generated before 3603 A.D., or is - // > extremely likely to be different (depending on the mechanism chosen). - // - // Therefore, UIDs between clusters should be extremely unlikely to - // conflict. - // - // [ISO/IEC 9834-8 and ITU-T X.667]: https://www.itu.int/ITU-T/studygroups/com17/oid.html - K8SClusterUIDKey = attribute.Key("k8s.cluster.uid") - - // K8SContainerNameKey is the attribute Key conforming to the - // "k8s.container.name" semantic conventions. It represents the name of the - // Container from Pod specification, must be unique within a Pod. Container - // runtime usually uses different globally unique name (`container.name`). - // - // Type: string - // RequirementLevel: Recommended - // Stability: Beta - // - // Examples: "redis" - K8SContainerNameKey = attribute.Key("k8s.container.name") - - // K8SContainerRestartCountKey is the attribute Key conforming to the - // "k8s.container.restart_count" semantic conventions. It represents the number - // of times the container was restarted. This attribute can be used to identify - // a particular container (running or stopped) within a container spec. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Beta - // - // Examples: - K8SContainerRestartCountKey = attribute.Key("k8s.container.restart_count") - - // K8SContainerStatusLastTerminatedReasonKey is the attribute Key conforming to - // the "k8s.container.status.last_terminated_reason" semantic conventions. It - // represents the last terminated reason of the Container. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Evicted", "Error" - K8SContainerStatusLastTerminatedReasonKey = attribute.Key("k8s.container.status.last_terminated_reason") - - // K8SContainerStatusReasonKey is the attribute Key conforming to the - // "k8s.container.status.reason" semantic conventions. It represents the reason - // for the container state. Corresponds to the `reason` field of the: - // [K8s ContainerStateWaiting] or [K8s ContainerStateTerminated]. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "ContainerCreating", "CrashLoopBackOff", - // "CreateContainerConfigError", "ErrImagePull", "ImagePullBackOff", - // "OOMKilled", "Completed", "Error", "ContainerCannotRun" - // - // [K8s ContainerStateWaiting]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.30/#containerstatewaiting-v1-core - // [K8s ContainerStateTerminated]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.30/#containerstateterminated-v1-core - K8SContainerStatusReasonKey = attribute.Key("k8s.container.status.reason") - - // K8SContainerStatusStateKey is the attribute Key conforming to the - // "k8s.container.status.state" semantic conventions. It represents the state of - // the container. [K8s ContainerState]. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "terminated", "running", "waiting" - // - // [K8s ContainerState]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.30/#containerstate-v1-core - K8SContainerStatusStateKey = attribute.Key("k8s.container.status.state") - - // K8SCronJobNameKey is the attribute Key conforming to the "k8s.cronjob.name" - // semantic conventions. It represents the name of the CronJob. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Beta - // - // Examples: "opentelemetry" - K8SCronJobNameKey = attribute.Key("k8s.cronjob.name") - - // K8SCronJobUIDKey is the attribute Key conforming to the "k8s.cronjob.uid" - // semantic conventions. It represents the UID of the CronJob. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Beta - // - // Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff" - K8SCronJobUIDKey = attribute.Key("k8s.cronjob.uid") - - // K8SDaemonSetNameKey is the attribute Key conforming to the - // "k8s.daemonset.name" semantic conventions. It represents the name of the - // DaemonSet. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Beta - // - // Examples: "opentelemetry" - K8SDaemonSetNameKey = attribute.Key("k8s.daemonset.name") - - // K8SDaemonSetUIDKey is the attribute Key conforming to the "k8s.daemonset.uid" - // semantic conventions. It represents the UID of the DaemonSet. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Beta - // - // Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff" - K8SDaemonSetUIDKey = attribute.Key("k8s.daemonset.uid") - - // K8SDeploymentNameKey is the attribute Key conforming to the - // "k8s.deployment.name" semantic conventions. It represents the name of the - // Deployment. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Beta - // - // Examples: "opentelemetry" - K8SDeploymentNameKey = attribute.Key("k8s.deployment.name") - - // K8SDeploymentUIDKey is the attribute Key conforming to the - // "k8s.deployment.uid" semantic conventions. It represents the UID of the - // Deployment. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Beta - // - // Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff" - K8SDeploymentUIDKey = attribute.Key("k8s.deployment.uid") - - // K8SHPAMetricTypeKey is the attribute Key conforming to the - // "k8s.hpa.metric.type" semantic conventions. It represents the type of metric - // source for the horizontal pod autoscaler. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Resource", "ContainerResource" - // Note: This attribute reflects the `type` field of spec.metrics[] in the HPA. - K8SHPAMetricTypeKey = attribute.Key("k8s.hpa.metric.type") - - // K8SHPANameKey is the attribute Key conforming to the "k8s.hpa.name" semantic - // conventions. It represents the name of the horizontal pod autoscaler. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "opentelemetry" - K8SHPANameKey = attribute.Key("k8s.hpa.name") - - // K8SHPAScaletargetrefAPIVersionKey is the attribute Key conforming to the - // "k8s.hpa.scaletargetref.api_version" semantic conventions. It represents the - // API version of the target resource to scale for the HorizontalPodAutoscaler. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "apps/v1", "autoscaling/v2" - // Note: This maps to the `apiVersion` field in the `scaleTargetRef` of the HPA - // spec. - K8SHPAScaletargetrefAPIVersionKey = attribute.Key("k8s.hpa.scaletargetref.api_version") - - // K8SHPAScaletargetrefKindKey is the attribute Key conforming to the - // "k8s.hpa.scaletargetref.kind" semantic conventions. It represents the kind of - // the target resource to scale for the HorizontalPodAutoscaler. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Deployment", "StatefulSet" - // Note: This maps to the `kind` field in the `scaleTargetRef` of the HPA spec. - K8SHPAScaletargetrefKindKey = attribute.Key("k8s.hpa.scaletargetref.kind") - - // K8SHPAScaletargetrefNameKey is the attribute Key conforming to the - // "k8s.hpa.scaletargetref.name" semantic conventions. It represents the name of - // the target resource to scale for the HorizontalPodAutoscaler. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "my-deployment", "my-statefulset" - // Note: This maps to the `name` field in the `scaleTargetRef` of the HPA spec. - K8SHPAScaletargetrefNameKey = attribute.Key("k8s.hpa.scaletargetref.name") - - // K8SHPAUIDKey is the attribute Key conforming to the "k8s.hpa.uid" semantic - // conventions. It represents the UID of the horizontal pod autoscaler. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff" - K8SHPAUIDKey = attribute.Key("k8s.hpa.uid") - - // K8SHugepageSizeKey is the attribute Key conforming to the "k8s.hugepage.size" - // semantic conventions. It represents the size (identifier) of the K8s huge - // page. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "2Mi" - K8SHugepageSizeKey = attribute.Key("k8s.hugepage.size") - - // K8SJobNameKey is the attribute Key conforming to the "k8s.job.name" semantic - // conventions. It represents the name of the Job. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Beta - // - // Examples: "opentelemetry" - K8SJobNameKey = attribute.Key("k8s.job.name") - - // K8SJobUIDKey is the attribute Key conforming to the "k8s.job.uid" semantic - // conventions. It represents the UID of the Job. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Beta - // - // Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff" - K8SJobUIDKey = attribute.Key("k8s.job.uid") - - // K8SNamespaceNameKey is the attribute Key conforming to the - // "k8s.namespace.name" semantic conventions. It represents the name of the - // namespace that the pod is running in. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Beta - // - // Examples: "default" - K8SNamespaceNameKey = attribute.Key("k8s.namespace.name") - - // K8SNamespacePhaseKey is the attribute Key conforming to the - // "k8s.namespace.phase" semantic conventions. It represents the phase of the - // K8s namespace. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "active", "terminating" - // Note: This attribute aligns with the `phase` field of the - // [K8s NamespaceStatus] - // - // [K8s NamespaceStatus]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.30/#namespacestatus-v1-core - K8SNamespacePhaseKey = attribute.Key("k8s.namespace.phase") - - // K8SNodeConditionStatusKey is the attribute Key conforming to the - // "k8s.node.condition.status" semantic conventions. It represents the status of - // the condition, one of True, False, Unknown. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "true", "false", "unknown" - // Note: This attribute aligns with the `status` field of the - // [NodeCondition] - // - // [NodeCondition]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.30/#nodecondition-v1-core - K8SNodeConditionStatusKey = attribute.Key("k8s.node.condition.status") - - // K8SNodeConditionTypeKey is the attribute Key conforming to the - // "k8s.node.condition.type" semantic conventions. It represents the condition - // type of a K8s Node. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Ready", "DiskPressure" - // Note: K8s Node conditions as described - // by [K8s documentation]. - // - // This attribute aligns with the `type` field of the - // [NodeCondition] - // - // The set of possible values is not limited to those listed here. Managed - // Kubernetes environments, - // or custom controllers MAY introduce additional node condition types. - // When this occurs, the exact value as reported by the Kubernetes API SHOULD be - // used. - // - // [K8s documentation]: https://v1-32.docs.kubernetes.io/docs/reference/node/node-status/#condition - // [NodeCondition]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.30/#nodecondition-v1-core - K8SNodeConditionTypeKey = attribute.Key("k8s.node.condition.type") - - // K8SNodeNameKey is the attribute Key conforming to the "k8s.node.name" - // semantic conventions. It represents the name of the Node. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Beta - // - // Examples: "node-1" - K8SNodeNameKey = attribute.Key("k8s.node.name") - - // K8SNodeUIDKey is the attribute Key conforming to the "k8s.node.uid" semantic - // conventions. It represents the UID of the Node. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Beta - // - // Examples: "1eb3a0c6-0477-4080-a9cb-0cb7db65c6a2" - K8SNodeUIDKey = attribute.Key("k8s.node.uid") - - // K8SPodHostnameKey is the attribute Key conforming to the "k8s.pod.hostname" - // semantic conventions. It represents the specifies the hostname of the Pod. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Beta - // - // Examples: "collector-gateway" - // Note: The K8s Pod spec has an optional hostname field, which can be used to - // specify a hostname. - // Refer to [K8s docs] - // for more information about this field. - // - // This attribute aligns with the `hostname` field of the - // [K8s PodSpec]. - // - // [K8s docs]: https://kubernetes.io/docs/concepts/services-networking/dns-pod-service/#pod-hostname-and-subdomain-field - // [K8s PodSpec]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.34/#podspec-v1-core - K8SPodHostnameKey = attribute.Key("k8s.pod.hostname") - - // K8SPodIPKey is the attribute Key conforming to the "k8s.pod.ip" semantic - // conventions. It represents the IP address allocated to the Pod. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Beta - // - // Examples: "172.18.0.2" - // Note: This attribute aligns with the `podIP` field of the - // [K8s PodStatus]. - // - // [K8s PodStatus]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.34/#podstatus-v1-core - K8SPodIPKey = attribute.Key("k8s.pod.ip") - - // K8SPodNameKey is the attribute Key conforming to the "k8s.pod.name" semantic - // conventions. It represents the name of the Pod. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Beta - // - // Examples: "opentelemetry-pod-autoconf" - K8SPodNameKey = attribute.Key("k8s.pod.name") - - // K8SPodStartTimeKey is the attribute Key conforming to the - // "k8s.pod.start_time" semantic conventions. It represents the start timestamp - // of the Pod. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Beta - // - // Examples: "2025-12-04T08:41:03Z" - // Note: Date and time at which the object was acknowledged by the Kubelet. - // This is before the Kubelet pulled the container image(s) for the pod. - // - // This attribute aligns with the `startTime` field of the - // [K8s PodStatus], - // in ISO 8601 (RFC 3339 compatible) format. - // - // [K8s PodStatus]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.34/#podstatus-v1-core - K8SPodStartTimeKey = attribute.Key("k8s.pod.start_time") - - // K8SPodStatusPhaseKey is the attribute Key conforming to the - // "k8s.pod.status.phase" semantic conventions. It represents the phase for the - // pod. Corresponds to the `phase` field of the: [K8s PodStatus]. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Pending", "Running" - // - // [K8s PodStatus]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.33/#podstatus-v1-core - K8SPodStatusPhaseKey = attribute.Key("k8s.pod.status.phase") - - // K8SPodStatusReasonKey is the attribute Key conforming to the - // "k8s.pod.status.reason" semantic conventions. It represents the reason for - // the pod state. Corresponds to the `reason` field of the: [K8s PodStatus]. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Evicted", "NodeAffinity" - // - // [K8s PodStatus]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.33/#podstatus-v1-core - K8SPodStatusReasonKey = attribute.Key("k8s.pod.status.reason") - - // K8SPodUIDKey is the attribute Key conforming to the "k8s.pod.uid" semantic - // conventions. It represents the UID of the Pod. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Beta - // - // Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff" - K8SPodUIDKey = attribute.Key("k8s.pod.uid") - - // K8SReplicaSetNameKey is the attribute Key conforming to the - // "k8s.replicaset.name" semantic conventions. It represents the name of the - // ReplicaSet. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Beta - // - // Examples: "opentelemetry" - K8SReplicaSetNameKey = attribute.Key("k8s.replicaset.name") - - // K8SReplicaSetUIDKey is the attribute Key conforming to the - // "k8s.replicaset.uid" semantic conventions. It represents the UID of the - // ReplicaSet. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Beta - // - // Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff" - K8SReplicaSetUIDKey = attribute.Key("k8s.replicaset.uid") - - // K8SReplicationControllerNameKey is the attribute Key conforming to the - // "k8s.replicationcontroller.name" semantic conventions. It represents the name - // of the replication controller. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "opentelemetry" - K8SReplicationControllerNameKey = attribute.Key("k8s.replicationcontroller.name") - - // K8SReplicationControllerUIDKey is the attribute Key conforming to the - // "k8s.replicationcontroller.uid" semantic conventions. It represents the UID - // of the replication controller. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff" - K8SReplicationControllerUIDKey = attribute.Key("k8s.replicationcontroller.uid") - - // K8SResourceQuotaNameKey is the attribute Key conforming to the - // "k8s.resourcequota.name" semantic conventions. It represents the name of the - // resource quota. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "opentelemetry" - K8SResourceQuotaNameKey = attribute.Key("k8s.resourcequota.name") - - // K8SResourceQuotaResourceNameKey is the attribute Key conforming to the - // "k8s.resourcequota.resource_name" semantic conventions. It represents the - // name of the K8s resource a resource quota defines. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "count/replicationcontrollers" - // Note: The value for this attribute can be either the full - // `count/[.]` string (e.g., count/deployments.apps, - // count/pods), or, for certain core Kubernetes resources, just the resource - // name (e.g., pods, services, configmaps). Both forms are supported by - // Kubernetes for object count quotas. See - // [Kubernetes Resource Quotas documentation] for more details. - // - // [Kubernetes Resource Quotas documentation]: https://kubernetes.io/docs/concepts/policy/resource-quotas/#quota-on-object-count - K8SResourceQuotaResourceNameKey = attribute.Key("k8s.resourcequota.resource_name") - - // K8SResourceQuotaUIDKey is the attribute Key conforming to the - // "k8s.resourcequota.uid" semantic conventions. It represents the UID of the - // resource quota. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff" - K8SResourceQuotaUIDKey = attribute.Key("k8s.resourcequota.uid") - - // K8SServiceEndpointAddressTypeKey is the attribute Key conforming to the - // "k8s.service.endpoint.address_type" semantic conventions. It represents the - // address type of the service endpoint. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "IPv4", "IPv6" - // Note: The network address family or type of the endpoint. - // This attribute aligns with the `addressType` field of the - // [K8s EndpointSlice]. - // It is used to differentiate metrics when a Service is backed by multiple - // address types - // (e.g., in dual-stack clusters). - // - // [K8s EndpointSlice]: https://kubernetes.io/docs/reference/kubernetes-api/service-resources/endpoint-slice-v1/ - K8SServiceEndpointAddressTypeKey = attribute.Key("k8s.service.endpoint.address_type") - - // K8SServiceEndpointConditionKey is the attribute Key conforming to the - // "k8s.service.endpoint.condition" semantic conventions. It represents the - // condition of the service endpoint. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "ready", "serving", "terminating" - // Note: The current operational condition of the service endpoint. - // An endpoint can have multiple conditions set at once (e.g., both `serving` - // and `terminating` during rollout). - // This attribute aligns with the condition fields in the [K8s EndpointSlice]. - // - // [K8s EndpointSlice]: https://kubernetes.io/docs/reference/kubernetes-api/service-resources/endpoint-slice-v1/ - K8SServiceEndpointConditionKey = attribute.Key("k8s.service.endpoint.condition") - - // K8SServiceEndpointZoneKey is the attribute Key conforming to the - // "k8s.service.endpoint.zone" semantic conventions. It represents the zone of - // the service endpoint. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "us-east-1a", "us-west-2b", "zone-a", "" - // Note: The zone where the endpoint is located, typically corresponding to a - // failure domain. - // This attribute aligns with the `zone` field of endpoints in the - // [K8s EndpointSlice]. - // It enables zone-aware monitoring of service endpoint distribution and - // supports - // features like [Topology Aware Routing]. - // - // If the zone is not populated (e.g., nodes without the - // `topology.kubernetes.io/zone` label), - // the attribute value will be an empty string. - // - // [K8s EndpointSlice]: https://kubernetes.io/docs/reference/kubernetes-api/service-resources/endpoint-slice-v1/ - // [Topology Aware Routing]: https://kubernetes.io/docs/concepts/services-networking/topology-aware-routing/ - K8SServiceEndpointZoneKey = attribute.Key("k8s.service.endpoint.zone") - - // K8SServiceNameKey is the attribute Key conforming to the "k8s.service.name" - // semantic conventions. It represents the name of the Service. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "my-service" - K8SServiceNameKey = attribute.Key("k8s.service.name") - - // K8SServicePublishNotReadyAddressesKey is the attribute Key conforming to the - // "k8s.service.publish_not_ready_addresses" semantic conventions. It represents - // the whether the Service publishes not-ready endpoints. - // - // Type: boolean - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: true, false - // Note: Whether the Service is configured to publish endpoints before the pods - // are ready. - // This attribute is typically used to indicate that a Service (such as a - // headless - // Service for a StatefulSet) allows peer discovery before pods pass their - // readiness probes. - // It aligns with the `publishNotReadyAddresses` field of the - // [K8s ServiceSpec]. - // - // [K8s ServiceSpec]: https://kubernetes.io/docs/reference/kubernetes-api/service-resources/service-v1/#ServiceSpec - K8SServicePublishNotReadyAddressesKey = attribute.Key("k8s.service.publish_not_ready_addresses") - - // K8SServiceTrafficDistributionKey is the attribute Key conforming to the - // "k8s.service.traffic_distribution" semantic conventions. It represents the - // traffic distribution policy for the Service. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "PreferSameZone", "PreferSameNode" - // Note: Specifies how traffic is distributed to endpoints for this Service. - // This attribute aligns with the `trafficDistribution` field of the - // [K8s ServiceSpec]. - // Known values include `PreferSameZone` (prefer endpoints in the same zone as - // the client) and - // `PreferSameNode` (prefer endpoints on the same node, fallback to same zone, - // then cluster-wide). - // If this field is not set on the Service, the attribute SHOULD NOT be emitted. - // When not set, Kubernetes distributes traffic evenly across all endpoints - // cluster-wide. - // - // [K8s ServiceSpec]: https://kubernetes.io/docs/reference/networking/virtual-ips/#traffic-distribution - K8SServiceTrafficDistributionKey = attribute.Key("k8s.service.traffic_distribution") - - // K8SServiceTypeKey is the attribute Key conforming to the "k8s.service.type" - // semantic conventions. It represents the type of the Kubernetes Service. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "ClusterIP", "NodePort", "LoadBalancer" - // Note: This attribute aligns with the `type` field of the - // [K8s ServiceSpec]. - // - // [K8s ServiceSpec]: https://kubernetes.io/docs/reference/kubernetes-api/service-resources/service-v1/#ServiceSpec - K8SServiceTypeKey = attribute.Key("k8s.service.type") - - // K8SServiceUIDKey is the attribute Key conforming to the "k8s.service.uid" - // semantic conventions. It represents the UID of the Service. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff" - K8SServiceUIDKey = attribute.Key("k8s.service.uid") - - // K8SStatefulSetNameKey is the attribute Key conforming to the - // "k8s.statefulset.name" semantic conventions. It represents the name of the - // StatefulSet. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Beta - // - // Examples: "opentelemetry" - K8SStatefulSetNameKey = attribute.Key("k8s.statefulset.name") - - // K8SStatefulSetUIDKey is the attribute Key conforming to the - // "k8s.statefulset.uid" semantic conventions. It represents the UID of the - // StatefulSet. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Beta - // - // Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff" - K8SStatefulSetUIDKey = attribute.Key("k8s.statefulset.uid") - - // K8SStorageclassNameKey is the attribute Key conforming to the - // "k8s.storageclass.name" semantic conventions. It represents the name of K8s - // [StorageClass] object. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "gold.storageclass.storage.k8s.io" - // - // [StorageClass]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.30/#storageclass-v1-storage-k8s-io - K8SStorageclassNameKey = attribute.Key("k8s.storageclass.name") - - // K8SVolumeNameKey is the attribute Key conforming to the "k8s.volume.name" - // semantic conventions. It represents the name of the K8s volume. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "volume0" - K8SVolumeNameKey = attribute.Key("k8s.volume.name") - - // K8SVolumeTypeKey is the attribute Key conforming to the "k8s.volume.type" - // semantic conventions. It represents the type of the K8s volume. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "emptyDir", "persistentVolumeClaim" - K8SVolumeTypeKey = attribute.Key("k8s.volume.type") -) - -// K8SClusterName returns an attribute KeyValue conforming to the -// "k8s.cluster.name" semantic conventions. It represents the name of the -// cluster. -func K8SClusterName(val string) attribute.KeyValue { - return K8SClusterNameKey.String(val) -} - -// K8SClusterUID returns an attribute KeyValue conforming to the -// "k8s.cluster.uid" semantic conventions. It represents a pseudo-ID for the -// cluster, set to the UID of the `kube-system` namespace. -func K8SClusterUID(val string) attribute.KeyValue { - return K8SClusterUIDKey.String(val) -} - -// K8SContainerName returns an attribute KeyValue conforming to the -// "k8s.container.name" semantic conventions. It represents the name of the -// Container from Pod specification, must be unique within a Pod. Container -// runtime usually uses different globally unique name (`container.name`). -func K8SContainerName(val string) attribute.KeyValue { - return K8SContainerNameKey.String(val) -} - -// K8SContainerRestartCount returns an attribute KeyValue conforming to the -// "k8s.container.restart_count" semantic conventions. It represents the number -// of times the container was restarted. This attribute can be used to identify a -// particular container (running or stopped) within a container spec. -func K8SContainerRestartCount(val int) attribute.KeyValue { - return K8SContainerRestartCountKey.Int(val) -} - -// K8SContainerStatusLastTerminatedReason returns an attribute KeyValue -// conforming to the "k8s.container.status.last_terminated_reason" semantic -// conventions. It represents the last terminated reason of the Container. -func K8SContainerStatusLastTerminatedReason(val string) attribute.KeyValue { - return K8SContainerStatusLastTerminatedReasonKey.String(val) -} - -// K8SCronJobAnnotation returns an attribute KeyValue conforming to the -// "k8s.cronjob.annotation" semantic conventions. It represents the cronjob -// annotation placed on the CronJob, the `` being the annotation name, the -// value being the annotation value. -func K8SCronJobAnnotation(key string, val string) attribute.KeyValue { - return attribute.String("k8s.cronjob.annotation."+key, val) -} - -// K8SCronJobLabel returns an attribute KeyValue conforming to the -// "k8s.cronjob.label" semantic conventions. It represents the label placed on -// the CronJob, the `` being the label name, the value being the label -// value. -func K8SCronJobLabel(key string, val string) attribute.KeyValue { - return attribute.String("k8s.cronjob.label."+key, val) -} - -// K8SCronJobName returns an attribute KeyValue conforming to the -// "k8s.cronjob.name" semantic conventions. It represents the name of the -// CronJob. -func K8SCronJobName(val string) attribute.KeyValue { - return K8SCronJobNameKey.String(val) -} - -// K8SCronJobUID returns an attribute KeyValue conforming to the -// "k8s.cronjob.uid" semantic conventions. It represents the UID of the CronJob. -func K8SCronJobUID(val string) attribute.KeyValue { - return K8SCronJobUIDKey.String(val) -} - -// K8SDaemonSetAnnotation returns an attribute KeyValue conforming to the -// "k8s.daemonset.annotation" semantic conventions. It represents the annotation -// placed on the DaemonSet, the `` being the annotation name, the value -// being the annotation value, even if the value is empty. -func K8SDaemonSetAnnotation(key string, val string) attribute.KeyValue { - return attribute.String("k8s.daemonset.annotation."+key, val) -} - -// K8SDaemonSetLabel returns an attribute KeyValue conforming to the -// "k8s.daemonset.label" semantic conventions. It represents the label placed on -// the DaemonSet, the `` being the label name, the value being the label -// value, even if the value is empty. -func K8SDaemonSetLabel(key string, val string) attribute.KeyValue { - return attribute.String("k8s.daemonset.label."+key, val) -} - -// K8SDaemonSetName returns an attribute KeyValue conforming to the -// "k8s.daemonset.name" semantic conventions. It represents the name of the -// DaemonSet. -func K8SDaemonSetName(val string) attribute.KeyValue { - return K8SDaemonSetNameKey.String(val) -} - -// K8SDaemonSetUID returns an attribute KeyValue conforming to the -// "k8s.daemonset.uid" semantic conventions. It represents the UID of the -// DaemonSet. -func K8SDaemonSetUID(val string) attribute.KeyValue { - return K8SDaemonSetUIDKey.String(val) -} - -// K8SDeploymentAnnotation returns an attribute KeyValue conforming to the -// "k8s.deployment.annotation" semantic conventions. It represents the annotation -// placed on the Deployment, the `` being the annotation name, the value -// being the annotation value, even if the value is empty. -func K8SDeploymentAnnotation(key string, val string) attribute.KeyValue { - return attribute.String("k8s.deployment.annotation."+key, val) -} - -// K8SDeploymentLabel returns an attribute KeyValue conforming to the -// "k8s.deployment.label" semantic conventions. It represents the label placed on -// the Deployment, the `` being the label name, the value being the label -// value, even if the value is empty. -func K8SDeploymentLabel(key string, val string) attribute.KeyValue { - return attribute.String("k8s.deployment.label."+key, val) -} - -// K8SDeploymentName returns an attribute KeyValue conforming to the -// "k8s.deployment.name" semantic conventions. It represents the name of the -// Deployment. -func K8SDeploymentName(val string) attribute.KeyValue { - return K8SDeploymentNameKey.String(val) -} - -// K8SDeploymentUID returns an attribute KeyValue conforming to the -// "k8s.deployment.uid" semantic conventions. It represents the UID of the -// Deployment. -func K8SDeploymentUID(val string) attribute.KeyValue { - return K8SDeploymentUIDKey.String(val) -} - -// K8SHPAMetricType returns an attribute KeyValue conforming to the -// "k8s.hpa.metric.type" semantic conventions. It represents the type of metric -// source for the horizontal pod autoscaler. -func K8SHPAMetricType(val string) attribute.KeyValue { - return K8SHPAMetricTypeKey.String(val) -} - -// K8SHPAName returns an attribute KeyValue conforming to the "k8s.hpa.name" -// semantic conventions. It represents the name of the horizontal pod autoscaler. -func K8SHPAName(val string) attribute.KeyValue { - return K8SHPANameKey.String(val) -} - -// K8SHPAScaletargetrefAPIVersion returns an attribute KeyValue conforming to the -// "k8s.hpa.scaletargetref.api_version" semantic conventions. It represents the -// API version of the target resource to scale for the HorizontalPodAutoscaler. -func K8SHPAScaletargetrefAPIVersion(val string) attribute.KeyValue { - return K8SHPAScaletargetrefAPIVersionKey.String(val) -} - -// K8SHPAScaletargetrefKind returns an attribute KeyValue conforming to the -// "k8s.hpa.scaletargetref.kind" semantic conventions. It represents the kind of -// the target resource to scale for the HorizontalPodAutoscaler. -func K8SHPAScaletargetrefKind(val string) attribute.KeyValue { - return K8SHPAScaletargetrefKindKey.String(val) -} - -// K8SHPAScaletargetrefName returns an attribute KeyValue conforming to the -// "k8s.hpa.scaletargetref.name" semantic conventions. It represents the name of -// the target resource to scale for the HorizontalPodAutoscaler. -func K8SHPAScaletargetrefName(val string) attribute.KeyValue { - return K8SHPAScaletargetrefNameKey.String(val) -} - -// K8SHPAUID returns an attribute KeyValue conforming to the "k8s.hpa.uid" -// semantic conventions. It represents the UID of the horizontal pod autoscaler. -func K8SHPAUID(val string) attribute.KeyValue { - return K8SHPAUIDKey.String(val) -} - -// K8SHugepageSize returns an attribute KeyValue conforming to the -// "k8s.hugepage.size" semantic conventions. It represents the size (identifier) -// of the K8s huge page. -func K8SHugepageSize(val string) attribute.KeyValue { - return K8SHugepageSizeKey.String(val) -} - -// K8SJobAnnotation returns an attribute KeyValue conforming to the -// "k8s.job.annotation" semantic conventions. It represents the annotation placed -// on the Job, the `` being the annotation name, the value being the -// annotation value, even if the value is empty. -func K8SJobAnnotation(key string, val string) attribute.KeyValue { - return attribute.String("k8s.job.annotation."+key, val) -} - -// K8SJobLabel returns an attribute KeyValue conforming to the "k8s.job.label" -// semantic conventions. It represents the label placed on the Job, the `` -// being the label name, the value being the label value, even if the value is -// empty. -func K8SJobLabel(key string, val string) attribute.KeyValue { - return attribute.String("k8s.job.label."+key, val) -} - -// K8SJobName returns an attribute KeyValue conforming to the "k8s.job.name" -// semantic conventions. It represents the name of the Job. -func K8SJobName(val string) attribute.KeyValue { - return K8SJobNameKey.String(val) -} - -// K8SJobUID returns an attribute KeyValue conforming to the "k8s.job.uid" -// semantic conventions. It represents the UID of the Job. -func K8SJobUID(val string) attribute.KeyValue { - return K8SJobUIDKey.String(val) -} - -// K8SNamespaceAnnotation returns an attribute KeyValue conforming to the -// "k8s.namespace.annotation" semantic conventions. It represents the annotation -// placed on the Namespace, the `` being the annotation name, the value -// being the annotation value, even if the value is empty. -func K8SNamespaceAnnotation(key string, val string) attribute.KeyValue { - return attribute.String("k8s.namespace.annotation."+key, val) -} - -// K8SNamespaceLabel returns an attribute KeyValue conforming to the -// "k8s.namespace.label" semantic conventions. It represents the label placed on -// the Namespace, the `` being the label name, the value being the label -// value, even if the value is empty. -func K8SNamespaceLabel(key string, val string) attribute.KeyValue { - return attribute.String("k8s.namespace.label."+key, val) -} - -// K8SNamespaceName returns an attribute KeyValue conforming to the -// "k8s.namespace.name" semantic conventions. It represents the name of the -// namespace that the pod is running in. -func K8SNamespaceName(val string) attribute.KeyValue { - return K8SNamespaceNameKey.String(val) -} - -// K8SNodeAnnotation returns an attribute KeyValue conforming to the -// "k8s.node.annotation" semantic conventions. It represents the annotation -// placed on the Node, the `` being the annotation name, the value being the -// annotation value, even if the value is empty. -func K8SNodeAnnotation(key string, val string) attribute.KeyValue { - return attribute.String("k8s.node.annotation."+key, val) -} - -// K8SNodeLabel returns an attribute KeyValue conforming to the "k8s.node.label" -// semantic conventions. It represents the label placed on the Node, the `` -// being the label name, the value being the label value, even if the value is -// empty. -func K8SNodeLabel(key string, val string) attribute.KeyValue { - return attribute.String("k8s.node.label."+key, val) -} - -// K8SNodeName returns an attribute KeyValue conforming to the "k8s.node.name" -// semantic conventions. It represents the name of the Node. -func K8SNodeName(val string) attribute.KeyValue { - return K8SNodeNameKey.String(val) -} - -// K8SNodeUID returns an attribute KeyValue conforming to the "k8s.node.uid" -// semantic conventions. It represents the UID of the Node. -func K8SNodeUID(val string) attribute.KeyValue { - return K8SNodeUIDKey.String(val) -} - -// K8SPodAnnotation returns an attribute KeyValue conforming to the -// "k8s.pod.annotation" semantic conventions. It represents the annotation placed -// on the Pod, the `` being the annotation name, the value being the -// annotation value. -func K8SPodAnnotation(key string, val string) attribute.KeyValue { - return attribute.String("k8s.pod.annotation."+key, val) -} - -// K8SPodHostname returns an attribute KeyValue conforming to the -// "k8s.pod.hostname" semantic conventions. It represents the specifies the -// hostname of the Pod. -func K8SPodHostname(val string) attribute.KeyValue { - return K8SPodHostnameKey.String(val) -} - -// K8SPodIP returns an attribute KeyValue conforming to the "k8s.pod.ip" semantic -// conventions. It represents the IP address allocated to the Pod. -func K8SPodIP(val string) attribute.KeyValue { - return K8SPodIPKey.String(val) -} - -// K8SPodLabel returns an attribute KeyValue conforming to the "k8s.pod.label" -// semantic conventions. It represents the label placed on the Pod, the `` -// being the label name, the value being the label value. -func K8SPodLabel(key string, val string) attribute.KeyValue { - return attribute.String("k8s.pod.label."+key, val) -} - -// K8SPodName returns an attribute KeyValue conforming to the "k8s.pod.name" -// semantic conventions. It represents the name of the Pod. -func K8SPodName(val string) attribute.KeyValue { - return K8SPodNameKey.String(val) -} - -// K8SPodStartTime returns an attribute KeyValue conforming to the -// "k8s.pod.start_time" semantic conventions. It represents the start timestamp -// of the Pod. -func K8SPodStartTime(val string) attribute.KeyValue { - return K8SPodStartTimeKey.String(val) -} - -// K8SPodUID returns an attribute KeyValue conforming to the "k8s.pod.uid" -// semantic conventions. It represents the UID of the Pod. -func K8SPodUID(val string) attribute.KeyValue { - return K8SPodUIDKey.String(val) -} - -// K8SReplicaSetAnnotation returns an attribute KeyValue conforming to the -// "k8s.replicaset.annotation" semantic conventions. It represents the annotation -// placed on the ReplicaSet, the `` being the annotation name, the value -// being the annotation value, even if the value is empty. -func K8SReplicaSetAnnotation(key string, val string) attribute.KeyValue { - return attribute.String("k8s.replicaset.annotation."+key, val) -} - -// K8SReplicaSetLabel returns an attribute KeyValue conforming to the -// "k8s.replicaset.label" semantic conventions. It represents the label placed on -// the ReplicaSet, the `` being the label name, the value being the label -// value, even if the value is empty. -func K8SReplicaSetLabel(key string, val string) attribute.KeyValue { - return attribute.String("k8s.replicaset.label."+key, val) -} - -// K8SReplicaSetName returns an attribute KeyValue conforming to the -// "k8s.replicaset.name" semantic conventions. It represents the name of the -// ReplicaSet. -func K8SReplicaSetName(val string) attribute.KeyValue { - return K8SReplicaSetNameKey.String(val) -} - -// K8SReplicaSetUID returns an attribute KeyValue conforming to the -// "k8s.replicaset.uid" semantic conventions. It represents the UID of the -// ReplicaSet. -func K8SReplicaSetUID(val string) attribute.KeyValue { - return K8SReplicaSetUIDKey.String(val) -} - -// K8SReplicationControllerName returns an attribute KeyValue conforming to the -// "k8s.replicationcontroller.name" semantic conventions. It represents the name -// of the replication controller. -func K8SReplicationControllerName(val string) attribute.KeyValue { - return K8SReplicationControllerNameKey.String(val) -} - -// K8SReplicationControllerUID returns an attribute KeyValue conforming to the -// "k8s.replicationcontroller.uid" semantic conventions. It represents the UID of -// the replication controller. -func K8SReplicationControllerUID(val string) attribute.KeyValue { - return K8SReplicationControllerUIDKey.String(val) -} - -// K8SResourceQuotaName returns an attribute KeyValue conforming to the -// "k8s.resourcequota.name" semantic conventions. It represents the name of the -// resource quota. -func K8SResourceQuotaName(val string) attribute.KeyValue { - return K8SResourceQuotaNameKey.String(val) -} - -// K8SResourceQuotaResourceName returns an attribute KeyValue conforming to the -// "k8s.resourcequota.resource_name" semantic conventions. It represents the name -// of the K8s resource a resource quota defines. -func K8SResourceQuotaResourceName(val string) attribute.KeyValue { - return K8SResourceQuotaResourceNameKey.String(val) -} - -// K8SResourceQuotaUID returns an attribute KeyValue conforming to the -// "k8s.resourcequota.uid" semantic conventions. It represents the UID of the -// resource quota. -func K8SResourceQuotaUID(val string) attribute.KeyValue { - return K8SResourceQuotaUIDKey.String(val) -} - -// K8SServiceAnnotation returns an attribute KeyValue conforming to the -// "k8s.service.annotation" semantic conventions. It represents the annotation -// placed on the Service, the `` being the annotation name, the value being -// the annotation value, even if the value is empty. -func K8SServiceAnnotation(key string, val string) attribute.KeyValue { - return attribute.String("k8s.service.annotation."+key, val) -} - -// K8SServiceEndpointZone returns an attribute KeyValue conforming to the -// "k8s.service.endpoint.zone" semantic conventions. It represents the zone of -// the service endpoint. -func K8SServiceEndpointZone(val string) attribute.KeyValue { - return K8SServiceEndpointZoneKey.String(val) -} - -// K8SServiceLabel returns an attribute KeyValue conforming to the -// "k8s.service.label" semantic conventions. It represents the label placed on -// the Service, the `` being the label name, the value being the label -// value, even if the value is empty. -func K8SServiceLabel(key string, val string) attribute.KeyValue { - return attribute.String("k8s.service.label."+key, val) -} - -// K8SServiceName returns an attribute KeyValue conforming to the -// "k8s.service.name" semantic conventions. It represents the name of the -// Service. -func K8SServiceName(val string) attribute.KeyValue { - return K8SServiceNameKey.String(val) -} - -// K8SServicePublishNotReadyAddresses returns an attribute KeyValue conforming to -// the "k8s.service.publish_not_ready_addresses" semantic conventions. It -// represents the whether the Service publishes not-ready endpoints. -func K8SServicePublishNotReadyAddresses(val bool) attribute.KeyValue { - return K8SServicePublishNotReadyAddressesKey.Bool(val) -} - -// K8SServiceSelector returns an attribute KeyValue conforming to the -// "k8s.service.selector" semantic conventions. It represents the selector -// key-value pair placed on the Service, the `` being the selector key, the -// value being the selector value. -func K8SServiceSelector(key string, val string) attribute.KeyValue { - return attribute.String("k8s.service.selector."+key, val) -} - -// K8SServiceTrafficDistribution returns an attribute KeyValue conforming to the -// "k8s.service.traffic_distribution" semantic conventions. It represents the -// traffic distribution policy for the Service. -func K8SServiceTrafficDistribution(val string) attribute.KeyValue { - return K8SServiceTrafficDistributionKey.String(val) -} - -// K8SServiceUID returns an attribute KeyValue conforming to the -// "k8s.service.uid" semantic conventions. It represents the UID of the Service. -func K8SServiceUID(val string) attribute.KeyValue { - return K8SServiceUIDKey.String(val) -} - -// K8SStatefulSetAnnotation returns an attribute KeyValue conforming to the -// "k8s.statefulset.annotation" semantic conventions. It represents the -// annotation placed on the StatefulSet, the `` being the annotation name, -// the value being the annotation value, even if the value is empty. -func K8SStatefulSetAnnotation(key string, val string) attribute.KeyValue { - return attribute.String("k8s.statefulset.annotation."+key, val) -} - -// K8SStatefulSetLabel returns an attribute KeyValue conforming to the -// "k8s.statefulset.label" semantic conventions. It represents the label placed -// on the StatefulSet, the `` being the label name, the value being the -// label value, even if the value is empty. -func K8SStatefulSetLabel(key string, val string) attribute.KeyValue { - return attribute.String("k8s.statefulset.label."+key, val) -} - -// K8SStatefulSetName returns an attribute KeyValue conforming to the -// "k8s.statefulset.name" semantic conventions. It represents the name of the -// StatefulSet. -func K8SStatefulSetName(val string) attribute.KeyValue { - return K8SStatefulSetNameKey.String(val) -} - -// K8SStatefulSetUID returns an attribute KeyValue conforming to the -// "k8s.statefulset.uid" semantic conventions. It represents the UID of the -// StatefulSet. -func K8SStatefulSetUID(val string) attribute.KeyValue { - return K8SStatefulSetUIDKey.String(val) -} - -// K8SStorageclassName returns an attribute KeyValue conforming to the -// "k8s.storageclass.name" semantic conventions. It represents the name of K8s -// [StorageClass] object. -// -// [StorageClass]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.30/#storageclass-v1-storage-k8s-io -func K8SStorageclassName(val string) attribute.KeyValue { - return K8SStorageclassNameKey.String(val) -} - -// K8SVolumeName returns an attribute KeyValue conforming to the -// "k8s.volume.name" semantic conventions. It represents the name of the K8s -// volume. -func K8SVolumeName(val string) attribute.KeyValue { - return K8SVolumeNameKey.String(val) -} - -// Enum values for k8s.container.status.reason -var ( - // The container is being created. - // Stability: development - K8SContainerStatusReasonContainerCreating = K8SContainerStatusReasonKey.String("ContainerCreating") - // The container is in a crash loop back off state. - // Stability: development - K8SContainerStatusReasonCrashLoopBackOff = K8SContainerStatusReasonKey.String("CrashLoopBackOff") - // There was an error creating the container configuration. - // Stability: development - K8SContainerStatusReasonCreateContainerConfigError = K8SContainerStatusReasonKey.String("CreateContainerConfigError") - // There was an error pulling the container image. - // Stability: development - K8SContainerStatusReasonErrImagePull = K8SContainerStatusReasonKey.String("ErrImagePull") - // The container image pull is in back off state. - // Stability: development - K8SContainerStatusReasonImagePullBackOff = K8SContainerStatusReasonKey.String("ImagePullBackOff") - // The container was killed due to out of memory. - // Stability: development - K8SContainerStatusReasonOomKilled = K8SContainerStatusReasonKey.String("OOMKilled") - // The container has completed execution. - // Stability: development - K8SContainerStatusReasonCompleted = K8SContainerStatusReasonKey.String("Completed") - // There was an error with the container. - // Stability: development - K8SContainerStatusReasonError = K8SContainerStatusReasonKey.String("Error") - // The container cannot run. - // Stability: development - K8SContainerStatusReasonContainerCannotRun = K8SContainerStatusReasonKey.String("ContainerCannotRun") -) - -// Enum values for k8s.container.status.state -var ( - // The container has terminated. - // Stability: development - K8SContainerStatusStateTerminated = K8SContainerStatusStateKey.String("terminated") - // The container is running. - // Stability: development - K8SContainerStatusStateRunning = K8SContainerStatusStateKey.String("running") - // The container is waiting. - // Stability: development - K8SContainerStatusStateWaiting = K8SContainerStatusStateKey.String("waiting") -) - -// Enum values for k8s.namespace.phase -var ( - // Active namespace phase as described by [K8s API] - // Stability: development - // - // [K8s API]: https://pkg.go.dev/k8s.io/api@v0.31.3/core/v1#NamespacePhase - K8SNamespacePhaseActive = K8SNamespacePhaseKey.String("active") - // Terminating namespace phase as described by [K8s API] - // Stability: development - // - // [K8s API]: https://pkg.go.dev/k8s.io/api@v0.31.3/core/v1#NamespacePhase - K8SNamespacePhaseTerminating = K8SNamespacePhaseKey.String("terminating") -) - -// Enum values for k8s.node.condition.status -var ( - // condition_true - // Stability: development - K8SNodeConditionStatusConditionTrue = K8SNodeConditionStatusKey.String("true") - // condition_false - // Stability: development - K8SNodeConditionStatusConditionFalse = K8SNodeConditionStatusKey.String("false") - // condition_unknown - // Stability: development - K8SNodeConditionStatusConditionUnknown = K8SNodeConditionStatusKey.String("unknown") -) - -// Enum values for k8s.node.condition.type -var ( - // The node is healthy and ready to accept pods - // Stability: development - K8SNodeConditionTypeReady = K8SNodeConditionTypeKey.String("Ready") - // Pressure exists on the disk size—that is, if the disk capacity is low - // Stability: development - K8SNodeConditionTypeDiskPressure = K8SNodeConditionTypeKey.String("DiskPressure") - // Pressure exists on the node memory—that is, if the node memory is low - // Stability: development - K8SNodeConditionTypeMemoryPressure = K8SNodeConditionTypeKey.String("MemoryPressure") - // Pressure exists on the processes—that is, if there are too many processes - // on the node - // Stability: development - K8SNodeConditionTypePIDPressure = K8SNodeConditionTypeKey.String("PIDPressure") - // The network for the node is not correctly configured - // Stability: development - K8SNodeConditionTypeNetworkUnavailable = K8SNodeConditionTypeKey.String("NetworkUnavailable") -) - -// Enum values for k8s.pod.status.phase -var ( - // The pod has been accepted by the system, but one or more of the containers - // has not been started. This includes time before being bound to a node, as - // well as time spent pulling images onto the host. - // - // Stability: development - K8SPodStatusPhasePending = K8SPodStatusPhaseKey.String("Pending") - // The pod has been bound to a node and all of the containers have been started. - // At least one container is still running or is in the process of being - // restarted. - // - // Stability: development - K8SPodStatusPhaseRunning = K8SPodStatusPhaseKey.String("Running") - // All containers in the pod have voluntarily terminated with a container exit - // code of 0, and the system is not going to restart any of these containers. - // - // Stability: development - K8SPodStatusPhaseSucceeded = K8SPodStatusPhaseKey.String("Succeeded") - // All containers in the pod have terminated, and at least one container has - // terminated in a failure (exited with a non-zero exit code or was stopped by - // the system). - // - // Stability: development - K8SPodStatusPhaseFailed = K8SPodStatusPhaseKey.String("Failed") - // For some reason the state of the pod could not be obtained, typically due to - // an error in communicating with the host of the pod. - // - // Stability: development - K8SPodStatusPhaseUnknown = K8SPodStatusPhaseKey.String("Unknown") -) - -// Enum values for k8s.pod.status.reason -var ( - // The pod is evicted. - // Stability: development - K8SPodStatusReasonEvicted = K8SPodStatusReasonKey.String("Evicted") - // The pod is in a status because of its node affinity - // Stability: development - K8SPodStatusReasonNodeAffinity = K8SPodStatusReasonKey.String("NodeAffinity") - // The reason on a pod when its state cannot be confirmed as kubelet is - // unresponsive on the node it is (was) running. - // - // Stability: development - K8SPodStatusReasonNodeLost = K8SPodStatusReasonKey.String("NodeLost") - // The node is shutdown - // Stability: development - K8SPodStatusReasonShutdown = K8SPodStatusReasonKey.String("Shutdown") - // The pod was rejected admission to the node because of an error during - // admission that could not be categorized. - // - // Stability: development - K8SPodStatusReasonUnexpectedAdmissionError = K8SPodStatusReasonKey.String("UnexpectedAdmissionError") -) - -// Enum values for k8s.service.endpoint.address_type -var ( - // IPv4 address type - // Stability: development - K8SServiceEndpointAddressTypeIPv4 = K8SServiceEndpointAddressTypeKey.String("IPv4") - // IPv6 address type - // Stability: development - K8SServiceEndpointAddressTypeIPv6 = K8SServiceEndpointAddressTypeKey.String("IPv6") - // FQDN address type - // Stability: development - K8SServiceEndpointAddressTypeFqdn = K8SServiceEndpointAddressTypeKey.String("FQDN") -) - -// Enum values for k8s.service.endpoint.condition -var ( - // The endpoint is ready to receive new connections. - // Stability: development - K8SServiceEndpointConditionReady = K8SServiceEndpointConditionKey.String("ready") - // The endpoint is currently handling traffic. - // Stability: development - K8SServiceEndpointConditionServing = K8SServiceEndpointConditionKey.String("serving") - // The endpoint is in the process of shutting down. - // Stability: development - K8SServiceEndpointConditionTerminating = K8SServiceEndpointConditionKey.String("terminating") -) - -// Enum values for k8s.service.type -var ( - // ClusterIP service type - // Stability: development - K8SServiceTypeClusterIP = K8SServiceTypeKey.String("ClusterIP") - // NodePort service type - // Stability: development - K8SServiceTypeNodePort = K8SServiceTypeKey.String("NodePort") - // LoadBalancer service type - // Stability: development - K8SServiceTypeLoadBalancer = K8SServiceTypeKey.String("LoadBalancer") - // ExternalName service type - // Stability: development - K8SServiceTypeExternalName = K8SServiceTypeKey.String("ExternalName") -) - -// Enum values for k8s.volume.type -var ( - // A [persistentVolumeClaim] volume - // Stability: development - // - // [persistentVolumeClaim]: https://v1-30.docs.kubernetes.io/docs/concepts/storage/volumes/#persistentvolumeclaim - K8SVolumeTypePersistentVolumeClaim = K8SVolumeTypeKey.String("persistentVolumeClaim") - // A [configMap] volume - // Stability: development - // - // [configMap]: https://v1-30.docs.kubernetes.io/docs/concepts/storage/volumes/#configmap - K8SVolumeTypeConfigMap = K8SVolumeTypeKey.String("configMap") - // A [downwardAPI] volume - // Stability: development - // - // [downwardAPI]: https://v1-30.docs.kubernetes.io/docs/concepts/storage/volumes/#downwardapi - K8SVolumeTypeDownwardAPI = K8SVolumeTypeKey.String("downwardAPI") - // An [emptyDir] volume - // Stability: development - // - // [emptyDir]: https://v1-30.docs.kubernetes.io/docs/concepts/storage/volumes/#emptydir - K8SVolumeTypeEmptyDir = K8SVolumeTypeKey.String("emptyDir") - // A [secret] volume - // Stability: development - // - // [secret]: https://v1-30.docs.kubernetes.io/docs/concepts/storage/volumes/#secret - K8SVolumeTypeSecret = K8SVolumeTypeKey.String("secret") - // A [local] volume - // Stability: development - // - // [local]: https://v1-30.docs.kubernetes.io/docs/concepts/storage/volumes/#local - K8SVolumeTypeLocal = K8SVolumeTypeKey.String("local") -) - -// Namespace: log -const ( - // LogFileNameKey is the attribute Key conforming to the "log.file.name" - // semantic conventions. It represents the basename of the file. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "audit.log" - LogFileNameKey = attribute.Key("log.file.name") - - // LogFileNameResolvedKey is the attribute Key conforming to the - // "log.file.name_resolved" semantic conventions. It represents the basename of - // the file, with symlinks resolved. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "uuid.log" - LogFileNameResolvedKey = attribute.Key("log.file.name_resolved") - - // LogFilePathKey is the attribute Key conforming to the "log.file.path" - // semantic conventions. It represents the full path to the file. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "/var/log/mysql/audit.log" - LogFilePathKey = attribute.Key("log.file.path") - - // LogFilePathResolvedKey is the attribute Key conforming to the - // "log.file.path_resolved" semantic conventions. It represents the full path to - // the file, with symlinks resolved. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "/var/lib/docker/uuid.log" - LogFilePathResolvedKey = attribute.Key("log.file.path_resolved") - - // LogIostreamKey is the attribute Key conforming to the "log.iostream" semantic - // conventions. It represents the stream associated with the log. See below for - // a list of well-known values. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - LogIostreamKey = attribute.Key("log.iostream") - - // LogRecordOriginalKey is the attribute Key conforming to the - // "log.record.original" semantic conventions. It represents the complete - // original Log Record. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "77 <86>1 2015-08-06T21:58:59.694Z 192.168.2.133 inactive - - - - // Something happened", "[INFO] 8/3/24 12:34:56 Something happened" - // Note: This value MAY be added when processing a Log Record which was - // originally transmitted as a string or equivalent data type AND the Body field - // of the Log Record does not contain the same value. (e.g. a syslog or a log - // record read from a file.) - LogRecordOriginalKey = attribute.Key("log.record.original") - - // LogRecordUIDKey is the attribute Key conforming to the "log.record.uid" - // semantic conventions. It represents a unique identifier for the Log Record. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "01ARZ3NDEKTSV4RRFFQ69G5FAV" - // Note: If an id is provided, other log records with the same id will be - // considered duplicates and can be removed safely. This means, that two - // distinguishable log records MUST have different values. - // The id MAY be an - // [Universally Unique Lexicographically Sortable Identifier (ULID)], but other - // identifiers (e.g. UUID) may be used as needed. - // - // [Universally Unique Lexicographically Sortable Identifier (ULID)]: https://github.com/ulid/spec - LogRecordUIDKey = attribute.Key("log.record.uid") -) - -// LogFileName returns an attribute KeyValue conforming to the "log.file.name" -// semantic conventions. It represents the basename of the file. -func LogFileName(val string) attribute.KeyValue { - return LogFileNameKey.String(val) -} - -// LogFileNameResolved returns an attribute KeyValue conforming to the -// "log.file.name_resolved" semantic conventions. It represents the basename of -// the file, with symlinks resolved. -func LogFileNameResolved(val string) attribute.KeyValue { - return LogFileNameResolvedKey.String(val) -} - -// LogFilePath returns an attribute KeyValue conforming to the "log.file.path" -// semantic conventions. It represents the full path to the file. -func LogFilePath(val string) attribute.KeyValue { - return LogFilePathKey.String(val) -} - -// LogFilePathResolved returns an attribute KeyValue conforming to the -// "log.file.path_resolved" semantic conventions. It represents the full path to -// the file, with symlinks resolved. -func LogFilePathResolved(val string) attribute.KeyValue { - return LogFilePathResolvedKey.String(val) -} - -// LogRecordOriginal returns an attribute KeyValue conforming to the -// "log.record.original" semantic conventions. It represents the complete -// original Log Record. -func LogRecordOriginal(val string) attribute.KeyValue { - return LogRecordOriginalKey.String(val) -} - -// LogRecordUID returns an attribute KeyValue conforming to the "log.record.uid" -// semantic conventions. It represents a unique identifier for the Log Record. -func LogRecordUID(val string) attribute.KeyValue { - return LogRecordUIDKey.String(val) -} - -// Enum values for log.iostream -var ( - // Logs from stdout stream - // Stability: development - LogIostreamStdout = LogIostreamKey.String("stdout") - // Events from stderr stream - // Stability: development - LogIostreamStderr = LogIostreamKey.String("stderr") -) - -// Namespace: mainframe -const ( - // MainframeLparNameKey is the attribute Key conforming to the - // "mainframe.lpar.name" semantic conventions. It represents the name of the - // logical partition that hosts a systems with a mainframe operating system. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "LPAR01" - MainframeLparNameKey = attribute.Key("mainframe.lpar.name") -) - -// MainframeLparName returns an attribute KeyValue conforming to the -// "mainframe.lpar.name" semantic conventions. It represents the name of the -// logical partition that hosts a systems with a mainframe operating system. -func MainframeLparName(val string) attribute.KeyValue { - return MainframeLparNameKey.String(val) -} - -// Namespace: mcp -const ( - // McpMethodNameKey is the attribute Key conforming to the "mcp.method.name" - // semantic conventions. It represents the name of the request or notification - // method. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - McpMethodNameKey = attribute.Key("mcp.method.name") - - // McpProtocolVersionKey is the attribute Key conforming to the - // "mcp.protocol.version" semantic conventions. It represents the [version] of - // the Model Context Protocol used. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "2025-06-18" - // - // [version]: https://modelcontextprotocol.io/specification/versioning - McpProtocolVersionKey = attribute.Key("mcp.protocol.version") - - // McpResourceURIKey is the attribute Key conforming to the "mcp.resource.uri" - // semantic conventions. It represents the value of the resource uri. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "postgres://database/customers/schema", - // "file:///home/user/documents/report.pdf" - // Note: This is a URI of the resource provided in the following requests or - // notifications: `resources/read`, `resources/subscribe`, - // `resources/unsubscribe`, or `notifications/resources/updated`. - McpResourceURIKey = attribute.Key("mcp.resource.uri") - - // McpSessionIDKey is the attribute Key conforming to the "mcp.session.id" - // semantic conventions. It represents the identifies [MCP session]. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "191c4850af6c49e08843a3f6c80e5046" - // - // [MCP session]: https://modelcontextprotocol.io/specification/2025-06-18/basic/transports#session-management - McpSessionIDKey = attribute.Key("mcp.session.id") -) - -// McpProtocolVersion returns an attribute KeyValue conforming to the -// "mcp.protocol.version" semantic conventions. It represents the [version] of -// the Model Context Protocol used. -// -// [version]: https://modelcontextprotocol.io/specification/versioning -func McpProtocolVersion(val string) attribute.KeyValue { - return McpProtocolVersionKey.String(val) -} - -// McpResourceURI returns an attribute KeyValue conforming to the -// "mcp.resource.uri" semantic conventions. It represents the value of the -// resource uri. -func McpResourceURI(val string) attribute.KeyValue { - return McpResourceURIKey.String(val) -} - -// McpSessionID returns an attribute KeyValue conforming to the "mcp.session.id" -// semantic conventions. It represents the identifies [MCP session]. -// -// [MCP session]: https://modelcontextprotocol.io/specification/2025-06-18/basic/transports#session-management -func McpSessionID(val string) attribute.KeyValue { - return McpSessionIDKey.String(val) -} - -// Enum values for mcp.method.name -var ( - // Notification cancelling a previously-issued request. - // - // Stability: development - McpMethodNameNotificationsCancelled = McpMethodNameKey.String("notifications/cancelled") - // Request to initialize the MCP client. - // - // Stability: development - McpMethodNameInitialize = McpMethodNameKey.String("initialize") - // Notification indicating that the MCP client has been initialized. - // - // Stability: development - McpMethodNameNotificationsInitialized = McpMethodNameKey.String("notifications/initialized") - // Notification indicating the progress for a long-running operation. - // - // Stability: development - McpMethodNameNotificationsProgress = McpMethodNameKey.String("notifications/progress") - // Request to check that the other party is still alive. - // - // Stability: development - McpMethodNamePing = McpMethodNameKey.String("ping") - // Request to list resources available on server. - // - // Stability: development - McpMethodNameResourcesList = McpMethodNameKey.String("resources/list") - // Request to list resource templates available on server. - // - // Stability: development - McpMethodNameResourcesTemplatesList = McpMethodNameKey.String("resources/templates/list") - // Request to read a resource. - // - // Stability: development - McpMethodNameResourcesRead = McpMethodNameKey.String("resources/read") - // Notification indicating that the list of resources has changed. - // - // Stability: development - McpMethodNameNotificationsResourcesListChanged = McpMethodNameKey.String("notifications/resources/list_changed") - // Request to subscribe to a resource. - // - // Stability: development - McpMethodNameResourcesSubscribe = McpMethodNameKey.String("resources/subscribe") - // Request to unsubscribe from resource updates. - // - // Stability: development - McpMethodNameResourcesUnsubscribe = McpMethodNameKey.String("resources/unsubscribe") - // Notification indicating that a resource has been updated. - // - // Stability: development - McpMethodNameNotificationsResourcesUpdated = McpMethodNameKey.String("notifications/resources/updated") - // Request to list prompts available on server. - // - // Stability: development - McpMethodNamePromptsList = McpMethodNameKey.String("prompts/list") - // Request to get a prompt. - // - // Stability: development - McpMethodNamePromptsGet = McpMethodNameKey.String("prompts/get") - // Notification indicating that the list of prompts has changed. - // - // Stability: development - McpMethodNameNotificationsPromptsListChanged = McpMethodNameKey.String("notifications/prompts/list_changed") - // Request to list tools available on server. - // - // Stability: development - McpMethodNameToolsList = McpMethodNameKey.String("tools/list") - // Request to call a tool. - // - // Stability: development - McpMethodNameToolsCall = McpMethodNameKey.String("tools/call") - // Notification indicating that the list of tools has changed. - // - // Stability: development - McpMethodNameNotificationsToolsListChanged = McpMethodNameKey.String("notifications/tools/list_changed") - // Request to set the logging level. - // - // Stability: development - McpMethodNameLoggingSetLevel = McpMethodNameKey.String("logging/setLevel") - // Notification indicating that a message has been received. - // - // Stability: development - McpMethodNameNotificationsMessage = McpMethodNameKey.String("notifications/message") - // Request to create a sampling message. - // - // Stability: development - McpMethodNameSamplingCreateMessage = McpMethodNameKey.String("sampling/createMessage") - // Request to complete a prompt. - // - // Stability: development - McpMethodNameCompletionComplete = McpMethodNameKey.String("completion/complete") - // Request to list roots available on server. - // - // Stability: development - McpMethodNameRootsList = McpMethodNameKey.String("roots/list") - // Notification indicating that the list of roots has changed. - // - // Stability: development - McpMethodNameNotificationsRootsListChanged = McpMethodNameKey.String("notifications/roots/list_changed") - // Request from the server to elicit additional information from the user via - // the client - // - // Stability: development - McpMethodNameElicitationCreate = McpMethodNameKey.String("elicitation/create") -) - -// Namespace: messaging -const ( - // MessagingBatchMessageCountKey is the attribute Key conforming to the - // "messaging.batch.message_count" semantic conventions. It represents the - // number of messages sent, received, or processed in the scope of the batching - // operation. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 0, 1, 2 - // Note: Instrumentations SHOULD NOT set `messaging.batch.message_count` on - // spans that operate with a single message. When a messaging client library - // supports both batch and single-message API for the same operation, - // instrumentations SHOULD use `messaging.batch.message_count` for batching APIs - // and SHOULD NOT use it for single-message APIs. - MessagingBatchMessageCountKey = attribute.Key("messaging.batch.message_count") - - // MessagingClientIDKey is the attribute Key conforming to the - // "messaging.client.id" semantic conventions. It represents a unique identifier - // for the client that consumes or produces a message. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "client-5", "myhost@8742@s8083jm" - MessagingClientIDKey = attribute.Key("messaging.client.id") - - // MessagingConsumerGroupNameKey is the attribute Key conforming to the - // "messaging.consumer.group.name" semantic conventions. It represents the name - // of the consumer group with which a consumer is associated. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "my-group", "indexer" - // Note: Semantic conventions for individual messaging systems SHOULD document - // whether `messaging.consumer.group.name` is applicable and what it means in - // the context of that system. - MessagingConsumerGroupNameKey = attribute.Key("messaging.consumer.group.name") - - // MessagingDestinationAnonymousKey is the attribute Key conforming to the - // "messaging.destination.anonymous" semantic conventions. It represents a - // boolean that is true if the message destination is anonymous (could be - // unnamed or have auto-generated name). - // - // Type: boolean - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - MessagingDestinationAnonymousKey = attribute.Key("messaging.destination.anonymous") - - // MessagingDestinationNameKey is the attribute Key conforming to the - // "messaging.destination.name" semantic conventions. It represents the message - // destination name. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "MyQueue", "MyTopic" - // Note: Destination name SHOULD uniquely identify a specific queue, topic or - // other entity within the broker. If - // the broker doesn't have such notion, the destination name SHOULD uniquely - // identify the broker. - MessagingDestinationNameKey = attribute.Key("messaging.destination.name") - - // MessagingDestinationPartitionIDKey is the attribute Key conforming to the - // "messaging.destination.partition.id" semantic conventions. It represents the - // identifier of the partition messages are sent to or received from, unique - // within the `messaging.destination.name`. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 1 - MessagingDestinationPartitionIDKey = attribute.Key("messaging.destination.partition.id") - - // MessagingDestinationSubscriptionNameKey is the attribute Key conforming to - // the "messaging.destination.subscription.name" semantic conventions. It - // represents the name of the destination subscription from which a message is - // consumed. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "subscription-a" - // Note: Semantic conventions for individual messaging systems SHOULD document - // whether `messaging.destination.subscription.name` is applicable and what it - // means in the context of that system. - MessagingDestinationSubscriptionNameKey = attribute.Key("messaging.destination.subscription.name") - - // MessagingDestinationTemplateKey is the attribute Key conforming to the - // "messaging.destination.template" semantic conventions. It represents the low - // cardinality representation of the messaging destination name. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "/customers/{customerId}" - // Note: Destination names could be constructed from templates. An example would - // be a destination name involving a user name or product id. Although the - // destination name in this case is of high cardinality, the underlying template - // is of low cardinality and can be effectively used for grouping and - // aggregation. - MessagingDestinationTemplateKey = attribute.Key("messaging.destination.template") - - // MessagingDestinationTemporaryKey is the attribute Key conforming to the - // "messaging.destination.temporary" semantic conventions. It represents a - // boolean that is true if the message destination is temporary and might not - // exist anymore after messages are processed. - // - // Type: boolean - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - MessagingDestinationTemporaryKey = attribute.Key("messaging.destination.temporary") - - // MessagingEventHubsMessageEnqueuedTimeKey is the attribute Key conforming to - // the "messaging.eventhubs.message.enqueued_time" semantic conventions. It - // represents the UTC epoch seconds at which the message has been accepted and - // stored in the entity. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - MessagingEventHubsMessageEnqueuedTimeKey = attribute.Key("messaging.eventhubs.message.enqueued_time") - - // MessagingGCPPubSubMessageAckDeadlineKey is the attribute Key conforming to - // the "messaging.gcp_pubsub.message.ack_deadline" semantic conventions. It - // represents the ack deadline in seconds set for the modify ack deadline - // request. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - MessagingGCPPubSubMessageAckDeadlineKey = attribute.Key("messaging.gcp_pubsub.message.ack_deadline") - - // MessagingGCPPubSubMessageAckIDKey is the attribute Key conforming to the - // "messaging.gcp_pubsub.message.ack_id" semantic conventions. It represents the - // ack id for a given message. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: ack_id - MessagingGCPPubSubMessageAckIDKey = attribute.Key("messaging.gcp_pubsub.message.ack_id") - - // MessagingGCPPubSubMessageDeliveryAttemptKey is the attribute Key conforming - // to the "messaging.gcp_pubsub.message.delivery_attempt" semantic conventions. - // It represents the delivery attempt for a given message. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - MessagingGCPPubSubMessageDeliveryAttemptKey = attribute.Key("messaging.gcp_pubsub.message.delivery_attempt") - - // MessagingGCPPubSubMessageOrderingKeyKey is the attribute Key conforming to - // the "messaging.gcp_pubsub.message.ordering_key" semantic conventions. It - // represents the ordering key for a given message. If the attribute is not - // present, the message does not have an ordering key. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: ordering_key - MessagingGCPPubSubMessageOrderingKeyKey = attribute.Key("messaging.gcp_pubsub.message.ordering_key") - - // MessagingKafkaMessageKeyKey is the attribute Key conforming to the - // "messaging.kafka.message.key" semantic conventions. It represents the message - // keys in Kafka are used for grouping alike messages to ensure they're - // processed on the same partition. They differ from `messaging.message.id` in - // that they're not unique. If the key is `null`, the attribute MUST NOT be set. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: myKey - // Note: If the key type is not string, it's string representation has to be - // supplied for the attribute. If the key has no unambiguous, canonical string - // form, don't include its value. - MessagingKafkaMessageKeyKey = attribute.Key("messaging.kafka.message.key") - - // MessagingKafkaMessageTombstoneKey is the attribute Key conforming to the - // "messaging.kafka.message.tombstone" semantic conventions. It represents a - // boolean that is true if the message is a tombstone. - // - // Type: boolean - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - MessagingKafkaMessageTombstoneKey = attribute.Key("messaging.kafka.message.tombstone") - - // MessagingKafkaOffsetKey is the attribute Key conforming to the - // "messaging.kafka.offset" semantic conventions. It represents the offset of a - // record in the corresponding Kafka partition. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - MessagingKafkaOffsetKey = attribute.Key("messaging.kafka.offset") - - // MessagingMessageBodySizeKey is the attribute Key conforming to the - // "messaging.message.body.size" semantic conventions. It represents the size of - // the message body in bytes. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Note: This can refer to both the compressed or uncompressed body size. If - // both sizes are known, the uncompressed - // body size should be used. - MessagingMessageBodySizeKey = attribute.Key("messaging.message.body.size") - - // MessagingMessageConversationIDKey is the attribute Key conforming to the - // "messaging.message.conversation_id" semantic conventions. It represents the - // conversation ID identifying the conversation to which the message belongs, - // represented as a string. Sometimes called "Correlation ID". - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: MyConversationId - MessagingMessageConversationIDKey = attribute.Key("messaging.message.conversation_id") - - // MessagingMessageEnvelopeSizeKey is the attribute Key conforming to the - // "messaging.message.envelope.size" semantic conventions. It represents the - // size of the message body and metadata in bytes. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Note: This can refer to both the compressed or uncompressed size. If both - // sizes are known, the uncompressed - // size should be used. - MessagingMessageEnvelopeSizeKey = attribute.Key("messaging.message.envelope.size") - - // MessagingMessageIDKey is the attribute Key conforming to the - // "messaging.message.id" semantic conventions. It represents a value used by - // the messaging system as an identifier for the message, represented as a - // string. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 452a7c7c7c7048c2f887f61572b18fc2 - MessagingMessageIDKey = attribute.Key("messaging.message.id") - - // MessagingOperationNameKey is the attribute Key conforming to the - // "messaging.operation.name" semantic conventions. It represents the - // system-specific name of the messaging operation. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "ack", "nack", "send" - MessagingOperationNameKey = attribute.Key("messaging.operation.name") - - // MessagingOperationTypeKey is the attribute Key conforming to the - // "messaging.operation.type" semantic conventions. It represents a string - // identifying the type of the messaging operation. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // Note: If a custom value is used, it MUST be of low cardinality. - MessagingOperationTypeKey = attribute.Key("messaging.operation.type") - - // MessagingRabbitMQDestinationRoutingKeyKey is the attribute Key conforming to - // the "messaging.rabbitmq.destination.routing_key" semantic conventions. It - // represents the rabbitMQ message routing key. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: myKey - MessagingRabbitMQDestinationRoutingKeyKey = attribute.Key("messaging.rabbitmq.destination.routing_key") - - // MessagingRabbitMQMessageDeliveryTagKey is the attribute Key conforming to the - // "messaging.rabbitmq.message.delivery_tag" semantic conventions. It represents - // the rabbitMQ message delivery tag. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - MessagingRabbitMQMessageDeliveryTagKey = attribute.Key("messaging.rabbitmq.message.delivery_tag") - - // MessagingRocketMQConsumptionModelKey is the attribute Key conforming to the - // "messaging.rocketmq.consumption_model" semantic conventions. It represents - // the model of message consumption. This only applies to consumer spans. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - MessagingRocketMQConsumptionModelKey = attribute.Key("messaging.rocketmq.consumption_model") - - // MessagingRocketMQMessageDelayTimeLevelKey is the attribute Key conforming to - // the "messaging.rocketmq.message.delay_time_level" semantic conventions. It - // represents the delay time level for delay message, which determines the - // message delay time. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - MessagingRocketMQMessageDelayTimeLevelKey = attribute.Key("messaging.rocketmq.message.delay_time_level") - - // MessagingRocketMQMessageDeliveryTimestampKey is the attribute Key conforming - // to the "messaging.rocketmq.message.delivery_timestamp" semantic conventions. - // It represents the timestamp in milliseconds that the delay message is - // expected to be delivered to consumer. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - MessagingRocketMQMessageDeliveryTimestampKey = attribute.Key("messaging.rocketmq.message.delivery_timestamp") - - // MessagingRocketMQMessageGroupKey is the attribute Key conforming to the - // "messaging.rocketmq.message.group" semantic conventions. It represents the it - // is essential for FIFO message. Messages that belong to the same message group - // are always processed one by one within the same consumer group. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: myMessageGroup - MessagingRocketMQMessageGroupKey = attribute.Key("messaging.rocketmq.message.group") - - // MessagingRocketMQMessageKeysKey is the attribute Key conforming to the - // "messaging.rocketmq.message.keys" semantic conventions. It represents the - // key(s) of message, another way to mark message besides message id. - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "keyA", "keyB" - MessagingRocketMQMessageKeysKey = attribute.Key("messaging.rocketmq.message.keys") - - // MessagingRocketMQMessageTagKey is the attribute Key conforming to the - // "messaging.rocketmq.message.tag" semantic conventions. It represents the - // secondary classifier of message besides topic. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: tagA - MessagingRocketMQMessageTagKey = attribute.Key("messaging.rocketmq.message.tag") - - // MessagingRocketMQMessageTypeKey is the attribute Key conforming to the - // "messaging.rocketmq.message.type" semantic conventions. It represents the - // type of message. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - MessagingRocketMQMessageTypeKey = attribute.Key("messaging.rocketmq.message.type") - - // MessagingRocketMQNamespaceKey is the attribute Key conforming to the - // "messaging.rocketmq.namespace" semantic conventions. It represents the - // namespace of RocketMQ resources, resources in different namespaces are - // individual. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: myNamespace - MessagingRocketMQNamespaceKey = attribute.Key("messaging.rocketmq.namespace") - - // MessagingServiceBusDispositionStatusKey is the attribute Key conforming to - // the "messaging.servicebus.disposition_status" semantic conventions. It - // represents the describes the [settlement type]. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // - // [settlement type]: https://learn.microsoft.com/azure/service-bus-messaging/message-transfers-locks-settlement#peeklock - MessagingServiceBusDispositionStatusKey = attribute.Key("messaging.servicebus.disposition_status") - - // MessagingServiceBusMessageDeliveryCountKey is the attribute Key conforming to - // the "messaging.servicebus.message.delivery_count" semantic conventions. It - // represents the number of deliveries that have been attempted for this - // message. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - MessagingServiceBusMessageDeliveryCountKey = attribute.Key("messaging.servicebus.message.delivery_count") - - // MessagingServiceBusMessageEnqueuedTimeKey is the attribute Key conforming to - // the "messaging.servicebus.message.enqueued_time" semantic conventions. It - // represents the UTC epoch seconds at which the message has been accepted and - // stored in the entity. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - MessagingServiceBusMessageEnqueuedTimeKey = attribute.Key("messaging.servicebus.message.enqueued_time") - - // MessagingSystemKey is the attribute Key conforming to the "messaging.system" - // semantic conventions. It represents the messaging system as identified by the - // client instrumentation. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // Note: The actual messaging system may differ from the one known by the - // client. For example, when using Kafka client libraries to communicate with - // Azure Event Hubs, the `messaging.system` is set to `kafka` based on the - // instrumentation's best knowledge. - MessagingSystemKey = attribute.Key("messaging.system") -) - -// MessagingBatchMessageCount returns an attribute KeyValue conforming to the -// "messaging.batch.message_count" semantic conventions. It represents the number -// of messages sent, received, or processed in the scope of the batching -// operation. -func MessagingBatchMessageCount(val int) attribute.KeyValue { - return MessagingBatchMessageCountKey.Int(val) -} - -// MessagingClientID returns an attribute KeyValue conforming to the -// "messaging.client.id" semantic conventions. It represents a unique identifier -// for the client that consumes or produces a message. -func MessagingClientID(val string) attribute.KeyValue { - return MessagingClientIDKey.String(val) -} - -// MessagingConsumerGroupName returns an attribute KeyValue conforming to the -// "messaging.consumer.group.name" semantic conventions. It represents the name -// of the consumer group with which a consumer is associated. -func MessagingConsumerGroupName(val string) attribute.KeyValue { - return MessagingConsumerGroupNameKey.String(val) -} - -// MessagingDestinationAnonymous returns an attribute KeyValue conforming to the -// "messaging.destination.anonymous" semantic conventions. It represents a -// boolean that is true if the message destination is anonymous (could be unnamed -// or have auto-generated name). -func MessagingDestinationAnonymous(val bool) attribute.KeyValue { - return MessagingDestinationAnonymousKey.Bool(val) -} - -// MessagingDestinationName returns an attribute KeyValue conforming to the -// "messaging.destination.name" semantic conventions. It represents the message -// destination name. -func MessagingDestinationName(val string) attribute.KeyValue { - return MessagingDestinationNameKey.String(val) -} - -// MessagingDestinationPartitionID returns an attribute KeyValue conforming to -// the "messaging.destination.partition.id" semantic conventions. It represents -// the identifier of the partition messages are sent to or received from, unique -// within the `messaging.destination.name`. -func MessagingDestinationPartitionID(val string) attribute.KeyValue { - return MessagingDestinationPartitionIDKey.String(val) -} - -// MessagingDestinationSubscriptionName returns an attribute KeyValue conforming -// to the "messaging.destination.subscription.name" semantic conventions. It -// represents the name of the destination subscription from which a message is -// consumed. -func MessagingDestinationSubscriptionName(val string) attribute.KeyValue { - return MessagingDestinationSubscriptionNameKey.String(val) -} - -// MessagingDestinationTemplate returns an attribute KeyValue conforming to the -// "messaging.destination.template" semantic conventions. It represents the low -// cardinality representation of the messaging destination name. -func MessagingDestinationTemplate(val string) attribute.KeyValue { - return MessagingDestinationTemplateKey.String(val) -} - -// MessagingDestinationTemporary returns an attribute KeyValue conforming to the -// "messaging.destination.temporary" semantic conventions. It represents a -// boolean that is true if the message destination is temporary and might not -// exist anymore after messages are processed. -func MessagingDestinationTemporary(val bool) attribute.KeyValue { - return MessagingDestinationTemporaryKey.Bool(val) -} - -// MessagingEventHubsMessageEnqueuedTime returns an attribute KeyValue conforming -// to the "messaging.eventhubs.message.enqueued_time" semantic conventions. It -// represents the UTC epoch seconds at which the message has been accepted and -// stored in the entity. -func MessagingEventHubsMessageEnqueuedTime(val int) attribute.KeyValue { - return MessagingEventHubsMessageEnqueuedTimeKey.Int(val) -} - -// MessagingGCPPubSubMessageAckDeadline returns an attribute KeyValue conforming -// to the "messaging.gcp_pubsub.message.ack_deadline" semantic conventions. It -// represents the ack deadline in seconds set for the modify ack deadline -// request. -func MessagingGCPPubSubMessageAckDeadline(val int) attribute.KeyValue { - return MessagingGCPPubSubMessageAckDeadlineKey.Int(val) -} - -// MessagingGCPPubSubMessageAckID returns an attribute KeyValue conforming to the -// "messaging.gcp_pubsub.message.ack_id" semantic conventions. It represents the -// ack id for a given message. -func MessagingGCPPubSubMessageAckID(val string) attribute.KeyValue { - return MessagingGCPPubSubMessageAckIDKey.String(val) -} - -// MessagingGCPPubSubMessageDeliveryAttempt returns an attribute KeyValue -// conforming to the "messaging.gcp_pubsub.message.delivery_attempt" semantic -// conventions. It represents the delivery attempt for a given message. -func MessagingGCPPubSubMessageDeliveryAttempt(val int) attribute.KeyValue { - return MessagingGCPPubSubMessageDeliveryAttemptKey.Int(val) -} - -// MessagingGCPPubSubMessageOrderingKey returns an attribute KeyValue conforming -// to the "messaging.gcp_pubsub.message.ordering_key" semantic conventions. It -// represents the ordering key for a given message. If the attribute is not -// present, the message does not have an ordering key. -func MessagingGCPPubSubMessageOrderingKey(val string) attribute.KeyValue { - return MessagingGCPPubSubMessageOrderingKeyKey.String(val) -} - -// MessagingKafkaMessageKey returns an attribute KeyValue conforming to the -// "messaging.kafka.message.key" semantic conventions. It represents the message -// keys in Kafka are used for grouping alike messages to ensure they're processed -// on the same partition. They differ from `messaging.message.id` in that they're -// not unique. If the key is `null`, the attribute MUST NOT be set. -func MessagingKafkaMessageKey(val string) attribute.KeyValue { - return MessagingKafkaMessageKeyKey.String(val) -} - -// MessagingKafkaMessageTombstone returns an attribute KeyValue conforming to the -// "messaging.kafka.message.tombstone" semantic conventions. It represents a -// boolean that is true if the message is a tombstone. -func MessagingKafkaMessageTombstone(val bool) attribute.KeyValue { - return MessagingKafkaMessageTombstoneKey.Bool(val) -} - -// MessagingKafkaOffset returns an attribute KeyValue conforming to the -// "messaging.kafka.offset" semantic conventions. It represents the offset of a -// record in the corresponding Kafka partition. -func MessagingKafkaOffset(val int) attribute.KeyValue { - return MessagingKafkaOffsetKey.Int(val) -} - -// MessagingMessageBodySize returns an attribute KeyValue conforming to the -// "messaging.message.body.size" semantic conventions. It represents the size of -// the message body in bytes. -func MessagingMessageBodySize(val int) attribute.KeyValue { - return MessagingMessageBodySizeKey.Int(val) -} - -// MessagingMessageConversationID returns an attribute KeyValue conforming to the -// "messaging.message.conversation_id" semantic conventions. It represents the -// conversation ID identifying the conversation to which the message belongs, -// represented as a string. Sometimes called "Correlation ID". -func MessagingMessageConversationID(val string) attribute.KeyValue { - return MessagingMessageConversationIDKey.String(val) -} - -// MessagingMessageEnvelopeSize returns an attribute KeyValue conforming to the -// "messaging.message.envelope.size" semantic conventions. It represents the size -// of the message body and metadata in bytes. -func MessagingMessageEnvelopeSize(val int) attribute.KeyValue { - return MessagingMessageEnvelopeSizeKey.Int(val) -} - -// MessagingMessageID returns an attribute KeyValue conforming to the -// "messaging.message.id" semantic conventions. It represents a value used by the -// messaging system as an identifier for the message, represented as a string. -func MessagingMessageID(val string) attribute.KeyValue { - return MessagingMessageIDKey.String(val) -} - -// MessagingOperationName returns an attribute KeyValue conforming to the -// "messaging.operation.name" semantic conventions. It represents the -// system-specific name of the messaging operation. -func MessagingOperationName(val string) attribute.KeyValue { - return MessagingOperationNameKey.String(val) -} - -// MessagingRabbitMQDestinationRoutingKey returns an attribute KeyValue -// conforming to the "messaging.rabbitmq.destination.routing_key" semantic -// conventions. It represents the rabbitMQ message routing key. -func MessagingRabbitMQDestinationRoutingKey(val string) attribute.KeyValue { - return MessagingRabbitMQDestinationRoutingKeyKey.String(val) -} - -// MessagingRabbitMQMessageDeliveryTag returns an attribute KeyValue conforming -// to the "messaging.rabbitmq.message.delivery_tag" semantic conventions. It -// represents the rabbitMQ message delivery tag. -func MessagingRabbitMQMessageDeliveryTag(val int) attribute.KeyValue { - return MessagingRabbitMQMessageDeliveryTagKey.Int(val) -} - -// MessagingRocketMQMessageDelayTimeLevel returns an attribute KeyValue -// conforming to the "messaging.rocketmq.message.delay_time_level" semantic -// conventions. It represents the delay time level for delay message, which -// determines the message delay time. -func MessagingRocketMQMessageDelayTimeLevel(val int) attribute.KeyValue { - return MessagingRocketMQMessageDelayTimeLevelKey.Int(val) -} - -// MessagingRocketMQMessageDeliveryTimestamp returns an attribute KeyValue -// conforming to the "messaging.rocketmq.message.delivery_timestamp" semantic -// conventions. It represents the timestamp in milliseconds that the delay -// message is expected to be delivered to consumer. -func MessagingRocketMQMessageDeliveryTimestamp(val int) attribute.KeyValue { - return MessagingRocketMQMessageDeliveryTimestampKey.Int(val) -} - -// MessagingRocketMQMessageGroup returns an attribute KeyValue conforming to the -// "messaging.rocketmq.message.group" semantic conventions. It represents the it -// is essential for FIFO message. Messages that belong to the same message group -// are always processed one by one within the same consumer group. -func MessagingRocketMQMessageGroup(val string) attribute.KeyValue { - return MessagingRocketMQMessageGroupKey.String(val) -} - -// MessagingRocketMQMessageKeys returns an attribute KeyValue conforming to the -// "messaging.rocketmq.message.keys" semantic conventions. It represents the -// key(s) of message, another way to mark message besides message id. -func MessagingRocketMQMessageKeys(val ...string) attribute.KeyValue { - return MessagingRocketMQMessageKeysKey.StringSlice(val) -} - -// MessagingRocketMQMessageTag returns an attribute KeyValue conforming to the -// "messaging.rocketmq.message.tag" semantic conventions. It represents the -// secondary classifier of message besides topic. -func MessagingRocketMQMessageTag(val string) attribute.KeyValue { - return MessagingRocketMQMessageTagKey.String(val) -} - -// MessagingRocketMQNamespace returns an attribute KeyValue conforming to the -// "messaging.rocketmq.namespace" semantic conventions. It represents the -// namespace of RocketMQ resources, resources in different namespaces are -// individual. -func MessagingRocketMQNamespace(val string) attribute.KeyValue { - return MessagingRocketMQNamespaceKey.String(val) -} - -// MessagingServiceBusMessageDeliveryCount returns an attribute KeyValue -// conforming to the "messaging.servicebus.message.delivery_count" semantic -// conventions. It represents the number of deliveries that have been attempted -// for this message. -func MessagingServiceBusMessageDeliveryCount(val int) attribute.KeyValue { - return MessagingServiceBusMessageDeliveryCountKey.Int(val) -} - -// MessagingServiceBusMessageEnqueuedTime returns an attribute KeyValue -// conforming to the "messaging.servicebus.message.enqueued_time" semantic -// conventions. It represents the UTC epoch seconds at which the message has been -// accepted and stored in the entity. -func MessagingServiceBusMessageEnqueuedTime(val int) attribute.KeyValue { - return MessagingServiceBusMessageEnqueuedTimeKey.Int(val) -} - -// Enum values for messaging.operation.type -var ( - // A message is created. "Create" spans always refer to a single message and are - // used to provide a unique creation context for messages in batch sending - // scenarios. - // - // Stability: development - MessagingOperationTypeCreate = MessagingOperationTypeKey.String("create") - // One or more messages are provided for sending to an intermediary. If a single - // message is sent, the context of the "Send" span can be used as the creation - // context and no "Create" span needs to be created. - // - // Stability: development - MessagingOperationTypeSend = MessagingOperationTypeKey.String("send") - // One or more messages are requested by a consumer. This operation refers to - // pull-based scenarios, where consumers explicitly call methods of messaging - // SDKs to receive messages. - // - // Stability: development - MessagingOperationTypeReceive = MessagingOperationTypeKey.String("receive") - // One or more messages are processed by a consumer. - // - // Stability: development - MessagingOperationTypeProcess = MessagingOperationTypeKey.String("process") - // One or more messages are settled. - // - // Stability: development - MessagingOperationTypeSettle = MessagingOperationTypeKey.String("settle") -) - -// Enum values for messaging.rocketmq.consumption_model -var ( - // Clustering consumption model - // Stability: development - MessagingRocketMQConsumptionModelClustering = MessagingRocketMQConsumptionModelKey.String("clustering") - // Broadcasting consumption model - // Stability: development - MessagingRocketMQConsumptionModelBroadcasting = MessagingRocketMQConsumptionModelKey.String("broadcasting") -) - -// Enum values for messaging.rocketmq.message.type -var ( - // Normal message - // Stability: development - MessagingRocketMQMessageTypeNormal = MessagingRocketMQMessageTypeKey.String("normal") - // FIFO message - // Stability: development - MessagingRocketMQMessageTypeFifo = MessagingRocketMQMessageTypeKey.String("fifo") - // Delay message - // Stability: development - MessagingRocketMQMessageTypeDelay = MessagingRocketMQMessageTypeKey.String("delay") - // Transaction message - // Stability: development - MessagingRocketMQMessageTypeTransaction = MessagingRocketMQMessageTypeKey.String("transaction") -) - -// Enum values for messaging.servicebus.disposition_status -var ( - // Message is completed - // Stability: development - MessagingServiceBusDispositionStatusComplete = MessagingServiceBusDispositionStatusKey.String("complete") - // Message is abandoned - // Stability: development - MessagingServiceBusDispositionStatusAbandon = MessagingServiceBusDispositionStatusKey.String("abandon") - // Message is sent to dead letter queue - // Stability: development - MessagingServiceBusDispositionStatusDeadLetter = MessagingServiceBusDispositionStatusKey.String("dead_letter") - // Message is deferred - // Stability: development - MessagingServiceBusDispositionStatusDefer = MessagingServiceBusDispositionStatusKey.String("defer") -) - -// Enum values for messaging.system -var ( - // Apache ActiveMQ - // Stability: development - MessagingSystemActiveMQ = MessagingSystemKey.String("activemq") - // Amazon Simple Notification Service (SNS) - // Stability: development - MessagingSystemAWSSNS = MessagingSystemKey.String("aws.sns") - // Amazon Simple Queue Service (SQS) - // Stability: development - MessagingSystemAWSSQS = MessagingSystemKey.String("aws_sqs") - // Azure Event Grid - // Stability: development - MessagingSystemEventGrid = MessagingSystemKey.String("eventgrid") - // Azure Event Hubs - // Stability: development - MessagingSystemEventHubs = MessagingSystemKey.String("eventhubs") - // Azure Service Bus - // Stability: development - MessagingSystemServiceBus = MessagingSystemKey.String("servicebus") - // Google Cloud Pub/Sub - // Stability: development - MessagingSystemGCPPubSub = MessagingSystemKey.String("gcp_pubsub") - // Java Message Service - // Stability: development - MessagingSystemJMS = MessagingSystemKey.String("jms") - // Apache Kafka - // Stability: development - MessagingSystemKafka = MessagingSystemKey.String("kafka") - // RabbitMQ - // Stability: development - MessagingSystemRabbitMQ = MessagingSystemKey.String("rabbitmq") - // Apache RocketMQ - // Stability: development - MessagingSystemRocketMQ = MessagingSystemKey.String("rocketmq") - // Apache Pulsar - // Stability: development - MessagingSystemPulsar = MessagingSystemKey.String("pulsar") -) - -// Namespace: network -const ( - // NetworkCarrierICCKey is the attribute Key conforming to the - // "network.carrier.icc" semantic conventions. It represents the ISO 3166-1 - // alpha-2 2-character country code associated with the mobile carrier network. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: DE - NetworkCarrierICCKey = attribute.Key("network.carrier.icc") - - // NetworkCarrierMCCKey is the attribute Key conforming to the - // "network.carrier.mcc" semantic conventions. It represents the mobile carrier - // country code. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 310 - NetworkCarrierMCCKey = attribute.Key("network.carrier.mcc") - - // NetworkCarrierMNCKey is the attribute Key conforming to the - // "network.carrier.mnc" semantic conventions. It represents the mobile carrier - // network code. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 001 - NetworkCarrierMNCKey = attribute.Key("network.carrier.mnc") - - // NetworkCarrierNameKey is the attribute Key conforming to the - // "network.carrier.name" semantic conventions. It represents the name of the - // mobile carrier. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: sprint - NetworkCarrierNameKey = attribute.Key("network.carrier.name") - - // NetworkConnectionStateKey is the attribute Key conforming to the - // "network.connection.state" semantic conventions. It represents the state of - // network connection. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "close_wait" - // Note: Connection states are defined as part of the [rfc9293] - // - // [rfc9293]: https://datatracker.ietf.org/doc/html/rfc9293#section-3.3.2 - NetworkConnectionStateKey = attribute.Key("network.connection.state") - - // NetworkConnectionSubtypeKey is the attribute Key conforming to the - // "network.connection.subtype" semantic conventions. It represents the this - // describes more details regarding the connection.type. It may be the type of - // cell technology connection, but it could be used for describing details about - // a wifi connection. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: LTE - NetworkConnectionSubtypeKey = attribute.Key("network.connection.subtype") - - // NetworkConnectionTypeKey is the attribute Key conforming to the - // "network.connection.type" semantic conventions. It represents the internet - // connection type. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: wifi - NetworkConnectionTypeKey = attribute.Key("network.connection.type") - - // NetworkInterfaceNameKey is the attribute Key conforming to the - // "network.interface.name" semantic conventions. It represents the network - // interface name. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "lo", "eth0" - NetworkInterfaceNameKey = attribute.Key("network.interface.name") - - // NetworkIODirectionKey is the attribute Key conforming to the - // "network.io.direction" semantic conventions. It represents the network IO - // operation direction. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "transmit" - NetworkIODirectionKey = attribute.Key("network.io.direction") - - // NetworkLocalAddressKey is the attribute Key conforming to the - // "network.local.address" semantic conventions. It represents the local address - // of the network connection - IP address or Unix domain socket name. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "10.1.2.80", "/tmp/my.sock" - NetworkLocalAddressKey = attribute.Key("network.local.address") - - // NetworkLocalPortKey is the attribute Key conforming to the - // "network.local.port" semantic conventions. It represents the local port - // number of the network connection. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: 65123 - NetworkLocalPortKey = attribute.Key("network.local.port") - - // NetworkPeerAddressKey is the attribute Key conforming to the - // "network.peer.address" semantic conventions. It represents the peer address - // of the network connection - IP address or Unix domain socket name. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "10.1.2.80", "/tmp/my.sock" - NetworkPeerAddressKey = attribute.Key("network.peer.address") - - // NetworkPeerPortKey is the attribute Key conforming to the "network.peer.port" - // semantic conventions. It represents the peer port number of the network - // connection. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: 65123 - NetworkPeerPortKey = attribute.Key("network.peer.port") - - // NetworkProtocolNameKey is the attribute Key conforming to the - // "network.protocol.name" semantic conventions. It represents the - // [OSI application layer] or non-OSI equivalent. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "amqp", "http", "mqtt" - // Note: The value SHOULD be normalized to lowercase. - // - // [OSI application layer]: https://wikipedia.org/wiki/Application_layer - NetworkProtocolNameKey = attribute.Key("network.protocol.name") - - // NetworkProtocolVersionKey is the attribute Key conforming to the - // "network.protocol.version" semantic conventions. It represents the actual - // version of the protocol used for network communication. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "1.1", "2" - // Note: If protocol version is subject to negotiation (for example using [ALPN] - // ), this attribute SHOULD be set to the negotiated version. If the actual - // protocol version is not known, this attribute SHOULD NOT be set. - // - // [ALPN]: https://www.rfc-editor.org/rfc/rfc7301.html - NetworkProtocolVersionKey = attribute.Key("network.protocol.version") - - // NetworkTransportKey is the attribute Key conforming to the - // "network.transport" semantic conventions. It represents the - // [OSI transport layer] or [inter-process communication method]. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "tcp", "udp" - // Note: The value SHOULD be normalized to lowercase. - // - // Consider always setting the transport when setting a port number, since - // a port number is ambiguous without knowing the transport. For example - // different processes could be listening on TCP port 12345 and UDP port 12345. - // - // [OSI transport layer]: https://wikipedia.org/wiki/Transport_layer - // [inter-process communication method]: https://wikipedia.org/wiki/Inter-process_communication - NetworkTransportKey = attribute.Key("network.transport") - - // NetworkTypeKey is the attribute Key conforming to the "network.type" semantic - // conventions. It represents the [OSI network layer] or non-OSI equivalent. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "ipv4", "ipv6" - // Note: The value SHOULD be normalized to lowercase. - // - // [OSI network layer]: https://wikipedia.org/wiki/Network_layer - NetworkTypeKey = attribute.Key("network.type") -) - -// NetworkCarrierICC returns an attribute KeyValue conforming to the -// "network.carrier.icc" semantic conventions. It represents the ISO 3166-1 -// alpha-2 2-character country code associated with the mobile carrier network. -func NetworkCarrierICC(val string) attribute.KeyValue { - return NetworkCarrierICCKey.String(val) -} - -// NetworkCarrierMCC returns an attribute KeyValue conforming to the -// "network.carrier.mcc" semantic conventions. It represents the mobile carrier -// country code. -func NetworkCarrierMCC(val string) attribute.KeyValue { - return NetworkCarrierMCCKey.String(val) -} - -// NetworkCarrierMNC returns an attribute KeyValue conforming to the -// "network.carrier.mnc" semantic conventions. It represents the mobile carrier -// network code. -func NetworkCarrierMNC(val string) attribute.KeyValue { - return NetworkCarrierMNCKey.String(val) -} - -// NetworkCarrierName returns an attribute KeyValue conforming to the -// "network.carrier.name" semantic conventions. It represents the name of the -// mobile carrier. -func NetworkCarrierName(val string) attribute.KeyValue { - return NetworkCarrierNameKey.String(val) -} - -// NetworkInterfaceName returns an attribute KeyValue conforming to the -// "network.interface.name" semantic conventions. It represents the network -// interface name. -func NetworkInterfaceName(val string) attribute.KeyValue { - return NetworkInterfaceNameKey.String(val) -} - -// NetworkLocalAddress returns an attribute KeyValue conforming to the -// "network.local.address" semantic conventions. It represents the local address -// of the network connection - IP address or Unix domain socket name. -func NetworkLocalAddress(val string) attribute.KeyValue { - return NetworkLocalAddressKey.String(val) -} - -// NetworkLocalPort returns an attribute KeyValue conforming to the -// "network.local.port" semantic conventions. It represents the local port number -// of the network connection. -func NetworkLocalPort(val int) attribute.KeyValue { - return NetworkLocalPortKey.Int(val) -} - -// NetworkPeerAddress returns an attribute KeyValue conforming to the -// "network.peer.address" semantic conventions. It represents the peer address of -// the network connection - IP address or Unix domain socket name. -func NetworkPeerAddress(val string) attribute.KeyValue { - return NetworkPeerAddressKey.String(val) -} - -// NetworkPeerPort returns an attribute KeyValue conforming to the -// "network.peer.port" semantic conventions. It represents the peer port number -// of the network connection. -func NetworkPeerPort(val int) attribute.KeyValue { - return NetworkPeerPortKey.Int(val) -} - -// NetworkProtocolName returns an attribute KeyValue conforming to the -// "network.protocol.name" semantic conventions. It represents the -// [OSI application layer] or non-OSI equivalent. -// -// [OSI application layer]: https://wikipedia.org/wiki/Application_layer -func NetworkProtocolName(val string) attribute.KeyValue { - return NetworkProtocolNameKey.String(val) -} - -// NetworkProtocolVersion returns an attribute KeyValue conforming to the -// "network.protocol.version" semantic conventions. It represents the actual -// version of the protocol used for network communication. -func NetworkProtocolVersion(val string) attribute.KeyValue { - return NetworkProtocolVersionKey.String(val) -} - -// Enum values for network.connection.state -var ( - // closed - // Stability: development - NetworkConnectionStateClosed = NetworkConnectionStateKey.String("closed") - // close_wait - // Stability: development - NetworkConnectionStateCloseWait = NetworkConnectionStateKey.String("close_wait") - // closing - // Stability: development - NetworkConnectionStateClosing = NetworkConnectionStateKey.String("closing") - // established - // Stability: development - NetworkConnectionStateEstablished = NetworkConnectionStateKey.String("established") - // fin_wait_1 - // Stability: development - NetworkConnectionStateFinWait1 = NetworkConnectionStateKey.String("fin_wait_1") - // fin_wait_2 - // Stability: development - NetworkConnectionStateFinWait2 = NetworkConnectionStateKey.String("fin_wait_2") - // last_ack - // Stability: development - NetworkConnectionStateLastAck = NetworkConnectionStateKey.String("last_ack") - // listen - // Stability: development - NetworkConnectionStateListen = NetworkConnectionStateKey.String("listen") - // syn_received - // Stability: development - NetworkConnectionStateSynReceived = NetworkConnectionStateKey.String("syn_received") - // syn_sent - // Stability: development - NetworkConnectionStateSynSent = NetworkConnectionStateKey.String("syn_sent") - // time_wait - // Stability: development - NetworkConnectionStateTimeWait = NetworkConnectionStateKey.String("time_wait") -) - -// Enum values for network.connection.subtype -var ( - // GPRS - // Stability: development - NetworkConnectionSubtypeGprs = NetworkConnectionSubtypeKey.String("gprs") - // EDGE - // Stability: development - NetworkConnectionSubtypeEdge = NetworkConnectionSubtypeKey.String("edge") - // UMTS - // Stability: development - NetworkConnectionSubtypeUmts = NetworkConnectionSubtypeKey.String("umts") - // CDMA - // Stability: development - NetworkConnectionSubtypeCdma = NetworkConnectionSubtypeKey.String("cdma") - // EVDO Rel. 0 - // Stability: development - NetworkConnectionSubtypeEvdo0 = NetworkConnectionSubtypeKey.String("evdo_0") - // EVDO Rev. A - // Stability: development - NetworkConnectionSubtypeEvdoA = NetworkConnectionSubtypeKey.String("evdo_a") - // CDMA2000 1XRTT - // Stability: development - NetworkConnectionSubtypeCdma20001xrtt = NetworkConnectionSubtypeKey.String("cdma2000_1xrtt") - // HSDPA - // Stability: development - NetworkConnectionSubtypeHsdpa = NetworkConnectionSubtypeKey.String("hsdpa") - // HSUPA - // Stability: development - NetworkConnectionSubtypeHsupa = NetworkConnectionSubtypeKey.String("hsupa") - // HSPA - // Stability: development - NetworkConnectionSubtypeHspa = NetworkConnectionSubtypeKey.String("hspa") - // IDEN - // Stability: development - NetworkConnectionSubtypeIden = NetworkConnectionSubtypeKey.String("iden") - // EVDO Rev. B - // Stability: development - NetworkConnectionSubtypeEvdoB = NetworkConnectionSubtypeKey.String("evdo_b") - // LTE - // Stability: development - NetworkConnectionSubtypeLte = NetworkConnectionSubtypeKey.String("lte") - // EHRPD - // Stability: development - NetworkConnectionSubtypeEhrpd = NetworkConnectionSubtypeKey.String("ehrpd") - // HSPAP - // Stability: development - NetworkConnectionSubtypeHspap = NetworkConnectionSubtypeKey.String("hspap") - // GSM - // Stability: development - NetworkConnectionSubtypeGsm = NetworkConnectionSubtypeKey.String("gsm") - // TD-SCDMA - // Stability: development - NetworkConnectionSubtypeTdScdma = NetworkConnectionSubtypeKey.String("td_scdma") - // IWLAN - // Stability: development - NetworkConnectionSubtypeIwlan = NetworkConnectionSubtypeKey.String("iwlan") - // 5G NR (New Radio) - // Stability: development - NetworkConnectionSubtypeNr = NetworkConnectionSubtypeKey.String("nr") - // 5G NRNSA (New Radio Non-Standalone) - // Stability: development - NetworkConnectionSubtypeNrnsa = NetworkConnectionSubtypeKey.String("nrnsa") - // LTE CA - // Stability: development - NetworkConnectionSubtypeLteCa = NetworkConnectionSubtypeKey.String("lte_ca") -) - -// Enum values for network.connection.type -var ( - // wifi - // Stability: development - NetworkConnectionTypeWifi = NetworkConnectionTypeKey.String("wifi") - // wired - // Stability: development - NetworkConnectionTypeWired = NetworkConnectionTypeKey.String("wired") - // cell - // Stability: development - NetworkConnectionTypeCell = NetworkConnectionTypeKey.String("cell") - // unavailable - // Stability: development - NetworkConnectionTypeUnavailable = NetworkConnectionTypeKey.String("unavailable") - // unknown - // Stability: development - NetworkConnectionTypeUnknown = NetworkConnectionTypeKey.String("unknown") -) - -// Enum values for network.io.direction -var ( - // transmit - // Stability: development - NetworkIODirectionTransmit = NetworkIODirectionKey.String("transmit") - // receive - // Stability: development - NetworkIODirectionReceive = NetworkIODirectionKey.String("receive") -) - -// Enum values for network.transport -var ( - // TCP - // Stability: stable - NetworkTransportTCP = NetworkTransportKey.String("tcp") - // UDP - // Stability: stable - NetworkTransportUDP = NetworkTransportKey.String("udp") - // Named or anonymous pipe. - // Stability: stable - NetworkTransportPipe = NetworkTransportKey.String("pipe") - // Unix domain socket - // Stability: stable - NetworkTransportUnix = NetworkTransportKey.String("unix") - // QUIC - // Stability: stable - NetworkTransportQUIC = NetworkTransportKey.String("quic") -) - -// Enum values for network.type -var ( - // IPv4 - // Stability: stable - NetworkTypeIPv4 = NetworkTypeKey.String("ipv4") - // IPv6 - // Stability: stable - NetworkTypeIPv6 = NetworkTypeKey.String("ipv6") -) - -// Namespace: nfs -const ( - // NfsOperationNameKey is the attribute Key conforming to the - // "nfs.operation.name" semantic conventions. It represents the NFSv4+ operation - // name. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "OPEN", "READ", "GETATTR" - NfsOperationNameKey = attribute.Key("nfs.operation.name") - - // NfsServerRepcacheStatusKey is the attribute Key conforming to the - // "nfs.server.repcache.status" semantic conventions. It represents the linux: - // one of "hit" (NFSD_STATS_RC_HITS), "miss" (NFSD_STATS_RC_MISSES), or - // "nocache" (NFSD_STATS_RC_NOCACHE -- uncacheable). - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: hit - NfsServerRepcacheStatusKey = attribute.Key("nfs.server.repcache.status") -) - -// NfsOperationName returns an attribute KeyValue conforming to the -// "nfs.operation.name" semantic conventions. It represents the NFSv4+ operation -// name. -func NfsOperationName(val string) attribute.KeyValue { - return NfsOperationNameKey.String(val) -} - -// NfsServerRepcacheStatus returns an attribute KeyValue conforming to the -// "nfs.server.repcache.status" semantic conventions. It represents the linux: -// one of "hit" (NFSD_STATS_RC_HITS), "miss" (NFSD_STATS_RC_MISSES), or "nocache" -// (NFSD_STATS_RC_NOCACHE -- uncacheable). -func NfsServerRepcacheStatus(val string) attribute.KeyValue { - return NfsServerRepcacheStatusKey.String(val) -} - -// Namespace: oci -const ( - // OCIManifestDigestKey is the attribute Key conforming to the - // "oci.manifest.digest" semantic conventions. It represents the digest of the - // OCI image manifest. For container images specifically is the digest by which - // the container image is known. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // "sha256:e4ca62c0d62f3e886e684806dfe9d4e0cda60d54986898173c1083856cfda0f4" - // Note: Follows [OCI Image Manifest Specification], and specifically the - // [Digest property]. - // An example can be found in [Example Image Manifest]. - // - // [OCI Image Manifest Specification]: https://github.com/opencontainers/image-spec/blob/main/manifest.md - // [Digest property]: https://github.com/opencontainers/image-spec/blob/main/descriptor.md#digests - // [Example Image Manifest]: https://github.com/opencontainers/image-spec/blob/main/manifest.md#example-image-manifest - OCIManifestDigestKey = attribute.Key("oci.manifest.digest") -) - -// OCIManifestDigest returns an attribute KeyValue conforming to the -// "oci.manifest.digest" semantic conventions. It represents the digest of the -// OCI image manifest. For container images specifically is the digest by which -// the container image is known. -func OCIManifestDigest(val string) attribute.KeyValue { - return OCIManifestDigestKey.String(val) -} - -// Namespace: onc_rpc -const ( - // OncRPCProcedureNameKey is the attribute Key conforming to the - // "onc_rpc.procedure.name" semantic conventions. It represents the ONC/Sun RPC - // procedure name. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "OPEN", "READ", "GETATTR" - OncRPCProcedureNameKey = attribute.Key("onc_rpc.procedure.name") - - // OncRPCProcedureNumberKey is the attribute Key conforming to the - // "onc_rpc.procedure.number" semantic conventions. It represents the ONC/Sun - // RPC procedure number. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - OncRPCProcedureNumberKey = attribute.Key("onc_rpc.procedure.number") - - // OncRPCProgramNameKey is the attribute Key conforming to the - // "onc_rpc.program.name" semantic conventions. It represents the ONC/Sun RPC - // program name. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "portmapper", "nfs" - OncRPCProgramNameKey = attribute.Key("onc_rpc.program.name") - - // OncRPCVersionKey is the attribute Key conforming to the "onc_rpc.version" - // semantic conventions. It represents the ONC/Sun RPC program version. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - OncRPCVersionKey = attribute.Key("onc_rpc.version") -) - -// OncRPCProcedureName returns an attribute KeyValue conforming to the -// "onc_rpc.procedure.name" semantic conventions. It represents the ONC/Sun RPC -// procedure name. -func OncRPCProcedureName(val string) attribute.KeyValue { - return OncRPCProcedureNameKey.String(val) -} - -// OncRPCProcedureNumber returns an attribute KeyValue conforming to the -// "onc_rpc.procedure.number" semantic conventions. It represents the ONC/Sun RPC -// procedure number. -func OncRPCProcedureNumber(val int) attribute.KeyValue { - return OncRPCProcedureNumberKey.Int(val) -} - -// OncRPCProgramName returns an attribute KeyValue conforming to the -// "onc_rpc.program.name" semantic conventions. It represents the ONC/Sun RPC -// program name. -func OncRPCProgramName(val string) attribute.KeyValue { - return OncRPCProgramNameKey.String(val) -} - -// OncRPCVersion returns an attribute KeyValue conforming to the -// "onc_rpc.version" semantic conventions. It represents the ONC/Sun RPC program -// version. -func OncRPCVersion(val int) attribute.KeyValue { - return OncRPCVersionKey.Int(val) -} - -// Namespace: openai -const ( - // OpenAIAPITypeKey is the attribute Key conforming to the "openai.api.type" - // semantic conventions. It represents the type of OpenAI API being used. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - OpenAIAPITypeKey = attribute.Key("openai.api.type") - - // OpenAIRequestServiceTierKey is the attribute Key conforming to the - // "openai.request.service_tier" semantic conventions. It represents the service - // tier requested. May be a specific tier, default, or auto. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "auto", "default" - OpenAIRequestServiceTierKey = attribute.Key("openai.request.service_tier") - - // OpenAIResponseServiceTierKey is the attribute Key conforming to the - // "openai.response.service_tier" semantic conventions. It represents the - // service tier used for the response. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "scale", "default" - OpenAIResponseServiceTierKey = attribute.Key("openai.response.service_tier") - - // OpenAIResponseSystemFingerprintKey is the attribute Key conforming to the - // "openai.response.system_fingerprint" semantic conventions. It represents a - // fingerprint to track any eventual change in the Generative AI environment. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "fp_44709d6fcb" - OpenAIResponseSystemFingerprintKey = attribute.Key("openai.response.system_fingerprint") -) - -// OpenAIResponseServiceTier returns an attribute KeyValue conforming to the -// "openai.response.service_tier" semantic conventions. It represents the service -// tier used for the response. -func OpenAIResponseServiceTier(val string) attribute.KeyValue { - return OpenAIResponseServiceTierKey.String(val) -} - -// OpenAIResponseSystemFingerprint returns an attribute KeyValue conforming to -// the "openai.response.system_fingerprint" semantic conventions. It represents a -// fingerprint to track any eventual change in the Generative AI environment. -func OpenAIResponseSystemFingerprint(val string) attribute.KeyValue { - return OpenAIResponseSystemFingerprintKey.String(val) -} - -// Enum values for openai.api.type -var ( - // The OpenAI [Chat Completions API]. - // Stability: development - // - // [Chat Completions API]: https://developers.openai.com/api/reference/chat-completions/overview - OpenAIAPITypeChatCompletions = OpenAIAPITypeKey.String("chat_completions") - // The OpenAI [Responses API]. - // Stability: development - // - // [Responses API]: https://developers.openai.com/api/reference/responses/overview - OpenAIAPITypeResponses = OpenAIAPITypeKey.String("responses") -) - -// Enum values for openai.request.service_tier -var ( - // The system will utilize scale tier credits until they are exhausted. - // Stability: development - OpenAIRequestServiceTierAuto = OpenAIRequestServiceTierKey.String("auto") - // The system will utilize the default scale tier. - // Stability: development - OpenAIRequestServiceTierDefault = OpenAIRequestServiceTierKey.String("default") -) - -// Namespace: openshift -const ( - // OpenShiftClusterquotaNameKey is the attribute Key conforming to the - // "openshift.clusterquota.name" semantic conventions. It represents the name of - // the cluster quota. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "opentelemetry" - OpenShiftClusterquotaNameKey = attribute.Key("openshift.clusterquota.name") - - // OpenShiftClusterquotaUIDKey is the attribute Key conforming to the - // "openshift.clusterquota.uid" semantic conventions. It represents the UID of - // the cluster quota. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff" - OpenShiftClusterquotaUIDKey = attribute.Key("openshift.clusterquota.uid") -) - -// OpenShiftClusterquotaName returns an attribute KeyValue conforming to the -// "openshift.clusterquota.name" semantic conventions. It represents the name of -// the cluster quota. -func OpenShiftClusterquotaName(val string) attribute.KeyValue { - return OpenShiftClusterquotaNameKey.String(val) -} - -// OpenShiftClusterquotaUID returns an attribute KeyValue conforming to the -// "openshift.clusterquota.uid" semantic conventions. It represents the UID of -// the cluster quota. -func OpenShiftClusterquotaUID(val string) attribute.KeyValue { - return OpenShiftClusterquotaUIDKey.String(val) -} - -// Namespace: opentracing -const ( - // OpenTracingRefTypeKey is the attribute Key conforming to the - // "opentracing.ref_type" semantic conventions. It represents the parent-child - // Reference type. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // Note: The causal relationship between a child Span and a parent Span. - OpenTracingRefTypeKey = attribute.Key("opentracing.ref_type") -) - -// Enum values for opentracing.ref_type -var ( - // The parent Span depends on the child Span in some capacity - // Stability: development - OpenTracingRefTypeChildOf = OpenTracingRefTypeKey.String("child_of") - // The parent Span doesn't depend in any way on the result of the child Span - // Stability: development - OpenTracingRefTypeFollowsFrom = OpenTracingRefTypeKey.String("follows_from") -) - -// Namespace: oracle -const ( - // OracleDBDomainKey is the attribute Key conforming to the "oracle.db.domain" - // semantic conventions. It represents the database domain associated with the - // connection. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "example.com", "corp.internal", "prod.db.local" - // Note: This attribute SHOULD be set to the value of the `DB_DOMAIN` - // initialization parameter, - // as exposed in `v$parameter`. `DB_DOMAIN` defines the domain portion of the - // global - // database name and SHOULD be configured when a database is, or may become, - // part of a - // distributed environment. Its value consists of one or more valid identifiers - // (alphanumeric ASCII characters) separated by periods. - OracleDBDomainKey = attribute.Key("oracle.db.domain") - - // OracleDBInstanceNameKey is the attribute Key conforming to the - // "oracle.db.instance.name" semantic conventions. It represents the instance - // name associated with the connection in an Oracle Real Application Clusters - // environment. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "ORCL1", "ORCL2", "ORCL3" - // Note: There can be multiple instances associated with a single database - // service. It indicates the - // unique instance name to which the connection is currently bound. For non-RAC - // databases, this value - // defaults to the `oracle.db.name`. - OracleDBInstanceNameKey = attribute.Key("oracle.db.instance.name") - - // OracleDBNameKey is the attribute Key conforming to the "oracle.db.name" - // semantic conventions. It represents the database name associated with the - // connection. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "ORCL1", "FREE" - // Note: This attribute SHOULD be set to the value of the parameter `DB_NAME` - // exposed in `v$parameter`. - OracleDBNameKey = attribute.Key("oracle.db.name") - - // OracleDBPdbKey is the attribute Key conforming to the "oracle.db.pdb" - // semantic conventions. It represents the pluggable database (PDB) name - // associated with the connection. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "PDB1", "FREEPDB" - // Note: This attribute SHOULD reflect the PDB that the session is currently - // connected to. - // If instrumentation cannot reliably obtain the active PDB name for each - // operation - // without issuing an additional query (such as `SELECT SYS_CONTEXT`), it is - // RECOMMENDED to fall back to the PDB name specified at connection - // establishment. - OracleDBPdbKey = attribute.Key("oracle.db.pdb") - - // OracleDBServiceKey is the attribute Key conforming to the "oracle.db.service" - // semantic conventions. It represents the service name currently associated - // with the database connection. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "order-processing-service", "db_low.adb.oraclecloud.com", - // "db_high.adb.oraclecloud.com" - // Note: The effective service name for a connection can change during its - // lifetime, - // for example after executing sql, `ALTER SESSION`. If an instrumentation - // cannot reliably - // obtain the current service name for each operation without issuing an - // additional - // query (such as `SELECT SYS_CONTEXT`), it is RECOMMENDED to fall back to the - // service name originally provided at connection establishment. - OracleDBServiceKey = attribute.Key("oracle.db.service") -) - -// OracleDBDomain returns an attribute KeyValue conforming to the -// "oracle.db.domain" semantic conventions. It represents the database domain -// associated with the connection. -func OracleDBDomain(val string) attribute.KeyValue { - return OracleDBDomainKey.String(val) -} - -// OracleDBInstanceName returns an attribute KeyValue conforming to the -// "oracle.db.instance.name" semantic conventions. It represents the instance -// name associated with the connection in an Oracle Real Application Clusters -// environment. -func OracleDBInstanceName(val string) attribute.KeyValue { - return OracleDBInstanceNameKey.String(val) -} - -// OracleDBName returns an attribute KeyValue conforming to the "oracle.db.name" -// semantic conventions. It represents the database name associated with the -// connection. -func OracleDBName(val string) attribute.KeyValue { - return OracleDBNameKey.String(val) -} - -// OracleDBPdb returns an attribute KeyValue conforming to the "oracle.db.pdb" -// semantic conventions. It represents the pluggable database (PDB) name -// associated with the connection. -func OracleDBPdb(val string) attribute.KeyValue { - return OracleDBPdbKey.String(val) -} - -// OracleDBService returns an attribute KeyValue conforming to the -// "oracle.db.service" semantic conventions. It represents the service name -// currently associated with the database connection. -func OracleDBService(val string) attribute.KeyValue { - return OracleDBServiceKey.String(val) -} - -// Namespace: oracle_cloud -const ( - // OracleCloudRealmKey is the attribute Key conforming to the - // "oracle_cloud.realm" semantic conventions. It represents the OCI realm - // identifier that indicates the isolated partition in which the tenancy and its - // resources reside. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "oc1", "oc2" - // Note: See [OCI documentation on realms] - // - // [OCI documentation on realms]: https://docs.oracle.com/iaas/Content/General/Concepts/regions.htm - OracleCloudRealmKey = attribute.Key("oracle_cloud.realm") -) - -// OracleCloudRealm returns an attribute KeyValue conforming to the -// "oracle_cloud.realm" semantic conventions. It represents the OCI realm -// identifier that indicates the isolated partition in which the tenancy and its -// resources reside. -func OracleCloudRealm(val string) attribute.KeyValue { - return OracleCloudRealmKey.String(val) -} - -// Namespace: os -const ( - // OSBuildIDKey is the attribute Key conforming to the "os.build_id" semantic - // conventions. It represents the unique identifier for a particular build or - // compilation of the operating system. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "TQ3C.230805.001.B2", "20E247", "22621" - OSBuildIDKey = attribute.Key("os.build_id") - - // OSDescriptionKey is the attribute Key conforming to the "os.description" - // semantic conventions. It represents the human readable (not intended to be - // parsed) OS version information, like e.g. reported by `ver` or - // `lsb_release -a` commands. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Microsoft Windows [Version 10.0.18363.778]", "Ubuntu 18.04.1 LTS" - OSDescriptionKey = attribute.Key("os.description") - - // OSNameKey is the attribute Key conforming to the "os.name" semantic - // conventions. It represents the human readable operating system name. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "iOS", "Android", "Ubuntu" - OSNameKey = attribute.Key("os.name") - - // OSTypeKey is the attribute Key conforming to the "os.type" semantic - // conventions. It represents the operating system type. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - OSTypeKey = attribute.Key("os.type") - - // OSVersionKey is the attribute Key conforming to the "os.version" semantic - // conventions. It represents the version string of the operating system as - // defined in [Version Attributes]. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "14.2.1", "18.04.1" - // - // [Version Attributes]: /docs/resource/README.md#version-attributes - OSVersionKey = attribute.Key("os.version") -) - -// OSBuildID returns an attribute KeyValue conforming to the "os.build_id" -// semantic conventions. It represents the unique identifier for a particular -// build or compilation of the operating system. -func OSBuildID(val string) attribute.KeyValue { - return OSBuildIDKey.String(val) -} - -// OSDescription returns an attribute KeyValue conforming to the "os.description" -// semantic conventions. It represents the human readable (not intended to be -// parsed) OS version information, like e.g. reported by `ver` or -// `lsb_release -a` commands. -func OSDescription(val string) attribute.KeyValue { - return OSDescriptionKey.String(val) -} - -// OSName returns an attribute KeyValue conforming to the "os.name" semantic -// conventions. It represents the human readable operating system name. -func OSName(val string) attribute.KeyValue { - return OSNameKey.String(val) -} - -// OSVersion returns an attribute KeyValue conforming to the "os.version" -// semantic conventions. It represents the version string of the operating system -// as defined in [Version Attributes]. -// -// [Version Attributes]: /docs/resource/README.md#version-attributes -func OSVersion(val string) attribute.KeyValue { - return OSVersionKey.String(val) -} - -// Enum values for os.type -var ( - // Microsoft Windows - // Stability: development - OSTypeWindows = OSTypeKey.String("windows") - // Linux - // Stability: development - OSTypeLinux = OSTypeKey.String("linux") - // Apple Darwin - // Stability: development - OSTypeDarwin = OSTypeKey.String("darwin") - // FreeBSD - // Stability: development - OSTypeFreeBSD = OSTypeKey.String("freebsd") - // NetBSD - // Stability: development - OSTypeNetBSD = OSTypeKey.String("netbsd") - // OpenBSD - // Stability: development - OSTypeOpenBSD = OSTypeKey.String("openbsd") - // DragonFly BSD - // Stability: development - OSTypeDragonflyBSD = OSTypeKey.String("dragonflybsd") - // HP-UX (Hewlett Packard Unix) - // Stability: development - OSTypeHPUX = OSTypeKey.String("hpux") - // AIX (Advanced Interactive eXecutive) - // Stability: development - OSTypeAIX = OSTypeKey.String("aix") - // SunOS, Oracle Solaris - // Stability: development - OSTypeSolaris = OSTypeKey.String("solaris") - // IBM z/OS - // Stability: development - OSTypeZOS = OSTypeKey.String("zos") -) - -// Namespace: otel -const ( - // OTelComponentNameKey is the attribute Key conforming to the - // "otel.component.name" semantic conventions. It represents a name uniquely - // identifying the instance of the OpenTelemetry component within its containing - // SDK instance. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "otlp_grpc_span_exporter/0", "custom-name" - // Note: Implementations SHOULD ensure a low cardinality for this attribute, - // even across application or SDK restarts. - // E.g. implementations MUST NOT use UUIDs as values for this attribute. - // - // Implementations MAY achieve these goals by following a - // `/` pattern, e.g. - // `batching_span_processor/0`. - // Hereby `otel.component.type` refers to the corresponding attribute value of - // the component. - // - // The value of `instance-counter` MAY be automatically assigned by the - // component and uniqueness within the enclosing SDK instance MUST be - // guaranteed. - // For example, `` MAY be implemented by using a monotonically - // increasing counter (starting with `0`), which is incremented every time an - // instance of the given component type is started. - // - // With this implementation, for example the first Batching Span Processor would - // have `batching_span_processor/0` - // as `otel.component.name`, the second one `batching_span_processor/1` and so - // on. - // These values will therefore be reused in the case of an application restart. - OTelComponentNameKey = attribute.Key("otel.component.name") - - // OTelComponentTypeKey is the attribute Key conforming to the - // "otel.component.type" semantic conventions. It represents a name identifying - // the type of the OpenTelemetry component. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "batching_span_processor", "com.example.MySpanExporter" - // Note: If none of the standardized values apply, implementations SHOULD use - // the language-defined name of the type. - // E.g. for Java the fully qualified classname SHOULD be used in this case. - OTelComponentTypeKey = attribute.Key("otel.component.type") - - // OTelEventNameKey is the attribute Key conforming to the "otel.event.name" - // semantic conventions. It represents the identifies the class / type of event. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "browser.mouse.click", "device.app.lifecycle" - // Note: This attribute SHOULD be used by non-OTLP exporters when destination - // does not support `EventName` or equivalent field. This attribute MAY be used - // by applications using existing logging libraries so that it can be used to - // set the `EventName` field by Collector or SDK components. - OTelEventNameKey = attribute.Key("otel.event.name") - - // OTelScopeNameKey is the attribute Key conforming to the "otel.scope.name" - // semantic conventions. It represents the name of the instrumentation scope - ( - // `InstrumentationScope.Name` in OTLP). - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "io.opentelemetry.contrib.mongodb" - OTelScopeNameKey = attribute.Key("otel.scope.name") - - // OTelScopeSchemaURLKey is the attribute Key conforming to the - // "otel.scope.schema_url" semantic conventions. It represents the schema URL of - // the instrumentation scope. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "https://opentelemetry.io/schemas/1.31.0" - OTelScopeSchemaURLKey = attribute.Key("otel.scope.schema_url") - - // OTelScopeVersionKey is the attribute Key conforming to the - // "otel.scope.version" semantic conventions. It represents the version of the - // instrumentation scope - (`InstrumentationScope.Version` in OTLP). - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "1.0.0" - OTelScopeVersionKey = attribute.Key("otel.scope.version") - - // OTelSpanParentOriginKey is the attribute Key conforming to the - // "otel.span.parent.origin" semantic conventions. It represents the determines - // whether the span has a parent span, and if so, - // [whether it is a remote parent]. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // - // [whether it is a remote parent]: https://opentelemetry.io/docs/specs/otel/trace/api/#isremote - OTelSpanParentOriginKey = attribute.Key("otel.span.parent.origin") - - // OTelSpanSamplingResultKey is the attribute Key conforming to the - // "otel.span.sampling_result" semantic conventions. It represents the result - // value of the sampler for this span. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - OTelSpanSamplingResultKey = attribute.Key("otel.span.sampling_result") - - // OTelStatusCodeKey is the attribute Key conforming to the "otel.status_code" - // semantic conventions. It represents the name of the code, either "OK" or - // "ERROR". MUST NOT be set if the status code is UNSET. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: - OTelStatusCodeKey = attribute.Key("otel.status_code") - - // OTelStatusDescriptionKey is the attribute Key conforming to the - // "otel.status_description" semantic conventions. It represents the description - // of the Status if it has a value, otherwise not set. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "resource not found" - OTelStatusDescriptionKey = attribute.Key("otel.status_description") -) - -// OTelComponentName returns an attribute KeyValue conforming to the -// "otel.component.name" semantic conventions. It represents a name uniquely -// identifying the instance of the OpenTelemetry component within its containing -// SDK instance. -func OTelComponentName(val string) attribute.KeyValue { - return OTelComponentNameKey.String(val) -} - -// OTelEventName returns an attribute KeyValue conforming to the -// "otel.event.name" semantic conventions. It represents the identifies the class -// / type of event. -func OTelEventName(val string) attribute.KeyValue { - return OTelEventNameKey.String(val) -} - -// OTelScopeName returns an attribute KeyValue conforming to the -// "otel.scope.name" semantic conventions. It represents the name of the -// instrumentation scope - (`InstrumentationScope.Name` in OTLP). -func OTelScopeName(val string) attribute.KeyValue { - return OTelScopeNameKey.String(val) -} - -// OTelScopeSchemaURL returns an attribute KeyValue conforming to the -// "otel.scope.schema_url" semantic conventions. It represents the schema URL of -// the instrumentation scope. -func OTelScopeSchemaURL(val string) attribute.KeyValue { - return OTelScopeSchemaURLKey.String(val) -} - -// OTelScopeVersion returns an attribute KeyValue conforming to the -// "otel.scope.version" semantic conventions. It represents the version of the -// instrumentation scope - (`InstrumentationScope.Version` in OTLP). -func OTelScopeVersion(val string) attribute.KeyValue { - return OTelScopeVersionKey.String(val) -} - -// OTelStatusDescription returns an attribute KeyValue conforming to the -// "otel.status_description" semantic conventions. It represents the description -// of the Status if it has a value, otherwise not set. -func OTelStatusDescription(val string) attribute.KeyValue { - return OTelStatusDescriptionKey.String(val) -} - -// Enum values for otel.component.type -var ( - // The builtin SDK batching span processor - // - // Stability: development - OTelComponentTypeBatchingSpanProcessor = OTelComponentTypeKey.String("batching_span_processor") - // The builtin SDK simple span processor - // - // Stability: development - OTelComponentTypeSimpleSpanProcessor = OTelComponentTypeKey.String("simple_span_processor") - // The builtin SDK batching log record processor - // - // Stability: development - OTelComponentTypeBatchingLogProcessor = OTelComponentTypeKey.String("batching_log_processor") - // The builtin SDK simple log record processor - // - // Stability: development - OTelComponentTypeSimpleLogProcessor = OTelComponentTypeKey.String("simple_log_processor") - // OTLP span exporter over gRPC with protobuf serialization - // - // Stability: development - OTelComponentTypeOtlpGRPCSpanExporter = OTelComponentTypeKey.String("otlp_grpc_span_exporter") - // OTLP span exporter over HTTP with protobuf serialization - // - // Stability: development - OTelComponentTypeOtlpHTTPSpanExporter = OTelComponentTypeKey.String("otlp_http_span_exporter") - // OTLP span exporter over HTTP with JSON serialization - // - // Stability: development - OTelComponentTypeOtlpHTTPJSONSpanExporter = OTelComponentTypeKey.String("otlp_http_json_span_exporter") - // Zipkin span exporter over HTTP - // - // Stability: development - OTelComponentTypeZipkinHTTPSpanExporter = OTelComponentTypeKey.String("zipkin_http_span_exporter") - // OTLP log record exporter over gRPC with protobuf serialization - // - // Stability: development - OTelComponentTypeOtlpGRPCLogExporter = OTelComponentTypeKey.String("otlp_grpc_log_exporter") - // OTLP log record exporter over HTTP with protobuf serialization - // - // Stability: development - OTelComponentTypeOtlpHTTPLogExporter = OTelComponentTypeKey.String("otlp_http_log_exporter") - // OTLP log record exporter over HTTP with JSON serialization - // - // Stability: development - OTelComponentTypeOtlpHTTPJSONLogExporter = OTelComponentTypeKey.String("otlp_http_json_log_exporter") - // The builtin SDK periodically exporting metric reader - // - // Stability: development - OTelComponentTypePeriodicMetricReader = OTelComponentTypeKey.String("periodic_metric_reader") - // OTLP metric exporter over gRPC with protobuf serialization - // - // Stability: development - OTelComponentTypeOtlpGRPCMetricExporter = OTelComponentTypeKey.String("otlp_grpc_metric_exporter") - // OTLP metric exporter over HTTP with protobuf serialization - // - // Stability: development - OTelComponentTypeOtlpHTTPMetricExporter = OTelComponentTypeKey.String("otlp_http_metric_exporter") - // OTLP metric exporter over HTTP with JSON serialization - // - // Stability: development - OTelComponentTypeOtlpHTTPJSONMetricExporter = OTelComponentTypeKey.String("otlp_http_json_metric_exporter") - // Prometheus metric exporter over HTTP with the default text-based format - // - // Stability: development - OTelComponentTypePrometheusHTTPTextMetricExporter = OTelComponentTypeKey.String("prometheus_http_text_metric_exporter") -) - -// Enum values for otel.span.parent.origin -var ( - // The span does not have a parent, it is a root span - // Stability: development - OTelSpanParentOriginNone = OTelSpanParentOriginKey.String("none") - // The span has a parent and the parent's span context [isRemote()] is false - // Stability: development - // - // [isRemote()]: https://opentelemetry.io/docs/specs/otel/trace/api/#isremote - OTelSpanParentOriginLocal = OTelSpanParentOriginKey.String("local") - // The span has a parent and the parent's span context [isRemote()] is true - // Stability: development - // - // [isRemote()]: https://opentelemetry.io/docs/specs/otel/trace/api/#isremote - OTelSpanParentOriginRemote = OTelSpanParentOriginKey.String("remote") -) - -// Enum values for otel.span.sampling_result -var ( - // The span is not sampled and not recording - // Stability: development - OTelSpanSamplingResultDrop = OTelSpanSamplingResultKey.String("DROP") - // The span is not sampled, but recording - // Stability: development - OTelSpanSamplingResultRecordOnly = OTelSpanSamplingResultKey.String("RECORD_ONLY") - // The span is sampled and recording - // Stability: development - OTelSpanSamplingResultRecordAndSample = OTelSpanSamplingResultKey.String("RECORD_AND_SAMPLE") -) - -// Enum values for otel.status_code -var ( - // The operation has been validated by an Application developer or Operator to - // have completed successfully. - // Stability: stable - OTelStatusCodeOk = OTelStatusCodeKey.String("OK") - // The operation contains an error. - // Stability: stable - OTelStatusCodeError = OTelStatusCodeKey.String("ERROR") -) - -// Namespace: pprof -const ( - // PprofLocationIsFoldedKey is the attribute Key conforming to the - // "pprof.location.is_folded" semantic conventions. It represents the provides - // an indication that multiple symbols map to this location's address, for - // example due to identical code folding by the linker. In that case the line - // information represents one of the multiple symbols. This field must be - // recomputed when the symbolization state of the profile changes. - // - // Type: boolean - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - PprofLocationIsFoldedKey = attribute.Key("pprof.location.is_folded") - - // PprofMappingHasFilenamesKey is the attribute Key conforming to the - // "pprof.mapping.has_filenames" semantic conventions. It represents the - // indicates that there are filenames related to this mapping. - // - // Type: boolean - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - PprofMappingHasFilenamesKey = attribute.Key("pprof.mapping.has_filenames") - - // PprofMappingHasFunctionsKey is the attribute Key conforming to the - // "pprof.mapping.has_functions" semantic conventions. It represents the - // indicates that there are functions related to this mapping. - // - // Type: boolean - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - PprofMappingHasFunctionsKey = attribute.Key("pprof.mapping.has_functions") - - // PprofMappingHasInlineFramesKey is the attribute Key conforming to the - // "pprof.mapping.has_inline_frames" semantic conventions. It represents the - // indicates that there are inline frames related to this mapping. - // - // Type: boolean - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - PprofMappingHasInlineFramesKey = attribute.Key("pprof.mapping.has_inline_frames") - - // PprofMappingHasLineNumbersKey is the attribute Key conforming to the - // "pprof.mapping.has_line_numbers" semantic conventions. It represents the - // indicates that there are line numbers related to this mapping. - // - // Type: boolean - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - PprofMappingHasLineNumbersKey = attribute.Key("pprof.mapping.has_line_numbers") - - // PprofProfileCommentKey is the attribute Key conforming to the - // "pprof.profile.comment" semantic conventions. It represents the free-form - // text associated with the profile. This field should not be used to store any - // machine-readable information, it is only for human-friendly content. - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "hello world", "bazinga" - PprofProfileCommentKey = attribute.Key("pprof.profile.comment") - - // PprofProfileDocURLKey is the attribute Key conforming to the - // "pprof.profile.doc_url" semantic conventions. It represents the documentation - // link for this profile type. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "http://pprof.example.com/cpu-profile.html" - // Note: The URL must be absolute and may be missing if the profile was - // generated by code that did not supply a link - PprofProfileDocURLKey = attribute.Key("pprof.profile.doc_url") - - // PprofProfileDropFramesKey is the attribute Key conforming to the - // "pprof.profile.drop_frames" semantic conventions. It represents the frames - // with Function.function_name fully matching the regexp will be dropped from - // the samples, along with their successors. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "/foobar/" - PprofProfileDropFramesKey = attribute.Key("pprof.profile.drop_frames") - - // PprofProfileKeepFramesKey is the attribute Key conforming to the - // "pprof.profile.keep_frames" semantic conventions. It represents the frames - // with Function.function_name fully matching the regexp will be kept, even if - // it matches drop_frames. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "/bazinga/" - PprofProfileKeepFramesKey = attribute.Key("pprof.profile.keep_frames") - - // PprofScopeDefaultSampleTypeKey is the attribute Key conforming to the - // "pprof.scope.default_sample_type" semantic conventions. It represents the - // records the pprof's default_sample_type in the original profile. Not set if - // the default sample type was missing. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "cpu" - // Note: This attribute, if present, MUST be set at the scope level - // (resource_profiles[].scope_profiles[].scope.attributes[]). - PprofScopeDefaultSampleTypeKey = attribute.Key("pprof.scope.default_sample_type") - - // PprofScopeSampleTypeOrderKey is the attribute Key conforming to the - // "pprof.scope.sample_type_order" semantic conventions. It represents the - // records the indexes of the sample types in the original profile. - // - // Type: int[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 3, 0, 1, 2 - // Note: This attribute, if present, MUST be set at the scope level - // (resource_profiles[].scope_profiles[].scope.attributes[]). - PprofScopeSampleTypeOrderKey = attribute.Key("pprof.scope.sample_type_order") -) - -// PprofLocationIsFolded returns an attribute KeyValue conforming to the -// "pprof.location.is_folded" semantic conventions. It represents the provides an -// indication that multiple symbols map to this location's address, for example -// due to identical code folding by the linker. In that case the line information -// represents one of the multiple symbols. This field must be recomputed when the -// symbolization state of the profile changes. -func PprofLocationIsFolded(val bool) attribute.KeyValue { - return PprofLocationIsFoldedKey.Bool(val) -} - -// PprofMappingHasFilenames returns an attribute KeyValue conforming to the -// "pprof.mapping.has_filenames" semantic conventions. It represents the -// indicates that there are filenames related to this mapping. -func PprofMappingHasFilenames(val bool) attribute.KeyValue { - return PprofMappingHasFilenamesKey.Bool(val) -} - -// PprofMappingHasFunctions returns an attribute KeyValue conforming to the -// "pprof.mapping.has_functions" semantic conventions. It represents the -// indicates that there are functions related to this mapping. -func PprofMappingHasFunctions(val bool) attribute.KeyValue { - return PprofMappingHasFunctionsKey.Bool(val) -} - -// PprofMappingHasInlineFrames returns an attribute KeyValue conforming to the -// "pprof.mapping.has_inline_frames" semantic conventions. It represents the -// indicates that there are inline frames related to this mapping. -func PprofMappingHasInlineFrames(val bool) attribute.KeyValue { - return PprofMappingHasInlineFramesKey.Bool(val) -} - -// PprofMappingHasLineNumbers returns an attribute KeyValue conforming to the -// "pprof.mapping.has_line_numbers" semantic conventions. It represents the -// indicates that there are line numbers related to this mapping. -func PprofMappingHasLineNumbers(val bool) attribute.KeyValue { - return PprofMappingHasLineNumbersKey.Bool(val) -} - -// PprofProfileComment returns an attribute KeyValue conforming to the -// "pprof.profile.comment" semantic conventions. It represents the free-form text -// associated with the profile. This field should not be used to store any -// machine-readable information, it is only for human-friendly content. -func PprofProfileComment(val ...string) attribute.KeyValue { - return PprofProfileCommentKey.StringSlice(val) -} - -// PprofProfileDocURL returns an attribute KeyValue conforming to the -// "pprof.profile.doc_url" semantic conventions. It represents the documentation -// link for this profile type. -func PprofProfileDocURL(val string) attribute.KeyValue { - return PprofProfileDocURLKey.String(val) -} - -// PprofProfileDropFrames returns an attribute KeyValue conforming to the -// "pprof.profile.drop_frames" semantic conventions. It represents the frames -// with Function.function_name fully matching the regexp will be dropped from the -// samples, along with their successors. -func PprofProfileDropFrames(val string) attribute.KeyValue { - return PprofProfileDropFramesKey.String(val) -} - -// PprofProfileKeepFrames returns an attribute KeyValue conforming to the -// "pprof.profile.keep_frames" semantic conventions. It represents the frames -// with Function.function_name fully matching the regexp will be kept, even if it -// matches drop_frames. -func PprofProfileKeepFrames(val string) attribute.KeyValue { - return PprofProfileKeepFramesKey.String(val) -} - -// PprofScopeDefaultSampleType returns an attribute KeyValue conforming to the -// "pprof.scope.default_sample_type" semantic conventions. It represents the -// records the pprof's default_sample_type in the original profile. Not set if -// the default sample type was missing. -func PprofScopeDefaultSampleType(val string) attribute.KeyValue { - return PprofScopeDefaultSampleTypeKey.String(val) -} - -// PprofScopeSampleTypeOrder returns an attribute KeyValue conforming to the -// "pprof.scope.sample_type_order" semantic conventions. It represents the -// records the indexes of the sample types in the original profile. -func PprofScopeSampleTypeOrder(val ...int) attribute.KeyValue { - return PprofScopeSampleTypeOrderKey.IntSlice(val) -} - -// Namespace: process -const ( - // ProcessArgsCountKey is the attribute Key conforming to the - // "process.args_count" semantic conventions. It represents the length of the - // process.command_args array. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 4 - // Note: This field can be useful for querying or performing bucket analysis on - // how many arguments were provided to start a process. More arguments may be an - // indication of suspicious activity. - ProcessArgsCountKey = attribute.Key("process.args_count") - - // ProcessCommandKey is the attribute Key conforming to the "process.command" - // semantic conventions. It represents the command used to launch the process - // (i.e. the command name). On Linux based systems, can be set to the zeroth - // string in `proc/[pid]/cmdline`. On Windows, can be set to the first parameter - // extracted from `GetCommandLineW`. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "cmd/otelcol" - ProcessCommandKey = attribute.Key("process.command") - - // ProcessCommandArgsKey is the attribute Key conforming to the - // "process.command_args" semantic conventions. It represents the all the - // command arguments (including the command/executable itself) as received by - // the process. On Linux-based systems (and some other Unixoid systems - // supporting procfs), can be set according to the list of null-delimited - // strings extracted from `proc/[pid]/cmdline`. For libc-based executables, this - // would be the full argv vector passed to `main`. SHOULD NOT be collected by - // default unless there is sanitization that excludes sensitive data. - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "cmd/otecol", "--config=config.yaml" - ProcessCommandArgsKey = attribute.Key("process.command_args") - - // ProcessCommandLineKey is the attribute Key conforming to the - // "process.command_line" semantic conventions. It represents the full command - // used to launch the process as a single string representing the full command. - // On Windows, can be set to the result of `GetCommandLineW`. Do not set this if - // you have to assemble it just for monitoring; use `process.command_args` - // instead. SHOULD NOT be collected by default unless there is sanitization that - // excludes sensitive data. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "C:\cmd\otecol --config="my directory\config.yaml"" - ProcessCommandLineKey = attribute.Key("process.command_line") - - // ProcessContextSwitchTypeKey is the attribute Key conforming to the - // "process.context_switch.type" semantic conventions. It represents the - // specifies whether the context switches for this data point were voluntary or - // involuntary. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - ProcessContextSwitchTypeKey = attribute.Key("process.context_switch.type") - - // ProcessCreationTimeKey is the attribute Key conforming to the - // "process.creation.time" semantic conventions. It represents the date and time - // the process was created, in ISO 8601 format. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "2023-11-21T09:25:34.853Z" - ProcessCreationTimeKey = attribute.Key("process.creation.time") - - // ProcessExecutableBuildIDGNUKey is the attribute Key conforming to the - // "process.executable.build_id.gnu" semantic conventions. It represents the GNU - // build ID as found in the `.note.gnu.build-id` ELF section (hex string). - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "c89b11207f6479603b0d49bf291c092c2b719293" - ProcessExecutableBuildIDGNUKey = attribute.Key("process.executable.build_id.gnu") - - // ProcessExecutableBuildIDGoKey is the attribute Key conforming to the - // "process.executable.build_id.go" semantic conventions. It represents the Go - // build ID as retrieved by `go tool buildid `. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // "foh3mEXu7BLZjsN9pOwG/kATcXlYVCDEFouRMQed_/WwRFB1hPo9LBkekthSPG/x8hMC8emW2cCjXD0_1aY" - ProcessExecutableBuildIDGoKey = attribute.Key("process.executable.build_id.go") - - // ProcessExecutableBuildIDHtlhashKey is the attribute Key conforming to the - // "process.executable.build_id.htlhash" semantic conventions. It represents the - // profiling specific build ID for executables. See the OTel specification for - // Profiles for more information. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "600DCAFE4A110000F2BF38C493F5FB92" - ProcessExecutableBuildIDHtlhashKey = attribute.Key("process.executable.build_id.htlhash") - - // ProcessExecutableNameKey is the attribute Key conforming to the - // "process.executable.name" semantic conventions. It represents the name of the - // process executable. On Linux based systems, this SHOULD be set to the base - // name of the target of `/proc/[pid]/exe`. On Windows, this SHOULD be set to - // the base name of `GetProcessImageFileNameW`. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "otelcol" - ProcessExecutableNameKey = attribute.Key("process.executable.name") - - // ProcessExecutablePathKey is the attribute Key conforming to the - // "process.executable.path" semantic conventions. It represents the full path - // to the process executable. On Linux based systems, can be set to the target - // of `proc/[pid]/exe`. On Windows, can be set to the result of - // `GetProcessImageFileNameW`. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "/usr/bin/cmd/otelcol" - ProcessExecutablePathKey = attribute.Key("process.executable.path") - - // ProcessExitCodeKey is the attribute Key conforming to the "process.exit.code" - // semantic conventions. It represents the exit code of the process. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 127 - ProcessExitCodeKey = attribute.Key("process.exit.code") - - // ProcessExitTimeKey is the attribute Key conforming to the "process.exit.time" - // semantic conventions. It represents the date and time the process exited, in - // ISO 8601 format. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "2023-11-21T09:26:12.315Z" - ProcessExitTimeKey = attribute.Key("process.exit.time") - - // ProcessGroupLeaderPIDKey is the attribute Key conforming to the - // "process.group_leader.pid" semantic conventions. It represents the PID of the - // process's group leader. This is also the process group ID (PGID) of the - // process. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 23 - ProcessGroupLeaderPIDKey = attribute.Key("process.group_leader.pid") - - // ProcessInteractiveKey is the attribute Key conforming to the - // "process.interactive" semantic conventions. It represents the whether the - // process is connected to an interactive shell. - // - // Type: boolean - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - ProcessInteractiveKey = attribute.Key("process.interactive") - - // ProcessLinuxCgroupKey is the attribute Key conforming to the - // "process.linux.cgroup" semantic conventions. It represents the control group - // associated with the process. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "1:name=systemd:/user.slice/user-1000.slice/session-3.scope", - // "0::/user.slice/user-1000.slice/user@1000.service/tmux-spawn-0267755b-4639-4a27-90ed-f19f88e53748.scope" - // Note: Control groups (cgroups) are a kernel feature used to organize and - // manage process resources. This attribute provides the path(s) to the - // cgroup(s) associated with the process, which should match the contents of the - // [/proc/[PID]/cgroup] file. - // - // [/proc/[PID]/cgroup]: https://man7.org/linux/man-pages/man7/cgroups.7.html - ProcessLinuxCgroupKey = attribute.Key("process.linux.cgroup") - - // ProcessOwnerKey is the attribute Key conforming to the "process.owner" - // semantic conventions. It represents the username of the user that owns the - // process. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "root" - ProcessOwnerKey = attribute.Key("process.owner") - - // ProcessParentPIDKey is the attribute Key conforming to the - // "process.parent_pid" semantic conventions. It represents the parent Process - // identifier (PPID). - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 111 - ProcessParentPIDKey = attribute.Key("process.parent_pid") - - // ProcessPIDKey is the attribute Key conforming to the "process.pid" semantic - // conventions. It represents the process identifier (PID). - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 1234 - ProcessPIDKey = attribute.Key("process.pid") - - // ProcessRealUserIDKey is the attribute Key conforming to the - // "process.real_user.id" semantic conventions. It represents the real user ID - // (RUID) of the process. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 1000 - ProcessRealUserIDKey = attribute.Key("process.real_user.id") - - // ProcessRealUserNameKey is the attribute Key conforming to the - // "process.real_user.name" semantic conventions. It represents the username of - // the real user of the process. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "operator" - ProcessRealUserNameKey = attribute.Key("process.real_user.name") - - // ProcessRuntimeDescriptionKey is the attribute Key conforming to the - // "process.runtime.description" semantic conventions. It represents an - // additional description about the runtime of the process, for example a - // specific vendor customization of the runtime environment. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: Eclipse OpenJ9 Eclipse OpenJ9 VM openj9-0.21.0 - ProcessRuntimeDescriptionKey = attribute.Key("process.runtime.description") - - // ProcessRuntimeNameKey is the attribute Key conforming to the - // "process.runtime.name" semantic conventions. It represents the name of the - // runtime of this process. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "OpenJDK Runtime Environment" - ProcessRuntimeNameKey = attribute.Key("process.runtime.name") - - // ProcessRuntimeVersionKey is the attribute Key conforming to the - // "process.runtime.version" semantic conventions. It represents the version of - // the runtime of this process, as returned by the runtime without modification. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 14.0.2 - ProcessRuntimeVersionKey = attribute.Key("process.runtime.version") - - // ProcessSavedUserIDKey is the attribute Key conforming to the - // "process.saved_user.id" semantic conventions. It represents the saved user ID - // (SUID) of the process. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 1002 - ProcessSavedUserIDKey = attribute.Key("process.saved_user.id") - - // ProcessSavedUserNameKey is the attribute Key conforming to the - // "process.saved_user.name" semantic conventions. It represents the username of - // the saved user. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "operator" - ProcessSavedUserNameKey = attribute.Key("process.saved_user.name") - - // ProcessSessionLeaderPIDKey is the attribute Key conforming to the - // "process.session_leader.pid" semantic conventions. It represents the PID of - // the process's session leader. This is also the session ID (SID) of the - // process. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 14 - ProcessSessionLeaderPIDKey = attribute.Key("process.session_leader.pid") - - // ProcessStateKey is the attribute Key conforming to the "process.state" - // semantic conventions. It represents the process state, e.g., - // [Linux Process State Codes]. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "running" - // - // [Linux Process State Codes]: https://man7.org/linux/man-pages/man1/ps.1.html#PROCESS_STATE_CODES - ProcessStateKey = attribute.Key("process.state") - - // ProcessTitleKey is the attribute Key conforming to the "process.title" - // semantic conventions. It represents the process title (proctitle). - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "cat /etc/hostname", "xfce4-session", "bash" - // Note: In many Unix-like systems, process title (proctitle), is the string - // that represents the name or command line of a running process, displayed by - // system monitoring tools like ps, top, and htop. - ProcessTitleKey = attribute.Key("process.title") - - // ProcessUserIDKey is the attribute Key conforming to the "process.user.id" - // semantic conventions. It represents the effective user ID (EUID) of the - // process. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 1001 - ProcessUserIDKey = attribute.Key("process.user.id") - - // ProcessUserNameKey is the attribute Key conforming to the "process.user.name" - // semantic conventions. It represents the username of the effective user of the - // process. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "root" - ProcessUserNameKey = attribute.Key("process.user.name") - - // ProcessVpidKey is the attribute Key conforming to the "process.vpid" semantic - // conventions. It represents the virtual process identifier. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 12 - // Note: The process ID within a PID namespace. This is not necessarily unique - // across all processes on the host but it is unique within the process - // namespace that the process exists within. - ProcessVpidKey = attribute.Key("process.vpid") - - // ProcessWorkingDirectoryKey is the attribute Key conforming to the - // "process.working_directory" semantic conventions. It represents the working - // directory of the process. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "/root" - ProcessWorkingDirectoryKey = attribute.Key("process.working_directory") -) - -// ProcessArgsCount returns an attribute KeyValue conforming to the -// "process.args_count" semantic conventions. It represents the length of the -// process.command_args array. -func ProcessArgsCount(val int) attribute.KeyValue { - return ProcessArgsCountKey.Int(val) -} - -// ProcessCommand returns an attribute KeyValue conforming to the -// "process.command" semantic conventions. It represents the command used to -// launch the process (i.e. the command name). On Linux based systems, can be set -// to the zeroth string in `proc/[pid]/cmdline`. On Windows, can be set to the -// first parameter extracted from `GetCommandLineW`. -func ProcessCommand(val string) attribute.KeyValue { - return ProcessCommandKey.String(val) -} - -// ProcessCommandArgs returns an attribute KeyValue conforming to the -// "process.command_args" semantic conventions. It represents the all the command -// arguments (including the command/executable itself) as received by the -// process. On Linux-based systems (and some other Unixoid systems supporting -// procfs), can be set according to the list of null-delimited strings extracted -// from `proc/[pid]/cmdline`. For libc-based executables, this would be the full -// argv vector passed to `main`. SHOULD NOT be collected by default unless there -// is sanitization that excludes sensitive data. -func ProcessCommandArgs(val ...string) attribute.KeyValue { - return ProcessCommandArgsKey.StringSlice(val) -} - -// ProcessCommandLine returns an attribute KeyValue conforming to the -// "process.command_line" semantic conventions. It represents the full command -// used to launch the process as a single string representing the full command. -// On Windows, can be set to the result of `GetCommandLineW`. Do not set this if -// you have to assemble it just for monitoring; use `process.command_args` -// instead. SHOULD NOT be collected by default unless there is sanitization that -// excludes sensitive data. -func ProcessCommandLine(val string) attribute.KeyValue { - return ProcessCommandLineKey.String(val) -} - -// ProcessCreationTime returns an attribute KeyValue conforming to the -// "process.creation.time" semantic conventions. It represents the date and time -// the process was created, in ISO 8601 format. -func ProcessCreationTime(val string) attribute.KeyValue { - return ProcessCreationTimeKey.String(val) -} - -// ProcessEnvironmentVariable returns an attribute KeyValue conforming to the -// "process.environment_variable" semantic conventions. It represents the process -// environment variables, `` being the environment variable name, the value -// being the environment variable value. -func ProcessEnvironmentVariable(key string, val string) attribute.KeyValue { - return attribute.String("process.environment_variable."+key, val) -} - -// ProcessExecutableBuildIDGNU returns an attribute KeyValue conforming to the -// "process.executable.build_id.gnu" semantic conventions. It represents the GNU -// build ID as found in the `.note.gnu.build-id` ELF section (hex string). -func ProcessExecutableBuildIDGNU(val string) attribute.KeyValue { - return ProcessExecutableBuildIDGNUKey.String(val) -} - -// ProcessExecutableBuildIDGo returns an attribute KeyValue conforming to the -// "process.executable.build_id.go" semantic conventions. It represents the Go -// build ID as retrieved by `go tool buildid `. -func ProcessExecutableBuildIDGo(val string) attribute.KeyValue { - return ProcessExecutableBuildIDGoKey.String(val) -} - -// ProcessExecutableBuildIDHtlhash returns an attribute KeyValue conforming to -// the "process.executable.build_id.htlhash" semantic conventions. It represents -// the profiling specific build ID for executables. See the OTel specification -// for Profiles for more information. -func ProcessExecutableBuildIDHtlhash(val string) attribute.KeyValue { - return ProcessExecutableBuildIDHtlhashKey.String(val) -} - -// ProcessExecutableName returns an attribute KeyValue conforming to the -// "process.executable.name" semantic conventions. It represents the name of the -// process executable. On Linux based systems, this SHOULD be set to the base -// name of the target of `/proc/[pid]/exe`. On Windows, this SHOULD be set to the -// base name of `GetProcessImageFileNameW`. -func ProcessExecutableName(val string) attribute.KeyValue { - return ProcessExecutableNameKey.String(val) -} - -// ProcessExecutablePath returns an attribute KeyValue conforming to the -// "process.executable.path" semantic conventions. It represents the full path to -// the process executable. On Linux based systems, can be set to the target of -// `proc/[pid]/exe`. On Windows, can be set to the result of -// `GetProcessImageFileNameW`. -func ProcessExecutablePath(val string) attribute.KeyValue { - return ProcessExecutablePathKey.String(val) -} - -// ProcessExitCode returns an attribute KeyValue conforming to the -// "process.exit.code" semantic conventions. It represents the exit code of the -// process. -func ProcessExitCode(val int) attribute.KeyValue { - return ProcessExitCodeKey.Int(val) -} - -// ProcessExitTime returns an attribute KeyValue conforming to the -// "process.exit.time" semantic conventions. It represents the date and time the -// process exited, in ISO 8601 format. -func ProcessExitTime(val string) attribute.KeyValue { - return ProcessExitTimeKey.String(val) -} - -// ProcessGroupLeaderPID returns an attribute KeyValue conforming to the -// "process.group_leader.pid" semantic conventions. It represents the PID of the -// process's group leader. This is also the process group ID (PGID) of the -// process. -func ProcessGroupLeaderPID(val int) attribute.KeyValue { - return ProcessGroupLeaderPIDKey.Int(val) -} - -// ProcessInteractive returns an attribute KeyValue conforming to the -// "process.interactive" semantic conventions. It represents the whether the -// process is connected to an interactive shell. -func ProcessInteractive(val bool) attribute.KeyValue { - return ProcessInteractiveKey.Bool(val) -} - -// ProcessLinuxCgroup returns an attribute KeyValue conforming to the -// "process.linux.cgroup" semantic conventions. It represents the control group -// associated with the process. -func ProcessLinuxCgroup(val string) attribute.KeyValue { - return ProcessLinuxCgroupKey.String(val) -} - -// ProcessOwner returns an attribute KeyValue conforming to the "process.owner" -// semantic conventions. It represents the username of the user that owns the -// process. -func ProcessOwner(val string) attribute.KeyValue { - return ProcessOwnerKey.String(val) -} - -// ProcessParentPID returns an attribute KeyValue conforming to the -// "process.parent_pid" semantic conventions. It represents the parent Process -// identifier (PPID). -func ProcessParentPID(val int) attribute.KeyValue { - return ProcessParentPIDKey.Int(val) -} - -// ProcessPID returns an attribute KeyValue conforming to the "process.pid" -// semantic conventions. It represents the process identifier (PID). -func ProcessPID(val int) attribute.KeyValue { - return ProcessPIDKey.Int(val) -} - -// ProcessRealUserID returns an attribute KeyValue conforming to the -// "process.real_user.id" semantic conventions. It represents the real user ID -// (RUID) of the process. -func ProcessRealUserID(val int) attribute.KeyValue { - return ProcessRealUserIDKey.Int(val) -} - -// ProcessRealUserName returns an attribute KeyValue conforming to the -// "process.real_user.name" semantic conventions. It represents the username of -// the real user of the process. -func ProcessRealUserName(val string) attribute.KeyValue { - return ProcessRealUserNameKey.String(val) -} - -// ProcessRuntimeDescription returns an attribute KeyValue conforming to the -// "process.runtime.description" semantic conventions. It represents an -// additional description about the runtime of the process, for example a -// specific vendor customization of the runtime environment. -func ProcessRuntimeDescription(val string) attribute.KeyValue { - return ProcessRuntimeDescriptionKey.String(val) -} - -// ProcessRuntimeName returns an attribute KeyValue conforming to the -// "process.runtime.name" semantic conventions. It represents the name of the -// runtime of this process. -func ProcessRuntimeName(val string) attribute.KeyValue { - return ProcessRuntimeNameKey.String(val) -} - -// ProcessRuntimeVersion returns an attribute KeyValue conforming to the -// "process.runtime.version" semantic conventions. It represents the version of -// the runtime of this process, as returned by the runtime without modification. -func ProcessRuntimeVersion(val string) attribute.KeyValue { - return ProcessRuntimeVersionKey.String(val) -} - -// ProcessSavedUserID returns an attribute KeyValue conforming to the -// "process.saved_user.id" semantic conventions. It represents the saved user ID -// (SUID) of the process. -func ProcessSavedUserID(val int) attribute.KeyValue { - return ProcessSavedUserIDKey.Int(val) -} - -// ProcessSavedUserName returns an attribute KeyValue conforming to the -// "process.saved_user.name" semantic conventions. It represents the username of -// the saved user. -func ProcessSavedUserName(val string) attribute.KeyValue { - return ProcessSavedUserNameKey.String(val) -} - -// ProcessSessionLeaderPID returns an attribute KeyValue conforming to the -// "process.session_leader.pid" semantic conventions. It represents the PID of -// the process's session leader. This is also the session ID (SID) of the -// process. -func ProcessSessionLeaderPID(val int) attribute.KeyValue { - return ProcessSessionLeaderPIDKey.Int(val) -} - -// ProcessTitle returns an attribute KeyValue conforming to the "process.title" -// semantic conventions. It represents the process title (proctitle). -func ProcessTitle(val string) attribute.KeyValue { - return ProcessTitleKey.String(val) -} - -// ProcessUserID returns an attribute KeyValue conforming to the -// "process.user.id" semantic conventions. It represents the effective user ID -// (EUID) of the process. -func ProcessUserID(val int) attribute.KeyValue { - return ProcessUserIDKey.Int(val) -} - -// ProcessUserName returns an attribute KeyValue conforming to the -// "process.user.name" semantic conventions. It represents the username of the -// effective user of the process. -func ProcessUserName(val string) attribute.KeyValue { - return ProcessUserNameKey.String(val) -} - -// ProcessVpid returns an attribute KeyValue conforming to the "process.vpid" -// semantic conventions. It represents the virtual process identifier. -func ProcessVpid(val int) attribute.KeyValue { - return ProcessVpidKey.Int(val) -} - -// ProcessWorkingDirectory returns an attribute KeyValue conforming to the -// "process.working_directory" semantic conventions. It represents the working -// directory of the process. -func ProcessWorkingDirectory(val string) attribute.KeyValue { - return ProcessWorkingDirectoryKey.String(val) -} - -// Enum values for process.context_switch.type -var ( - // voluntary - // Stability: development - ProcessContextSwitchTypeVoluntary = ProcessContextSwitchTypeKey.String("voluntary") - // involuntary - // Stability: development - ProcessContextSwitchTypeInvoluntary = ProcessContextSwitchTypeKey.String("involuntary") -) - -// Enum values for process.state -var ( - // running - // Stability: development - ProcessStateRunning = ProcessStateKey.String("running") - // sleeping - // Stability: development - ProcessStateSleeping = ProcessStateKey.String("sleeping") - // stopped - // Stability: development - ProcessStateStopped = ProcessStateKey.String("stopped") - // defunct - // Stability: development - ProcessStateDefunct = ProcessStateKey.String("defunct") -) - -// Namespace: profile -const ( - // ProfileFrameTypeKey is the attribute Key conforming to the - // "profile.frame.type" semantic conventions. It represents the describes the - // interpreter or compiler of a single frame. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "cpython" - ProfileFrameTypeKey = attribute.Key("profile.frame.type") -) - -// Enum values for profile.frame.type -var ( - // [.NET] - // - // Stability: development - // - // [.NET]: https://wikipedia.org/wiki/.NET - ProfileFrameTypeDotnet = ProfileFrameTypeKey.String("dotnet") - // [JVM] - // - // Stability: development - // - // [JVM]: https://wikipedia.org/wiki/Java_virtual_machine - ProfileFrameTypeJVM = ProfileFrameTypeKey.String("jvm") - // [Kernel] - // - // Stability: development - // - // [Kernel]: https://wikipedia.org/wiki/Kernel_(operating_system) - ProfileFrameTypeKernel = ProfileFrameTypeKey.String("kernel") - // Can be one of but not limited to [C], [C++], [Go] or [Rust]. If possible, a - // more precise value MUST be used. - // - // Stability: development - // - // [C]: https://wikipedia.org/wiki/C_(programming_language) - // [C++]: https://wikipedia.org/wiki/C%2B%2B - // [Go]: https://wikipedia.org/wiki/Go_(programming_language) - // [Rust]: https://wikipedia.org/wiki/Rust_(programming_language) - ProfileFrameTypeNative = ProfileFrameTypeKey.String("native") - // [Perl] - // - // Stability: development - // - // [Perl]: https://wikipedia.org/wiki/Perl - ProfileFrameTypePerl = ProfileFrameTypeKey.String("perl") - // [PHP] - // - // Stability: development - // - // [PHP]: https://wikipedia.org/wiki/PHP - ProfileFrameTypePHP = ProfileFrameTypeKey.String("php") - // [Python] - // - // Stability: development - // - // [Python]: https://wikipedia.org/wiki/Python_(programming_language) - ProfileFrameTypeCpython = ProfileFrameTypeKey.String("cpython") - // [Ruby] - // - // Stability: development - // - // [Ruby]: https://wikipedia.org/wiki/Ruby_(programming_language) - ProfileFrameTypeRuby = ProfileFrameTypeKey.String("ruby") - // [V8JS] - // - // Stability: development - // - // [V8JS]: https://wikipedia.org/wiki/V8_(JavaScript_engine) - ProfileFrameTypeV8JS = ProfileFrameTypeKey.String("v8js") - // [Erlang] - // - // Stability: development - // - // [Erlang]: https://en.wikipedia.org/wiki/BEAM_(Erlang_virtual_machine) - ProfileFrameTypeBeam = ProfileFrameTypeKey.String("beam") - // [Go], - // - // Stability: development - // - // [Go]: https://wikipedia.org/wiki/Go_(programming_language) - ProfileFrameTypeGo = ProfileFrameTypeKey.String("go") - // [Rust] - // - // Stability: development - // - // [Rust]: https://wikipedia.org/wiki/Rust_(programming_language) - ProfileFrameTypeRust = ProfileFrameTypeKey.String("rust") -) - -// Namespace: rpc -const ( - // RPCMethodKey is the attribute Key conforming to the "rpc.method" semantic - // conventions. It represents the fully-qualified logical name of the method - // from the RPC interface perspective. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Release_Candidate - // - // Examples: "com.example.ExampleService/exampleMethod", "EchoService/Echo", - // "_OTHER" - // Note: The method name MAY have unbounded cardinality in edge or error cases. - // - // Some RPC frameworks or libraries provide a fixed set of recognized methods - // for client stubs and server implementations. Instrumentations for such - // frameworks MUST set this attribute to the original method name only - // when the method is recognized by the framework or library. - // - // When the method is not recognized, for example, when the server receives - // a request for a method that is not predefined on the server, or when - // instrumentation is not able to reliably detect if the method is predefined, - // the attribute MUST be set to `_OTHER`. In such cases, tracing - // instrumentations MUST also set `rpc.method_original` attribute to - // the original method value. - // - // If the RPC instrumentation could end up converting valid RPC methods to - // `_OTHER`, then it SHOULD provide a way to configure the list of recognized - // RPC methods. - // - // The `rpc.method` can be different from the name of any implementing - // method/function. - // The `code.function.name` attribute may be used to record the fully-qualified - // method actually executing the call on the server side, or the - // RPC client stub method on the client side. - RPCMethodKey = attribute.Key("rpc.method") - - // RPCMethodOriginalKey is the attribute Key conforming to the - // "rpc.method_original" semantic conventions. It represents the original name - // of the method used by the client. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Release_Candidate - // - // Examples: "com.myservice.EchoService/catchAll", - // "com.myservice.EchoService/unknownMethod", "InvalidMethod" - RPCMethodOriginalKey = attribute.Key("rpc.method_original") - - // RPCResponseStatusCodeKey is the attribute Key conforming to the - // "rpc.response.status_code" semantic conventions. It represents the status - // code of the RPC returned by the RPC server or generated by the client. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Release_Candidate - // - // Examples: "OK", "DEADLINE_EXCEEDED", "-32602" - // Note: Usually it represents an error code, but may also represent partial - // success, warning, or differentiate between various types of successful - // outcomes. - // Semantic conventions for individual RPC frameworks SHOULD document what - // `rpc.response.status_code` means in the context of that system and which - // values are considered to represent errors. - RPCResponseStatusCodeKey = attribute.Key("rpc.response.status_code") - - // RPCSystemNameKey is the attribute Key conforming to the "rpc.system.name" - // semantic conventions. It represents the Remote Procedure Call (RPC) system. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Release_Candidate - // - // Examples: - // Note: The client and server RPC systems may differ for the same RPC - // interaction. For example, a client may use Apache Dubbo or Connect RPC to - // communicate with a server that uses gRPC since both protocols provide - // compatibility with gRPC. - RPCSystemNameKey = attribute.Key("rpc.system.name") -) - -// RPCMethod returns an attribute KeyValue conforming to the "rpc.method" -// semantic conventions. It represents the fully-qualified logical name of the -// method from the RPC interface perspective. -func RPCMethod(val string) attribute.KeyValue { - return RPCMethodKey.String(val) -} - -// RPCMethodOriginal returns an attribute KeyValue conforming to the -// "rpc.method_original" semantic conventions. It represents the original name of -// the method used by the client. -func RPCMethodOriginal(val string) attribute.KeyValue { - return RPCMethodOriginalKey.String(val) -} - -// RPCRequestMetadata returns an attribute KeyValue conforming to the -// "rpc.request.metadata" semantic conventions. It represents the RPC request -// metadata, `` being the normalized RPC metadata key (lowercase), the value -// being the metadata values. -func RPCRequestMetadata(key string, val ...string) attribute.KeyValue { - return attribute.StringSlice("rpc.request.metadata."+key, val) -} - -// RPCResponseMetadata returns an attribute KeyValue conforming to the -// "rpc.response.metadata" semantic conventions. It represents the RPC response -// metadata, `` being the normalized RPC metadata key (lowercase), the value -// being the metadata values. -func RPCResponseMetadata(key string, val ...string) attribute.KeyValue { - return attribute.StringSlice("rpc.response.metadata."+key, val) -} - -// RPCResponseStatusCode returns an attribute KeyValue conforming to the -// "rpc.response.status_code" semantic conventions. It represents the status code -// of the RPC returned by the RPC server or generated by the client. -func RPCResponseStatusCode(val string) attribute.KeyValue { - return RPCResponseStatusCodeKey.String(val) -} - -// Enum values for rpc.system.name -var ( - // [gRPC] - // Stability: release_candidate - // - // [gRPC]: https://grpc.io/ - RPCSystemNameGRPC = RPCSystemNameKey.String("grpc") - // [Apache Dubbo] - // Stability: release_candidate - // - // [Apache Dubbo]: https://dubbo.apache.org/ - RPCSystemNameDubbo = RPCSystemNameKey.String("dubbo") - // [Connect RPC] - // Stability: development - // - // [Connect RPC]: https://connectrpc.com/ - RPCSystemNameConnectrpc = RPCSystemNameKey.String("connectrpc") - // [JSON-RPC] - // Stability: development - // - // [JSON-RPC]: https://www.jsonrpc.org/ - RPCSystemNameJSONRPC = RPCSystemNameKey.String("jsonrpc") -) - -// Namespace: security_rule -const ( - // SecurityRuleCategoryKey is the attribute Key conforming to the - // "security_rule.category" semantic conventions. It represents a categorization - // value keyword used by the entity using the rule for detection of this event. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Attempted Information Leak" - SecurityRuleCategoryKey = attribute.Key("security_rule.category") - - // SecurityRuleDescriptionKey is the attribute Key conforming to the - // "security_rule.description" semantic conventions. It represents the - // description of the rule generating the event. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Block requests to public DNS over HTTPS / TLS protocols" - SecurityRuleDescriptionKey = attribute.Key("security_rule.description") - - // SecurityRuleLicenseKey is the attribute Key conforming to the - // "security_rule.license" semantic conventions. It represents the name of the - // license under which the rule used to generate this event is made available. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Apache 2.0" - SecurityRuleLicenseKey = attribute.Key("security_rule.license") - - // SecurityRuleNameKey is the attribute Key conforming to the - // "security_rule.name" semantic conventions. It represents the name of the rule - // or signature generating the event. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "BLOCK_DNS_over_TLS" - SecurityRuleNameKey = attribute.Key("security_rule.name") - - // SecurityRuleReferenceKey is the attribute Key conforming to the - // "security_rule.reference" semantic conventions. It represents the reference - // URL to additional information about the rule used to generate this event. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "https://en.wikipedia.org/wiki/DNS_over_TLS" - // Note: The URL can point to the vendor’s documentation about the rule. If - // that’s not available, it can also be a link to a more general page - // describing this type of alert. - SecurityRuleReferenceKey = attribute.Key("security_rule.reference") - - // SecurityRuleRulesetNameKey is the attribute Key conforming to the - // "security_rule.ruleset.name" semantic conventions. It represents the name of - // the ruleset, policy, group, or parent category in which the rule used to - // generate this event is a member. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Standard_Protocol_Filters" - SecurityRuleRulesetNameKey = attribute.Key("security_rule.ruleset.name") - - // SecurityRuleUUIDKey is the attribute Key conforming to the - // "security_rule.uuid" semantic conventions. It represents a rule ID that is - // unique within the scope of a set or group of agents, observers, or other - // entities using the rule for detection of this event. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "550e8400-e29b-41d4-a716-446655440000", "1100110011" - SecurityRuleUUIDKey = attribute.Key("security_rule.uuid") - - // SecurityRuleVersionKey is the attribute Key conforming to the - // "security_rule.version" semantic conventions. It represents the version / - // revision of the rule being used for analysis. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "1.0.0" - SecurityRuleVersionKey = attribute.Key("security_rule.version") -) - -// SecurityRuleCategory returns an attribute KeyValue conforming to the -// "security_rule.category" semantic conventions. It represents a categorization -// value keyword used by the entity using the rule for detection of this event. -func SecurityRuleCategory(val string) attribute.KeyValue { - return SecurityRuleCategoryKey.String(val) -} - -// SecurityRuleDescription returns an attribute KeyValue conforming to the -// "security_rule.description" semantic conventions. It represents the -// description of the rule generating the event. -func SecurityRuleDescription(val string) attribute.KeyValue { - return SecurityRuleDescriptionKey.String(val) -} - -// SecurityRuleLicense returns an attribute KeyValue conforming to the -// "security_rule.license" semantic conventions. It represents the name of the -// license under which the rule used to generate this event is made available. -func SecurityRuleLicense(val string) attribute.KeyValue { - return SecurityRuleLicenseKey.String(val) -} - -// SecurityRuleName returns an attribute KeyValue conforming to the -// "security_rule.name" semantic conventions. It represents the name of the rule -// or signature generating the event. -func SecurityRuleName(val string) attribute.KeyValue { - return SecurityRuleNameKey.String(val) -} - -// SecurityRuleReference returns an attribute KeyValue conforming to the -// "security_rule.reference" semantic conventions. It represents the reference -// URL to additional information about the rule used to generate this event. -func SecurityRuleReference(val string) attribute.KeyValue { - return SecurityRuleReferenceKey.String(val) -} - -// SecurityRuleRulesetName returns an attribute KeyValue conforming to the -// "security_rule.ruleset.name" semantic conventions. It represents the name of -// the ruleset, policy, group, or parent category in which the rule used to -// generate this event is a member. -func SecurityRuleRulesetName(val string) attribute.KeyValue { - return SecurityRuleRulesetNameKey.String(val) -} - -// SecurityRuleUUID returns an attribute KeyValue conforming to the -// "security_rule.uuid" semantic conventions. It represents a rule ID that is -// unique within the scope of a set or group of agents, observers, or other -// entities using the rule for detection of this event. -func SecurityRuleUUID(val string) attribute.KeyValue { - return SecurityRuleUUIDKey.String(val) -} - -// SecurityRuleVersion returns an attribute KeyValue conforming to the -// "security_rule.version" semantic conventions. It represents the version / -// revision of the rule being used for analysis. -func SecurityRuleVersion(val string) attribute.KeyValue { - return SecurityRuleVersionKey.String(val) -} - -// Namespace: server -const ( - // ServerAddressKey is the attribute Key conforming to the "server.address" - // semantic conventions. It represents the server domain name if available - // without reverse DNS lookup; otherwise, IP address or Unix domain socket name. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "example.com", "10.1.2.80", "/tmp/my.sock" - // Note: When observed from the client side, and when communicating through an - // intermediary, `server.address` SHOULD represent the server address behind any - // intermediaries, for example proxies, if it's available. - ServerAddressKey = attribute.Key("server.address") - - // ServerPortKey is the attribute Key conforming to the "server.port" semantic - // conventions. It represents the server port number. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: 80, 8080, 443 - // Note: When observed from the client side, and when communicating through an - // intermediary, `server.port` SHOULD represent the server port behind any - // intermediaries, for example proxies, if it's available. - ServerPortKey = attribute.Key("server.port") -) - -// ServerAddress returns an attribute KeyValue conforming to the "server.address" -// semantic conventions. It represents the server domain name if available -// without reverse DNS lookup; otherwise, IP address or Unix domain socket name. -func ServerAddress(val string) attribute.KeyValue { - return ServerAddressKey.String(val) -} - -// ServerPort returns an attribute KeyValue conforming to the "server.port" -// semantic conventions. It represents the server port number. -func ServerPort(val int) attribute.KeyValue { - return ServerPortKey.Int(val) -} - -// Namespace: service -const ( - // ServiceCriticalityKey is the attribute Key conforming to the - // "service.criticality" semantic conventions. It represents the operational - // criticality of the service. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "critical", "high", "medium", "low" - // Note: Application developers are encouraged to set `service.criticality` to - // express the operational importance of their services. Telemetry consumers MAY - // use this attribute to optimize telemetry collection or improve user - // experience. - ServiceCriticalityKey = attribute.Key("service.criticality") - - // ServiceInstanceIDKey is the attribute Key conforming to the - // "service.instance.id" semantic conventions. It represents the string ID of - // the service instance. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "627cc493-f310-47de-96bd-71410b7dec09" - // Note: MUST be unique for each instance of the same - // `service.namespace,service.name` pair (in other words - // `service.namespace,service.name,service.instance.id` triplet MUST be globally - // unique). The ID helps to - // distinguish instances of the same service that exist at the same time (e.g. - // instances of a horizontally scaled - // service). - // - // Implementations, such as SDKs, are recommended to generate a random Version 1 - // or Version 4 [RFC - // 4122] UUID, but are free to use an inherent unique ID as - // the source of - // this value if stability is desirable. In that case, the ID SHOULD be used as - // source of a UUID Version 5 and - // SHOULD use the following UUID as the namespace: - // `4d63009a-8d0f-11ee-aad7-4c796ed8e320`. - // - // UUIDs are typically recommended, as only an opaque value for the purposes of - // identifying a service instance is - // needed. Similar to what can be seen in the man page for the - // [`/etc/machine-id`] file, the underlying - // data, such as pod name and namespace should be treated as confidential, being - // the user's choice to expose it - // or not via another resource attribute. - // - // For applications running behind an application server (like unicorn), we do - // not recommend using one identifier - // for all processes participating in the application. Instead, it's recommended - // each division (e.g. a worker - // thread in unicorn) to have its own instance.id. - // - // It's not recommended for a Collector to set `service.instance.id` if it can't - // unambiguously determine the - // service instance that is generating that telemetry. For instance, creating an - // UUID based on `pod.name` will - // likely be wrong, as the Collector might not know from which container within - // that pod the telemetry originated. - // However, Collectors can set the `service.instance.id` if they can - // unambiguously determine the service instance - // for that telemetry. This is typically the case for scraping receivers, as - // they know the target address and - // port. - // - // [RFC - // 4122]: https://www.ietf.org/rfc/rfc4122.txt - // [`/etc/machine-id`]: https://www.freedesktop.org/software/systemd/man/latest/machine-id.html - ServiceInstanceIDKey = attribute.Key("service.instance.id") - - // ServiceNameKey is the attribute Key conforming to the "service.name" semantic - // conventions. It represents the logical name of the service. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "shoppingcart" - // Note: MUST be the same for all instances of horizontally scaled services. If - // the value was not specified, SDKs MUST fallback to `unknown_service:` - // concatenated with [`process.executable.name`], e.g. `unknown_service:bash`. - // If `process.executable.name` is not available, the value MUST be set to - // `unknown_service`. - // - // [`process.executable.name`]: process.md - ServiceNameKey = attribute.Key("service.name") - - // ServiceNamespaceKey is the attribute Key conforming to the - // "service.namespace" semantic conventions. It represents a namespace for - // `service.name`. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "Shop" - // Note: A string value having a meaning that helps to distinguish a group of - // services, for example the team name that owns a group of services. - // `service.name` is expected to be unique within the same namespace. If - // `service.namespace` is not specified in the Resource then `service.name` is - // expected to be unique for all services that have no explicit namespace - // defined (so the empty/unspecified namespace is simply one more valid - // namespace). Zero-length namespace string is assumed equal to unspecified - // namespace. - ServiceNamespaceKey = attribute.Key("service.namespace") - - // ServicePeerNameKey is the attribute Key conforming to the "service.peer.name" - // semantic conventions. It represents the logical name of the service on the - // other side of the connection. SHOULD be equal to the actual [`service.name`] - // resource attribute of the remote service if any. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "shoppingcart" - // - // [`service.name`]: /docs/resource/README.md#service - ServicePeerNameKey = attribute.Key("service.peer.name") - - // ServicePeerNamespaceKey is the attribute Key conforming to the - // "service.peer.namespace" semantic conventions. It represents the logical - // namespace of the service on the other side of the connection. SHOULD be equal - // to the actual [`service.namespace`] resource attribute of the remote service - // if any. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Shop" - // - // [`service.namespace`]: /docs/resource/README.md#service - ServicePeerNamespaceKey = attribute.Key("service.peer.namespace") - - // ServiceVersionKey is the attribute Key conforming to the "service.version" - // semantic conventions. It represents the version string of the service - // component. The format is not defined by these conventions. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "2.0.0", "a01dbef8a" - ServiceVersionKey = attribute.Key("service.version") -) - -// ServiceInstanceID returns an attribute KeyValue conforming to the -// "service.instance.id" semantic conventions. It represents the string ID of the -// service instance. -func ServiceInstanceID(val string) attribute.KeyValue { - return ServiceInstanceIDKey.String(val) -} - -// ServiceName returns an attribute KeyValue conforming to the "service.name" -// semantic conventions. It represents the logical name of the service. -func ServiceName(val string) attribute.KeyValue { - return ServiceNameKey.String(val) -} - -// ServiceNamespace returns an attribute KeyValue conforming to the -// "service.namespace" semantic conventions. It represents a namespace for -// `service.name`. -func ServiceNamespace(val string) attribute.KeyValue { - return ServiceNamespaceKey.String(val) -} - -// ServicePeerName returns an attribute KeyValue conforming to the -// "service.peer.name" semantic conventions. It represents the logical name of -// the service on the other side of the connection. SHOULD be equal to the actual -// [`service.name`] resource attribute of the remote service if any. -// -// [`service.name`]: /docs/resource/README.md#service -func ServicePeerName(val string) attribute.KeyValue { - return ServicePeerNameKey.String(val) -} - -// ServicePeerNamespace returns an attribute KeyValue conforming to the -// "service.peer.namespace" semantic conventions. It represents the logical -// namespace of the service on the other side of the connection. SHOULD be equal -// to the actual [`service.namespace`] resource attribute of the remote service -// if any. -// -// [`service.namespace`]: /docs/resource/README.md#service -func ServicePeerNamespace(val string) attribute.KeyValue { - return ServicePeerNamespaceKey.String(val) -} - -// ServiceVersion returns an attribute KeyValue conforming to the -// "service.version" semantic conventions. It represents the version string of -// the service component. The format is not defined by these conventions. -func ServiceVersion(val string) attribute.KeyValue { - return ServiceVersionKey.String(val) -} - -// Enum values for service.criticality -var ( - // Service is business-critical; downtime directly impacts revenue, user - // experience, or core functionality. - // - // Stability: development - ServiceCriticalityCritical = ServiceCriticalityKey.String("critical") - // Service is important but has degradation tolerance or fallback mechanisms. - // - // Stability: development - ServiceCriticalityHigh = ServiceCriticalityKey.String("high") - // Service provides supplementary functionality; degradation has limited user - // impact. - // - // Stability: development - ServiceCriticalityMedium = ServiceCriticalityKey.String("medium") - // Service is non-essential to core operations; used for background tasks or - // internal tools. - // - // Stability: development - ServiceCriticalityLow = ServiceCriticalityKey.String("low") -) - -// Namespace: session -const ( - // SessionIDKey is the attribute Key conforming to the "session.id" semantic - // conventions. It represents a unique id to identify a session. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 00112233-4455-6677-8899-aabbccddeeff - SessionIDKey = attribute.Key("session.id") - - // SessionPreviousIDKey is the attribute Key conforming to the - // "session.previous_id" semantic conventions. It represents the previous - // `session.id` for this user, when known. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 00112233-4455-6677-8899-aabbccddeeff - SessionPreviousIDKey = attribute.Key("session.previous_id") -) - -// SessionID returns an attribute KeyValue conforming to the "session.id" -// semantic conventions. It represents a unique id to identify a session. -func SessionID(val string) attribute.KeyValue { - return SessionIDKey.String(val) -} - -// SessionPreviousID returns an attribute KeyValue conforming to the -// "session.previous_id" semantic conventions. It represents the previous -// `session.id` for this user, when known. -func SessionPreviousID(val string) attribute.KeyValue { - return SessionPreviousIDKey.String(val) -} - -// Namespace: signalr -const ( - // SignalRConnectionStatusKey is the attribute Key conforming to the - // "signalr.connection.status" semantic conventions. It represents the signalR - // HTTP connection closure status. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "app_shutdown", "timeout" - SignalRConnectionStatusKey = attribute.Key("signalr.connection.status") - - // SignalRTransportKey is the attribute Key conforming to the - // "signalr.transport" semantic conventions. It represents the - // [SignalR transport type]. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "web_sockets", "long_polling" - // - // [SignalR transport type]: https://github.com/dotnet/aspnetcore/blob/main/src/SignalR/docs/specs/TransportProtocols.md - SignalRTransportKey = attribute.Key("signalr.transport") -) - -// Enum values for signalr.connection.status -var ( - // The connection was closed normally. - // Stability: stable - SignalRConnectionStatusNormalClosure = SignalRConnectionStatusKey.String("normal_closure") - // The connection was closed due to a timeout. - // Stability: stable - SignalRConnectionStatusTimeout = SignalRConnectionStatusKey.String("timeout") - // The connection was closed because the app is shutting down. - // Stability: stable - SignalRConnectionStatusAppShutdown = SignalRConnectionStatusKey.String("app_shutdown") -) - -// Enum values for signalr.transport -var ( - // ServerSentEvents protocol - // Stability: stable - SignalRTransportServerSentEvents = SignalRTransportKey.String("server_sent_events") - // LongPolling protocol - // Stability: stable - SignalRTransportLongPolling = SignalRTransportKey.String("long_polling") - // WebSockets protocol - // Stability: stable - SignalRTransportWebSockets = SignalRTransportKey.String("web_sockets") -) - -// Namespace: source -const ( - // SourceAddressKey is the attribute Key conforming to the "source.address" - // semantic conventions. It represents the source address - domain name if - // available without reverse DNS lookup; otherwise, IP address or Unix domain - // socket name. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "source.example.com", "10.1.2.80", "/tmp/my.sock" - // Note: When observed from the destination side, and when communicating through - // an intermediary, `source.address` SHOULD represent the source address behind - // any intermediaries, for example proxies, if it's available. - SourceAddressKey = attribute.Key("source.address") - - // SourcePortKey is the attribute Key conforming to the "source.port" semantic - // conventions. It represents the source port number. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 3389, 2888 - SourcePortKey = attribute.Key("source.port") -) - -// SourceAddress returns an attribute KeyValue conforming to the "source.address" -// semantic conventions. It represents the source address - domain name if -// available without reverse DNS lookup; otherwise, IP address or Unix domain -// socket name. -func SourceAddress(val string) attribute.KeyValue { - return SourceAddressKey.String(val) -} - -// SourcePort returns an attribute KeyValue conforming to the "source.port" -// semantic conventions. It represents the source port number. -func SourcePort(val int) attribute.KeyValue { - return SourcePortKey.Int(val) -} - -// Namespace: system -const ( - // SystemDeviceKey is the attribute Key conforming to the "system.device" - // semantic conventions. It represents the device identifier. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "(identifier)" - SystemDeviceKey = attribute.Key("system.device") - - // SystemFilesystemModeKey is the attribute Key conforming to the - // "system.filesystem.mode" semantic conventions. It represents the filesystem - // mode. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "rw, ro" - SystemFilesystemModeKey = attribute.Key("system.filesystem.mode") - - // SystemFilesystemMountpointKey is the attribute Key conforming to the - // "system.filesystem.mountpoint" semantic conventions. It represents the - // filesystem mount path. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "/mnt/data" - SystemFilesystemMountpointKey = attribute.Key("system.filesystem.mountpoint") - - // SystemFilesystemStateKey is the attribute Key conforming to the - // "system.filesystem.state" semantic conventions. It represents the filesystem - // state. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "used" - SystemFilesystemStateKey = attribute.Key("system.filesystem.state") - - // SystemFilesystemTypeKey is the attribute Key conforming to the - // "system.filesystem.type" semantic conventions. It represents the filesystem - // type. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "ext4" - SystemFilesystemTypeKey = attribute.Key("system.filesystem.type") - - // SystemMemoryLinuxSlabStateKey is the attribute Key conforming to the - // "system.memory.linux.slab.state" semantic conventions. It represents the - // Linux Slab memory state. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "reclaimable", "unreclaimable" - SystemMemoryLinuxSlabStateKey = attribute.Key("system.memory.linux.slab.state") - - // SystemMemoryStateKey is the attribute Key conforming to the - // "system.memory.state" semantic conventions. It represents the memory state. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "free", "cached" - SystemMemoryStateKey = attribute.Key("system.memory.state") - - // SystemPagingDirectionKey is the attribute Key conforming to the - // "system.paging.direction" semantic conventions. It represents the paging - // access direction. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "in" - SystemPagingDirectionKey = attribute.Key("system.paging.direction") - - // SystemPagingFaultTypeKey is the attribute Key conforming to the - // "system.paging.fault.type" semantic conventions. It represents the paging - // fault type. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "minor" - SystemPagingFaultTypeKey = attribute.Key("system.paging.fault.type") - - // SystemPagingStateKey is the attribute Key conforming to the - // "system.paging.state" semantic conventions. It represents the memory paging - // state. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "free" - SystemPagingStateKey = attribute.Key("system.paging.state") -) - -// SystemDevice returns an attribute KeyValue conforming to the "system.device" -// semantic conventions. It represents the device identifier. -func SystemDevice(val string) attribute.KeyValue { - return SystemDeviceKey.String(val) -} - -// SystemFilesystemMode returns an attribute KeyValue conforming to the -// "system.filesystem.mode" semantic conventions. It represents the filesystem -// mode. -func SystemFilesystemMode(val string) attribute.KeyValue { - return SystemFilesystemModeKey.String(val) -} - -// SystemFilesystemMountpoint returns an attribute KeyValue conforming to the -// "system.filesystem.mountpoint" semantic conventions. It represents the -// filesystem mount path. -func SystemFilesystemMountpoint(val string) attribute.KeyValue { - return SystemFilesystemMountpointKey.String(val) -} - -// Enum values for system.filesystem.state -var ( - // used - // Stability: development - SystemFilesystemStateUsed = SystemFilesystemStateKey.String("used") - // free - // Stability: development - SystemFilesystemStateFree = SystemFilesystemStateKey.String("free") - // reserved - // Stability: development - SystemFilesystemStateReserved = SystemFilesystemStateKey.String("reserved") -) - -// Enum values for system.filesystem.type -var ( - // fat32 - // Stability: development - SystemFilesystemTypeFat32 = SystemFilesystemTypeKey.String("fat32") - // exfat - // Stability: development - SystemFilesystemTypeExfat = SystemFilesystemTypeKey.String("exfat") - // ntfs - // Stability: development - SystemFilesystemTypeNtfs = SystemFilesystemTypeKey.String("ntfs") - // refs - // Stability: development - SystemFilesystemTypeRefs = SystemFilesystemTypeKey.String("refs") - // hfsplus - // Stability: development - SystemFilesystemTypeHfsplus = SystemFilesystemTypeKey.String("hfsplus") - // ext4 - // Stability: development - SystemFilesystemTypeExt4 = SystemFilesystemTypeKey.String("ext4") -) - -// Enum values for system.memory.linux.slab.state -var ( - // reclaimable - // Stability: development - SystemMemoryLinuxSlabStateReclaimable = SystemMemoryLinuxSlabStateKey.String("reclaimable") - // unreclaimable - // Stability: development - SystemMemoryLinuxSlabStateUnreclaimable = SystemMemoryLinuxSlabStateKey.String("unreclaimable") -) - -// Enum values for system.memory.state -var ( - // Actual used virtual memory in bytes. - // Stability: development - SystemMemoryStateUsed = SystemMemoryStateKey.String("used") - // free - // Stability: development - SystemMemoryStateFree = SystemMemoryStateKey.String("free") - // buffers - // Stability: development - SystemMemoryStateBuffers = SystemMemoryStateKey.String("buffers") - // cached - // Stability: development - SystemMemoryStateCached = SystemMemoryStateKey.String("cached") -) - -// Enum values for system.paging.direction -var ( - // in - // Stability: development - SystemPagingDirectionIn = SystemPagingDirectionKey.String("in") - // out - // Stability: development - SystemPagingDirectionOut = SystemPagingDirectionKey.String("out") -) - -// Enum values for system.paging.fault.type -var ( - // major - // Stability: development - SystemPagingFaultTypeMajor = SystemPagingFaultTypeKey.String("major") - // minor - // Stability: development - SystemPagingFaultTypeMinor = SystemPagingFaultTypeKey.String("minor") -) - -// Enum values for system.paging.state -var ( - // used - // Stability: development - SystemPagingStateUsed = SystemPagingStateKey.String("used") - // free - // Stability: development - SystemPagingStateFree = SystemPagingStateKey.String("free") -) - -// Namespace: telemetry -const ( - // TelemetryDistroNameKey is the attribute Key conforming to the - // "telemetry.distro.name" semantic conventions. It represents the name of the - // auto instrumentation agent or distribution, if used. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "parts-unlimited-java" - // Note: Official auto instrumentation agents and distributions SHOULD set the - // `telemetry.distro.name` attribute to - // a string starting with `opentelemetry-`, e.g. - // `opentelemetry-java-instrumentation`. - TelemetryDistroNameKey = attribute.Key("telemetry.distro.name") - - // TelemetryDistroVersionKey is the attribute Key conforming to the - // "telemetry.distro.version" semantic conventions. It represents the version - // string of the auto instrumentation agent or distribution, if used. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "1.2.3" - TelemetryDistroVersionKey = attribute.Key("telemetry.distro.version") - - // TelemetrySDKLanguageKey is the attribute Key conforming to the - // "telemetry.sdk.language" semantic conventions. It represents the language of - // the telemetry SDK. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: - TelemetrySDKLanguageKey = attribute.Key("telemetry.sdk.language") - - // TelemetrySDKNameKey is the attribute Key conforming to the - // "telemetry.sdk.name" semantic conventions. It represents the name of the - // telemetry SDK as defined above. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "opentelemetry" - // Note: The OpenTelemetry SDK MUST set the `telemetry.sdk.name` attribute to - // `opentelemetry`. - // If another SDK, like a fork or a vendor-provided implementation, is used, - // this SDK MUST set the - // `telemetry.sdk.name` attribute to the fully-qualified class or module name of - // this SDK's main entry point - // or another suitable identifier depending on the language. - // The identifier `opentelemetry` is reserved and MUST NOT be used in this case. - // All custom identifiers SHOULD be stable across different versions of an - // implementation. - TelemetrySDKNameKey = attribute.Key("telemetry.sdk.name") - - // TelemetrySDKVersionKey is the attribute Key conforming to the - // "telemetry.sdk.version" semantic conventions. It represents the version - // string of the telemetry SDK. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "1.2.3" - TelemetrySDKVersionKey = attribute.Key("telemetry.sdk.version") -) - -// TelemetryDistroName returns an attribute KeyValue conforming to the -// "telemetry.distro.name" semantic conventions. It represents the name of the -// auto instrumentation agent or distribution, if used. -func TelemetryDistroName(val string) attribute.KeyValue { - return TelemetryDistroNameKey.String(val) -} - -// TelemetryDistroVersion returns an attribute KeyValue conforming to the -// "telemetry.distro.version" semantic conventions. It represents the version -// string of the auto instrumentation agent or distribution, if used. -func TelemetryDistroVersion(val string) attribute.KeyValue { - return TelemetryDistroVersionKey.String(val) -} - -// TelemetrySDKName returns an attribute KeyValue conforming to the -// "telemetry.sdk.name" semantic conventions. It represents the name of the -// telemetry SDK as defined above. -func TelemetrySDKName(val string) attribute.KeyValue { - return TelemetrySDKNameKey.String(val) -} - -// TelemetrySDKVersion returns an attribute KeyValue conforming to the -// "telemetry.sdk.version" semantic conventions. It represents the version string -// of the telemetry SDK. -func TelemetrySDKVersion(val string) attribute.KeyValue { - return TelemetrySDKVersionKey.String(val) -} - -// Enum values for telemetry.sdk.language -var ( - // cpp - // Stability: stable - TelemetrySDKLanguageCPP = TelemetrySDKLanguageKey.String("cpp") - // dotnet - // Stability: stable - TelemetrySDKLanguageDotnet = TelemetrySDKLanguageKey.String("dotnet") - // erlang - // Stability: stable - TelemetrySDKLanguageErlang = TelemetrySDKLanguageKey.String("erlang") - // go - // Stability: stable - TelemetrySDKLanguageGo = TelemetrySDKLanguageKey.String("go") - // java - // Stability: stable - TelemetrySDKLanguageJava = TelemetrySDKLanguageKey.String("java") - // nodejs - // Stability: stable - TelemetrySDKLanguageNodejs = TelemetrySDKLanguageKey.String("nodejs") - // php - // Stability: stable - TelemetrySDKLanguagePHP = TelemetrySDKLanguageKey.String("php") - // python - // Stability: stable - TelemetrySDKLanguagePython = TelemetrySDKLanguageKey.String("python") - // ruby - // Stability: stable - TelemetrySDKLanguageRuby = TelemetrySDKLanguageKey.String("ruby") - // rust - // Stability: stable - TelemetrySDKLanguageRust = TelemetrySDKLanguageKey.String("rust") - // swift - // Stability: stable - TelemetrySDKLanguageSwift = TelemetrySDKLanguageKey.String("swift") - // webjs - // Stability: stable - TelemetrySDKLanguageWebJS = TelemetrySDKLanguageKey.String("webjs") -) - -// Namespace: test -const ( - // TestCaseNameKey is the attribute Key conforming to the "test.case.name" - // semantic conventions. It represents the fully qualified human readable name - // of the [test case]. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "org.example.TestCase1.test1", "example/tests/TestCase1.test1", - // "ExampleTestCase1_test1" - // - // [test case]: https://wikipedia.org/wiki/Test_case - TestCaseNameKey = attribute.Key("test.case.name") - - // TestCaseResultStatusKey is the attribute Key conforming to the - // "test.case.result.status" semantic conventions. It represents the status of - // the actual test case result from test execution. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "pass", "fail" - TestCaseResultStatusKey = attribute.Key("test.case.result.status") - - // TestSuiteNameKey is the attribute Key conforming to the "test.suite.name" - // semantic conventions. It represents the human readable name of a [test suite] - // . - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "TestSuite1" - // - // [test suite]: https://wikipedia.org/wiki/Test_suite - TestSuiteNameKey = attribute.Key("test.suite.name") - - // TestSuiteRunStatusKey is the attribute Key conforming to the - // "test.suite.run.status" semantic conventions. It represents the status of the - // test suite run. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "success", "failure", "skipped", "aborted", "timed_out", - // "in_progress" - TestSuiteRunStatusKey = attribute.Key("test.suite.run.status") -) - -// TestCaseName returns an attribute KeyValue conforming to the "test.case.name" -// semantic conventions. It represents the fully qualified human readable name of -// the [test case]. -// -// [test case]: https://wikipedia.org/wiki/Test_case -func TestCaseName(val string) attribute.KeyValue { - return TestCaseNameKey.String(val) -} - -// TestSuiteName returns an attribute KeyValue conforming to the -// "test.suite.name" semantic conventions. It represents the human readable name -// of a [test suite]. -// -// [test suite]: https://wikipedia.org/wiki/Test_suite -func TestSuiteName(val string) attribute.KeyValue { - return TestSuiteNameKey.String(val) -} - -// Enum values for test.case.result.status -var ( - // pass - // Stability: development - TestCaseResultStatusPass = TestCaseResultStatusKey.String("pass") - // fail - // Stability: development - TestCaseResultStatusFail = TestCaseResultStatusKey.String("fail") -) - -// Enum values for test.suite.run.status -var ( - // success - // Stability: development - TestSuiteRunStatusSuccess = TestSuiteRunStatusKey.String("success") - // failure - // Stability: development - TestSuiteRunStatusFailure = TestSuiteRunStatusKey.String("failure") - // skipped - // Stability: development - TestSuiteRunStatusSkipped = TestSuiteRunStatusKey.String("skipped") - // aborted - // Stability: development - TestSuiteRunStatusAborted = TestSuiteRunStatusKey.String("aborted") - // timed_out - // Stability: development - TestSuiteRunStatusTimedOut = TestSuiteRunStatusKey.String("timed_out") - // in_progress - // Stability: development - TestSuiteRunStatusInProgress = TestSuiteRunStatusKey.String("in_progress") -) - -// Namespace: thread -const ( - // ThreadIDKey is the attribute Key conforming to the "thread.id" semantic - // conventions. It represents the current "managed" thread ID (as opposed to OS - // thread ID). - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Note: - // Examples of where the value can be extracted from: - // - // | Language or platform | Source | - // | --- | --- | - // | JVM | `Thread.currentThread().threadId()` | - // | .NET | `Thread.CurrentThread.ManagedThreadId` | - // | Python | `threading.current_thread().ident` | - // | Ruby | `Thread.current.object_id` | - // | C++ | `std::this_thread::get_id()` | - // | Erlang | `erlang:self()` | - ThreadIDKey = attribute.Key("thread.id") - - // ThreadNameKey is the attribute Key conforming to the "thread.name" semantic - // conventions. It represents the current thread name. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: main - // Note: - // Examples of where the value can be extracted from: - // - // | Language or platform | Source | - // | --- | --- | - // | JVM | `Thread.currentThread().getName()` | - // | .NET | `Thread.CurrentThread.Name` | - // | Python | `threading.current_thread().name` | - // | Ruby | `Thread.current.name` | - // | Erlang | `erlang:process_info(self(), registered_name)` | - ThreadNameKey = attribute.Key("thread.name") -) - -// ThreadID returns an attribute KeyValue conforming to the "thread.id" semantic -// conventions. It represents the current "managed" thread ID (as opposed to OS -// thread ID). -func ThreadID(val int) attribute.KeyValue { - return ThreadIDKey.Int(val) -} - -// ThreadName returns an attribute KeyValue conforming to the "thread.name" -// semantic conventions. It represents the current thread name. -func ThreadName(val string) attribute.KeyValue { - return ThreadNameKey.String(val) -} - -// Namespace: tls -const ( - // TLSCipherKey is the attribute Key conforming to the "tls.cipher" semantic - // conventions. It represents the string indicating the [cipher] used during the - // current connection. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "TLS_RSA_WITH_3DES_EDE_CBC_SHA", - // "TLS_ECDHE_RSA_WITH_AES_128_CBC_SHA256" - // Note: The values allowed for `tls.cipher` MUST be one of the `Descriptions` - // of the [registered TLS Cipher Suits]. - // - // [cipher]: https://datatracker.ietf.org/doc/html/rfc5246#appendix-A.5 - // [registered TLS Cipher Suits]: https://www.iana.org/assignments/tls-parameters/tls-parameters.xhtml#table-tls-parameters-4 - TLSCipherKey = attribute.Key("tls.cipher") - - // TLSClientCertificateKey is the attribute Key conforming to the - // "tls.client.certificate" semantic conventions. It represents the PEM-encoded - // stand-alone certificate offered by the client. This is usually - // mutually-exclusive of `client.certificate_chain` since this value also exists - // in that list. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "MII..." - TLSClientCertificateKey = attribute.Key("tls.client.certificate") - - // TLSClientCertificateChainKey is the attribute Key conforming to the - // "tls.client.certificate_chain" semantic conventions. It represents the array - // of PEM-encoded certificates that make up the certificate chain offered by the - // client. This is usually mutually-exclusive of `client.certificate` since that - // value should be the first certificate in the chain. - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "MII...", "MI..." - TLSClientCertificateChainKey = attribute.Key("tls.client.certificate_chain") - - // TLSClientHashMd5Key is the attribute Key conforming to the - // "tls.client.hash.md5" semantic conventions. It represents the certificate - // fingerprint using the MD5 digest of DER-encoded version of certificate - // offered by the client. For consistency with other hash values, this value - // should be formatted as an uppercase hash. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "0F76C7F2C55BFD7D8E8B8F4BFBF0C9EC" - TLSClientHashMd5Key = attribute.Key("tls.client.hash.md5") - - // TLSClientHashSha1Key is the attribute Key conforming to the - // "tls.client.hash.sha1" semantic conventions. It represents the certificate - // fingerprint using the SHA1 digest of DER-encoded version of certificate - // offered by the client. For consistency with other hash values, this value - // should be formatted as an uppercase hash. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "9E393D93138888D288266C2D915214D1D1CCEB2A" - TLSClientHashSha1Key = attribute.Key("tls.client.hash.sha1") - - // TLSClientHashSha256Key is the attribute Key conforming to the - // "tls.client.hash.sha256" semantic conventions. It represents the certificate - // fingerprint using the SHA256 digest of DER-encoded version of certificate - // offered by the client. For consistency with other hash values, this value - // should be formatted as an uppercase hash. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "0687F666A054EF17A08E2F2162EAB4CBC0D265E1D7875BE74BF3C712CA92DAF0" - TLSClientHashSha256Key = attribute.Key("tls.client.hash.sha256") - - // TLSClientIssuerKey is the attribute Key conforming to the "tls.client.issuer" - // semantic conventions. It represents the distinguished name of [subject] of - // the issuer of the x.509 certificate presented by the client. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "CN=Example Root CA, OU=Infrastructure Team, DC=example, DC=com" - // - // [subject]: https://datatracker.ietf.org/doc/html/rfc5280#section-4.1.2.6 - TLSClientIssuerKey = attribute.Key("tls.client.issuer") - - // TLSClientJa3Key is the attribute Key conforming to the "tls.client.ja3" - // semantic conventions. It represents a hash that identifies clients based on - // how they perform an SSL/TLS handshake. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "d4e5b18d6b55c71272893221c96ba240" - TLSClientJa3Key = attribute.Key("tls.client.ja3") - - // TLSClientNotAfterKey is the attribute Key conforming to the - // "tls.client.not_after" semantic conventions. It represents the date/Time - // indicating when client certificate is no longer considered valid. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "2021-01-01T00:00:00.000Z" - TLSClientNotAfterKey = attribute.Key("tls.client.not_after") - - // TLSClientNotBeforeKey is the attribute Key conforming to the - // "tls.client.not_before" semantic conventions. It represents the date/Time - // indicating when client certificate is first considered valid. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "1970-01-01T00:00:00.000Z" - TLSClientNotBeforeKey = attribute.Key("tls.client.not_before") - - // TLSClientSubjectKey is the attribute Key conforming to the - // "tls.client.subject" semantic conventions. It represents the distinguished - // name of subject of the x.509 certificate presented by the client. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "CN=myclient, OU=Documentation Team, DC=example, DC=com" - TLSClientSubjectKey = attribute.Key("tls.client.subject") - - // TLSClientSupportedCiphersKey is the attribute Key conforming to the - // "tls.client.supported_ciphers" semantic conventions. It represents the array - // of ciphers offered by the client during the client hello. - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "TLS_ECDHE_RSA_WITH_AES_256_GCM_SHA384", - // "TLS_ECDHE_ECDSA_WITH_AES_256_GCM_SHA384" - TLSClientSupportedCiphersKey = attribute.Key("tls.client.supported_ciphers") - - // TLSCurveKey is the attribute Key conforming to the "tls.curve" semantic - // conventions. It represents the string indicating the curve used for the given - // cipher, when applicable. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "secp256r1" - TLSCurveKey = attribute.Key("tls.curve") - - // TLSEstablishedKey is the attribute Key conforming to the "tls.established" - // semantic conventions. It represents the boolean flag indicating if the TLS - // negotiation was successful and transitioned to an encrypted tunnel. - // - // Type: boolean - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: true - TLSEstablishedKey = attribute.Key("tls.established") - - // TLSNextProtocolKey is the attribute Key conforming to the "tls.next_protocol" - // semantic conventions. It represents the string indicating the protocol being - // tunneled. Per the values in the [IANA registry], this string should be lower - // case. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "http/1.1" - // - // [IANA registry]: https://www.iana.org/assignments/tls-extensiontype-values/tls-extensiontype-values.xhtml#alpn-protocol-ids - TLSNextProtocolKey = attribute.Key("tls.next_protocol") - - // TLSProtocolNameKey is the attribute Key conforming to the "tls.protocol.name" - // semantic conventions. It represents the normalized lowercase protocol name - // parsed from original string of the negotiated [SSL/TLS protocol version]. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // - // [SSL/TLS protocol version]: https://docs.openssl.org/1.1.1/man3/SSL_get_version/#return-values - TLSProtocolNameKey = attribute.Key("tls.protocol.name") - - // TLSProtocolVersionKey is the attribute Key conforming to the - // "tls.protocol.version" semantic conventions. It represents the numeric part - // of the version parsed from the original string of the negotiated - // [SSL/TLS protocol version]. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "1.2", "3" - // - // [SSL/TLS protocol version]: https://docs.openssl.org/1.1.1/man3/SSL_get_version/#return-values - TLSProtocolVersionKey = attribute.Key("tls.protocol.version") - - // TLSResumedKey is the attribute Key conforming to the "tls.resumed" semantic - // conventions. It represents the boolean flag indicating if this TLS connection - // was resumed from an existing TLS negotiation. - // - // Type: boolean - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: true - TLSResumedKey = attribute.Key("tls.resumed") - - // TLSServerCertificateKey is the attribute Key conforming to the - // "tls.server.certificate" semantic conventions. It represents the PEM-encoded - // stand-alone certificate offered by the server. This is usually - // mutually-exclusive of `server.certificate_chain` since this value also exists - // in that list. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "MII..." - TLSServerCertificateKey = attribute.Key("tls.server.certificate") - - // TLSServerCertificateChainKey is the attribute Key conforming to the - // "tls.server.certificate_chain" semantic conventions. It represents the array - // of PEM-encoded certificates that make up the certificate chain offered by the - // server. This is usually mutually-exclusive of `server.certificate` since that - // value should be the first certificate in the chain. - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "MII...", "MI..." - TLSServerCertificateChainKey = attribute.Key("tls.server.certificate_chain") - - // TLSServerHashMd5Key is the attribute Key conforming to the - // "tls.server.hash.md5" semantic conventions. It represents the certificate - // fingerprint using the MD5 digest of DER-encoded version of certificate - // offered by the server. For consistency with other hash values, this value - // should be formatted as an uppercase hash. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "0F76C7F2C55BFD7D8E8B8F4BFBF0C9EC" - TLSServerHashMd5Key = attribute.Key("tls.server.hash.md5") - - // TLSServerHashSha1Key is the attribute Key conforming to the - // "tls.server.hash.sha1" semantic conventions. It represents the certificate - // fingerprint using the SHA1 digest of DER-encoded version of certificate - // offered by the server. For consistency with other hash values, this value - // should be formatted as an uppercase hash. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "9E393D93138888D288266C2D915214D1D1CCEB2A" - TLSServerHashSha1Key = attribute.Key("tls.server.hash.sha1") - - // TLSServerHashSha256Key is the attribute Key conforming to the - // "tls.server.hash.sha256" semantic conventions. It represents the certificate - // fingerprint using the SHA256 digest of DER-encoded version of certificate - // offered by the server. For consistency with other hash values, this value - // should be formatted as an uppercase hash. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "0687F666A054EF17A08E2F2162EAB4CBC0D265E1D7875BE74BF3C712CA92DAF0" - TLSServerHashSha256Key = attribute.Key("tls.server.hash.sha256") - - // TLSServerIssuerKey is the attribute Key conforming to the "tls.server.issuer" - // semantic conventions. It represents the distinguished name of [subject] of - // the issuer of the x.509 certificate presented by the client. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "CN=Example Root CA, OU=Infrastructure Team, DC=example, DC=com" - // - // [subject]: https://datatracker.ietf.org/doc/html/rfc5280#section-4.1.2.6 - TLSServerIssuerKey = attribute.Key("tls.server.issuer") - - // TLSServerJa3sKey is the attribute Key conforming to the "tls.server.ja3s" - // semantic conventions. It represents a hash that identifies servers based on - // how they perform an SSL/TLS handshake. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "d4e5b18d6b55c71272893221c96ba240" - TLSServerJa3sKey = attribute.Key("tls.server.ja3s") - - // TLSServerNotAfterKey is the attribute Key conforming to the - // "tls.server.not_after" semantic conventions. It represents the date/Time - // indicating when server certificate is no longer considered valid. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "2021-01-01T00:00:00.000Z" - TLSServerNotAfterKey = attribute.Key("tls.server.not_after") - - // TLSServerNotBeforeKey is the attribute Key conforming to the - // "tls.server.not_before" semantic conventions. It represents the date/Time - // indicating when server certificate is first considered valid. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "1970-01-01T00:00:00.000Z" - TLSServerNotBeforeKey = attribute.Key("tls.server.not_before") - - // TLSServerSubjectKey is the attribute Key conforming to the - // "tls.server.subject" semantic conventions. It represents the distinguished - // name of subject of the x.509 certificate presented by the server. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "CN=myserver, OU=Documentation Team, DC=example, DC=com" - TLSServerSubjectKey = attribute.Key("tls.server.subject") -) - -// TLSCipher returns an attribute KeyValue conforming to the "tls.cipher" -// semantic conventions. It represents the string indicating the [cipher] used -// during the current connection. -// -// [cipher]: https://datatracker.ietf.org/doc/html/rfc5246#appendix-A.5 -func TLSCipher(val string) attribute.KeyValue { - return TLSCipherKey.String(val) -} - -// TLSClientCertificate returns an attribute KeyValue conforming to the -// "tls.client.certificate" semantic conventions. It represents the PEM-encoded -// stand-alone certificate offered by the client. This is usually -// mutually-exclusive of `client.certificate_chain` since this value also exists -// in that list. -func TLSClientCertificate(val string) attribute.KeyValue { - return TLSClientCertificateKey.String(val) -} - -// TLSClientCertificateChain returns an attribute KeyValue conforming to the -// "tls.client.certificate_chain" semantic conventions. It represents the array -// of PEM-encoded certificates that make up the certificate chain offered by the -// client. This is usually mutually-exclusive of `client.certificate` since that -// value should be the first certificate in the chain. -func TLSClientCertificateChain(val ...string) attribute.KeyValue { - return TLSClientCertificateChainKey.StringSlice(val) -} - -// TLSClientHashMd5 returns an attribute KeyValue conforming to the -// "tls.client.hash.md5" semantic conventions. It represents the certificate -// fingerprint using the MD5 digest of DER-encoded version of certificate offered -// by the client. For consistency with other hash values, this value should be -// formatted as an uppercase hash. -func TLSClientHashMd5(val string) attribute.KeyValue { - return TLSClientHashMd5Key.String(val) -} - -// TLSClientHashSha1 returns an attribute KeyValue conforming to the -// "tls.client.hash.sha1" semantic conventions. It represents the certificate -// fingerprint using the SHA1 digest of DER-encoded version of certificate -// offered by the client. For consistency with other hash values, this value -// should be formatted as an uppercase hash. -func TLSClientHashSha1(val string) attribute.KeyValue { - return TLSClientHashSha1Key.String(val) -} - -// TLSClientHashSha256 returns an attribute KeyValue conforming to the -// "tls.client.hash.sha256" semantic conventions. It represents the certificate -// fingerprint using the SHA256 digest of DER-encoded version of certificate -// offered by the client. For consistency with other hash values, this value -// should be formatted as an uppercase hash. -func TLSClientHashSha256(val string) attribute.KeyValue { - return TLSClientHashSha256Key.String(val) -} - -// TLSClientIssuer returns an attribute KeyValue conforming to the -// "tls.client.issuer" semantic conventions. It represents the distinguished name -// of [subject] of the issuer of the x.509 certificate presented by the client. -// -// [subject]: https://datatracker.ietf.org/doc/html/rfc5280#section-4.1.2.6 -func TLSClientIssuer(val string) attribute.KeyValue { - return TLSClientIssuerKey.String(val) -} - -// TLSClientJa3 returns an attribute KeyValue conforming to the "tls.client.ja3" -// semantic conventions. It represents a hash that identifies clients based on -// how they perform an SSL/TLS handshake. -func TLSClientJa3(val string) attribute.KeyValue { - return TLSClientJa3Key.String(val) -} - -// TLSClientNotAfter returns an attribute KeyValue conforming to the -// "tls.client.not_after" semantic conventions. It represents the date/Time -// indicating when client certificate is no longer considered valid. -func TLSClientNotAfter(val string) attribute.KeyValue { - return TLSClientNotAfterKey.String(val) -} - -// TLSClientNotBefore returns an attribute KeyValue conforming to the -// "tls.client.not_before" semantic conventions. It represents the date/Time -// indicating when client certificate is first considered valid. -func TLSClientNotBefore(val string) attribute.KeyValue { - return TLSClientNotBeforeKey.String(val) -} - -// TLSClientSubject returns an attribute KeyValue conforming to the -// "tls.client.subject" semantic conventions. It represents the distinguished -// name of subject of the x.509 certificate presented by the client. -func TLSClientSubject(val string) attribute.KeyValue { - return TLSClientSubjectKey.String(val) -} - -// TLSClientSupportedCiphers returns an attribute KeyValue conforming to the -// "tls.client.supported_ciphers" semantic conventions. It represents the array -// of ciphers offered by the client during the client hello. -func TLSClientSupportedCiphers(val ...string) attribute.KeyValue { - return TLSClientSupportedCiphersKey.StringSlice(val) -} - -// TLSCurve returns an attribute KeyValue conforming to the "tls.curve" semantic -// conventions. It represents the string indicating the curve used for the given -// cipher, when applicable. -func TLSCurve(val string) attribute.KeyValue { - return TLSCurveKey.String(val) -} - -// TLSEstablished returns an attribute KeyValue conforming to the -// "tls.established" semantic conventions. It represents the boolean flag -// indicating if the TLS negotiation was successful and transitioned to an -// encrypted tunnel. -func TLSEstablished(val bool) attribute.KeyValue { - return TLSEstablishedKey.Bool(val) -} - -// TLSNextProtocol returns an attribute KeyValue conforming to the -// "tls.next_protocol" semantic conventions. It represents the string indicating -// the protocol being tunneled. Per the values in the [IANA registry], this -// string should be lower case. -// -// [IANA registry]: https://www.iana.org/assignments/tls-extensiontype-values/tls-extensiontype-values.xhtml#alpn-protocol-ids -func TLSNextProtocol(val string) attribute.KeyValue { - return TLSNextProtocolKey.String(val) -} - -// TLSProtocolVersion returns an attribute KeyValue conforming to the -// "tls.protocol.version" semantic conventions. It represents the numeric part of -// the version parsed from the original string of the negotiated -// [SSL/TLS protocol version]. -// -// [SSL/TLS protocol version]: https://docs.openssl.org/1.1.1/man3/SSL_get_version/#return-values -func TLSProtocolVersion(val string) attribute.KeyValue { - return TLSProtocolVersionKey.String(val) -} - -// TLSResumed returns an attribute KeyValue conforming to the "tls.resumed" -// semantic conventions. It represents the boolean flag indicating if this TLS -// connection was resumed from an existing TLS negotiation. -func TLSResumed(val bool) attribute.KeyValue { - return TLSResumedKey.Bool(val) -} - -// TLSServerCertificate returns an attribute KeyValue conforming to the -// "tls.server.certificate" semantic conventions. It represents the PEM-encoded -// stand-alone certificate offered by the server. This is usually -// mutually-exclusive of `server.certificate_chain` since this value also exists -// in that list. -func TLSServerCertificate(val string) attribute.KeyValue { - return TLSServerCertificateKey.String(val) -} - -// TLSServerCertificateChain returns an attribute KeyValue conforming to the -// "tls.server.certificate_chain" semantic conventions. It represents the array -// of PEM-encoded certificates that make up the certificate chain offered by the -// server. This is usually mutually-exclusive of `server.certificate` since that -// value should be the first certificate in the chain. -func TLSServerCertificateChain(val ...string) attribute.KeyValue { - return TLSServerCertificateChainKey.StringSlice(val) -} - -// TLSServerHashMd5 returns an attribute KeyValue conforming to the -// "tls.server.hash.md5" semantic conventions. It represents the certificate -// fingerprint using the MD5 digest of DER-encoded version of certificate offered -// by the server. For consistency with other hash values, this value should be -// formatted as an uppercase hash. -func TLSServerHashMd5(val string) attribute.KeyValue { - return TLSServerHashMd5Key.String(val) -} - -// TLSServerHashSha1 returns an attribute KeyValue conforming to the -// "tls.server.hash.sha1" semantic conventions. It represents the certificate -// fingerprint using the SHA1 digest of DER-encoded version of certificate -// offered by the server. For consistency with other hash values, this value -// should be formatted as an uppercase hash. -func TLSServerHashSha1(val string) attribute.KeyValue { - return TLSServerHashSha1Key.String(val) -} - -// TLSServerHashSha256 returns an attribute KeyValue conforming to the -// "tls.server.hash.sha256" semantic conventions. It represents the certificate -// fingerprint using the SHA256 digest of DER-encoded version of certificate -// offered by the server. For consistency with other hash values, this value -// should be formatted as an uppercase hash. -func TLSServerHashSha256(val string) attribute.KeyValue { - return TLSServerHashSha256Key.String(val) -} - -// TLSServerIssuer returns an attribute KeyValue conforming to the -// "tls.server.issuer" semantic conventions. It represents the distinguished name -// of [subject] of the issuer of the x.509 certificate presented by the client. -// -// [subject]: https://datatracker.ietf.org/doc/html/rfc5280#section-4.1.2.6 -func TLSServerIssuer(val string) attribute.KeyValue { - return TLSServerIssuerKey.String(val) -} - -// TLSServerJa3s returns an attribute KeyValue conforming to the -// "tls.server.ja3s" semantic conventions. It represents a hash that identifies -// servers based on how they perform an SSL/TLS handshake. -func TLSServerJa3s(val string) attribute.KeyValue { - return TLSServerJa3sKey.String(val) -} - -// TLSServerNotAfter returns an attribute KeyValue conforming to the -// "tls.server.not_after" semantic conventions. It represents the date/Time -// indicating when server certificate is no longer considered valid. -func TLSServerNotAfter(val string) attribute.KeyValue { - return TLSServerNotAfterKey.String(val) -} - -// TLSServerNotBefore returns an attribute KeyValue conforming to the -// "tls.server.not_before" semantic conventions. It represents the date/Time -// indicating when server certificate is first considered valid. -func TLSServerNotBefore(val string) attribute.KeyValue { - return TLSServerNotBeforeKey.String(val) -} - -// TLSServerSubject returns an attribute KeyValue conforming to the -// "tls.server.subject" semantic conventions. It represents the distinguished -// name of subject of the x.509 certificate presented by the server. -func TLSServerSubject(val string) attribute.KeyValue { - return TLSServerSubjectKey.String(val) -} - -// Enum values for tls.protocol.name -var ( - // ssl - // Stability: development - TLSProtocolNameSsl = TLSProtocolNameKey.String("ssl") - // tls - // Stability: development - TLSProtocolNameTLS = TLSProtocolNameKey.String("tls") -) - -// Namespace: url -const ( - // URLDomainKey is the attribute Key conforming to the "url.domain" semantic - // conventions. It represents the domain extracted from the `url.full`, such as - // "opentelemetry.io". - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "www.foo.bar", "opentelemetry.io", "3.12.167.2", - // "[1080:0:0:0:8:800:200C:417A]" - // Note: In some cases a URL may refer to an IP and/or port directly, without a - // domain name. In this case, the IP address would go to the domain field. If - // the URL contains a [literal IPv6 address] enclosed by `[` and `]`, the `[` - // and `]` characters should also be captured in the domain field. - // - // [literal IPv6 address]: https://www.rfc-editor.org/rfc/rfc2732#section-2 - URLDomainKey = attribute.Key("url.domain") - - // URLExtensionKey is the attribute Key conforming to the "url.extension" - // semantic conventions. It represents the file extension extracted from the - // `url.full`, excluding the leading dot. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "png", "gz" - // Note: The file extension is only set if it exists, as not every url has a - // file extension. When the file name has multiple extensions `example.tar.gz`, - // only the last one should be captured `gz`, not `tar.gz`. - URLExtensionKey = attribute.Key("url.extension") - - // URLFragmentKey is the attribute Key conforming to the "url.fragment" semantic - // conventions. It represents the [URI fragment] component. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "SemConv" - // - // [URI fragment]: https://www.rfc-editor.org/rfc/rfc3986#section-3.5 - URLFragmentKey = attribute.Key("url.fragment") - - // URLFullKey is the attribute Key conforming to the "url.full" semantic - // conventions. It represents the absolute URL describing a network resource - // according to [RFC3986]. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "https://www.foo.bar/search?q=OpenTelemetry#SemConv", "//localhost" - // Note: For network calls, URL usually has - // `scheme://host[:port][path][?query][#fragment]` format, where the fragment - // is not transmitted over HTTP, but if it is known, it SHOULD be included - // nevertheless. - // - // `url.full` MUST NOT contain credentials passed via URL in form of - // `https://username:password@www.example.com/`. - // In such case username and password SHOULD be redacted and attribute's value - // SHOULD be `https://REDACTED:REDACTED@www.example.com/`. - // - // `url.full` SHOULD capture the absolute URL when it is available (or can be - // reconstructed). - // - // Sensitive content provided in `url.full` SHOULD be scrubbed when - // instrumentations can identify it. - // - // - // Query string values for the following keys SHOULD be redacted by default and - // replaced by the - // value `REDACTED`: - // - // - [`AWSAccessKeyId`] - // - [`Signature`] - // - [`sig`] - // - [`X-Goog-Signature`] - // - // This list is subject to change over time. - // - // Matching of query parameter keys against the sensitive list SHOULD be - // case-sensitive. - // - // - // Instrumentation MAY provide a way to override this list via declarative - // configuration. - // If so, it SHOULD use the `sensitive_query_parameters` property - // (an array of case-sensitive strings with minimum items 0) under - // `.instrumentation/development.general.sanitization.url`. - // This list is a full override of the default sensitive query parameter keys, - // it is not a list of keys in addition to the defaults. - // - // When a query string value is redacted, the query string key SHOULD still be - // preserved, e.g. - // `https://www.example.com/path?color=blue&sig=REDACTED`. - // - // [RFC3986]: https://www.rfc-editor.org/rfc/rfc3986 - // [`AWSAccessKeyId`]: https://docs.aws.amazon.com/AmazonS3/latest/userguide/RESTAuthentication.html#RESTAuthenticationQueryStringAuth - // [`Signature`]: https://docs.aws.amazon.com/AmazonS3/latest/userguide/RESTAuthentication.html#RESTAuthenticationQueryStringAuth - // [`sig`]: https://learn.microsoft.com/azure/storage/common/storage-sas-overview#sas-token - // [`X-Goog-Signature`]: https://cloud.google.com/storage/docs/access-control/signed-urls - URLFullKey = attribute.Key("url.full") - - // URLOriginalKey is the attribute Key conforming to the "url.original" semantic - // conventions. It represents the unmodified original URL as seen in the event - // source. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "https://www.foo.bar/search?q=OpenTelemetry#SemConv", - // "search?q=OpenTelemetry" - // Note: In network monitoring, the observed URL may be a full URL, whereas in - // access logs, the URL is often just represented as a path. This field is meant - // to represent the URL as it was observed, complete or not. - // `url.original` might contain credentials passed via URL in form of - // `https://username:password@www.example.com/`. In such case password and - // username SHOULD NOT be redacted and attribute's value SHOULD remain the same. - URLOriginalKey = attribute.Key("url.original") - - // URLPathKey is the attribute Key conforming to the "url.path" semantic - // conventions. It represents the [URI path] component. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "/search" - // Note: Sensitive content provided in `url.path` SHOULD be scrubbed when - // instrumentations can identify it. - // - // [URI path]: https://www.rfc-editor.org/rfc/rfc3986#section-3.3 - URLPathKey = attribute.Key("url.path") - - // URLPortKey is the attribute Key conforming to the "url.port" semantic - // conventions. It represents the port extracted from the `url.full`. - // - // Type: int - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: 443 - URLPortKey = attribute.Key("url.port") - - // URLQueryKey is the attribute Key conforming to the "url.query" semantic - // conventions. It represents the [URI query] component. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "q=OpenTelemetry" - // Note: Sensitive content provided in `url.query` SHOULD be scrubbed when - // instrumentations can identify it. - // - // - // Query string values for the following keys SHOULD be redacted by default and - // replaced by the value `REDACTED`: - // - // - [`AWSAccessKeyId`] - // - [`Signature`] - // - [`sig`] - // - [`X-Goog-Signature`] - // - // This list is subject to change over time. - // - // Matching of query parameter keys against the sensitive list SHOULD be - // case-sensitive. - // - // Instrumentation MAY provide a way to override this list via declarative - // configuration. - // If so, it SHOULD use the `sensitive_query_parameters` property - // (an array of case-sensitive strings with minimum items 0) under - // `.instrumentation/development.general.sanitization.url`. - // This list is a full override of the default sensitive query parameter keys, - // it is not a list of keys in addition to the defaults. - // - // When a query string value is redacted, the query string key SHOULD still be - // preserved, e.g. - // `q=OpenTelemetry&sig=REDACTED`. - // - // [URI query]: https://www.rfc-editor.org/rfc/rfc3986#section-3.4 - // [`AWSAccessKeyId`]: https://docs.aws.amazon.com/AmazonS3/latest/userguide/RESTAuthentication.html#RESTAuthenticationQueryStringAuth - // [`Signature`]: https://docs.aws.amazon.com/AmazonS3/latest/userguide/RESTAuthentication.html#RESTAuthenticationQueryStringAuth - // [`sig`]: https://learn.microsoft.com/azure/storage/common/storage-sas-overview#sas-token - // [`X-Goog-Signature`]: https://cloud.google.com/storage/docs/access-control/signed-urls - URLQueryKey = attribute.Key("url.query") - - // URLRegisteredDomainKey is the attribute Key conforming to the - // "url.registered_domain" semantic conventions. It represents the highest - // registered url domain, stripped of the subdomain. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "example.com", "foo.co.uk" - // Note: This value can be determined precisely with the [public suffix list]. - // For example, the registered domain for `foo.example.com` is `example.com`. - // Trying to approximate this by simply taking the last two labels will not work - // well for TLDs such as `co.uk`. - // - // [public suffix list]: https://publicsuffix.org/ - URLRegisteredDomainKey = attribute.Key("url.registered_domain") - - // URLSchemeKey is the attribute Key conforming to the "url.scheme" semantic - // conventions. It represents the [URI scheme] component identifying the used - // protocol. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "https", "ftp", "telnet" - // - // [URI scheme]: https://www.rfc-editor.org/rfc/rfc3986#section-3.1 - URLSchemeKey = attribute.Key("url.scheme") - - // URLSubdomainKey is the attribute Key conforming to the "url.subdomain" - // semantic conventions. It represents the subdomain portion of a fully - // qualified domain name includes all of the names except the host name under - // the registered_domain. In a partially qualified domain, or if the - // qualification level of the full name cannot be determined, subdomain contains - // all of the names below the registered domain. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "east", "sub2.sub1" - // Note: The subdomain portion of `www.east.mydomain.co.uk` is `east`. If the - // domain has multiple levels of subdomain, such as `sub2.sub1.example.com`, the - // subdomain field should contain `sub2.sub1`, with no trailing period. - URLSubdomainKey = attribute.Key("url.subdomain") - - // URLTemplateKey is the attribute Key conforming to the "url.template" semantic - // conventions. It represents the low-cardinality template of an - // [absolute path reference]. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "/users/{id}", "/users/:id", "/users?id={id}" - // - // [absolute path reference]: https://www.rfc-editor.org/rfc/rfc3986#section-4.2 - URLTemplateKey = attribute.Key("url.template") - - // URLTopLevelDomainKey is the attribute Key conforming to the - // "url.top_level_domain" semantic conventions. It represents the effective top - // level domain (eTLD), also known as the domain suffix, is the last part of the - // domain name. For example, the top level domain for example.com is `com`. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "com", "co.uk" - // Note: This value can be determined precisely with the [public suffix list]. - // - // [public suffix list]: https://publicsuffix.org/ - URLTopLevelDomainKey = attribute.Key("url.top_level_domain") -) - -// URLDomain returns an attribute KeyValue conforming to the "url.domain" -// semantic conventions. It represents the domain extracted from the `url.full`, -// such as "opentelemetry.io". -func URLDomain(val string) attribute.KeyValue { - return URLDomainKey.String(val) -} - -// URLExtension returns an attribute KeyValue conforming to the "url.extension" -// semantic conventions. It represents the file extension extracted from the -// `url.full`, excluding the leading dot. -func URLExtension(val string) attribute.KeyValue { - return URLExtensionKey.String(val) -} - -// URLFragment returns an attribute KeyValue conforming to the "url.fragment" -// semantic conventions. It represents the [URI fragment] component. -// -// [URI fragment]: https://www.rfc-editor.org/rfc/rfc3986#section-3.5 -func URLFragment(val string) attribute.KeyValue { - return URLFragmentKey.String(val) -} - -// URLFull returns an attribute KeyValue conforming to the "url.full" semantic -// conventions. It represents the absolute URL describing a network resource -// according to [RFC3986]. -// -// [RFC3986]: https://www.rfc-editor.org/rfc/rfc3986 -func URLFull(val string) attribute.KeyValue { - return URLFullKey.String(val) -} - -// URLOriginal returns an attribute KeyValue conforming to the "url.original" -// semantic conventions. It represents the unmodified original URL as seen in the -// event source. -func URLOriginal(val string) attribute.KeyValue { - return URLOriginalKey.String(val) -} - -// URLPath returns an attribute KeyValue conforming to the "url.path" semantic -// conventions. It represents the [URI path] component. -// -// [URI path]: https://www.rfc-editor.org/rfc/rfc3986#section-3.3 -func URLPath(val string) attribute.KeyValue { - return URLPathKey.String(val) -} - -// URLPort returns an attribute KeyValue conforming to the "url.port" semantic -// conventions. It represents the port extracted from the `url.full`. -func URLPort(val int) attribute.KeyValue { - return URLPortKey.Int(val) -} - -// URLQuery returns an attribute KeyValue conforming to the "url.query" semantic -// conventions. It represents the [URI query] component. -// -// [URI query]: https://www.rfc-editor.org/rfc/rfc3986#section-3.4 -func URLQuery(val string) attribute.KeyValue { - return URLQueryKey.String(val) -} - -// URLRegisteredDomain returns an attribute KeyValue conforming to the -// "url.registered_domain" semantic conventions. It represents the highest -// registered url domain, stripped of the subdomain. -func URLRegisteredDomain(val string) attribute.KeyValue { - return URLRegisteredDomainKey.String(val) -} - -// URLScheme returns an attribute KeyValue conforming to the "url.scheme" -// semantic conventions. It represents the [URI scheme] component identifying the -// used protocol. -// -// [URI scheme]: https://www.rfc-editor.org/rfc/rfc3986#section-3.1 -func URLScheme(val string) attribute.KeyValue { - return URLSchemeKey.String(val) -} - -// URLSubdomain returns an attribute KeyValue conforming to the "url.subdomain" -// semantic conventions. It represents the subdomain portion of a fully qualified -// domain name includes all of the names except the host name under the -// registered_domain. In a partially qualified domain, or if the qualification -// level of the full name cannot be determined, subdomain contains all of the -// names below the registered domain. -func URLSubdomain(val string) attribute.KeyValue { - return URLSubdomainKey.String(val) -} - -// URLTemplate returns an attribute KeyValue conforming to the "url.template" -// semantic conventions. It represents the low-cardinality template of an -// [absolute path reference]. -// -// [absolute path reference]: https://www.rfc-editor.org/rfc/rfc3986#section-4.2 -func URLTemplate(val string) attribute.KeyValue { - return URLTemplateKey.String(val) -} - -// URLTopLevelDomain returns an attribute KeyValue conforming to the -// "url.top_level_domain" semantic conventions. It represents the effective top -// level domain (eTLD), also known as the domain suffix, is the last part of the -// domain name. For example, the top level domain for example.com is `com`. -func URLTopLevelDomain(val string) attribute.KeyValue { - return URLTopLevelDomainKey.String(val) -} - -// Namespace: user -const ( - // UserEmailKey is the attribute Key conforming to the "user.email" semantic - // conventions. It represents the user email address. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "a.einstein@example.com" - UserEmailKey = attribute.Key("user.email") - - // UserFullNameKey is the attribute Key conforming to the "user.full_name" - // semantic conventions. It represents the user's full name. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Albert Einstein" - UserFullNameKey = attribute.Key("user.full_name") - - // UserHashKey is the attribute Key conforming to the "user.hash" semantic - // conventions. It represents the unique user hash to correlate information for - // a user in anonymized form. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "364fc68eaf4c8acec74a4e52d7d1feaa" - // Note: Useful if `user.id` or `user.name` contain confidential information and - // cannot be used. - UserHashKey = attribute.Key("user.hash") - - // UserIDKey is the attribute Key conforming to the "user.id" semantic - // conventions. It represents the unique identifier of the user. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "S-1-5-21-202424912787-2692429404-2351956786-1000" - UserIDKey = attribute.Key("user.id") - - // UserNameKey is the attribute Key conforming to the "user.name" semantic - // conventions. It represents the short name or login/username of the user. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "a.einstein" - UserNameKey = attribute.Key("user.name") - - // UserRolesKey is the attribute Key conforming to the "user.roles" semantic - // conventions. It represents the array of user roles at the time of the event. - // - // Type: string[] - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "admin", "reporting_user" - UserRolesKey = attribute.Key("user.roles") -) - -// UserEmail returns an attribute KeyValue conforming to the "user.email" -// semantic conventions. It represents the user email address. -func UserEmail(val string) attribute.KeyValue { - return UserEmailKey.String(val) -} - -// UserFullName returns an attribute KeyValue conforming to the "user.full_name" -// semantic conventions. It represents the user's full name. -func UserFullName(val string) attribute.KeyValue { - return UserFullNameKey.String(val) -} - -// UserHash returns an attribute KeyValue conforming to the "user.hash" semantic -// conventions. It represents the unique user hash to correlate information for a -// user in anonymized form. -func UserHash(val string) attribute.KeyValue { - return UserHashKey.String(val) -} - -// UserID returns an attribute KeyValue conforming to the "user.id" semantic -// conventions. It represents the unique identifier of the user. -func UserID(val string) attribute.KeyValue { - return UserIDKey.String(val) -} - -// UserName returns an attribute KeyValue conforming to the "user.name" semantic -// conventions. It represents the short name or login/username of the user. -func UserName(val string) attribute.KeyValue { - return UserNameKey.String(val) -} - -// UserRoles returns an attribute KeyValue conforming to the "user.roles" -// semantic conventions. It represents the array of user roles at the time of the -// event. -func UserRoles(val ...string) attribute.KeyValue { - return UserRolesKey.StringSlice(val) -} - -// Namespace: user_agent -const ( - // UserAgentNameKey is the attribute Key conforming to the "user_agent.name" - // semantic conventions. It represents the name of the user-agent extracted from - // original. Usually refers to the browser's name. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Safari", "YourApp" - // Note: [Example] of extracting browser's name from original string. In the - // case of using a user-agent for non-browser products, such as microservices - // with multiple names/versions inside the `user_agent.original`, the most - // significant name SHOULD be selected. In such a scenario it should align with - // `user_agent.version` - // - // [Example]: https://uaparser.dev/#demo - UserAgentNameKey = attribute.Key("user_agent.name") - - // UserAgentOriginalKey is the attribute Key conforming to the - // "user_agent.original" semantic conventions. It represents the value of the - // [HTTP User-Agent] header sent by the client. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Stable - // - // Examples: "CERN-LineMode/2.15 libwww/2.17b3", "Mozilla/5.0 (iPhone; CPU - // iPhone OS 14_7_1 like Mac OS X) AppleWebKit/605.1.15 (KHTML, like Gecko) - // Version/14.1.2 Mobile/15E148 Safari/604.1", "YourApp/1.0.0 - // grpc-java-okhttp/1.27.2" - // - // [HTTP User-Agent]: https://www.rfc-editor.org/rfc/rfc9110.html#field.user-agent - UserAgentOriginalKey = attribute.Key("user_agent.original") - - // UserAgentOSNameKey is the attribute Key conforming to the - // "user_agent.os.name" semantic conventions. It represents the human readable - // operating system name. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "iOS", "Android", "Ubuntu" - // Note: For mapping user agent strings to OS names, libraries such as - // [ua-parser] can be utilized. - // - // [ua-parser]: https://github.com/ua-parser - UserAgentOSNameKey = attribute.Key("user_agent.os.name") - - // UserAgentOSVersionKey is the attribute Key conforming to the - // "user_agent.os.version" semantic conventions. It represents the version - // string of the operating system as defined in [Version Attributes]. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "14.2.1", "18.04.1" - // Note: For mapping user agent strings to OS versions, libraries such as - // [ua-parser] can be utilized. - // - // [Version Attributes]: /docs/resource/README.md#version-attributes - // [ua-parser]: https://github.com/ua-parser - UserAgentOSVersionKey = attribute.Key("user_agent.os.version") - - // UserAgentSyntheticTypeKey is the attribute Key conforming to the - // "user_agent.synthetic.type" semantic conventions. It represents the specifies - // the category of synthetic traffic, such as tests or bots. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // Note: This attribute MAY be derived from the contents of the - // `user_agent.original` attribute. Components that populate the attribute are - // responsible for determining what they consider to be synthetic bot or test - // traffic. This attribute can either be set for self-identification purposes, - // or on telemetry detected to be generated as a result of a synthetic request. - // This attribute is useful for distinguishing between genuine client traffic - // and synthetic traffic generated by bots or tests. - UserAgentSyntheticTypeKey = attribute.Key("user_agent.synthetic.type") - - // UserAgentVersionKey is the attribute Key conforming to the - // "user_agent.version" semantic conventions. It represents the version of the - // user-agent extracted from original. Usually refers to the browser's version. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "14.1.2", "1.0.0" - // Note: [Example] of extracting browser's version from original string. In the - // case of using a user-agent for non-browser products, such as microservices - // with multiple names/versions inside the `user_agent.original`, the most - // significant version SHOULD be selected. In such a scenario it should align - // with `user_agent.name` - // - // [Example]: https://uaparser.dev/#demo - UserAgentVersionKey = attribute.Key("user_agent.version") -) - -// UserAgentName returns an attribute KeyValue conforming to the -// "user_agent.name" semantic conventions. It represents the name of the -// user-agent extracted from original. Usually refers to the browser's name. -func UserAgentName(val string) attribute.KeyValue { - return UserAgentNameKey.String(val) -} - -// UserAgentOriginal returns an attribute KeyValue conforming to the -// "user_agent.original" semantic conventions. It represents the value of the -// [HTTP User-Agent] header sent by the client. -// -// [HTTP User-Agent]: https://www.rfc-editor.org/rfc/rfc9110.html#field.user-agent -func UserAgentOriginal(val string) attribute.KeyValue { - return UserAgentOriginalKey.String(val) -} - -// UserAgentOSName returns an attribute KeyValue conforming to the -// "user_agent.os.name" semantic conventions. It represents the human readable -// operating system name. -func UserAgentOSName(val string) attribute.KeyValue { - return UserAgentOSNameKey.String(val) -} - -// UserAgentOSVersion returns an attribute KeyValue conforming to the -// "user_agent.os.version" semantic conventions. It represents the version string -// of the operating system as defined in [Version Attributes]. -// -// [Version Attributes]: /docs/resource/README.md#version-attributes -func UserAgentOSVersion(val string) attribute.KeyValue { - return UserAgentOSVersionKey.String(val) -} - -// UserAgentVersion returns an attribute KeyValue conforming to the -// "user_agent.version" semantic conventions. It represents the version of the -// user-agent extracted from original. Usually refers to the browser's version. -func UserAgentVersion(val string) attribute.KeyValue { - return UserAgentVersionKey.String(val) -} - -// Enum values for user_agent.synthetic.type -var ( - // Bot source. - // Stability: development - UserAgentSyntheticTypeBot = UserAgentSyntheticTypeKey.String("bot") - // Synthetic test source. - // Stability: development - UserAgentSyntheticTypeTest = UserAgentSyntheticTypeKey.String("test") -) - -// Namespace: vcs -const ( - // VCSChangeIDKey is the attribute Key conforming to the "vcs.change.id" - // semantic conventions. It represents the ID of the change (pull request/merge - // request/changelist) if applicable. This is usually a unique (within - // repository) identifier generated by the VCS system. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "123" - VCSChangeIDKey = attribute.Key("vcs.change.id") - - // VCSChangeStateKey is the attribute Key conforming to the "vcs.change.state" - // semantic conventions. It represents the state of the change (pull - // request/merge request/changelist). - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "open", "closed", "merged" - VCSChangeStateKey = attribute.Key("vcs.change.state") - - // VCSChangeTitleKey is the attribute Key conforming to the "vcs.change.title" - // semantic conventions. It represents the human readable title of the change - // (pull request/merge request/changelist). This title is often a brief summary - // of the change and may get merged in to a ref as the commit summary. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "Fixes broken thing", "feat: add my new feature", "[chore] update - // dependency" - VCSChangeTitleKey = attribute.Key("vcs.change.title") - - // VCSLineChangeTypeKey is the attribute Key conforming to the - // "vcs.line_change.type" semantic conventions. It represents the type of line - // change being measured on a branch or change. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "added", "removed" - VCSLineChangeTypeKey = attribute.Key("vcs.line_change.type") - - // VCSOwnerNameKey is the attribute Key conforming to the "vcs.owner.name" - // semantic conventions. It represents the group owner within the version - // control system. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "my-org", "myteam", "business-unit" - VCSOwnerNameKey = attribute.Key("vcs.owner.name") - - // VCSProviderNameKey is the attribute Key conforming to the "vcs.provider.name" - // semantic conventions. It represents the name of the version control system - // provider. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "github", "gitlab", "gitea", "bitbucket" - VCSProviderNameKey = attribute.Key("vcs.provider.name") - - // VCSRefBaseNameKey is the attribute Key conforming to the "vcs.ref.base.name" - // semantic conventions. It represents the name of the [reference] such as - // **branch** or **tag** in the repository. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "my-feature-branch", "tag-1-test" - // Note: `base` refers to the starting point of a change. For example, `main` - // would be the base reference of type branch if you've created a new - // reference of type branch from it and created new commits. - // - // [reference]: https://git-scm.com/docs/gitglossary#def_ref - VCSRefBaseNameKey = attribute.Key("vcs.ref.base.name") - - // VCSRefBaseRevisionKey is the attribute Key conforming to the - // "vcs.ref.base.revision" semantic conventions. It represents the revision, - // literally [revised version], The revision most often refers to a commit - // object in Git, or a revision number in SVN. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "9d59409acf479dfa0df1aa568182e43e43df8bbe28d60fcf2bc52e30068802cc", - // "main", "123", "HEAD" - // Note: `base` refers to the starting point of a change. For example, `main` - // would be the base reference of type branch if you've created a new - // reference of type branch from it and created new commits. The - // revision can be a full [hash value (see - // glossary)], - // of the recorded change to a ref within a repository pointing to a - // commit [commit] object. It does - // not necessarily have to be a hash; it can simply define a [revision - // number] - // which is an integer that is monotonically increasing. In cases where - // it is identical to the `ref.base.name`, it SHOULD still be included. - // It is up to the implementer to decide which value to set as the - // revision based on the VCS system and situational context. - // - // [revised version]: https://www.merriam-webster.com/dictionary/revision - // [hash value (see - // glossary)]: https://nvlpubs.nist.gov/nistpubs/FIPS/NIST.FIPS.186-5.pdf - // [commit]: https://git-scm.com/docs/git-commit - // [revision - // number]: https://svnbook.red-bean.com/en/1.7/svn.tour.revs.specifiers.html - VCSRefBaseRevisionKey = attribute.Key("vcs.ref.base.revision") - - // VCSRefBaseTypeKey is the attribute Key conforming to the "vcs.ref.base.type" - // semantic conventions. It represents the type of the [reference] in the - // repository. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "branch", "tag" - // Note: `base` refers to the starting point of a change. For example, `main` - // would be the base reference of type branch if you've created a new - // reference of type branch from it and created new commits. - // - // [reference]: https://git-scm.com/docs/gitglossary#def_ref - VCSRefBaseTypeKey = attribute.Key("vcs.ref.base.type") - - // VCSRefHeadNameKey is the attribute Key conforming to the "vcs.ref.head.name" - // semantic conventions. It represents the name of the [reference] such as - // **branch** or **tag** in the repository. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "my-feature-branch", "tag-1-test" - // Note: `head` refers to where you are right now; the current reference at a - // given time. - // - // [reference]: https://git-scm.com/docs/gitglossary#def_ref - VCSRefHeadNameKey = attribute.Key("vcs.ref.head.name") - - // VCSRefHeadRevisionKey is the attribute Key conforming to the - // "vcs.ref.head.revision" semantic conventions. It represents the revision, - // literally [revised version], The revision most often refers to a commit - // object in Git, or a revision number in SVN. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "9d59409acf479dfa0df1aa568182e43e43df8bbe28d60fcf2bc52e30068802cc", - // "main", "123", "HEAD" - // Note: `head` refers to where you are right now; the current reference at a - // given time.The revision can be a full [hash value (see - // glossary)], - // of the recorded change to a ref within a repository pointing to a - // commit [commit] object. It does - // not necessarily have to be a hash; it can simply define a [revision - // number] - // which is an integer that is monotonically increasing. In cases where - // it is identical to the `ref.head.name`, it SHOULD still be included. - // It is up to the implementer to decide which value to set as the - // revision based on the VCS system and situational context. - // - // [revised version]: https://www.merriam-webster.com/dictionary/revision - // [hash value (see - // glossary)]: https://nvlpubs.nist.gov/nistpubs/FIPS/NIST.FIPS.186-5.pdf - // [commit]: https://git-scm.com/docs/git-commit - // [revision - // number]: https://svnbook.red-bean.com/en/1.7/svn.tour.revs.specifiers.html - VCSRefHeadRevisionKey = attribute.Key("vcs.ref.head.revision") - - // VCSRefHeadTypeKey is the attribute Key conforming to the "vcs.ref.head.type" - // semantic conventions. It represents the type of the [reference] in the - // repository. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "branch", "tag" - // Note: `head` refers to where you are right now; the current reference at a - // given time. - // - // [reference]: https://git-scm.com/docs/gitglossary#def_ref - VCSRefHeadTypeKey = attribute.Key("vcs.ref.head.type") - - // VCSRefTypeKey is the attribute Key conforming to the "vcs.ref.type" semantic - // conventions. It represents the type of the [reference] in the repository. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "branch", "tag" - // - // [reference]: https://git-scm.com/docs/gitglossary#def_ref - VCSRefTypeKey = attribute.Key("vcs.ref.type") - - // VCSRepositoryNameKey is the attribute Key conforming to the - // "vcs.repository.name" semantic conventions. It represents the human readable - // name of the repository. It SHOULD NOT include any additional identifier like - // Group/SubGroup in GitLab or organization in GitHub. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "semantic-conventions", "my-cool-repo" - // Note: Due to it only being the name, it can clash with forks of the same - // repository if collecting telemetry across multiple orgs or groups in - // the same backends. - VCSRepositoryNameKey = attribute.Key("vcs.repository.name") - - // VCSRepositoryURLFullKey is the attribute Key conforming to the - // "vcs.repository.url.full" semantic conventions. It represents the - // [canonical URL] of the repository providing the complete HTTP(S) address in - // order to locate and identify the repository through a browser. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: - // "https://github.com/opentelemetry/open-telemetry-collector-contrib", - // "https://gitlab.com/my-org/my-project/my-projects-project/repo" - // Note: In Git Version Control Systems, the canonical URL SHOULD NOT include - // the `.git` extension. - // - // [canonical URL]: https://support.google.com/webmasters/answer/10347851 - VCSRepositoryURLFullKey = attribute.Key("vcs.repository.url.full") - - // VCSRevisionDeltaDirectionKey is the attribute Key conforming to the - // "vcs.revision_delta.direction" semantic conventions. It represents the type - // of revision comparison. - // - // Type: Enum - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "ahead", "behind" - VCSRevisionDeltaDirectionKey = attribute.Key("vcs.revision_delta.direction") -) - -// VCSChangeID returns an attribute KeyValue conforming to the "vcs.change.id" -// semantic conventions. It represents the ID of the change (pull request/merge -// request/changelist) if applicable. This is usually a unique (within -// repository) identifier generated by the VCS system. -func VCSChangeID(val string) attribute.KeyValue { - return VCSChangeIDKey.String(val) -} - -// VCSChangeTitle returns an attribute KeyValue conforming to the -// "vcs.change.title" semantic conventions. It represents the human readable -// title of the change (pull request/merge request/changelist). This title is -// often a brief summary of the change and may get merged in to a ref as the -// commit summary. -func VCSChangeTitle(val string) attribute.KeyValue { - return VCSChangeTitleKey.String(val) -} - -// VCSOwnerName returns an attribute KeyValue conforming to the "vcs.owner.name" -// semantic conventions. It represents the group owner within the version control -// system. -func VCSOwnerName(val string) attribute.KeyValue { - return VCSOwnerNameKey.String(val) -} - -// VCSRefBaseName returns an attribute KeyValue conforming to the -// "vcs.ref.base.name" semantic conventions. It represents the name of the -// [reference] such as **branch** or **tag** in the repository. -// -// [reference]: https://git-scm.com/docs/gitglossary#def_ref -func VCSRefBaseName(val string) attribute.KeyValue { - return VCSRefBaseNameKey.String(val) -} - -// VCSRefBaseRevision returns an attribute KeyValue conforming to the -// "vcs.ref.base.revision" semantic conventions. It represents the revision, -// literally [revised version], The revision most often refers to a commit object -// in Git, or a revision number in SVN. -// -// [revised version]: https://www.merriam-webster.com/dictionary/revision -func VCSRefBaseRevision(val string) attribute.KeyValue { - return VCSRefBaseRevisionKey.String(val) -} - -// VCSRefHeadName returns an attribute KeyValue conforming to the -// "vcs.ref.head.name" semantic conventions. It represents the name of the -// [reference] such as **branch** or **tag** in the repository. -// -// [reference]: https://git-scm.com/docs/gitglossary#def_ref -func VCSRefHeadName(val string) attribute.KeyValue { - return VCSRefHeadNameKey.String(val) -} - -// VCSRefHeadRevision returns an attribute KeyValue conforming to the -// "vcs.ref.head.revision" semantic conventions. It represents the revision, -// literally [revised version], The revision most often refers to a commit object -// in Git, or a revision number in SVN. -// -// [revised version]: https://www.merriam-webster.com/dictionary/revision -func VCSRefHeadRevision(val string) attribute.KeyValue { - return VCSRefHeadRevisionKey.String(val) -} - -// VCSRepositoryName returns an attribute KeyValue conforming to the -// "vcs.repository.name" semantic conventions. It represents the human readable -// name of the repository. It SHOULD NOT include any additional identifier like -// Group/SubGroup in GitLab or organization in GitHub. -func VCSRepositoryName(val string) attribute.KeyValue { - return VCSRepositoryNameKey.String(val) -} - -// VCSRepositoryURLFull returns an attribute KeyValue conforming to the -// "vcs.repository.url.full" semantic conventions. It represents the -// [canonical URL] of the repository providing the complete HTTP(S) address in -// order to locate and identify the repository through a browser. -// -// [canonical URL]: https://support.google.com/webmasters/answer/10347851 -func VCSRepositoryURLFull(val string) attribute.KeyValue { - return VCSRepositoryURLFullKey.String(val) -} - -// Enum values for vcs.change.state -var ( - // Open means the change is currently active and under review. It hasn't been - // merged into the target branch yet, and it's still possible to make changes or - // add comments. - // Stability: development - VCSChangeStateOpen = VCSChangeStateKey.String("open") - // WIP (work-in-progress, draft) means the change is still in progress and not - // yet ready for a full review. It might still undergo significant changes. - // Stability: development - VCSChangeStateWip = VCSChangeStateKey.String("wip") - // Closed means the merge request has been closed without merging. This can - // happen for various reasons, such as the changes being deemed unnecessary, the - // issue being resolved in another way, or the author deciding to withdraw the - // request. - // Stability: development - VCSChangeStateClosed = VCSChangeStateKey.String("closed") - // Merged indicates that the change has been successfully integrated into the - // target codebase. - // Stability: development - VCSChangeStateMerged = VCSChangeStateKey.String("merged") -) - -// Enum values for vcs.line_change.type -var ( - // How many lines were added. - // Stability: development - VCSLineChangeTypeAdded = VCSLineChangeTypeKey.String("added") - // How many lines were removed. - // Stability: development - VCSLineChangeTypeRemoved = VCSLineChangeTypeKey.String("removed") -) - -// Enum values for vcs.provider.name -var ( - // [GitHub] - // Stability: development - // - // [GitHub]: https://github.com - VCSProviderNameGithub = VCSProviderNameKey.String("github") - // [GitLab] - // Stability: development - // - // [GitLab]: https://gitlab.com - VCSProviderNameGitlab = VCSProviderNameKey.String("gitlab") - // [Gitea] - // Stability: development - // - // [Gitea]: https://gitea.io - VCSProviderNameGitea = VCSProviderNameKey.String("gitea") - // [Bitbucket] - // Stability: development - // - // [Bitbucket]: https://bitbucket.org - VCSProviderNameBitbucket = VCSProviderNameKey.String("bitbucket") -) - -// Enum values for vcs.ref.base.type -var ( - // [branch] - // Stability: development - // - // [branch]: https://git-scm.com/docs/gitglossary#Documentation/gitglossary.txt-aiddefbranchabranch - VCSRefBaseTypeBranch = VCSRefBaseTypeKey.String("branch") - // [tag] - // Stability: development - // - // [tag]: https://git-scm.com/docs/gitglossary#Documentation/gitglossary.txt-aiddeftagatag - VCSRefBaseTypeTag = VCSRefBaseTypeKey.String("tag") -) - -// Enum values for vcs.ref.head.type -var ( - // [branch] - // Stability: development - // - // [branch]: https://git-scm.com/docs/gitglossary#Documentation/gitglossary.txt-aiddefbranchabranch - VCSRefHeadTypeBranch = VCSRefHeadTypeKey.String("branch") - // [tag] - // Stability: development - // - // [tag]: https://git-scm.com/docs/gitglossary#Documentation/gitglossary.txt-aiddeftagatag - VCSRefHeadTypeTag = VCSRefHeadTypeKey.String("tag") -) - -// Enum values for vcs.ref.type -var ( - // [branch] - // Stability: development - // - // [branch]: https://git-scm.com/docs/gitglossary#Documentation/gitglossary.txt-aiddefbranchabranch - VCSRefTypeBranch = VCSRefTypeKey.String("branch") - // [tag] - // Stability: development - // - // [tag]: https://git-scm.com/docs/gitglossary#Documentation/gitglossary.txt-aiddeftagatag - VCSRefTypeTag = VCSRefTypeKey.String("tag") -) - -// Enum values for vcs.revision_delta.direction -var ( - // How many revisions the change is behind the target ref. - // Stability: development - VCSRevisionDeltaDirectionBehind = VCSRevisionDeltaDirectionKey.String("behind") - // How many revisions the change is ahead of the target ref. - // Stability: development - VCSRevisionDeltaDirectionAhead = VCSRevisionDeltaDirectionKey.String("ahead") -) - -// Namespace: webengine -const ( - // WebEngineDescriptionKey is the attribute Key conforming to the - // "webengine.description" semantic conventions. It represents the additional - // description of the web engine (e.g. detailed version and edition - // information). - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "WildFly Full 21.0.0.Final (WildFly Core 13.0.1.Final) - - // 2.2.2.Final" - WebEngineDescriptionKey = attribute.Key("webengine.description") - - // WebEngineNameKey is the attribute Key conforming to the "webengine.name" - // semantic conventions. It represents the name of the web engine. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "WildFly" - WebEngineNameKey = attribute.Key("webengine.name") - - // WebEngineVersionKey is the attribute Key conforming to the - // "webengine.version" semantic conventions. It represents the version of the - // web engine. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "21.0.0" - WebEngineVersionKey = attribute.Key("webengine.version") -) - -// WebEngineDescription returns an attribute KeyValue conforming to the -// "webengine.description" semantic conventions. It represents the additional -// description of the web engine (e.g. detailed version and edition information). -func WebEngineDescription(val string) attribute.KeyValue { - return WebEngineDescriptionKey.String(val) -} - -// WebEngineName returns an attribute KeyValue conforming to the "webengine.name" -// semantic conventions. It represents the name of the web engine. -func WebEngineName(val string) attribute.KeyValue { - return WebEngineNameKey.String(val) -} - -// WebEngineVersion returns an attribute KeyValue conforming to the -// "webengine.version" semantic conventions. It represents the version of the web -// engine. -func WebEngineVersion(val string) attribute.KeyValue { - return WebEngineVersionKey.String(val) -} - -// Namespace: zos -const ( - // ZOSSmfIDKey is the attribute Key conforming to the "zos.smf.id" semantic - // conventions. It represents the System Management Facility (SMF) Identifier - // uniquely identified a z/OS system within a SYSPLEX or mainframe environment - // and is used for system and performance analysis. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "SYS1" - ZOSSmfIDKey = attribute.Key("zos.smf.id") - - // ZOSSysplexNameKey is the attribute Key conforming to the "zos.sysplex.name" - // semantic conventions. It represents the name of the SYSPLEX to which the z/OS - // system belongs too. - // - // Type: string - // RequirementLevel: Recommended - // Stability: Development - // - // Examples: "SYSPLEX1" - ZOSSysplexNameKey = attribute.Key("zos.sysplex.name") -) - -// ZOSSmfID returns an attribute KeyValue conforming to the "zos.smf.id" semantic -// conventions. It represents the System Management Facility (SMF) Identifier -// uniquely identified a z/OS system within a SYSPLEX or mainframe environment -// and is used for system and performance analysis. -func ZOSSmfID(val string) attribute.KeyValue { - return ZOSSmfIDKey.String(val) -} - -// ZOSSysplexName returns an attribute KeyValue conforming to the -// "zos.sysplex.name" semantic conventions. It represents the name of the SYSPLEX -// to which the z/OS system belongs too. -func ZOSSysplexName(val string) attribute.KeyValue { - return ZOSSysplexNameKey.String(val) -} diff --git a/vendor/go.opentelemetry.io/otel/semconv/v1.40.0/doc.go b/vendor/go.opentelemetry.io/otel/semconv/v1.40.0/doc.go deleted file mode 100644 index b328d4daa2..0000000000 --- a/vendor/go.opentelemetry.io/otel/semconv/v1.40.0/doc.go +++ /dev/null @@ -1,9 +0,0 @@ -// Copyright The OpenTelemetry Authors -// SPDX-License-Identifier: Apache-2.0 - -// Package semconv implements OpenTelemetry semantic conventions. -// -// OpenTelemetry semantic conventions are agreed standardized naming -// patterns for OpenTelemetry things. This package represents the v1.40.0 -// version of the OpenTelemetry semantic conventions. -package semconv diff --git a/vendor/go.opentelemetry.io/otel/semconv/v1.40.0/error_type.go b/vendor/go.opentelemetry.io/otel/semconv/v1.40.0/error_type.go deleted file mode 100644 index 86020e8942..0000000000 --- a/vendor/go.opentelemetry.io/otel/semconv/v1.40.0/error_type.go +++ /dev/null @@ -1,81 +0,0 @@ -// Copyright The OpenTelemetry Authors -// SPDX-License-Identifier: Apache-2.0 - -package semconv - -import ( - "errors" - "fmt" - "reflect" - - "go.opentelemetry.io/otel/attribute" -) - -// ErrorType returns an [attribute.KeyValue] identifying the error type of err. -// -// If err is nil, the returned attribute has the default value -// [ErrorTypeOther]. -// -// If err or one of the errors in its chain has the method -// -// ErrorType() string -// -// the returned attribute has that method's return value. If multiple errors in -// the chain implement this method, the value from the first match found by -// [errors.As] is used. Otherwise, the returned attribute has a value derived -// from the concrete type of err after unwrapping any wrappers created with -// [fmt.Errorf]. -// -// The key of the returned attribute is [ErrorTypeKey]. -func ErrorType(err error) attribute.KeyValue { - if err == nil { - return ErrorTypeOther - } - - return ErrorTypeKey.String(errorType(err)) -} - -func errorType(err error) string { - var s string - if et, ok := err.(interface{ ErrorType() string }); ok { - // Fast path: check the top-level error first. - s = et.ErrorType() - } else { - // Fallback: search the error chain for an ErrorType method. - var et interface{ ErrorType() string } - if errors.As(err, &et) { - // Prioritize the ErrorType method if available. - s = et.ErrorType() - } - } - if s == "" { - // Fallback to reflection if the ErrorType method is not supported or - // returns an empty value. - - t := reflect.TypeOf(unwrapFmtWrapped(err)) - pkg, name := t.PkgPath(), t.Name() - if pkg != "" && name != "" { - s = pkg + "." + name - } else { - // The type has no package path or name (predeclared, not-defined, - // or alias for a not-defined type). - // - // This is not guaranteed to be unique, but is a best effort. - s = t.String() - } - } - return s -} - -var fmtWrapErrorType = reflect.TypeOf(fmt.Errorf("wrapped: %w", errors.New("err"))) - -func unwrapFmtWrapped(err error) error { - for reflect.TypeOf(err) == fmtWrapErrorType { - u := errors.Unwrap(err) - if u == nil { - return err // Should never happen, but avoid returning nil if unwrapping fails. - } - err = u - } - return err -} diff --git a/vendor/go.opentelemetry.io/otel/semconv/v1.40.0/exception.go b/vendor/go.opentelemetry.io/otel/semconv/v1.40.0/exception.go deleted file mode 100644 index 3fe84aae0a..0000000000 --- a/vendor/go.opentelemetry.io/otel/semconv/v1.40.0/exception.go +++ /dev/null @@ -1,9 +0,0 @@ -// Copyright The OpenTelemetry Authors -// SPDX-License-Identifier: Apache-2.0 - -package semconv - -const ( - // ExceptionEventName is the name of the Span event representing an exception. - ExceptionEventName = "exception" -) diff --git a/vendor/go.opentelemetry.io/otel/semconv/v1.40.0/schema.go b/vendor/go.opentelemetry.io/otel/semconv/v1.40.0/schema.go deleted file mode 100644 index 5d383cd13e..0000000000 --- a/vendor/go.opentelemetry.io/otel/semconv/v1.40.0/schema.go +++ /dev/null @@ -1,9 +0,0 @@ -// Copyright The OpenTelemetry Authors -// SPDX-License-Identifier: Apache-2.0 - -package semconv - -// SchemaURL is the schema URL that matches the version of the semantic conventions -// that this package defines. Semconv packages starting from v1.4.0 must declare -// non-empty schema URL in the form https://opentelemetry.io/schemas/ -const SchemaURL = "https://opentelemetry.io/schemas/1.40.0" diff --git a/vendor/go.opentelemetry.io/otel/semconv/v1.43.0/httpconv/metric.go b/vendor/go.opentelemetry.io/otel/semconv/v1.43.0/httpconv/metric.go new file mode 100644 index 0000000000..1eb8c9e2a9 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/semconv/v1.43.0/httpconv/metric.go @@ -0,0 +1,2051 @@ +// Code generated from semantic convention specification. DO NOT EDIT. + +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Package httpconv provides types and functionality for OpenTelemetry semantic +// conventions in the "http" namespace. +package httpconv + +import ( + "context" + + "go.opentelemetry.io/otel/attribute" + "go.opentelemetry.io/otel/metric" + "go.opentelemetry.io/otel/metric/noop" + "go.opentelemetry.io/otel/semconv/internal/metricpool" +) + +// ErrorTypeAttr is an attribute conforming to the error.type semantic +// conventions. It represents the describes a class of error the operation ended +// with. +type ErrorTypeAttr string + +var ( + // ErrorTypeOther is a fallback error value to be used when the instrumentation + // doesn't define a custom value. + ErrorTypeOther ErrorTypeAttr = "_OTHER" +) + +// ConnectionStateAttr is an attribute conforming to the http.connection.state +// semantic conventions. It represents the state of the HTTP connection in the +// HTTP connection pool. +type ConnectionStateAttr string + +var ( + // ConnectionStateActive is the active state. + ConnectionStateActive ConnectionStateAttr = "active" + // ConnectionStateIdle is the idle state. + ConnectionStateIdle ConnectionStateAttr = "idle" +) + +// RequestMethodAttr is an attribute conforming to the http.request.method +// semantic conventions. It represents the HTTP request method. +type RequestMethodAttr string + +var ( + // RequestMethodConnect is the CONNECT method. + RequestMethodConnect RequestMethodAttr = "CONNECT" + // RequestMethodDelete is the DELETE method. + RequestMethodDelete RequestMethodAttr = "DELETE" + // RequestMethodGet is the GET method. + RequestMethodGet RequestMethodAttr = "GET" + // RequestMethodHead is the HEAD method. + RequestMethodHead RequestMethodAttr = "HEAD" + // RequestMethodOptions is the OPTIONS method. + RequestMethodOptions RequestMethodAttr = "OPTIONS" + // RequestMethodPatch is the PATCH method. + RequestMethodPatch RequestMethodAttr = "PATCH" + // RequestMethodPost is the POST method. + RequestMethodPost RequestMethodAttr = "POST" + // RequestMethodPut is the PUT method. + RequestMethodPut RequestMethodAttr = "PUT" + // RequestMethodTrace is the TRACE method. + RequestMethodTrace RequestMethodAttr = "TRACE" + // RequestMethodQuery is the QUERY method. + RequestMethodQuery RequestMethodAttr = "QUERY" + // RequestMethodOther is the any HTTP method that the instrumentation has no + // prior knowledge of. + RequestMethodOther RequestMethodAttr = "_OTHER" +) + +// UserAgentSyntheticTypeAttr is an attribute conforming to the +// user_agent.synthetic.type semantic conventions. It represents the specifies +// the category of synthetic traffic, such as tests or bots. +type UserAgentSyntheticTypeAttr string + +var ( + // UserAgentSyntheticTypeBot is the bot source. + UserAgentSyntheticTypeBot UserAgentSyntheticTypeAttr = "bot" + // UserAgentSyntheticTypeTest is the synthetic test source. + UserAgentSyntheticTypeTest UserAgentSyntheticTypeAttr = "test" +) + +// ClientActiveRequests is an instrument used to record metric values conforming +// to the "http.client.active_requests" semantic conventions. It represents the +// number of active HTTP requests. +type ClientActiveRequests struct { + metric.Int64UpDownCounter +} + +var newClientActiveRequestsOpts = []metric.Int64UpDownCounterOption{ + metric.WithDescription("Number of active HTTP requests."), + metric.WithUnit("{request}"), +} + +// NewClientActiveRequests returns a new ClientActiveRequests instrument. +func NewClientActiveRequests( + m metric.Meter, + opt ...metric.Int64UpDownCounterOption, +) (ClientActiveRequests, error) { + // Check if the meter is nil. + if m == nil { + return ClientActiveRequests{noop.Int64UpDownCounter{}}, nil + } + + if len(opt) == 0 { + opt = newClientActiveRequestsOpts + } else { + opt = append(opt, newClientActiveRequestsOpts...) + } + + i, err := m.Int64UpDownCounter( + "http.client.active_requests", + opt..., + ) + if err != nil { + return ClientActiveRequests{noop.Int64UpDownCounter{}}, err + } + return ClientActiveRequests{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m ClientActiveRequests) Inst() metric.Int64UpDownCounter { + return m.Int64UpDownCounter +} + +// Name returns the semantic convention name of the instrument. +func (ClientActiveRequests) Name() string { + return "http.client.active_requests" +} + +// Unit returns the semantic convention unit of the instrument +func (ClientActiveRequests) Unit() string { + return "{request}" +} + +// Description returns the semantic convention description of the instrument +func (ClientActiveRequests) Description() string { + return "Number of active HTTP requests." +} + +// Add adds incr to the existing count for attrs. +// +// The serverAddress is the server domain name if available without reverse DNS +// lookup; otherwise, IP address or Unix domain socket name. +// +// The serverPort is the server port number. +// +// All additional attrs passed are included in the recorded value. +func (m ClientActiveRequests) Add( + ctx context.Context, + incr int64, + serverAddress string, + serverPort int, + attrs ...attribute.KeyValue, +) { + if !m.Int64UpDownCounter.Enabled(ctx) { + return + } + if len(attrs) == 0 { + m.Int64UpDownCounter.Add(ctx, incr, metric.WithAttributes( + attribute.String("server.address", serverAddress), + attribute.Int("server.port", serverPort), + )) + return + } + + o := metricpool.AddOptions() + defer metricpool.PutAddOptions(o) + + *o = append( + *o, + metric.WithAttributes( + append( + attrs[:len(attrs):len(attrs)], + attribute.String("server.address", serverAddress), + attribute.Int("server.port", serverPort), + )..., + ), + ) + + m.Int64UpDownCounter.Add(ctx, incr, *o...) +} + +// AddSet adds incr to the existing count for set. +func (m ClientActiveRequests) AddSet(ctx context.Context, incr int64, set attribute.Set) { + if !m.Int64UpDownCounter.Enabled(ctx) { + return + } + if set.Len() == 0 { + m.Int64UpDownCounter.Add(ctx, incr) + return + } + + o := metricpool.AddOptions() + defer metricpool.PutAddOptions(o) + + *o = append(*o, metric.WithAttributeSet(set)) + m.Int64UpDownCounter.Add(ctx, incr, *o...) +} + +// AttrURLTemplate returns an optional attribute for the "url.template" semantic +// convention. It represents the low-cardinality template of an +// [absolute path reference]. +// +// [absolute path reference]: https://www.rfc-editor.org/rfc/rfc3986#section-4.2 +func (ClientActiveRequests) AttrURLTemplate(val string) attribute.KeyValue { + return attribute.String("url.template", val) +} + +// AttrRequestMethod returns an optional attribute for the "http.request.method" +// semantic convention. It represents the HTTP request method. +func (ClientActiveRequests) AttrRequestMethod(val RequestMethodAttr) attribute.KeyValue { + return attribute.String("http.request.method", string(val)) +} + +// AttrURLScheme returns an optional attribute for the "url.scheme" semantic +// convention. It represents the [URI scheme] component identifying the used +// protocol. +// +// [URI scheme]: https://www.rfc-editor.org/rfc/rfc3986#section-3.1 +func (ClientActiveRequests) AttrURLScheme(val string) attribute.KeyValue { + return attribute.String("url.scheme", val) +} + +// ClientActiveRequestsObservable is an instrument used to record metric values +// conforming to the "http.client.active_requests" semantic conventions. It +// represents the number of active HTTP requests. +type ClientActiveRequestsObservable struct { + metric.Int64ObservableUpDownCounter +} + +var newClientActiveRequestsObservableOpts = []metric.Int64ObservableUpDownCounterOption{ + metric.WithDescription("Number of active HTTP requests."), + metric.WithUnit("{request}"), +} + +// NewClientActiveRequestsObservable returns a new ClientActiveRequestsObservable +// instrument. +func NewClientActiveRequestsObservable( + m metric.Meter, + opt ...metric.Int64ObservableUpDownCounterOption, +) (ClientActiveRequestsObservable, error) { + // Check if the meter is nil. + if m == nil { + return ClientActiveRequestsObservable{noop.Int64ObservableUpDownCounter{}}, nil + } + + if len(opt) == 0 { + opt = newClientActiveRequestsObservableOpts + } else { + opt = append(opt, newClientActiveRequestsObservableOpts...) + } + + i, err := m.Int64ObservableUpDownCounter( + "http.client.active_requests", + opt..., + ) + if err != nil { + return ClientActiveRequestsObservable{noop.Int64ObservableUpDownCounter{}}, err + } + return ClientActiveRequestsObservable{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m ClientActiveRequestsObservable) Inst() metric.Int64ObservableUpDownCounter { + return m.Int64ObservableUpDownCounter +} + +// Name returns the semantic convention name of the instrument. +func (ClientActiveRequestsObservable) Name() string { + return "http.client.active_requests" +} + +// Unit returns the semantic convention unit of the instrument +func (ClientActiveRequestsObservable) Unit() string { + return "{request}" +} + +// Description returns the semantic convention description of the instrument +func (ClientActiveRequestsObservable) Description() string { + return "Number of active HTTP requests." +} + +// AttrServerAddress returns a required attribute for the "server.address" +// semantic convention. It represents the server domain name if available without +// reverse DNS lookup; otherwise, IP address or Unix domain socket name. +func (ClientActiveRequestsObservable) AttrServerAddress(val string) attribute.KeyValue { + return attribute.String("server.address", val) +} + +// AttrServerPort returns a required attribute for the "server.port" semantic +// convention. It represents the server port number. +func (ClientActiveRequestsObservable) AttrServerPort(val int) attribute.KeyValue { + return attribute.Int("server.port", val) +} + +// AttrURLTemplate returns an optional attribute for the "url.template" semantic +// convention. It represents the low-cardinality template of an +// [absolute path reference]. +// +// [absolute path reference]: https://www.rfc-editor.org/rfc/rfc3986#section-4.2 +func (ClientActiveRequestsObservable) AttrURLTemplate(val string) attribute.KeyValue { + return attribute.String("url.template", val) +} + +// AttrRequestMethod returns an optional attribute for the "http.request.method" +// semantic convention. It represents the HTTP request method. +func (ClientActiveRequestsObservable) AttrRequestMethod(val RequestMethodAttr) attribute.KeyValue { + return attribute.String("http.request.method", string(val)) +} + +// AttrURLScheme returns an optional attribute for the "url.scheme" semantic +// convention. It represents the [URI scheme] component identifying the used +// protocol. +// +// [URI scheme]: https://www.rfc-editor.org/rfc/rfc3986#section-3.1 +func (ClientActiveRequestsObservable) AttrURLScheme(val string) attribute.KeyValue { + return attribute.String("url.scheme", val) +} + +// ClientConnectionDuration is an instrument used to record metric values +// conforming to the "http.client.connection.duration" semantic conventions. It +// represents the duration of the successfully established outbound HTTP +// connections. +type ClientConnectionDuration struct { + metric.Float64Histogram +} + +var newClientConnectionDurationOpts = []metric.Float64HistogramOption{ + metric.WithDescription("The duration of the successfully established outbound HTTP connections."), + metric.WithUnit("s"), +} + +// NewClientConnectionDuration returns a new ClientConnectionDuration instrument. +func NewClientConnectionDuration( + m metric.Meter, + opt ...metric.Float64HistogramOption, +) (ClientConnectionDuration, error) { + // Check if the meter is nil. + if m == nil { + return ClientConnectionDuration{noop.Float64Histogram{}}, nil + } + + if len(opt) == 0 { + opt = newClientConnectionDurationOpts + } else { + opt = append(opt, newClientConnectionDurationOpts...) + } + + i, err := m.Float64Histogram( + "http.client.connection.duration", + opt..., + ) + if err != nil { + return ClientConnectionDuration{noop.Float64Histogram{}}, err + } + return ClientConnectionDuration{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m ClientConnectionDuration) Inst() metric.Float64Histogram { + return m.Float64Histogram +} + +// Name returns the semantic convention name of the instrument. +func (ClientConnectionDuration) Name() string { + return "http.client.connection.duration" +} + +// Unit returns the semantic convention unit of the instrument +func (ClientConnectionDuration) Unit() string { + return "s" +} + +// Description returns the semantic convention description of the instrument +func (ClientConnectionDuration) Description() string { + return "The duration of the successfully established outbound HTTP connections." +} + +// Record records val to the current distribution for attrs. +// +// The serverAddress is the server domain name if available without reverse DNS +// lookup; otherwise, IP address or Unix domain socket name. +// +// The serverPort is the server port number. +// +// All additional attrs passed are included in the recorded value. +func (m ClientConnectionDuration) Record( + ctx context.Context, + val float64, + serverAddress string, + serverPort int, + attrs ...attribute.KeyValue, +) { + if !m.Float64Histogram.Enabled(ctx) { + return + } + if len(attrs) == 0 { + m.Float64Histogram.Record(ctx, val, metric.WithAttributes( + attribute.String("server.address", serverAddress), + attribute.Int("server.port", serverPort), + )) + return + } + + o := metricpool.RecordOptions() + defer metricpool.PutRecordOptions(o) + + *o = append( + *o, + metric.WithAttributes( + append( + attrs[:len(attrs):len(attrs)], + attribute.String("server.address", serverAddress), + attribute.Int("server.port", serverPort), + )..., + ), + ) + + m.Float64Histogram.Record(ctx, val, *o...) +} + +// RecordSet records val to the current distribution for set. +func (m ClientConnectionDuration) RecordSet(ctx context.Context, val float64, set attribute.Set) { + if !m.Float64Histogram.Enabled(ctx) { + return + } + if set.Len() == 0 { + m.Float64Histogram.Record(ctx, val) + return + } + + o := metricpool.RecordOptions() + defer metricpool.PutRecordOptions(o) + + *o = append(*o, metric.WithAttributeSet(set)) + m.Float64Histogram.Record(ctx, val, *o...) +} + +// AttrNetworkProtocolVersion returns an optional attribute for the +// "network.protocol.version" semantic convention. It represents the actual +// version of the protocol used for network communication. +func (ClientConnectionDuration) AttrNetworkProtocolVersion(val string) attribute.KeyValue { + return attribute.String("network.protocol.version", val) +} + +// AttrNetworkPeerAddress returns an optional attribute for the +// "network.peer.address" semantic convention. It represents the peer address of +// the network connection - IP address or Unix domain socket name. +func (ClientConnectionDuration) AttrNetworkPeerAddress(val string) attribute.KeyValue { + return attribute.String("network.peer.address", val) +} + +// AttrURLScheme returns an optional attribute for the "url.scheme" semantic +// convention. It represents the [URI scheme] component identifying the used +// protocol. +// +// [URI scheme]: https://www.rfc-editor.org/rfc/rfc3986#section-3.1 +func (ClientConnectionDuration) AttrURLScheme(val string) attribute.KeyValue { + return attribute.String("url.scheme", val) +} + +// ClientOpenConnections is an instrument used to record metric values conforming +// to the "http.client.open_connections" semantic conventions. It represents the +// number of outbound HTTP connections that are currently active or idle on the +// client. +type ClientOpenConnections struct { + metric.Int64UpDownCounter +} + +var newClientOpenConnectionsOpts = []metric.Int64UpDownCounterOption{ + metric.WithDescription("Number of outbound HTTP connections that are currently active or idle on the client."), + metric.WithUnit("{connection}"), +} + +// NewClientOpenConnections returns a new ClientOpenConnections instrument. +func NewClientOpenConnections( + m metric.Meter, + opt ...metric.Int64UpDownCounterOption, +) (ClientOpenConnections, error) { + // Check if the meter is nil. + if m == nil { + return ClientOpenConnections{noop.Int64UpDownCounter{}}, nil + } + + if len(opt) == 0 { + opt = newClientOpenConnectionsOpts + } else { + opt = append(opt, newClientOpenConnectionsOpts...) + } + + i, err := m.Int64UpDownCounter( + "http.client.open_connections", + opt..., + ) + if err != nil { + return ClientOpenConnections{noop.Int64UpDownCounter{}}, err + } + return ClientOpenConnections{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m ClientOpenConnections) Inst() metric.Int64UpDownCounter { + return m.Int64UpDownCounter +} + +// Name returns the semantic convention name of the instrument. +func (ClientOpenConnections) Name() string { + return "http.client.open_connections" +} + +// Unit returns the semantic convention unit of the instrument +func (ClientOpenConnections) Unit() string { + return "{connection}" +} + +// Description returns the semantic convention description of the instrument +func (ClientOpenConnections) Description() string { + return "Number of outbound HTTP connections that are currently active or idle on the client." +} + +// Add adds incr to the existing count for attrs. +// +// The connectionState is the state of the HTTP connection in the HTTP connection +// pool. +// +// The serverAddress is the server domain name if available without reverse DNS +// lookup; otherwise, IP address or Unix domain socket name. +// +// The serverPort is the server port number. +// +// All additional attrs passed are included in the recorded value. +func (m ClientOpenConnections) Add( + ctx context.Context, + incr int64, + connectionState ConnectionStateAttr, + serverAddress string, + serverPort int, + attrs ...attribute.KeyValue, +) { + if !m.Int64UpDownCounter.Enabled(ctx) { + return + } + if len(attrs) == 0 { + m.Int64UpDownCounter.Add(ctx, incr, metric.WithAttributes( + attribute.String("http.connection.state", string(connectionState)), + attribute.String("server.address", serverAddress), + attribute.Int("server.port", serverPort), + )) + return + } + + o := metricpool.AddOptions() + defer metricpool.PutAddOptions(o) + + *o = append( + *o, + metric.WithAttributes( + append( + attrs[:len(attrs):len(attrs)], + attribute.String("http.connection.state", string(connectionState)), + attribute.String("server.address", serverAddress), + attribute.Int("server.port", serverPort), + )..., + ), + ) + + m.Int64UpDownCounter.Add(ctx, incr, *o...) +} + +// AddSet adds incr to the existing count for set. +func (m ClientOpenConnections) AddSet(ctx context.Context, incr int64, set attribute.Set) { + if !m.Int64UpDownCounter.Enabled(ctx) { + return + } + if set.Len() == 0 { + m.Int64UpDownCounter.Add(ctx, incr) + return + } + + o := metricpool.AddOptions() + defer metricpool.PutAddOptions(o) + + *o = append(*o, metric.WithAttributeSet(set)) + m.Int64UpDownCounter.Add(ctx, incr, *o...) +} + +// AttrNetworkProtocolVersion returns an optional attribute for the +// "network.protocol.version" semantic convention. It represents the actual +// version of the protocol used for network communication. +func (ClientOpenConnections) AttrNetworkProtocolVersion(val string) attribute.KeyValue { + return attribute.String("network.protocol.version", val) +} + +// AttrNetworkPeerAddress returns an optional attribute for the +// "network.peer.address" semantic convention. It represents the peer address of +// the network connection - IP address or Unix domain socket name. +func (ClientOpenConnections) AttrNetworkPeerAddress(val string) attribute.KeyValue { + return attribute.String("network.peer.address", val) +} + +// AttrURLScheme returns an optional attribute for the "url.scheme" semantic +// convention. It represents the [URI scheme] component identifying the used +// protocol. +// +// [URI scheme]: https://www.rfc-editor.org/rfc/rfc3986#section-3.1 +func (ClientOpenConnections) AttrURLScheme(val string) attribute.KeyValue { + return attribute.String("url.scheme", val) +} + +// ClientOpenConnectionsObservable is an instrument used to record metric values +// conforming to the "http.client.open_connections" semantic conventions. It +// represents the number of outbound HTTP connections that are currently active +// or idle on the client. +type ClientOpenConnectionsObservable struct { + metric.Int64ObservableUpDownCounter +} + +var newClientOpenConnectionsObservableOpts = []metric.Int64ObservableUpDownCounterOption{ + metric.WithDescription("Number of outbound HTTP connections that are currently active or idle on the client."), + metric.WithUnit("{connection}"), +} + +// NewClientOpenConnectionsObservable returns a new +// ClientOpenConnectionsObservable instrument. +func NewClientOpenConnectionsObservable( + m metric.Meter, + opt ...metric.Int64ObservableUpDownCounterOption, +) (ClientOpenConnectionsObservable, error) { + // Check if the meter is nil. + if m == nil { + return ClientOpenConnectionsObservable{noop.Int64ObservableUpDownCounter{}}, nil + } + + if len(opt) == 0 { + opt = newClientOpenConnectionsObservableOpts + } else { + opt = append(opt, newClientOpenConnectionsObservableOpts...) + } + + i, err := m.Int64ObservableUpDownCounter( + "http.client.open_connections", + opt..., + ) + if err != nil { + return ClientOpenConnectionsObservable{noop.Int64ObservableUpDownCounter{}}, err + } + return ClientOpenConnectionsObservable{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m ClientOpenConnectionsObservable) Inst() metric.Int64ObservableUpDownCounter { + return m.Int64ObservableUpDownCounter +} + +// Name returns the semantic convention name of the instrument. +func (ClientOpenConnectionsObservable) Name() string { + return "http.client.open_connections" +} + +// Unit returns the semantic convention unit of the instrument +func (ClientOpenConnectionsObservable) Unit() string { + return "{connection}" +} + +// Description returns the semantic convention description of the instrument +func (ClientOpenConnectionsObservable) Description() string { + return "Number of outbound HTTP connections that are currently active or idle on the client." +} + +// AttrConnectionState returns a required attribute for the +// "http.connection.state" semantic convention. It represents the state of the +// HTTP connection in the HTTP connection pool. +func (ClientOpenConnectionsObservable) AttrConnectionState(val ConnectionStateAttr) attribute.KeyValue { + return attribute.String("http.connection.state", string(val)) +} + +// AttrServerAddress returns a required attribute for the "server.address" +// semantic convention. It represents the server domain name if available without +// reverse DNS lookup; otherwise, IP address or Unix domain socket name. +func (ClientOpenConnectionsObservable) AttrServerAddress(val string) attribute.KeyValue { + return attribute.String("server.address", val) +} + +// AttrServerPort returns a required attribute for the "server.port" semantic +// convention. It represents the server port number. +func (ClientOpenConnectionsObservable) AttrServerPort(val int) attribute.KeyValue { + return attribute.Int("server.port", val) +} + +// AttrNetworkProtocolVersion returns an optional attribute for the +// "network.protocol.version" semantic convention. It represents the actual +// version of the protocol used for network communication. +func (ClientOpenConnectionsObservable) AttrNetworkProtocolVersion(val string) attribute.KeyValue { + return attribute.String("network.protocol.version", val) +} + +// AttrNetworkPeerAddress returns an optional attribute for the +// "network.peer.address" semantic convention. It represents the peer address of +// the network connection - IP address or Unix domain socket name. +func (ClientOpenConnectionsObservable) AttrNetworkPeerAddress(val string) attribute.KeyValue { + return attribute.String("network.peer.address", val) +} + +// AttrURLScheme returns an optional attribute for the "url.scheme" semantic +// convention. It represents the [URI scheme] component identifying the used +// protocol. +// +// [URI scheme]: https://www.rfc-editor.org/rfc/rfc3986#section-3.1 +func (ClientOpenConnectionsObservable) AttrURLScheme(val string) attribute.KeyValue { + return attribute.String("url.scheme", val) +} + +// ClientRequestBodySize is an instrument used to record metric values conforming +// to the "http.client.request.body.size" semantic conventions. It represents the +// size of HTTP client request bodies. +type ClientRequestBodySize struct { + metric.Int64Histogram +} + +var newClientRequestBodySizeOpts = []metric.Int64HistogramOption{ + metric.WithDescription("Size of HTTP client request bodies."), + metric.WithUnit("By"), +} + +// NewClientRequestBodySize returns a new ClientRequestBodySize instrument. +func NewClientRequestBodySize( + m metric.Meter, + opt ...metric.Int64HistogramOption, +) (ClientRequestBodySize, error) { + // Check if the meter is nil. + if m == nil { + return ClientRequestBodySize{noop.Int64Histogram{}}, nil + } + + if len(opt) == 0 { + opt = newClientRequestBodySizeOpts + } else { + opt = append(opt, newClientRequestBodySizeOpts...) + } + + i, err := m.Int64Histogram( + "http.client.request.body.size", + opt..., + ) + if err != nil { + return ClientRequestBodySize{noop.Int64Histogram{}}, err + } + return ClientRequestBodySize{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m ClientRequestBodySize) Inst() metric.Int64Histogram { + return m.Int64Histogram +} + +// Name returns the semantic convention name of the instrument. +func (ClientRequestBodySize) Name() string { + return "http.client.request.body.size" +} + +// Unit returns the semantic convention unit of the instrument +func (ClientRequestBodySize) Unit() string { + return "By" +} + +// Description returns the semantic convention description of the instrument +func (ClientRequestBodySize) Description() string { + return "Size of HTTP client request bodies." +} + +// Record records val to the current distribution for attrs. +// +// The requestMethod is the HTTP request method. +// +// The serverAddress is the server domain name if available without reverse DNS +// lookup; otherwise, IP address or Unix domain socket name. +// +// The serverPort is the server port number. +// +// All additional attrs passed are included in the recorded value. +// +// The size of the request payload body in bytes. This is the number of bytes +// transferred excluding headers and is often, but not always, present as the +// [Content-Length] header. For requests using transport encoding, this should be +// the compressed size. +// +// [Content-Length]: https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length +func (m ClientRequestBodySize) Record( + ctx context.Context, + val int64, + requestMethod RequestMethodAttr, + serverAddress string, + serverPort int, + attrs ...attribute.KeyValue, +) { + if !m.Int64Histogram.Enabled(ctx) { + return + } + if len(attrs) == 0 { + m.Int64Histogram.Record(ctx, val, metric.WithAttributes( + attribute.String("http.request.method", string(requestMethod)), + attribute.String("server.address", serverAddress), + attribute.Int("server.port", serverPort), + )) + return + } + + o := metricpool.RecordOptions() + defer metricpool.PutRecordOptions(o) + + *o = append( + *o, + metric.WithAttributes( + append( + attrs[:len(attrs):len(attrs)], + attribute.String("http.request.method", string(requestMethod)), + attribute.String("server.address", serverAddress), + attribute.Int("server.port", serverPort), + )..., + ), + ) + + m.Int64Histogram.Record(ctx, val, *o...) +} + +// RecordSet records val to the current distribution for set. +// +// The size of the request payload body in bytes. This is the number of bytes +// transferred excluding headers and is often, but not always, present as the +// [Content-Length] header. For requests using transport encoding, this should be +// the compressed size. +// +// [Content-Length]: https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length +func (m ClientRequestBodySize) RecordSet(ctx context.Context, val int64, set attribute.Set) { + if !m.Int64Histogram.Enabled(ctx) { + return + } + if set.Len() == 0 { + m.Int64Histogram.Record(ctx, val) + return + } + + o := metricpool.RecordOptions() + defer metricpool.PutRecordOptions(o) + + *o = append(*o, metric.WithAttributeSet(set)) + m.Int64Histogram.Record(ctx, val, *o...) +} + +// AttrErrorType returns an optional attribute for the "error.type" semantic +// convention. It represents the describes a class of error the operation ended +// with. +func (ClientRequestBodySize) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue { + return attribute.String("error.type", string(val)) +} + +// AttrResponseStatusCode returns an optional attribute for the +// "http.response.status_code" semantic convention. It represents the +// [HTTP response status code]. +// +// [HTTP response status code]: https://tools.ietf.org/html/rfc7231#section-6 +func (ClientRequestBodySize) AttrResponseStatusCode(val int) attribute.KeyValue { + return attribute.Int("http.response.status_code", val) +} + +// AttrNetworkProtocolName returns an optional attribute for the +// "network.protocol.name" semantic convention. It represents the +// [OSI application layer] or non-OSI equivalent. +// +// [OSI application layer]: https://wikipedia.org/wiki/Application_layer +func (ClientRequestBodySize) AttrNetworkProtocolName(val string) attribute.KeyValue { + return attribute.String("network.protocol.name", val) +} + +// AttrURLTemplate returns an optional attribute for the "url.template" semantic +// convention. It represents the low-cardinality template of an +// [absolute path reference]. +// +// [absolute path reference]: https://www.rfc-editor.org/rfc/rfc3986#section-4.2 +func (ClientRequestBodySize) AttrURLTemplate(val string) attribute.KeyValue { + return attribute.String("url.template", val) +} + +// AttrNetworkProtocolVersion returns an optional attribute for the +// "network.protocol.version" semantic convention. It represents the actual +// version of the protocol used for network communication. +func (ClientRequestBodySize) AttrNetworkProtocolVersion(val string) attribute.KeyValue { + return attribute.String("network.protocol.version", val) +} + +// AttrURLScheme returns an optional attribute for the "url.scheme" semantic +// convention. It represents the [URI scheme] component identifying the used +// protocol. +// +// [URI scheme]: https://www.rfc-editor.org/rfc/rfc3986#section-3.1 +func (ClientRequestBodySize) AttrURLScheme(val string) attribute.KeyValue { + return attribute.String("url.scheme", val) +} + +// ClientRequestDuration is an instrument used to record metric values conforming +// to the "http.client.request.duration" semantic conventions. It represents the +// duration of HTTP client requests. +type ClientRequestDuration struct { + metric.Float64Histogram +} + +var newClientRequestDurationOpts = []metric.Float64HistogramOption{ + metric.WithDescription("Duration of HTTP client requests."), + metric.WithUnit("s"), + metric.WithExplicitBucketBoundaries([]float64{0.005, 0.01, 0.025, 0.05, 0.075, 0.1, 0.25, 0.5, 0.75, 1, 2.5, 5, 7.5, 10}...), +} + +// NewClientRequestDuration returns a new ClientRequestDuration instrument. +func NewClientRequestDuration( + m metric.Meter, + opt ...metric.Float64HistogramOption, +) (ClientRequestDuration, error) { + // Check if the meter is nil. + if m == nil { + return ClientRequestDuration{noop.Float64Histogram{}}, nil + } + + if len(opt) == 0 { + opt = newClientRequestDurationOpts + } else { + opt = append(opt, newClientRequestDurationOpts...) + } + + i, err := m.Float64Histogram( + "http.client.request.duration", + opt..., + ) + if err != nil { + return ClientRequestDuration{noop.Float64Histogram{}}, err + } + return ClientRequestDuration{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m ClientRequestDuration) Inst() metric.Float64Histogram { + return m.Float64Histogram +} + +// Name returns the semantic convention name of the instrument. +func (ClientRequestDuration) Name() string { + return "http.client.request.duration" +} + +// Unit returns the semantic convention unit of the instrument +func (ClientRequestDuration) Unit() string { + return "s" +} + +// Description returns the semantic convention description of the instrument +func (ClientRequestDuration) Description() string { + return "Duration of HTTP client requests." +} + +// Record records val to the current distribution for attrs. +// +// The requestMethod is the HTTP request method. +// +// The serverAddress is the server domain name if available without reverse DNS +// lookup; otherwise, IP address or Unix domain socket name. +// +// The serverPort is the server port number. +// +// All additional attrs passed are included in the recorded value. +func (m ClientRequestDuration) Record( + ctx context.Context, + val float64, + requestMethod RequestMethodAttr, + serverAddress string, + serverPort int, + attrs ...attribute.KeyValue, +) { + if !m.Float64Histogram.Enabled(ctx) { + return + } + if len(attrs) == 0 { + m.Float64Histogram.Record(ctx, val, metric.WithAttributes( + attribute.String("http.request.method", string(requestMethod)), + attribute.String("server.address", serverAddress), + attribute.Int("server.port", serverPort), + )) + return + } + + o := metricpool.RecordOptions() + defer metricpool.PutRecordOptions(o) + + *o = append( + *o, + metric.WithAttributes( + append( + attrs[:len(attrs):len(attrs)], + attribute.String("http.request.method", string(requestMethod)), + attribute.String("server.address", serverAddress), + attribute.Int("server.port", serverPort), + )..., + ), + ) + + m.Float64Histogram.Record(ctx, val, *o...) +} + +// RecordSet records val to the current distribution for set. +func (m ClientRequestDuration) RecordSet(ctx context.Context, val float64, set attribute.Set) { + if !m.Float64Histogram.Enabled(ctx) { + return + } + if set.Len() == 0 { + m.Float64Histogram.Record(ctx, val) + return + } + + o := metricpool.RecordOptions() + defer metricpool.PutRecordOptions(o) + + *o = append(*o, metric.WithAttributeSet(set)) + m.Float64Histogram.Record(ctx, val, *o...) +} + +// AttrErrorType returns an optional attribute for the "error.type" semantic +// convention. It represents the describes a class of error the operation ended +// with. +func (ClientRequestDuration) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue { + return attribute.String("error.type", string(val)) +} + +// AttrResponseStatusCode returns an optional attribute for the +// "http.response.status_code" semantic convention. It represents the +// [HTTP response status code]. +// +// [HTTP response status code]: https://tools.ietf.org/html/rfc7231#section-6 +func (ClientRequestDuration) AttrResponseStatusCode(val int) attribute.KeyValue { + return attribute.Int("http.response.status_code", val) +} + +// AttrNetworkProtocolName returns an optional attribute for the +// "network.protocol.name" semantic convention. It represents the +// [OSI application layer] or non-OSI equivalent. +// +// [OSI application layer]: https://wikipedia.org/wiki/Application_layer +func (ClientRequestDuration) AttrNetworkProtocolName(val string) attribute.KeyValue { + return attribute.String("network.protocol.name", val) +} + +// AttrNetworkProtocolVersion returns an optional attribute for the +// "network.protocol.version" semantic convention. It represents the actual +// version of the protocol used for network communication. +func (ClientRequestDuration) AttrNetworkProtocolVersion(val string) attribute.KeyValue { + return attribute.String("network.protocol.version", val) +} + +// AttrURLScheme returns an optional attribute for the "url.scheme" semantic +// convention. It represents the [URI scheme] component identifying the used +// protocol. +// +// [URI scheme]: https://www.rfc-editor.org/rfc/rfc3986#section-3.1 +func (ClientRequestDuration) AttrURLScheme(val string) attribute.KeyValue { + return attribute.String("url.scheme", val) +} + +// AttrURLTemplate returns an optional attribute for the "url.template" semantic +// convention. It represents the low-cardinality template of an +// [absolute path reference]. +// +// [absolute path reference]: https://www.rfc-editor.org/rfc/rfc3986#section-4.2 +func (ClientRequestDuration) AttrURLTemplate(val string) attribute.KeyValue { + return attribute.String("url.template", val) +} + +// ClientResponseBodySize is an instrument used to record metric values +// conforming to the "http.client.response.body.size" semantic conventions. It +// represents the size of HTTP client response bodies. +type ClientResponseBodySize struct { + metric.Int64Histogram +} + +var newClientResponseBodySizeOpts = []metric.Int64HistogramOption{ + metric.WithDescription("Size of HTTP client response bodies."), + metric.WithUnit("By"), +} + +// NewClientResponseBodySize returns a new ClientResponseBodySize instrument. +func NewClientResponseBodySize( + m metric.Meter, + opt ...metric.Int64HistogramOption, +) (ClientResponseBodySize, error) { + // Check if the meter is nil. + if m == nil { + return ClientResponseBodySize{noop.Int64Histogram{}}, nil + } + + if len(opt) == 0 { + opt = newClientResponseBodySizeOpts + } else { + opt = append(opt, newClientResponseBodySizeOpts...) + } + + i, err := m.Int64Histogram( + "http.client.response.body.size", + opt..., + ) + if err != nil { + return ClientResponseBodySize{noop.Int64Histogram{}}, err + } + return ClientResponseBodySize{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m ClientResponseBodySize) Inst() metric.Int64Histogram { + return m.Int64Histogram +} + +// Name returns the semantic convention name of the instrument. +func (ClientResponseBodySize) Name() string { + return "http.client.response.body.size" +} + +// Unit returns the semantic convention unit of the instrument +func (ClientResponseBodySize) Unit() string { + return "By" +} + +// Description returns the semantic convention description of the instrument +func (ClientResponseBodySize) Description() string { + return "Size of HTTP client response bodies." +} + +// Record records val to the current distribution for attrs. +// +// The requestMethod is the HTTP request method. +// +// The serverAddress is the server domain name if available without reverse DNS +// lookup; otherwise, IP address or Unix domain socket name. +// +// The serverPort is the server port number. +// +// All additional attrs passed are included in the recorded value. +// +// The size of the response payload body in bytes. This is the number of bytes +// transferred excluding headers and is often, but not always, present as the +// [Content-Length] header. For requests using transport encoding, this should be +// the compressed size. +// +// [Content-Length]: https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length +func (m ClientResponseBodySize) Record( + ctx context.Context, + val int64, + requestMethod RequestMethodAttr, + serverAddress string, + serverPort int, + attrs ...attribute.KeyValue, +) { + if !m.Int64Histogram.Enabled(ctx) { + return + } + if len(attrs) == 0 { + m.Int64Histogram.Record(ctx, val, metric.WithAttributes( + attribute.String("http.request.method", string(requestMethod)), + attribute.String("server.address", serverAddress), + attribute.Int("server.port", serverPort), + )) + return + } + + o := metricpool.RecordOptions() + defer metricpool.PutRecordOptions(o) + + *o = append( + *o, + metric.WithAttributes( + append( + attrs[:len(attrs):len(attrs)], + attribute.String("http.request.method", string(requestMethod)), + attribute.String("server.address", serverAddress), + attribute.Int("server.port", serverPort), + )..., + ), + ) + + m.Int64Histogram.Record(ctx, val, *o...) +} + +// RecordSet records val to the current distribution for set. +// +// The size of the response payload body in bytes. This is the number of bytes +// transferred excluding headers and is often, but not always, present as the +// [Content-Length] header. For requests using transport encoding, this should be +// the compressed size. +// +// [Content-Length]: https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length +func (m ClientResponseBodySize) RecordSet(ctx context.Context, val int64, set attribute.Set) { + if !m.Int64Histogram.Enabled(ctx) { + return + } + if set.Len() == 0 { + m.Int64Histogram.Record(ctx, val) + return + } + + o := metricpool.RecordOptions() + defer metricpool.PutRecordOptions(o) + + *o = append(*o, metric.WithAttributeSet(set)) + m.Int64Histogram.Record(ctx, val, *o...) +} + +// AttrErrorType returns an optional attribute for the "error.type" semantic +// convention. It represents the describes a class of error the operation ended +// with. +func (ClientResponseBodySize) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue { + return attribute.String("error.type", string(val)) +} + +// AttrResponseStatusCode returns an optional attribute for the +// "http.response.status_code" semantic convention. It represents the +// [HTTP response status code]. +// +// [HTTP response status code]: https://tools.ietf.org/html/rfc7231#section-6 +func (ClientResponseBodySize) AttrResponseStatusCode(val int) attribute.KeyValue { + return attribute.Int("http.response.status_code", val) +} + +// AttrNetworkProtocolName returns an optional attribute for the +// "network.protocol.name" semantic convention. It represents the +// [OSI application layer] or non-OSI equivalent. +// +// [OSI application layer]: https://wikipedia.org/wiki/Application_layer +func (ClientResponseBodySize) AttrNetworkProtocolName(val string) attribute.KeyValue { + return attribute.String("network.protocol.name", val) +} + +// AttrURLTemplate returns an optional attribute for the "url.template" semantic +// convention. It represents the low-cardinality template of an +// [absolute path reference]. +// +// [absolute path reference]: https://www.rfc-editor.org/rfc/rfc3986#section-4.2 +func (ClientResponseBodySize) AttrURLTemplate(val string) attribute.KeyValue { + return attribute.String("url.template", val) +} + +// AttrNetworkProtocolVersion returns an optional attribute for the +// "network.protocol.version" semantic convention. It represents the actual +// version of the protocol used for network communication. +func (ClientResponseBodySize) AttrNetworkProtocolVersion(val string) attribute.KeyValue { + return attribute.String("network.protocol.version", val) +} + +// AttrURLScheme returns an optional attribute for the "url.scheme" semantic +// convention. It represents the [URI scheme] component identifying the used +// protocol. +// +// [URI scheme]: https://www.rfc-editor.org/rfc/rfc3986#section-3.1 +func (ClientResponseBodySize) AttrURLScheme(val string) attribute.KeyValue { + return attribute.String("url.scheme", val) +} + +// ServerActiveRequests is an instrument used to record metric values conforming +// to the "http.server.active_requests" semantic conventions. It represents the +// number of active HTTP server requests. +type ServerActiveRequests struct { + metric.Int64UpDownCounter +} + +var newServerActiveRequestsOpts = []metric.Int64UpDownCounterOption{ + metric.WithDescription("Number of active HTTP server requests."), + metric.WithUnit("{request}"), +} + +// NewServerActiveRequests returns a new ServerActiveRequests instrument. +func NewServerActiveRequests( + m metric.Meter, + opt ...metric.Int64UpDownCounterOption, +) (ServerActiveRequests, error) { + // Check if the meter is nil. + if m == nil { + return ServerActiveRequests{noop.Int64UpDownCounter{}}, nil + } + + if len(opt) == 0 { + opt = newServerActiveRequestsOpts + } else { + opt = append(opt, newServerActiveRequestsOpts...) + } + + i, err := m.Int64UpDownCounter( + "http.server.active_requests", + opt..., + ) + if err != nil { + return ServerActiveRequests{noop.Int64UpDownCounter{}}, err + } + return ServerActiveRequests{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m ServerActiveRequests) Inst() metric.Int64UpDownCounter { + return m.Int64UpDownCounter +} + +// Name returns the semantic convention name of the instrument. +func (ServerActiveRequests) Name() string { + return "http.server.active_requests" +} + +// Unit returns the semantic convention unit of the instrument +func (ServerActiveRequests) Unit() string { + return "{request}" +} + +// Description returns the semantic convention description of the instrument +func (ServerActiveRequests) Description() string { + return "Number of active HTTP server requests." +} + +// Add adds incr to the existing count for attrs. +// +// The requestMethod is the HTTP request method. +// +// The urlScheme is the the [URI scheme] component identifying the used protocol. +// +// All additional attrs passed are included in the recorded value. +// +// [URI scheme]: https://www.rfc-editor.org/rfc/rfc3986#section-3.1 +func (m ServerActiveRequests) Add( + ctx context.Context, + incr int64, + requestMethod RequestMethodAttr, + urlScheme string, + attrs ...attribute.KeyValue, +) { + if !m.Int64UpDownCounter.Enabled(ctx) { + return + } + if len(attrs) == 0 { + m.Int64UpDownCounter.Add(ctx, incr, metric.WithAttributes( + attribute.String("http.request.method", string(requestMethod)), + attribute.String("url.scheme", urlScheme), + )) + return + } + + o := metricpool.AddOptions() + defer metricpool.PutAddOptions(o) + + *o = append( + *o, + metric.WithAttributes( + append( + attrs[:len(attrs):len(attrs)], + attribute.String("http.request.method", string(requestMethod)), + attribute.String("url.scheme", urlScheme), + )..., + ), + ) + + m.Int64UpDownCounter.Add(ctx, incr, *o...) +} + +// AddSet adds incr to the existing count for set. +func (m ServerActiveRequests) AddSet(ctx context.Context, incr int64, set attribute.Set) { + if !m.Int64UpDownCounter.Enabled(ctx) { + return + } + if set.Len() == 0 { + m.Int64UpDownCounter.Add(ctx, incr) + return + } + + o := metricpool.AddOptions() + defer metricpool.PutAddOptions(o) + + *o = append(*o, metric.WithAttributeSet(set)) + m.Int64UpDownCounter.Add(ctx, incr, *o...) +} + +// AttrServerAddress returns an optional attribute for the "server.address" +// semantic convention. It represents the name of the local HTTP server that +// received the request. +func (ServerActiveRequests) AttrServerAddress(val string) attribute.KeyValue { + return attribute.String("server.address", val) +} + +// AttrServerPort returns an optional attribute for the "server.port" semantic +// convention. It represents the port of the local HTTP server that received the +// request. +func (ServerActiveRequests) AttrServerPort(val int) attribute.KeyValue { + return attribute.Int("server.port", val) +} + +// ServerActiveRequestsObservable is an instrument used to record metric values +// conforming to the "http.server.active_requests" semantic conventions. It +// represents the number of active HTTP server requests. +type ServerActiveRequestsObservable struct { + metric.Int64ObservableUpDownCounter +} + +var newServerActiveRequestsObservableOpts = []metric.Int64ObservableUpDownCounterOption{ + metric.WithDescription("Number of active HTTP server requests."), + metric.WithUnit("{request}"), +} + +// NewServerActiveRequestsObservable returns a new ServerActiveRequestsObservable +// instrument. +func NewServerActiveRequestsObservable( + m metric.Meter, + opt ...metric.Int64ObservableUpDownCounterOption, +) (ServerActiveRequestsObservable, error) { + // Check if the meter is nil. + if m == nil { + return ServerActiveRequestsObservable{noop.Int64ObservableUpDownCounter{}}, nil + } + + if len(opt) == 0 { + opt = newServerActiveRequestsObservableOpts + } else { + opt = append(opt, newServerActiveRequestsObservableOpts...) + } + + i, err := m.Int64ObservableUpDownCounter( + "http.server.active_requests", + opt..., + ) + if err != nil { + return ServerActiveRequestsObservable{noop.Int64ObservableUpDownCounter{}}, err + } + return ServerActiveRequestsObservable{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m ServerActiveRequestsObservable) Inst() metric.Int64ObservableUpDownCounter { + return m.Int64ObservableUpDownCounter +} + +// Name returns the semantic convention name of the instrument. +func (ServerActiveRequestsObservable) Name() string { + return "http.server.active_requests" +} + +// Unit returns the semantic convention unit of the instrument +func (ServerActiveRequestsObservable) Unit() string { + return "{request}" +} + +// Description returns the semantic convention description of the instrument +func (ServerActiveRequestsObservable) Description() string { + return "Number of active HTTP server requests." +} + +// AttrRequestMethod returns a required attribute for the "http.request.method" +// semantic convention. It represents the HTTP request method. +func (ServerActiveRequestsObservable) AttrRequestMethod(val RequestMethodAttr) attribute.KeyValue { + return attribute.String("http.request.method", string(val)) +} + +// AttrURLScheme returns a required attribute for the "url.scheme" semantic +// convention. It represents the [URI scheme] component identifying the used +// protocol. +// +// [URI scheme]: https://www.rfc-editor.org/rfc/rfc3986#section-3.1 +func (ServerActiveRequestsObservable) AttrURLScheme(val string) attribute.KeyValue { + return attribute.String("url.scheme", val) +} + +// AttrServerAddress returns an optional attribute for the "server.address" +// semantic convention. It represents the name of the local HTTP server that +// received the request. +func (ServerActiveRequestsObservable) AttrServerAddress(val string) attribute.KeyValue { + return attribute.String("server.address", val) +} + +// AttrServerPort returns an optional attribute for the "server.port" semantic +// convention. It represents the port of the local HTTP server that received the +// request. +func (ServerActiveRequestsObservable) AttrServerPort(val int) attribute.KeyValue { + return attribute.Int("server.port", val) +} + +// ServerRequestBodySize is an instrument used to record metric values conforming +// to the "http.server.request.body.size" semantic conventions. It represents the +// size of HTTP server request bodies. +type ServerRequestBodySize struct { + metric.Int64Histogram +} + +var newServerRequestBodySizeOpts = []metric.Int64HistogramOption{ + metric.WithDescription("Size of HTTP server request bodies."), + metric.WithUnit("By"), +} + +// NewServerRequestBodySize returns a new ServerRequestBodySize instrument. +func NewServerRequestBodySize( + m metric.Meter, + opt ...metric.Int64HistogramOption, +) (ServerRequestBodySize, error) { + // Check if the meter is nil. + if m == nil { + return ServerRequestBodySize{noop.Int64Histogram{}}, nil + } + + if len(opt) == 0 { + opt = newServerRequestBodySizeOpts + } else { + opt = append(opt, newServerRequestBodySizeOpts...) + } + + i, err := m.Int64Histogram( + "http.server.request.body.size", + opt..., + ) + if err != nil { + return ServerRequestBodySize{noop.Int64Histogram{}}, err + } + return ServerRequestBodySize{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m ServerRequestBodySize) Inst() metric.Int64Histogram { + return m.Int64Histogram +} + +// Name returns the semantic convention name of the instrument. +func (ServerRequestBodySize) Name() string { + return "http.server.request.body.size" +} + +// Unit returns the semantic convention unit of the instrument +func (ServerRequestBodySize) Unit() string { + return "By" +} + +// Description returns the semantic convention description of the instrument +func (ServerRequestBodySize) Description() string { + return "Size of HTTP server request bodies." +} + +// Record records val to the current distribution for attrs. +// +// The requestMethod is the HTTP request method. +// +// The urlScheme is the the [URI scheme] component identifying the used protocol. +// +// All additional attrs passed are included in the recorded value. +// +// [URI scheme]: https://www.rfc-editor.org/rfc/rfc3986#section-3.1 +// +// The size of the request payload body in bytes. This is the number of bytes +// transferred excluding headers and is often, but not always, present as the +// [Content-Length] header. For requests using transport encoding, this should be +// the compressed size. +// +// [Content-Length]: https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length +func (m ServerRequestBodySize) Record( + ctx context.Context, + val int64, + requestMethod RequestMethodAttr, + urlScheme string, + attrs ...attribute.KeyValue, +) { + if !m.Int64Histogram.Enabled(ctx) { + return + } + if len(attrs) == 0 { + m.Int64Histogram.Record(ctx, val, metric.WithAttributes( + attribute.String("http.request.method", string(requestMethod)), + attribute.String("url.scheme", urlScheme), + )) + return + } + + o := metricpool.RecordOptions() + defer metricpool.PutRecordOptions(o) + + *o = append( + *o, + metric.WithAttributes( + append( + attrs[:len(attrs):len(attrs)], + attribute.String("http.request.method", string(requestMethod)), + attribute.String("url.scheme", urlScheme), + )..., + ), + ) + + m.Int64Histogram.Record(ctx, val, *o...) +} + +// RecordSet records val to the current distribution for set. +// +// The size of the request payload body in bytes. This is the number of bytes +// transferred excluding headers and is often, but not always, present as the +// [Content-Length] header. For requests using transport encoding, this should be +// the compressed size. +// +// [Content-Length]: https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length +func (m ServerRequestBodySize) RecordSet(ctx context.Context, val int64, set attribute.Set) { + if !m.Int64Histogram.Enabled(ctx) { + return + } + if set.Len() == 0 { + m.Int64Histogram.Record(ctx, val) + return + } + + o := metricpool.RecordOptions() + defer metricpool.PutRecordOptions(o) + + *o = append(*o, metric.WithAttributeSet(set)) + m.Int64Histogram.Record(ctx, val, *o...) +} + +// AttrErrorType returns an optional attribute for the "error.type" semantic +// convention. It represents the describes a class of error the operation ended +// with. +func (ServerRequestBodySize) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue { + return attribute.String("error.type", string(val)) +} + +// AttrResponseStatusCode returns an optional attribute for the +// "http.response.status_code" semantic convention. It represents the +// [HTTP response status code]. +// +// [HTTP response status code]: https://tools.ietf.org/html/rfc7231#section-6 +func (ServerRequestBodySize) AttrResponseStatusCode(val int) attribute.KeyValue { + return attribute.Int("http.response.status_code", val) +} + +// AttrRoute returns an optional attribute for the "http.route" semantic +// convention. It represents the matched route template for the request. This +// MUST be low-cardinality and include all static path segments, with dynamic +// path segments represented with placeholders. +func (ServerRequestBodySize) AttrRoute(val string) attribute.KeyValue { + return attribute.String("http.route", val) +} + +// AttrNetworkProtocolName returns an optional attribute for the +// "network.protocol.name" semantic convention. It represents the +// [OSI application layer] or non-OSI equivalent. +// +// [OSI application layer]: https://wikipedia.org/wiki/Application_layer +func (ServerRequestBodySize) AttrNetworkProtocolName(val string) attribute.KeyValue { + return attribute.String("network.protocol.name", val) +} + +// AttrNetworkProtocolVersion returns an optional attribute for the +// "network.protocol.version" semantic convention. It represents the actual +// version of the protocol used for network communication. +func (ServerRequestBodySize) AttrNetworkProtocolVersion(val string) attribute.KeyValue { + return attribute.String("network.protocol.version", val) +} + +// AttrServerAddress returns an optional attribute for the "server.address" +// semantic convention. It represents the name of the local HTTP server that +// received the request. +func (ServerRequestBodySize) AttrServerAddress(val string) attribute.KeyValue { + return attribute.String("server.address", val) +} + +// AttrServerPort returns an optional attribute for the "server.port" semantic +// convention. It represents the port of the local HTTP server that received the +// request. +func (ServerRequestBodySize) AttrServerPort(val int) attribute.KeyValue { + return attribute.Int("server.port", val) +} + +// AttrUserAgentSyntheticType returns an optional attribute for the +// "user_agent.synthetic.type" semantic convention. It represents the specifies +// the category of synthetic traffic, such as tests or bots. +func (ServerRequestBodySize) AttrUserAgentSyntheticType(val UserAgentSyntheticTypeAttr) attribute.KeyValue { + return attribute.String("user_agent.synthetic.type", string(val)) +} + +// ServerRequestDuration is an instrument used to record metric values conforming +// to the "http.server.request.duration" semantic conventions. It represents the +// duration of HTTP server requests. +type ServerRequestDuration struct { + metric.Float64Histogram +} + +var newServerRequestDurationOpts = []metric.Float64HistogramOption{ + metric.WithDescription("Duration of HTTP server requests."), + metric.WithUnit("s"), + metric.WithExplicitBucketBoundaries([]float64{0.005, 0.01, 0.025, 0.05, 0.075, 0.1, 0.25, 0.5, 0.75, 1, 2.5, 5, 7.5, 10}...), +} + +// NewServerRequestDuration returns a new ServerRequestDuration instrument. +func NewServerRequestDuration( + m metric.Meter, + opt ...metric.Float64HistogramOption, +) (ServerRequestDuration, error) { + // Check if the meter is nil. + if m == nil { + return ServerRequestDuration{noop.Float64Histogram{}}, nil + } + + if len(opt) == 0 { + opt = newServerRequestDurationOpts + } else { + opt = append(opt, newServerRequestDurationOpts...) + } + + i, err := m.Float64Histogram( + "http.server.request.duration", + opt..., + ) + if err != nil { + return ServerRequestDuration{noop.Float64Histogram{}}, err + } + return ServerRequestDuration{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m ServerRequestDuration) Inst() metric.Float64Histogram { + return m.Float64Histogram +} + +// Name returns the semantic convention name of the instrument. +func (ServerRequestDuration) Name() string { + return "http.server.request.duration" +} + +// Unit returns the semantic convention unit of the instrument +func (ServerRequestDuration) Unit() string { + return "s" +} + +// Description returns the semantic convention description of the instrument +func (ServerRequestDuration) Description() string { + return "Duration of HTTP server requests." +} + +// Record records val to the current distribution for attrs. +// +// The requestMethod is the HTTP request method. +// +// The urlScheme is the the [URI scheme] component identifying the used protocol. +// +// All additional attrs passed are included in the recorded value. +// +// [URI scheme]: https://www.rfc-editor.org/rfc/rfc3986#section-3.1 +func (m ServerRequestDuration) Record( + ctx context.Context, + val float64, + requestMethod RequestMethodAttr, + urlScheme string, + attrs ...attribute.KeyValue, +) { + if !m.Float64Histogram.Enabled(ctx) { + return + } + if len(attrs) == 0 { + m.Float64Histogram.Record(ctx, val, metric.WithAttributes( + attribute.String("http.request.method", string(requestMethod)), + attribute.String("url.scheme", urlScheme), + )) + return + } + + o := metricpool.RecordOptions() + defer metricpool.PutRecordOptions(o) + + *o = append( + *o, + metric.WithAttributes( + append( + attrs[:len(attrs):len(attrs)], + attribute.String("http.request.method", string(requestMethod)), + attribute.String("url.scheme", urlScheme), + )..., + ), + ) + + m.Float64Histogram.Record(ctx, val, *o...) +} + +// RecordSet records val to the current distribution for set. +func (m ServerRequestDuration) RecordSet(ctx context.Context, val float64, set attribute.Set) { + if !m.Float64Histogram.Enabled(ctx) { + return + } + if set.Len() == 0 { + m.Float64Histogram.Record(ctx, val) + return + } + + o := metricpool.RecordOptions() + defer metricpool.PutRecordOptions(o) + + *o = append(*o, metric.WithAttributeSet(set)) + m.Float64Histogram.Record(ctx, val, *o...) +} + +// AttrErrorType returns an optional attribute for the "error.type" semantic +// convention. It represents the describes a class of error the operation ended +// with. +func (ServerRequestDuration) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue { + return attribute.String("error.type", string(val)) +} + +// AttrResponseStatusCode returns an optional attribute for the +// "http.response.status_code" semantic convention. It represents the +// [HTTP response status code]. +// +// [HTTP response status code]: https://tools.ietf.org/html/rfc7231#section-6 +func (ServerRequestDuration) AttrResponseStatusCode(val int) attribute.KeyValue { + return attribute.Int("http.response.status_code", val) +} + +// AttrRoute returns an optional attribute for the "http.route" semantic +// convention. It represents the matched route template for the request. This +// MUST be low-cardinality and include all static path segments, with dynamic +// path segments represented with placeholders. +func (ServerRequestDuration) AttrRoute(val string) attribute.KeyValue { + return attribute.String("http.route", val) +} + +// AttrNetworkProtocolName returns an optional attribute for the +// "network.protocol.name" semantic convention. It represents the +// [OSI application layer] or non-OSI equivalent. +// +// [OSI application layer]: https://wikipedia.org/wiki/Application_layer +func (ServerRequestDuration) AttrNetworkProtocolName(val string) attribute.KeyValue { + return attribute.String("network.protocol.name", val) +} + +// AttrNetworkProtocolVersion returns an optional attribute for the +// "network.protocol.version" semantic convention. It represents the actual +// version of the protocol used for network communication. +func (ServerRequestDuration) AttrNetworkProtocolVersion(val string) attribute.KeyValue { + return attribute.String("network.protocol.version", val) +} + +// AttrServerAddress returns an optional attribute for the "server.address" +// semantic convention. It represents the name of the local HTTP server that +// received the request. +func (ServerRequestDuration) AttrServerAddress(val string) attribute.KeyValue { + return attribute.String("server.address", val) +} + +// AttrServerPort returns an optional attribute for the "server.port" semantic +// convention. It represents the port of the local HTTP server that received the +// request. +func (ServerRequestDuration) AttrServerPort(val int) attribute.KeyValue { + return attribute.Int("server.port", val) +} + +// AttrUserAgentSyntheticType returns an optional attribute for the +// "user_agent.synthetic.type" semantic convention. It represents the specifies +// the category of synthetic traffic, such as tests or bots. +func (ServerRequestDuration) AttrUserAgentSyntheticType(val UserAgentSyntheticTypeAttr) attribute.KeyValue { + return attribute.String("user_agent.synthetic.type", string(val)) +} + +// ServerResponseBodySize is an instrument used to record metric values +// conforming to the "http.server.response.body.size" semantic conventions. It +// represents the size of HTTP server response bodies. +type ServerResponseBodySize struct { + metric.Int64Histogram +} + +var newServerResponseBodySizeOpts = []metric.Int64HistogramOption{ + metric.WithDescription("Size of HTTP server response bodies."), + metric.WithUnit("By"), +} + +// NewServerResponseBodySize returns a new ServerResponseBodySize instrument. +func NewServerResponseBodySize( + m metric.Meter, + opt ...metric.Int64HistogramOption, +) (ServerResponseBodySize, error) { + // Check if the meter is nil. + if m == nil { + return ServerResponseBodySize{noop.Int64Histogram{}}, nil + } + + if len(opt) == 0 { + opt = newServerResponseBodySizeOpts + } else { + opt = append(opt, newServerResponseBodySizeOpts...) + } + + i, err := m.Int64Histogram( + "http.server.response.body.size", + opt..., + ) + if err != nil { + return ServerResponseBodySize{noop.Int64Histogram{}}, err + } + return ServerResponseBodySize{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m ServerResponseBodySize) Inst() metric.Int64Histogram { + return m.Int64Histogram +} + +// Name returns the semantic convention name of the instrument. +func (ServerResponseBodySize) Name() string { + return "http.server.response.body.size" +} + +// Unit returns the semantic convention unit of the instrument +func (ServerResponseBodySize) Unit() string { + return "By" +} + +// Description returns the semantic convention description of the instrument +func (ServerResponseBodySize) Description() string { + return "Size of HTTP server response bodies." +} + +// Record records val to the current distribution for attrs. +// +// The requestMethod is the HTTP request method. +// +// The urlScheme is the the [URI scheme] component identifying the used protocol. +// +// All additional attrs passed are included in the recorded value. +// +// [URI scheme]: https://www.rfc-editor.org/rfc/rfc3986#section-3.1 +// +// The size of the response payload body in bytes. This is the number of bytes +// transferred excluding headers and is often, but not always, present as the +// [Content-Length] header. For requests using transport encoding, this should be +// the compressed size. +// +// [Content-Length]: https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length +func (m ServerResponseBodySize) Record( + ctx context.Context, + val int64, + requestMethod RequestMethodAttr, + urlScheme string, + attrs ...attribute.KeyValue, +) { + if !m.Int64Histogram.Enabled(ctx) { + return + } + if len(attrs) == 0 { + m.Int64Histogram.Record(ctx, val, metric.WithAttributes( + attribute.String("http.request.method", string(requestMethod)), + attribute.String("url.scheme", urlScheme), + )) + return + } + + o := metricpool.RecordOptions() + defer metricpool.PutRecordOptions(o) + + *o = append( + *o, + metric.WithAttributes( + append( + attrs[:len(attrs):len(attrs)], + attribute.String("http.request.method", string(requestMethod)), + attribute.String("url.scheme", urlScheme), + )..., + ), + ) + + m.Int64Histogram.Record(ctx, val, *o...) +} + +// RecordSet records val to the current distribution for set. +// +// The size of the response payload body in bytes. This is the number of bytes +// transferred excluding headers and is often, but not always, present as the +// [Content-Length] header. For requests using transport encoding, this should be +// the compressed size. +// +// [Content-Length]: https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length +func (m ServerResponseBodySize) RecordSet(ctx context.Context, val int64, set attribute.Set) { + if !m.Int64Histogram.Enabled(ctx) { + return + } + if set.Len() == 0 { + m.Int64Histogram.Record(ctx, val) + return + } + + o := metricpool.RecordOptions() + defer metricpool.PutRecordOptions(o) + + *o = append(*o, metric.WithAttributeSet(set)) + m.Int64Histogram.Record(ctx, val, *o...) +} + +// AttrErrorType returns an optional attribute for the "error.type" semantic +// convention. It represents the describes a class of error the operation ended +// with. +func (ServerResponseBodySize) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue { + return attribute.String("error.type", string(val)) +} + +// AttrResponseStatusCode returns an optional attribute for the +// "http.response.status_code" semantic convention. It represents the +// [HTTP response status code]. +// +// [HTTP response status code]: https://tools.ietf.org/html/rfc7231#section-6 +func (ServerResponseBodySize) AttrResponseStatusCode(val int) attribute.KeyValue { + return attribute.Int("http.response.status_code", val) +} + +// AttrRoute returns an optional attribute for the "http.route" semantic +// convention. It represents the matched route template for the request. This +// MUST be low-cardinality and include all static path segments, with dynamic +// path segments represented with placeholders. +func (ServerResponseBodySize) AttrRoute(val string) attribute.KeyValue { + return attribute.String("http.route", val) +} + +// AttrNetworkProtocolName returns an optional attribute for the +// "network.protocol.name" semantic convention. It represents the +// [OSI application layer] or non-OSI equivalent. +// +// [OSI application layer]: https://wikipedia.org/wiki/Application_layer +func (ServerResponseBodySize) AttrNetworkProtocolName(val string) attribute.KeyValue { + return attribute.String("network.protocol.name", val) +} + +// AttrNetworkProtocolVersion returns an optional attribute for the +// "network.protocol.version" semantic convention. It represents the actual +// version of the protocol used for network communication. +func (ServerResponseBodySize) AttrNetworkProtocolVersion(val string) attribute.KeyValue { + return attribute.String("network.protocol.version", val) +} + +// AttrServerAddress returns an optional attribute for the "server.address" +// semantic convention. It represents the name of the local HTTP server that +// received the request. +func (ServerResponseBodySize) AttrServerAddress(val string) attribute.KeyValue { + return attribute.String("server.address", val) +} + +// AttrServerPort returns an optional attribute for the "server.port" semantic +// convention. It represents the port of the local HTTP server that received the +// request. +func (ServerResponseBodySize) AttrServerPort(val int) attribute.KeyValue { + return attribute.Int("server.port", val) +} + +// AttrUserAgentSyntheticType returns an optional attribute for the +// "user_agent.synthetic.type" semantic convention. It represents the specifies +// the category of synthetic traffic, such as tests or bots. +func (ServerResponseBodySize) AttrUserAgentSyntheticType(val UserAgentSyntheticTypeAttr) attribute.KeyValue { + return attribute.String("user_agent.synthetic.type", string(val)) +} diff --git a/vendor/go.opentelemetry.io/otel/semconv/v1.43.0/otelconv/metric.go b/vendor/go.opentelemetry.io/otel/semconv/v1.43.0/otelconv/metric.go new file mode 100644 index 0000000000..9eaf0fd9a2 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/semconv/v1.43.0/otelconv/metric.go @@ -0,0 +1,3197 @@ +// Code generated from semantic convention specification. DO NOT EDIT. + +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Package otelconv provides types and functionality for OpenTelemetry semantic +// conventions in the "otel" namespace. +package otelconv + +import ( + "context" + + "go.opentelemetry.io/otel/attribute" + "go.opentelemetry.io/otel/metric" + "go.opentelemetry.io/otel/metric/noop" + "go.opentelemetry.io/otel/semconv/internal/metricpool" +) + +// ErrorTypeAttr is an attribute conforming to the error.type semantic +// conventions. It represents the describes a class of error the operation ended +// with. +type ErrorTypeAttr string + +var ( + // ErrorTypeOther is a fallback error value to be used when the instrumentation + // doesn't define a custom value. + ErrorTypeOther ErrorTypeAttr = "_OTHER" +) + +// ComponentTypeAttr is an attribute conforming to the otel.component.type +// semantic conventions. It represents a name identifying the type of the +// OpenTelemetry component. +type ComponentTypeAttr string + +var ( + // ComponentTypeBatchingSpanProcessor is the builtin SDK batching span + // processor. + ComponentTypeBatchingSpanProcessor ComponentTypeAttr = "batching_span_processor" + // ComponentTypeSimpleSpanProcessor is the builtin SDK simple span processor. + ComponentTypeSimpleSpanProcessor ComponentTypeAttr = "simple_span_processor" + // ComponentTypeBatchingLogProcessor is the builtin SDK batching log record + // processor. + ComponentTypeBatchingLogProcessor ComponentTypeAttr = "batching_log_processor" + // ComponentTypeSimpleLogProcessor is the builtin SDK simple log record + // processor. + ComponentTypeSimpleLogProcessor ComponentTypeAttr = "simple_log_processor" + // ComponentTypeOtlpGRPCSpanExporter is the OTLP span exporter over gRPC with + // protobuf serialization. + ComponentTypeOtlpGRPCSpanExporter ComponentTypeAttr = "otlp_grpc_span_exporter" + // ComponentTypeOtlpHTTPSpanExporter is the OTLP span exporter over HTTP with + // protobuf serialization. + ComponentTypeOtlpHTTPSpanExporter ComponentTypeAttr = "otlp_http_span_exporter" + // ComponentTypeOtlpHTTPJSONSpanExporter is the OTLP span exporter over HTTP + // with JSON serialization. + ComponentTypeOtlpHTTPJSONSpanExporter ComponentTypeAttr = "otlp_http_json_span_exporter" + // ComponentTypeZipkinHTTPSpanExporter is the zipkin span exporter over HTTP. + ComponentTypeZipkinHTTPSpanExporter ComponentTypeAttr = "zipkin_http_span_exporter" + // ComponentTypeOtlpGRPCLogExporter is the OTLP log record exporter over gRPC + // with protobuf serialization. + ComponentTypeOtlpGRPCLogExporter ComponentTypeAttr = "otlp_grpc_log_exporter" + // ComponentTypeOtlpHTTPLogExporter is the OTLP log record exporter over HTTP + // with protobuf serialization. + ComponentTypeOtlpHTTPLogExporter ComponentTypeAttr = "otlp_http_log_exporter" + // ComponentTypeOtlpHTTPJSONLogExporter is the OTLP log record exporter over + // HTTP with JSON serialization. + ComponentTypeOtlpHTTPJSONLogExporter ComponentTypeAttr = "otlp_http_json_log_exporter" + // ComponentTypePeriodicMetricReader is the builtin SDK periodically exporting + // metric reader. + ComponentTypePeriodicMetricReader ComponentTypeAttr = "periodic_metric_reader" + // ComponentTypeOtlpGRPCMetricExporter is the OTLP metric exporter over gRPC + // with protobuf serialization. + ComponentTypeOtlpGRPCMetricExporter ComponentTypeAttr = "otlp_grpc_metric_exporter" + // ComponentTypeOtlpHTTPMetricExporter is the OTLP metric exporter over HTTP + // with protobuf serialization. + ComponentTypeOtlpHTTPMetricExporter ComponentTypeAttr = "otlp_http_metric_exporter" + // ComponentTypeOtlpHTTPJSONMetricExporter is the OTLP metric exporter over HTTP + // with JSON serialization. + ComponentTypeOtlpHTTPJSONMetricExporter ComponentTypeAttr = "otlp_http_json_metric_exporter" + // ComponentTypePrometheusHTTPTextMetricExporter is the prometheus metric + // exporter over HTTP with the default text-based format. + ComponentTypePrometheusHTTPTextMetricExporter ComponentTypeAttr = "prometheus_http_text_metric_exporter" +) + +// SpanParentOriginAttr is an attribute conforming to the otel.span.parent.origin +// semantic conventions. It represents the determines whether the span has a +// parent span, and if so, [whether it is a remote parent]. +// +// [whether it is a remote parent]: https://opentelemetry.io/docs/specs/otel/trace/api/#isremote +type SpanParentOriginAttr string + +var ( + // SpanParentOriginNone is the span does not have a parent, it is a root span. + SpanParentOriginNone SpanParentOriginAttr = "none" + // SpanParentOriginLocal is the span has a parent and the parent's span context + // [isRemote()] is false. + // + // [isRemote()]: https://opentelemetry.io/docs/specs/otel/trace/api/#isremote + SpanParentOriginLocal SpanParentOriginAttr = "local" + // SpanParentOriginRemote is the span has a parent and the parent's span context + // [isRemote()] is true. + // + // [isRemote()]: https://opentelemetry.io/docs/specs/otel/trace/api/#isremote + SpanParentOriginRemote SpanParentOriginAttr = "remote" +) + +// SpanSamplingResultAttr is an attribute conforming to the +// otel.span.sampling_result semantic conventions. It represents the result value +// of the sampler for this span. +type SpanSamplingResultAttr string + +var ( + // SpanSamplingResultDrop is the span is not sampled and not recording. + SpanSamplingResultDrop SpanSamplingResultAttr = "DROP" + // SpanSamplingResultRecordOnly is the span is not sampled, but recording. + SpanSamplingResultRecordOnly SpanSamplingResultAttr = "RECORD_ONLY" + // SpanSamplingResultRecordAndSample is the span is sampled and recording. + SpanSamplingResultRecordAndSample SpanSamplingResultAttr = "RECORD_AND_SAMPLE" +) + +// SDKExporterLogExported is an instrument used to record metric values +// conforming to the "otel.sdk.exporter.log.exported" semantic conventions. It +// represents the number of log records for which the export has finished, either +// successful or failed. +type SDKExporterLogExported struct { + metric.Int64Counter +} + +var newSDKExporterLogExportedOpts = []metric.Int64CounterOption{ + metric.WithDescription("The number of log records for which the export has finished, either successful or failed."), + metric.WithUnit("{log_record}"), +} + +// NewSDKExporterLogExported returns a new SDKExporterLogExported instrument. +func NewSDKExporterLogExported( + m metric.Meter, + opt ...metric.Int64CounterOption, +) (SDKExporterLogExported, error) { + // Check if the meter is nil. + if m == nil { + return SDKExporterLogExported{noop.Int64Counter{}}, nil + } + + if len(opt) == 0 { + opt = newSDKExporterLogExportedOpts + } else { + opt = append(opt, newSDKExporterLogExportedOpts...) + } + + i, err := m.Int64Counter( + "otel.sdk.exporter.log.exported", + opt..., + ) + if err != nil { + return SDKExporterLogExported{noop.Int64Counter{}}, err + } + return SDKExporterLogExported{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m SDKExporterLogExported) Inst() metric.Int64Counter { + return m.Int64Counter +} + +// Name returns the semantic convention name of the instrument. +func (SDKExporterLogExported) Name() string { + return "otel.sdk.exporter.log.exported" +} + +// Unit returns the semantic convention unit of the instrument +func (SDKExporterLogExported) Unit() string { + return "{log_record}" +} + +// Description returns the semantic convention description of the instrument +func (SDKExporterLogExported) Description() string { + return "The number of log records for which the export has finished, either successful or failed." +} + +// Add adds incr to the existing count for attrs. +// +// All additional attrs passed are included in the recorded value. +// +// For successful exports, `error.type` MUST NOT be set. For failed exports, +// `error.type` MUST contain the failure cause. +// For exporters with partial success semantics (e.g. OTLP with +// `rejected_log_records`), rejected log records MUST count as failed and only +// non-rejected log records count as success. +// If no rejection reason is available, `rejected` SHOULD be used as value for +// `error.type`. +// If the exporter retries failed export attempts, the export operation is +// considered finished only after the final attempt has concluded. +// Each log record MUST be counted exactly once per export operation: +// intermediate failed attempts that are followed by a retry MUST NOT increment +// the counter, +// and `error.type` reflects the cause of the final attempt. +func (m SDKExporterLogExported) Add( + ctx context.Context, + incr int64, + attrs ...attribute.KeyValue, +) { + if !m.Int64Counter.Enabled(ctx) { + return + } + if len(attrs) == 0 { + m.Int64Counter.Add(ctx, incr) + return + } + + o := metricpool.AddOptions() + defer metricpool.PutAddOptions(o) + + *o = append( + *o, + metric.WithAttributes( + attrs..., + ), + ) + + m.Int64Counter.Add(ctx, incr, *o...) +} + +// AddSet adds incr to the existing count for set. +// +// For successful exports, `error.type` MUST NOT be set. For failed exports, +// `error.type` MUST contain the failure cause. +// For exporters with partial success semantics (e.g. OTLP with +// `rejected_log_records`), rejected log records MUST count as failed and only +// non-rejected log records count as success. +// If no rejection reason is available, `rejected` SHOULD be used as value for +// `error.type`. +// If the exporter retries failed export attempts, the export operation is +// considered finished only after the final attempt has concluded. +// Each log record MUST be counted exactly once per export operation: +// intermediate failed attempts that are followed by a retry MUST NOT increment +// the counter, +// and `error.type` reflects the cause of the final attempt. +func (m SDKExporterLogExported) AddSet(ctx context.Context, incr int64, set attribute.Set) { + if !m.Int64Counter.Enabled(ctx) { + return + } + if set.Len() == 0 { + m.Int64Counter.Add(ctx, incr) + return + } + + o := metricpool.AddOptions() + defer metricpool.PutAddOptions(o) + + *o = append(*o, metric.WithAttributeSet(set)) + m.Int64Counter.Add(ctx, incr, *o...) +} + +// AttrErrorType returns an optional attribute for the "error.type" semantic +// convention. It represents the describes a class of error the operation ended +// with. +func (SDKExporterLogExported) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue { + return attribute.String("error.type", string(val)) +} + +// AttrComponentName returns an optional attribute for the "otel.component.name" +// semantic convention. It represents a name uniquely identifying the instance of +// the OpenTelemetry component within its containing SDK instance. +func (SDKExporterLogExported) AttrComponentName(val string) attribute.KeyValue { + return attribute.String("otel.component.name", val) +} + +// AttrComponentType returns an optional attribute for the "otel.component.type" +// semantic convention. It represents a name identifying the type of the +// OpenTelemetry component. +func (SDKExporterLogExported) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue { + return attribute.String("otel.component.type", string(val)) +} + +// AttrServerAddress returns an optional attribute for the "server.address" +// semantic convention. It represents the server domain name if available without +// reverse DNS lookup; otherwise, IP address or Unix domain socket name. +func (SDKExporterLogExported) AttrServerAddress(val string) attribute.KeyValue { + return attribute.String("server.address", val) +} + +// AttrServerPort returns an optional attribute for the "server.port" semantic +// convention. It represents the server port number. +func (SDKExporterLogExported) AttrServerPort(val int) attribute.KeyValue { + return attribute.Int("server.port", val) +} + +// SDKExporterLogExportedObservable is an instrument used to record metric values +// conforming to the "otel.sdk.exporter.log.exported" semantic conventions. It +// represents the number of log records for which the export has finished, either +// successful or failed. +type SDKExporterLogExportedObservable struct { + metric.Int64ObservableCounter +} + +var newSDKExporterLogExportedObservableOpts = []metric.Int64ObservableCounterOption{ + metric.WithDescription("The number of log records for which the export has finished, either successful or failed."), + metric.WithUnit("{log_record}"), +} + +// NewSDKExporterLogExportedObservable returns a new +// SDKExporterLogExportedObservable instrument. +func NewSDKExporterLogExportedObservable( + m metric.Meter, + opt ...metric.Int64ObservableCounterOption, +) (SDKExporterLogExportedObservable, error) { + // Check if the meter is nil. + if m == nil { + return SDKExporterLogExportedObservable{noop.Int64ObservableCounter{}}, nil + } + + if len(opt) == 0 { + opt = newSDKExporterLogExportedObservableOpts + } else { + opt = append(opt, newSDKExporterLogExportedObservableOpts...) + } + + i, err := m.Int64ObservableCounter( + "otel.sdk.exporter.log.exported", + opt..., + ) + if err != nil { + return SDKExporterLogExportedObservable{noop.Int64ObservableCounter{}}, err + } + return SDKExporterLogExportedObservable{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m SDKExporterLogExportedObservable) Inst() metric.Int64ObservableCounter { + return m.Int64ObservableCounter +} + +// Name returns the semantic convention name of the instrument. +func (SDKExporterLogExportedObservable) Name() string { + return "otel.sdk.exporter.log.exported" +} + +// Unit returns the semantic convention unit of the instrument +func (SDKExporterLogExportedObservable) Unit() string { + return "{log_record}" +} + +// Description returns the semantic convention description of the instrument +func (SDKExporterLogExportedObservable) Description() string { + return "The number of log records for which the export has finished, either successful or failed." +} + +// AttrErrorType returns an optional attribute for the "error.type" semantic +// convention. It represents the describes a class of error the operation ended +// with. +func (SDKExporterLogExportedObservable) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue { + return attribute.String("error.type", string(val)) +} + +// AttrComponentName returns an optional attribute for the "otel.component.name" +// semantic convention. It represents a name uniquely identifying the instance of +// the OpenTelemetry component within its containing SDK instance. +func (SDKExporterLogExportedObservable) AttrComponentName(val string) attribute.KeyValue { + return attribute.String("otel.component.name", val) +} + +// AttrComponentType returns an optional attribute for the "otel.component.type" +// semantic convention. It represents a name identifying the type of the +// OpenTelemetry component. +func (SDKExporterLogExportedObservable) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue { + return attribute.String("otel.component.type", string(val)) +} + +// AttrServerAddress returns an optional attribute for the "server.address" +// semantic convention. It represents the server domain name if available without +// reverse DNS lookup; otherwise, IP address or Unix domain socket name. +func (SDKExporterLogExportedObservable) AttrServerAddress(val string) attribute.KeyValue { + return attribute.String("server.address", val) +} + +// AttrServerPort returns an optional attribute for the "server.port" semantic +// convention. It represents the server port number. +func (SDKExporterLogExportedObservable) AttrServerPort(val int) attribute.KeyValue { + return attribute.Int("server.port", val) +} + +// SDKExporterLogInflight is an instrument used to record metric values +// conforming to the "otel.sdk.exporter.log.inflight" semantic conventions. It +// represents the number of log records which were passed to the exporter, but +// that have not been exported yet (neither successful, nor failed). +type SDKExporterLogInflight struct { + metric.Int64UpDownCounter +} + +var newSDKExporterLogInflightOpts = []metric.Int64UpDownCounterOption{ + metric.WithDescription("The number of log records which were passed to the exporter, but that have not been exported yet (neither successful, nor failed)."), + metric.WithUnit("{log_record}"), +} + +// NewSDKExporterLogInflight returns a new SDKExporterLogInflight instrument. +func NewSDKExporterLogInflight( + m metric.Meter, + opt ...metric.Int64UpDownCounterOption, +) (SDKExporterLogInflight, error) { + // Check if the meter is nil. + if m == nil { + return SDKExporterLogInflight{noop.Int64UpDownCounter{}}, nil + } + + if len(opt) == 0 { + opt = newSDKExporterLogInflightOpts + } else { + opt = append(opt, newSDKExporterLogInflightOpts...) + } + + i, err := m.Int64UpDownCounter( + "otel.sdk.exporter.log.inflight", + opt..., + ) + if err != nil { + return SDKExporterLogInflight{noop.Int64UpDownCounter{}}, err + } + return SDKExporterLogInflight{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m SDKExporterLogInflight) Inst() metric.Int64UpDownCounter { + return m.Int64UpDownCounter +} + +// Name returns the semantic convention name of the instrument. +func (SDKExporterLogInflight) Name() string { + return "otel.sdk.exporter.log.inflight" +} + +// Unit returns the semantic convention unit of the instrument +func (SDKExporterLogInflight) Unit() string { + return "{log_record}" +} + +// Description returns the semantic convention description of the instrument +func (SDKExporterLogInflight) Description() string { + return "The number of log records which were passed to the exporter, but that have not been exported yet (neither successful, nor failed)." +} + +// Add adds incr to the existing count for attrs. +// +// All additional attrs passed are included in the recorded value. +// +// Log records are counted as inflight from when they are passed to the exporter +// until the export operation has concluded. +// If the exporter retries failed export attempts, log records remain inflight +// across all retry attempts and any backoff between them. +func (m SDKExporterLogInflight) Add( + ctx context.Context, + incr int64, + attrs ...attribute.KeyValue, +) { + if !m.Int64UpDownCounter.Enabled(ctx) { + return + } + if len(attrs) == 0 { + m.Int64UpDownCounter.Add(ctx, incr) + return + } + + o := metricpool.AddOptions() + defer metricpool.PutAddOptions(o) + + *o = append( + *o, + metric.WithAttributes( + attrs..., + ), + ) + + m.Int64UpDownCounter.Add(ctx, incr, *o...) +} + +// AddSet adds incr to the existing count for set. +// +// Log records are counted as inflight from when they are passed to the exporter +// until the export operation has concluded. +// If the exporter retries failed export attempts, log records remain inflight +// across all retry attempts and any backoff between them. +func (m SDKExporterLogInflight) AddSet(ctx context.Context, incr int64, set attribute.Set) { + if !m.Int64UpDownCounter.Enabled(ctx) { + return + } + if set.Len() == 0 { + m.Int64UpDownCounter.Add(ctx, incr) + return + } + + o := metricpool.AddOptions() + defer metricpool.PutAddOptions(o) + + *o = append(*o, metric.WithAttributeSet(set)) + m.Int64UpDownCounter.Add(ctx, incr, *o...) +} + +// AttrComponentName returns an optional attribute for the "otel.component.name" +// semantic convention. It represents a name uniquely identifying the instance of +// the OpenTelemetry component within its containing SDK instance. +func (SDKExporterLogInflight) AttrComponentName(val string) attribute.KeyValue { + return attribute.String("otel.component.name", val) +} + +// AttrComponentType returns an optional attribute for the "otel.component.type" +// semantic convention. It represents a name identifying the type of the +// OpenTelemetry component. +func (SDKExporterLogInflight) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue { + return attribute.String("otel.component.type", string(val)) +} + +// AttrServerAddress returns an optional attribute for the "server.address" +// semantic convention. It represents the server domain name if available without +// reverse DNS lookup; otherwise, IP address or Unix domain socket name. +func (SDKExporterLogInflight) AttrServerAddress(val string) attribute.KeyValue { + return attribute.String("server.address", val) +} + +// AttrServerPort returns an optional attribute for the "server.port" semantic +// convention. It represents the server port number. +func (SDKExporterLogInflight) AttrServerPort(val int) attribute.KeyValue { + return attribute.Int("server.port", val) +} + +// SDKExporterLogInflightObservable is an instrument used to record metric values +// conforming to the "otel.sdk.exporter.log.inflight" semantic conventions. It +// represents the number of log records which were passed to the exporter, but +// that have not been exported yet (neither successful, nor failed). +type SDKExporterLogInflightObservable struct { + metric.Int64ObservableUpDownCounter +} + +var newSDKExporterLogInflightObservableOpts = []metric.Int64ObservableUpDownCounterOption{ + metric.WithDescription("The number of log records which were passed to the exporter, but that have not been exported yet (neither successful, nor failed)."), + metric.WithUnit("{log_record}"), +} + +// NewSDKExporterLogInflightObservable returns a new +// SDKExporterLogInflightObservable instrument. +func NewSDKExporterLogInflightObservable( + m metric.Meter, + opt ...metric.Int64ObservableUpDownCounterOption, +) (SDKExporterLogInflightObservable, error) { + // Check if the meter is nil. + if m == nil { + return SDKExporterLogInflightObservable{noop.Int64ObservableUpDownCounter{}}, nil + } + + if len(opt) == 0 { + opt = newSDKExporterLogInflightObservableOpts + } else { + opt = append(opt, newSDKExporterLogInflightObservableOpts...) + } + + i, err := m.Int64ObservableUpDownCounter( + "otel.sdk.exporter.log.inflight", + opt..., + ) + if err != nil { + return SDKExporterLogInflightObservable{noop.Int64ObservableUpDownCounter{}}, err + } + return SDKExporterLogInflightObservable{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m SDKExporterLogInflightObservable) Inst() metric.Int64ObservableUpDownCounter { + return m.Int64ObservableUpDownCounter +} + +// Name returns the semantic convention name of the instrument. +func (SDKExporterLogInflightObservable) Name() string { + return "otel.sdk.exporter.log.inflight" +} + +// Unit returns the semantic convention unit of the instrument +func (SDKExporterLogInflightObservable) Unit() string { + return "{log_record}" +} + +// Description returns the semantic convention description of the instrument +func (SDKExporterLogInflightObservable) Description() string { + return "The number of log records which were passed to the exporter, but that have not been exported yet (neither successful, nor failed)." +} + +// AttrComponentName returns an optional attribute for the "otel.component.name" +// semantic convention. It represents a name uniquely identifying the instance of +// the OpenTelemetry component within its containing SDK instance. +func (SDKExporterLogInflightObservable) AttrComponentName(val string) attribute.KeyValue { + return attribute.String("otel.component.name", val) +} + +// AttrComponentType returns an optional attribute for the "otel.component.type" +// semantic convention. It represents a name identifying the type of the +// OpenTelemetry component. +func (SDKExporterLogInflightObservable) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue { + return attribute.String("otel.component.type", string(val)) +} + +// AttrServerAddress returns an optional attribute for the "server.address" +// semantic convention. It represents the server domain name if available without +// reverse DNS lookup; otherwise, IP address or Unix domain socket name. +func (SDKExporterLogInflightObservable) AttrServerAddress(val string) attribute.KeyValue { + return attribute.String("server.address", val) +} + +// AttrServerPort returns an optional attribute for the "server.port" semantic +// convention. It represents the server port number. +func (SDKExporterLogInflightObservable) AttrServerPort(val int) attribute.KeyValue { + return attribute.Int("server.port", val) +} + +// SDKExporterMetricDataPointExported is an instrument used to record metric +// values conforming to the "otel.sdk.exporter.metric_data_point.exported" +// semantic conventions. It represents the number of metric data points for which +// the export has finished, either successful or failed. +type SDKExporterMetricDataPointExported struct { + metric.Int64Counter +} + +var newSDKExporterMetricDataPointExportedOpts = []metric.Int64CounterOption{ + metric.WithDescription("The number of metric data points for which the export has finished, either successful or failed."), + metric.WithUnit("{data_point}"), +} + +// NewSDKExporterMetricDataPointExported returns a new +// SDKExporterMetricDataPointExported instrument. +func NewSDKExporterMetricDataPointExported( + m metric.Meter, + opt ...metric.Int64CounterOption, +) (SDKExporterMetricDataPointExported, error) { + // Check if the meter is nil. + if m == nil { + return SDKExporterMetricDataPointExported{noop.Int64Counter{}}, nil + } + + if len(opt) == 0 { + opt = newSDKExporterMetricDataPointExportedOpts + } else { + opt = append(opt, newSDKExporterMetricDataPointExportedOpts...) + } + + i, err := m.Int64Counter( + "otel.sdk.exporter.metric_data_point.exported", + opt..., + ) + if err != nil { + return SDKExporterMetricDataPointExported{noop.Int64Counter{}}, err + } + return SDKExporterMetricDataPointExported{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m SDKExporterMetricDataPointExported) Inst() metric.Int64Counter { + return m.Int64Counter +} + +// Name returns the semantic convention name of the instrument. +func (SDKExporterMetricDataPointExported) Name() string { + return "otel.sdk.exporter.metric_data_point.exported" +} + +// Unit returns the semantic convention unit of the instrument +func (SDKExporterMetricDataPointExported) Unit() string { + return "{data_point}" +} + +// Description returns the semantic convention description of the instrument +func (SDKExporterMetricDataPointExported) Description() string { + return "The number of metric data points for which the export has finished, either successful or failed." +} + +// Add adds incr to the existing count for attrs. +// +// All additional attrs passed are included in the recorded value. +// +// For successful exports, `error.type` MUST NOT be set. For failed exports, +// `error.type` MUST contain the failure cause. +// For exporters with partial success semantics (e.g. OTLP with +// `rejected_data_points`), rejected data points MUST count as failed and only +// non-rejected data points count as success. +// If no rejection reason is available, `rejected` SHOULD be used as value for +// `error.type`. +// If the exporter retries failed export attempts, the export operation is +// considered finished only after the final attempt has concluded. +// Each metric data point MUST be counted exactly once per export operation: +// intermediate failed attempts that are followed by a retry MUST NOT increment +// the counter, +// and `error.type` reflects the cause of the final attempt. +func (m SDKExporterMetricDataPointExported) Add( + ctx context.Context, + incr int64, + attrs ...attribute.KeyValue, +) { + if !m.Int64Counter.Enabled(ctx) { + return + } + if len(attrs) == 0 { + m.Int64Counter.Add(ctx, incr) + return + } + + o := metricpool.AddOptions() + defer metricpool.PutAddOptions(o) + + *o = append( + *o, + metric.WithAttributes( + attrs..., + ), + ) + + m.Int64Counter.Add(ctx, incr, *o...) +} + +// AddSet adds incr to the existing count for set. +// +// For successful exports, `error.type` MUST NOT be set. For failed exports, +// `error.type` MUST contain the failure cause. +// For exporters with partial success semantics (e.g. OTLP with +// `rejected_data_points`), rejected data points MUST count as failed and only +// non-rejected data points count as success. +// If no rejection reason is available, `rejected` SHOULD be used as value for +// `error.type`. +// If the exporter retries failed export attempts, the export operation is +// considered finished only after the final attempt has concluded. +// Each metric data point MUST be counted exactly once per export operation: +// intermediate failed attempts that are followed by a retry MUST NOT increment +// the counter, +// and `error.type` reflects the cause of the final attempt. +func (m SDKExporterMetricDataPointExported) AddSet(ctx context.Context, incr int64, set attribute.Set) { + if !m.Int64Counter.Enabled(ctx) { + return + } + if set.Len() == 0 { + m.Int64Counter.Add(ctx, incr) + return + } + + o := metricpool.AddOptions() + defer metricpool.PutAddOptions(o) + + *o = append(*o, metric.WithAttributeSet(set)) + m.Int64Counter.Add(ctx, incr, *o...) +} + +// AttrErrorType returns an optional attribute for the "error.type" semantic +// convention. It represents the describes a class of error the operation ended +// with. +func (SDKExporterMetricDataPointExported) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue { + return attribute.String("error.type", string(val)) +} + +// AttrComponentName returns an optional attribute for the "otel.component.name" +// semantic convention. It represents a name uniquely identifying the instance of +// the OpenTelemetry component within its containing SDK instance. +func (SDKExporterMetricDataPointExported) AttrComponentName(val string) attribute.KeyValue { + return attribute.String("otel.component.name", val) +} + +// AttrComponentType returns an optional attribute for the "otel.component.type" +// semantic convention. It represents a name identifying the type of the +// OpenTelemetry component. +func (SDKExporterMetricDataPointExported) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue { + return attribute.String("otel.component.type", string(val)) +} + +// AttrServerAddress returns an optional attribute for the "server.address" +// semantic convention. It represents the server domain name if available without +// reverse DNS lookup; otherwise, IP address or Unix domain socket name. +func (SDKExporterMetricDataPointExported) AttrServerAddress(val string) attribute.KeyValue { + return attribute.String("server.address", val) +} + +// AttrServerPort returns an optional attribute for the "server.port" semantic +// convention. It represents the server port number. +func (SDKExporterMetricDataPointExported) AttrServerPort(val int) attribute.KeyValue { + return attribute.Int("server.port", val) +} + +// SDKExporterMetricDataPointExportedObservable is an instrument used to record +// metric values conforming to the "otel.sdk.exporter.metric_data_point.exported" +// semantic conventions. It represents the number of metric data points for which +// the export has finished, either successful or failed. +type SDKExporterMetricDataPointExportedObservable struct { + metric.Int64ObservableCounter +} + +var newSDKExporterMetricDataPointExportedObservableOpts = []metric.Int64ObservableCounterOption{ + metric.WithDescription("The number of metric data points for which the export has finished, either successful or failed."), + metric.WithUnit("{data_point}"), +} + +// NewSDKExporterMetricDataPointExportedObservable returns a new +// SDKExporterMetricDataPointExportedObservable instrument. +func NewSDKExporterMetricDataPointExportedObservable( + m metric.Meter, + opt ...metric.Int64ObservableCounterOption, +) (SDKExporterMetricDataPointExportedObservable, error) { + // Check if the meter is nil. + if m == nil { + return SDKExporterMetricDataPointExportedObservable{noop.Int64ObservableCounter{}}, nil + } + + if len(opt) == 0 { + opt = newSDKExporterMetricDataPointExportedObservableOpts + } else { + opt = append(opt, newSDKExporterMetricDataPointExportedObservableOpts...) + } + + i, err := m.Int64ObservableCounter( + "otel.sdk.exporter.metric_data_point.exported", + opt..., + ) + if err != nil { + return SDKExporterMetricDataPointExportedObservable{noop.Int64ObservableCounter{}}, err + } + return SDKExporterMetricDataPointExportedObservable{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m SDKExporterMetricDataPointExportedObservable) Inst() metric.Int64ObservableCounter { + return m.Int64ObservableCounter +} + +// Name returns the semantic convention name of the instrument. +func (SDKExporterMetricDataPointExportedObservable) Name() string { + return "otel.sdk.exporter.metric_data_point.exported" +} + +// Unit returns the semantic convention unit of the instrument +func (SDKExporterMetricDataPointExportedObservable) Unit() string { + return "{data_point}" +} + +// Description returns the semantic convention description of the instrument +func (SDKExporterMetricDataPointExportedObservable) Description() string { + return "The number of metric data points for which the export has finished, either successful or failed." +} + +// AttrErrorType returns an optional attribute for the "error.type" semantic +// convention. It represents the describes a class of error the operation ended +// with. +func (SDKExporterMetricDataPointExportedObservable) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue { + return attribute.String("error.type", string(val)) +} + +// AttrComponentName returns an optional attribute for the "otel.component.name" +// semantic convention. It represents a name uniquely identifying the instance of +// the OpenTelemetry component within its containing SDK instance. +func (SDKExporterMetricDataPointExportedObservable) AttrComponentName(val string) attribute.KeyValue { + return attribute.String("otel.component.name", val) +} + +// AttrComponentType returns an optional attribute for the "otel.component.type" +// semantic convention. It represents a name identifying the type of the +// OpenTelemetry component. +func (SDKExporterMetricDataPointExportedObservable) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue { + return attribute.String("otel.component.type", string(val)) +} + +// AttrServerAddress returns an optional attribute for the "server.address" +// semantic convention. It represents the server domain name if available without +// reverse DNS lookup; otherwise, IP address or Unix domain socket name. +func (SDKExporterMetricDataPointExportedObservable) AttrServerAddress(val string) attribute.KeyValue { + return attribute.String("server.address", val) +} + +// AttrServerPort returns an optional attribute for the "server.port" semantic +// convention. It represents the server port number. +func (SDKExporterMetricDataPointExportedObservable) AttrServerPort(val int) attribute.KeyValue { + return attribute.Int("server.port", val) +} + +// SDKExporterMetricDataPointInflight is an instrument used to record metric +// values conforming to the "otel.sdk.exporter.metric_data_point.inflight" +// semantic conventions. It represents the number of metric data points which +// were passed to the exporter, but that have not been exported yet (neither +// successful, nor failed). +type SDKExporterMetricDataPointInflight struct { + metric.Int64UpDownCounter +} + +var newSDKExporterMetricDataPointInflightOpts = []metric.Int64UpDownCounterOption{ + metric.WithDescription("The number of metric data points which were passed to the exporter, but that have not been exported yet (neither successful, nor failed)."), + metric.WithUnit("{data_point}"), +} + +// NewSDKExporterMetricDataPointInflight returns a new +// SDKExporterMetricDataPointInflight instrument. +func NewSDKExporterMetricDataPointInflight( + m metric.Meter, + opt ...metric.Int64UpDownCounterOption, +) (SDKExporterMetricDataPointInflight, error) { + // Check if the meter is nil. + if m == nil { + return SDKExporterMetricDataPointInflight{noop.Int64UpDownCounter{}}, nil + } + + if len(opt) == 0 { + opt = newSDKExporterMetricDataPointInflightOpts + } else { + opt = append(opt, newSDKExporterMetricDataPointInflightOpts...) + } + + i, err := m.Int64UpDownCounter( + "otel.sdk.exporter.metric_data_point.inflight", + opt..., + ) + if err != nil { + return SDKExporterMetricDataPointInflight{noop.Int64UpDownCounter{}}, err + } + return SDKExporterMetricDataPointInflight{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m SDKExporterMetricDataPointInflight) Inst() metric.Int64UpDownCounter { + return m.Int64UpDownCounter +} + +// Name returns the semantic convention name of the instrument. +func (SDKExporterMetricDataPointInflight) Name() string { + return "otel.sdk.exporter.metric_data_point.inflight" +} + +// Unit returns the semantic convention unit of the instrument +func (SDKExporterMetricDataPointInflight) Unit() string { + return "{data_point}" +} + +// Description returns the semantic convention description of the instrument +func (SDKExporterMetricDataPointInflight) Description() string { + return "The number of metric data points which were passed to the exporter, but that have not been exported yet (neither successful, nor failed)." +} + +// Add adds incr to the existing count for attrs. +// +// All additional attrs passed are included in the recorded value. +// +// Metric data points are counted as inflight from when they are passed to the +// exporter until the export operation has concluded. +// If the exporter retries failed export attempts, metric data points remain +// inflight across all retry attempts and any backoff between them. +func (m SDKExporterMetricDataPointInflight) Add( + ctx context.Context, + incr int64, + attrs ...attribute.KeyValue, +) { + if !m.Int64UpDownCounter.Enabled(ctx) { + return + } + if len(attrs) == 0 { + m.Int64UpDownCounter.Add(ctx, incr) + return + } + + o := metricpool.AddOptions() + defer metricpool.PutAddOptions(o) + + *o = append( + *o, + metric.WithAttributes( + attrs..., + ), + ) + + m.Int64UpDownCounter.Add(ctx, incr, *o...) +} + +// AddSet adds incr to the existing count for set. +// +// Metric data points are counted as inflight from when they are passed to the +// exporter until the export operation has concluded. +// If the exporter retries failed export attempts, metric data points remain +// inflight across all retry attempts and any backoff between them. +func (m SDKExporterMetricDataPointInflight) AddSet(ctx context.Context, incr int64, set attribute.Set) { + if !m.Int64UpDownCounter.Enabled(ctx) { + return + } + if set.Len() == 0 { + m.Int64UpDownCounter.Add(ctx, incr) + return + } + + o := metricpool.AddOptions() + defer metricpool.PutAddOptions(o) + + *o = append(*o, metric.WithAttributeSet(set)) + m.Int64UpDownCounter.Add(ctx, incr, *o...) +} + +// AttrComponentName returns an optional attribute for the "otel.component.name" +// semantic convention. It represents a name uniquely identifying the instance of +// the OpenTelemetry component within its containing SDK instance. +func (SDKExporterMetricDataPointInflight) AttrComponentName(val string) attribute.KeyValue { + return attribute.String("otel.component.name", val) +} + +// AttrComponentType returns an optional attribute for the "otel.component.type" +// semantic convention. It represents a name identifying the type of the +// OpenTelemetry component. +func (SDKExporterMetricDataPointInflight) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue { + return attribute.String("otel.component.type", string(val)) +} + +// AttrServerAddress returns an optional attribute for the "server.address" +// semantic convention. It represents the server domain name if available without +// reverse DNS lookup; otherwise, IP address or Unix domain socket name. +func (SDKExporterMetricDataPointInflight) AttrServerAddress(val string) attribute.KeyValue { + return attribute.String("server.address", val) +} + +// AttrServerPort returns an optional attribute for the "server.port" semantic +// convention. It represents the server port number. +func (SDKExporterMetricDataPointInflight) AttrServerPort(val int) attribute.KeyValue { + return attribute.Int("server.port", val) +} + +// SDKExporterMetricDataPointInflightObservable is an instrument used to record +// metric values conforming to the "otel.sdk.exporter.metric_data_point.inflight" +// semantic conventions. It represents the number of metric data points which +// were passed to the exporter, but that have not been exported yet (neither +// successful, nor failed). +type SDKExporterMetricDataPointInflightObservable struct { + metric.Int64ObservableUpDownCounter +} + +var newSDKExporterMetricDataPointInflightObservableOpts = []metric.Int64ObservableUpDownCounterOption{ + metric.WithDescription("The number of metric data points which were passed to the exporter, but that have not been exported yet (neither successful, nor failed)."), + metric.WithUnit("{data_point}"), +} + +// NewSDKExporterMetricDataPointInflightObservable returns a new +// SDKExporterMetricDataPointInflightObservable instrument. +func NewSDKExporterMetricDataPointInflightObservable( + m metric.Meter, + opt ...metric.Int64ObservableUpDownCounterOption, +) (SDKExporterMetricDataPointInflightObservable, error) { + // Check if the meter is nil. + if m == nil { + return SDKExporterMetricDataPointInflightObservable{noop.Int64ObservableUpDownCounter{}}, nil + } + + if len(opt) == 0 { + opt = newSDKExporterMetricDataPointInflightObservableOpts + } else { + opt = append(opt, newSDKExporterMetricDataPointInflightObservableOpts...) + } + + i, err := m.Int64ObservableUpDownCounter( + "otel.sdk.exporter.metric_data_point.inflight", + opt..., + ) + if err != nil { + return SDKExporterMetricDataPointInflightObservable{noop.Int64ObservableUpDownCounter{}}, err + } + return SDKExporterMetricDataPointInflightObservable{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m SDKExporterMetricDataPointInflightObservable) Inst() metric.Int64ObservableUpDownCounter { + return m.Int64ObservableUpDownCounter +} + +// Name returns the semantic convention name of the instrument. +func (SDKExporterMetricDataPointInflightObservable) Name() string { + return "otel.sdk.exporter.metric_data_point.inflight" +} + +// Unit returns the semantic convention unit of the instrument +func (SDKExporterMetricDataPointInflightObservable) Unit() string { + return "{data_point}" +} + +// Description returns the semantic convention description of the instrument +func (SDKExporterMetricDataPointInflightObservable) Description() string { + return "The number of metric data points which were passed to the exporter, but that have not been exported yet (neither successful, nor failed)." +} + +// AttrComponentName returns an optional attribute for the "otel.component.name" +// semantic convention. It represents a name uniquely identifying the instance of +// the OpenTelemetry component within its containing SDK instance. +func (SDKExporterMetricDataPointInflightObservable) AttrComponentName(val string) attribute.KeyValue { + return attribute.String("otel.component.name", val) +} + +// AttrComponentType returns an optional attribute for the "otel.component.type" +// semantic convention. It represents a name identifying the type of the +// OpenTelemetry component. +func (SDKExporterMetricDataPointInflightObservable) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue { + return attribute.String("otel.component.type", string(val)) +} + +// AttrServerAddress returns an optional attribute for the "server.address" +// semantic convention. It represents the server domain name if available without +// reverse DNS lookup; otherwise, IP address or Unix domain socket name. +func (SDKExporterMetricDataPointInflightObservable) AttrServerAddress(val string) attribute.KeyValue { + return attribute.String("server.address", val) +} + +// AttrServerPort returns an optional attribute for the "server.port" semantic +// convention. It represents the server port number. +func (SDKExporterMetricDataPointInflightObservable) AttrServerPort(val int) attribute.KeyValue { + return attribute.Int("server.port", val) +} + +// SDKExporterOperationDuration is an instrument used to record metric values +// conforming to the "otel.sdk.exporter.operation.duration" semantic conventions. +// It represents the duration of exporting a batch of telemetry records. +type SDKExporterOperationDuration struct { + metric.Float64Histogram +} + +var newSDKExporterOperationDurationOpts = []metric.Float64HistogramOption{ + metric.WithDescription("The duration of exporting a batch of telemetry records."), + metric.WithUnit("s"), +} + +// NewSDKExporterOperationDuration returns a new SDKExporterOperationDuration +// instrument. +func NewSDKExporterOperationDuration( + m metric.Meter, + opt ...metric.Float64HistogramOption, +) (SDKExporterOperationDuration, error) { + // Check if the meter is nil. + if m == nil { + return SDKExporterOperationDuration{noop.Float64Histogram{}}, nil + } + + if len(opt) == 0 { + opt = newSDKExporterOperationDurationOpts + } else { + opt = append(opt, newSDKExporterOperationDurationOpts...) + } + + i, err := m.Float64Histogram( + "otel.sdk.exporter.operation.duration", + opt..., + ) + if err != nil { + return SDKExporterOperationDuration{noop.Float64Histogram{}}, err + } + return SDKExporterOperationDuration{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m SDKExporterOperationDuration) Inst() metric.Float64Histogram { + return m.Float64Histogram +} + +// Name returns the semantic convention name of the instrument. +func (SDKExporterOperationDuration) Name() string { + return "otel.sdk.exporter.operation.duration" +} + +// Unit returns the semantic convention unit of the instrument +func (SDKExporterOperationDuration) Unit() string { + return "s" +} + +// Description returns the semantic convention description of the instrument +func (SDKExporterOperationDuration) Description() string { + return "The duration of exporting a batch of telemetry records." +} + +// Record records val to the current distribution for attrs. +// +// All additional attrs passed are included in the recorded value. +// +// This metric defines successful operations using the full success definitions +// for [http] +// and [grpc]. Anything else is defined as an unsuccessful operation. For +// successful +// operations, `error.type` MUST NOT be set. For unsuccessful export operations, +// `error.type` MUST contain a relevant failure cause. +// If the exporter retries failed export attempts, exactly one observation MUST +// be recorded per export operation, +// covering the wall-clock duration from the start of the first attempt through +// the conclusion of the final attempt (including any backoff between attempts). +// `error.type` reflects the cause of the final attempt. +// +// [http]: https://github.com/open-telemetry/opentelemetry-proto/blob/v1.5.0/docs/specification.md#full-success-1 +// [grpc]: https://github.com/open-telemetry/opentelemetry-proto/blob/v1.5.0/docs/specification.md#full-success +func (m SDKExporterOperationDuration) Record( + ctx context.Context, + val float64, + attrs ...attribute.KeyValue, +) { + if !m.Float64Histogram.Enabled(ctx) { + return + } + if len(attrs) == 0 { + m.Float64Histogram.Record(ctx, val) + return + } + + o := metricpool.RecordOptions() + defer metricpool.PutRecordOptions(o) + + *o = append( + *o, + metric.WithAttributes( + attrs..., + ), + ) + + m.Float64Histogram.Record(ctx, val, *o...) +} + +// RecordSet records val to the current distribution for set. +// +// This metric defines successful operations using the full success definitions +// for [http] +// and [grpc]. Anything else is defined as an unsuccessful operation. For +// successful +// operations, `error.type` MUST NOT be set. For unsuccessful export operations, +// `error.type` MUST contain a relevant failure cause. +// If the exporter retries failed export attempts, exactly one observation MUST +// be recorded per export operation, +// covering the wall-clock duration from the start of the first attempt through +// the conclusion of the final attempt (including any backoff between attempts). +// `error.type` reflects the cause of the final attempt. +// +// [http]: https://github.com/open-telemetry/opentelemetry-proto/blob/v1.5.0/docs/specification.md#full-success-1 +// [grpc]: https://github.com/open-telemetry/opentelemetry-proto/blob/v1.5.0/docs/specification.md#full-success +func (m SDKExporterOperationDuration) RecordSet(ctx context.Context, val float64, set attribute.Set) { + if !m.Float64Histogram.Enabled(ctx) { + return + } + if set.Len() == 0 { + m.Float64Histogram.Record(ctx, val) + return + } + + o := metricpool.RecordOptions() + defer metricpool.PutRecordOptions(o) + + *o = append(*o, metric.WithAttributeSet(set)) + m.Float64Histogram.Record(ctx, val, *o...) +} + +// AttrErrorType returns an optional attribute for the "error.type" semantic +// convention. It represents the describes a class of error the operation ended +// with. +func (SDKExporterOperationDuration) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue { + return attribute.String("error.type", string(val)) +} + +// AttrHTTPResponseStatusCode returns an optional attribute for the +// "http.response.status_code" semantic convention. It represents the HTTP status +// code of the last HTTP request performed in scope of this export call. +func (SDKExporterOperationDuration) AttrHTTPResponseStatusCode(val int) attribute.KeyValue { + return attribute.Int("http.response.status_code", val) +} + +// AttrComponentName returns an optional attribute for the "otel.component.name" +// semantic convention. It represents a name uniquely identifying the instance of +// the OpenTelemetry component within its containing SDK instance. +func (SDKExporterOperationDuration) AttrComponentName(val string) attribute.KeyValue { + return attribute.String("otel.component.name", val) +} + +// AttrComponentType returns an optional attribute for the "otel.component.type" +// semantic convention. It represents a name identifying the type of the +// OpenTelemetry component. +func (SDKExporterOperationDuration) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue { + return attribute.String("otel.component.type", string(val)) +} + +// AttrRPCResponseStatusCode returns an optional attribute for the +// "rpc.response.status_code" semantic convention. It represents the gRPC status +// code of the last gRPC request performed in scope of this export call. +func (SDKExporterOperationDuration) AttrRPCResponseStatusCode(val string) attribute.KeyValue { + return attribute.String("rpc.response.status_code", val) +} + +// AttrServerAddress returns an optional attribute for the "server.address" +// semantic convention. It represents the server domain name if available without +// reverse DNS lookup; otherwise, IP address or Unix domain socket name. +func (SDKExporterOperationDuration) AttrServerAddress(val string) attribute.KeyValue { + return attribute.String("server.address", val) +} + +// AttrServerPort returns an optional attribute for the "server.port" semantic +// convention. It represents the server port number. +func (SDKExporterOperationDuration) AttrServerPort(val int) attribute.KeyValue { + return attribute.Int("server.port", val) +} + +// SDKExporterSpanExported is an instrument used to record metric values +// conforming to the "otel.sdk.exporter.span.exported" semantic conventions. It +// represents the number of spans for which the export has finished, either +// successful or failed. +type SDKExporterSpanExported struct { + metric.Int64Counter +} + +var newSDKExporterSpanExportedOpts = []metric.Int64CounterOption{ + metric.WithDescription("The number of spans for which the export has finished, either successful or failed."), + metric.WithUnit("{span}"), +} + +// NewSDKExporterSpanExported returns a new SDKExporterSpanExported instrument. +func NewSDKExporterSpanExported( + m metric.Meter, + opt ...metric.Int64CounterOption, +) (SDKExporterSpanExported, error) { + // Check if the meter is nil. + if m == nil { + return SDKExporterSpanExported{noop.Int64Counter{}}, nil + } + + if len(opt) == 0 { + opt = newSDKExporterSpanExportedOpts + } else { + opt = append(opt, newSDKExporterSpanExportedOpts...) + } + + i, err := m.Int64Counter( + "otel.sdk.exporter.span.exported", + opt..., + ) + if err != nil { + return SDKExporterSpanExported{noop.Int64Counter{}}, err + } + return SDKExporterSpanExported{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m SDKExporterSpanExported) Inst() metric.Int64Counter { + return m.Int64Counter +} + +// Name returns the semantic convention name of the instrument. +func (SDKExporterSpanExported) Name() string { + return "otel.sdk.exporter.span.exported" +} + +// Unit returns the semantic convention unit of the instrument +func (SDKExporterSpanExported) Unit() string { + return "{span}" +} + +// Description returns the semantic convention description of the instrument +func (SDKExporterSpanExported) Description() string { + return "The number of spans for which the export has finished, either successful or failed." +} + +// Add adds incr to the existing count for attrs. +// +// All additional attrs passed are included in the recorded value. +// +// For successful exports, `error.type` MUST NOT be set. For failed exports, +// `error.type` MUST contain the failure cause. +// For exporters with partial success semantics (e.g. OTLP with `rejected_spans` +// ), rejected spans MUST count as failed and only non-rejected spans count as +// success. +// If no rejection reason is available, `rejected` SHOULD be used as value for +// `error.type`. +// If the exporter retries failed export attempts, the export operation is +// considered finished only after the final attempt has concluded. +// Each span MUST be counted exactly once per export operation: intermediate +// failed attempts that are followed by a retry MUST NOT increment the counter, +// and `error.type` reflects the cause of the final attempt. +func (m SDKExporterSpanExported) Add( + ctx context.Context, + incr int64, + attrs ...attribute.KeyValue, +) { + if !m.Int64Counter.Enabled(ctx) { + return + } + if len(attrs) == 0 { + m.Int64Counter.Add(ctx, incr) + return + } + + o := metricpool.AddOptions() + defer metricpool.PutAddOptions(o) + + *o = append( + *o, + metric.WithAttributes( + attrs..., + ), + ) + + m.Int64Counter.Add(ctx, incr, *o...) +} + +// AddSet adds incr to the existing count for set. +// +// For successful exports, `error.type` MUST NOT be set. For failed exports, +// `error.type` MUST contain the failure cause. +// For exporters with partial success semantics (e.g. OTLP with `rejected_spans` +// ), rejected spans MUST count as failed and only non-rejected spans count as +// success. +// If no rejection reason is available, `rejected` SHOULD be used as value for +// `error.type`. +// If the exporter retries failed export attempts, the export operation is +// considered finished only after the final attempt has concluded. +// Each span MUST be counted exactly once per export operation: intermediate +// failed attempts that are followed by a retry MUST NOT increment the counter, +// and `error.type` reflects the cause of the final attempt. +func (m SDKExporterSpanExported) AddSet(ctx context.Context, incr int64, set attribute.Set) { + if !m.Int64Counter.Enabled(ctx) { + return + } + if set.Len() == 0 { + m.Int64Counter.Add(ctx, incr) + return + } + + o := metricpool.AddOptions() + defer metricpool.PutAddOptions(o) + + *o = append(*o, metric.WithAttributeSet(set)) + m.Int64Counter.Add(ctx, incr, *o...) +} + +// AttrErrorType returns an optional attribute for the "error.type" semantic +// convention. It represents the describes a class of error the operation ended +// with. +func (SDKExporterSpanExported) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue { + return attribute.String("error.type", string(val)) +} + +// AttrComponentName returns an optional attribute for the "otel.component.name" +// semantic convention. It represents a name uniquely identifying the instance of +// the OpenTelemetry component within its containing SDK instance. +func (SDKExporterSpanExported) AttrComponentName(val string) attribute.KeyValue { + return attribute.String("otel.component.name", val) +} + +// AttrComponentType returns an optional attribute for the "otel.component.type" +// semantic convention. It represents a name identifying the type of the +// OpenTelemetry component. +func (SDKExporterSpanExported) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue { + return attribute.String("otel.component.type", string(val)) +} + +// AttrServerAddress returns an optional attribute for the "server.address" +// semantic convention. It represents the server domain name if available without +// reverse DNS lookup; otherwise, IP address or Unix domain socket name. +func (SDKExporterSpanExported) AttrServerAddress(val string) attribute.KeyValue { + return attribute.String("server.address", val) +} + +// AttrServerPort returns an optional attribute for the "server.port" semantic +// convention. It represents the server port number. +func (SDKExporterSpanExported) AttrServerPort(val int) attribute.KeyValue { + return attribute.Int("server.port", val) +} + +// SDKExporterSpanExportedObservable is an instrument used to record metric +// values conforming to the "otel.sdk.exporter.span.exported" semantic +// conventions. It represents the number of spans for which the export has +// finished, either successful or failed. +type SDKExporterSpanExportedObservable struct { + metric.Int64ObservableCounter +} + +var newSDKExporterSpanExportedObservableOpts = []metric.Int64ObservableCounterOption{ + metric.WithDescription("The number of spans for which the export has finished, either successful or failed."), + metric.WithUnit("{span}"), +} + +// NewSDKExporterSpanExportedObservable returns a new +// SDKExporterSpanExportedObservable instrument. +func NewSDKExporterSpanExportedObservable( + m metric.Meter, + opt ...metric.Int64ObservableCounterOption, +) (SDKExporterSpanExportedObservable, error) { + // Check if the meter is nil. + if m == nil { + return SDKExporterSpanExportedObservable{noop.Int64ObservableCounter{}}, nil + } + + if len(opt) == 0 { + opt = newSDKExporterSpanExportedObservableOpts + } else { + opt = append(opt, newSDKExporterSpanExportedObservableOpts...) + } + + i, err := m.Int64ObservableCounter( + "otel.sdk.exporter.span.exported", + opt..., + ) + if err != nil { + return SDKExporterSpanExportedObservable{noop.Int64ObservableCounter{}}, err + } + return SDKExporterSpanExportedObservable{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m SDKExporterSpanExportedObservable) Inst() metric.Int64ObservableCounter { + return m.Int64ObservableCounter +} + +// Name returns the semantic convention name of the instrument. +func (SDKExporterSpanExportedObservable) Name() string { + return "otel.sdk.exporter.span.exported" +} + +// Unit returns the semantic convention unit of the instrument +func (SDKExporterSpanExportedObservable) Unit() string { + return "{span}" +} + +// Description returns the semantic convention description of the instrument +func (SDKExporterSpanExportedObservable) Description() string { + return "The number of spans for which the export has finished, either successful or failed." +} + +// AttrErrorType returns an optional attribute for the "error.type" semantic +// convention. It represents the describes a class of error the operation ended +// with. +func (SDKExporterSpanExportedObservable) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue { + return attribute.String("error.type", string(val)) +} + +// AttrComponentName returns an optional attribute for the "otel.component.name" +// semantic convention. It represents a name uniquely identifying the instance of +// the OpenTelemetry component within its containing SDK instance. +func (SDKExporterSpanExportedObservable) AttrComponentName(val string) attribute.KeyValue { + return attribute.String("otel.component.name", val) +} + +// AttrComponentType returns an optional attribute for the "otel.component.type" +// semantic convention. It represents a name identifying the type of the +// OpenTelemetry component. +func (SDKExporterSpanExportedObservable) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue { + return attribute.String("otel.component.type", string(val)) +} + +// AttrServerAddress returns an optional attribute for the "server.address" +// semantic convention. It represents the server domain name if available without +// reverse DNS lookup; otherwise, IP address or Unix domain socket name. +func (SDKExporterSpanExportedObservable) AttrServerAddress(val string) attribute.KeyValue { + return attribute.String("server.address", val) +} + +// AttrServerPort returns an optional attribute for the "server.port" semantic +// convention. It represents the server port number. +func (SDKExporterSpanExportedObservable) AttrServerPort(val int) attribute.KeyValue { + return attribute.Int("server.port", val) +} + +// SDKExporterSpanInflight is an instrument used to record metric values +// conforming to the "otel.sdk.exporter.span.inflight" semantic conventions. It +// represents the number of spans which were passed to the exporter, but that +// have not been exported yet (neither successful, nor failed). +type SDKExporterSpanInflight struct { + metric.Int64UpDownCounter +} + +var newSDKExporterSpanInflightOpts = []metric.Int64UpDownCounterOption{ + metric.WithDescription("The number of spans which were passed to the exporter, but that have not been exported yet (neither successful, nor failed)."), + metric.WithUnit("{span}"), +} + +// NewSDKExporterSpanInflight returns a new SDKExporterSpanInflight instrument. +func NewSDKExporterSpanInflight( + m metric.Meter, + opt ...metric.Int64UpDownCounterOption, +) (SDKExporterSpanInflight, error) { + // Check if the meter is nil. + if m == nil { + return SDKExporterSpanInflight{noop.Int64UpDownCounter{}}, nil + } + + if len(opt) == 0 { + opt = newSDKExporterSpanInflightOpts + } else { + opt = append(opt, newSDKExporterSpanInflightOpts...) + } + + i, err := m.Int64UpDownCounter( + "otel.sdk.exporter.span.inflight", + opt..., + ) + if err != nil { + return SDKExporterSpanInflight{noop.Int64UpDownCounter{}}, err + } + return SDKExporterSpanInflight{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m SDKExporterSpanInflight) Inst() metric.Int64UpDownCounter { + return m.Int64UpDownCounter +} + +// Name returns the semantic convention name of the instrument. +func (SDKExporterSpanInflight) Name() string { + return "otel.sdk.exporter.span.inflight" +} + +// Unit returns the semantic convention unit of the instrument +func (SDKExporterSpanInflight) Unit() string { + return "{span}" +} + +// Description returns the semantic convention description of the instrument +func (SDKExporterSpanInflight) Description() string { + return "The number of spans which were passed to the exporter, but that have not been exported yet (neither successful, nor failed)." +} + +// Add adds incr to the existing count for attrs. +// +// All additional attrs passed are included in the recorded value. +// +// Spans are counted as inflight from when they are passed to the exporter until +// the export operation has concluded. +// If the exporter retries failed export attempts, spans remain inflight across +// all retry attempts and any backoff between them. +func (m SDKExporterSpanInflight) Add( + ctx context.Context, + incr int64, + attrs ...attribute.KeyValue, +) { + if !m.Int64UpDownCounter.Enabled(ctx) { + return + } + if len(attrs) == 0 { + m.Int64UpDownCounter.Add(ctx, incr) + return + } + + o := metricpool.AddOptions() + defer metricpool.PutAddOptions(o) + + *o = append( + *o, + metric.WithAttributes( + attrs..., + ), + ) + + m.Int64UpDownCounter.Add(ctx, incr, *o...) +} + +// AddSet adds incr to the existing count for set. +// +// Spans are counted as inflight from when they are passed to the exporter until +// the export operation has concluded. +// If the exporter retries failed export attempts, spans remain inflight across +// all retry attempts and any backoff between them. +func (m SDKExporterSpanInflight) AddSet(ctx context.Context, incr int64, set attribute.Set) { + if !m.Int64UpDownCounter.Enabled(ctx) { + return + } + if set.Len() == 0 { + m.Int64UpDownCounter.Add(ctx, incr) + return + } + + o := metricpool.AddOptions() + defer metricpool.PutAddOptions(o) + + *o = append(*o, metric.WithAttributeSet(set)) + m.Int64UpDownCounter.Add(ctx, incr, *o...) +} + +// AttrComponentName returns an optional attribute for the "otel.component.name" +// semantic convention. It represents a name uniquely identifying the instance of +// the OpenTelemetry component within its containing SDK instance. +func (SDKExporterSpanInflight) AttrComponentName(val string) attribute.KeyValue { + return attribute.String("otel.component.name", val) +} + +// AttrComponentType returns an optional attribute for the "otel.component.type" +// semantic convention. It represents a name identifying the type of the +// OpenTelemetry component. +func (SDKExporterSpanInflight) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue { + return attribute.String("otel.component.type", string(val)) +} + +// AttrServerAddress returns an optional attribute for the "server.address" +// semantic convention. It represents the server domain name if available without +// reverse DNS lookup; otherwise, IP address or Unix domain socket name. +func (SDKExporterSpanInflight) AttrServerAddress(val string) attribute.KeyValue { + return attribute.String("server.address", val) +} + +// AttrServerPort returns an optional attribute for the "server.port" semantic +// convention. It represents the server port number. +func (SDKExporterSpanInflight) AttrServerPort(val int) attribute.KeyValue { + return attribute.Int("server.port", val) +} + +// SDKExporterSpanInflightObservable is an instrument used to record metric +// values conforming to the "otel.sdk.exporter.span.inflight" semantic +// conventions. It represents the number of spans which were passed to the +// exporter, but that have not been exported yet (neither successful, nor +// failed). +type SDKExporterSpanInflightObservable struct { + metric.Int64ObservableUpDownCounter +} + +var newSDKExporterSpanInflightObservableOpts = []metric.Int64ObservableUpDownCounterOption{ + metric.WithDescription("The number of spans which were passed to the exporter, but that have not been exported yet (neither successful, nor failed)."), + metric.WithUnit("{span}"), +} + +// NewSDKExporterSpanInflightObservable returns a new +// SDKExporterSpanInflightObservable instrument. +func NewSDKExporterSpanInflightObservable( + m metric.Meter, + opt ...metric.Int64ObservableUpDownCounterOption, +) (SDKExporterSpanInflightObservable, error) { + // Check if the meter is nil. + if m == nil { + return SDKExporterSpanInflightObservable{noop.Int64ObservableUpDownCounter{}}, nil + } + + if len(opt) == 0 { + opt = newSDKExporterSpanInflightObservableOpts + } else { + opt = append(opt, newSDKExporterSpanInflightObservableOpts...) + } + + i, err := m.Int64ObservableUpDownCounter( + "otel.sdk.exporter.span.inflight", + opt..., + ) + if err != nil { + return SDKExporterSpanInflightObservable{noop.Int64ObservableUpDownCounter{}}, err + } + return SDKExporterSpanInflightObservable{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m SDKExporterSpanInflightObservable) Inst() metric.Int64ObservableUpDownCounter { + return m.Int64ObservableUpDownCounter +} + +// Name returns the semantic convention name of the instrument. +func (SDKExporterSpanInflightObservable) Name() string { + return "otel.sdk.exporter.span.inflight" +} + +// Unit returns the semantic convention unit of the instrument +func (SDKExporterSpanInflightObservable) Unit() string { + return "{span}" +} + +// Description returns the semantic convention description of the instrument +func (SDKExporterSpanInflightObservable) Description() string { + return "The number of spans which were passed to the exporter, but that have not been exported yet (neither successful, nor failed)." +} + +// AttrComponentName returns an optional attribute for the "otel.component.name" +// semantic convention. It represents a name uniquely identifying the instance of +// the OpenTelemetry component within its containing SDK instance. +func (SDKExporterSpanInflightObservable) AttrComponentName(val string) attribute.KeyValue { + return attribute.String("otel.component.name", val) +} + +// AttrComponentType returns an optional attribute for the "otel.component.type" +// semantic convention. It represents a name identifying the type of the +// OpenTelemetry component. +func (SDKExporterSpanInflightObservable) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue { + return attribute.String("otel.component.type", string(val)) +} + +// AttrServerAddress returns an optional attribute for the "server.address" +// semantic convention. It represents the server domain name if available without +// reverse DNS lookup; otherwise, IP address or Unix domain socket name. +func (SDKExporterSpanInflightObservable) AttrServerAddress(val string) attribute.KeyValue { + return attribute.String("server.address", val) +} + +// AttrServerPort returns an optional attribute for the "server.port" semantic +// convention. It represents the server port number. +func (SDKExporterSpanInflightObservable) AttrServerPort(val int) attribute.KeyValue { + return attribute.Int("server.port", val) +} + +// SDKLogCreated is an instrument used to record metric values conforming to the +// "otel.sdk.log.created" semantic conventions. It represents the number of logs +// submitted to enabled SDK Loggers. +type SDKLogCreated struct { + metric.Int64Counter +} + +var newSDKLogCreatedOpts = []metric.Int64CounterOption{ + metric.WithDescription("The number of logs submitted to enabled SDK Loggers."), + metric.WithUnit("{log_record}"), +} + +// NewSDKLogCreated returns a new SDKLogCreated instrument. +func NewSDKLogCreated( + m metric.Meter, + opt ...metric.Int64CounterOption, +) (SDKLogCreated, error) { + // Check if the meter is nil. + if m == nil { + return SDKLogCreated{noop.Int64Counter{}}, nil + } + + if len(opt) == 0 { + opt = newSDKLogCreatedOpts + } else { + opt = append(opt, newSDKLogCreatedOpts...) + } + + i, err := m.Int64Counter( + "otel.sdk.log.created", + opt..., + ) + if err != nil { + return SDKLogCreated{noop.Int64Counter{}}, err + } + return SDKLogCreated{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m SDKLogCreated) Inst() metric.Int64Counter { + return m.Int64Counter +} + +// Name returns the semantic convention name of the instrument. +func (SDKLogCreated) Name() string { + return "otel.sdk.log.created" +} + +// Unit returns the semantic convention unit of the instrument +func (SDKLogCreated) Unit() string { + return "{log_record}" +} + +// Description returns the semantic convention description of the instrument +func (SDKLogCreated) Description() string { + return "The number of logs submitted to enabled SDK Loggers." +} + +// Add adds incr to the existing count for attrs. +func (m SDKLogCreated) Add(ctx context.Context, incr int64, attrs ...attribute.KeyValue) { + if !m.Int64Counter.Enabled(ctx) { + return + } + if len(attrs) == 0 { + m.Int64Counter.Add(ctx, incr) + return + } + + o := metricpool.AddOptions() + defer metricpool.PutAddOptions(o) + + *o = append(*o, metric.WithAttributes(attrs...)) + m.Int64Counter.Add(ctx, incr, *o...) +} + +// AddSet adds incr to the existing count for set. +func (m SDKLogCreated) AddSet(ctx context.Context, incr int64, set attribute.Set) { + if !m.Int64Counter.Enabled(ctx) { + return + } + if set.Len() == 0 { + m.Int64Counter.Add(ctx, incr) + return + } + + o := metricpool.AddOptions() + defer metricpool.PutAddOptions(o) + + *o = append(*o, metric.WithAttributeSet(set)) + m.Int64Counter.Add(ctx, incr, *o...) +} + +// SDKLogCreatedObservable is an instrument used to record metric values +// conforming to the "otel.sdk.log.created" semantic conventions. It represents +// the number of logs submitted to enabled SDK Loggers. +type SDKLogCreatedObservable struct { + metric.Int64ObservableCounter +} + +var newSDKLogCreatedObservableOpts = []metric.Int64ObservableCounterOption{ + metric.WithDescription("The number of logs submitted to enabled SDK Loggers."), + metric.WithUnit("{log_record}"), +} + +// NewSDKLogCreatedObservable returns a new SDKLogCreatedObservable instrument. +func NewSDKLogCreatedObservable( + m metric.Meter, + opt ...metric.Int64ObservableCounterOption, +) (SDKLogCreatedObservable, error) { + // Check if the meter is nil. + if m == nil { + return SDKLogCreatedObservable{noop.Int64ObservableCounter{}}, nil + } + + if len(opt) == 0 { + opt = newSDKLogCreatedObservableOpts + } else { + opt = append(opt, newSDKLogCreatedObservableOpts...) + } + + i, err := m.Int64ObservableCounter( + "otel.sdk.log.created", + opt..., + ) + if err != nil { + return SDKLogCreatedObservable{noop.Int64ObservableCounter{}}, err + } + return SDKLogCreatedObservable{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m SDKLogCreatedObservable) Inst() metric.Int64ObservableCounter { + return m.Int64ObservableCounter +} + +// Name returns the semantic convention name of the instrument. +func (SDKLogCreatedObservable) Name() string { + return "otel.sdk.log.created" +} + +// Unit returns the semantic convention unit of the instrument +func (SDKLogCreatedObservable) Unit() string { + return "{log_record}" +} + +// Description returns the semantic convention description of the instrument +func (SDKLogCreatedObservable) Description() string { + return "The number of logs submitted to enabled SDK Loggers." +} + +// SDKMetricReaderCollectionDuration is an instrument used to record metric +// values conforming to the "otel.sdk.metric_reader.collection.duration" semantic +// conventions. It represents the duration of the collect operation of the metric +// reader. +type SDKMetricReaderCollectionDuration struct { + metric.Float64Histogram +} + +var newSDKMetricReaderCollectionDurationOpts = []metric.Float64HistogramOption{ + metric.WithDescription("The duration of the collect operation of the metric reader."), + metric.WithUnit("s"), +} + +// NewSDKMetricReaderCollectionDuration returns a new +// SDKMetricReaderCollectionDuration instrument. +func NewSDKMetricReaderCollectionDuration( + m metric.Meter, + opt ...metric.Float64HistogramOption, +) (SDKMetricReaderCollectionDuration, error) { + // Check if the meter is nil. + if m == nil { + return SDKMetricReaderCollectionDuration{noop.Float64Histogram{}}, nil + } + + if len(opt) == 0 { + opt = newSDKMetricReaderCollectionDurationOpts + } else { + opt = append(opt, newSDKMetricReaderCollectionDurationOpts...) + } + + i, err := m.Float64Histogram( + "otel.sdk.metric_reader.collection.duration", + opt..., + ) + if err != nil { + return SDKMetricReaderCollectionDuration{noop.Float64Histogram{}}, err + } + return SDKMetricReaderCollectionDuration{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m SDKMetricReaderCollectionDuration) Inst() metric.Float64Histogram { + return m.Float64Histogram +} + +// Name returns the semantic convention name of the instrument. +func (SDKMetricReaderCollectionDuration) Name() string { + return "otel.sdk.metric_reader.collection.duration" +} + +// Unit returns the semantic convention unit of the instrument +func (SDKMetricReaderCollectionDuration) Unit() string { + return "s" +} + +// Description returns the semantic convention description of the instrument +func (SDKMetricReaderCollectionDuration) Description() string { + return "The duration of the collect operation of the metric reader." +} + +// Record records val to the current distribution for attrs. +// +// All additional attrs passed are included in the recorded value. +// +// For successful collections, `error.type` MUST NOT be set. For failed +// collections, `error.type` SHOULD contain the failure cause. +// It can happen that metrics collection is successful for some MetricProducers, +// while others fail. In that case `error.type` SHOULD be set to any of the +// failure causes. +func (m SDKMetricReaderCollectionDuration) Record( + ctx context.Context, + val float64, + attrs ...attribute.KeyValue, +) { + if !m.Float64Histogram.Enabled(ctx) { + return + } + if len(attrs) == 0 { + m.Float64Histogram.Record(ctx, val) + return + } + + o := metricpool.RecordOptions() + defer metricpool.PutRecordOptions(o) + + *o = append( + *o, + metric.WithAttributes( + attrs..., + ), + ) + + m.Float64Histogram.Record(ctx, val, *o...) +} + +// RecordSet records val to the current distribution for set. +// +// For successful collections, `error.type` MUST NOT be set. For failed +// collections, `error.type` SHOULD contain the failure cause. +// It can happen that metrics collection is successful for some MetricProducers, +// while others fail. In that case `error.type` SHOULD be set to any of the +// failure causes. +func (m SDKMetricReaderCollectionDuration) RecordSet(ctx context.Context, val float64, set attribute.Set) { + if !m.Float64Histogram.Enabled(ctx) { + return + } + if set.Len() == 0 { + m.Float64Histogram.Record(ctx, val) + return + } + + o := metricpool.RecordOptions() + defer metricpool.PutRecordOptions(o) + + *o = append(*o, metric.WithAttributeSet(set)) + m.Float64Histogram.Record(ctx, val, *o...) +} + +// AttrErrorType returns an optional attribute for the "error.type" semantic +// convention. It represents the describes a class of error the operation ended +// with. +func (SDKMetricReaderCollectionDuration) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue { + return attribute.String("error.type", string(val)) +} + +// AttrComponentName returns an optional attribute for the "otel.component.name" +// semantic convention. It represents a name uniquely identifying the instance of +// the OpenTelemetry component within its containing SDK instance. +func (SDKMetricReaderCollectionDuration) AttrComponentName(val string) attribute.KeyValue { + return attribute.String("otel.component.name", val) +} + +// AttrComponentType returns an optional attribute for the "otel.component.type" +// semantic convention. It represents a name identifying the type of the +// OpenTelemetry component. +func (SDKMetricReaderCollectionDuration) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue { + return attribute.String("otel.component.type", string(val)) +} + +// SDKProcessorLogProcessed is an instrument used to record metric values +// conforming to the "otel.sdk.processor.log.processed" semantic conventions. It +// represents the number of log records for which the processing has finished, +// either successful or failed. +type SDKProcessorLogProcessed struct { + metric.Int64Counter +} + +var newSDKProcessorLogProcessedOpts = []metric.Int64CounterOption{ + metric.WithDescription("The number of log records for which the processing has finished, either successful or failed."), + metric.WithUnit("{log_record}"), +} + +// NewSDKProcessorLogProcessed returns a new SDKProcessorLogProcessed instrument. +func NewSDKProcessorLogProcessed( + m metric.Meter, + opt ...metric.Int64CounterOption, +) (SDKProcessorLogProcessed, error) { + // Check if the meter is nil. + if m == nil { + return SDKProcessorLogProcessed{noop.Int64Counter{}}, nil + } + + if len(opt) == 0 { + opt = newSDKProcessorLogProcessedOpts + } else { + opt = append(opt, newSDKProcessorLogProcessedOpts...) + } + + i, err := m.Int64Counter( + "otel.sdk.processor.log.processed", + opt..., + ) + if err != nil { + return SDKProcessorLogProcessed{noop.Int64Counter{}}, err + } + return SDKProcessorLogProcessed{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m SDKProcessorLogProcessed) Inst() metric.Int64Counter { + return m.Int64Counter +} + +// Name returns the semantic convention name of the instrument. +func (SDKProcessorLogProcessed) Name() string { + return "otel.sdk.processor.log.processed" +} + +// Unit returns the semantic convention unit of the instrument +func (SDKProcessorLogProcessed) Unit() string { + return "{log_record}" +} + +// Description returns the semantic convention description of the instrument +func (SDKProcessorLogProcessed) Description() string { + return "The number of log records for which the processing has finished, either successful or failed." +} + +// Add adds incr to the existing count for attrs. +// +// All additional attrs passed are included in the recorded value. +// +// For successful processing, `error.type` MUST NOT be set. For failed +// processing, `error.type` MUST contain the failure cause. +// SDK Batching Log Record Processors MUST use `queue_full` as the value of +// `error.type` for log records dropped due to a full queue. +// SDK Log Record Processors MUST use `already_shutdown` as the value of +// `error.type` for log records dropped because the processor has already been +// shut down. +// For the SDK Simple and Batching Log Record Processor a log record is +// considered to be processed already when it has been submitted to the exporter, +// not when the corresponding export call has finished. +func (m SDKProcessorLogProcessed) Add( + ctx context.Context, + incr int64, + attrs ...attribute.KeyValue, +) { + if !m.Int64Counter.Enabled(ctx) { + return + } + if len(attrs) == 0 { + m.Int64Counter.Add(ctx, incr) + return + } + + o := metricpool.AddOptions() + defer metricpool.PutAddOptions(o) + + *o = append( + *o, + metric.WithAttributes( + attrs..., + ), + ) + + m.Int64Counter.Add(ctx, incr, *o...) +} + +// AddSet adds incr to the existing count for set. +// +// For successful processing, `error.type` MUST NOT be set. For failed +// processing, `error.type` MUST contain the failure cause. +// SDK Batching Log Record Processors MUST use `queue_full` as the value of +// `error.type` for log records dropped due to a full queue. +// SDK Log Record Processors MUST use `already_shutdown` as the value of +// `error.type` for log records dropped because the processor has already been +// shut down. +// For the SDK Simple and Batching Log Record Processor a log record is +// considered to be processed already when it has been submitted to the exporter, +// not when the corresponding export call has finished. +func (m SDKProcessorLogProcessed) AddSet(ctx context.Context, incr int64, set attribute.Set) { + if !m.Int64Counter.Enabled(ctx) { + return + } + if set.Len() == 0 { + m.Int64Counter.Add(ctx, incr) + return + } + + o := metricpool.AddOptions() + defer metricpool.PutAddOptions(o) + + *o = append(*o, metric.WithAttributeSet(set)) + m.Int64Counter.Add(ctx, incr, *o...) +} + +// AttrErrorType returns an optional attribute for the "error.type" semantic +// convention. It represents a low-cardinality description of the failure reason. +func (SDKProcessorLogProcessed) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue { + return attribute.String("error.type", string(val)) +} + +// AttrComponentName returns an optional attribute for the "otel.component.name" +// semantic convention. It represents a name uniquely identifying the instance of +// the OpenTelemetry component within its containing SDK instance. +func (SDKProcessorLogProcessed) AttrComponentName(val string) attribute.KeyValue { + return attribute.String("otel.component.name", val) +} + +// AttrComponentType returns an optional attribute for the "otel.component.type" +// semantic convention. It represents a name identifying the type of the +// OpenTelemetry component. +func (SDKProcessorLogProcessed) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue { + return attribute.String("otel.component.type", string(val)) +} + +// SDKProcessorLogProcessedObservable is an instrument used to record metric +// values conforming to the "otel.sdk.processor.log.processed" semantic +// conventions. It represents the number of log records for which the processing +// has finished, either successful or failed. +type SDKProcessorLogProcessedObservable struct { + metric.Int64ObservableCounter +} + +var newSDKProcessorLogProcessedObservableOpts = []metric.Int64ObservableCounterOption{ + metric.WithDescription("The number of log records for which the processing has finished, either successful or failed."), + metric.WithUnit("{log_record}"), +} + +// NewSDKProcessorLogProcessedObservable returns a new +// SDKProcessorLogProcessedObservable instrument. +func NewSDKProcessorLogProcessedObservable( + m metric.Meter, + opt ...metric.Int64ObservableCounterOption, +) (SDKProcessorLogProcessedObservable, error) { + // Check if the meter is nil. + if m == nil { + return SDKProcessorLogProcessedObservable{noop.Int64ObservableCounter{}}, nil + } + + if len(opt) == 0 { + opt = newSDKProcessorLogProcessedObservableOpts + } else { + opt = append(opt, newSDKProcessorLogProcessedObservableOpts...) + } + + i, err := m.Int64ObservableCounter( + "otel.sdk.processor.log.processed", + opt..., + ) + if err != nil { + return SDKProcessorLogProcessedObservable{noop.Int64ObservableCounter{}}, err + } + return SDKProcessorLogProcessedObservable{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m SDKProcessorLogProcessedObservable) Inst() metric.Int64ObservableCounter { + return m.Int64ObservableCounter +} + +// Name returns the semantic convention name of the instrument. +func (SDKProcessorLogProcessedObservable) Name() string { + return "otel.sdk.processor.log.processed" +} + +// Unit returns the semantic convention unit of the instrument +func (SDKProcessorLogProcessedObservable) Unit() string { + return "{log_record}" +} + +// Description returns the semantic convention description of the instrument +func (SDKProcessorLogProcessedObservable) Description() string { + return "The number of log records for which the processing has finished, either successful or failed." +} + +// AttrErrorType returns an optional attribute for the "error.type" semantic +// convention. It represents a low-cardinality description of the failure reason. +func (SDKProcessorLogProcessedObservable) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue { + return attribute.String("error.type", string(val)) +} + +// AttrComponentName returns an optional attribute for the "otel.component.name" +// semantic convention. It represents a name uniquely identifying the instance of +// the OpenTelemetry component within its containing SDK instance. +func (SDKProcessorLogProcessedObservable) AttrComponentName(val string) attribute.KeyValue { + return attribute.String("otel.component.name", val) +} + +// AttrComponentType returns an optional attribute for the "otel.component.type" +// semantic convention. It represents a name identifying the type of the +// OpenTelemetry component. +func (SDKProcessorLogProcessedObservable) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue { + return attribute.String("otel.component.type", string(val)) +} + +// SDKProcessorLogQueueCapacity is an instrument used to record metric values +// conforming to the "otel.sdk.processor.log.queue.capacity" semantic +// conventions. It represents the maximum number of log records the queue of a +// given instance of an SDK Log Record processor can hold. +type SDKProcessorLogQueueCapacity struct { + metric.Int64ObservableUpDownCounter +} + +var newSDKProcessorLogQueueCapacityOpts = []metric.Int64ObservableUpDownCounterOption{ + metric.WithDescription("The maximum number of log records the queue of a given instance of an SDK Log Record processor can hold."), + metric.WithUnit("{log_record}"), +} + +// NewSDKProcessorLogQueueCapacity returns a new SDKProcessorLogQueueCapacity +// instrument. +func NewSDKProcessorLogQueueCapacity( + m metric.Meter, + opt ...metric.Int64ObservableUpDownCounterOption, +) (SDKProcessorLogQueueCapacity, error) { + // Check if the meter is nil. + if m == nil { + return SDKProcessorLogQueueCapacity{noop.Int64ObservableUpDownCounter{}}, nil + } + + if len(opt) == 0 { + opt = newSDKProcessorLogQueueCapacityOpts + } else { + opt = append(opt, newSDKProcessorLogQueueCapacityOpts...) + } + + i, err := m.Int64ObservableUpDownCounter( + "otel.sdk.processor.log.queue.capacity", + opt..., + ) + if err != nil { + return SDKProcessorLogQueueCapacity{noop.Int64ObservableUpDownCounter{}}, err + } + return SDKProcessorLogQueueCapacity{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m SDKProcessorLogQueueCapacity) Inst() metric.Int64ObservableUpDownCounter { + return m.Int64ObservableUpDownCounter +} + +// Name returns the semantic convention name of the instrument. +func (SDKProcessorLogQueueCapacity) Name() string { + return "otel.sdk.processor.log.queue.capacity" +} + +// Unit returns the semantic convention unit of the instrument +func (SDKProcessorLogQueueCapacity) Unit() string { + return "{log_record}" +} + +// Description returns the semantic convention description of the instrument +func (SDKProcessorLogQueueCapacity) Description() string { + return "The maximum number of log records the queue of a given instance of an SDK Log Record processor can hold." +} + +// AttrComponentName returns an optional attribute for the "otel.component.name" +// semantic convention. It represents a name uniquely identifying the instance of +// the OpenTelemetry component within its containing SDK instance. +func (SDKProcessorLogQueueCapacity) AttrComponentName(val string) attribute.KeyValue { + return attribute.String("otel.component.name", val) +} + +// AttrComponentType returns an optional attribute for the "otel.component.type" +// semantic convention. It represents a name identifying the type of the +// OpenTelemetry component. +func (SDKProcessorLogQueueCapacity) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue { + return attribute.String("otel.component.type", string(val)) +} + +// SDKProcessorLogQueueSize is an instrument used to record metric values +// conforming to the "otel.sdk.processor.log.queue.size" semantic conventions. It +// represents the number of log records in the queue of a given instance of an +// SDK log processor. +type SDKProcessorLogQueueSize struct { + metric.Int64ObservableUpDownCounter +} + +var newSDKProcessorLogQueueSizeOpts = []metric.Int64ObservableUpDownCounterOption{ + metric.WithDescription("The number of log records in the queue of a given instance of an SDK log processor."), + metric.WithUnit("{log_record}"), +} + +// NewSDKProcessorLogQueueSize returns a new SDKProcessorLogQueueSize instrument. +func NewSDKProcessorLogQueueSize( + m metric.Meter, + opt ...metric.Int64ObservableUpDownCounterOption, +) (SDKProcessorLogQueueSize, error) { + // Check if the meter is nil. + if m == nil { + return SDKProcessorLogQueueSize{noop.Int64ObservableUpDownCounter{}}, nil + } + + if len(opt) == 0 { + opt = newSDKProcessorLogQueueSizeOpts + } else { + opt = append(opt, newSDKProcessorLogQueueSizeOpts...) + } + + i, err := m.Int64ObservableUpDownCounter( + "otel.sdk.processor.log.queue.size", + opt..., + ) + if err != nil { + return SDKProcessorLogQueueSize{noop.Int64ObservableUpDownCounter{}}, err + } + return SDKProcessorLogQueueSize{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m SDKProcessorLogQueueSize) Inst() metric.Int64ObservableUpDownCounter { + return m.Int64ObservableUpDownCounter +} + +// Name returns the semantic convention name of the instrument. +func (SDKProcessorLogQueueSize) Name() string { + return "otel.sdk.processor.log.queue.size" +} + +// Unit returns the semantic convention unit of the instrument +func (SDKProcessorLogQueueSize) Unit() string { + return "{log_record}" +} + +// Description returns the semantic convention description of the instrument +func (SDKProcessorLogQueueSize) Description() string { + return "The number of log records in the queue of a given instance of an SDK log processor." +} + +// AttrComponentName returns an optional attribute for the "otel.component.name" +// semantic convention. It represents a name uniquely identifying the instance of +// the OpenTelemetry component within its containing SDK instance. +func (SDKProcessorLogQueueSize) AttrComponentName(val string) attribute.KeyValue { + return attribute.String("otel.component.name", val) +} + +// AttrComponentType returns an optional attribute for the "otel.component.type" +// semantic convention. It represents a name identifying the type of the +// OpenTelemetry component. +func (SDKProcessorLogQueueSize) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue { + return attribute.String("otel.component.type", string(val)) +} + +// SDKProcessorSpanProcessed is an instrument used to record metric values +// conforming to the "otel.sdk.processor.span.processed" semantic conventions. It +// represents the number of spans for which the processing has finished, either +// successful or failed. +type SDKProcessorSpanProcessed struct { + metric.Int64Counter +} + +var newSDKProcessorSpanProcessedOpts = []metric.Int64CounterOption{ + metric.WithDescription("The number of spans for which the processing has finished, either successful or failed."), + metric.WithUnit("{span}"), +} + +// NewSDKProcessorSpanProcessed returns a new SDKProcessorSpanProcessed +// instrument. +func NewSDKProcessorSpanProcessed( + m metric.Meter, + opt ...metric.Int64CounterOption, +) (SDKProcessorSpanProcessed, error) { + // Check if the meter is nil. + if m == nil { + return SDKProcessorSpanProcessed{noop.Int64Counter{}}, nil + } + + if len(opt) == 0 { + opt = newSDKProcessorSpanProcessedOpts + } else { + opt = append(opt, newSDKProcessorSpanProcessedOpts...) + } + + i, err := m.Int64Counter( + "otel.sdk.processor.span.processed", + opt..., + ) + if err != nil { + return SDKProcessorSpanProcessed{noop.Int64Counter{}}, err + } + return SDKProcessorSpanProcessed{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m SDKProcessorSpanProcessed) Inst() metric.Int64Counter { + return m.Int64Counter +} + +// Name returns the semantic convention name of the instrument. +func (SDKProcessorSpanProcessed) Name() string { + return "otel.sdk.processor.span.processed" +} + +// Unit returns the semantic convention unit of the instrument +func (SDKProcessorSpanProcessed) Unit() string { + return "{span}" +} + +// Description returns the semantic convention description of the instrument +func (SDKProcessorSpanProcessed) Description() string { + return "The number of spans for which the processing has finished, either successful or failed." +} + +// Add adds incr to the existing count for attrs. +// +// All additional attrs passed are included in the recorded value. +// +// For successful processing, `error.type` MUST NOT be set. For failed +// processing, `error.type` MUST contain the failure cause. +// SDK Batching Span Processors MUST use `queue_full` as the value of +// `error.type` for spans dropped due to a full queue. +// SDK Span Processors MUST use `already_shutdown` as the value of `error.type` +// for spans dropped because the processor has already been shut down. +// For the SDK Simple and Batching Span Processor a span is considered to be +// processed already when it has been submitted to the exporter, not when the +// corresponding export call has finished. +func (m SDKProcessorSpanProcessed) Add( + ctx context.Context, + incr int64, + attrs ...attribute.KeyValue, +) { + if !m.Int64Counter.Enabled(ctx) { + return + } + if len(attrs) == 0 { + m.Int64Counter.Add(ctx, incr) + return + } + + o := metricpool.AddOptions() + defer metricpool.PutAddOptions(o) + + *o = append( + *o, + metric.WithAttributes( + attrs..., + ), + ) + + m.Int64Counter.Add(ctx, incr, *o...) +} + +// AddSet adds incr to the existing count for set. +// +// For successful processing, `error.type` MUST NOT be set. For failed +// processing, `error.type` MUST contain the failure cause. +// SDK Batching Span Processors MUST use `queue_full` as the value of +// `error.type` for spans dropped due to a full queue. +// SDK Span Processors MUST use `already_shutdown` as the value of `error.type` +// for spans dropped because the processor has already been shut down. +// For the SDK Simple and Batching Span Processor a span is considered to be +// processed already when it has been submitted to the exporter, not when the +// corresponding export call has finished. +func (m SDKProcessorSpanProcessed) AddSet(ctx context.Context, incr int64, set attribute.Set) { + if !m.Int64Counter.Enabled(ctx) { + return + } + if set.Len() == 0 { + m.Int64Counter.Add(ctx, incr) + return + } + + o := metricpool.AddOptions() + defer metricpool.PutAddOptions(o) + + *o = append(*o, metric.WithAttributeSet(set)) + m.Int64Counter.Add(ctx, incr, *o...) +} + +// AttrErrorType returns an optional attribute for the "error.type" semantic +// convention. It represents a low-cardinality description of the failure reason. +func (SDKProcessorSpanProcessed) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue { + return attribute.String("error.type", string(val)) +} + +// AttrComponentName returns an optional attribute for the "otel.component.name" +// semantic convention. It represents a name uniquely identifying the instance of +// the OpenTelemetry component within its containing SDK instance. +func (SDKProcessorSpanProcessed) AttrComponentName(val string) attribute.KeyValue { + return attribute.String("otel.component.name", val) +} + +// AttrComponentType returns an optional attribute for the "otel.component.type" +// semantic convention. It represents a name identifying the type of the +// OpenTelemetry component. +func (SDKProcessorSpanProcessed) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue { + return attribute.String("otel.component.type", string(val)) +} + +// SDKProcessorSpanProcessedObservable is an instrument used to record metric +// values conforming to the "otel.sdk.processor.span.processed" semantic +// conventions. It represents the number of spans for which the processing has +// finished, either successful or failed. +type SDKProcessorSpanProcessedObservable struct { + metric.Int64ObservableCounter +} + +var newSDKProcessorSpanProcessedObservableOpts = []metric.Int64ObservableCounterOption{ + metric.WithDescription("The number of spans for which the processing has finished, either successful or failed."), + metric.WithUnit("{span}"), +} + +// NewSDKProcessorSpanProcessedObservable returns a new +// SDKProcessorSpanProcessedObservable instrument. +func NewSDKProcessorSpanProcessedObservable( + m metric.Meter, + opt ...metric.Int64ObservableCounterOption, +) (SDKProcessorSpanProcessedObservable, error) { + // Check if the meter is nil. + if m == nil { + return SDKProcessorSpanProcessedObservable{noop.Int64ObservableCounter{}}, nil + } + + if len(opt) == 0 { + opt = newSDKProcessorSpanProcessedObservableOpts + } else { + opt = append(opt, newSDKProcessorSpanProcessedObservableOpts...) + } + + i, err := m.Int64ObservableCounter( + "otel.sdk.processor.span.processed", + opt..., + ) + if err != nil { + return SDKProcessorSpanProcessedObservable{noop.Int64ObservableCounter{}}, err + } + return SDKProcessorSpanProcessedObservable{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m SDKProcessorSpanProcessedObservable) Inst() metric.Int64ObservableCounter { + return m.Int64ObservableCounter +} + +// Name returns the semantic convention name of the instrument. +func (SDKProcessorSpanProcessedObservable) Name() string { + return "otel.sdk.processor.span.processed" +} + +// Unit returns the semantic convention unit of the instrument +func (SDKProcessorSpanProcessedObservable) Unit() string { + return "{span}" +} + +// Description returns the semantic convention description of the instrument +func (SDKProcessorSpanProcessedObservable) Description() string { + return "The number of spans for which the processing has finished, either successful or failed." +} + +// AttrErrorType returns an optional attribute for the "error.type" semantic +// convention. It represents a low-cardinality description of the failure reason. +func (SDKProcessorSpanProcessedObservable) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue { + return attribute.String("error.type", string(val)) +} + +// AttrComponentName returns an optional attribute for the "otel.component.name" +// semantic convention. It represents a name uniquely identifying the instance of +// the OpenTelemetry component within its containing SDK instance. +func (SDKProcessorSpanProcessedObservable) AttrComponentName(val string) attribute.KeyValue { + return attribute.String("otel.component.name", val) +} + +// AttrComponentType returns an optional attribute for the "otel.component.type" +// semantic convention. It represents a name identifying the type of the +// OpenTelemetry component. +func (SDKProcessorSpanProcessedObservable) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue { + return attribute.String("otel.component.type", string(val)) +} + +// SDKProcessorSpanQueueCapacity is an instrument used to record metric values +// conforming to the "otel.sdk.processor.span.queue.capacity" semantic +// conventions. It represents the maximum number of spans the queue of a given +// instance of an SDK span processor can hold. +type SDKProcessorSpanQueueCapacity struct { + metric.Int64ObservableUpDownCounter +} + +var newSDKProcessorSpanQueueCapacityOpts = []metric.Int64ObservableUpDownCounterOption{ + metric.WithDescription("The maximum number of spans the queue of a given instance of an SDK span processor can hold."), + metric.WithUnit("{span}"), +} + +// NewSDKProcessorSpanQueueCapacity returns a new SDKProcessorSpanQueueCapacity +// instrument. +func NewSDKProcessorSpanQueueCapacity( + m metric.Meter, + opt ...metric.Int64ObservableUpDownCounterOption, +) (SDKProcessorSpanQueueCapacity, error) { + // Check if the meter is nil. + if m == nil { + return SDKProcessorSpanQueueCapacity{noop.Int64ObservableUpDownCounter{}}, nil + } + + if len(opt) == 0 { + opt = newSDKProcessorSpanQueueCapacityOpts + } else { + opt = append(opt, newSDKProcessorSpanQueueCapacityOpts...) + } + + i, err := m.Int64ObservableUpDownCounter( + "otel.sdk.processor.span.queue.capacity", + opt..., + ) + if err != nil { + return SDKProcessorSpanQueueCapacity{noop.Int64ObservableUpDownCounter{}}, err + } + return SDKProcessorSpanQueueCapacity{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m SDKProcessorSpanQueueCapacity) Inst() metric.Int64ObservableUpDownCounter { + return m.Int64ObservableUpDownCounter +} + +// Name returns the semantic convention name of the instrument. +func (SDKProcessorSpanQueueCapacity) Name() string { + return "otel.sdk.processor.span.queue.capacity" +} + +// Unit returns the semantic convention unit of the instrument +func (SDKProcessorSpanQueueCapacity) Unit() string { + return "{span}" +} + +// Description returns the semantic convention description of the instrument +func (SDKProcessorSpanQueueCapacity) Description() string { + return "The maximum number of spans the queue of a given instance of an SDK span processor can hold." +} + +// AttrComponentName returns an optional attribute for the "otel.component.name" +// semantic convention. It represents a name uniquely identifying the instance of +// the OpenTelemetry component within its containing SDK instance. +func (SDKProcessorSpanQueueCapacity) AttrComponentName(val string) attribute.KeyValue { + return attribute.String("otel.component.name", val) +} + +// AttrComponentType returns an optional attribute for the "otel.component.type" +// semantic convention. It represents a name identifying the type of the +// OpenTelemetry component. +func (SDKProcessorSpanQueueCapacity) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue { + return attribute.String("otel.component.type", string(val)) +} + +// SDKProcessorSpanQueueSize is an instrument used to record metric values +// conforming to the "otel.sdk.processor.span.queue.size" semantic conventions. +// It represents the number of spans in the queue of a given instance of an SDK +// span processor. +type SDKProcessorSpanQueueSize struct { + metric.Int64ObservableUpDownCounter +} + +var newSDKProcessorSpanQueueSizeOpts = []metric.Int64ObservableUpDownCounterOption{ + metric.WithDescription("The number of spans in the queue of a given instance of an SDK span processor."), + metric.WithUnit("{span}"), +} + +// NewSDKProcessorSpanQueueSize returns a new SDKProcessorSpanQueueSize +// instrument. +func NewSDKProcessorSpanQueueSize( + m metric.Meter, + opt ...metric.Int64ObservableUpDownCounterOption, +) (SDKProcessorSpanQueueSize, error) { + // Check if the meter is nil. + if m == nil { + return SDKProcessorSpanQueueSize{noop.Int64ObservableUpDownCounter{}}, nil + } + + if len(opt) == 0 { + opt = newSDKProcessorSpanQueueSizeOpts + } else { + opt = append(opt, newSDKProcessorSpanQueueSizeOpts...) + } + + i, err := m.Int64ObservableUpDownCounter( + "otel.sdk.processor.span.queue.size", + opt..., + ) + if err != nil { + return SDKProcessorSpanQueueSize{noop.Int64ObservableUpDownCounter{}}, err + } + return SDKProcessorSpanQueueSize{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m SDKProcessorSpanQueueSize) Inst() metric.Int64ObservableUpDownCounter { + return m.Int64ObservableUpDownCounter +} + +// Name returns the semantic convention name of the instrument. +func (SDKProcessorSpanQueueSize) Name() string { + return "otel.sdk.processor.span.queue.size" +} + +// Unit returns the semantic convention unit of the instrument +func (SDKProcessorSpanQueueSize) Unit() string { + return "{span}" +} + +// Description returns the semantic convention description of the instrument +func (SDKProcessorSpanQueueSize) Description() string { + return "The number of spans in the queue of a given instance of an SDK span processor." +} + +// AttrComponentName returns an optional attribute for the "otel.component.name" +// semantic convention. It represents a name uniquely identifying the instance of +// the OpenTelemetry component within its containing SDK instance. +func (SDKProcessorSpanQueueSize) AttrComponentName(val string) attribute.KeyValue { + return attribute.String("otel.component.name", val) +} + +// AttrComponentType returns an optional attribute for the "otel.component.type" +// semantic convention. It represents a name identifying the type of the +// OpenTelemetry component. +func (SDKProcessorSpanQueueSize) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue { + return attribute.String("otel.component.type", string(val)) +} + +// SDKSpanLive is an instrument used to record metric values conforming to the +// "otel.sdk.span.live" semantic conventions. It represents the number of created +// spans with `recording=true` for which the end operation has not been called +// yet. +type SDKSpanLive struct { + metric.Int64UpDownCounter +} + +var newSDKSpanLiveOpts = []metric.Int64UpDownCounterOption{ + metric.WithDescription("The number of created spans with `recording=true` for which the end operation has not been called yet."), + metric.WithUnit("{span}"), +} + +// NewSDKSpanLive returns a new SDKSpanLive instrument. +func NewSDKSpanLive( + m metric.Meter, + opt ...metric.Int64UpDownCounterOption, +) (SDKSpanLive, error) { + // Check if the meter is nil. + if m == nil { + return SDKSpanLive{noop.Int64UpDownCounter{}}, nil + } + + if len(opt) == 0 { + opt = newSDKSpanLiveOpts + } else { + opt = append(opt, newSDKSpanLiveOpts...) + } + + i, err := m.Int64UpDownCounter( + "otel.sdk.span.live", + opt..., + ) + if err != nil { + return SDKSpanLive{noop.Int64UpDownCounter{}}, err + } + return SDKSpanLive{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m SDKSpanLive) Inst() metric.Int64UpDownCounter { + return m.Int64UpDownCounter +} + +// Name returns the semantic convention name of the instrument. +func (SDKSpanLive) Name() string { + return "otel.sdk.span.live" +} + +// Unit returns the semantic convention unit of the instrument +func (SDKSpanLive) Unit() string { + return "{span}" +} + +// Description returns the semantic convention description of the instrument +func (SDKSpanLive) Description() string { + return "The number of created spans with `recording=true` for which the end operation has not been called yet." +} + +// Add adds incr to the existing count for attrs. +// +// All additional attrs passed are included in the recorded value. +// +// Non-recording spans are not counted, hence `otel.span.sampling_result` can +// only take values `RECORD_ONLY` and `RECORD_AND_SAMPLE`, not `DROP`. +func (m SDKSpanLive) Add( + ctx context.Context, + incr int64, + attrs ...attribute.KeyValue, +) { + if !m.Int64UpDownCounter.Enabled(ctx) { + return + } + if len(attrs) == 0 { + m.Int64UpDownCounter.Add(ctx, incr) + return + } + + o := metricpool.AddOptions() + defer metricpool.PutAddOptions(o) + + *o = append( + *o, + metric.WithAttributes( + attrs..., + ), + ) + + m.Int64UpDownCounter.Add(ctx, incr, *o...) +} + +// AddSet adds incr to the existing count for set. +// +// Non-recording spans are not counted, hence `otel.span.sampling_result` can +// only take values `RECORD_ONLY` and `RECORD_AND_SAMPLE`, not `DROP`. +func (m SDKSpanLive) AddSet(ctx context.Context, incr int64, set attribute.Set) { + if !m.Int64UpDownCounter.Enabled(ctx) { + return + } + if set.Len() == 0 { + m.Int64UpDownCounter.Add(ctx, incr) + return + } + + o := metricpool.AddOptions() + defer metricpool.PutAddOptions(o) + + *o = append(*o, metric.WithAttributeSet(set)) + m.Int64UpDownCounter.Add(ctx, incr, *o...) +} + +// AttrSpanSamplingResult returns an optional attribute for the +// "otel.span.sampling_result" semantic convention. It represents the result +// value of the sampler for this span. +func (SDKSpanLive) AttrSpanSamplingResult(val SpanSamplingResultAttr) attribute.KeyValue { + return attribute.String("otel.span.sampling_result", string(val)) +} + +// SDKSpanLiveObservable is an instrument used to record metric values conforming +// to the "otel.sdk.span.live" semantic conventions. It represents the number of +// created spans with `recording=true` for which the end operation has not been +// called yet. +type SDKSpanLiveObservable struct { + metric.Int64ObservableUpDownCounter +} + +var newSDKSpanLiveObservableOpts = []metric.Int64ObservableUpDownCounterOption{ + metric.WithDescription("The number of created spans with `recording=true` for which the end operation has not been called yet."), + metric.WithUnit("{span}"), +} + +// NewSDKSpanLiveObservable returns a new SDKSpanLiveObservable instrument. +func NewSDKSpanLiveObservable( + m metric.Meter, + opt ...metric.Int64ObservableUpDownCounterOption, +) (SDKSpanLiveObservable, error) { + // Check if the meter is nil. + if m == nil { + return SDKSpanLiveObservable{noop.Int64ObservableUpDownCounter{}}, nil + } + + if len(opt) == 0 { + opt = newSDKSpanLiveObservableOpts + } else { + opt = append(opt, newSDKSpanLiveObservableOpts...) + } + + i, err := m.Int64ObservableUpDownCounter( + "otel.sdk.span.live", + opt..., + ) + if err != nil { + return SDKSpanLiveObservable{noop.Int64ObservableUpDownCounter{}}, err + } + return SDKSpanLiveObservable{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m SDKSpanLiveObservable) Inst() metric.Int64ObservableUpDownCounter { + return m.Int64ObservableUpDownCounter +} + +// Name returns the semantic convention name of the instrument. +func (SDKSpanLiveObservable) Name() string { + return "otel.sdk.span.live" +} + +// Unit returns the semantic convention unit of the instrument +func (SDKSpanLiveObservable) Unit() string { + return "{span}" +} + +// Description returns the semantic convention description of the instrument +func (SDKSpanLiveObservable) Description() string { + return "The number of created spans with `recording=true` for which the end operation has not been called yet." +} + +// AttrSpanSamplingResult returns an optional attribute for the +// "otel.span.sampling_result" semantic convention. It represents the result +// value of the sampler for this span. +func (SDKSpanLiveObservable) AttrSpanSamplingResult(val SpanSamplingResultAttr) attribute.KeyValue { + return attribute.String("otel.span.sampling_result", string(val)) +} + +// SDKSpanStarted is an instrument used to record metric values conforming to the +// "otel.sdk.span.started" semantic conventions. It represents the number of +// created spans. +type SDKSpanStarted struct { + metric.Int64Counter +} + +var newSDKSpanStartedOpts = []metric.Int64CounterOption{ + metric.WithDescription("The number of created spans."), + metric.WithUnit("{span}"), +} + +// NewSDKSpanStarted returns a new SDKSpanStarted instrument. +func NewSDKSpanStarted( + m metric.Meter, + opt ...metric.Int64CounterOption, +) (SDKSpanStarted, error) { + // Check if the meter is nil. + if m == nil { + return SDKSpanStarted{noop.Int64Counter{}}, nil + } + + if len(opt) == 0 { + opt = newSDKSpanStartedOpts + } else { + opt = append(opt, newSDKSpanStartedOpts...) + } + + i, err := m.Int64Counter( + "otel.sdk.span.started", + opt..., + ) + if err != nil { + return SDKSpanStarted{noop.Int64Counter{}}, err + } + return SDKSpanStarted{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m SDKSpanStarted) Inst() metric.Int64Counter { + return m.Int64Counter +} + +// Name returns the semantic convention name of the instrument. +func (SDKSpanStarted) Name() string { + return "otel.sdk.span.started" +} + +// Unit returns the semantic convention unit of the instrument +func (SDKSpanStarted) Unit() string { + return "{span}" +} + +// Description returns the semantic convention description of the instrument +func (SDKSpanStarted) Description() string { + return "The number of created spans." +} + +// Add adds incr to the existing count for attrs. +// +// All additional attrs passed are included in the recorded value. +// +// Implementations MUST record this metric for all spans, even for non-recording +// ones. +func (m SDKSpanStarted) Add( + ctx context.Context, + incr int64, + attrs ...attribute.KeyValue, +) { + if !m.Int64Counter.Enabled(ctx) { + return + } + if len(attrs) == 0 { + m.Int64Counter.Add(ctx, incr) + return + } + + o := metricpool.AddOptions() + defer metricpool.PutAddOptions(o) + + *o = append( + *o, + metric.WithAttributes( + attrs..., + ), + ) + + m.Int64Counter.Add(ctx, incr, *o...) +} + +// AddSet adds incr to the existing count for set. +// +// Implementations MUST record this metric for all spans, even for non-recording +// ones. +func (m SDKSpanStarted) AddSet(ctx context.Context, incr int64, set attribute.Set) { + if !m.Int64Counter.Enabled(ctx) { + return + } + if set.Len() == 0 { + m.Int64Counter.Add(ctx, incr) + return + } + + o := metricpool.AddOptions() + defer metricpool.PutAddOptions(o) + + *o = append(*o, metric.WithAttributeSet(set)) + m.Int64Counter.Add(ctx, incr, *o...) +} + +// AttrSpanParentOrigin returns an optional attribute for the +// "otel.span.parent.origin" semantic convention. It represents the determines +// whether the span has a parent span, and if so, [whether it is a remote parent] +// . +// +// [whether it is a remote parent]: https://opentelemetry.io/docs/specs/otel/trace/api/#isremote +func (SDKSpanStarted) AttrSpanParentOrigin(val SpanParentOriginAttr) attribute.KeyValue { + return attribute.String("otel.span.parent.origin", string(val)) +} + +// AttrSpanSamplingResult returns an optional attribute for the +// "otel.span.sampling_result" semantic convention. It represents the result +// value of the sampler for this span. +func (SDKSpanStarted) AttrSpanSamplingResult(val SpanSamplingResultAttr) attribute.KeyValue { + return attribute.String("otel.span.sampling_result", string(val)) +} + +// SDKSpanStartedObservable is an instrument used to record metric values +// conforming to the "otel.sdk.span.started" semantic conventions. It represents +// the number of created spans. +type SDKSpanStartedObservable struct { + metric.Int64ObservableCounter +} + +var newSDKSpanStartedObservableOpts = []metric.Int64ObservableCounterOption{ + metric.WithDescription("The number of created spans."), + metric.WithUnit("{span}"), +} + +// NewSDKSpanStartedObservable returns a new SDKSpanStartedObservable instrument. +func NewSDKSpanStartedObservable( + m metric.Meter, + opt ...metric.Int64ObservableCounterOption, +) (SDKSpanStartedObservable, error) { + // Check if the meter is nil. + if m == nil { + return SDKSpanStartedObservable{noop.Int64ObservableCounter{}}, nil + } + + if len(opt) == 0 { + opt = newSDKSpanStartedObservableOpts + } else { + opt = append(opt, newSDKSpanStartedObservableOpts...) + } + + i, err := m.Int64ObservableCounter( + "otel.sdk.span.started", + opt..., + ) + if err != nil { + return SDKSpanStartedObservable{noop.Int64ObservableCounter{}}, err + } + return SDKSpanStartedObservable{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m SDKSpanStartedObservable) Inst() metric.Int64ObservableCounter { + return m.Int64ObservableCounter +} + +// Name returns the semantic convention name of the instrument. +func (SDKSpanStartedObservable) Name() string { + return "otel.sdk.span.started" +} + +// Unit returns the semantic convention unit of the instrument +func (SDKSpanStartedObservable) Unit() string { + return "{span}" +} + +// Description returns the semantic convention description of the instrument +func (SDKSpanStartedObservable) Description() string { + return "The number of created spans." +} + +// AttrSpanParentOrigin returns an optional attribute for the +// "otel.span.parent.origin" semantic convention. It represents the determines +// whether the span has a parent span, and if so, [whether it is a remote parent] +// . +// +// [whether it is a remote parent]: https://opentelemetry.io/docs/specs/otel/trace/api/#isremote +func (SDKSpanStartedObservable) AttrSpanParentOrigin(val SpanParentOriginAttr) attribute.KeyValue { + return attribute.String("otel.span.parent.origin", string(val)) +} + +// AttrSpanSamplingResult returns an optional attribute for the +// "otel.span.sampling_result" semantic convention. It represents the result +// value of the sampler for this span. +func (SDKSpanStartedObservable) AttrSpanSamplingResult(val SpanSamplingResultAttr) attribute.KeyValue { + return attribute.String("otel.span.sampling_result", string(val)) +} diff --git a/vendor/go.opentelemetry.io/otel/semconv/v1.40.0/rpcconv/metric.go b/vendor/go.opentelemetry.io/otel/semconv/v1.43.0/rpcconv/metric.go similarity index 93% rename from vendor/go.opentelemetry.io/otel/semconv/v1.40.0/rpcconv/metric.go rename to vendor/go.opentelemetry.io/otel/semconv/v1.43.0/rpcconv/metric.go index 0ab550d474..c766d4b9e8 100644 --- a/vendor/go.opentelemetry.io/otel/semconv/v1.40.0/rpcconv/metric.go +++ b/vendor/go.opentelemetry.io/otel/semconv/v1.43.0/rpcconv/metric.go @@ -9,16 +9,11 @@ package rpcconv import ( "context" - "sync" "go.opentelemetry.io/otel/attribute" "go.opentelemetry.io/otel/metric" "go.opentelemetry.io/otel/metric/noop" -) - -var ( - addOptPool = &sync.Pool{New: func() any { return &[]metric.AddOption{} }} - recOptPool = &sync.Pool{New: func() any { return &[]metric.RecordOption{} }} + "go.opentelemetry.io/otel/semconv/internal/metricpool" ) // ErrorTypeAttr is an attribute conforming to the error.type semantic @@ -26,9 +21,11 @@ var ( // with. type ErrorTypeAttr string -// ErrorTypeOther is a fallback error value to be used when the instrumentation -// doesn't define a custom value. -var ErrorTypeOther ErrorTypeAttr = "_OTHER" +var ( + // ErrorTypeOther is a fallback error value to be used when the instrumentation + // doesn't define a custom value. + ErrorTypeOther ErrorTypeAttr = "_OTHER" +) // SystemNameAttr is an attribute conforming to the rpc.system.name semantic // conventions. It represents the Remote Procedure Call (RPC) system. @@ -63,6 +60,7 @@ type ClientCallDuration struct { var newClientCallDurationOpts = []metric.Float64HistogramOption{ metric.WithDescription("Measures the duration of an outgoing Remote Procedure Call (RPC)."), metric.WithUnit("s"), + metric.WithExplicitBucketBoundaries([]float64{0.005, 0.01, 0.025, 0.05, 0.075, 0.1, 0.25, 0.5, 0.75, 1, 2.5, 5, 7.5, 10}...), } // NewClientCallDuration returns a new ClientCallDuration instrument. @@ -135,11 +133,8 @@ func (m ClientCallDuration) Record( return } - o := recOptPool.Get().(*[]metric.RecordOption) - defer func() { - *o = (*o)[:0] - recOptPool.Put(o) - }() + o := metricpool.RecordOptions() + defer metricpool.PutRecordOptions(o) *o = append( *o, @@ -167,11 +162,8 @@ func (m ClientCallDuration) RecordSet(ctx context.Context, val float64, set attr return } - o := recOptPool.Get().(*[]metric.RecordOption) - defer func() { - *o = (*o)[:0] - recOptPool.Put(o) - }() + o := metricpool.RecordOptions() + defer metricpool.PutRecordOptions(o) *o = append(*o, metric.WithAttributeSet(set)) m.Float64Histogram.Record(ctx, val, *o...) @@ -221,6 +213,7 @@ type ServerCallDuration struct { var newServerCallDurationOpts = []metric.Float64HistogramOption{ metric.WithDescription("Measures the duration of an incoming Remote Procedure Call (RPC)."), metric.WithUnit("s"), + metric.WithExplicitBucketBoundaries([]float64{0.005, 0.01, 0.025, 0.05, 0.075, 0.1, 0.25, 0.5, 0.75, 1, 2.5, 5, 7.5, 10}...), } // NewServerCallDuration returns a new ServerCallDuration instrument. @@ -293,11 +286,8 @@ func (m ServerCallDuration) Record( return } - o := recOptPool.Get().(*[]metric.RecordOption) - defer func() { - *o = (*o)[:0] - recOptPool.Put(o) - }() + o := metricpool.RecordOptions() + defer metricpool.PutRecordOptions(o) *o = append( *o, @@ -325,11 +315,8 @@ func (m ServerCallDuration) RecordSet(ctx context.Context, val float64, set attr return } - o := recOptPool.Get().(*[]metric.RecordOption) - defer func() { - *o = (*o)[:0] - recOptPool.Put(o) - }() + o := metricpool.RecordOptions() + defer metricpool.PutRecordOptions(o) *o = append(*o, metric.WithAttributeSet(set)) m.Float64Histogram.Record(ctx, val, *o...) diff --git a/vendor/go.yaml.in/yaml/v3/parserc.go b/vendor/go.yaml.in/yaml/v3/parserc.go index 25fe823637..f35829db4d 100644 --- a/vendor/go.yaml.in/yaml/v3/parserc.go +++ b/vendor/go.yaml.in/yaml/v3/parserc.go @@ -226,9 +226,9 @@ func yaml_parser_state_machine(parser *yaml_parser_t, event *yaml_event_t) bool } // Parse the production: -// stream ::= STREAM-START implicit_document? explicit_document* STREAM-END // -// ************ +// stream ::= STREAM-START implicit_document? explicit_document* STREAM-END +// ************ func yaml_parser_parse_stream_start(parser *yaml_parser_t, event *yaml_event_t) bool { token := peek_token(parser) if token == nil { @@ -249,13 +249,11 @@ func yaml_parser_parse_stream_start(parser *yaml_parser_t, event *yaml_event_t) } // Parse the productions: -// implicit_document ::= block_node DOCUMENT-END* -// -// * // -// explicit_document ::= DIRECTIVE* DOCUMENT-START block_node? DOCUMENT-END* -// -// ************************* +// implicit_document ::= block_node DOCUMENT-END* +// * +// explicit_document ::= DIRECTIVE* DOCUMENT-START block_node? DOCUMENT-END* +// ************************* func yaml_parser_parse_document_start(parser *yaml_parser_t, event *yaml_event_t, implicit bool) bool { token := peek_token(parser) @@ -359,9 +357,9 @@ func yaml_parser_parse_document_start(parser *yaml_parser_t, event *yaml_event_t } // Parse the productions: -// explicit_document ::= DIRECTIVE* DOCUMENT-START block_node? DOCUMENT-END* // -// *********** +// explicit_document ::= DIRECTIVE* DOCUMENT-START block_node? DOCUMENT-END* +// *********** func yaml_parser_parse_document_content(parser *yaml_parser_t, event *yaml_event_t) bool { token := peek_token(parser) if token == nil { @@ -382,11 +380,10 @@ func yaml_parser_parse_document_content(parser *yaml_parser_t, event *yaml_event } // Parse the productions: -// implicit_document ::= block_node DOCUMENT-END* -// -// ************* // -// explicit_document ::= DIRECTIVE* DOCUMENT-START block_node? DOCUMENT-END* +// implicit_document ::= block_node DOCUMENT-END* +// ************* +// explicit_document ::= DIRECTIVE* DOCUMENT-START block_node? DOCUMENT-END* func yaml_parser_parse_document_end(parser *yaml_parser_t, event *yaml_event_t) bool { token := peek_token(parser) if token == nil { @@ -432,42 +429,32 @@ func yaml_parser_set_event_comments(parser *yaml_parser_t, event *yaml_event_t) } // Parse the productions: -// block_node_or_indentless_sequence ::= -// -// ALIAS -// ***** -// | properties (block_content | indentless_block_sequence)? -// ********** * -// | block_content | indentless_block_sequence -// * -// -// block_node ::= ALIAS -// -// ***** -// | properties block_content? -// ********** * -// | block_content -// * -// -// flow_node ::= ALIAS -// -// ***** -// | properties flow_content? -// ********** * -// | flow_content -// * -// -// properties ::= TAG ANCHOR? | ANCHOR TAG? -// -// ************************* -// -// block_content ::= block_collection | flow_collection | SCALAR -// -// ****** // -// flow_content ::= flow_collection | SCALAR -// -// ****** +// block_node_or_indentless_sequence ::= +// ALIAS +// ***** +// | properties (block_content | indentless_block_sequence)? +// ********** * +// | block_content | indentless_block_sequence +// * +// block_node ::= ALIAS +// ***** +// | properties block_content? +// ********** * +// | block_content +// * +// flow_node ::= ALIAS +// ***** +// | properties flow_content? +// ********** * +// | flow_content +// * +// properties ::= TAG ANCHOR? | ANCHOR TAG? +// ************************* +// block_content ::= block_collection | flow_collection | SCALAR +// ****** +// flow_content ::= flow_collection | SCALAR +// ****** func yaml_parser_parse_node(parser *yaml_parser_t, event *yaml_event_t, block, indentless_sequence bool) bool { //defer trace("yaml_parser_parse_node", "block:", block, "indentless_sequence:", indentless_sequence)() @@ -697,9 +684,9 @@ func yaml_parser_parse_node(parser *yaml_parser_t, event *yaml_event_t, block, i } // Parse the productions: -// block_sequence ::= BLOCK-SEQUENCE-START (BLOCK-ENTRY block_node?)* BLOCK-END // -// ******************** *********** * ********* +// block_sequence ::= BLOCK-SEQUENCE-START (BLOCK-ENTRY block_node?)* BLOCK-END +// ******************** *********** * ********* func yaml_parser_parse_block_sequence_entry(parser *yaml_parser_t, event *yaml_event_t, first bool) bool { if first { token := peek_token(parser) @@ -755,9 +742,9 @@ func yaml_parser_parse_block_sequence_entry(parser *yaml_parser_t, event *yaml_e } // Parse the productions: -// indentless_sequence ::= (BLOCK-ENTRY block_node?)+ // -// *********** * +// indentless_sequence ::= (BLOCK-ENTRY block_node?)+ +// *********** * func yaml_parser_parse_indentless_sequence_entry(parser *yaml_parser_t, event *yaml_event_t) bool { token := peek_token(parser) if token == nil { @@ -821,15 +808,15 @@ func yaml_parser_split_stem_comment(parser *yaml_parser_t, stem_len int) { } // Parse the productions: -// block_mapping ::= BLOCK-MAPPING_START // -// ******************* -// ((KEY block_node_or_indentless_sequence?)? -// *** * -// (VALUE block_node_or_indentless_sequence?)?)* +// block_mapping ::= BLOCK-MAPPING_START +// ******************* +// ((KEY block_node_or_indentless_sequence?)? +// *** * +// (VALUE block_node_or_indentless_sequence?)?)* // -// BLOCK-END -// ********* +// BLOCK-END +// ********* func yaml_parser_parse_block_mapping_key(parser *yaml_parser_t, event *yaml_event_t, first bool) bool { if first { token := peek_token(parser) @@ -896,13 +883,14 @@ func yaml_parser_parse_block_mapping_key(parser *yaml_parser_t, event *yaml_even } // Parse the productions: -// block_mapping ::= BLOCK-MAPPING_START // -// ((KEY block_node_or_indentless_sequence?)? +// block_mapping ::= BLOCK-MAPPING_START +// +// ((KEY block_node_or_indentless_sequence?)? // -// (VALUE block_node_or_indentless_sequence?)?)* -// ***** * -// BLOCK-END +// (VALUE block_node_or_indentless_sequence?)?)* +// ***** * +// BLOCK-END func yaml_parser_parse_block_mapping_value(parser *yaml_parser_t, event *yaml_event_t) bool { token := peek_token(parser) if token == nil { @@ -929,19 +917,17 @@ func yaml_parser_parse_block_mapping_value(parser *yaml_parser_t, event *yaml_ev } // Parse the productions: -// flow_sequence ::= FLOW-SEQUENCE-START -// -// ******************* -// (flow_sequence_entry FLOW-ENTRY)* -// * ********** -// flow_sequence_entry? -// * -// FLOW-SEQUENCE-END -// ***************** // -// flow_sequence_entry ::= flow_node | KEY flow_node? (VALUE flow_node?)? -// -// * +// flow_sequence ::= FLOW-SEQUENCE-START +// ******************* +// (flow_sequence_entry FLOW-ENTRY)* +// * ********** +// flow_sequence_entry? +// * +// FLOW-SEQUENCE-END +// ***************** +// flow_sequence_entry ::= flow_node | KEY flow_node? (VALUE flow_node?)? +// * func yaml_parser_parse_flow_sequence_entry(parser *yaml_parser_t, event *yaml_event_t, first bool) bool { if first { token := peek_token(parser) @@ -1005,9 +991,9 @@ func yaml_parser_parse_flow_sequence_entry(parser *yaml_parser_t, event *yaml_ev } // Parse the productions: -// flow_sequence_entry ::= flow_node | KEY flow_node? (VALUE flow_node?)? // -// *** * +// flow_sequence_entry ::= flow_node | KEY flow_node? (VALUE flow_node?)? +// *** * func yaml_parser_parse_flow_sequence_entry_mapping_key(parser *yaml_parser_t, event *yaml_event_t) bool { token := peek_token(parser) if token == nil { @@ -1026,9 +1012,9 @@ func yaml_parser_parse_flow_sequence_entry_mapping_key(parser *yaml_parser_t, ev } // Parse the productions: -// flow_sequence_entry ::= flow_node | KEY flow_node? (VALUE flow_node?)? // -// ***** * +// flow_sequence_entry ::= flow_node | KEY flow_node? (VALUE flow_node?)? +// ***** * func yaml_parser_parse_flow_sequence_entry_mapping_value(parser *yaml_parser_t, event *yaml_event_t) bool { token := peek_token(parser) if token == nil { @@ -1050,9 +1036,9 @@ func yaml_parser_parse_flow_sequence_entry_mapping_value(parser *yaml_parser_t, } // Parse the productions: -// flow_sequence_entry ::= flow_node | KEY flow_node? (VALUE flow_node?)? // -// * +// flow_sequence_entry ::= flow_node | KEY flow_node? (VALUE flow_node?)? +// * func yaml_parser_parse_flow_sequence_entry_mapping_end(parser *yaml_parser_t, event *yaml_event_t) bool { token := peek_token(parser) if token == nil { @@ -1068,18 +1054,17 @@ func yaml_parser_parse_flow_sequence_entry_mapping_end(parser *yaml_parser_t, ev } // Parse the productions: -// flow_mapping ::= FLOW-MAPPING-START -// -// ****************** -// (flow_mapping_entry FLOW-ENTRY)* -// * ********** -// flow_mapping_entry? -// ****************** -// FLOW-MAPPING-END -// **************** // -// flow_mapping_entry ::= flow_node | KEY flow_node? (VALUE flow_node?)? -// - *** * +// flow_mapping ::= FLOW-MAPPING-START +// ****************** +// (flow_mapping_entry FLOW-ENTRY)* +// * ********** +// flow_mapping_entry? +// ****************** +// FLOW-MAPPING-END +// **************** +// flow_mapping_entry ::= flow_node | KEY flow_node? (VALUE flow_node?)? +// * *** * func yaml_parser_parse_flow_mapping_key(parser *yaml_parser_t, event *yaml_event_t, first bool) bool { if first { token := peek_token(parser) @@ -1144,8 +1129,9 @@ func yaml_parser_parse_flow_mapping_key(parser *yaml_parser_t, event *yaml_event } // Parse the productions: -// flow_mapping_entry ::= flow_node | KEY flow_node? (VALUE flow_node?)? -// - ***** * +// +// flow_mapping_entry ::= flow_node | KEY flow_node? (VALUE flow_node?)? +// * ***** * func yaml_parser_parse_flow_mapping_value(parser *yaml_parser_t, event *yaml_event_t, empty bool) bool { token := peek_token(parser) if token == nil { diff --git a/vendor/go.yaml.in/yaml/v3/yamlh.go b/vendor/go.yaml.in/yaml/v3/yamlh.go index f59aa40f64..07c442361c 100644 --- a/vendor/go.yaml.in/yaml/v3/yamlh.go +++ b/vendor/go.yaml.in/yaml/v3/yamlh.go @@ -433,21 +433,19 @@ type yaml_document_t struct { // The prototype of a read handler. // -// The read handler is called when the parser needs to read more bytes from the -// source. The handler should write not more than size bytes to the buffer. -// The number of written bytes should be set to the size_read variable. +// The read handler is called when the parser needs to read more bytes from the +// source. The handler should write not more than size bytes to the buffer. +// The number of written bytes should be set to the size_read variable. // -// [in,out] data A pointer to an application data specified by +// [in,out] data A pointer to an application data specified by +// yaml_parser_set_input(). +// [out] buffer The buffer to write the data from the source. +// [in] size The size of the buffer. +// [out] size_read The actual number of bytes read from the source. // -// yaml_parser_set_input(). -// -// [out] buffer The buffer to write the data from the source. -// [in] size The size of the buffer. -// [out] size_read The actual number of bytes read from the source. -// -// On success, the handler should return 1. If the handler failed, -// the returned value should be 0. On EOF, the handler should set the -// size_read to 0 and return 1. +// On success, the handler should return 1. If the handler failed, +// the returned value should be 0. On EOF, the handler should set the +// size_read to 0 and return 1. type yaml_read_handler_t func(parser *yaml_parser_t, buffer []byte) (n int, err error) // This structure holds information about a potential simple key. @@ -655,19 +653,17 @@ type yaml_comment_t struct { // The prototype of a write handler. // -// The write handler is called when the emitter needs to flush the accumulated -// characters to the output. The handler should write @a size bytes of the -// @a buffer to the output. -// -// @param[in,out] data A pointer to an application data specified by -// -// yaml_emitter_set_output(). +// The write handler is called when the emitter needs to flush the accumulated +// characters to the output. The handler should write @a size bytes of the +// @a buffer to the output. // -// @param[in] buffer The buffer with bytes to be written. -// @param[in] size The size of the buffer. +// @param[in,out] data A pointer to an application data specified by +// yaml_emitter_set_output(). +// @param[in] buffer The buffer with bytes to be written. +// @param[in] size The size of the buffer. // -// @returns On success, the handler should return @c 1. If the handler failed, -// the returned value should be @c 0. +// @returns On success, the handler should return @c 1. If the handler failed, +// the returned value should be @c 0. type yaml_write_handler_t func(emitter *yaml_emitter_t, buffer []byte) error type yaml_emitter_state_t int diff --git a/vendor/modules.txt b/vendor/modules.txt index 1c7c3c003a..5c36f6145b 100644 --- a/vendor/modules.txt +++ b/vendor/modules.txt @@ -430,8 +430,8 @@ github.com/evanphx/json-patch/v5/internal/json # github.com/fatih/color v1.19.0 ## explicit; go 1.25.0 github.com/fatih/color -# github.com/felixge/httpsnoop v1.0.4 -## explicit; go 1.13 +# github.com/felixge/httpsnoop v1.1.0 +## explicit; go 1.25 github.com/felixge/httpsnoop # github.com/fsnotify/fsnotify v1.10.1 ## explicit; go 1.23 @@ -508,50 +508,51 @@ github.com/go-logr/stdr # github.com/go-logr/zapr v1.3.0 ## explicit; go 1.18 github.com/go-logr/zapr -# github.com/go-openapi/jsonpointer v0.23.1 +# github.com/go-openapi/jsonpointer v1.0.0 ## explicit; go 1.25.0 github.com/go-openapi/jsonpointer -# github.com/go-openapi/jsonreference v0.21.5 -## explicit; go 1.24.0 +github.com/go-openapi/jsonpointer/jsonname +# github.com/go-openapi/jsonreference v1.0.0 +## explicit; go 1.25.0 github.com/go-openapi/jsonreference github.com/go-openapi/jsonreference/internal -# github.com/go-openapi/swag v0.26.0 +# github.com/go-openapi/swag v0.28.0 ## explicit; go 1.25.0 github.com/go-openapi/swag -# github.com/go-openapi/swag/cmdutils v0.26.0 +# github.com/go-openapi/swag/cmdutils v0.28.0 ## explicit; go 1.25.0 github.com/go-openapi/swag/cmdutils -# github.com/go-openapi/swag/conv v0.26.0 +# github.com/go-openapi/swag/conv v0.28.0 ## explicit; go 1.25.0 github.com/go-openapi/swag/conv -# github.com/go-openapi/swag/fileutils v0.26.0 +# github.com/go-openapi/swag/fileutils v0.28.0 ## explicit; go 1.25.0 github.com/go-openapi/swag/fileutils -# github.com/go-openapi/swag/jsonname v0.26.0 -## explicit; go 1.25.0 -github.com/go-openapi/swag/jsonname -# github.com/go-openapi/swag/jsonutils v0.26.0 +# github.com/go-openapi/swag/jsonutils v0.28.0 ## explicit; go 1.25.0 github.com/go-openapi/swag/jsonutils github.com/go-openapi/swag/jsonutils/adapters github.com/go-openapi/swag/jsonutils/adapters/ifaces github.com/go-openapi/swag/jsonutils/adapters/stdlib/json -# github.com/go-openapi/swag/loading v0.26.0 +# github.com/go-openapi/swag/loading v0.28.0 ## explicit; go 1.25.0 github.com/go-openapi/swag/loading -# github.com/go-openapi/swag/mangling v0.26.0 +# github.com/go-openapi/swag/mangling v0.28.0 ## explicit; go 1.25.0 github.com/go-openapi/swag/mangling -# github.com/go-openapi/swag/netutils v0.26.0 +# github.com/go-openapi/swag/netutils v0.28.0 ## explicit; go 1.25.0 github.com/go-openapi/swag/netutils -# github.com/go-openapi/swag/stringutils v0.26.0 +# github.com/go-openapi/swag/pools v0.28.0 +## explicit; go 1.25.0 +github.com/go-openapi/swag/pools +# github.com/go-openapi/swag/stringutils v0.28.0 ## explicit; go 1.25.0 github.com/go-openapi/swag/stringutils -# github.com/go-openapi/swag/typeutils v0.26.0 +# github.com/go-openapi/swag/typeutils v0.28.0 ## explicit; go 1.25.0 github.com/go-openapi/swag/typeutils -# github.com/go-openapi/swag/yamlutils v0.26.0 +# github.com/go-openapi/swag/yamlutils v0.28.0 ## explicit; go 1.25.0 github.com/go-openapi/swag/yamlutils # github.com/go-sql-driver/mysql v1.9.3 @@ -741,7 +742,7 @@ github.com/grpc-ecosystem/go-grpc-middleware/v2/interceptors/recovery # github.com/grpc-ecosystem/go-grpc-prometheus v1.2.0 ## explicit github.com/grpc-ecosystem/go-grpc-prometheus -# github.com/grpc-ecosystem/grpc-gateway/v2 v2.29.0 +# github.com/grpc-ecosystem/grpc-gateway/v2 v2.30.0 ## explicit; go 1.25.0 github.com/grpc-ecosystem/grpc-gateway/v2/internal/httprule github.com/grpc-ecosystem/grpc-gateway/v2/runtime @@ -1177,11 +1178,11 @@ go.opentelemetry.io/auto/sdk/internal/telemetry # go.opentelemetry.io/contrib/detectors/gcp v1.44.0 ## explicit; go 1.25.0 go.opentelemetry.io/contrib/detectors/gcp -# go.opentelemetry.io/contrib/instrumentation/google.golang.org/grpc/otelgrpc v0.68.0 +# go.opentelemetry.io/contrib/instrumentation/google.golang.org/grpc/otelgrpc v0.70.0 ## explicit; go 1.25.0 go.opentelemetry.io/contrib/instrumentation/google.golang.org/grpc/otelgrpc go.opentelemetry.io/contrib/instrumentation/google.golang.org/grpc/otelgrpc/internal -# go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp v0.69.0 +# go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp v0.70.0 ## explicit; go 1.25.0 go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/request @@ -1206,13 +1207,14 @@ go.opentelemetry.io/otel/propagation go.opentelemetry.io/otel/semconv/internal/metricpool go.opentelemetry.io/otel/semconv/v1.37.0 go.opentelemetry.io/otel/semconv/v1.37.0/rpcconv -go.opentelemetry.io/otel/semconv/v1.40.0 -go.opentelemetry.io/otel/semconv/v1.40.0/rpcconv go.opentelemetry.io/otel/semconv/v1.41.0 go.opentelemetry.io/otel/semconv/v1.41.0/goconv go.opentelemetry.io/otel/semconv/v1.41.0/httpconv go.opentelemetry.io/otel/semconv/v1.41.0/otelconv go.opentelemetry.io/otel/semconv/v1.43.0 +go.opentelemetry.io/otel/semconv/v1.43.0/httpconv +go.opentelemetry.io/otel/semconv/v1.43.0/otelconv +go.opentelemetry.io/otel/semconv/v1.43.0/rpcconv # go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc v1.44.0 ## explicit; go 1.25.0 go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc @@ -1266,7 +1268,7 @@ go.opentelemetry.io/otel/exporters/prometheus/internal go.opentelemetry.io/otel/exporters/prometheus/internal/counter go.opentelemetry.io/otel/exporters/prometheus/internal/observ go.opentelemetry.io/otel/exporters/prometheus/internal/x -# go.opentelemetry.io/otel/exporters/stdout/stdouttrace v1.44.0 +# go.opentelemetry.io/otel/exporters/stdout/stdouttrace v1.45.0 ## explicit; go 1.25.0 go.opentelemetry.io/otel/exporters/stdout/stdouttrace go.opentelemetry.io/otel/exporters/stdout/stdouttrace/internal @@ -1278,22 +1280,24 @@ go.opentelemetry.io/otel/exporters/stdout/stdouttrace/internal/x go.opentelemetry.io/otel/metric go.opentelemetry.io/otel/metric/embedded go.opentelemetry.io/otel/metric/noop -# go.opentelemetry.io/otel/sdk v1.44.0 +# go.opentelemetry.io/otel/sdk v1.45.0 ## explicit; go 1.25.0 go.opentelemetry.io/otel/sdk go.opentelemetry.io/otel/sdk/instrumentation +go.opentelemetry.io/otel/sdk/internal/attrnorm go.opentelemetry.io/otel/sdk/internal/x go.opentelemetry.io/otel/sdk/resource go.opentelemetry.io/otel/sdk/trace go.opentelemetry.io/otel/sdk/trace/internal/env go.opentelemetry.io/otel/sdk/trace/internal/observ go.opentelemetry.io/otel/sdk/trace/tracetest -# go.opentelemetry.io/otel/sdk/metric v1.44.0 +# go.opentelemetry.io/otel/sdk/metric v1.45.0 ## explicit; go 1.25.0 go.opentelemetry.io/otel/sdk/metric go.opentelemetry.io/otel/sdk/metric/exemplar go.opentelemetry.io/otel/sdk/metric/internal go.opentelemetry.io/otel/sdk/metric/internal/aggregate +go.opentelemetry.io/otel/sdk/metric/internal/attrnorm go.opentelemetry.io/otel/sdk/metric/internal/observ go.opentelemetry.io/otel/sdk/metric/internal/reservoir go.opentelemetry.io/otel/sdk/metric/internal/x @@ -1345,7 +1349,7 @@ go.uber.org/zap/zaptest # go.yaml.in/yaml/v2 v2.4.4 ## explicit; go 1.15 go.yaml.in/yaml/v2 -# go.yaml.in/yaml/v3 v3.0.4 +# go.yaml.in/yaml/v3 v3.0.5 ## explicit; go 1.16 go.yaml.in/yaml/v3 # gocloud.dev v0.46.0 @@ -1479,7 +1483,7 @@ google.golang.org/genproto/googleapis/type/calendarperiod google.golang.org/genproto/googleapis/type/date google.golang.org/genproto/googleapis/type/expr google.golang.org/genproto/googleapis/type/timeofday -# google.golang.org/genproto/googleapis/api v0.0.0-20260727163830-6c54dddc4772 +# google.golang.org/genproto/googleapis/api v0.0.0-20260803160001-6ac0973c030d ## explicit; go 1.25.0 google.golang.org/genproto/googleapis/api google.golang.org/genproto/googleapis/api/annotations