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217 changes: 217 additions & 0 deletions contracts/verifiers/idcard/Verifier_idcard_sha1.sol
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// SPDX-License-Identifier: GPL-3.0
/*
Copyright 2021 0KIMS association.

This file is generated with [snarkJS](https://github.com/iden3/snarkjs).

snarkJS is a free software: you can redistribute it and/or modify it
under the terms of the GNU General Public License as published by
the Free Software Foundation, either version 3 of the License, or
(at your option) any later version.

snarkJS is distributed in the hope that it will be useful, but WITHOUT
ANY WARRANTY; without even the implied warranty of MERCHANTABILITY
or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public
License for more details.

You should have received a copy of the GNU General Public License
along with snarkJS. If not, see <https://www.gnu.org/licenses/>.
*/

pragma solidity >=0.7.0 <0.9.0;

contract Verifier_idcard_sha1 {
// Scalar field size
uint256 constant r = 21888242871839275222246405745257275088548364400416034343698204186575808495617;
// Base field size
uint256 constant q = 21888242871839275222246405745257275088696311157297823662689037894645226208583;

// Verification Key data
uint256 constant alphax = 20491192805390485299153009773594534940189261866228447918068658471970481763042;
uint256 constant alphay = 9383485363053290200918347156157836566562967994039712273449902621266178545958;
uint256 constant betax1 = 4252822878758300859123897981450591353533073413197771768651442665752259397132;
uint256 constant betax2 = 6375614351688725206403948262868962793625744043794305715222011528459656738731;
uint256 constant betay1 = 21847035105528745403288232691147584728191162732299865338377159692350059136679;
uint256 constant betay2 = 10505242626370262277552901082094356697409835680220590971873171140371331206856;
uint256 constant gammax1 = 11559732032986387107991004021392285783925812861821192530917403151452391805634;
uint256 constant gammax2 = 10857046999023057135944570762232829481370756359578518086990519993285655852781;
uint256 constant gammay1 = 4082367875863433681332203403145435568316851327593401208105741076214120093531;
uint256 constant gammay2 = 8495653923123431417604973247489272438418190587263600148770280649306958101930;
uint256 constant deltax1 = 17619978066981023815786197539891834595467101800168005440602760726252419224182;
uint256 constant deltax2 = 18977671751559096556952089773959459997838190076805335585523439415828663041091;
uint256 constant deltay1 = 20908933493580347546254738498174154838704896433856769222253193499541811828688;
uint256 constant deltay2 = 14228223910638183943848630972622539108882152661926856215951516846313437227100;


uint256 constant IC0x = 18996279980038711758193690354940715782561235380342286407554135740201513779279;
uint256 constant IC0y = 11625887395259635500670464496187717958964706644081328357030137540193674702015;

uint256 constant IC1x = 2803372302542279061992801806634278926291194002619610390291532752624573014173;
uint256 constant IC1y = 10299540508560758826097485034731152593441586555541996535916675882907375474435;

uint256 constant IC2x = 3515557068537248154485087584130170954856304985271889186452891924457640062970;
uint256 constant IC2y = 1470817234371769592572885478845544364540877905963971376961793016405008053683;

uint256 constant IC3x = 9882623278822854916070400357014056422896394552342808356843508747816984172644;
uint256 constant IC3y = 15531717559181484462850765055876863273664930315712089064242339049088256330437;

uint256 constant IC4x = 1901898694368678166577209587685345696272596482922653049767926510562298598974;
uint256 constant IC4y = 5058572446650720343780896019894709715665377022988535030242875984721308263761;

uint256 constant IC5x = 20431838211546078848142643584396353147225169357005485193415850116721939313698;
uint256 constant IC5y = 12674687627463988134904336509745795614944363742165672249109257935456985648885;

uint256 constant IC6x = 4014435991936218046726515736305912875209372027501216181172190606316328747472;
uint256 constant IC6y = 16912585017352105870989796655854968791219729237634485846585064696134374045934;

uint256 constant IC7x = 12553131107985421444412332178956153560186927617121861418939287320178940975682;
uint256 constant IC7y = 15211374507967162250825030127268522561555464722253667504386597832287358118777;

uint256 constant IC8x = 9360822385172522643659404900386728650189826239156564955589551865188818779244;
uint256 constant IC8y = 1600740977972980205306895108993336563635329497019830065817810193590153972774;


// Memory data
uint16 constant pVk = 0;
uint16 constant pPairing = 128;

uint16 constant pLastMem = 896;

function verifyProof(uint[2] calldata _pA, uint[2][2] calldata _pB, uint[2] calldata _pC, uint[8] calldata _pubSignals) public view returns (bool) {
assembly {
function checkField(v) {
if iszero(lt(v, r)) {
mstore(0, 0)
return(0, 0x20)
}
}

// G1 function to multiply a G1 value(x,y) to value in an address
function g1_mulAccC(pR, x, y, s) {
let success
let mIn := mload(0x40)
mstore(mIn, x)
mstore(add(mIn, 32), y)
mstore(add(mIn, 64), s)

success := staticcall(sub(gas(), 2000), 7, mIn, 96, mIn, 64)

if iszero(success) {
mstore(0, 0)
return(0, 0x20)
}

mstore(add(mIn, 64), mload(pR))
mstore(add(mIn, 96), mload(add(pR, 32)))

success := staticcall(sub(gas(), 2000), 6, mIn, 128, pR, 64)

if iszero(success) {
mstore(0, 0)
return(0, 0x20)
}
}

function checkPairing(pA, pB, pC, pubSignals, pMem) -> isOk {
let _pPairing := add(pMem, pPairing)
let _pVk := add(pMem, pVk)

mstore(_pVk, IC0x)
mstore(add(_pVk, 32), IC0y)

// Compute the linear combination vk_x

g1_mulAccC(_pVk, IC1x, IC1y, calldataload(add(pubSignals, 0)))

g1_mulAccC(_pVk, IC2x, IC2y, calldataload(add(pubSignals, 32)))

g1_mulAccC(_pVk, IC3x, IC3y, calldataload(add(pubSignals, 64)))

g1_mulAccC(_pVk, IC4x, IC4y, calldataload(add(pubSignals, 96)))

g1_mulAccC(_pVk, IC5x, IC5y, calldataload(add(pubSignals, 128)))

g1_mulAccC(_pVk, IC6x, IC6y, calldataload(add(pubSignals, 160)))

g1_mulAccC(_pVk, IC7x, IC7y, calldataload(add(pubSignals, 192)))

g1_mulAccC(_pVk, IC8x, IC8y, calldataload(add(pubSignals, 224)))


// -A
mstore(_pPairing, calldataload(pA))
mstore(add(_pPairing, 32), mod(sub(q, calldataload(add(pA, 32))), q))

// B
mstore(add(_pPairing, 64), calldataload(pB))
mstore(add(_pPairing, 96), calldataload(add(pB, 32)))
mstore(add(_pPairing, 128), calldataload(add(pB, 64)))
mstore(add(_pPairing, 160), calldataload(add(pB, 96)))

// alpha1
mstore(add(_pPairing, 192), alphax)
mstore(add(_pPairing, 224), alphay)

// beta2
mstore(add(_pPairing, 256), betax1)
mstore(add(_pPairing, 288), betax2)
mstore(add(_pPairing, 320), betay1)
mstore(add(_pPairing, 352), betay2)

// vk_x
mstore(add(_pPairing, 384), mload(add(pMem, pVk)))
mstore(add(_pPairing, 416), mload(add(pMem, add(pVk, 32))))


// gamma2
mstore(add(_pPairing, 448), gammax1)
mstore(add(_pPairing, 480), gammax2)
mstore(add(_pPairing, 512), gammay1)
mstore(add(_pPairing, 544), gammay2)

// C
mstore(add(_pPairing, 576), calldataload(pC))
mstore(add(_pPairing, 608), calldataload(add(pC, 32)))

// delta2
mstore(add(_pPairing, 640), deltax1)
mstore(add(_pPairing, 672), deltax2)
mstore(add(_pPairing, 704), deltay1)
mstore(add(_pPairing, 736), deltay2)


let success := staticcall(sub(gas(), 2000), 8, _pPairing, 768, _pPairing, 0x20)

isOk := and(success, mload(_pPairing))
}

let pMem := mload(0x40)
mstore(0x40, add(pMem, pLastMem))

// Validate that all evaluations ∈ F

checkField(calldataload(add(_pubSignals, 0)))

checkField(calldataload(add(_pubSignals, 32)))

checkField(calldataload(add(_pubSignals, 64)))

checkField(calldataload(add(_pubSignals, 96)))

checkField(calldataload(add(_pubSignals, 128)))

checkField(calldataload(add(_pubSignals, 160)))

checkField(calldataload(add(_pubSignals, 192)))

checkField(calldataload(add(_pubSignals, 224)))


// Validate all evaluations
let isValid := checkPairing(_pA, _pB, _pC, _pubSignals, pMem)

mstore(0, isValid)
return(0, 0x20)
}
}
}
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