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Copy pathTreeProducerCommon.py
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269 lines (195 loc) · 11.7 KB
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import ROOT
import math
import numpy as num
class DiLeptonBasicClass:
def __init__(self, tau1_idx, tau1_pt, tau1_iso, tau2_idx, tau2_pt, tau2_iso):
self.tau1_pt = tau1_pt
self.tau2_pt = tau2_pt
self.tau1_iso = tau1_iso
self.tau2_iso = tau2_iso
self.tau1_idx = tau1_idx
self.tau2_idx = tau2_idx
def bestDiLepton(diLeptons):
if len(diLeptons)==1:
return diLeptons[0]
# print '# of diLeptons =', len(diLeptons)
# for ii in diLeptons:
# print 'tau1 idx =', ii.tau1_idx
# print 'tau2 idx =', ii.tau2_idx
# print 'tau1 iso =', ii.tau1_iso
# print 'tau2 iso = ', ii.tau2_iso
# print 'tau1 pt = ', ii.tau1_pt
# print 'tau2 pt = ', ii.tau2_pt
# print '-'*80
least_iso_highest_pt = lambda dl: (-dl.tau1_iso, -dl.tau1_pt, -dl.tau2_iso, -dl.tau2_pt)
return sorted(diLeptons, key=lambda dl: least_iso_highest_pt(dl), reverse=False)[0]
def deltaR2( e1, p1, e2, p2):
de = e1 - e2
dp = deltaPhi(p1, p2)
return de*de + dp*dp
def deltaR( *args ):
return math.sqrt( deltaR2(*args) )
def deltaPhi( p1, p2):
'''Computes delta phi, handling periodic limit conditions.'''
res = p1 - p2
while res > math.pi:
res -= 2*math.pi
while res < -math.pi:
res += 2*math.pi
return res
def extraLeptonVetos(event, muon_idxs, electron_idxs, name):
b_dilepton_veto_ = False;
b_extraelec_veto_ = False;
b_extramuon_veto_ = False;
LooseMuons = []
for imuon in range(event.nMuon):
if event.Muon_pt[imuon] < 10: continue
if abs(event.Muon_eta[imuon]) > 2.4: continue
if abs(event.Muon_dz[imuon]) > 0.2: continue
if abs(event.Muon_dxy[imuon]) > 0.045: continue
if event.Muon_pfRelIso04_all[imuon] > 0.3: continue
if event.Muon_mediumId[imuon] > 0.5 and (imuon not in muon_idxs):
b_extramuon_veto_ = True
if event.Muon_pt[imuon] > 15 and event.Muon_isPFcand[imuon] > 0.5:
LooseMuons.append(imuon)
LooseElectrons = []
for ielectron in range(event.nElectron):
if event.Electron_pt[ielectron] < 10: continue
if abs(event.Electron_eta[ielectron]) > 2.5: continue
if abs(event.Electron_dz[ielectron]) > 0.2: continue
if abs(event.Electron_dxy[ielectron]) > 0.045: continue
if event.Electron_pfRelIso03_all[ielectron] > 0.3: continue
if event.Electron_convVeto[ielectron] ==1 and ord(event.Electron_lostHits[ielectron]) <= 1 and event.Electron_mvaFall17Iso_WP90[ielectron] > 0.5 and (ielectron not in electron_idxs):
b_extraelec_veto_ = True
if event.Electron_pt[ielectron] > 15 and event.Electron_mvaFall17Iso_WPL[ielectron] > 0.5:
LooseElectrons.append(ielectron)
if name.find('mutau')!=-1:
for idx1 in LooseMuons:
for idx2 in LooseMuons:
if idx1 >= idx2: continue
dR = deltaR(event.Muon_eta[idx1], event.Muon_phi[idx1],
event.Muon_eta[idx2], event.Muon_phi[idx2])
if event.Muon_charge[idx1] * event.Muon_charge[idx2] < 0 and dR > 0.15:
b_dilepton_veto_ = True
if name.find('eletau')!=-1:
for idx1 in LooseElectrons:
for idx2 in LooseElectrons:
if idx1 >= idx2: continue
dR = deltaR(event.Electron_eta[idx1], event.Electron_phi[idx1],
event.Electron_eta[idx2], event.Electron_phi[idx2])
if event.Electron_charge[idx1] * event.Electron_charge[idx2] < 0 and dR > 0.15:
b_dilepton_veto_ = True
return b_extramuon_veto_, b_extraelec_veto_, b_dilepton_veto_
# b_dilepton_veto[ch] = (int) b_dilepton_veto_;
# b_extraelec_veto[ch] = (int) b_extraelec_veto_;
# b_extramuon_veto[ch] = (int) b_extramuon_veto_;
# b_lepton_vetos[ch] = ( b_dilepton_veto_ || b_extraelec_veto_ || b_extramuon_veto_ );
class TreeProducerCommon(object):
def __init__(self, name):
print 'TreeProducerCommon is called', name
# create file
self.outputfile = ROOT.TFile(name, 'recreate')
self.tree = ROOT.TTree('tree','tree')
# histogram for cutflow
self.h_cutflow = ROOT.TH1F("h_cutflow", "h_cutflow", 50, 0, 50)
##################
# event variables
##################
self.run = num.zeros(1, dtype=int)
self.luminosityBlock = num.zeros(1, dtype=int)
self.event = num.zeros(1, dtype=int)
self.MET_pt = num.zeros(1, dtype=float)
self.MET_phi = num.zeros(1, dtype=float)
self.GenMET_pt = num.zeros(1, dtype=float)
self.GenMET_phi = num.zeros(1, dtype=float)
self.PuppiMET_pt = num.zeros(1, dtype=float)
self.PuppiMET_phi = num.zeros(1, dtype=float)
self.MET_significance = num.zeros(1, dtype=float)
self.MET_covXX = num.zeros(1, dtype=float)
self.MET_covXY = num.zeros(1, dtype=float)
self.MET_covYY = num.zeros(1, dtype=float)
self.Pileup_nPU = num.zeros(1, dtype=int)
self.Pileup_nTrueInt = num.zeros(1, dtype=int)
self.PV_npvs = num.zeros(1, dtype=int)
self.PV_npvsGood = num.zeros(1, dtype=int)
self.Pileup_nTrueInt = num.zeros(1, dtype=int)
self.fixedGridRhoFastjetAll = num.zeros(1, dtype=float)
self.genWeight = num.zeros(1, dtype=float)
self.LHE_Njets = num.zeros(1, dtype=int)
self.isData = num.zeros(1, dtype=int)
self.tree.Branch('run' , self.run, 'run/I')
self.tree.Branch('luminosityBlock' , self.luminosityBlock, 'luminosityBlock/I')
self.tree.Branch('event' , self.event, 'event/I')
self.tree.Branch('MET_pt' , self.MET_pt, 'MET_pt/D')
self.tree.Branch('MET_phi' , self.MET_phi, 'MET_phi/D')
self.tree.Branch('GenMET_pt' , self.GenMET_pt, 'GenMET_pt/D')
self.tree.Branch('GenMET_phi' , self.GenMET_phi, 'GenMET_phi/D')
self.tree.Branch('PuppiMET_pt' , self.PuppiMET_pt, 'PuppiMET_pt/D')
self.tree.Branch('PuppiMET_phi' , self.PuppiMET_phi, 'PuppiMET_phi/D')
self.tree.Branch('MET_significance' , self.MET_significance, 'MET_significance/D')
self.tree.Branch('Pileup_nPU' , self.Pileup_nPU, 'Pileup_nPU/I')
self.tree.Branch('Pileup_nTrueInt' , self.Pileup_nTrueInt, 'Pileup_nTrueInt/I')
self.tree.Branch('PV_npvs' , self.PV_npvs, 'PV_npvs/I')
self.tree.Branch('PV_npvsGood' , self.PV_npvsGood, 'PV_npvsGood/I')
self.tree.Branch('fixedGridRhoFastjetAll' , self.fixedGridRhoFastjetAll, 'fixedGridRhoFastjetAll/D')
self.tree.Branch('genWeight' , self.genWeight, 'genWeight/D')
self.tree.Branch('LHE_Njets' , self.LHE_Njets, 'LHE_Njets/I')
self.tree.Branch('isData' , self.isData, 'isData/I')
self.njets = num.zeros(1, dtype=int)
self.nfjets = num.zeros(1, dtype=int)
self.ncjets = num.zeros(1, dtype=int)
self.nbtag = num.zeros(1, dtype=int)
self.pfmt_1 = num.zeros(1, dtype=float)
self.pfmt_2 = num.zeros(1, dtype=float)
self.jpt_1 = num.zeros(1, dtype=float)
self.jeta_1 = num.zeros(1, dtype=float)
self.jphi_1 = num.zeros(1, dtype=float)
self.jcsvv2_1 = num.zeros(1, dtype=float)
self.jdeepb_1 = num.zeros(1, dtype=float)
self.jpt_2 = num.zeros(1, dtype=float)
self.jeta_2 = num.zeros(1, dtype=float)
self.jphi_2 = num.zeros(1, dtype=float)
self.jcsvv2_2 = num.zeros(1, dtype=float)
self.jdeepb_2 = num.zeros(1, dtype=float)
self.m_vis = num.zeros(1, dtype=float)
self.pt_tt = num.zeros(1, dtype=float)
self.dR_ll = num.zeros(1, dtype=float)
self.dphi_ll = num.zeros(1, dtype=float)
self.pzetamiss = num.zeros(1, dtype=float)
self.pzetavis = num.zeros(1, dtype=float)
self.pzeta_disc = num.zeros(1, dtype=float)
self.dilepton_veto = num.zeros(1, dtype=int)
self.extraelec_veto = num.zeros(1, dtype=int)
self.extramuon_veto = num.zeros(1, dtype=int)
self.ngentauhads = num.zeros(1, dtype=int)
self.ngentaus = num.zeros(1, dtype=int)
self.weight = num.zeros(1, dtype=float)
self.tree.Branch('njets' , self.njets, 'njets/I')
self.tree.Branch('ncjets' , self.ncjets, 'ncjets/I')
self.tree.Branch('nfjets' , self.nfjets, 'nfjets/I')
self.tree.Branch('nbtag' , self.nbtag, 'nbtag/I')
self.tree.Branch('pfmt_1' , self.pfmt_1, 'pfmt_1/D')
self.tree.Branch('pfmt_2' , self.pfmt_2, 'pfmt_2/D')
self.tree.Branch('jpt_1' , self.jpt_1, 'jpt_1/D')
self.tree.Branch('jeta_1' , self.jeta_1, 'jeta_1/D')
self.tree.Branch('jphi_1' , self.jphi_1, 'jphi_1/D')
self.tree.Branch('jcsvv2_1' , self.jcsvv2_1, 'jcsvv2_1/D')
self.tree.Branch('jdeepb_1' , self.jdeepb_1, 'jdeepb_1/D')
self.tree.Branch('jpt_2' , self.jpt_2, 'jpt_2/D')
self.tree.Branch('jeta_2' , self.jeta_2, 'jeta_2/D')
self.tree.Branch('jphi_2' , self.jphi_2, 'jphi_2/D')
self.tree.Branch('jcsvv2_2' , self.jcsvv2_2, 'jcsvv2_2/D')
self.tree.Branch('jdeepb_2' , self.jdeepb_2, 'jdeepb_2/D')
self.tree.Branch('m_vis' , self.m_vis, 'm_vis/D')
self.tree.Branch('pt_tt' , self.pt_tt, 'pt_tt/D')
self.tree.Branch('dR_ll' , self.dR_ll, 'dR_ll/D')
self.tree.Branch('dphi_ll' , self.dphi_ll, 'dphi_ll/D')
self.tree.Branch('pzetamiss' , self.pzetamiss, 'pzetamiss/D')
self.tree.Branch('pzetavis' , self.pzetavis, 'pzetavis/D')
self.tree.Branch('pzeta_disc' , self.pzeta_disc, 'pzeta_disc/D')
self.tree.Branch('dilepton_veto' , self.dilepton_veto, 'dilepton_veto/I')
self.tree.Branch('extraelec_veto' , self.extraelec_veto, 'extraelec_veto/I')
self.tree.Branch('extramuon_veto' , self.extramuon_veto, 'extramuon_veto/I')
self.tree.Branch('ngentauhads' , self.ngentauhads, 'ngentauhads/I')
self.tree.Branch('ngentaus' , self.ngentaus, 'ngentaus/I')
self.tree.Branch('weight' , self.weight, 'weight/D')