1 from __future__
import print_function
2 import FWCore.ParameterSet.Config
as cms
20 from Configuration.Eras.Modifier_run2_miniAOD_80XLegacy_cff
import run2_miniAOD_80XLegacy
21 from Configuration.Eras.Modifier_run2_nanoAOD_92X_cff
import run2_nanoAOD_92X
22 from Configuration.Eras.Modifier_run2_nanoAOD_94X2016_cff
import run2_nanoAOD_94X2016
23 from Configuration.Eras.Modifier_run2_nanoAOD_94XMiniAODv1_cff
import run2_nanoAOD_94XMiniAODv1
24 from Configuration.Eras.Modifier_run2_nanoAOD_94XMiniAODv2_cff
import run2_nanoAOD_94XMiniAODv2
26 nanoMetadata = cms.EDProducer(
"UniqueStringProducer",
28 tag = cms.string(
"untagged"),
32 linkedObjects = cms.EDProducer(
"PATObjectCrossLinker",
33 jets=cms.InputTag(
"finalJets"),
34 muons=cms.InputTag(
"finalMuons"),
35 electrons=cms.InputTag(
"finalElectrons"),
36 taus=cms.InputTag(
"finalTaus"),
37 photons=cms.InputTag(
"finalPhotons"),
40 simpleCleanerTable = cms.EDProducer(
"NanoAODSimpleCrossCleaner",
41 name=cms.string(
"cleanmask"),
42 doc=cms.string(
"simple cleaning mask with priority to leptons"),
43 jets=cms.InputTag(
"linkedObjects",
"jets"),
44 muons=cms.InputTag(
"linkedObjects",
"muons"),
45 electrons=cms.InputTag(
"linkedObjects",
"electrons"),
46 taus=cms.InputTag(
"linkedObjects",
"taus"),
47 photons=cms.InputTag(
"linkedObjects",
"photons"),
48 jetSel=cms.string(
"pt>15"),
49 muonSel=cms.string(
"isPFMuon && innerTrack.validFraction >= 0.49 && ( isGlobalMuon && globalTrack.normalizedChi2 < 3 && combinedQuality.chi2LocalPosition < 12 && combinedQuality.trkKink < 20 && segmentCompatibility >= 0.303 || segmentCompatibility >= 0.451 )"),
50 electronSel=cms.string(
""),
51 tauSel=cms.string(
""),
52 photonSel=cms.string(
""),
53 jetName=cms.string(
"Jet"),muonName=cms.string(
"Muon"),electronName=cms.string(
"Electron"),
54 tauName=cms.string(
"Tau"),photonName=cms.string(
"Photon")
57 btagSFdir=
"PhysicsTools/NanoAOD/data/btagSF/" 59 btagWeightTable = cms.EDProducer(
"BTagSFProducer",
60 src = cms.InputTag(
"linkedObjects",
"jets"),
61 cut = cms.string(
"pt > 25. && abs(eta) < 2.5"),
62 discNames = cms.vstring(
63 "pfCombinedInclusiveSecondaryVertexV2BJetTags",
64 "pfDeepCSVJetTags:probb+pfDeepCSVJetTags:probbb",
65 "pfCombinedMVAV2BJetTags" 67 discShortNames = cms.vstring(
72 weightFiles = cms.vstring(
73 btagSFdir+
"CSVv2_94XSF_V2_B_F.csv",
74 btagSFdir+
"DeepCSV_94XSF_V2_B_F.csv",
77 operatingPoints = cms.vstring(
"3",
"3",
"3"),
78 measurementTypesB = cms.vstring(
"iterativefit",
"iterativefit",
"iterativefit"),
79 measurementTypesC = cms.vstring(
"iterativefit",
"iterativefit",
"iterativefit"),
80 measurementTypesUDSG = cms.vstring(
"iterativefit",
"iterativefit",
"iterativefit"),
81 sysTypes = cms.vstring(
"central",
"central",
"central")
84 for modifier
in run2_miniAOD_80XLegacy, run2_nanoAOD_94X2016:
85 modifier.toModify(btagWeightTable,
86 cut = cms.string(
"pt > 25. && abs(eta) < 2.4"),
87 weightFiles = cms.vstring(
88 btagSFdir+
"CSVv2_Moriond17_B_H.csv",
90 btagSFdir+
"cMVAv2_Moriond17_B_H.csv" 94 run2_nanoAOD_92X.toModify(btagWeightTable,
95 weightFiles = cms.vstring(
102 genWeightsTable = cms.EDProducer(
"GenWeightsTableProducer",
103 genEvent = cms.InputTag(
"generator"),
104 lheInfo = cms.InputTag(
"externalLHEProducer"),
105 preferredPDFs = cms.VPSet(
106 cms.PSet( name = cms.string(
"PDF4LHC15_nnlo_30_pdfas"), lhaid = cms.uint32(91400) ),
107 cms.PSet( name = cms.string(
"NNPDF31_nnlo_hessian_pdfas"), lhaid = cms.uint32(306000) ),
108 cms.PSet( name = cms.string(
"NNPDF30_nlo_as_0118"), lhaid = cms.uint32(260000) ),
109 cms.PSet( name = cms.string(
"NNPDF30_lo_as_0130"), lhaid = cms.uint32(262000) ),
110 cms.PSet( name = cms.string(
"NNPDF30_nlo_nf_4_pdfas"), lhaid = cms.uint32(292000) ),
111 cms.PSet( name = cms.string(
"NNPDF30_nlo_nf_5_pdfas"), lhaid = cms.uint32(292200) ),
113 namedWeightIDs = cms.vstring(),
114 namedWeightLabels = cms.vstring(),
115 lheWeightPrecision = cms.int32(14),
116 maxPdfWeights = cms.uint32(150),
117 debug = cms.untracked.bool(
False),
119 lheInfoTable = cms.EDProducer(
"LHETablesProducer",
120 lheInfo = cms.InputTag(
"externalLHEProducer"),
121 precision = cms.int32(14),
122 storeLHEParticles = cms.bool(
True)
125 l1bits=cms.EDProducer(
"L1TriggerResultsConverter", src=cms.InputTag(
"gtStage2Digis"), legacyL1=cms.bool(
False))
127 nanoSequenceCommon = cms.Sequence(
128 nanoMetadata + jetSequence + muonSequence + tauSequence + electronSequence+photonSequence+vertexSequence+
131 jetTables + muonTables + tauTables + electronTables + photonTables + globalTables +vertexTables+ metTables+simpleCleanerTable + isoTrackTables
133 nanoSequenceOnlyFullSim = cms.Sequence(triggerObjectTables + l1bits)
135 nanoSequence = cms.Sequence(nanoSequenceCommon + nanoSequenceOnlyFullSim)
137 nanoSequenceFS = cms.Sequence(genParticleSequence + particleLevelSequence + nanoSequenceCommon + jetMC + muonMC + electronMC + photonMC + tauMC + metMC + ttbarCatMCProducers + globalTablesMC + btagWeightTable + genWeightsTable + genParticleTables + particleLevelTables + lheInfoTable + ttbarCategoryTable )
139 nanoSequenceMC = nanoSequenceFS.copy()
140 nanoSequenceMC.insert(nanoSequenceFS.index(nanoSequenceCommon)+1,nanoSequenceOnlyFullSim)
145 _btagDiscriminators=[]
147 print(
"Updating process to run DeepCSV btag")
148 _btagDiscriminators += [
'pfDeepCSVJetTags:probb',
'pfDeepCSVJetTags:probbb',
'pfDeepCSVJetTags:probc']
150 print(
"Updating process to run DeepFlavour btag")
151 _btagDiscriminators += [
'pfDeepFlavourJetTags:probb',
'pfDeepFlavourJetTags:probbb',
'pfDeepFlavourJetTags:problepb']
152 if len(_btagDiscriminators)==0:
return process
153 print(
"Will recalculate the following discriminators: "+
", ".
join(_btagDiscriminators))
156 jetSource = cms.InputTag(
'slimmedJets'),
157 jetCorrections = (
'AK4PFchs', cms.vstring([
'L1FastJet',
'L2Relative',
'L3Absolute',
'L2L3Residual']),
'None'),
158 btagDiscriminators = _btagDiscriminators,
159 postfix =
'WithDeepInfo',
161 process.load(
"Configuration.StandardSequences.MagneticField_cff")
162 process.looseJetId.src=
"selectedUpdatedPatJetsWithDeepInfo" 163 process.tightJetId.src=
"selectedUpdatedPatJetsWithDeepInfo" 164 process.tightJetIdLepVeto.src=
"selectedUpdatedPatJetsWithDeepInfo" 165 process.bJetVars.src=
"selectedUpdatedPatJetsWithDeepInfo" 166 process.slimmedJetsWithUserData.src=
"selectedUpdatedPatJetsWithDeepInfo" 167 process.qgtagger80x.srcJets=
"selectedUpdatedPatJetsWithDeepInfo" 169 process.pfDeepFlavourJetTagsWithDeepInfo.graph_path =
'RecoBTag/Combined/data/DeepFlavourV03_10X_training/constant_graph.pb' 170 process.pfDeepFlavourJetTagsWithDeepInfo.lp_names = [
"cpf_input_batchnorm/keras_learning_phase"]
173 from PhysicsTools.PatUtils.tools.runMETCorrectionsAndUncertainties
import runMetCorAndUncFromMiniAOD
177 process.nanoSequenceCommon.insert(process.nanoSequenceCommon.index(jetSequence),cms.Sequence(process.fullPatMetSequence))
188 for modname
in electron_id_modules_WorkingPoints_nanoAOD.modules:
190 process.electronSequence.insert(process.electronSequence.index(bitmapVIDForEle),process.egmGsfElectronIDSequence)
191 for modifier
in run2_miniAOD_80XLegacy, run2_nanoAOD_92X:
192 modifier.toModify(process.electronMVAValueMapProducer, srcMiniAOD =
"slimmedElectronsUpdated")
193 modifier.toModify(process.egmGsfElectronIDs, physicsObjectSrc =
"slimmedElectronsUpdated")
194 if hasattr(process,
"heepIDVarValueMaps"):
195 modifier.toModify(process.heepIDVarValueMaps, elesMiniAOD =
"slimmedElectronsUpdated")
197 for modname
in photon_id_modules_WorkingPoints_nanoAOD.modules:
199 process.photonSequence.insert(process.photonSequence.index(bitmapVIDForPho),process.egmPhotonIDSequence)
203 _btagDiscriminators=[]
205 print(
"Updating process to run DeepCSV btag to AK8 jets")
206 _btagDiscriminators += [
'pfDeepCSVJetTags:probb',
'pfDeepCSVJetTags:probbb']
207 if addDeepBoostedJet:
208 print(
"Updating process to run DeepBoostedJet on datasets before 103X")
210 _btagDiscriminators += pfDeepBoostedJetTagsAll
211 if len(_btagDiscriminators)==0:
return process
212 print(
"Will recalculate the following discriminators on AK8 jets: "+
", ".
join(_btagDiscriminators))
215 jetSource = cms.InputTag(
'slimmedJetsAK8'),
216 pvSource = cms.InputTag(
'offlineSlimmedPrimaryVertices'),
217 svSource = cms.InputTag(
'slimmedSecondaryVertices'),
219 jetCorrections = (jecPayload.value(), cms.vstring([
'L1FastJet',
'L2Relative',
'L3Absolute',
'L2L3Residual']),
'None'),
220 btagDiscriminators = _btagDiscriminators,
221 postfix=
'AK8WithDeepInfo',
224 process.looseJetIdAK8.src =
"selectedUpdatedPatJetsAK8WithDeepInfo" 225 process.tightJetIdAK8.src =
"selectedUpdatedPatJetsAK8WithDeepInfo" 226 process.tightJetIdLepVetoAK8.src =
"selectedUpdatedPatJetsAK8WithDeepInfo" 227 process.slimmedJetsAK8WithUserData.src =
"selectedUpdatedPatJetsAK8WithDeepInfo" 230 from PhysicsTools.PatUtils.tools.runMETCorrectionsAndUncertainties
import runMetCorAndUncFromMiniAOD
234 fixEE2017Params = {
'userawPt':
True,
'ptThreshold':50.0,
'minEtaThreshold':2.65,
'maxEtaThreshold': 3.139},
235 postfix =
"FixEE2017")
236 process.nanoSequenceCommon.insert(process.nanoSequenceCommon.index(jetSequence),process.fullPatMetSequenceFixEE2017)
241 nanoAOD_addDeepInfo_switch = cms.PSet(
242 nanoAOD_addDeepBTag_switch = cms.untracked.bool(
False),
243 nanoAOD_addDeepFlavourTag_switch = cms.untracked.bool(
False),
245 run2_miniAOD_80XLegacy.toModify(nanoAOD_addDeepInfo_switch, nanoAOD_addDeepBTag_switch = cms.untracked.bool(
True))
246 for modifier
in run2_miniAOD_80XLegacy, run2_nanoAOD_94X2016, run2_nanoAOD_94XMiniAODv1, run2_nanoAOD_94XMiniAODv2:
247 modifier.toModify(nanoAOD_addDeepInfo_switch, nanoAOD_addDeepFlavourTag_switch = cms.untracked.bool(
True))
249 addDeepBTag=nanoAOD_addDeepInfo_switch.nanoAOD_addDeepBTag_switch,
250 addDeepFlavour=nanoAOD_addDeepInfo_switch.nanoAOD_addDeepFlavourTag_switch)
251 nanoAOD_addDeepInfoAK8_switch = cms.PSet(
252 nanoAOD_addDeepBTag_switch = cms.untracked.bool(
False),
253 nanoAOD_addDeepBoostedJet_switch = cms.untracked.bool(
True),
254 jecPayload = cms.untracked.string(
'AK8PFPuppi')
257 run2_miniAOD_80XLegacy.toModify(nanoAOD_addDeepInfoAK8_switch,
258 nanoAOD_addDeepBTag_switch = cms.untracked.bool(
True),
259 nanoAOD_addDeepBoostedJet_switch = cms.untracked.bool(
False),
260 jecPayload = cms.untracked.string(
'AK8PFchs'))
262 addDeepBTag=nanoAOD_addDeepInfoAK8_switch.nanoAOD_addDeepBTag_switch,
263 addDeepBoostedJet=nanoAOD_addDeepInfoAK8_switch.nanoAOD_addDeepBoostedJet_switch,
264 jecPayload=nanoAOD_addDeepInfoAK8_switch.jecPayload)
270 for modifier
in run2_nanoAOD_94XMiniAODv1, run2_nanoAOD_94XMiniAODv2:
272 if hasattr(process,
'calibratedPatElectrons80X'):
273 process.calibratedPatElectrons80X.isMC = cms.bool(
False)
274 process.calibratedPatPhotons80X.isMC = cms.bool(
False)
280 for modifier
in run2_nanoAOD_94XMiniAODv1, run2_nanoAOD_94XMiniAODv2:
282 if hasattr(process,
'calibratedPatElectrons80X'):
283 process.calibratedPatElectrons80X.isMC = cms.bool(
True)
284 process.calibratedPatPhotons80X.isMC = cms.bool(
True)
288 _80x_sequence = nanoSequenceCommon.copy()
290 _80x_sequence.remove(isoTrackTables)
291 _80x_sequence.remove(isoTrackSequence)
293 _80x_sequence.insert(_80x_sequence.index(jetSequence), extraFlagsProducers)
294 _80x_sequence.insert(_80x_sequence.index(simpleCleanerTable)+1, extraFlagsTable)
296 run2_miniAOD_80XLegacy.toReplaceWith( nanoSequenceCommon, _80x_sequence)
def nanoAOD_addDeepInfo(process, addDeepBTag, addDeepFlavour)
S & print(S &os, JobReport::InputFile const &f)
def nanoAOD_customizeMC(process)
def nanoAOD_activateVID(process)
def nanoAOD_customizeCommon(process)
def nanoAOD_recalibrateMETs(process, isData)
def nanoAOD_addDeepInfoAK8(process, addDeepBTag, addDeepBoostedJet, jecPayload)
def nanoAOD_runMETfixEE2017(process, isData)
static std::string join(char **cmd)
def runMetCorAndUncFromMiniAOD(process, metType="PF", jetCollUnskimmed="slimmedJets", photonColl="slimmedPhotons", electronColl="slimmedElectrons", muonColl="slimmedMuons", tauColl="slimmedTaus", pfCandColl="packedPFCandidates", jetFlavor="AK4PFchs", jetCleaning="LepClean", isData=False, manualJetConfig=False, reclusterJets=None, jetSelection="pt>15 && abs(eta)<9.9", recoMetFromPFCs=None, jetCorLabelL3="ak4PFCHSL1FastL2L3Corrector", jetCorLabelRes="ak4PFCHSL1FastL2L3ResidualCorrector", CHS=False, reapplyJEC=True, jecUncFile="", computeMETSignificance=True, fixEE2017=False, fixEE2017Params=None, postfix="")
def nanoAOD_customizeData(process)