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miniAOD_tools Namespace Reference

Functions

def miniAOD_customizeAllData (process)
 
def miniAOD_customizeAllMC (process)
 
def miniAOD_customizeAllMCFastSim (process)
 
def miniAOD_customizeCommon (process)
 
def miniAOD_customizeData (process)
 
def miniAOD_customizeMC (process)
 
def miniAOD_customizeOutput (out)
 

Function Documentation

◆ miniAOD_customizeAllData()

def miniAOD_tools.miniAOD_customizeAllData (   process)

Definition at line 605 of file miniAOD_tools.py.

References miniAOD_customizeCommon(), and miniAOD_customizeData().

605 def miniAOD_customizeAllData(process):
606  miniAOD_customizeCommon(process)
607  miniAOD_customizeData(process)
608  return process
609 
def miniAOD_customizeAllData(process)
def miniAOD_customizeData(process)
def miniAOD_customizeCommon(process)

◆ miniAOD_customizeAllMC()

def miniAOD_tools.miniAOD_customizeAllMC (   process)

Definition at line 610 of file miniAOD_tools.py.

References miniAOD_customizeCommon(), and miniAOD_customizeMC().

610 def miniAOD_customizeAllMC(process):
611  miniAOD_customizeCommon(process)
612  miniAOD_customizeMC(process)
613  return process
614 
def miniAOD_customizeCommon(process)
def miniAOD_customizeAllMC(process)
def miniAOD_customizeMC(process)

◆ miniAOD_customizeAllMCFastSim()

def miniAOD_tools.miniAOD_customizeAllMCFastSim (   process)

Definition at line 615 of file miniAOD_tools.py.

References miniAOD_customizeCommon(), isolatedTracks_cfi.miniAOD_customizeIsolatedTracksFastSim(), miniAOD_customizeMC(), and metFilterPaths_cff.miniAOD_customizeMETFiltersFastSim().

615 def miniAOD_customizeAllMCFastSim(process):
616  miniAOD_customizeCommon(process)
617  miniAOD_customizeMC(process)
618  from PhysicsTools.PatAlgos.slimming.metFilterPaths_cff import miniAOD_customizeMETFiltersFastSim
619  process = miniAOD_customizeMETFiltersFastSim(process)
620  from PhysicsTools.PatAlgos.slimming.isolatedTracks_cfi import miniAOD_customizeIsolatedTracksFastSim
621  process = miniAOD_customizeIsolatedTracksFastSim(process)
622  process.patMuons.addTriggerMatching = False
623  # Disable pixelClusterTagInfos in FastSim (no siPixelCluster available)
624  from Configuration.Eras.Modifier_fastSim_cff import fastSim
625  fastSim.toModify(process.patJets, addTagInfos = cms.bool(False) )
626  fastSim.toModify(process.slimmedJetsNoDeepFlavour, dropTagInfos = cms.string('1') )
627  fastSim.toModify(process.updatedPatJetsSlimmedDeepFlavour, addTagInfos = cms.bool(False) )
628  fastSim.toModify(process.updatedPatJetsTransientCorrectedSlimmedDeepFlavour, addTagInfos = cms.bool(False) )
629 
630  return process
631 
def miniAOD_customizeCommon(process)
def miniAOD_customizeMETFiltersFastSim(process)
def miniAOD_customizeAllMCFastSim(process)
def miniAOD_customizeIsolatedTracksFastSim(process)
def miniAOD_customizeMC(process)

◆ miniAOD_customizeCommon()

def miniAOD_tools.miniAOD_customizeCommon (   process)

Definition at line 11 of file miniAOD_tools.py.

References boostedHPSPFTaus_cfi.addBoostedTaus(), helpers.addToProcessAndTask(), applyDeepBtagging_cff.applyDeepBtagging(), applySubstructure_cff.applySubstructure(), clone(), helpers.getPatAlgosToolsTask(), egmIsolationsPUPPI_cfi.makeInputForPUPPIIsolationEgm(), muonIsolationsPUPPI_cfi.makeInputForPUPPIIsolationMuon(), egammaObjectModifications_tools.makeVIDBitsModifier(), runMETCorrectionsAndUncertainties.runMetCorAndUncForMiniAODProduction(), vid_id_tools.setupAllVIDIdsInModule(), str, trigTools.switchOnTriggerStandAlone, vid_id_tools.switchOnVIDElectronIdProducer(), and vid_id_tools.switchOnVIDPhotonIdProducer().

Referenced by miniAOD_customizeAllData(), miniAOD_customizeAllMC(), and miniAOD_customizeAllMCFastSim().

11 def miniAOD_customizeCommon(process):
12  process.patMuons.isoDeposits = cms.PSet()
13  process.patElectrons.isoDeposits = cms.PSet()
14  process.patTaus.isoDeposits = cms.PSet()
15  process.patPhotons.isoDeposits = cms.PSet()
16  #
17  process.patMuons.embedTrack = True # used for IDs
18  process.patMuons.embedCombinedMuon = True # used for IDs
19  process.patMuons.embedMuonBestTrack = True # used for IDs
20  process.patMuons.embedStandAloneMuon = True # maybe?
21  process.patMuons.embedPickyMuon = False # no, use best track
22  process.patMuons.embedTpfmsMuon = False # no, use best track
23  process.patMuons.embedDytMuon = False # no, use best track
24  process.patMuons.addPuppiIsolation = cms.bool(True)
25  process.patMuons.puppiIsolationChargedHadrons = cms.InputTag("muonPUPPIIsolation","h+-DR040-ThresholdVeto000-ConeVeto000")
26  process.patMuons.puppiIsolationNeutralHadrons = cms.InputTag("muonPUPPIIsolation","h0-DR040-ThresholdVeto000-ConeVeto001")
27  process.patMuons.puppiIsolationPhotons = cms.InputTag("muonPUPPIIsolation","gamma-DR040-ThresholdVeto000-ConeVeto001")
28  process.patMuons.puppiNoLeptonsIsolationChargedHadrons = cms.InputTag("muonPUPPINoLeptonsIsolation","h+-DR040-ThresholdVeto000-ConeVeto000")
29  process.patMuons.puppiNoLeptonsIsolationNeutralHadrons = cms.InputTag("muonPUPPINoLeptonsIsolation","h0-DR040-ThresholdVeto000-ConeVeto001")
30  process.patMuons.puppiNoLeptonsIsolationPhotons = cms.InputTag("muonPUPPINoLeptonsIsolation","gamma-DR040-ThresholdVeto000-ConeVeto001")
31 
32  process.patMuons.computeMiniIso = True
33  process.patMuons.computeMuonIDMVA = True
34  process.patMuons.computeSoftMuonMVA = True
35 
36  process.patMuons.addTriggerMatching = True
37  from Configuration.Eras.Modifier_run2_muon_2016_cff import run2_muon_2016
38  from Configuration.Eras.Modifier_run2_muon_2017_cff import run2_muon_2017
39  from Configuration.Eras.Modifier_run2_muon_2018_cff import run2_muon_2018
40  run2_muon_2016.toModify( process.patMuons, effectiveAreaVec = [0.0735,0.0619,0.0465,0.0433,0.0577])
41  run2_muon_2017.toModify( process.patMuons, effectiveAreaVec = [0.0566, 0.0562, 0.0363, 0.0119, 0.0064])
42  run2_muon_2018.toModify( process.patMuons, effectiveAreaVec = [0.0566, 0.0562, 0.0363, 0.0119, 0.0064])
43 
44  process.patMuons.computePuppiCombinedIso = True
45  #
46  # disable embedding of electron and photon associated objects already stored by the ReducedEGProducer
47  process.patElectrons.embedGsfElectronCore = False
48  process.patElectrons.embedSuperCluster = False
49  process.patElectrons.embedPflowSuperCluster = False
50  process.patElectrons.embedSeedCluster = False
51  process.patElectrons.embedBasicClusters = False
52  process.patElectrons.embedPreshowerClusters = False
53  process.patElectrons.embedPflowBasicClusters = False
54  process.patElectrons.embedPflowPreshowerClusters = False
55  process.patElectrons.embedRecHits = False
56  process.patElectrons.electronSource = cms.InputTag("reducedEgamma","reducedGedGsfElectrons")
57  process.patElectrons.usePfCandidateMultiMap = True
58  process.patElectrons.pfCandidateMultiMap = cms.InputTag("reducedEgamma","reducedGsfElectronPfCandMap")
59  process.patElectrons.electronIDSources = cms.PSet()
60 
61  from Configuration.Eras.Modifier_run2_miniAOD_80XLegacy_cff import run2_miniAOD_80XLegacy
62  from Configuration.Eras.Modifier_run2_miniAOD_94XFall17_cff import run2_miniAOD_94XFall17
63  (run2_miniAOD_80XLegacy | run2_miniAOD_94XFall17).toModify(process.patElectrons,
64  addPFClusterIso = True,
65  ecalPFClusterIsoMap = "reducedEgamma:eleEcalPFClusIso",
66  hcalPFClusterIsoMap = "reducedEgamma:eleHcalPFClusIso")
67 
68  #add puppi isolation in miniAOD
69  process.patElectrons.addPuppiIsolation = cms.bool(True)
70  process.patElectrons.puppiIsolationChargedHadrons = cms.InputTag("egmElectronPUPPIIsolation","h+-DR030-BarVeto000-EndVeto001")
71  process.patElectrons.puppiIsolationNeutralHadrons = cms.InputTag("egmElectronPUPPIIsolation","h0-DR030-BarVeto000-EndVeto000")
72  process.patElectrons.puppiIsolationPhotons = cms.InputTag("egmElectronPUPPIIsolation","gamma-DR030-BarVeto000-EndVeto008")
73  process.patElectrons.puppiNoLeptonsIsolationChargedHadrons = cms.InputTag("egmElectronPUPPINoLeptonsIsolation","h+-DR030-BarVeto000-EndVeto001")
74  process.patElectrons.puppiNoLeptonsIsolationNeutralHadrons = cms.InputTag("egmElectronPUPPINoLeptonsIsolation","h0-DR030-BarVeto000-EndVeto000")
75  process.patElectrons.puppiNoLeptonsIsolationPhotons = cms.InputTag("egmElectronPUPPINoLeptonsIsolation","gamma-DR030-BarVeto000-EndVeto008")
76 
77  process.patElectrons.computeMiniIso = cms.bool(True)
78 
79  process.elPFIsoDepositChargedPAT.src = cms.InputTag("reducedEgamma","reducedGedGsfElectrons")
80  process.elPFIsoDepositChargedAllPAT.src = cms.InputTag("reducedEgamma","reducedGedGsfElectrons")
81  process.elPFIsoDepositNeutralPAT.src = cms.InputTag("reducedEgamma","reducedGedGsfElectrons")
82  process.elPFIsoDepositGammaPAT.src = cms.InputTag("reducedEgamma","reducedGedGsfElectrons")
83  process.elPFIsoDepositPUPAT.src = cms.InputTag("reducedEgamma","reducedGedGsfElectrons")
84  #
85  process.patPhotons.embedSuperCluster = False
86  process.patPhotons.embedSeedCluster = False
87  process.patPhotons.embedBasicClusters = False
88  process.patPhotons.embedPreshowerClusters = False
89  process.patPhotons.embedRecHits = False
90 
91  #add puppi isolation in miniAOD
92  process.patPhotons.addPuppiIsolation = cms.bool(True)
93  process.patPhotons.puppiIsolationChargedHadrons = cms.InputTag("egmPhotonPUPPIIsolation","h+-DR030-")
94  process.patPhotons.puppiIsolationNeutralHadrons = cms.InputTag("egmPhotonPUPPIIsolation","h0-DR030-")
95  process.patPhotons.puppiIsolationPhotons = cms.InputTag("egmPhotonPUPPIIsolation","gamma-DR030-")
96 
97  (run2_miniAOD_80XLegacy | run2_miniAOD_94XFall17).toModify(process.patPhotons,
98  addPFClusterIso = True,
99  ecalPFClusterIsoMap = "reducedEgamma:phoEcalPFClusIso",
100  hcalPFClusterIsoMap = "reducedEgamma:phoHcalPFClusIso")
101  #the 80X legacy customsations are done in ootPhotonProducer for OOT photons
102  run2_miniAOD_94XFall17.toModify(process.patOOTPhotons,
103  addPFClusterIso = True,
104  ecalPFClusterIsoMap = "reducedEgamma:ootPhoEcalPFClusIso",
105  hcalPFClusterIsoMap = "reducedEgamma:ootPhoHcalPFClusIso")
106 
107 
108  process.patPhotons.photonSource = cms.InputTag("reducedEgamma","reducedGedPhotons")
109  process.patPhotons.electronSource = cms.InputTag("reducedEgamma","reducedGedGsfElectrons")
110 
111  process.phPFIsoDepositChargedPAT.src = cms.InputTag("reducedEgamma","reducedGedPhotons")
112  process.phPFIsoDepositChargedAllPAT.src = cms.InputTag("reducedEgamma","reducedGedPhotons")
113  process.phPFIsoDepositNeutralPAT.src = cms.InputTag("reducedEgamma","reducedGedPhotons")
114  process.phPFIsoDepositGammaPAT.src = cms.InputTag("reducedEgamma","reducedGedPhotons")
115  process.phPFIsoDepositPUPAT.src = cms.InputTag("reducedEgamma","reducedGedPhotons")
116  #
117  process.patOOTPhotons.photonSource = cms.InputTag("reducedEgamma","reducedOOTPhotons")
118  process.patOOTPhotons.electronSource = cms.InputTag("reducedEgamma","reducedGedGsfElectrons")
119  #
120  process.selectedPatJets.cut = cms.string("pt > 15")
121  process.selectedPatMuons.cut = cms.string("pt > 5 || isPFMuon || (pt > 3 && (isGlobalMuon || isStandAloneMuon || numberOfMatches > 0 || muonID('RPCMuLoose')))")
122 
123  from Configuration.Eras.Modifier_phase2_muon_cff import phase2_muon
124  phase2_muon.toModify(process.selectedPatMuons, cut = "pt > 5 || isPFMuon || (pt > 3 && (isGlobalMuon || isStandAloneMuon || numberOfMatches > 0 || muonID('RPCMuLoose') || muonID('ME0MuonArbitrated') || muonID('GEMMuonArbitrated')) )")
125  from Configuration.ProcessModifiers.pp_on_AA_cff import pp_on_AA
126  pp_on_AA.toModify(process.selectedPatMuons, cut = "pt > 5 || isPFMuon || (pt > 1.2 && (isGlobalMuon || isStandAloneMuon) )")
127  from Configuration.Eras.Modifier_run3_upc_cff import run3_upc
128  run3_upc.toModify(process.selectedPatMuons, cut = "")
129  from Configuration.Eras.Modifier_ppRef_2024_cff import ppRef_2024
130  ppRef_2024.toModify(process.selectedPatMuons, cut = "pt > 5 || isPFMuon || isTrackerMuon || (pt > 1.2 && (isGlobalMuon || isStandAloneMuon))")
131 
132  process.selectedPatElectrons.cut = cms.string("")
133  process.selectedPatTaus.cut = cms.string("pt > 18. && tauID('decayModeFindingNewDMs')> 0.5")
134  process.selectedPatPhotons.cut = cms.string("")
135 
136  _dummyPatJets = process.selectedPatJets.clone(cut = "pt < 0")
137  task = getPatAlgosToolsTask(process)
138 
139  def _applySubstructure(process):
140  from PhysicsTools.PatAlgos.tools.jetTools import addJetCollection
141 
142  from PhysicsTools.PatAlgos.slimming.applySubstructure_cff import applySubstructure
143  applySubstructure( process )
144  (~pp_on_AA).toModify(process, _applySubstructure)
145 
146  pp_on_AA.toModify(process, func = lambda p: addToProcessAndTask('slimmedJets', p.selectedPatJets.clone(), p, task))
147  pp_on_AA.toModify(process, func = lambda p: addToProcessAndTask('slimmedJetsAK8', _dummyPatJets.clone(), p, task))
148 
149  #
150  from PhysicsTools.PatAlgos.tools.trigTools import switchOnTriggerStandAlone
151  switchOnTriggerStandAlone( process, outputModule = '' )
152  process.patTrigger.packTriggerPathNames = cms.bool(True)
153  #
154  # apply type I + other PFMEt corrections to pat::MET object
155  # and estimate systematic uncertainties on MET
156 
157  from PhysicsTools.PatUtils.tools.runMETCorrectionsAndUncertainties import runMetCorAndUncForMiniAODProduction
158  runMetCorAndUncForMiniAODProduction(process, metType="PF",
159  jetCollUnskimmed="patJets")
160 
161  #caloMET computation
162  from PhysicsTools.PatAlgos.tools.metTools import addMETCollection
163  addMETCollection(process,
164  labelName = "patCaloMet",
165  metSource = "caloMetM"
166  )
167 
168  #noHF pfMET =========
169 
170  process.noHFCands = cms.EDFilter("GenericPFCandidateSelector",
171  src=cms.InputTag("particleFlow"),
172  cut=cms.string("abs(pdgId)!=1 && abs(pdgId)!=2 && abs(eta)<3.0")
173  )
174  task.add(process.noHFCands)
175 
177  pfCandColl=cms.InputTag("noHFCands"),
178  recoMetFromPFCs=True, #needed for HF removal
179  jetSelection="pt>15 && abs(eta)<3.",
180  postfix="NoHF"
181  )
182 
183  process.load('PhysicsTools.PatAlgos.slimming.slimmedMETs_cfi')
184  task.add(process.slimmedMETs)
185  (~pp_on_AA).toModify(process.slimmedMETs, addDeepMETs = True)
186 
187  def _add_slimmedMETsNoHF(process):
188  addToProcessAndTask('slimmedMETsNoHF', process.slimmedMETs.clone(), process, task)
189  process.slimmedMETsNoHF.src = cms.InputTag("patMETsNoHF")
190  process.slimmedMETsNoHF.rawVariation = cms.InputTag("patPFMetNoHF")
191  process.slimmedMETsNoHF.t1Uncertainties = cms.InputTag("patPFMetT1%sNoHF")
192  process.slimmedMETsNoHF.t01Variation = cms.InputTag("patPFMetT0pcT1NoHF")
193  process.slimmedMETsNoHF.t1SmearedVarsAndUncs = cms.InputTag("patPFMetT1Smear%sNoHF")
194  process.slimmedMETsNoHF.tXYUncForRaw = cms.InputTag("patPFMetTxyNoHF")
195  process.slimmedMETsNoHF.tXYUncForT1 = cms.InputTag("patPFMetT1TxyNoHF")
196  process.slimmedMETsNoHF.tXYUncForT01 = cms.InputTag("patPFMetT0pcT1TxyNoHF")
197  process.slimmedMETsNoHF.tXYUncForT1Smear = cms.InputTag("patPFMetT1SmearTxyNoHF")
198  process.slimmedMETsNoHF.tXYUncForT01Smear = cms.InputTag("patPFMetT0pcT1SmearTxyNoHF")
199  del process.slimmedMETsNoHF.caloMET
200  (~pp_on_AA).toModify(process, _add_slimmedMETsNoHF)
201  # ================== NoHF pfMET
202 
203  # ================== CHSMET
204  process.load("CommonTools.ParticleFlow.pfCHS_cff")
205  task.add(process.pfCHS)
206 
207  from RecoMET.METProducers.pfMet_cfi import pfMet
208  process.pfMetCHS = pfMet.clone(src = 'pfCHS')
209  task.add(process.pfMetCHS)
210 
211  addMETCollection(process,
212  labelName = "patCHSMet",
213  metSource = "pfMetCHS"
214  )
215 
216  process.patCHSMet.computeMETSignificance = cms.bool(False)
217 
218  # ================== CHSMET
219 
220  # ================== TrkMET
221  process.TrkCands = chargedPackedCandsForTkMet.clone()
222  task.add(process.TrkCands)
223 
224  process.pfMetTrk = pfMet.clone(src = 'TrkCands')
225  task.add(process.pfMetTrk)
226 
227  addMETCollection(process,
228  labelName = "patTrkMet",
229  metSource = "pfMetTrk"
230  )
231 
232  process.patTrkMet.computeMETSignificance = cms.bool(False)
233 
234  # ================== TrkMET
235 
236  #HF jet shower shape
237  process.load('RecoJets.JetProducers.hfJetShowerShape_cfi')
238  task.add(process.hfJetShowerShape)
239 
240  process.patJets.userData.userFloats.src += [ 'hfJetShowerShape:sigmaEtaEta', 'hfJetShowerShape:sigmaPhiPhi']
241  process.patJets.userData.userInts.src += [ 'hfJetShowerShape:centralEtaStripSize', 'hfJetShowerShape:adjacentEtaStripsSize']
242 
243 
244  def _add_deepFlavour(process):
245  process.load('RecoBTag.Combined.deepFlavour_cff')
246  task.add(process.pfDeepCSVDiscriminatorsJetTags)
247  process.patJets.discriminatorSources.extend([
248  'pfDeepCSVDiscriminatorsJetTags:BvsAll',
249  'pfDeepCSVDiscriminatorsJetTags:CvsB',
250  'pfDeepCSVDiscriminatorsJetTags:CvsL',
251  ])
252 
253 
254  process.caloJetMap = cms.EDProducer("RecoJetDeltaRValueMapProducer",
255  src = process.patJets.jetSource,
256  matched = cms.InputTag("ak4CaloJets"),
257  distMax = cms.double(0.4),
258  values = cms.vstring('pt','emEnergyFraction'),
259  valueLabels = cms.vstring('pt','emEnergyFraction'),
260  lazyParser = cms.bool(True) )
261  task.add(process.caloJetMap)
262  process.patJets.userData.userFloats.src += [ 'caloJetMap:pt', 'caloJetMap:emEnergyFraction' ]
263 
264  pp_on_AA.toModify(process.patJets.userData.userInts, src = [] )
265  pp_on_AA.toModify(process.patJets.userData.userFloats, src = [] )
266 
267  #Muon object modifications
268  from PhysicsTools.PatAlgos.slimming.muonIsolationsPUPPI_cfi import makeInputForPUPPIIsolationMuon
270 
271  #EGM object modifications
272  from PhysicsTools.PatAlgos.slimming.egmIsolationsPUPPI_cfi import makeInputForPUPPIIsolationEgm
274  from RecoEgamma.EgammaTools.egammaObjectModificationsInMiniAOD_cff import egamma_modifications
275  process.slimmedElectrons.modifierConfig.modifications = egamma_modifications
276  process.slimmedPhotons.modifierConfig.modifications = egamma_modifications
277 
278  #VID Electron IDs
279  process.patElectrons.addElectronID = cms.bool(True)
280  electron_ids = ['RecoEgamma.ElectronIdentification.Identification.heepElectronID_HEEPV70_cff',
281  'RecoEgamma.ElectronIdentification.Identification.heepElectronID_HEEPV71_cff',
282  'RecoEgamma.ElectronIdentification.Identification.cutBasedElectronID_Fall17_94X_V1_cff',
283  'RecoEgamma.ElectronIdentification.Identification.cutBasedElectronID_Fall17_94X_V2_cff',
284  'RecoEgamma.ElectronIdentification.Identification.cutBasedElectronID_Winter22_122X_V1_cff',
285  'RecoEgamma.ElectronIdentification.Identification.mvaElectronID_Fall17_noIso_V1_cff',
286  'RecoEgamma.ElectronIdentification.Identification.mvaElectronID_Fall17_iso_V1_cff',
287  'RecoEgamma.ElectronIdentification.Identification.mvaElectronID_Fall17_noIso_V2_cff',
288  'RecoEgamma.ElectronIdentification.Identification.mvaElectronID_Fall17_iso_V2_cff',
289  'RecoEgamma.ElectronIdentification.Identification.cutBasedElectronID_Summer16_80X_V1_cff',
290  'RecoEgamma.ElectronIdentification.Identification.mvaElectronID_Spring16_GeneralPurpose_V1_cff',
291  'RecoEgamma.ElectronIdentification.Identification.mvaElectronID_Spring16_HZZ_V1_cff',
292  'RecoEgamma.ElectronIdentification.Identification.mvaElectronID_Summer16UL_ID_ISO_cff',
293  'RecoEgamma.ElectronIdentification.Identification.mvaElectronID_Summer17UL_ID_ISO_cff',
294  'RecoEgamma.ElectronIdentification.Identification.mvaElectronID_Summer18UL_ID_ISO_cff',
295  'RecoEgamma.ElectronIdentification.Identification.mvaElectronID_RunIIIWinter22_noIso_V1_cff',
296  'RecoEgamma.ElectronIdentification.Identification.mvaElectronID_RunIIIWinter22_iso_V1_cff',
297  'RecoEgamma.ElectronIdentification.Identification.mvaElectronID_Winter22_HZZ_V1_cff'
298  ]
299  switchOnVIDElectronIdProducer(process,DataFormat.MiniAOD, task)
300  process.egmGsfElectronIDs.physicsObjectSrc = cms.InputTag("reducedEgamma","reducedGedGsfElectrons")
301  process.electronMVAValueMapProducer.src = cms.InputTag('reducedEgamma','reducedGedGsfElectrons')
302 
303  # To use older DataFormats, the electronMVAValueMapProducer MUST take a updated electron collection
304  # such that the conversion variables are filled correctly.
305  process.load("RecoEgamma.EgammaTools.gedGsfElectronsTo106X_cff")
306  run2_miniAOD_80XLegacy.toModify(task, func=lambda t: t.add(process.gedGsfElectronsFrom80XTo106XTask))
307  run2_miniAOD_80XLegacy.toModify(process.electronMVAValueMapProducer,
308  keysForValueMaps = cms.InputTag('reducedEgamma','reducedGedGsfElectrons'),
309  src = cms.InputTag("gedGsfElectronsFrom80XTo106X"))
310 
311  run2_miniAOD_94XFall17.toModify(task, func=lambda t: t.add(process.gedGsfElectronsFrom94XTo106XTask))
312  run2_miniAOD_94XFall17.toModify(process.electronMVAValueMapProducer,
313  keysForValueMaps = cms.InputTag('reducedEgamma','reducedGedGsfElectrons'),
314  src = cms.InputTag("gedGsfElectronsFrom94XTo106X"))
315 
316  from Configuration.Eras.Modifier_pp_on_AA_2018_cff import pp_on_AA_2018
317  pp_on_AA_2018.toModify(task, func=lambda t: t.add(process.gedGsfElectronsFrom94XTo106XTask))
318  pp_on_AA_2018.toModify(process.electronMVAValueMapProducer,
319  keysForValueMaps = cms.InputTag('reducedEgamma','reducedGedGsfElectrons'),
320  src = "gedGsfElectronsFrom94XTo106X")
321 
322  for idmod in electron_ids:
323  setupAllVIDIdsInModule(process,idmod,setupVIDElectronSelection,None,False,task)
324 
325  #VID Photon IDs
326  process.patPhotons.addPhotonID = cms.bool(True)
327  photon_ids = ['RecoEgamma.PhotonIdentification.Identification.cutBasedPhotonID_Fall17_94X_V1_TrueVtx_cff',
328  'RecoEgamma.PhotonIdentification.Identification.cutBasedPhotonID_Fall17_94X_V2_cff',
329  'RecoEgamma.PhotonIdentification.Identification.mvaPhotonID_Fall17_94X_V1p1_cff',
330  'RecoEgamma.PhotonIdentification.Identification.mvaPhotonID_Fall17_94X_V2_cff',
331  'RecoEgamma.PhotonIdentification.Identification.cutBasedPhotonID_Spring16_V2p2_cff',
332  'RecoEgamma.PhotonIdentification.Identification.mvaPhotonID_Spring16_nonTrig_V1_cff',
333  'RecoEgamma.PhotonIdentification.Identification.mvaPhotonID_Winter22_122X_V1_cff',
334  'RecoEgamma.PhotonIdentification.Identification.cutBasedPhotonID_RunIIIWinter22_122X_V1_cff']
335 
336  switchOnVIDPhotonIdProducer(process,DataFormat.AOD, task)
337  process.egmPhotonIDs.physicsObjectSrc = cms.InputTag("reducedEgamma","reducedGedPhotons")
338  process.photonMVAValueMapProducer.src = cms.InputTag('reducedEgamma','reducedGedPhotons')
339  for idmod in photon_ids:
340  setupAllVIDIdsInModule(process,idmod,setupVIDPhotonSelection,None,False,task)
341 
342  #add the cut base IDs bitmaps of which cuts passed
343  from RecoEgamma.EgammaTools.egammaObjectModifications_tools import makeVIDBitsModifier
344  egamma_modifications.append(makeVIDBitsModifier(process,"egmGsfElectronIDs","egmPhotonIDs"))
345 
346  #-- Adding boosted taus
347  from RecoTauTag.Configuration.boostedHPSPFTaus_cfi import addBoostedTaus
348  addBoostedTaus(process)
349  process.load("RecoTauTag.Configuration.RecoPFTauTag_cff")
350  process.load("RecoTauTag.Configuration.HPSPFTaus_cff")
351  #-- Adding customization for 94X 2017 legacy reMniAOD
352  _makePatTausTaskWithRetrainedMVATauID = process.makePatTausTask.copy()
353  _makePatTausTaskWithRetrainedMVATauID.add(process.hpsPFTauBasicDiscriminatorsTask,
354  process.hpsPFTauDiscriminationByIsolationMVArun2v1DBoldDMwLTTask,
355  process.hpsPFTauDiscriminationByIsolationMVArun2v1DBnewDMwLTTask,
356  process.hpsPFTauBasicDiscriminatorsdR03Task,
357  process.hpsPFTauDiscriminationByIsolationMVArun2v1DBdR03oldDMwLTTask,
358  process.hpsPFTauDiscriminationByMVA6rawElectronRejection,
359  process.hpsPFTauDiscriminationByMVA6ElectronRejection,
360  process.hpsPFTauDiscriminationByMuonRejection3)
361  from Configuration.ProcessModifiers.run2_miniAOD_UL_cff import run2_miniAOD_UL
362  (run2_miniAOD_94XFall17 | run2_miniAOD_UL).toReplaceWith(
363  process.makePatTausTask, _makePatTausTaskWithRetrainedMVATauID
364  )
365  #-- Adding DeepTauID
366  # deepTau v2p1 and v2p5
367  _updatedTauName = 'slimmedTausDeepIDsv2p1'
368  _noUpdatedTauName = 'slimmedTausNoDeepIDs'
369  import RecoTauTag.RecoTau.tools.runTauIdMVA as tauIdConfig
370  tauIdEmbedder = tauIdConfig.TauIDEmbedder(
371  process, debug = False,
372  originalTauName = _noUpdatedTauName,
373  updatedTauName = _updatedTauName,
374  postfix = 'ForMini',
375  toKeep = ['deepTau2017v2p1','deepTau2018v2p5']
376  )
377  from Configuration.Eras.Modifier_phase2_common_cff import phase2_common #Phase2 Tau MVA
378  _tauIds_phase2 = ['deepTau2026v2p5']
379  phase2_common.toModify(tauIdEmbedder.toKeep, func=lambda t:t.extend(_tauIds_phase2))
380  tauIdEmbedder.runTauID()
381  addToProcessAndTask(_noUpdatedTauName, process.slimmedTaus.clone(),process,task)
382  delattr(process, 'slimmedTaus')
383  process.slimmedTaus = getattr(process, _updatedTauName).clone()
384  process.rerunMvaIsolationTaskForMini.add(process.slimmedTaus)
385  task.add(process.rerunMvaIsolationTaskForMini)
386 
387  #-- Rerun tauID against dead ECal towers to taus for the various re-MiniAOD eras
388  # to enable default behoviour with leading track extrapolation to ECAL
389  _makePatTausTaskWithDeadECalVeto = process.makePatTausTask.copy()
390  _makePatTausTaskWithDeadECalVeto.add(
391  process.hpsPFTauDiscriminationByDeadECALElectronRejection
392  )
393  _run2_miniAOD_ANY = (run2_miniAOD_80XLegacy | run2_miniAOD_94XFall17 | run2_miniAOD_UL)
394  _run2_miniAOD_ANY.toReplaceWith(
395  process.makePatTausTask, _makePatTausTaskWithDeadECalVeto
396  )
397 
398  #-- Adding customization for 80X 2016 legacy reMiniAOD and 2018 heavy ions
399  _makePatTausTaskWithTauReReco = process.makePatTausTask.copy()
400  _makePatTausTaskWithTauReReco.add(process.PFTauTask)
401  (run2_miniAOD_80XLegacy | pp_on_AA).toReplaceWith(
402  process.makePatTausTask, _makePatTausTaskWithTauReReco
403  )
404 
405  # Adding puppi jets
406  process.load('CommonTools.PileupAlgos.Puppi_cff')
407  process.load('RecoJets.JetProducers.ak4PFJets_cfi')
408  from Configuration.Eras.Modifier_pA_2016_cff import pA_2016
409  from Configuration.Eras.Modifier_run3_miniAOD_12X_cff import run3_miniAOD_12X
410  _rerun_puppijets_task = task.copy()
411  _rerun_puppijets_task.add(process.puppi, process.ak4PFJetsPuppi)
412  (_run2_miniAOD_ANY | pA_2016 | pp_on_AA | run3_miniAOD_12X).toReplaceWith(task, _rerun_puppijets_task)
413 
414  from RecoJets.JetAssociationProducers.j2tParametersVX_cfi import j2tParametersVX
415  process.ak4PFJetsPuppiTracksAssociatorAtVertex = cms.EDProducer("JetTracksAssociatorAtVertex",
416  j2tParametersVX,
417  jets = cms.InputTag("ak4PFJetsPuppi")
418  )
419  task.add(process.ak4PFJetsPuppiTracksAssociatorAtVertex)
420  process.patJetPuppiCharge = cms.EDProducer("JetChargeProducer",
421  src = cms.InputTag("ak4PFJetsPuppiTracksAssociatorAtVertex"),
422  var = cms.string('Pt'),
423  exp = cms.double(1.0)
424  )
425  task.add(process.patJetPuppiCharge)
426 
427  def _add_jetsPuppi(process):
428  from PhysicsTools.PatAlgos.tools.jetTools import addJetCollection
429  noDeepFlavourDiscriminators = [x.value() if isinstance(x, cms.InputTag) else x for x in process.patJets.discriminatorSources
430  if (not "DeepFlavour" in str(x) and not "Transformer" in str(x))]
431  addJetCollection(process, postfix = "", labelName = 'Puppi', jetSource = cms.InputTag('ak4PFJetsPuppi'),
432  jetCorrections = ('AK4PFPuppi', ['L2Relative', 'L3Absolute'], ''),
433  pfCandidates = cms.InputTag("particleFlow"),
434  algo= 'AK', rParam = 0.4, btagDiscriminators = noDeepFlavourDiscriminators
435  )
436 
437  process.patJetGenJetMatchPuppi.matched = 'slimmedGenJets'
438 
439  process.patJetsPuppi.jetChargeSource = cms.InputTag("patJetPuppiCharge")
440 
441  process.selectedPatJetsPuppi.cut = cms.string("pt > 10")
442 
443  from PhysicsTools.PatAlgos.slimming.applyDeepBtagging_cff import applyDeepBtagging
444  applyDeepBtagging( process )
445 
446  process.slimmedJetsNoDeepFlavour.dropTagInfos = '0'
447  process.updatedPatJetsTransientCorrectedSlimmedDeepFlavour.addTagInfos = True
448  process.updatedPatJetsTransientCorrectedSlimmedDeepFlavour.tagInfoSources = ["pixelClusterTagInfos"]
449  _run2_miniAOD_ANY.toModify(process.updatedPatJetsTransientCorrectedSlimmedDeepFlavour, addTagInfos = False )
450  (~pp_on_AA).toModify(process, _add_jetsPuppi)
451 
452  pp_on_AA.toModify(process, func = lambda p: addToProcessAndTask('slimmedJetsPuppi', _dummyPatJets.clone(), p, task))
453 
454  # Embed pixelClusterTagInfos in slimmedJets
455  process.patJets.addTagInfos = True
456  process.patJets.tagInfoSources = ["pixelClusterTagInfos"]
457 
458  _run2_miniAOD_ANY.toModify(process.patJets, addTagInfos = False )
459 
460  from Configuration.Eras.Modifier_pp_on_AA_2018_cff import pp_on_AA_2018
461  pp_on_AA_2018.toModify(process.patJets, tagInfoSources = cms.VInputTag(["impactParameterTagInfos","secondaryVertexTagInfos"]) )
462 
463 
464  def _add_metPuppi(process):
465  process.load('RecoMET.METProducers.pfMetPuppi_cfi')
466  _rerun_puppimet_task = task.copy()
467  _rerun_puppimet_task.add(process.puppiNoLep, process.pfMetPuppi)
468  (_run2_miniAOD_ANY | pA_2016 | pp_on_AA | run3_miniAOD_12X).toReplaceWith(task, _rerun_puppimet_task)
469 
470  runMetCorAndUncForMiniAODProduction(process, metType="Puppi",
471  jetCollUnskimmed="slimmedJetsPuppi",
472  recoMetFromPFCs=True,
473  jetFlavor="AK4PFPuppi",
474  postfix="Puppi"
475  )
476  (~pp_on_AA).toModify(process, _add_metPuppi)
477 
478  process.load('PhysicsTools.PatAlgos.slimming.slimmedMETs_cfi')
479  task.add(process.slimmedMETs)
480 
481  def _add_slimmedMETsPuppi(process):
482  addToProcessAndTask('slimmedMETsPuppi', process.slimmedMETs.clone(), process, task)
483  process.slimmedMETsPuppi.src = cms.InputTag("patMETsPuppi")
484  process.slimmedMETsPuppi.rawVariation = cms.InputTag("patPFMetPuppi")
485  process.slimmedMETsPuppi.t1Uncertainties = cms.InputTag("patPFMetT1%sPuppi")
486  process.slimmedMETsPuppi.t01Variation = cms.InputTag("patPFMetT0pcT1Puppi")
487  process.slimmedMETsPuppi.t1SmearedVarsAndUncs = cms.InputTag("patPFMetT1Smear%sPuppi")
488  process.slimmedMETsPuppi.tXYUncForRaw = cms.InputTag("patPFMetTxyPuppi")
489  process.slimmedMETsPuppi.tXYUncForT1 = cms.InputTag("patPFMetT1TxyPuppi")
490  process.slimmedMETsPuppi.tXYUncForT01 = cms.InputTag("patPFMetT0pcT1TxyPuppi")
491  process.slimmedMETsPuppi.tXYUncForT1Smear = cms.InputTag("patPFMetT1SmearTxyPuppi")
492  process.slimmedMETsPuppi.tXYUncForT01Smear = cms.InputTag("patPFMetT0pcT1SmearTxyPuppi")
493  del process.slimmedMETsPuppi.caloMET
494  (~pp_on_AA).toModify(process, _add_slimmedMETsPuppi)
495 
496  def _add_deepMET(process):
497  from RecoMET.METPUSubtraction.deepMETProducer_cff import deepMETsResolutionTune, deepMETsResponseTune
498 
499  addToProcessAndTask('deepMETsResolutionTune', deepMETsResolutionTune, process, task)
500  addToProcessAndTask('deepMETsResponseTune', deepMETsResponseTune, process, task)
501  (~pp_on_AA).toModify(process, _add_deepMET)
502 
503  # add DetIdAssociatorRecords to EventSetup (for isolatedTracks)
504  process.load("TrackingTools.TrackAssociator.DetIdAssociatorESProducer_cff")
505 
506  # EGamma objects from HGCal are not yet in GED
507  # so add companion collections for Phase-II MiniAOD production
508  from Configuration.Eras.Modifier_phase2_hgcal_cff import phase2_hgcal
509  process.load("RecoEgamma.EgammaTools.slimmedEgammaHGC_cff")
510  phase2_hgcal.toModify(task, func=lambda t: t.add(process.slimmedEgammaHGCTask))
511 
512  # L1 pre-firing weights for 2016, 2017, and 2018
513  from Configuration.Eras.Modifier_run2_L1prefiring_cff import run2_L1prefiring
514  from Configuration.Eras.Modifier_stage2L1Trigger_cff import stage2L1Trigger
515  from Configuration.Eras.Modifier_stage2L1Trigger_2017_cff import stage2L1Trigger_2017
516  from Configuration.Eras.Modifier_stage2L1Trigger_2018_cff import stage2L1Trigger_2018
517  from Configuration.Eras.Modifier_tracker_apv_vfp30_2016_cff import tracker_apv_vfp30_2016
518  if not hasattr(process,'prefiringweight'):
519  process.load("PhysicsTools.PatUtils.L1PrefiringWeightProducer_cff")
520  (stage2L1Trigger & tracker_apv_vfp30_2016).toModify(process.prefiringweight, DataEraECAL = "UL2016preVFP", DataEraMuon = "2016preVFP" )
521  (stage2L1Trigger & ~tracker_apv_vfp30_2016).toModify(process.prefiringweight, DataEraECAL = "UL2016postVFP", DataEraMuon = "2016postVFP" )
522  stage2L1Trigger_2017.toModify(process.prefiringweight, DataEraECAL = "UL2017BtoF", DataEraMuon = "20172018")
523  stage2L1Trigger_2018.toModify(process.prefiringweight, DataEraECAL = "None", DataEraMuon = "20172018")
524  run2_L1prefiring.toModify(task, func=lambda t: t.add(process.prefiringweight))
525 
526  from PhysicsTools.PatAlgos.producersHeavyIons.heavyIonJetSetup import removeL1FastJetJECs
527  pp_on_AA.toModify(process, removeL1FastJetJECs)
528 
def makeInputForPUPPIIsolationMuon(process)
def miniAOD_customizeCommon(process)
def applySubstructure(process, postfix="")
def switchOnVIDElectronIdProducer(process, dataFormat, task=None)
Electrons.
Definition: vid_id_tools.py:66
def addToProcessAndTask(label, module, process, task)
Definition: helpers.py:28
def makeInputForPUPPIIsolationEgm(process)
def setupAllVIDIdsInModule(process, id_module_name, setupFunction, patProducer=None, addUserData=True, task=None)
Definition: vid_id_tools.py:49
def runMetCorAndUncForMiniAODProduction(process, metType="PF", jetCollUnskimmed="patJets", photonColl="selectedPatPhotons", electronColl="selectedPatElectrons", muonColl="selectedPatMuons", tauColl="selectedPatTaus", pfCandColl="particleFlow", jetCleaning="LepClean", jetSelection="pt>15 && abs(eta)<9.9", jecUnFile="", jetFlavor="AK4PFchs", recoMetFromPFCs=False, postfix="")
def applyDeepBtagging(process, postfix="")
switchOnTriggerStandAlone
Definition: trigTools.py:283
def makeVIDBitsModifier(process, eleVIDModuleName, phoVIDModuleName)
TEveGeoShape * clone(const TEveElement *element, TEveElement *parent)
Definition: eve_macros.cc:135
def getPatAlgosToolsTask(process)
Definition: helpers.py:13
def switchOnVIDPhotonIdProducer(process, dataFormat, task=None)
Photons.
#define str(s)

◆ miniAOD_customizeData()

def miniAOD_tools.miniAOD_customizeData (   process)

Definition at line 590 of file miniAOD_tools.py.

References helpers.getPatAlgosToolsTask().

Referenced by customizeMiniAOD_MuEGFixMoriond2017.customizeAll(), and miniAOD_customizeAllData().

590 def miniAOD_customizeData(process):
591  from PhysicsTools.PatAlgos.tools.coreTools import runOnData
592  runOnData( process, outputModules = [] )
593  process.load("RecoPPS.Local.ctppsLocalTrackLiteProducer_cff")
594  process.load("RecoPPS.ProtonReconstruction.ctppsProtons_cff")
595  process.load("Geometry.VeryForwardGeometry.geometryRPFromDB_cfi")
596  process.load('L1Trigger.L1TGlobal.simGtExtFakeProd_cfi')
597  task = getPatAlgosToolsTask(process)
598  task.add(process.simGtExtUnprefireable)
599  from Configuration.Eras.Modifier_ctpps_cff import ctpps
600  ctpps.toModify(task, func=lambda t: t.add(process.ctppsLocalTrackLiteProducer))
601  ctpps.toModify(task, func=lambda t: t.add(process.ctppsProtons))
602  from Configuration.ProcessModifiers.run2_miniAOD_UL_cff import run2_miniAOD_UL
603  run2_miniAOD_UL.toModify(task, func=lambda t: t.add(process.simGtExtUnprefireable))
604 
def miniAOD_customizeData(process)
def getPatAlgosToolsTask(process)
Definition: helpers.py:13

◆ miniAOD_customizeMC()

def miniAOD_tools.miniAOD_customizeMC (   process)

Definition at line 529 of file miniAOD_tools.py.

References helpers.getPatAlgosToolsTask().

Referenced by miniAOD_customizeAllMC(), and miniAOD_customizeAllMCFastSim().

529 def miniAOD_customizeMC(process):
530  task = getPatAlgosToolsTask(process)
531  #GenJetFlavourInfos
532  process.load("PhysicsTools.JetMCAlgos.HadronAndPartonSelector_cfi")
533  task.add(process.selectedHadronsAndPartons)
534  task.add(process.selectedHadronsAndPartonsForGenJetsFlavourInfos)
535 
536  process.load("PhysicsTools.JetMCAlgos.AK4GenJetFlavourInfos_cfi")
537  task.add(process.ak4GenJetFlavourInfos)
538 
539  process.load('PhysicsTools.PatAlgos.slimming.slimmedGenJetsFlavourInfos_cfi')
540  task.add(process.slimmedGenJetsFlavourInfos)
541 
542  #slimmed pileup information
543  process.load('PhysicsTools.PatAlgos.slimming.slimmedAddPileupInfo_cfi')
544  task.add(process.slimmedAddPileupInfo)
545 
546  process.muonMatch.matched = "prunedGenParticles"
547  process.electronMatch.matched = "prunedGenParticles"
548  process.electronMatch.src = cms.InputTag("reducedEgamma","reducedGedGsfElectrons")
549  process.photonMatch.matched = "prunedGenParticles"
550  process.photonMatch.src = cms.InputTag("reducedEgamma","reducedGedPhotons")
551  process.ootPhotonMatch.matched = "prunedGenParticles"
552  process.ootPhotonMatch.src = cms.InputTag("reducedEgamma","reducedOOTPhotons")
553  process.tauMatch.matched = "prunedGenParticles"
554  process.tauGenJets.GenParticles = "prunedGenParticles"
555  #Boosted taus
556  process.tauMatchBoosted.matched = "prunedGenParticles"
557  process.tauGenJetsBoosted.GenParticles = "prunedGenParticles"
558  process.patJetPartons.particles = "genParticles"
559  process.patJetPartonMatch.matched = "prunedGenParticles"
560  pp_on_AA.toModify(process.patJetPartonMatch, matched = "hiSignalGenParticles")
561  from Configuration.ProcessModifiers.genJetSubEvent_cff import genJetSubEvent
562  genJetSubEvent.toModify(process.patJetPartonMatch, matched = "cleanedPartons")
563  process.patJetPartonMatch.mcStatus = [ 3, 23 ]
564  process.patJetGenJetMatch.matched = "slimmedGenJets"
565  (~pp_on_AA).toModify(process, patJetGenJetMatchAK8Puppi = dict(matched = "slimmedGenJetsAK8"))
566  process.patMuons.embedGenMatch = False
567  process.patElectrons.embedGenMatch = False
568  process.patPhotons.embedGenMatch = False
569  process.patOOTPhotons.embedGenMatch = False
570  process.patTaus.embedGenMatch = False
571  process.patTausBoosted.embedGenMatch = False
572  process.patJets.embedGenPartonMatch = False
573  #also jet flavour must be switched
574  process.patJetFlavourAssociation.rParam = 0.4
575 
576  from PhysicsTools.PatAlgos.producersHeavyIons.heavyIonJetSetup import removeJECsForMC
577  pp_on_AA.toModify(process, removeJECsForMC)
578  pp_on_AA.toReplaceWith(task,task.copyAndExclude([process.slimmedGenJetsFlavourInfos]))
579 
580 
def miniAOD_customizeMC(process)
def getPatAlgosToolsTask(process)
Definition: helpers.py:13

◆ miniAOD_customizeOutput()

def miniAOD_tools.miniAOD_customizeOutput (   out)

Definition at line 581 of file miniAOD_tools.py.

Referenced by ConfigBuilder.ConfigBuilder.addOutput().

581 def miniAOD_customizeOutput(out):
582  from PhysicsTools.PatAlgos.slimming.MicroEventContent_cff import MiniAODOverrideBranchesSplitLevel
583  out.overrideBranchesSplitLevel = MiniAODOverrideBranchesSplitLevel
584  out.splitLevel = cms.untracked.int32(0)
585  out.dropMetaData = cms.untracked.string('ALL')
586  out.fastCloning= cms.untracked.bool(False)
587  out.overrideInputFileSplitLevels = cms.untracked.bool(True)
588  out.compressionAlgorithm = cms.untracked.string('LZMA')
589 
def miniAOD_customizeOutput(out)