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miniAOD_tools.py
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1 import FWCore.ParameterSet.Config as cms
2 
4 
5 from PhysicsTools.PatAlgos.tools.helpers import getPatAlgosToolsTask, addToProcessAndTask
6 
8  process.patMuons.isoDeposits = cms.PSet()
9  process.patElectrons.isoDeposits = cms.PSet()
10  process.patTaus.isoDeposits = cms.PSet()
11  process.patPhotons.isoDeposits = cms.PSet()
12  #
13  process.patMuons.embedTrack = True # used for IDs
14  process.patMuons.embedCombinedMuon = True # used for IDs
15  process.patMuons.embedMuonBestTrack = True # used for IDs
16  process.patMuons.embedStandAloneMuon = True # maybe?
17  process.patMuons.embedPickyMuon = False # no, use best track
18  process.patMuons.embedTpfmsMuon = False # no, use best track
19  process.patMuons.embedDytMuon = False # no, use best track
20  process.patMuons.addPuppiIsolation = cms.bool(True)
21  process.patMuons.puppiIsolationChargedHadrons = cms.InputTag("muonPUPPIIsolation","h+-DR040-ThresholdVeto000-ConeVeto000")
22  process.patMuons.puppiIsolationNeutralHadrons = cms.InputTag("muonPUPPIIsolation","h0-DR040-ThresholdVeto000-ConeVeto001")
23  process.patMuons.puppiIsolationPhotons = cms.InputTag("muonPUPPIIsolation","gamma-DR040-ThresholdVeto000-ConeVeto001")
24  process.patMuons.puppiNoLeptonsIsolationChargedHadrons = cms.InputTag("muonPUPPINoLeptonsIsolation","h+-DR040-ThresholdVeto000-ConeVeto000")
25  process.patMuons.puppiNoLeptonsIsolationNeutralHadrons = cms.InputTag("muonPUPPINoLeptonsIsolation","h0-DR040-ThresholdVeto000-ConeVeto001")
26  process.patMuons.puppiNoLeptonsIsolationPhotons = cms.InputTag("muonPUPPINoLeptonsIsolation","gamma-DR040-ThresholdVeto000-ConeVeto001")
27 
28  process.patMuons.computeMiniIso = True
29  process.patMuons.computeMuonMVA = True
30  process.patMuons.computeSoftMuonMVA = True
31 
32  process.patMuons.addTriggerMatching = True
33  from Configuration.ProcessModifiers.run2_miniAOD_UL_cff import run2_miniAOD_UL
34  from Configuration.Eras.Modifier_run2_muon_2016_cff import run2_muon_2016
35  from Configuration.Eras.Modifier_run2_muon_2017_cff import run2_muon_2017
36  from Configuration.Eras.Modifier_run2_muon_2018_cff import run2_muon_2018
37  run2_muon_2016.toModify( process.patMuons, effectiveAreaVec = [0.0735,0.0619,0.0465,0.0433,0.0577])
38  run2_muon_2017.toModify( process.patMuons, effectiveAreaVec = [0.0566, 0.0562, 0.0363, 0.0119, 0.0064])
39  run2_muon_2018.toModify( process.patMuons, effectiveAreaVec = [0.0566, 0.0562, 0.0363, 0.0119, 0.0064])
40  run2_muon_2016.toModify( process.patMuons, mvaTrainingFile = "RecoMuon/MuonIdentification/data/mu_2016_BDTG.weights.xml")
41  run2_miniAOD_UL.toModify( process.patMuons, getdBFromTrack = True)
42  process.patMuons.computePuppiCombinedIso = True
43  #
44  # disable embedding of electron and photon associated objects already stored by the ReducedEGProducer
45  process.patElectrons.embedGsfElectronCore = False ## process.patElectrons.embed in AOD externally stored gsf electron core
46  process.patElectrons.embedSuperCluster = False ## process.patElectrons.embed in AOD externally stored supercluster
47  process.patElectrons.embedPflowSuperCluster = False ## process.patElectrons.embed in AOD externally stored supercluster
48  process.patElectrons.embedSeedCluster = False ## process.patElectrons.embed in AOD externally stored the electron's seedcluster
49  process.patElectrons.embedBasicClusters = False ## process.patElectrons.embed in AOD externally stored the electron's basic clusters
50  process.patElectrons.embedPreshowerClusters = False ## process.patElectrons.embed in AOD externally stored the electron's preshower clusters
51  process.patElectrons.embedPflowBasicClusters = False ## process.patElectrons.embed in AOD externally stored the electron's pflow basic clusters
52  process.patElectrons.embedPflowPreshowerClusters = False ## process.patElectrons.embed in AOD externally stored the electron's pflow preshower clusters
53  process.patElectrons.embedRecHits = False ## process.patElectrons.embed in AOD externally stored the RecHits - can be called from the PATElectronProducer
54  process.patElectrons.electronSource = cms.InputTag("reducedEgamma","reducedGedGsfElectrons")
55  process.patElectrons.usePfCandidateMultiMap = True
56  process.patElectrons.pfCandidateMultiMap = cms.InputTag("reducedEgamma","reducedGsfElectronPfCandMap")
57  process.patElectrons.electronIDSources = cms.PSet()
58  run2_miniAOD_UL.toModify( process.patElectrons, getdBFromTrack = True)
59  from Configuration.Eras.Modifier_run2_miniAOD_80XLegacy_cff import run2_miniAOD_80XLegacy
60  run2_miniAOD_80XLegacy.toModify(process.patElectrons,
61  addPFClusterIso = cms.bool(True),
62  ecalPFClusterIsoMap = cms.InputTag("reducedEgamma", "eleEcalPFClusIso"),
63  hcalPFClusterIsoMap = cms.InputTag("reducedEgamma", "eleHcalPFClusIso"))
64  from Configuration.Eras.Modifier_run2_miniAOD_94XFall17_cff import run2_miniAOD_94XFall17
65  run2_miniAOD_94XFall17.toModify(process.patElectrons,
66  addPFClusterIso = cms.bool(True),
67  ecalPFClusterIsoMap = cms.InputTag("reducedEgamma", "eleEcalPFClusIso"),
68  hcalPFClusterIsoMap = cms.InputTag("reducedEgamma", "eleHcalPFClusIso"))
69 
70  #add puppi isolation in miniAOD
71  process.patElectrons.addPuppiIsolation = cms.bool(True)
72  process.patElectrons.puppiIsolationChargedHadrons = cms.InputTag("egmElectronPUPPIIsolation","h+-DR030-BarVeto000-EndVeto001")
73  process.patElectrons.puppiIsolationNeutralHadrons = cms.InputTag("egmElectronPUPPIIsolation","h0-DR030-BarVeto000-EndVeto000")
74  process.patElectrons.puppiIsolationPhotons = cms.InputTag("egmElectronPUPPIIsolation","gamma-DR030-BarVeto000-EndVeto008")
75  process.patElectrons.puppiNoLeptonsIsolationChargedHadrons = cms.InputTag("egmElectronPUPPINoLeptonsIsolation","h+-DR030-BarVeto000-EndVeto001")
76  process.patElectrons.puppiNoLeptonsIsolationNeutralHadrons = cms.InputTag("egmElectronPUPPINoLeptonsIsolation","h0-DR030-BarVeto000-EndVeto000")
77  process.patElectrons.puppiNoLeptonsIsolationPhotons = cms.InputTag("egmElectronPUPPINoLeptonsIsolation","gamma-DR030-BarVeto000-EndVeto008")
78 
79  process.patElectrons.computeMiniIso = cms.bool(True)
80 
81  process.elPFIsoDepositChargedPAT.src = cms.InputTag("reducedEgamma","reducedGedGsfElectrons")
82  process.elPFIsoDepositChargedAllPAT.src = cms.InputTag("reducedEgamma","reducedGedGsfElectrons")
83  process.elPFIsoDepositNeutralPAT.src = cms.InputTag("reducedEgamma","reducedGedGsfElectrons")
84  process.elPFIsoDepositGammaPAT.src = cms.InputTag("reducedEgamma","reducedGedGsfElectrons")
85  process.elPFIsoDepositPUPAT.src = cms.InputTag("reducedEgamma","reducedGedGsfElectrons")
86  #
87  process.patPhotons.embedSuperCluster = False ## whether to process.patPhotons.embed in AOD externally stored supercluster
88  process.patPhotons.embedSeedCluster = False ## process.patPhotons.embed in AOD externally stored the photon's seedcluster
89  process.patPhotons.embedBasicClusters = False ## process.patPhotons.embed in AOD externally stored the photon's basic clusters
90  process.patPhotons.embedPreshowerClusters = False ## process.patPhotons.embed in AOD externally stored the photon's preshower clusters
91  process.patPhotons.embedRecHits = False ## process.patPhotons.embed in AOD externally stored the RecHits - can be called from the PATPhotonProducer
92 
93  #add puppi isolation in miniAOD
94  process.patPhotons.addPuppiIsolation = cms.bool(True)
95  process.patPhotons.puppiIsolationChargedHadrons = cms.InputTag("egmPhotonPUPPIIsolation","h+-DR030-")
96  process.patPhotons.puppiIsolationNeutralHadrons = cms.InputTag("egmPhotonPUPPIIsolation","h0-DR030-")
97  process.patPhotons.puppiIsolationPhotons = cms.InputTag("egmPhotonPUPPIIsolation","gamma-DR030-")
98 
99  from Configuration.Eras.Modifier_run2_miniAOD_80XLegacy_cff import run2_miniAOD_80XLegacy
100  run2_miniAOD_80XLegacy.toModify(process.patPhotons,
101  addPFClusterIso = cms.bool(True),
102  ecalPFClusterIsoMap = cms.InputTag("reducedEgamma", "phoEcalPFClusIso"),
103  hcalPFClusterIsoMap = cms.InputTag("reducedEgamma", "phoHcalPFClusIso"))
104  from Configuration.Eras.Modifier_run2_miniAOD_94XFall17_cff import run2_miniAOD_94XFall17
105  run2_miniAOD_94XFall17.toModify(process.patPhotons,
106  addPFClusterIso = cms.bool(True),
107  ecalPFClusterIsoMap = cms.InputTag("reducedEgamma", "phoEcalPFClusIso"),
108  hcalPFClusterIsoMap = cms.InputTag("reducedEgamma", "phoHcalPFClusIso"))
109  #the 80X legacy customsations are done in ootPhotonProducer for OOT photons
110  run2_miniAOD_94XFall17.toModify(process.patOOTPhotons,
111  addPFClusterIso = cms.bool(True),
112  ecalPFClusterIsoMap = cms.InputTag("reducedEgamma", "ootPhoEcalPFClusIso"),
113  hcalPFClusterIsoMap = cms.InputTag("reducedEgamma", "ootPhoHcalPFClusIso"))
114 
115 
116  process.patPhotons.photonSource = cms.InputTag("reducedEgamma","reducedGedPhotons")
117  process.patPhotons.electronSource = cms.InputTag("reducedEgamma","reducedGedGsfElectrons")
118 
119  process.phPFIsoDepositChargedPAT.src = cms.InputTag("reducedEgamma","reducedGedPhotons")
120  process.phPFIsoDepositChargedAllPAT.src = cms.InputTag("reducedEgamma","reducedGedPhotons")
121  process.phPFIsoDepositNeutralPAT.src = cms.InputTag("reducedEgamma","reducedGedPhotons")
122  process.phPFIsoDepositGammaPAT.src = cms.InputTag("reducedEgamma","reducedGedPhotons")
123  process.phPFIsoDepositPUPAT.src = cms.InputTag("reducedEgamma","reducedGedPhotons")
124  #
125  process.patOOTPhotons.photonSource = cms.InputTag("reducedEgamma","reducedOOTPhotons")
126  process.patOOTPhotons.electronSource = cms.InputTag("reducedEgamma","reducedGedGsfElectrons")
127  #
128  process.selectedPatJets.cut = cms.string("pt > 10")
129  process.selectedPatMuons.cut = cms.string("pt > 5 || isPFMuon || (pt > 3 && (isGlobalMuon || isStandAloneMuon || numberOfMatches > 0 || muonID('RPCMuLoose')))")
130 
131  from Configuration.Eras.Modifier_phase2_muon_cff import phase2_muon
132  phase2_muon.toModify(process.selectedPatMuons, cut = "pt > 5 || isPFMuon || (pt > 3 && (isGlobalMuon || isStandAloneMuon || numberOfMatches > 0 || muonID('RPCMuLoose') || muonID('ME0MuonArbitrated') || muonID('GEMMuonArbitrated')) )")
133 
134  process.selectedPatElectrons.cut = cms.string("")
135  process.selectedPatTaus.cut = cms.string("pt > 18. && tauID('decayModeFindingNewDMs')> 0.5")
136  process.selectedPatPhotons.cut = cms.string("")
137 
138  from PhysicsTools.PatAlgos.tools.jetTools import addJetCollection
139 
140  from PhysicsTools.PatAlgos.slimming.applySubstructure_cff import applySubstructure
141  applySubstructure( process )
142 
143 
144  #
145  from PhysicsTools.PatAlgos.tools.trigTools import switchOnTriggerStandAlone
146  switchOnTriggerStandAlone( process, outputModule = '' )
147  process.patTrigger.packTriggerPathNames = cms.bool(True)
148  #
149  # apply type I + other PFMEt corrections to pat::MET object
150  # and estimate systematic uncertainties on MET
151 
152  from PhysicsTools.PatUtils.tools.runMETCorrectionsAndUncertainties import runMetCorAndUncForMiniAODProduction
153  runMetCorAndUncForMiniAODProduction(process, metType="PF",
154  jetCollUnskimmed="patJets")
155 
156  #caloMET computation
157  from PhysicsTools.PatAlgos.tools.metTools import addMETCollection
158  addMETCollection(process,
159  labelName = "patCaloMet",
160  metSource = "caloMetM"
161  )
162 
163  #noHF pfMET =========
164 
165  task = getPatAlgosToolsTask(process)
166 
167  process.noHFCands = cms.EDFilter("GenericPFCandidateSelector",
168  src=cms.InputTag("particleFlow"),
169  cut=cms.string("abs(pdgId)!=1 && abs(pdgId)!=2 && abs(eta)<3.0")
170  )
171  task.add(process.noHFCands)
172 
174  pfCandColl=cms.InputTag("noHFCands"),
175  recoMetFromPFCs=True, #needed for HF removal
176  jetSelection="pt>15 && abs(eta)<3.",
177  postfix="NoHF"
178  )
179 
180  process.load('PhysicsTools.PatAlgos.slimming.slimmedMETs_cfi')
181  task.add(process.slimmedMETs)
182 
183  addToProcessAndTask('slimmedMETsNoHF', process.slimmedMETs.clone(), process, task)
184  process.slimmedMETsNoHF.src = cms.InputTag("patMETsNoHF")
185  process.slimmedMETsNoHF.rawVariation = cms.InputTag("patPFMetNoHF")
186  process.slimmedMETsNoHF.t1Uncertainties = cms.InputTag("patPFMetT1%sNoHF")
187  process.slimmedMETsNoHF.t01Variation = cms.InputTag("patPFMetT0pcT1NoHF")
188  process.slimmedMETsNoHF.t1SmearedVarsAndUncs = cms.InputTag("patPFMetT1Smear%sNoHF")
189  process.slimmedMETsNoHF.tXYUncForRaw = cms.InputTag("patPFMetTxyNoHF")
190  process.slimmedMETsNoHF.tXYUncForT1 = cms.InputTag("patPFMetT1TxyNoHF")
191  process.slimmedMETsNoHF.tXYUncForT01 = cms.InputTag("patPFMetT0pcT1TxyNoHF")
192  process.slimmedMETsNoHF.tXYUncForT1Smear = cms.InputTag("patPFMetT1SmearTxyNoHF")
193  process.slimmedMETsNoHF.tXYUncForT01Smear = cms.InputTag("patPFMetT0pcT1SmearTxyNoHF")
194  del process.slimmedMETsNoHF.caloMET
195  # ================== NoHF pfMET
196 
197  # ================== CHSMET
198  process.CHSCands = cms.EDFilter("CandPtrSelector",
199  src=cms.InputTag("packedPFCandidates"),
200  cut=cms.string("fromPV(0) > 0")
201  )
202  task.add(process.CHSCands)
203 
204  process.pfMetCHS = cms.EDProducer("PFMETProducer",
205  src = cms.InputTag("CHSCands"),
206  alias = cms.string('pfMet'),
207  globalThreshold = cms.double(0.0),
208  calculateSignificance = cms.bool(False),
209  )
210  task.add(process.pfMetCHS)
211 
212  addMETCollection(process,
213  labelName = "patCHSMet",
214  metSource = "pfMetCHS"
215  )
216 
217  process.patCHSMet.computeMETSignificance = cms.bool(False)
218 
219  # ================== CHSMET
220 
221  # ================== TrkMET
222  process.TrkCands = cms.EDFilter("CandPtrSelector",
223  src=cms.InputTag("packedPFCandidates"),
224  cut=cms.string("charge()!=0 && pvAssociationQuality()>=4 && vertexRef().key()==0")
225  )
226  task.add(process.TrkCands)
227 
228  process.pfMetTrk = cms.EDProducer("PFMETProducer",
229  src = cms.InputTag("TrkCands"),
230  alias = cms.string('pfMet'),
231  globalThreshold = cms.double(0.0),
232  calculateSignificance = cms.bool(False),
233  )
234 
235  task.add(process.pfMetTrk)
236 
237  addMETCollection(process,
238  labelName = "patTrkMet",
239  metSource = "pfMetTrk"
240  )
241 
242  process.patTrkMet.computeMETSignificance = cms.bool(False)
243 
244  # ================== TrkMET
245 
246 
247  ## PU JetID
248  process.load("RecoJets.JetProducers.PileupJetID_cfi")
249  task.add(process.pileUpJetIDTask)
250 
251  process.patJets.userData.userFloats.src = [ cms.InputTag("pileupJetId:fullDiscriminant"), ]
252  process.patJets.userData.userInts.src = [ cms.InputTag("pileupJetId:fullId"), ]
253 
254  ## Quark Gluon Likelihood
255  process.load('RecoJets.JetProducers.QGTagger_cfi')
256  task.add(process.QGTaggerTask)
257 
258  process.patJets.userData.userFloats.src += [ cms.InputTag('QGTagger:qgLikelihood'), ]
259 
260  ## DeepCSV meta discriminators (simple arithmethic on output probabilities)
261  process.load('RecoBTag.Combined.deepFlavour_cff')
262  task.add(process.pfDeepCSVDiscriminatorsJetTags)
263  process.patJets.discriminatorSources.extend([
264  cms.InputTag('pfDeepCSVDiscriminatorsJetTags:BvsAll' ),
265  cms.InputTag('pfDeepCSVDiscriminatorsJetTags:CvsB' ),
266  cms.InputTag('pfDeepCSVDiscriminatorsJetTags:CvsL' ),
267  ])
268 
269  ## CaloJets
270  process.caloJetMap = cms.EDProducer("RecoJetDeltaRValueMapProducer",
271  src = process.patJets.jetSource,
272  matched = cms.InputTag("ak4CaloJets"),
273  distMax = cms.double(0.4),
274  values = cms.vstring('pt','emEnergyFraction'),
275  valueLabels = cms.vstring('pt','emEnergyFraction'),
276  lazyParser = cms.bool(True) )
277  task.add(process.caloJetMap)
278  process.patJets.userData.userFloats.src += [ cms.InputTag("caloJetMap:pt"), cms.InputTag("caloJetMap:emEnergyFraction") ]
279 
280  #Muon object modifications
281  from PhysicsTools.PatAlgos.slimming.muonIsolationsPUPPI_cfi import makeInputForPUPPIIsolationMuon
283 
284  #EGM object modifications
285  from PhysicsTools.PatAlgos.slimming.egmIsolationsPUPPI_cfi import makeInputForPUPPIIsolationEgm
287  from RecoEgamma.EgammaTools.egammaObjectModificationsInMiniAOD_cff import egamma_modifications
288  process.slimmedElectrons.modifierConfig.modifications = egamma_modifications
289  process.slimmedPhotons.modifierConfig.modifications = egamma_modifications
290 
291  #VID Electron IDs
292  process.patElectrons.addElectronID = cms.bool(True)
293  electron_ids = ['RecoEgamma.ElectronIdentification.Identification.heepElectronID_HEEPV70_cff',
294  'RecoEgamma.ElectronIdentification.Identification.heepElectronID_HEEPV71_cff',
295  'RecoEgamma.ElectronIdentification.Identification.cutBasedElectronID_Fall17_94X_V1_cff',
296  'RecoEgamma.ElectronIdentification.Identification.cutBasedElectronID_Fall17_94X_V2_cff',
297  'RecoEgamma.ElectronIdentification.Identification.mvaElectronID_Fall17_noIso_V1_cff',
298  'RecoEgamma.ElectronIdentification.Identification.mvaElectronID_Fall17_iso_V1_cff',
299  'RecoEgamma.ElectronIdentification.Identification.mvaElectronID_Fall17_noIso_V2_cff',
300  'RecoEgamma.ElectronIdentification.Identification.mvaElectronID_Fall17_iso_V2_cff',
301  'RecoEgamma.ElectronIdentification.Identification.cutBasedElectronID_Summer16_80X_V1_cff',
302  'RecoEgamma.ElectronIdentification.Identification.mvaElectronID_Spring16_GeneralPurpose_V1_cff',
303  'RecoEgamma.ElectronIdentification.Identification.mvaElectronID_Spring16_HZZ_V1_cff',
304  ]
305  switchOnVIDElectronIdProducer(process,DataFormat.MiniAOD, task)
306  process.egmGsfElectronIDs.physicsObjectSrc = cms.InputTag("reducedEgamma","reducedGedGsfElectrons")
307  process.electronMVAValueMapProducer.src = cms.InputTag('reducedEgamma','reducedGedGsfElectrons')
308 
309  # To use older DataFormats, the electronMVAValueMapProducer MUST take a updated electron collection
310  # such that the conversion variables are filled correctly.
311  process.load("RecoEgamma.EgammaTools.gedGsfElectronsTo106X_cff")
312  run2_miniAOD_80XLegacy.toModify(task, func=lambda t: t.add(process.gedGsfElectronsFrom80XTo106XTask))
313  run2_miniAOD_80XLegacy.toModify(process.electronMVAValueMapProducer,
314  keysForValueMaps = cms.InputTag('reducedEgamma','reducedGedGsfElectrons'),
315  src = cms.InputTag("gedGsfElectronsFrom80XTo106X"))
316 
317  run2_miniAOD_94XFall17.toModify(task, func=lambda t: t.add(process.gedGsfElectronsFrom94XTo106XTask))
318  run2_miniAOD_94XFall17.toModify(process.electronMVAValueMapProducer,
319  keysForValueMaps = cms.InputTag('reducedEgamma','reducedGedGsfElectrons'),
320  src = cms.InputTag("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  switchOnVIDPhotonIdProducer(process,DataFormat.AOD, task)
334  process.egmPhotonIDs.physicsObjectSrc = cms.InputTag("reducedEgamma","reducedGedPhotons")
335  process.photonMVAValueMapProducer.src = cms.InputTag('reducedEgamma','reducedGedPhotons')
336  for idmod in photon_ids:
337  setupAllVIDIdsInModule(process,idmod,setupVIDPhotonSelection,None,False,task)
338 
339  #add the cut base IDs bitmaps of which cuts passed
340  from RecoEgamma.EgammaTools.egammaObjectModifications_tools import makeVIDBitsModifier
341  egamma_modifications.append(makeVIDBitsModifier(process,"egmGsfElectronIDs","egmPhotonIDs"))
342 
343  #-- Adding boosted taus
344  from RecoTauTag.Configuration.boostedHPSPFTaus_cfi import addBoostedTaus
345  addBoostedTaus(process)
346  process.load("RecoTauTag.Configuration.RecoPFTauTag_cff")
347  process.load("RecoTauTag.Configuration.HPSPFTaus_cff")
348  #-- Adding customization for 94X 2017 legacy reMniAOD
349  from Configuration.Eras.Modifier_run2_miniAOD_94XFall17_cff import run2_miniAOD_94XFall17
350  _makePatTausTaskWithRetrainedMVATauID = process.makePatTausTask.copy()
351  _makePatTausTaskWithRetrainedMVATauID.add(process.hpsPFTauDiscriminationByIsolationMVArun2v1DBoldDMwLTTask,
352  process.hpsPFTauDiscriminationByIsolationMVArun2v1DBnewDMwLTTask,
353  process.hpsPFTauIsolationSums03Task,
354  process.hpsPFTauDiscriminationByIsolationMVArun2v1DBdR03oldDMwLTTask)
355  run2_miniAOD_94XFall17.toReplaceWith(
356  process.makePatTausTask, _makePatTausTaskWithRetrainedMVATauID
357  )
358  #-- Adding DeepTauID
359  # deepTau v2
360  _updatedTauName = 'slimmedTausDeepIDsv2'
361  _noUpdatedTauName = 'slimmedTausNoDeepIDs'
362  import RecoTauTag.RecoTau.tools.runTauIdMVA as tauIdConfig
363  tauIdEmbedder = tauIdConfig.TauIDEmbedder(
364  process, cms, debug = False,
365  updatedTauName = _updatedTauName,
366  toKeep = ['deepTau2017v2']
367  )
368  tauIdEmbedder.runTauID()
369  addToProcessAndTask(_noUpdatedTauName, process.slimmedTaus.clone(),process,task)
370  delattr(process, 'slimmedTaus')
371  process.deepTau2017v2.taus = _noUpdatedTauName
372  process.slimmedTaus = getattr(process, _updatedTauName).clone(
373  src = _noUpdatedTauName
374  )
375  process.deepTauIDTask = cms.Task(process.deepTau2017v2, process.slimmedTaus)
376  task.add(process.deepTauIDTask)
377 
378  # deepTau v2p1
379  _updatedTauNameNew = 'slimmedTausDeepIDsv2p1'
380  tauIdEmbedderNew = tauIdConfig.TauIDEmbedder(
381  process, cms, debug = False,
382  updatedTauName = _updatedTauNameNew,
383  toKeep = ['deepTau2017v2p1']
384  )
385  tauIdEmbedderNew.runTauID()
386  process.deepTau2017v2p1.taus = _noUpdatedTauName
387  deepTauIDTaskNew_ = cms.Task(process.deepTau2017v2p1,process.slimmedTaus)
388 
389  from Configuration.Eras.Modifier_run2_tau_ul_2016_cff import run2_tau_ul_2016
390  from Configuration.Eras.Modifier_run2_tau_ul_2018_cff import run2_tau_ul_2018
391  for era in [run2_miniAOD_UL,run2_tau_ul_2016,run2_tau_ul_2018]:
392  era.toReplaceWith(process.slimmedTaus,
393  getattr(process, _updatedTauNameNew).clone(src = _noUpdatedTauName))
394  era.toReplaceWith(process.deepTauIDTask,
395  deepTauIDTaskNew_)
396 
397  #-- Adding tauID against dead ECal towers to taus
398  # note: default (AOD) behoviour of the tauID modified (leading track
399  # extrapolation to ECAL enabled) in the HPS PFTau master
400  # configuration for this era.
401  _makePatTausTaskWithDeadECalVeto = process.makePatTausTask.copy()
402  _makePatTausTaskWithDeadECalVeto.add(
403  process.hpsPFTauDiscriminationByDeadECALElectronRejection
404  )
405  run2_miniAOD_UL.toReplaceWith(
406  process.makePatTausTask, _makePatTausTaskWithDeadECalVeto
407  )
408  _withDeadEcalTauIDPs = cms.PSet(
409  process.patTaus.tauIDSources,
410  againstElectronDeadECAL = cms.InputTag("hpsPFTauDiscriminationByDeadECALElectronRejection")
411  )
412  run2_miniAOD_UL.toModify(process.patTaus,
413  tauIDSources = _withDeadEcalTauIDPs)
414  #... and to boosted taus
415  _withDeadEcalTauIDBoostedPs = cms.PSet(
416  process.patTausBoosted.tauIDSources,
417  againstElectronDeadECAL = cms.InputTag("hpsPFTauDiscriminationByDeadECALElectronRejectionBoosted")
418  )
419  run2_miniAOD_UL.toModify(process.patTausBoosted,
420  tauIDSources = _withDeadEcalTauIDBoostedPs)
421 
422  #-- Adding customization for 80X 2016 legacy reMiniAOD and 2018 heavy ions
423  from Configuration.Eras.Modifier_run2_miniAOD_80XLegacy_cff import run2_miniAOD_80XLegacy
424  from Configuration.Eras.Modifier_pp_on_AA_2018_cff import pp_on_AA_2018
425  _makePatTausTaskWithTauReReco = process.makePatTausTask.copy()
426  _makePatTausTaskWithTauReReco.add(process.PFTauTask)
427  (run2_miniAOD_80XLegacy | pp_on_AA_2018).toReplaceWith(
428  process.makePatTausTask, _makePatTausTaskWithTauReReco
429  )
430 
431  # Adding puppi jets
432  if not hasattr(process, 'ak4PFJetsPuppi'): #MM: avoid confilct with substructure call
433  process.load('RecoJets.JetProducers.ak4PFJetsPuppi_cfi')
434  task.add(process.ak4PFJets)
435  task.add(process.ak4PFJetsPuppi)
436  process.ak4PFJetsPuppi.doAreaFastjet = True # even for standard ak4PFJets this is overwritten in RecoJets/Configuration/python/RecoPFJets_cff
437  from RecoJets.JetAssociationProducers.j2tParametersVX_cfi import j2tParametersVX
438  process.ak4PFJetsPuppiTracksAssociatorAtVertex = cms.EDProducer("JetTracksAssociatorAtVertex",
439  j2tParametersVX,
440  jets = cms.InputTag("ak4PFJetsPuppi")
441  )
442  task.add(process.ak4PFJetsPuppiTracksAssociatorAtVertex)
443  process.patJetPuppiCharge = cms.EDProducer("JetChargeProducer",
444  src = cms.InputTag("ak4PFJetsPuppiTracksAssociatorAtVertex"),
445  var = cms.string('Pt'),
446  exp = cms.double(1.0)
447  )
448  task.add(process.patJetPuppiCharge)
449 
450  noDeepFlavourDiscriminators = [x.value() for x in process.patJets.discriminatorSources if not "DeepFlavour" in x.value()]
451  addJetCollection(process, postfix = "", labelName = 'Puppi', jetSource = cms.InputTag('ak4PFJetsPuppi'),
452  jetCorrections = ('AK4PFPuppi', ['L2Relative', 'L3Absolute'], ''),
453  pfCandidates = cms.InputTag("particleFlow"),
454  algo= 'AK', rParam = 0.4, btagDiscriminators = noDeepFlavourDiscriminators
455  )
456 
457  process.patJetGenJetMatchPuppi.matched = 'slimmedGenJets'
458 
459  process.patJetsPuppi.jetChargeSource = cms.InputTag("patJetPuppiCharge")
460 
461  process.selectedPatJetsPuppi.cut = cms.string("pt > 15")
462 
463  from PhysicsTools.PatAlgos.slimming.applyDeepBtagging_cff import applyDeepBtagging
464  applyDeepBtagging( process )
465 
466  addToProcessAndTask('slimmedJetsPuppiNoMultiplicities', process.slimmedJetsNoDeepFlavour.clone(), process, task)
467  process.slimmedJetsPuppiNoMultiplicities.src = cms.InputTag("selectedPatJetsPuppi")
468  process.slimmedJetsPuppiNoMultiplicities.packedPFCandidates = cms.InputTag("packedPFCandidates")
469 
470  from PhysicsTools.PatAlgos.patPuppiJetSpecificProducer_cfi import patPuppiJetSpecificProducer
471  from PhysicsTools.PatAlgos.tools.jetTools import updateJetCollection
472  process.patPuppiJetSpecificProducer = patPuppiJetSpecificProducer.clone(
473  src=cms.InputTag("slimmedJetsPuppiNoMultiplicities"),
474  )
475  task.add(process.patPuppiJetSpecificProducer)
476  updateJetCollection(
477  process,
478  labelName = 'PuppiJetSpecific',
479  jetSource = cms.InputTag('slimmedJetsPuppiNoMultiplicities'),
480  )
481  process.updatedPatJetsPuppiJetSpecific.userData.userFloats.src = ['patPuppiJetSpecificProducer:puppiMultiplicity', 'patPuppiJetSpecificProducer:neutralPuppiMultiplicity', 'patPuppiJetSpecificProducer:neutralHadronPuppiMultiplicity', 'patPuppiJetSpecificProducer:photonPuppiMultiplicity', 'patPuppiJetSpecificProducer:HFHadronPuppiMultiplicity', 'patPuppiJetSpecificProducer:HFEMPuppiMultiplicity' ]
482  process.slimmedJetsPuppi = process.selectedUpdatedPatJetsPuppiJetSpecific.clone()
483  delattr(process, 'selectedUpdatedPatJetsPuppiJetSpecific')
484 
485  task.add(process.slimmedJetsPuppi)
486 
487  ## puppi met
488  from PhysicsTools.PatAlgos.slimming.puppiForMET_cff import makePuppies
489  makePuppies( process );
490 
491  runMetCorAndUncForMiniAODProduction(process, metType="Puppi",
492  pfCandColl=cms.InputTag("puppiForMET"),
493  jetCollUnskimmed="slimmedJetsPuppi",
494  recoMetFromPFCs=True,
495  jetFlavor="AK4PFPuppi",
496  postfix="Puppi"
497  )
498 
499  process.load('PhysicsTools.PatAlgos.slimming.slimmedMETs_cfi')
500  task.add(process.slimmedMETs)
501  addToProcessAndTask('slimmedMETsPuppi', process.slimmedMETs.clone(), process, task)
502  process.slimmedMETsPuppi.src = cms.InputTag("patMETsPuppi")
503  process.slimmedMETsPuppi.rawVariation = cms.InputTag("patPFMetPuppi")
504  process.slimmedMETsPuppi.t1Uncertainties = cms.InputTag("patPFMetT1%sPuppi")
505  process.slimmedMETsPuppi.t01Variation = cms.InputTag("patPFMetT0pcT1Puppi")
506  process.slimmedMETsPuppi.t1SmearedVarsAndUncs = cms.InputTag("patPFMetT1Smear%sPuppi")
507  process.slimmedMETsPuppi.tXYUncForRaw = cms.InputTag("patPFMetTxyPuppi")
508  process.slimmedMETsPuppi.tXYUncForT1 = cms.InputTag("patPFMetT1TxyPuppi")
509  process.slimmedMETsPuppi.tXYUncForT01 = cms.InputTag("patPFMetT0pcT1TxyPuppi")
510  process.slimmedMETsPuppi.tXYUncForT1Smear = cms.InputTag("patPFMetT1SmearTxyPuppi")
511  process.slimmedMETsPuppi.tXYUncForT01Smear = cms.InputTag("patPFMetT0pcT1SmearTxyPuppi")
512  del process.slimmedMETsPuppi.caloMET
513 
514  process.load('RecoMET.METPUSubtraction.deepMETProducer_cfi')
515 
516  process.deepMETsResolutionTune = process.deepMETProducer.clone()
517  process.deepMETsResponseTune = process.deepMETProducer.clone()
518  process.deepMETsResponseTune.graph_path = 'RecoMET/METPUSubtraction/data/deepmet/deepmet_resp_v1_2018.pb'
519 
520  from Configuration.Eras.Modifier_run2_jme_2016_cff import run2_jme_2016
521  run2_jme_2016.toModify(
522  process.deepMETsResponseTune,
523  graph_path="RecoMET/METPUSubtraction/data/deepmet/deepmet_resp_v1_2016.pb"
524  )
525 
526  run2_miniAOD_UL.toModify(task, func=lambda t: t.add(process.deepMETsResolutionTune, process.deepMETsResponseTune))
527  run2_miniAOD_UL.toModify(process.slimmedMETs, addDeepMETs = True)
528 
529  # add DetIdAssociatorRecords to EventSetup (for isolatedTracks)
530  process.load("TrackingTools.TrackAssociator.DetIdAssociatorESProducer_cff")
531 
532  # EGamma objects from HGCal are not yet in GED
533  # so add companion collections for Phase-II MiniAOD production
534  from Configuration.Eras.Modifier_phase2_hgcal_cff import phase2_hgcal
535  process.load("RecoEgamma.EgammaTools.slimmedEgammaFromMultiCl_cff")
536  phase2_hgcal.toModify(task, func=lambda t: t.add(process.slimmedEgammaFromMultiClTask))
537 
538  # L1 pre-firing weights for 2016 and 2017
539  from Configuration.Eras.Modifier_run2_L1prefiring_cff import run2_L1prefiring
540  from Configuration.Eras.Modifier_stage1L1Trigger_cff import stage1L1Trigger
541  from Configuration.Eras.Modifier_stage2L1Trigger_2017_cff import stage2L1Trigger_2017
542  process.load("PhysicsTools.PatUtils.L1ECALPrefiringWeightProducer_cff")
543  stage1L1Trigger.toModify(process.prefiringweight, DataEra = "2016BtoH")
544  stage2L1Trigger_2017.toModify(process.prefiringweight, DataEra = "2017BtoF")
545  run2_L1prefiring.toModify(task, func=lambda t: t.add(process.prefiringweight))
546 
547 def miniAOD_customizeMC(process):
548  task = getPatAlgosToolsTask(process)
549  #GenJetFlavourInfos
550  process.load("PhysicsTools.JetMCAlgos.HadronAndPartonSelector_cfi")
551  task.add(process.selectedHadronsAndPartons)
552  task.add(process.selectedHadronsAndPartonsForGenJetsFlavourInfos)
553 
554  process.load("PhysicsTools.JetMCAlgos.AK4GenJetFlavourInfos_cfi")
555  task.add(process.ak4GenJetFlavourInfos)
556 
557  process.load('PhysicsTools.PatAlgos.slimming.slimmedGenJetsFlavourInfos_cfi')
558  task.add(process.slimmedGenJetsFlavourInfos)
559 
560  #slimmed pileup information
561  process.load('PhysicsTools.PatAlgos.slimming.slimmedAddPileupInfo_cfi')
562  task.add(process.slimmedAddPileupInfo)
563 
564  process.muonMatch.matched = "prunedGenParticles"
565  process.electronMatch.matched = "prunedGenParticles"
566  process.electronMatch.src = cms.InputTag("reducedEgamma","reducedGedGsfElectrons")
567  process.photonMatch.matched = "prunedGenParticles"
568  process.photonMatch.src = cms.InputTag("reducedEgamma","reducedGedPhotons")
569  process.ootPhotonMatch.matched = "prunedGenParticles"
570  process.ootPhotonMatch.src = cms.InputTag("reducedEgamma","reducedOOTPhotons")
571  process.tauMatch.matched = "prunedGenParticles"
572  process.tauGenJets.GenParticles = "prunedGenParticles"
573  #Boosted taus
574  process.tauMatchBoosted.matched = "prunedGenParticles"
575  process.tauGenJetsBoosted.GenParticles = "prunedGenParticles"
576  process.patJetPartons.particles = "genParticles"
577  process.patJetPartonMatch.matched = "prunedGenParticles"
578  process.patJetPartonMatch.mcStatus = [ 3, 23 ]
579  process.patJetGenJetMatch.matched = "slimmedGenJets"
580  process.patJetGenJetMatchAK8.matched = "slimmedGenJetsAK8"
581  process.patMuons.embedGenMatch = False
582  process.patElectrons.embedGenMatch = False
583  process.patPhotons.embedGenMatch = False
584  process.patOOTPhotons.embedGenMatch = False
585  process.patTaus.embedGenMatch = False
586  process.patTausBoosted.embedGenMatch = False
587  process.patJets.embedGenPartonMatch = False
588  #also jet flavour must be switched
589  process.patJetFlavourAssociation.rParam = 0.4
590 
592  from PhysicsTools.PatAlgos.slimming.MicroEventContent_cff import MiniAODOverrideBranchesSplitLevel
593  out.overrideBranchesSplitLevel = MiniAODOverrideBranchesSplitLevel
594  out.splitLevel = cms.untracked.int32(0)
595  out.dropMetaData = cms.untracked.string('ALL')
596  out.fastCloning= cms.untracked.bool(False)
597  out.overrideInputFileSplitLevels = cms.untracked.bool(True)
598  out.compressionAlgorithm = cms.untracked.string('LZMA')
599 
601  from PhysicsTools.PatAlgos.tools.coreTools import runOnData
602  runOnData( process, outputModules = [] )
603  process.load("RecoCTPPS.Configuration.recoCTPPS_cff")
604  task = getPatAlgosToolsTask(process)
605  from Configuration.Eras.Modifier_ctpps_2016_cff import ctpps_2016
606  from Configuration.ProcessModifiers.run2_miniAOD_UL_cff import run2_miniAOD_UL
607  (ctpps_2016 & ~run2_miniAOD_UL).toModify(task, func=lambda t: t.add(process.ctppsLocalTrackLiteProducer, process.ctppsProtons))
608  (ctpps_2016 & run2_miniAOD_UL).toModify(task, func=lambda t: t.add(process.recoCTPPSTask))
609 
611  miniAOD_customizeCommon(process)
612  miniAOD_customizeData(process)
613  return process
614 
616  miniAOD_customizeCommon(process)
617  miniAOD_customizeMC(process)
618  return process
619 
621  miniAOD_customizeCommon(process)
622  miniAOD_customizeMC(process)
623  from PhysicsTools.PatAlgos.slimming.metFilterPaths_cff import miniAOD_customizeMETFiltersFastSim
624  process = miniAOD_customizeMETFiltersFastSim(process)
625  from PhysicsTools.PatAlgos.slimming.isolatedTracks_cfi import miniAOD_customizeIsolatedTracksFastSim
626  process = miniAOD_customizeIsolatedTracksFastSim(process)
627  process.patMuons.addTriggerMatching = False
628 
629  return process
def makeInputForPUPPIIsolationMuon(process)
def miniAOD_customizeAllData(process)
def miniAOD_customizeData(process)
def miniAOD_customizeCommon(process)
Definition: miniAOD_tools.py:7
def applySubstructure(process, postfix="")
def miniAOD_customizeMETFiltersFastSim(process)
def switchOnVIDElectronIdProducer(process, dataFormat, task=None)
Electrons.
Definition: vid_id_tools.py:66
def addToProcessAndTask(label, module, process, task)
Definition: helpers.py:29
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 makePuppies(process)
def miniAOD_customizeAllMC(process)
def applyDeepBtagging(process, postfix="")
def miniAOD_customizeAllMCFastSim(process)
def miniAOD_customizeIsolatedTracksFastSim(process)
switchOnTriggerStandAlone
Definition: trigTools.py:283
def makeVIDBitsModifier(process, eleVIDModuleName, phoVIDModuleName)
def miniAOD_customizeOutput(out)
def miniAOD_customizeMC(process)
TEveGeoShape * clone(const TEveElement *element, TEveElement *parent)
Definition: eve_macros.cc:135
def getPatAlgosToolsTask(process)
Definition: helpers.py:14
def switchOnVIDPhotonIdProducer(process, dataFormat, task=None)
Photons.