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muons_cff.py
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1 import FWCore.ParameterSet.Config as cms
3 
4 
7 
8 
9 # this below is used only in some eras
10 slimmedMuonsUpdated = cms.EDProducer("PATMuonUpdater",
11  src = cms.InputTag("slimmedMuons"),
12  vertices = cms.InputTag("offlineSlimmedPrimaryVertices"),
13  computeMiniIso = cms.bool(False),
14  fixDxySign = cms.bool(True),
15  pfCandsForMiniIso = cms.InputTag("packedPFCandidates"),
16  miniIsoParams = PhysicsTools.PatAlgos.producersLayer1.muonProducer_cfi.patMuons.miniIsoParams, # so they're in sync
17  recomputeMuonBasicSelectors = cms.bool(False),
18 )
19 run2_miniAOD_80XLegacy.toModify( slimmedMuonsUpdated, computeMiniIso = True, recomputeMuonBasicSelectors = True )
20 
21 isoForMu = cms.EDProducer("MuonIsoValueMapProducer",
22  src = cms.InputTag("slimmedMuonsUpdated"),
23  relative = cms.bool(False),
24  rho_MiniIso = cms.InputTag("fixedGridRhoFastjetAll"),
25  EAFile_MiniIso = cms.FileInPath("PhysicsTools/NanoAOD/data/effAreaMuons_cone03_pfNeuHadronsAndPhotons_94X.txt"),
26 )
27 run2_miniAOD_80XLegacy.toModify(isoForMu, EAFile_MiniIso = "PhysicsTools/NanoAOD/data/effAreaMuons_cone03_pfNeuHadronsAndPhotons_80X.txt")
28 run2_nanoAOD_94X2016.toModify(isoForMu, EAFile_MiniIso = "PhysicsTools/NanoAOD/data/effAreaMuons_cone03_pfNeuHadronsAndPhotons_80X.txt")
29 
30 ptRatioRelForMu = cms.EDProducer("MuonJetVarProducer",
31  srcJet = cms.InputTag("updatedJets"),
32  srcLep = cms.InputTag("slimmedMuonsUpdated"),
33  srcVtx = cms.InputTag("offlineSlimmedPrimaryVertices"),
34 )
35 
36 slimmedMuonsWithUserData = cms.EDProducer("PATMuonUserDataEmbedder",
37  src = cms.InputTag("slimmedMuonsUpdated"),
38  userFloats = cms.PSet(
39  miniIsoChg = cms.InputTag("isoForMu:miniIsoChg"),
40  miniIsoAll = cms.InputTag("isoForMu:miniIsoAll"),
41  ptRatio = cms.InputTag("ptRatioRelForMu:ptRatio"),
42  ptRel = cms.InputTag("ptRatioRelForMu:ptRel"),
43  jetNDauChargedMVASel = cms.InputTag("ptRatioRelForMu:jetNDauChargedMVASel"),
44  ),
45  userCands = cms.PSet(
46  jetForLepJetVar = cms.InputTag("ptRatioRelForMu:jetForLepJetVar") # warning: Ptr is null if no match is found
47  ),
48 )
49 
50 finalMuons = cms.EDFilter("PATMuonRefSelector",
51  src = cms.InputTag("slimmedMuonsWithUserData"),
52  cut = cms.string("pt > 15 || (pt > 3 && (passed('CutBasedIdLoose') || passed('SoftCutBasedId') || passed('SoftMvaId') || passed('CutBasedIdGlobalHighPt') || passed('CutBasedIdTrkHighPt')))")
53 )
54 (run2_nanoAOD_106Xv1 & ~run2_nanoAOD_devel).toModify(finalMuons, cut = "(pt > 3 && (passed('CutBasedIdLoose') || passed('SoftCutBasedId') || passed('SoftMvaId') || passed('CutBasedIdGlobalHighPt') || passed('CutBasedIdTrkHighPt')))")
55 
56 finalLooseMuons = cms.EDFilter("PATMuonRefSelector", # for isotrack cleaning
57  src = cms.InputTag("slimmedMuonsWithUserData"),
58  cut = cms.string("pt > 3 && track.isNonnull && isLooseMuon")
59 )
60 
61 muonMVATTH= cms.EDProducer("MuonBaseMVAValueMapProducer",
62  src = cms.InputTag("linkedObjects","muons"),
63  weightFile = cms.FileInPath("PhysicsTools/NanoAOD/data/mu_BDTG_2017.weights.xml"),
64  name = cms.string("muonMVATTH"),
65  isClassifier = cms.bool(True),
66  variablesOrder = cms.vstring(["LepGood_pt","LepGood_eta","LepGood_jetNDauChargedMVASel","LepGood_miniRelIsoCharged","LepGood_miniRelIsoNeutral","LepGood_jetPtRelv2","LepGood_jetDF","LepGood_jetPtRatio","LepGood_dxy","LepGood_sip3d","LepGood_dz","LepGood_segmentComp"]),
67  variables = cms.PSet(
68  LepGood_pt = cms.string("pt"),
69  LepGood_eta = cms.string("eta"),
70  LepGood_jetNDauChargedMVASel = cms.string("?userCand('jetForLepJetVar').isNonnull()?userFloat('jetNDauChargedMVASel'):0"),
71  LepGood_miniRelIsoCharged = cms.string("userFloat('miniIsoChg')/pt"),
72  LepGood_miniRelIsoNeutral = cms.string("(userFloat('miniIsoAll')-userFloat('miniIsoChg'))/pt"),
73  LepGood_jetPtRelv2 = cms.string("?userCand('jetForLepJetVar').isNonnull()?userFloat('ptRel'):0"),
74  LepGood_jetDF = cms.string("?userCand('jetForLepJetVar').isNonnull()?max(userCand('jetForLepJetVar').bDiscriminator('pfDeepFlavourJetTags:probbb')+userCand('jetForLepJetVar').bDiscriminator('pfDeepFlavourJetTags:probb')+userCand('jetForLepJetVar').bDiscriminator('pfDeepFlavourJetTags:problepb'),0.0):0.0"),
75  LepGood_jetPtRatio = cms.string("?userCand('jetForLepJetVar').isNonnull()?min(userFloat('ptRatio'),1.5):1.0/(1.0+(pfIsolationR04().sumChargedHadronPt + max(pfIsolationR04().sumNeutralHadronEt + pfIsolationR04().sumPhotonEt - pfIsolationR04().sumPUPt/2,0.0))/pt)"),
76  LepGood_dxy = cms.string("log(abs(dB('PV2D')))"),
77  LepGood_sip3d = cms.string("abs(dB('PV3D')/edB('PV3D'))"),
78  LepGood_dz = cms.string("log(abs(dB('PVDZ')))"),
79  LepGood_segmentComp = cms.string("segmentCompatibility"),
80 
81  )
82 )
83 
84 muonMVALowPt = muonMVATTH.clone(
85  weightFile = cms.FileInPath("PhysicsTools/NanoAOD/data/mu_BDTG_lowpt.weights.xml"),
86  name = cms.string("muonMVALowPt"),
87 )
88 
89 run2_muon_2016.toModify(muonMVATTH,
90  weightFile = "PhysicsTools/NanoAOD/data/mu_BDTG_2016.weights.xml",
91  )
92 
93 from MuonAnalysis.MuonAssociators.muonFSRProducer_cfi import muonFSRProducer
94 muonFSRphotons = muonFSRProducer.clone(
95  packedPFCandidates = cms.InputTag("packedPFCandidates"),
96  slimmedElectrons = cms.InputTag("slimmedElectrons"),
97  muons = cms.InputTag("linkedObjects","muons"),
98 )
99 from MuonAnalysis.MuonAssociators.muonFSRAssociator_cfi import muonFSRAssociator
100 muonFSRassociation = muonFSRAssociator.clone(
101  photons = cms.InputTag("muonFSRphotons"),
102  muons = cms.InputTag("linkedObjects","muons"),
103 )
104 
105 fsrTable = cms.EDProducer("SimpleCandidateFlatTableProducer",
106  src = cms.InputTag("muonFSRphotons"),
107  cut = cms.string(""), #we should not filter on cross linked collections
108  name = cms.string("FsrPhoton"),
109  doc = cms.string("Final state radiation photons emitted by muons"),
110  singleton = cms.bool(False), # the number of entries is variable
111  extension = cms.bool(False), # this is the main table for the muons
112  variables = cms.PSet(P3Vars,
113  relIso03 = Var("userFloat('relIso03')",float,doc="relative isolation in a 0.3 cone without CHS"),
114  dROverEt2 = Var("userFloat('dROverEt2')",float,doc="deltaR to associated muon divided by photon et2"),
115  muonIdx = Var("?hasUserCand('associatedMuon')?userCand('associatedMuon').key():-1",int, doc="index of associated muon")
116  )
117  )
118 
119 muonTable = cms.EDProducer("SimpleCandidateFlatTableProducer",
120  src = cms.InputTag("linkedObjects","muons"),
121  cut = cms.string(""), #we should not filter on cross linked collections
122  name = cms.string("Muon"),
123  doc = cms.string("slimmedMuons after basic selection (" + finalMuons.cut.value()+")"),
124  singleton = cms.bool(False), # the number of entries is variable
125  extension = cms.bool(False), # this is the main table for the muons
126  variables = cms.PSet(CandVars,
127  ptErr = Var("bestTrack().ptError()", float, doc = "ptError of the muon track", precision=6),
128  tunepRelPt = Var("tunePMuonBestTrack().pt/pt",float,doc="TuneP relative pt, tunePpt/pt",precision=6),
129  dz = Var("dB('PVDZ')",float,doc="dz (with sign) wrt first PV, in cm",precision=10),
130  dzErr = Var("abs(edB('PVDZ'))",float,doc="dz uncertainty, in cm",precision=6),
131  dxybs = Var("dB('BS2D')",float,doc="dxy (with sign) wrt the beam spot, in cm",precision=10),
132  dxy = Var("dB('PV2D')",float,doc="dxy (with sign) wrt first PV, in cm",precision=10),
133  dxyErr = Var("edB('PV2D')",float,doc="dxy uncertainty, in cm",precision=6),
134  ip3d = Var("abs(dB('PV3D'))",float,doc="3D impact parameter wrt first PV, in cm",precision=10),
135  sip3d = Var("abs(dB('PV3D')/edB('PV3D'))",float,doc="3D impact parameter significance wrt first PV",precision=10),
136  segmentComp = Var("segmentCompatibility()", float, doc = "muon segment compatibility", precision=14), # keep higher precision since people have cuts with 3 digits on this
137  nStations = Var("numberOfMatchedStations", int, doc = "number of matched stations with default arbitration (segment & track)"),
138  nTrackerLayers = Var("?track.isNonnull?innerTrack().hitPattern().trackerLayersWithMeasurement():0", int, doc = "number of layers in the tracker"),
139  highPurity = Var("?track.isNonnull?innerTrack().quality('highPurity'):0", bool, doc = "inner track is high purity"),
140  jetIdx = Var("?hasUserCand('jet')?userCand('jet').key():-1", int, doc="index of the associated jet (-1 if none)"),
141  tkRelIso = Var("isolationR03().sumPt/tunePMuonBestTrack().pt",float,doc="Tracker-based relative isolation dR=0.3 for highPt, trkIso/tunePpt",precision=6),
142  miniPFRelIso_chg = Var("userFloat('miniIsoChg')/pt",float,doc="mini PF relative isolation, charged component"),
143  miniPFRelIso_all = Var("userFloat('miniIsoAll')/pt",float,doc="mini PF relative isolation, total (with scaled rho*EA PU corrections)"),
144  pfRelIso03_chg = Var("pfIsolationR03().sumChargedHadronPt/pt",float,doc="PF relative isolation dR=0.3, charged component"),
145  pfRelIso03_all = Var("(pfIsolationR03().sumChargedHadronPt + max(pfIsolationR03().sumNeutralHadronEt + pfIsolationR03().sumPhotonEt - pfIsolationR03().sumPUPt/2,0.0))/pt",float,doc="PF relative isolation dR=0.3, total (deltaBeta corrections)"),
146  pfRelIso04_all = Var("(pfIsolationR04().sumChargedHadronPt + max(pfIsolationR04().sumNeutralHadronEt + pfIsolationR04().sumPhotonEt - pfIsolationR04().sumPUPt/2,0.0))/pt",float,doc="PF relative isolation dR=0.4, total (deltaBeta corrections)"),
147  jetRelIso = Var("?userCand('jetForLepJetVar').isNonnull()?(1./userFloat('ptRatio'))-1.:(pfIsolationR04().sumChargedHadronPt + max(pfIsolationR04().sumNeutralHadronEt + pfIsolationR04().sumPhotonEt - pfIsolationR04().sumPUPt/2,0.0))/pt",float,doc="Relative isolation in matched jet (1/ptRatio-1, pfRelIso04_all if no matched jet)",precision=8),
148  jetPtRelv2 = Var("?userCand('jetForLepJetVar').isNonnull()?userFloat('ptRel'):0",float,doc="Relative momentum of the lepton with respect to the closest jet after subtracting the lepton",precision=8),
149  tightCharge = Var("?(muonBestTrack().ptError()/muonBestTrack().pt() < 0.2)?2:0",int,doc="Tight charge criterion using pterr/pt of muonBestTrack (0:fail, 2:pass)"),
150  looseId = Var("passed('CutBasedIdLoose')",bool, doc="muon is loose muon"),
151  isPFcand = Var("isPFMuon",bool,doc="muon is PF candidate"),
152  isGlobal = Var("isGlobalMuon",bool,doc="muon is global muon"),
153  isTracker = Var("isTrackerMuon",bool,doc="muon is tracker muon"),
154  isStandalone = Var("isStandAloneMuon",bool,doc="muon is a standalone muon"),
155  mediumId = Var("passed('CutBasedIdMedium')",bool,doc="cut-based ID, medium WP"),
156  mediumPromptId = Var("passed('CutBasedIdMediumPrompt')",bool,doc="cut-based ID, medium prompt WP"),
157  tightId = Var("passed('CutBasedIdTight')",bool,doc="cut-based ID, tight WP"),
158  softId = Var("passed('SoftCutBasedId')",bool,doc="soft cut-based ID"),
159  softMvaId = Var("passed('SoftMvaId')",bool,doc="soft MVA ID"),
160  softMva = Var("softMvaValue()",float,doc="soft MVA ID score",precision=6),
161  highPtId = Var("?passed('CutBasedIdGlobalHighPt')?2:passed('CutBasedIdTrkHighPt')","uint8",doc="high-pT cut-based ID (1 = tracker high pT, 2 = global high pT, which includes tracker high pT)"),
162  pfIsoId = Var("passed('PFIsoVeryLoose')+passed('PFIsoLoose')+passed('PFIsoMedium')+passed('PFIsoTight')+passed('PFIsoVeryTight')+passed('PFIsoVeryVeryTight')","uint8",doc="PFIso ID from miniAOD selector (1=PFIsoVeryLoose, 2=PFIsoLoose, 3=PFIsoMedium, 4=PFIsoTight, 5=PFIsoVeryTight, 6=PFIsoVeryVeryTight)"),
163  tkIsoId = Var("?passed('TkIsoTight')?2:passed('TkIsoLoose')","uint8",doc="TkIso ID (1=TkIsoLoose, 2=TkIsoTight)"),
164  mvaId = Var("passed('MvaLoose')+passed('MvaMedium')+passed('MvaTight')+passed('MvaVTight')+passed('MvaVVTight')","uint8",doc="Mva ID from miniAOD selector (1=MvaLoose, 2=MvaMedium, 3=MvaTight, 4=MvaVTight, 5=MvaVVTight)"),
165  mvaLowPtId = Var("passed('LowPtMvaLoose')+passed('LowPtMvaMedium')","uint8", doc="Low Pt Mva ID from miniAOD selector (1=LowPtMvaLoose, 2=LowPtMvaMedium)"),
166  miniIsoId = Var("passed('MiniIsoLoose')+passed('MiniIsoMedium')+passed('MiniIsoTight')+passed('MiniIsoVeryTight')","uint8",doc="MiniIso ID from miniAOD selector (1=MiniIsoLoose, 2=MiniIsoMedium, 3=MiniIsoTight, 4=MiniIsoVeryTight)"),
167  multiIsoId = Var("?passed('MultiIsoMedium')?2:passed('MultiIsoLoose')","uint8",doc="MultiIsoId from miniAOD selector (1=MultiIsoLoose, 2=MultiIsoMedium)"),
168  puppiIsoId = Var("passed('PuppiIsoLoose')+passed('PuppiIsoMedium')+passed('PuppiIsoTight')", "uint8", doc="PuppiIsoId from miniAOD selector (1=Loose, 2=Medium, 3=Tight)"),
169  triggerIdLoose = Var("passed('TriggerIdLoose')",bool,doc="TriggerIdLoose ID"),
170  inTimeMuon = Var("passed('InTimeMuon')",bool,doc="inTimeMuon ID"),
171  jetNDauCharged = Var("?userCand('jetForLepJetVar').isNonnull()?userFloat('jetNDauChargedMVASel'):0", "uint8", doc="number of charged daughters of the closest jet"),
172  ),
173  externalVariables = cms.PSet(
174  mvaTTH = ExtVar(cms.InputTag("muonMVATTH"),float, doc="TTH MVA lepton ID score",precision=14),
175  mvaLowPt = ExtVar(cms.InputTag("muonMVALowPt"),float, doc="Low pt muon ID score",precision=14),
176  fsrPhotonIdx = ExtVar(cms.InputTag("muonFSRassociation:fsrIndex"),int, doc="Index of the associated FSR photon"),
177  ),
178 )
179 
180 
181 for modifier in run2_miniAOD_80XLegacy, run2_nanoAOD_94X2016, run2_nanoAOD_94XMiniAODv1, run2_nanoAOD_94XMiniAODv2:
182  modifier.toModify(muonTable.variables, puppiIsoId = None, softMva = None)
183 
184 run2_nanoAOD_102Xv1.toModify(muonTable.variables, puppiIsoId = None)
185 
186 (run2_nanoAOD_106Xv1 & ~run2_nanoAOD_devel).toModify(muonTable.variables, isStandalone = None)
187 
188 muonsMCMatchForTable = cms.EDProducer("MCMatcher", # cut on deltaR, deltaPt/Pt; pick best by deltaR
189  src = muonTable.src, # final reco collection
190  matched = cms.InputTag("finalGenParticles"), # final mc-truth particle collection
191  mcPdgId = cms.vint32(13), # one or more PDG ID (13 = mu); absolute values (see below)
192  checkCharge = cms.bool(False), # True = require RECO and MC objects to have the same charge
193  mcStatus = cms.vint32(1), # PYTHIA status code (1 = stable, 2 = shower, 3 = hard scattering)
194  maxDeltaR = cms.double(0.3), # Minimum deltaR for the match
195  maxDPtRel = cms.double(0.5), # Minimum deltaPt/Pt for the match
196  resolveAmbiguities = cms.bool(True), # Forbid two RECO objects to match to the same GEN object
197  resolveByMatchQuality = cms.bool(True), # False = just match input in order; True = pick lowest deltaR pair first
198 )
199 
200 muonMCTable = cms.EDProducer("CandMCMatchTableProducer",
201  src = muonTable.src,
202  mcMap = cms.InputTag("muonsMCMatchForTable"),
203  objName = muonTable.name,
204  objType = muonTable.name, #cms.string("Muon"),
205  branchName = cms.string("genPart"),
206  docString = cms.string("MC matching to status==1 muons"),
207 )
208 
209 muonSequence = cms.Sequence(slimmedMuonsUpdated+isoForMu + ptRatioRelForMu + slimmedMuonsWithUserData + finalMuons + finalLooseMuons )
210 muonMC = cms.Sequence(muonsMCMatchForTable + muonMCTable)
211 muonTables = cms.Sequence(muonFSRphotons + muonFSRassociation + muonMVATTH + muonMVALowPt + muonTable + fsrTable)
212 
def ExtVar(tag, valtype, compression=None, doc=None, mcOnly=False, precision=-1)
Definition: common_cff.py:31
def Var(expr, valtype, compression=None, doc=None, mcOnly=False, precision=-1)
Definition: common_cff.py:20