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taus_cff.py
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1 import FWCore.ParameterSet.Config as cms
3 from PhysicsTools.JetMCAlgos.TauGenJets_cfi import tauGenJets
4 from PhysicsTools.JetMCAlgos.TauGenJetsDecayModeSelectorAllHadrons_cfi import tauGenJetsSelectorAllHadrons
5 
6 
9 
10 
11 
12 
13 finalTaus = cms.EDFilter("PATTauRefSelector",
14  src = cms.InputTag("slimmedTausUpdated"),
15  cut = cms.string("pt > 18 && tauID('decayModeFindingNewDMs') && (tauID('byLooseCombinedIsolationDeltaBetaCorr3Hits') || tauID('byVLooseIsolationMVArun2v1DBoldDMwLT2015') || tauID('byVLooseIsolationMVArun2v1DBnewDMwLT') || tauID('byVLooseIsolationMVArun2v1DBdR03oldDMwLT') || tauID('byVVLooseIsolationMVArun2v1DBoldDMwLT') || tauID('byVVLooseIsolationMVArun2v1DBoldDMwLT2017v2') || tauID('byVVLooseIsolationMVArun2v1DBnewDMwLT2017v2') || tauID('byVVLooseIsolationMVArun2v1DBdR03oldDMwLT2017v2') || tauID('byVVVLooseDeepTau2017v2p1VSjet'))")
16 )
17 
18 for era in [run2_nanoAOD_94XMiniAODv1,]:
19  era.toModify(finalTaus,
20  cut = cms.string("pt > 18 && tauID('decayModeFindingNewDMs') && (tauID('byLooseCombinedIsolationDeltaBetaCorr3Hits') || tauID('byVLooseIsolationMVArun2v1DBoldDMwLT') || tauID('byVLooseIsolationMVArun2v1DBnewDMwLT') || tauID('byVLooseIsolationMVArun2v1DBdR03oldDMwLT') || tauID('byVVLooseIsolationMVArun2v1DBoldDMwLT2017v1') || tauID('byVVLooseIsolationMVArun2v1DBoldDMwLT2017v2') || tauID('byVVLooseIsolationMVArun2v1DBnewDMwLT2017v2') || tauID('byVVLooseIsolationMVArun2v1DBdR03oldDMwLT2017v2') || tauID('byVVVLooseDeepTau2017v2p1VSjet'))")
21  )
22 run2_miniAOD_80XLegacy.toModify(finalTaus,
23  src = cms.InputTag("slimmedTaus"),
24  cut = cms.string("pt > 18 && tauID('decayModeFindingNewDMs') && (tauID('byLooseCombinedIsolationDeltaBetaCorr3Hits') || tauID('byVLooseIsolationMVArun2v1DBoldDMwLT') || tauID('byVLooseIsolationMVArun2v1DBnewDMwLT') || tauID('byVLooseIsolationMVArun2v1DBdR03oldDMwLT'))")
25  )
26 
27 
28 def _tauIdWPMask(pattern, choices, doc=""):
29  return Var(" + ".join(["%d * tauID('%s')" % (pow(2,i), pattern % c) for (i,c) in enumerate(choices)]), "uint8",
30  doc=doc+": bitmask "+", ".join(["%d = %s" % (pow(2,i),c) for (i,c) in enumerate(choices)]))
31 def _tauId2WPMask(pattern,doc):
32  return _tauIdWPMask(pattern,choices=("Loose","Tight"),doc=doc)
33 def _tauId3WPMask(pattern,doc):
34  return _tauIdWPMask(pattern,choices=("Loose","Medium","Tight"),doc=doc)
35 def _tauId4WPMask(pattern,doc):
36  return _tauIdWPMask(pattern, choices=("VLoose", "Loose", "Medium", "Tight"), doc=doc)
37 def _tauId5WPMask(pattern,doc):
38  return _tauIdWPMask(pattern,choices=("VLoose","Loose","Medium","Tight","VTight"),doc=doc)
39 def _tauId6WPMask(pattern,doc):
40  return _tauIdWPMask(pattern,choices=("VLoose","Loose","Medium","Tight","VTight","VVTight"),doc=doc)
41 def _tauId7WPMask(pattern,doc):
42  return _tauIdWPMask(pattern,choices=("VVLoose","VLoose","Loose","Medium","Tight","VTight","VVTight"),doc=doc)
43 def _tauId8WPMask(pattern,doc):
44  return _tauIdWPMask(pattern,choices=("VVVLoose","VVLoose","VLoose","Loose","Medium","Tight","VTight","VVTight"),doc=doc)
45 
46 tauTable = cms.EDProducer("SimpleCandidateFlatTableProducer",
47  src = cms.InputTag("linkedObjects","taus"),
48  cut = cms.string(""), #we should not filter on cross linked collections
49  name= cms.string("Tau"),
50  doc = cms.string("slimmedTaus after basic selection (" + finalTaus.cut.value()+")"),
51  singleton = cms.bool(False), # the number of entries is variable
52  extension = cms.bool(False), # this is the main table for the taus
53  variables = cms.PSet() # PSet defined below in era dependent way
54 )
55 _tauVarsBase = cms.PSet(P4Vars,
56  charge = Var("charge", int, doc="electric charge"),
57  jetIdx = Var("?hasUserCand('jet')?userCand('jet').key():-1", int, doc="index of the associated jet (-1 if none)"),
58  decayMode = Var("decayMode()",int),
59  idDecayMode = Var("tauID('decayModeFinding')", bool),
60  idDecayModeNewDMs = Var("tauID('decayModeFindingNewDMs')", bool),
61 
62  leadTkPtOverTauPt = Var("leadChargedHadrCand.pt/pt ",float, doc="pt of the leading track divided by tau pt",precision=10),
63  leadTkDeltaEta = Var("leadChargedHadrCand.eta - eta ",float, doc="eta of the leading track, minus tau eta",precision=8),
64  leadTkDeltaPhi = Var("deltaPhi(leadChargedHadrCand.phi, phi) ",float, doc="phi of the leading track, minus tau phi",precision=8),
65 
66  dxy = Var("leadChargedHadrCand().dxy()",float, doc="d_{xy} of lead track with respect to PV, in cm (with sign)",precision=10),
67  dz = Var("leadChargedHadrCand().dz()",float, doc="d_{z} of lead track with respect to PV, in cm (with sign)",precision=14),
68 
69  # these are too many, we may have to suppress some
70  rawIso = Var( "tauID('byCombinedIsolationDeltaBetaCorrRaw3Hits')", float, doc = "combined isolation (deltaBeta corrections)", precision=10),
71  rawIsodR03 = Var( "(tauID('chargedIsoPtSumdR03')+max(0.,tauID('neutralIsoPtSumdR03')-0.072*tauID('puCorrPtSum')))", float, doc = "combined isolation (deltaBeta corrections, dR=0.3)", precision=10),
72  chargedIso = Var( "tauID('chargedIsoPtSum')", float, doc = "charged isolation", precision=10),
73  neutralIso = Var( "tauID('neutralIsoPtSum')", float, doc = "neutral (photon) isolation", precision=10),
74  puCorr = Var( "tauID('puCorrPtSum')", float, doc = "pileup correction", precision=10),
75  photonsOutsideSignalCone = Var( "tauID('photonPtSumOutsideSignalCone')", float, doc = "sum of photons outside signal cone", precision=10),
76 
77  idAntiMu = _tauId2WPMask("againstMuon%s3", doc= "Anti-muon discriminator V3: "),
78  idAntiEleDeadECal = Var("tauID('againstElectronDeadECAL')", bool, doc = "Anti-electron dead-ECal discriminator"),
79 
80 # isoCI3hit = Var( "tauID("byCombinedIsolationDeltaBetaCorrRaw3Hits")" doc="byCombinedIsolationDeltaBetaCorrRaw3Hits raw output discriminator"),
81 # photonOutsideSigCone = Var( "tauID("photonPtSumOutsideSignalCone")" doc="photonPtSumOutsideSignalCone raw output discriminator"),
82 
83 )
84 
85 _mvaIsoVars2015 = cms.PSet(
86  rawMVAnewDM = Var( "tauID('byIsolationMVArun2v1DBnewDMwLTraw')",float, doc="byIsolationMVArun2v1DBoldDMwLT raw output discriminator (2015)",precision=10),
87  rawMVAoldDM = Var( "tauID('byIsolationMVArun2v1DBoldDMwLTraw')",float, doc="byIsolationMVArun2v1DBoldDMwLT raw output discriminator (2015)",precision=10),
88  rawMVAoldDMdR03 = Var( "tauID('byIsolationMVArun2v1DBdR03oldDMwLTraw')",float, doc="byIsolationMVArun2v1DBoldDMwLT raw output discriminator (2015)",precision=10),
89  idMVAnewDM = _tauId6WPMask( "by%sIsolationMVArun2v1DBnewDMwLT", doc="IsolationMVArun2v1DBnewDMwLT ID working point (2015)"),
90  idMVAoldDM = _tauId6WPMask( "by%sIsolationMVArun2v1DBoldDMwLT", doc="IsolationMVArun2v1DBoldDMwLT ID working point (2015)"),
91  idMVAoldDMdR03 = _tauId6WPMask( "by%sIsolationMVArun2v1DBdR03oldDMwLT", doc="IsolationMVArun2v1DBoldDMdR0p3wLT ID working point (2015)")
92 )
93 _mvaIsoVars2015Reduced = cms.PSet(
94  rawMVAoldDM = Var( "tauID('byIsolationMVArun2v1DBoldDMwLTraw2015')",float, doc="byIsolationMVArun2v1DBoldDMwLT raw output discriminator (2015)",precision=10),
95  idMVAoldDM = _tauId6WPMask( "by%sIsolationMVArun2v1DBoldDMwLT2015", doc="IsolationMVArun2v1DBoldDMwLT ID working point (2015)"),
96 )
97 _mvaIsoVars2017v1 = cms.PSet(
98  rawMVAoldDM2017v1 = Var( "tauID('byIsolationMVArun2v1DBoldDMwLTraw')",float, doc="byIsolationMVArun2v1DBoldDMwLT raw output discriminator (2017v1)",precision=10),
99  idMVAoldDM2017v1 = _tauId7WPMask( "by%sIsolationMVArun2v1DBoldDMwLT", doc="IsolationMVArun2v1DBoldDMwLT ID working point (2017v1)")
100 )
101 _mvaIsoVars2017v2 = cms.PSet(
102  rawMVAnewDM2017v2 = Var( "tauID('byIsolationMVArun2v1DBnewDMwLTraw2017v2')",float, doc="byIsolationMVArun2v1DBnewDMwLT raw output discriminator (2017v2)",precision=10),
103  rawMVAoldDM2017v2 = Var( "tauID('byIsolationMVArun2v1DBoldDMwLTraw2017v2')",float, doc="byIsolationMVArun2v1DBoldDMwLT raw output discriminator (2017v2)",precision=10),
104  rawMVAoldDMdR032017v2 = Var( "tauID('byIsolationMVArun2v1DBdR03oldDMwLTraw2017v2')",float, doc="byIsolationMVArun2v1DBdR03oldDMwLT raw output discriminator (2017v2)",precision=10),
105  idMVAnewDM2017v2 = _tauId7WPMask( "by%sIsolationMVArun2v1DBnewDMwLT2017v2", doc="IsolationMVArun2v1DBnewDMwLT ID working point (2017v2)"),
106  idMVAoldDM2017v2 = _tauId7WPMask( "by%sIsolationMVArun2v1DBoldDMwLT2017v2", doc="IsolationMVArun2v1DBoldDMwLT ID working point (2017v2)"),
107  idMVAoldDMdR032017v2 = _tauId7WPMask( "by%sIsolationMVArun2v1DBdR03oldDMwLT2017v2", doc="IsolationMVArun2v1DBoldDMdR0p3wLT ID working point (2017v2)")
108 )
109 _mvaAntiEVars = cms.PSet(
110  rawAntiEle2018 = Var("tauID('againstElectronMVA6Raw')", float, doc= "Anti-electron MVA discriminator V6 raw output discriminator (2018)", precision=10),
111  rawAntiEleCat2018 = Var("tauID('againstElectronMVA6category')", int, doc="Anti-electron MVA discriminator V6 category (2018)"),
112  idAntiEle2018 = _tauId5WPMask("againstElectron%sMVA6", doc= "Anti-electron MVA discriminator V6 (2018)"),
113  rawAntiEle = Var("tauID('againstElectronMVA6Raw2015')", float, doc= "Anti-electron MVA discriminator V6 raw output discriminator (2015)", precision=10),
114  rawAntiEleCat = Var("tauID('againstElectronMVA6category2015')", int, doc="Anti-electron MVA discriminator V6 category (2015"),
115  idAntiEle = _tauId5WPMask("againstElectron%sMVA62015", doc= "Anti-electron MVA discriminator V6 (2015)"),
116 )
117 _mvaAntiEVars2015 = cms.PSet(
118  rawAntiEle = Var("tauID('againstElectronMVA6Raw')", float, doc= "Anti-electron MVA discriminator V6 raw output discriminator (2015)", precision=10),
119  rawAntiEleCat = Var("tauID('againstElectronMVA6category')", int, doc="Anti-electron MVA discriminator V6 category (2015"),
120  idAntiEle = _tauId5WPMask("againstElectron%sMVA6", doc= "Anti-electron MVA discriminator V6 (2015)"),
121 )
122 _deepTauVars2017v2p1 = cms.PSet(
123  rawDeepTau2017v2p1VSe = Var("tauID('byDeepTau2017v2p1VSeraw')", float, doc="byDeepTau2017v2p1VSe raw output discriminator (deepTau2017v2p1)", precision=10),
124  rawDeepTau2017v2p1VSmu = Var("tauID('byDeepTau2017v2p1VSmuraw')", float, doc="byDeepTau2017v2p1VSmu raw output discriminator (deepTau2017v2p1)", precision=10),
125  rawDeepTau2017v2p1VSjet = Var("tauID('byDeepTau2017v2p1VSjetraw')", float, doc="byDeepTau2017v2p1VSjet raw output discriminator (deepTau2017v2p1)", precision=10),
126  idDeepTau2017v2p1VSe = _tauId8WPMask("by%sDeepTau2017v2p1VSe", doc="byDeepTau2017v2p1VSe ID working points (deepTau2017v2p1)"),
127  idDeepTau2017v2p1VSmu = _tauId4WPMask("by%sDeepTau2017v2p1VSmu", doc="byDeepTau2017v2p1VSmu ID working points (deepTau2017v2p1)"),
128  idDeepTau2017v2p1VSjet = _tauId8WPMask("by%sDeepTau2017v2p1VSjet", doc="byDeepTau2017v2p1VSjet ID working points (deepTau2017v2p1)"),
129 )
130 
131 _variablesMiniV2 = cms.PSet(
132  _tauVarsBase,
133  _mvaAntiEVars,
134  _mvaIsoVars2015Reduced,
135  _mvaIsoVars2017v1,
136  _mvaIsoVars2017v2,
137  _deepTauVars2017v2p1
138 )
139 _variablesMiniV1 = _variablesMiniV2.clone()
140 _variablesMiniV1.rawMVAoldDM = Var( "tauID('byIsolationMVArun2v1DBoldDMwLTraw')",float, doc="byIsolationMVArun2v1DBoldDMwLT raw output discriminator (2015)",precision=10)
141 _variablesMiniV1.rawMVAoldDM2017v1 = Var( "tauID('byIsolationMVArun2v1DBoldDMwLTraw2017v1')",float, doc="byIsolationMVArun2v1DBoldDMwLT raw output discriminator (2017v1)",precision=10)
142 _variablesMiniV1.idMVAoldDM = _tauId6WPMask( "by%sIsolationMVArun2v1DBoldDMwLT", doc="IsolationMVArun2v1DBoldDMwLT ID working point (2015)")
143 _variablesMiniV1.idMVAoldDM2017v1 = _tauId7WPMask( "by%sIsolationMVArun2v1DBoldDMwLT2017v1", doc="IsolationMVArun2v1DBoldDMwLT ID working point (2017v1)")
144 _variables80X = cms.PSet(
145  _tauVarsBase,
146  _mvaAntiEVars2015,
147  _mvaIsoVars2015
148 )
149 
150 tauTable.variables = _variablesMiniV2
151 
152 for era in [run2_nanoAOD_94XMiniAODv1,]:
153  era.toModify(tauTable,
154  variables = _variablesMiniV1
155  )
156 run2_miniAOD_80XLegacy.toModify(tauTable,
157  variables = _variables80X
158 )
159 for era in [run2_nanoAOD_92X, run2_nanoAOD_94XMiniAODv1, run2_nanoAOD_94XMiniAODv2, \
160  run2_nanoAOD_94X2016, run2_nanoAOD_102Xv1, run2_nanoAOD_106Xv1]:
161  era.toModify(tauTable.variables,
162  rawAntiEle2018 = Var("tauID('againstElectronMVA6Raw2018')", float, doc= "Anti-electron MVA discriminator V6 raw output discriminator (2018)", precision=10),
163  rawAntiEleCat2018 = Var("tauID('againstElectronMVA6category2018')", int, doc="Anti-electron MVA discriminator V6 category (2018)"),
164  idAntiEle2018 = _tauId5WPMask("againstElectron%sMVA62018", doc= "Anti-electron MVA discriminator V6 (2018)"),
165  rawAntiEle = Var("tauID('againstElectronMVA6Raw')", float, doc= "Anti-electron MVA discriminator V6 raw output discriminator (2015)", precision=10),
166  rawAntiEleCat = Var("tauID('againstElectronMVA6category')", int, doc="Anti-electron MVA discriminator V6 category (2015"),
167  idAntiEle = _tauId5WPMask("againstElectron%sMVA6", doc= "Anti-electron MVA discriminator V6 (2015)")
168  )
169 
170 run2_miniAOD_80XLegacy.toModify(tauTable.variables,
171  idAntiEleDeadECal = None)
172 for era in [run2_nanoAOD_92X, run2_nanoAOD_94XMiniAODv1, run2_nanoAOD_94XMiniAODv2, \
173  run2_nanoAOD_94X2016, run2_nanoAOD_102Xv1, run2_nanoAOD_106Xv1]:
174  era.toModify(tauTable.variables,
175  idAntiEleDeadECal = Var("tauID('againstElectronDeadECALForNano')", bool, doc = "Anti-electron dead-ECal discriminator"),
176  )
177 
178 tauGenJets.GenParticles = cms.InputTag("prunedGenParticles")
179 tauGenJets.includeNeutrinos = cms.bool(False)
180 
181 genVisTaus = cms.EDProducer("GenVisTauProducer",
182  src = cms.InputTag("tauGenJetsSelectorAllHadrons"),
183  srcGenParticles = cms.InputTag("prunedGenParticles")
184 )
185 
186 genVisTauTable = cms.EDProducer("SimpleCandidateFlatTableProducer",
187  src = cms.InputTag("genVisTaus"),
188  cut = cms.string("pt > 10."),
189  name = cms.string("GenVisTau"),
190  doc = cms.string("gen hadronic taus "),
191  singleton = cms.bool(False), # the number of entries is variable
192  extension = cms.bool(False), # this is the main table for generator level hadronic tau decays
193  variables = cms.PSet(
194  pt = Var("pt", float,precision=8),
195  phi = Var("phi", float,precision=8),
196  eta = Var("eta", float,precision=8),
197  mass = Var("mass", float,precision=8),
198  charge = Var("charge", int),
199  status = Var("status", int, doc="Hadronic tau decay mode. 0=OneProng0PiZero, 1=OneProng1PiZero, 2=OneProng2PiZero, 10=ThreeProng0PiZero, 11=ThreeProng1PiZero, 15=Other"),
200  genPartIdxMother = Var("?numberOfMothers>0?motherRef(0).key():-1", int, doc="index of the mother particle"),
201  )
202 )
203 
204 tausMCMatchLepTauForTable = cms.EDProducer("MCMatcher", # cut on deltaR, deltaPt/Pt; pick best by deltaR
205  src = tauTable.src, # final reco collection
206  matched = cms.InputTag("finalGenParticles"), # final mc-truth particle collection
207  mcPdgId = cms.vint32(11,13), # one or more PDG ID (11 = electron, 13 = muon); absolute values (see below)
208  checkCharge = cms.bool(False), # True = require RECO and MC objects to have the same charge
209  mcStatus = cms.vint32(), # PYTHIA status code (1 = stable, 2 = shower, 3 = hard scattering)
210  maxDeltaR = cms.double(0.3), # Minimum deltaR for the match
211  maxDPtRel = cms.double(0.5), # Minimum deltaPt/Pt for the match
212  resolveAmbiguities = cms.bool(True), # Forbid two RECO objects to match to the same GEN object
213  resolveByMatchQuality = cms.bool(True), # False = just match input in order; True = pick lowest deltaR pair first
214 )
215 
216 tausMCMatchHadTauForTable = cms.EDProducer("MCMatcher", # cut on deltaR, deltaPt/Pt; pick best by deltaR
217  src = tauTable.src, # final reco collection
218  matched = cms.InputTag("genVisTaus"), # generator level hadronic tau decays
219  mcPdgId = cms.vint32(15), # one or more PDG ID (15 = tau); absolute values (see below)
220  checkCharge = cms.bool(False), # True = require RECO and MC objects to have the same charge
221  mcStatus = cms.vint32(), # CV: no *not* require certain status code for matching (status code corresponds to decay mode for hadronic tau decays)
222  maxDeltaR = cms.double(0.3), # Maximum deltaR for the match
223  maxDPtRel = cms.double(1.), # Maximum deltaPt/Pt for the match
224  resolveAmbiguities = cms.bool(True), # Forbid two RECO objects to match to the same GEN object
225  resolveByMatchQuality = cms.bool(True), # False = just match input in order; True = pick lowest deltaR pair first
226 )
227 
228 tauMCTable = cms.EDProducer("CandMCMatchTableProducer",
229  src = tauTable.src,
230  mcMap = cms.InputTag("tausMCMatchLepTauForTable"),
231  mcMapVisTau = cms.InputTag("tausMCMatchHadTauForTable"),
232  objName = tauTable.name,
233  objType = tauTable.name, #cms.string("Tau"),
234  branchName = cms.string("genPart"),
235  docString = cms.string("MC matching to status==2 taus"),
236 )
237 
238 
239 tauSequence = cms.Sequence(patTauMVAIDsSeq + finalTaus)
240 _tauSequence80X = cms.Sequence(finalTaus)
241 run2_miniAOD_80XLegacy.toReplaceWith(tauSequence,_tauSequence80X)
242 tauTables = cms.Sequence(tauTable)
243 tauMC = cms.Sequence(tauGenJets + tauGenJetsSelectorAllHadrons + genVisTaus + genVisTauTable + tausMCMatchLepTauForTable + tausMCMatchHadTauForTable + tauMCTable)
244 
taus_updatedMVAIds_cff
Updated tau collection with MVA-based tau-Ids rerun ####### Used only in some eras.
taus_cff._tauId7WPMask
def _tauId7WPMask(pattern, doc)
Definition: taus_cff.py:41
join
static std::string join(char **cmd)
Definition: RemoteFile.cc:17
common_cff
taus_cff._tauId5WPMask
def _tauId5WPMask(pattern, doc)
Definition: taus_cff.py:37
common_cff.Var
def Var(expr, valtype, compression=None, doc=None, mcOnly=False, precision=-1)
Definition: common_cff.py:20
taus_cff._tauId6WPMask
def _tauId6WPMask(pattern, doc)
Definition: taus_cff.py:39
taus_cff._tauId8WPMask
def _tauId8WPMask(pattern, doc)
Definition: taus_cff.py:43
taus_cff._tauId3WPMask
def _tauId3WPMask(pattern, doc)
Definition: taus_cff.py:33
taus_cff._tauId2WPMask
def _tauId2WPMask(pattern, doc)
Definition: taus_cff.py:31
funct::pow
Power< A, B >::type pow(const A &a, const B &b)
Definition: Power.h:29
TauGenJets_cfi
taus_cff._tauId4WPMask
def _tauId4WPMask(pattern, doc)
Definition: taus_cff.py:35
taus_cff._tauIdWPMask
def _tauIdWPMask(pattern, choices, doc="")
Tables for final output and docs ##########################.
Definition: taus_cff.py:28
TauGenJetsDecayModeSelectorAllHadrons_cfi