1 import FWCore.ParameterSet.Config
as cms
2 from Configuration.Eras.Modifier_run2_miniAOD_80XLegacy_cff
import run2_miniAOD_80XLegacy
4 from math
import ceil,log
6 from Configuration.Eras.Modifier_run2_miniAOD_80XLegacy_cff
import run2_miniAOD_80XLegacy
7 from Configuration.Eras.Modifier_run2_nanoAOD_94XMiniAODv1_cff
import run2_nanoAOD_94XMiniAODv1
8 from Configuration.Eras.Modifier_run2_nanoAOD_94XMiniAODv2_cff
import run2_nanoAOD_94XMiniAODv2
9 from Configuration.Eras.Modifier_run2_nanoAOD_94X2016_cff
import run2_nanoAOD_94X2016
11 photon_id_modules_WorkingPoints_nanoAOD = cms.PSet(
12 modules = cms.vstring(
13 'RecoEgamma.PhotonIdentification.Identification.cutBasedPhotonID_Fall17_94X_V1_TrueVtx_cff',
14 'RecoEgamma.PhotonIdentification.Identification.cutBasedPhotonID_Fall17_94X_V2_cff',
15 'RecoEgamma.PhotonIdentification.Identification.mvaPhotonID_Fall17_94X_V1p1_cff',
16 'RecoEgamma.PhotonIdentification.Identification.mvaPhotonID_Fall17_94X_V2_cff',
18 WorkingPoints = cms.vstring(
19 "egmPhotonIDs:cutBasedPhotonID-Fall17-94X-V2-loose",
20 "egmPhotonIDs:cutBasedPhotonID-Fall17-94X-V2-medium",
21 "egmPhotonIDs:cutBasedPhotonID-Fall17-94X-V2-tight",
24 run2_miniAOD_80XLegacy.toModify(photon_id_modules_WorkingPoints_nanoAOD,
25 modules = cms.vstring(
26 'RecoEgamma.PhotonIdentification.Identification.cutBasedPhotonID_Spring16_V2p2_cff',
27 'RecoEgamma.PhotonIdentification.Identification.mvaPhotonID_Spring16_nonTrig_V1_cff',
29 WorkingPoints = cms.vstring(
30 "egmPhotonIDs:cutBasedPhotonID-Spring16-V2p2-loose",
31 "egmPhotonIDs:cutBasedPhotonID-Spring16-V2p2-medium",
32 "egmPhotonIDs:cutBasedPhotonID-Spring16-V2p2-tight",
35 run2_nanoAOD_94X2016.toModify(photon_id_modules_WorkingPoints_nanoAOD,
36 modules = cms.vstring(
37 'RecoEgamma.PhotonIdentification.Identification.cutBasedPhotonID_Spring16_V2p2_cff',
39 WorkingPoints = cms.vstring(
40 "egmPhotonIDs:cutBasedPhotonID-Spring16-V2p2-loose",
41 "egmPhotonIDs:cutBasedPhotonID-Spring16-V2p2-medium",
42 "egmPhotonIDs:cutBasedPhotonID-Spring16-V2p2-tight",
47 _bitmapVIDForPho_docstring =
'' 48 for modname
in photon_id_modules_WorkingPoints_nanoAOD.modules:
49 ids= __import__(modname, globals(), locals(), [
'idName',
'cutFlow'])
51 _id = getattr(ids,name)
52 if hasattr(_id,
'idName')
and hasattr(_id,
'cutFlow'):
53 if (len(photon_id_modules_WorkingPoints_nanoAOD.WorkingPoints)>0
and _id.idName==photon_id_modules_WorkingPoints_nanoAOD.WorkingPoints[0].
split(
':')[-1]):
54 _bitmapVIDForPho_docstring =
'VID compressed bitmap (%s), %d bits per cut'%(
','.
join([cut.cutName.value()
for cut
in _id.cutFlow]),
int(ceil(
log(len(photon_id_modules_WorkingPoints_nanoAOD.WorkingPoints)+1,2))))
56 bitmapVIDForPho = cms.EDProducer(
"PhoVIDNestedWPBitmapProducer",
57 src = cms.InputTag(
"slimmedPhotons"),
58 WorkingPoints = photon_id_modules_WorkingPoints_nanoAOD.WorkingPoints,
61 isoForPho = cms.EDProducer(
"PhoIsoValueMapProducer",
62 src = cms.InputTag(
"slimmedPhotons"),
63 relative = cms.bool(
False),
64 rho_PFIso = cms.InputTag(
"fixedGridRhoFastjetAll"),
65 mapIsoChg = cms.InputTag(
"photonIDValueMapProducer:phoChargedIsolation"),
66 mapIsoNeu = cms.InputTag(
"photonIDValueMapProducer:phoNeutralHadronIsolation"),
67 mapIsoPho = cms.InputTag(
"photonIDValueMapProducer:phoPhotonIsolation"),
68 EAFile_PFIso_Chg = cms.FileInPath(
"RecoEgamma/PhotonIdentification/data/Fall17/effAreaPhotons_cone03_pfChargedHadrons_90percentBased_V2.txt"),
69 EAFile_PFIso_Neu = cms.FileInPath(
"RecoEgamma/PhotonIdentification/data/Fall17/effAreaPhotons_cone03_pfNeutralHadrons_90percentBased_V2.txt"),
70 EAFile_PFIso_Pho = cms.FileInPath(
"RecoEgamma/PhotonIdentification/data/Fall17/effAreaPhotons_cone03_pfPhotons_90percentBased_V2.txt"),
72 for modifier
in run2_miniAOD_80XLegacy, run2_nanoAOD_94X2016:
73 modifier.toModify(isoForPho,
74 EAFile_PFIso_Chg = cms.FileInPath(
"RecoEgamma/PhotonIdentification/data/Spring16/effAreaPhotons_cone03_pfChargedHadrons_90percentBased.txt"),
75 EAFile_PFIso_Neu = cms.FileInPath(
"RecoEgamma/PhotonIdentification/data/Spring16/effAreaPhotons_cone03_pfNeutralHadrons_90percentBased.txt"),
76 EAFile_PFIso_Pho = cms.FileInPath(
"RecoEgamma/PhotonIdentification/data/Spring16/effAreaPhotons_cone03_pfPhotons_90percentBased.txt"),
79 seedGainPho = cms.EDProducer(
"PhotonSeedGainProducer", src = cms.InputTag(
"slimmedPhotons"))
81 import RecoEgamma.EgammaTools.calibratedEgammas_cff
82 calibratedPatPhotons102Xv1 = RecoEgamma.EgammaTools.calibratedEgammas_cff.calibratedPatPhotons.clone(
83 produceCalibratedObjs =
False,
84 correctionFile = cms.string(
"EgammaAnalysis/ElectronTools/data/ScalesSmearings/Run2018_Step2Closure_CoarseEtaR9Gain_v2")
87 calibratedPatPhotons94Xv1 = RecoEgamma.EgammaTools.calibratedEgammas_cff.calibratedPatPhotons.clone(
88 produceCalibratedObjs =
False,
89 correctionFile = cms.string(
"EgammaAnalysis/ElectronTools/data/ScalesSmearings/Run2017_17Nov2017_v1_ele_unc")
92 calibratedPatPhotons80XLegacy = RecoEgamma.EgammaTools.calibratedEgammas_cff.calibratedPatPhotons.clone(
93 produceCalibratedObjs =
False,
94 correctionFile = cms.string(
"EgammaAnalysis/ElectronTools/data/ScalesSmearings/Legacy2016_07Aug2017_FineEtaR9_v3_ele_unc"),
97 slimmedPhotonsWithUserData = cms.EDProducer(
"PATPhotonUserDataEmbedder",
98 src = cms.InputTag(
"slimmedPhotons"),
99 userFloats = cms.PSet(
100 mvaID = cms.InputTag(
"photonMVAValueMapProducer:PhotonMVAEstimatorRunIIFall17v2Values"),
101 mvaIDV1 = cms.InputTag(
"photonMVAValueMapProducer:PhotonMVAEstimatorRunIIFall17v1p1Values"),
102 PFIsoChg = cms.InputTag(
"isoForPho:PFIsoChg"),
103 PFIsoAll = cms.InputTag(
"isoForPho:PFIsoAll"),
105 userIntFromBools = cms.PSet(
106 cutbasedID_loose = cms.InputTag(
"egmPhotonIDs:cutBasedPhotonID-Fall17-94X-V2-loose"),
107 cutbasedID_medium = cms.InputTag(
"egmPhotonIDs:cutBasedPhotonID-Fall17-94X-V2-medium"),
108 cutbasedID_tight = cms.InputTag(
"egmPhotonIDs:cutBasedPhotonID-Fall17-94X-V2-tight"),
109 mvaID_WP90 = cms.InputTag(
"egmPhotonIDs:mvaPhoID-RunIIFall17-v2-wp90"),
110 mvaID_WP80 = cms.InputTag(
"egmPhotonIDs:mvaPhoID-RunIIFall17-v2-wp80"),
111 cutbasedIDV1_loose = cms.InputTag(
"egmPhotonIDs:cutBasedPhotonID-Fall17-94X-V1-loose"),
112 cutbasedIDV1_medium = cms.InputTag(
"egmPhotonIDs:cutBasedPhotonID-Fall17-94X-V1-medium"),
113 cutbasedIDV1_tight = cms.InputTag(
"egmPhotonIDs:cutBasedPhotonID-Fall17-94X-V1-tight"),
114 mvaIDV1_WP90 = cms.InputTag(
"egmPhotonIDs:mvaPhoID-RunIIFall17-v1p1-wp90"),
115 mvaIDV1_WP80 = cms.InputTag(
"egmPhotonIDs:mvaPhoID-RunIIFall17-v1p1-wp80"),
118 VIDNestedWPBitmap = cms.InputTag(
"bitmapVIDForPho"),
119 seedGain = cms.InputTag(
"seedGainPho"),
122 run2_miniAOD_80XLegacy.toModify(slimmedPhotonsWithUserData.userFloats,
123 mvaID = cms.InputTag(
"photonMVAValueMapProducer:PhotonMVAEstimatorRun2Spring16NonTrigV1Values"),
126 run2_miniAOD_80XLegacy.toModify(slimmedPhotonsWithUserData.userIntFromBools,
127 cutbasedID_loose = cms.InputTag(
"egmPhotonIDs:cutBasedPhotonID-Spring16-V2p2-loose"),
128 cutbasedID_medium = cms.InputTag(
"egmPhotonIDs:cutBasedPhotonID-Spring16-V2p2-medium"),
129 cutbasedID_tight = cms.InputTag(
"egmPhotonIDs:cutBasedPhotonID-Spring16-V2p2-tight"),
130 mvaID_WP90 = cms.InputTag(
"egmPhotonIDs:mvaPhoID-Spring16-nonTrig-V1-wp90"),
131 mvaID_WP80 = cms.InputTag(
"egmPhotonIDs:mvaPhoID-Spring16-nonTrig-V1-wp80"),
132 cutbasedIDV1_loose =
None,
133 cutbasedIDV1_medium =
None,
134 cutbasedIDV1_tight =
None,
138 run2_nanoAOD_94X2016.toModify(slimmedPhotonsWithUserData.userFloats,
142 run2_nanoAOD_94X2016.toModify(slimmedPhotonsWithUserData.userIntFromBools,
143 cutbasedID_loose = cms.InputTag(
"egmPhotonIDs:cutBasedPhotonID-Spring16-V2p2-loose"),
144 cutbasedID_medium = cms.InputTag(
"egmPhotonIDs:cutBasedPhotonID-Spring16-V2p2-medium"),
145 cutbasedID_tight = cms.InputTag(
"egmPhotonIDs:cutBasedPhotonID-Spring16-V2p2-tight"),
148 cutbasedIDV1_loose =
None,
149 cutbasedIDV1_medium =
None,
150 cutbasedIDV1_tight =
None,
155 run2_miniAOD_80XLegacy.toModify(slimmedPhotonsWithUserData.userFloats,
156 ecalEnergyErrPostCorrNew = cms.InputTag(
"calibratedPatPhotons80XLegacy",
"ecalEnergyErrPostCorr"),
157 ecalEnergyPreCorrNew = cms.InputTag(
"calibratedPatPhotons80XLegacy",
"ecalEnergyPreCorr"),
158 ecalEnergyPostCorrNew = cms.InputTag(
"calibratedPatPhotons80XLegacy",
"ecalEnergyPostCorr"),
160 run2_nanoAOD_94XMiniAODv1.toModify(slimmedPhotonsWithUserData.userFloats,
161 ecalEnergyErrPostCorrNew = cms.InputTag(
"calibratedPatPhotons94Xv1",
"ecalEnergyErrPostCorr"),
162 ecalEnergyPreCorrNew = cms.InputTag(
"calibratedPatPhotons94Xv1",
"ecalEnergyPreCorr"),
163 ecalEnergyPostCorrNew = cms.InputTag(
"calibratedPatPhotons94Xv1",
"ecalEnergyPostCorr"),
165 (~(run2_miniAOD_80XLegacy | run2_nanoAOD_94X2016 | run2_nanoAOD_94XMiniAODv1 | run2_nanoAOD_94XMiniAODv2)).toModify(slimmedPhotonsWithUserData.userFloats,
166 ecalEnergyErrPostCorrNew = cms.InputTag(
"calibratedPatPhotons102Xv1",
"ecalEnergyErrPostCorr"),
167 ecalEnergyPreCorrNew = cms.InputTag(
"calibratedPatPhotons102Xv1",
"ecalEnergyPreCorr"),
168 ecalEnergyPostCorrNew = cms.InputTag(
"calibratedPatPhotons102Xv1",
"ecalEnergyPostCorr"),
171 finalPhotons = cms.EDFilter(
"PATPhotonRefSelector",
172 src = cms.InputTag(
"slimmedPhotonsWithUserData"),
173 cut = cms.string(
"pt > 5 ")
176 photonTable = cms.EDProducer(
"SimpleCandidateFlatTableProducer",
177 src = cms.InputTag(
"linkedObjects",
"photons"),
178 cut = cms.string(
""),
179 name= cms.string(
"Photon"),
180 doc = cms.string(
"slimmedPhotons after basic selection (" + finalPhotons.cut.value()+
")"),
181 singleton = cms.bool(
False),
182 extension = cms.bool(
False),
183 variables = cms.PSet(CandVars,
184 jetIdx =
Var(
"?hasUserCand('jet')?userCand('jet').key():-1", int, doc=
"index of the associated jet (-1 if none)"),
185 electronIdx =
Var(
"?hasUserCand('electron')?userCand('electron').key():-1", int, doc=
"index of the associated electron (-1 if none)"),
186 energyErr =
Var(
"getCorrectedEnergyError('regression2')",float,doc=
"energy error of the cluster from regression",precision=6),
187 r9 =
Var(
"full5x5_r9()",float,doc=
"R9 of the supercluster, calculated with full 5x5 region",precision=10),
188 sieie =
Var(
"full5x5_sigmaIetaIeta()",float,doc=
"sigma_IetaIeta of the supercluster, calculated with full 5x5 region",precision=10),
189 cutBasedBitmap =
Var(
"userInt('cutbasedID_loose')+2*userInt('cutbasedID_medium')+4*userInt('cutbasedID_tight')",int,doc=
"cut-based ID bitmap, 2^(0:loose, 1:medium, 2:tight)"),
190 cutBasedV1Bitmap =
Var(
"userInt('cutbasedIDV1_loose')+2*userInt('cutbasedIDV1_medium')+4*userInt('cutbasedIDV1_tight')",int,doc=
"cut-based ID bitmap, Fall17 V1, 2^(0:loose, 1:medium, 2:tight)"),
191 vidNestedWPBitmap =
Var(
"userInt('VIDNestedWPBitmap')",int,doc=_bitmapVIDForPho_docstring),
192 electronVeto =
Var(
"passElectronVeto()",bool,doc=
"pass electron veto"),
193 pixelSeed =
Var(
"hasPixelSeed()",bool,doc=
"has pixel seed"),
194 mvaID =
Var(
"userFloat('mvaID')",float,doc=
"MVA ID score",precision=10),
195 mvaIDV1 =
Var(
"userFloat('mvaIDV1')",float,doc=
"MVA ID score, Fall17 V1p1",precision=10),
196 mvaID_WP90 =
Var(
"userInt('mvaID_WP90')",bool,doc=
"MVA ID WP90"),
197 mvaID_WP80 =
Var(
"userInt('mvaID_WP80')",bool,doc=
"MVA ID WP80"),
198 pfRelIso03_chg =
Var(
"userFloat('PFIsoChg')/pt",float,doc=
"PF relative isolation dR=0.3, charged component (with rho*EA PU corrections)"),
199 pfRelIso03_all =
Var(
"userFloat('PFIsoAll')/pt",float,doc=
"PF relative isolation dR=0.3, total (with rho*EA PU corrections)"),
200 hoe =
Var(
"hadronicOverEm()",float,doc=
"H over E",precision=8),
201 isScEtaEB =
Var(
"abs(superCluster().eta()) < 1.4442",bool,doc=
"is supercluster eta within barrel acceptance"),
202 isScEtaEE =
Var(
"abs(superCluster().eta()) > 1.566 && abs(superCluster().eta()) < 2.5",bool,doc=
"is supercluster eta within endcap acceptance"),
203 seedGain =
Var(
"userInt('seedGain')",
"uint8",doc=
"Gain of the seed crystal"),
208 for modifier
in run2_nanoAOD_94XMiniAODv2, run2_nanoAOD_94X2016:
209 modifier.toModify(photonTable.variables,
210 pt =
Var(
"pt*userFloat('ecalEnergyPostCorr')/userFloat('ecalEnergyPreCorr')", float, precision=-1, doc=
"p_{T}"),
211 energyErr =
Var(
"userFloat('ecalEnergyErrPostCorr')",float,doc=
"energy error of the cluster from regression",precision=6),
212 eCorr =
Var(
"userFloat('ecalEnergyPostCorr')/userFloat('ecalEnergyPreCorr')",float,doc=
"ratio of the calibrated energy/miniaod energy"),
216 for modifier
in run2_nanoAOD_94XMiniAODv1, run2_miniAOD_80XLegacy, (~(run2_miniAOD_80XLegacy | run2_nanoAOD_94X2016 | run2_nanoAOD_94XMiniAODv1 | run2_nanoAOD_94XMiniAODv2)):
217 modifier.toModify(photonTable.variables,
218 pt =
Var(
"pt*userFloat('ecalEnergyPostCorrNew')/userFloat('ecalEnergyPreCorrNew')", float, precision=-1, doc=
"p_{T}"),
219 energyErr =
Var(
"userFloat('ecalEnergyErrPostCorrNew')",float,doc=
"energy error of the cluster from regression",precision=6),
220 eCorr =
Var(
"userFloat('ecalEnergyPostCorrNew')/userFloat('ecalEnergyPreCorrNew')",float,doc=
"ratio of the calibrated energy/miniaod energy"),
224 run2_nanoAOD_94X2016.toModify(photonTable.variables,
225 cutBasedBitmap =
None,
226 cutBasedV1Bitmap =
None,
227 cutBased =
Var(
"userInt('cutbasedID_loose')+userInt('cutbasedID_medium')+userInt('cutbasedID_tight')",int,doc=
"cut-based Spring16-V2p2 ID (0:fail, 1::loose, 2:medium, 3:tight)"),
228 cutBased17Bitmap =
Var(
"photonID('cutBasedPhotonID-Fall17-94X-V1-loose')+2*photonID('cutBasedPhotonID-Fall17-94X-V1-medium')+4*photonID('cutBasedPhotonID-Fall17-94X-V1-tight')",int,doc=
"cut-based Fall17-94X-V1 ID bitmap, 2^(0:loose, 1:medium, 2:tight)"),
229 mvaID =
Var(
"userFloat('PhotonMVAEstimatorRun2Spring16NonTrigV1Values')",float,doc=
"MVA Spring16NonTrigV1 ID score",precision=10),
231 mvaID17 =
Var(
"userFloat('PhotonMVAEstimatorRunIIFall17v1p1Values')",float,doc=
"MVA Fall17v1p1 ID score",precision=10),
232 mvaID_WP90 =
Var(
"photonID('mvaPhoID-Spring16-nonTrig-V1-wp80')",bool,doc=
"MVA Spring16NonTrigV1 ID WP90"),
233 mvaID_WP80 =
Var(
"photonID('mvaPhoID-Spring16-nonTrig-V1-wp90')",bool,doc=
"MVA Spring16NonTrigV1 ID WP80"),
234 mvaID17_WP90 =
Var(
"photonID('mvaPhoID-RunIIFall17-v1p1-wp90')",bool,doc=
"MVA Fall17v1p1 ID WP90"),
235 mvaID17_WP80 =
Var(
"photonID('mvaPhoID-RunIIFall17-v1p1-wp80')",bool,doc=
"MVA Fall17v1p1 ID WP80"),
237 run2_miniAOD_80XLegacy.toModify(photonTable.variables,
238 cutBasedBitmap =
None,
239 cutBasedV1Bitmap =
None,
241 cutBased =
Var(
"userInt('cutbasedID_loose')+userInt('cutbasedID_medium')+userInt('cutbasedID_tight')",int,doc=
"cut-based ID (0:fail, 1::loose, 2:medium, 3:tight)"),
245 photonsMCMatchForTable = cms.EDProducer(
"MCMatcher",
246 src = photonTable.src,
247 matched = cms.InputTag(
"finalGenParticles"),
248 mcPdgId = cms.vint32(11,22),
249 checkCharge = cms.bool(
False),
250 mcStatus = cms.vint32(1),
251 maxDeltaR = cms.double(0.3),
252 maxDPtRel = cms.double(0.5),
253 resolveAmbiguities = cms.bool(
True),
254 resolveByMatchQuality = cms.bool(
True),
257 photonMCTable = cms.EDProducer(
"CandMCMatchTableProducer",
258 src = photonTable.src,
259 mcMap = cms.InputTag(
"photonsMCMatchForTable"),
260 objName = photonTable.name,
261 objType = photonTable.name,
262 branchName = cms.string(
"genPart"),
263 docString = cms.string(
"MC matching to status==1 photons or electrons"),
266 photonSequence = cms.Sequence(bitmapVIDForPho + isoForPho + seedGainPho + slimmedPhotonsWithUserData + finalPhotons)
267 photonTables = cms.Sequence ( photonTable)
268 photonMC = cms.Sequence(photonsMCMatchForTable + photonMCTable)
270 _with80XScale_sequence = photonSequence.copy()
271 _with80XScale_sequence.replace(slimmedPhotonsWithUserData, calibratedPatPhotons80XLegacy + slimmedPhotonsWithUserData)
272 run2_miniAOD_80XLegacy.toReplaceWith(photonSequence, _with80XScale_sequence)
274 _with94Xv1Scale_sequence = photonSequence.copy()
275 _with94Xv1Scale_sequence.replace(slimmedPhotonsWithUserData, calibratedPatPhotons94Xv1 + slimmedPhotonsWithUserData)
276 run2_nanoAOD_94XMiniAODv1.toReplaceWith(photonSequence, _with94Xv1Scale_sequence)
278 _with102Xv1Scale_sequence = photonSequence.copy()
279 _with102Xv1Scale_sequence.replace(slimmedPhotonsWithUserData, calibratedPatPhotons102Xv1 + slimmedPhotonsWithUserData)
280 (~(run2_miniAOD_80XLegacy | run2_nanoAOD_94X2016 | run2_nanoAOD_94XMiniAODv1 | run2_nanoAOD_94XMiniAODv2)).toReplaceWith(photonSequence, _with102Xv1Scale_sequence)
def Var(expr, valtype, compression=None, doc=None, mcOnly=False, precision=-1)
static std::string join(char **cmd)