DESY Hbb Analysis Framework
ntuplizer_101X_promptreco_2018-v1.py
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1 # For the ntuple production
2 import FWCore.ParameterSet.Config as cms
3 
4 process = cms.Process('MssmHbb')
5 
6 process.load('FWCore.MessageService.MessageLogger_cfi')
7 process.MessageLogger.cerr.FwkReport.reportEvery = cms.untracked.int32(100000)
8 
9 ## Using MINIAOD. GlobalTag just in case jet re-clustering, L1 trigger filter etc is needed to be done
10 process.load('Configuration.StandardSequences.MagneticField_AutoFromDBCurrent_cff')
11 process.load('Configuration.Geometry.GeometryRecoDB_cff')
12 process.load('Configuration.StandardSequences.FrontierConditions_GlobalTag_cff')
13 from Configuration.AlCa.GlobalTag import GlobalTag
14 process.GlobalTag = GlobalTag(process.GlobalTag, '101X_dataRun2_Prompt_v9')
15 
16 process.maxEvents = cms.untracked.PSet( input = cms.untracked.int32(100) )
17 
18 ## TFileService
19 output_file = 'ntuple.root'
20 process.TFileService = cms.Service('TFileService',
21  fileName = cms.string(output_file)
22 )
23 
25 
26 ## ============ TRIGGER FILTER ===============
27 ## Enable below at cms.Path if needed - DATA ONLY!!!
28 process.triggerSelection = cms.EDFilter( 'TriggerResultsFilter',
29  MssmHbbTriggerResultsFilter,
30  hltResults = cms.InputTag( 'TriggerResults', '', 'HLT' ),
31  l1tResults = cms.InputTag( '' ),
32  l1tIgnoreMask = cms.bool( False ),
33  l1techIgnorePrescales = cms.bool( False ),
34  daqPartitions = cms.uint32( 1 ),
35  throw = cms.bool( False )
36 )
37 
38 
39 # only need if discriminator is new or recommended not for JEC
40 bTagDiscriminators = [
41  'pfCombinedInclusiveSecondaryVertexV2BJetTags',
42  'pfJetProbabilityBJetTags',
43  'pfDeepCSVJetTags:probudsg',
44  'pfDeepCSVJetTags:probb',
45  'pfDeepCSVJetTags:probc',
46  'pfDeepCSVJetTags:probbb',
47  'pfDeepCSVJetTags:probcc',
48 ]
49 
50 
51 ### ============ Jet energy correctiosn update ============== (not really running!???)
53 ## Update the slimmedJets in miniAOD: corrections from the chosen Global Tag are applied and the b-tag discriminators are re-evaluated
54 updateJetCollection(
55  process,
56  jetSource = cms.InputTag('slimmedJets'),
57  jetCorrections = ('AK4PFchs', cms.vstring(['L1FastJet', 'L2Relative', 'L3Absolute', 'L2L3Residual']), 'None'),
58 # btagDiscriminators = bTagDiscriminators
59 )
60 updateJetCollection(
61  process,
62  labelName = 'Puppi',
63  jetSource = cms.InputTag('slimmedJetsPuppi'),
64  jetCorrections = ('AK4PFPuppi', cms.vstring(['L1FastJet', 'L2Relative', 'L3Absolute', 'L2L3Residual']), 'None'),
65 # btagDiscriminators = bTagDiscriminators
66 )
67 updateJetCollection(
68  process,
69  labelName = 'AK8',
70  jetSource = cms.InputTag('slimmedJetsAK8'),
71  jetCorrections = ('AK8PFchs', cms.vstring(['L1FastJet', 'L2Relative', 'L3Absolute', 'L2L3Residual']), 'None'),
72 # btagDiscriminators = bTagDiscriminators
73 )
74 
75 
76 ## ============ EVENT FILTER COUNTER ===============
77 ## Filter counter (maybe more useful for MC)
78 process.TotalEvents = cms.EDProducer('EventCountProducer')
79 process.FilteredEvents = cms.EDProducer('EventCountProducer')
80 
81 ## ============ PRIMARY VERTEX FILTER ===============
82 process.primaryVertexFilter = cms.EDFilter('VertexSelector',
83  src = cms.InputTag('offlineSlimmedPrimaryVertices'), # primary vertex collection name
84  cut = cms.string('!isFake && ndof > 4 && abs(z) <= 24 && position.Rho <= 2'), # ndof>thr=4 corresponds to sum(track_weigths) > (thr+3)/2 = 3.5 so typically 4 good tracks
85  filter = cms.bool(True), # otherwise it won't filter the events, just produce an empty vertex collection.
86 )
87 
92 
93 
94 ## ============ THE NTUPLIZER!!! ===============
95 process.MssmHbb = cms.EDAnalyzer('Ntuplizer',
96  # Imported settings (always at the beginning)
97  MssmHbbNtuplizerBtag,
98  MssmHbbNtuplizerTriggerPaths,
99  MssmHbbNtuplizerL1Seeds,
100  MssmHbbNtuplizerTriggerObjects,
101 
102  MonteCarlo = cms.bool(False),
103  ###################
104  TotalEvents = cms.InputTag ('TotalEvents'),
105  FilteredEvents = cms.InputTag ('FilteredEvents'),
106 # PatJets = cms.VInputTag( cms.InputTag('slimmedJets'), cms.InputTag('slimmedJetsPuppi'), cms.InputTag('slimmedJetsAK8'), ),
107  PatJets = cms.VInputTag( cms.InputTag('updatedPatJets'), cms.InputTag('updatedPatJetsPuppi'), cms.InputTag('updatedPatJetsAK8'), ),
108  JECRecords = cms.vstring ( 'AK4PFchs', 'AK4PFPuppi', 'AK8PFchs', ), # for the JEC uncertainties
109  JERRecords = cms.vstring ( 'AK4PFchs', 'AK4PFPuppi', 'AK8PFchs', ), # for the JER uncertainties
110  FixedGridRhoAll = cms.InputTag ('fixedGridRhoAll'),
111  PatMuons = cms.VInputTag(cms.InputTag('slimmedMuons') ),
112  PrimaryVertices = cms.VInputTag(cms.InputTag('offlineSlimmedPrimaryVertices') ),
113  TriggerResults = cms.VInputTag(cms.InputTag('TriggerResults','','HLT') ),
114  L1TJets = cms.VInputTag(cms.InputTag('caloStage2Digis','Jet','RECO'), ),
115  L1TMuons = cms.VInputTag(cms.InputTag('gmtStage2Digis','Muon','RECO'), ),
116  TriggerObjectStandAlone = cms.VInputTag(cms.InputTag('slimmedPatTrigger'), ),
117 
118 )
119 
120 process.p = cms.Path(
121  process.TotalEvents *
122  process.triggerSelection *
123  process.primaryVertexFilter *
124  process.FilteredEvents *
125  process.patJetCorrFactors * process.updatedPatJets *
126  process.patJetCorrFactorsPuppi * process.updatedPatJetsPuppi *
127  process.patJetCorrFactorsAK8 * process.updatedPatJetsAK8 *
128  process.MssmHbb
129  )
130 
131 
132 readFiles = cms.untracked.vstring()
133 secFiles = cms.untracked.vstring()
134 process.source = cms.Source ('PoolSource',fileNames = readFiles, secondaryFileNames = secFiles)
135 readFiles.extend( [
136  '/store/data/Run2018A/JetHT/MINIAOD/PromptReco-v1/000/315/257/00000/684ACF2A-5F4B-E811-AC83-02163E01A002.root',
137  '/store/data/Run2018A/JetHT/MINIAOD/PromptReco-v1/000/315/974/00000/DA0A327E-B255-E811-968E-FA163E0B2F4D.root',
138 ] );
139 
140 
141 secFiles.extend( [
142  ] )
143 
144 # ============ Output MiniAOD ======================
145 # process.out = cms.OutputModule("PoolOutputModule",
146 # fileName = cms.untracked.string('patTuple.root'),
147 # outputCommands = cms.untracked.vstring('keep *' )
148 # )
149 # process.outpath = cms.EndPath(process.out)
150 
151 # ## ============ JSON Certified data =============== BE CAREFUL!!!
152 # ## Don't use with CRAB!!!
153 # import FWCore.PythonUtilities.LumiList as LumiList
154 # import FWCore.ParameterSet.Types as CfgTypes
155 # process.source.lumisToProcess = CfgTypes.untracked(CfgTypes.VLuminosityBlockRange())
156 # JSONfile = 'json_DCSONLY.txt'
157 # myLumis = LumiList.LumiList(filename = JSONfile).getCMSSWString().split(',')
158 # process.source.lumisToProcess.extend(myLumis)
============ Jet energy correctiosn update ============== (not really running!???) ...