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HLTTauAnalyzer_cfi.py

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00001 import FWCore.ParameterSet.Config as cms
00002 
00003 hltTauAnalyzer = cms.EDAnalyzer("HLTTauAnalyzer",
00004     mcDeltaRLep = cms.double(0.5),
00005     #  Max delta R between generator and L1/HLT candidates
00006     mcDeltaRTau = cms.double(0.5),
00007     #  Output ROOT file and text file
00008     rootFile = cms.untracked.string('HLTAnalyzer.root'),
00009     logFile = cms.untracked.string('HLTAnalyzer.log'),
00010     # Level 2 MET
00011     HLTMETFilter = cms.InputTag("hlt1METSingleTau"),
00012     l2TauJets = cms.VInputTag(),
00013     l2TauJetsFiltered = cms.VInputTag(),
00014     l25TauJets = cms.VInputTag(),
00015     l3TauJets = cms.VInputTag(),
00016     #  Switch for signal/background datasets
00017     isSignal = cms.bool(True),
00018     #  Products along the HLT paths
00019     hltLeptonSrc = cms.VInputTag(),
00020     UsingMET = cms.bool(False),
00021     #  Level 1 trigger bit: "L1_IsoEG10_TauJet20" "L1_Mu5_TauJet20" "L1_SingleTauJet80" "L1_DoubleTauJet40" "L1_TauJet30_ETIM30"
00022     l1TauTrigger = cms.string(''),
00023     debug = cms.int32(1000),
00024     # Number of tau candidates to be checked at every step of the trigger path 
00025     # 1 = singleTau, singleTauMET, lepton+tau, 2 = double tau
00026     nbLeps = cms.int32(0),
00027     #  Monte-Carlo products from HLTTauMcInfo producer
00028     mcProducts = cms.VInputTag(cms.InputTag("TauMcInfoProducer","Jets"), cms.InputTag("TauMcInfoProducer","Leptons"), cms.InputTag("TauMcInfoProducer","Neutrina")),
00029     nbTaus = cms.int32(1)
00030 )
00031 
00032 

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