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Variables
SingleMuPt40Fwdv2_cfi_GEN_SIM Namespace Reference

Variables

tuple AddAntiParticle = cms.bool(True)
 
tuple annotation = cms.untracked.string('GEMCode/GEMValidation/SingleMuPt40Fwdv2_cfi nevts:1000')
 
tuple cut = cms.string( "pt > 5. & abs(eta)<2.5 & abs(eta)>1.45" )
 
tuple dataset
 
tuple eventAutoFlushCompressedSize = cms.untracked.int32(5242880)
 
tuple fileName = cms.untracked.string('out_file_name.root')
 
tuple filter = cms.bool(True)
 
tuple firstRun = cms.untracked.uint32(1)
 
tuple input = cms.untracked.int32(1000)
 
tuple name = cms.untracked.string('Applications')
 
 outputCommands = process.FEVTDEBUGEventContent.outputCommands,
 
tuple pdgId = cms.vint32( 13, -13 )
 
tuple PGunParameters
 
tuple process = cms.Process('SIM')
 
tuple psethack = cms.string('single mu pt 40 forward')
 
tuple SelectEvents
 
tuple splitLevel = cms.untracked.int32(0)
 
tuple src = cms.InputTag("genParticles")
 
tuple Verbosity = cms.untracked.int32(0)
 
tuple version = cms.untracked.string('$Revision: 1.14 $')
 

Variable Documentation

tuple SingleMuPt40Fwdv2_cfi_GEN_SIM.AddAntiParticle = cms.bool(True)

Definition at line 79 of file SingleMuPt40Fwdv2_cfi_GEN_SIM.py.

tuple SingleMuPt40Fwdv2_cfi_GEN_SIM.annotation = cms.untracked.string('GEMCode/GEMValidation/SingleMuPt40Fwdv2_cfi nevts:1000')

Definition at line 40 of file SingleMuPt40Fwdv2_cfi_GEN_SIM.py.

tuple SingleMuPt40Fwdv2_cfi_GEN_SIM.cut = cms.string( "pt > 5. & abs(eta)<2.5 & abs(eta)>1.45" )

Definition at line 91 of file SingleMuPt40Fwdv2_cfi_GEN_SIM.py.

tuple SingleMuPt40Fwdv2_cfi_GEN_SIM.dataset
Initial value:
1 = cms.untracked.PSet(
2  filterName = cms.untracked.string(''),
3  dataTier = cms.untracked.string('GEN-SIM')
4  )

Definition at line 51 of file SingleMuPt40Fwdv2_cfi_GEN_SIM.py.

tuple SingleMuPt40Fwdv2_cfi_GEN_SIM.eventAutoFlushCompressedSize = cms.untracked.int32(5242880)

Definition at line 48 of file SingleMuPt40Fwdv2_cfi_GEN_SIM.py.

tuple SingleMuPt40Fwdv2_cfi_GEN_SIM.fileName = cms.untracked.string('out_file_name.root')

Definition at line 50 of file SingleMuPt40Fwdv2_cfi_GEN_SIM.py.

tuple SingleMuPt40Fwdv2_cfi_GEN_SIM.filter = cms.bool(True)

Definition at line 92 of file SingleMuPt40Fwdv2_cfi_GEN_SIM.py.

tuple SingleMuPt40Fwdv2_cfi_GEN_SIM.firstRun = cms.untracked.uint32(1)

Definition at line 80 of file SingleMuPt40Fwdv2_cfi_GEN_SIM.py.

tuple SingleMuPt40Fwdv2_cfi_GEN_SIM.input = cms.untracked.int32(1000)

Definition at line 27 of file SingleMuPt40Fwdv2_cfi_GEN_SIM.py.

tuple SingleMuPt40Fwdv2_cfi_GEN_SIM.name = cms.untracked.string('Applications')

Definition at line 41 of file SingleMuPt40Fwdv2_cfi_GEN_SIM.py.

SingleMuPt40Fwdv2_cfi_GEN_SIM.outputCommands = process.FEVTDEBUGEventContent.outputCommands,

Definition at line 49 of file SingleMuPt40Fwdv2_cfi_GEN_SIM.py.

tuple SingleMuPt40Fwdv2_cfi_GEN_SIM.pdgId = cms.vint32( 13, -13 )

Definition at line 85 of file SingleMuPt40Fwdv2_cfi_GEN_SIM.py.

Referenced by myFastSimVal.analyze(), BTagPerformanceAnalyzerMC.analyze(), ElectronMcSignalValidatorMiniAOD.analyze(), MBUEandQCDValidation.analyze(), IsolatedParticlesGeneratedJets.analyze(), VertexHistoryAnalyzer.analyze(), TrackHistoryAnalyzer.analyze(), JetTester.analyze(), TkConvValidator.analyze(), PhotonValidator.analyze(), IsolatedGenParticles.analyze(), StGenEvent.associatedB(), reco::FlavorHistoryEvent.cache(), JetPartonMatching.calculate(), TrackingParticleNumberOfLayers.calculate(), PFMETBenchmark.calculateQuantities(), TopGenEvent.candidate(), PhotonIDValueMapProducer.candidatePdgId(), TrackingVerboseAction.checkTrackingVerbose(), GenParticleProducer.convertParticle(), TopGenEvent.daughterQuarkOfWPlus(), StGenEvent.decayB(), V0Validator.doEfficiencies(), MuScleFitPlotter.fillGen(), reco::modules::JetFlavourIdentifier.fillLeptons(), JetPartonMatcher.fillPhysicsDefinition(), reco::modules::JetFlavourIdentifier.findCandidates(), TauValidation.findFSRandBrem(), findGenParticleForMCEmbedding(), GenHFHadronMatcher.findHadronJets(), TtGenEvent.fromGluonFusion(), TtGenEvent.fromQuarkAnnihilation(), TtGenEvent.fullLeptonicChannel(), CustomParticleFactory.getDecayTable(), CustomParticleFactory.getMassTable(), tauImpactParameter::TauA1NuConstrainedFitter.getRefitDaughters(), tauImpactParameter::TrackHelixVertexFitter.getRefitLorentzVectorParticles(), tauImpactParameter::TrackHelixVertexFitter.getRefitTracks(), PrimaryVertexAnalyzer4PUSlimmed.getSimPVs(), TtGenEvent.hadronicDecayB(), TtGenEvent.hadronicDecayTop(), TtGenEvent.hadronicDecayTopRadiation(), TtGenEvent.hadronicDecayW(), reco::modules::JetFlavourIdentifier.heaviestFlavour(), InputGenJetsParticleSelector.isExcludedFromResonance(), PseudoTopProducer.isFromHadron(), InputGenJetsParticleSelector.isHadron(), MCTruthHelper< P >.isHadron(), InputGenJetsParticleSelector.isIgnored(), MBUEandQCDValidation.isNeutral(), MBUEandQCDValidation.isNeutrino(), InputGenJetsParticleSelector.isParton(), InputGenJetsParticleSelector.isResonance(), MCTruthHelper< P >.lastCopyBeforeFSR(), MCTruthHelper< P >.lastDaughterCopyBeforeFSR(), TtGenEvent.lepton(), TtGenEvent.leptonBar(), TtGenEvent.leptonicDecayB(), TtGenEvent.leptonicDecayTop(), TtGenEvent.leptonicDecayTopRadiation(), TtGenEvent.leptonicDecayW(), CustomParticleFactory.loadCustomParticles(), gen.GeneratorAnalyzer.GeneratorAnalyzer.makeMCInfo(), DiObject.DiTau.match(), objects.PhotonAnalyzer.PhotonAnalyzer.matchPhotons(), GenSpecificAlgo.mkSpecificGenMETData(), TtGenEvent.neutrino(), TtGenEvent.neutrinoBar(), MCTruthHelper< P >.nextCopy(), TopGenEvent.numberOfBQuarks(), TopGenEvent.numberOfLeptons(), VertexHistoryAnalyzer.particleString(), TrackHistoryAnalyzer.particleString(), MCTruthHelper< P >.previousCopy(), objects.IsoTrackAnalyzer.printInfo(), gen.HiggsDecayModeAnalyzer.HiggsDecayModeAnalyzer.process(), gen.GenHeavyFlavourAnalyzer.GenHeavyFlavourAnalyzer.process(), JetAnalyzer.JetAnalyzer.process(), WeakEffectsWeightProducer.produce(), PuppiPhoton.produce(), GenParticleProducer.produce(), TruthTauDecayModeProducer.produce(), FlavorHistoryProducer.produce(), l1t::GenToInputProducer.produce(), PFTau3ProngReco.produce(), TopGenEvent.radiatedGluons(), TtGenEvent.semiLeptonicChannel(), L1Analysis::L1AnalysisGenerator.Set(), StGenEvent.singleLepton(), TtGenEvent.singleLepton(), StGenEvent.singleNeutrino(), TtGenEvent.singleNeutrino(), StGenEvent.singleTop(), StGenEvent.singleW(), MCTruthHelper< P >.uniqueMother(), myPythia6ServiceWithCallback.upEvnt(), VertexHistoryAnalyzer.vertexString(), and TrackHistoryAnalyzer.vertexString().

tuple SingleMuPt40Fwdv2_cfi_GEN_SIM.PGunParameters
Initial value:
1 = cms.PSet(
2  MaxPt = cms.double(40.01),
3  MinPt = cms.double(39.99),
4  PartID = cms.vint32(-13),
5  MaxEta = cms.double(2.5),
6  MaxPhi = cms.double(3.14159265359),
7  MinEta = cms.double(-2.5),
8  MinPhi = cms.double(-3.14159265359)
9  )

Definition at line 68 of file SingleMuPt40Fwdv2_cfi_GEN_SIM.py.

tuple SingleMuPt40Fwdv2_cfi_GEN_SIM.process = cms.Process('SIM')

Definition at line 8 of file SingleMuPt40Fwdv2_cfi_GEN_SIM.py.

tuple SingleMuPt40Fwdv2_cfi_GEN_SIM.psethack = cms.string('single mu pt 40 forward')

Definition at line 78 of file SingleMuPt40Fwdv2_cfi_GEN_SIM.py.

tuple SingleMuPt40Fwdv2_cfi_GEN_SIM.SelectEvents
Initial value:
1 = cms.untracked.PSet(
2  SelectEvents = cms.vstring('generation_step')
3  )

Definition at line 55 of file SingleMuPt40Fwdv2_cfi_GEN_SIM.py.

tuple SingleMuPt40Fwdv2_cfi_GEN_SIM.splitLevel = cms.untracked.int32(0)

Definition at line 47 of file SingleMuPt40Fwdv2_cfi_GEN_SIM.py.

tuple SingleMuPt40Fwdv2_cfi_GEN_SIM.src = cms.InputTag("genParticles")

Definition at line 84 of file SingleMuPt40Fwdv2_cfi_GEN_SIM.py.

tuple SingleMuPt40Fwdv2_cfi_GEN_SIM.Verbosity = cms.untracked.int32(0)

Definition at line 77 of file SingleMuPt40Fwdv2_cfi_GEN_SIM.py.

tuple SingleMuPt40Fwdv2_cfi_GEN_SIM.version = cms.untracked.string('$Revision: 1.14 $')

Definition at line 39 of file SingleMuPt40Fwdv2_cfi_GEN_SIM.py.