CMS 3D CMS Logo

 All Classes Namespaces Files Functions Variables Typedefs Enumerations Enumerator Properties Friends Macros Pages
Variables
testEve_cfg Namespace Reference

Variables

tuple fileNames = cms.untracked.vstring('file:/home/alja/cms-dev/7.3/RelValZEE-reco.root')
 Expects test.root in current directory. More...
 
tuple level = cms.untracked.int32(8)
 
tuple process = cms.Process("DISPLAY")
 
tuple tracks = cms.untracked.InputTag("generalTracks")
 
tuple verbose = cms.untracked.bool(False)
 For running on pre 3.6 files the current needed to determine the magnetic field is taken from Conditions DB. More...
 

Variable Documentation

tuple testEve_cfg.fileNames = cms.untracked.vstring('file:/home/alja/cms-dev/7.3/RelValZEE-reco.root')

Expects test.root in current directory.

Definition at line 10 of file testEve_cfg.py.

tuple testEve_cfg.level = cms.untracked.int32(8)

Definition at line 34 of file testEve_cfg.py.

Referenced by CalibrationXML.addChild(), reco::EvtPlane.addLevel(), DumpSimGeometry.analyze(), reco::EvtPlane.angle(), GEMNumberingScheme.baseNumberToUnitNumber(), ME0NumberingScheme.baseNumberToUnitNumber(), CSCNumberingScheme.baseNumberToUnitNumber(), DTNumberingScheme.baseNumberToUnitNumber(), AlignmentMonitorSurvey.book(), AlignableBuilder.build(), HcalSaturation.checkADCSaturation(), ora::Configuration.Configuration(), FFTJetCorrectorSequence< Jet, InitialConverter, FinalConverter >.correct(), DTNumberingScheme.decode(), BHMNumberingScheme.detectorLevel(), BscNumberingScheme.detectorLevel(), ZdcNumberingScheme.detectorLevel(), reco::EvtPlane.EvtPlane(), G4CheckOverlap.G4CheckOverlap(), MuonBaseNumber.getBaseNo(), EcalBaseNumber.getCopyNumber(), EcalBaseNumber.getLevelName(), MuonBaseNumber.getSuperNo(), ESTBNumberingScheme.getUnitID(), EcalHodoscopeNumberingScheme.getUnitID(), BHMNumberingScheme.getUnitID(), ZdcNumberingScheme.getUnitID(), BscNumberingScheme.getUnitID(), cond.hash64(), HcalADCSaturationFlag.HcalADCSaturationFlag(), AlignableBuilder.index(), SummaryPlotFactoryBase.init(), CmsTrackerDebugNavigator.iterate(), CmsTrackerDetIdBuilder.iterate(), LXXXCorrector.LXXXCorrector(), LXXXCorrectorImplMaker.make(), L1FastjetCorrectorImplMaker.make(), L1OffsetCorrectorImplMaker.make(), L1JPTOffsetCorrectorImplMaker.make(), parseFFTJetCorrector(), L1MuDTTFConfig.setDebugLevel(), L1MuBMTFConfig.setDebugLevel(), reco::EvtPlane.sumCos(), and reco::EvtPlane.sumSin().

tuple testEve_cfg.process = cms.Process("DISPLAY")

Definition at line 3 of file testEve_cfg.py.

tuple testEve_cfg.tracks = cms.untracked.InputTag("generalTracks")

Definition at line 39 of file testEve_cfg.py.

Referenced by RecoTrackAccumulator.accumulateEvent(), edm::DataMixingGeneralTrackWorker.addGeneralTrackPileups(), edm::DataMixingGeneralTrackWorker.addGeneralTrackSignals(), ElectronGeneralAnalyzer.analyze(), __class__< T >.analyze(), TestResolution.analyze(), DuplicateRecHits.analyze(), tthelpers.buildTT(), GapClusterizerInZ.clusterize(), TrackMVAClassifier< MVA >.computeMVA(), TemplatedJetProbabilityComputer< Container, Base >.discriminator(), KalmanSmoothedVertexChi2Estimator< N >.estimate(), GsfVertexTrackCompatibilityEstimator.estimate(), KalmanVertexTrackCompatibilityEstimator< N >.estimate(), TrackClassifierByProxy< Collection >.evaluate(), TrackingFailureFilter.filter(), FilterScrapingPixelProbability.filter(), shallow.findTrackIndex(), EcalTBHodoscopeRecInfoAlgo.fitLine(), reco::JetTrackMatch< reco::GenJetCollection >.getTracks(), HLTSingleVertexPixelTrackFilter.hltFilter(), HLTPixlMBFilt.hltFilter(), Cluster1DMerger< T >.operator()(), pixeltemp::Cluster1DMerger< T >.operator()(), KalmanTrackToTrackCovCalculator< N >.operator()(), PromptTrackCountingComputer.orderedSignificances(), TemplatedTrackCountingComputer< Container, Base >.orderedSignificances(), reco::TrackJet.print(), examples::TrackAnalysisAlgorithm.process(), __class__Worker.process(), PixelVertexProducerMedian.produce(), IsolationProducerForTracks.produce(), VZeroProducer.produce(), HIPixelMedianVtxProducer.produce(), JetSignalVertexCompatibility.produce(), L3MuonCleaner.produce(), JetChargeProducer.produce(), ElectronSqPtTkIsolationProducer.produce(), PixelTrackProducer.produce(), CSCTFCandidateProducer.produce(), EgammaPhotonTkIsolationProducer.produce(), EgammaPhotonTkNumIsolationProducer.produce(), ShallowSimTracksProducer.produce(), EgammaElectronTkIsolationProducer.produce(), MCTrackMatcher.produce(), EgammaElectronTkNumIsolationProducer.produce(), GenTrackMatcher.produce(), FastTrackerRecHitMaskProducer.produce(), cms::JetVertexAssociation.produce(), L2MuonCandidateProducer.produce(), CosmicsMuonIdProducer.produce(), TrackMVAClassifierBase.produce(), ExtraFromSeeds.produce(), InterestingTrackEcalDetIdProducer.produce(), TemplatedVertexArbitrator< InputContainer, VTX >.produce(), HITrackFilterForPVFinding.select(), CandCommonVertexFitterBase.set(), PFCandCommonVertexFitterBase.set(), PixelTrackProducer.store(), ConeIsolationAlgorithm.tag(), ImpactParameterAlgorithm.tag(), reco::JetTracksAssociation.tracksP4(), StoreSecondary.update(), and ConfigurableTrimmedVertexFinder.vertexCandidates().

tuple testEve_cfg.verbose = cms.untracked.bool(False)

For running on pre 3.6 files the current needed to determine the magnetic field is taken from Conditions DB.

process.load("Configuration.StandardSequences.FrontierConditions_GlobalTag_cff") specify tag: process.GlobalTag.globaltag = 'START36_V10::All' or use auto-cond: from Configuration.AlCa.autoCond import autoCond process.GlobalTag.globaltag = autoCond['mc'] Request EveService Extractor of geometry needed to display it in Eve. Required for "DummyEvelyser".

Definition at line 33 of file testEve_cfg.py.