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SimG4Core/Application/test/GeometryProducer_cfg.py
298 строк
11 KB
Christopher Jones
Update MessageLogger_cfi to new syntax
07 дек 2020, 21:37
07 дек 2020, 21:37
eb0725a
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import FWCore.ParameterSet.Config as cms process = cms.Process("GEOM") process.load("FWCore.MessageLogger.MessageLogger_cfi") process.load('Configuration.Geometry.GeometryExtended2015_cff') process.load("Configuration.StandardSequences.MagneticField_cff") process.Tracer = cms.Service("Tracer") process.maxEvents = cms.untracked.PSet( input = cms.untracked.int32(1) ) process.source = cms.Source("EmptySource") process.MessageLogger.cerr.enable = False process.MessageLogger.files.geomprod = dict(extension="txt") common_heavy_suppression = cms.PSet( NeutronThreshold = cms.double(30.0), ProtonThreshold = cms.double(30.0), IonThreshold = cms.double(30.0) ) common_maximum_time = cms.PSet( MaxTrackTime = cms.double(500.0), MaxTimeNames = cms.vstring('ZDCRegion'), MaxTrackTimes = cms.vdouble(2000.0), DeadRegions = cms.vstring('QuadRegion','InterimRegion'), CriticalEnergyForVacuum = cms.double(2.0), CriticalDensity = cms.double(1e-15) ) common_UsePMT = cms.PSet( UseR7600UPMT = cms.bool(False) ) common_UseHF = cms.PSet( Lambda1 = cms.double(280.0), Lambda2 = cms.double(700.0), Gain = cms.double(0.33), CheckSurvive = cms.bool(False), FibreR = cms.untracked.double(0.3) ) common_UseLuminosity = cms.PSet( InstLuminosity = cms.double(0.), DelivLuminosity = cms.double(5000.) ) process.m = cms.EDProducer("GeometryProducer", UseSensitiveDetectors = cms.bool(True), UseMagneticField = cms.bool(True), MagneticField = cms.PSet( UseLocalMagFieldManager = cms.bool(False), Verbosity = cms.untracked.bool(False), ConfGlobalMFM = cms.PSet( Volume = cms.string('OCMS'), OCMS = cms.PSet( Stepper = cms.string('G4ClassicalRK4'), Type = cms.string('CMSIMField'), StepperParam = cms.PSet( MaximumEpsilonStep = cms.untracked.double(0.01), ## in mm DeltaOneStep = cms.double(0.001), ## in mm MaximumLoopCounts = cms.untracked.double(1000.0), DeltaChord = cms.double(0.001), ## in mm MinStep = cms.double(0.1), ## in mm DeltaIntersectionAndOneStep = cms.untracked.double(-1.0), DeltaIntersection = cms.double(0.0001), ## in mm MinimumEpsilonStep = cms.untracked.double(1e-05) ## in mm ) ) ), delta = cms.double(1.0) ), TrackerSD = cms.PSet( ZeroEnergyLoss = cms.bool(False), PrintHits = cms.bool(False), ElectronicSigmaInNanoSeconds = cms.double(12.06), NeverAccumulate = cms.bool(False), EnergyThresholdForPersistencyInGeV = cms.double(0.2), EnergyThresholdForHistoryInGeV = cms.double(0.05) ), MuonSD = cms.PSet( EnergyThresholdForPersistency = cms.double(1.0), PrintHits = cms.bool(False), AllMuonsPersistent = cms.bool(True) ), CaloSD = cms.PSet( common_heavy_suppression, SuppressHeavy = cms.bool(False), EminTrack = cms.double(1.0), TmaxHit = cms.double(1000.0), HCNames = cms.vstring('EcalHitsEB','EcalHitsEE','EcalHitsES','HcalHits','ZDCHITS'), EminHits = cms.vdouble(0.015,0.010,0.0,0.0,0.0), EminHitsDepth = cms.vdouble(0.0,0.0,0.0,0.0,0.0), TmaxHits = cms.vdouble(500.0,500.0,500.0,500.0,2000.0), UseResponseTables = cms.vint32(0,0,0,0,0), BeamPosition = cms.double(0.0), CorrectTOFBeam = cms.bool(False), DetailedTiming = cms.untracked.bool(False), UseMap = cms.untracked.bool(False), Verbosity = cms.untracked.int32(0), CheckHits = cms.untracked.int32(25) ), CaloResponse = cms.PSet( UseResponseTable = cms.bool(True), ResponseScale = cms.double(1.0), ResponseFile = cms.FileInPath('SimG4CMS/Calo/data/responsTBpim50.dat') ), ECalSD = cms.PSet( common_UseLuminosity, UseBirkLaw = cms.bool(True), BirkL3Parametrization = cms.bool(True), BirkSlope = cms.double(0.253694), BirkCut = cms.double(0.1), BirkC1 = cms.double(0.03333), BirkC3 = cms.double(1.0), BirkC2 = cms.double(0.0), SlopeLightYield = cms.double(0.02), StoreSecondary = cms.bool(False), TimeSliceUnit = cms.double(1), IgnoreTrackID = cms.bool(False), XtalMat = cms.untracked.string('E_PbWO4'), TestBeam = cms.untracked.bool(False), NullNumbering = cms.untracked.bool(False), StoreRadLength = cms.untracked.bool(False), AgeingWithSlopeLY = cms.untracked.bool(False) ), HCalSD = cms.PSet( common_UseLuminosity, UseBirkLaw = cms.bool(True), BirkC3 = cms.double(1.75), BirkC2 = cms.double(0.142), BirkC1 = cms.double(0.0052), UseShowerLibrary = cms.bool(True), UseParametrize = cms.bool(False), UsePMTHits = cms.bool(False), UseFibreBundleHits = cms.bool(False), TestNumberingScheme = cms.bool(False), EminHitHB = cms.double(0.0), EminHitHE = cms.double(0.0), EminHitHO = cms.double(0.0), EminHitHF = cms.double(0.0), BetaThreshold = cms.double(0.7), TimeSliceUnit = cms.double(1), IgnoreTrackID = cms.bool(False), HEDarkening = cms.bool(False), HFDarkening = cms.bool(False), UseHF = cms.untracked.bool(True), ForTBH2 = cms.untracked.bool(False), UseLayerWt = cms.untracked.bool(False), WtFile = cms.untracked.string('None') ), CaloTrkProcessing = cms.PSet( TestBeam = cms.bool(False), EminTrack = cms.double(0.01), PutHistory = cms.bool(False) ), HFShower = cms.PSet( common_UsePMT, common_UseHF, ProbMax = cms.double(1.0), CFibre = cms.double(0.5), PEPerGeV = cms.double(0.31), TrackEM = cms.bool(False), UseShowerLibrary = cms.bool(True), UseHFGflash = cms.bool(False), EminLibrary = cms.double(0.0), OnlyLong = cms.bool(True), LambdaMean = cms.double(350.0), ApplyFiducialCut = cms.bool(True), RefIndex = cms.double(1.459), Aperture = cms.double(0.33), ApertureTrapped = cms.double(0.22), CosApertureTrapped= cms.double(0.5), SinPsiMax = cms.untracked.double(0.5), ParametrizeLast = cms.untracked.bool(False) ), HFShowerLibrary = cms.PSet( FileName = cms.FileInPath('SimG4CMS/Calo/data/HFShowerLibrary_oldpmt_noatt_eta4_16en_v3.root'), BackProbability = cms.double(0.2), TreeEMID = cms.string('emParticles'), TreeHadID = cms.string('hadParticles'), Verbosity = cms.untracked.bool(False), ApplyFiducialCut= cms.bool(True), BranchPost = cms.untracked.string(''), BranchEvt = cms.untracked.string(''), BranchPre = cms.untracked.string('') ), HFShowerPMT = cms.PSet( common_UsePMT, common_UseHF, PEPerGeVPMT = cms.double(1.0), RefIndex = cms.double(1.52), Aperture = cms.double(0.99), ApertureTrapped = cms.double(0.22), CosApertureTrapped= cms.double(0.5), SinPsiMax = cms.untracked.double(0.5) ), HFShowerStraightBundle = cms.PSet( common_UsePMT, common_UseHF, FactorBundle = cms.double(1.0), RefIndex = cms.double(1.459), Aperture = cms.double(0.33), ApertureTrapped = cms.double(0.22), CosApertureTrapped= cms.double(0.5), SinPsiMax = cms.untracked.double(0.5) ), HFShowerConicalBundle = cms.PSet( common_UsePMT, common_UseHF, FactorBundle = cms.double(1.0), RefIndex = cms.double(1.459), Aperture = cms.double(0.33), ApertureTrapped = cms.double(0.22), CosApertureTrapped= cms.double(0.5), SinPsiMax = cms.untracked.double(0.5) ), HFGflash = cms.PSet( BField = cms.untracked.double(3.8), WatcherOn = cms.untracked.bool(True), FillHisto = cms.untracked.bool(True) ), CastorSD = cms.PSet( useShowerLibrary = cms.bool(True), minEnergyInGeVforUsingSLibrary = cms.double(1.0), nonCompensationFactor = cms.double(0.817), Verbosity = cms.untracked.int32(0) ), CastorShowerLibrary = cms.PSet( FileName = cms.FileInPath('SimG4CMS/Forward/data/CastorShowerLibrary_CMSSW500_Standard.root'), BranchEvt = cms.untracked.string('hadShowerLibInfo.'), BranchEM = cms.untracked.string('emParticles.'), BranchHAD = cms.untracked.string('hadParticles.'), Verbosity = cms.untracked.bool(False) ), BHMSD = cms.PSet( Verbosity = cms.untracked.int32(0) ), FastTimerSD = cms.PSet( Verbosity = cms.untracked.int32(0) ), HGCSD = cms.PSet( Verbosity = cms.untracked.int32(0), TimeSliceUnit = cms.double(1), IgnoreTrackID = cms.bool(False), EminHit = cms.double(0.0), CheckID = cms.untracked.bool(True), ), TotemSD = cms.PSet( Verbosity = cms.untracked.int32(0) ), ZdcSD = cms.PSet( Verbosity = cms.int32(0), UseShowerLibrary = cms.bool(True), UseShowerHits = cms.bool(False), FiberDirection = cms.double(45.0), ZdcHitEnergyCut = cms.double(10.0) ), ZdcShowerLibrary = cms.PSet( Verbosity = cms.untracked.int32(0) ), FP420SD = cms.PSet( Verbosity = cms.untracked.int32(2) ), BscSD = cms.PSet( Verbosity = cms.untracked.int32(0) ), PltSD = cms.PSet( EnergyThresholdForPersistencyInGeV = cms.double(0.2), EnergyThresholdForHistoryInGeV = cms.double(0.05) ), Bcm1fSD = cms.PSet( EnergyThresholdForPersistencyInGeV = cms.double(0.010), EnergyThresholdForHistoryInGeV = cms.double(0.005) ), HcalTB02SD = cms.PSet( UseBirkLaw = cms.untracked.bool(False), BirkC1 = cms.untracked.double(0.013), BirkC3 = cms.untracked.double(1.75), BirkC2 = cms.untracked.double(0.0568) ), EcalTBH4BeamSD = cms.PSet( UseBirkLaw = cms.bool(False), BirkC1 = cms.double(0.013), BirkC3 = cms.double(1.75), BirkC2 = cms.double(0.0568) ), HcalTB06BeamSD = cms.PSet( UseBirkLaw = cms.bool(False), BirkC1 = cms.double(0.013), BirkC3 = cms.double(1.75), BirkC2 = cms.double(0.0568) ) ) process.p1 = cms.Path(process.m)