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SimG4Core/PrintGeomInfo/test/python/runPrintSolidRun4_cfg.py
94 строки
4 KB
Sunanda
Update several test scripts in SimG4Core/PrintGeomInfo/test/python in view of reduced number of scenarios for Phase2
14 янв 2026, 07:21
14 янв 2026, 07:21
167ad60
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#######################################################9######################## # Way to use this: # cmsRun runPrintSolidRun4_cfg.py type=DDD geometry=D121 # # Options for type DDD, DD4hep # Options for geometry D104, D110, D111, D112, D113, D114, D115, D120, D121, # D122, D123, D124, D125 # ################################################################################ import FWCore.ParameterSet.Config as cms import os, sys, importlib, re import FWCore.ParameterSet.VarParsing as VarParsing #################################################################### ### SETUP OPTIONS options = VarParsing.VarParsing('standard') options.register('type', "DDD", VarParsing.VarParsing.multiplicity.singleton, VarParsing.VarParsing.varType.string, "type of operations: DDD, DD4hep") options.register('geometry', "D121", VarParsing.VarParsing.multiplicity.singleton, VarParsing.VarParsing.varType.string, "geometry of operations: D104, D110, D111, D112, D113, D114, D115, D120, D121, D122, D123, D124, D125") ### get and parse the command line arguments options.parseArguments() print(options) #####p############################################################### # Use the options geomName = "Run4" + options.geometry import Configuration.Geometry.defaultPhase2ConditionsEra_cff as _settings GLOBAL_TAG, ERA = _settings.get_era_and_conditions(geomName) print("Geometry Name: ", geomName) print("Global Tag Name: ", GLOBAL_TAG) print("Era Name: ", ERA) if (options.type == "DD4hep"): from Configuration.ProcessModifiers.dd4hep_cff import dd4hep process = cms.Process('G4PrintGeometry',ERA,dd4hep) geomFile = "Configuration.Geometry.GeometryDD4hepExtended" + geomName + "Reco_cff" else: process = cms.Process('G4PrintGeometry',ERA) geomFile = "Configuration.Geometry.GeometryExtended" + geomName + "Reco_cff" print("Geometry file Name: ", geomFile) process.load(geomFile) process.load('SimGeneral.HepPDTESSource.pdt_cfi') process.load('IOMC.RandomEngine.IOMC_cff') process.load('IOMC.EventVertexGenerators.VtxSmearedFlat_cfi') process.load('GeneratorInterface.Core.generatorSmeared_cfi') process.load('FWCore.MessageService.MessageLogger_cfi') process.load('SimG4Core.Application.g4SimHits_cfi') process.load('SimG4Core.PrintGeomInfo.printGeomSolids_cff') if hasattr(process,'MessageLogger'): process.MessageLogger.G4cout=dict() process.MessageLogger.G4cerr=dict() process.MessageLogger.PrintGeom=dict() process.source = cms.Source("EmptySource") process.generator = cms.EDProducer("FlatRandomEGunProducer", PGunParameters = cms.PSet( PartID = cms.vint32(14), MinEta = cms.double(-3.5), MaxEta = cms.double(3.5), MinPhi = cms.double(-3.14159265359), MaxPhi = cms.double(3.14159265359), MinE = cms.double(9.99), MaxE = cms.double(10.01) ), AddAntiParticle = cms.bool(False), Verbosity = cms.untracked.int32(0), firstRun = cms.untracked.uint32(1) ) process.maxEvents = cms.untracked.PSet( input = cms.untracked.int32(1) ) process.g4SimHits.UseMagneticField = False process.g4SimHits.Physics.type = 'SimG4Core/Physics/DummyPhysics' process.g4SimHits.Physics.DummyEMPhysics = True process.g4SimHits.Physics.DefaultCutValue = 10. process.g4SimHits.LHCTransport = False process.p1 = cms.Path(process.generator*process.VtxSmeared*process.generatorSmeared*process.g4SimHits*process.printGeomSolids)