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Functions
TB2006Analysis_cfi Namespace Reference

Functions

def testbeam2006 (process)
 

Function Documentation

def TB2006Analysis_cfi.testbeam2006 (   process)

Definition at line 5 of file TB2006Analysis_cfi.py.

References mathSSE.return().

5 def testbeam2006(process):
6 
7  process.load('FWCore.MessageService.MessageLogger_cfi')
8  process.load('Configuration.StandardSequences.Services_cff')
9  process.load('SimGeneral.HepPDTESSource.pdt_cfi')
10  process.load('Configuration.EventContent.EventContent_cff')
11  process.load('Geometry.HcalTestBeamData.hcalDDDSimConstants_cff')
12  process.load('IOMC.EventVertexGenerators.VtxSmearedFlat_cfi')
13  process.load('GeneratorInterface.Core.generatorSmeared_cfi')
14  process.load('SimG4Core.Application.g4SimHits_cfi')
15  process.load('IOMC.RandomEngine.IOMC_cff')
16 
17  process.RandomNumberGeneratorService.generator.initialSeed = 456789
18  process.RandomNumberGeneratorService.g4SimHits.initialSeed = 9876
19  process.RandomNumberGeneratorService.VtxSmeared.initialSeed = 123456789
20 
21  process.source = cms.Source("EmptySource",
22  firstRun = cms.untracked.uint32(1),
23  firstEvent = cms.untracked.uint32(1)
24  )
25 
26  process.load('SimG4CMS.HcalTestBeam.TBDirectionParameters_cfi')
27  process.load('SimG4CMS.HcalTestBeam.TBVtxSmeared_cfi')
28  process.load('SimG4CMS.HcalTestBeam.TB06Analysis_cfi')
29 
30  process.generator = cms.EDProducer("FlatRandomEGunProducer",
31  PGunParameters = cms.PSet(
32  process.common_beam_direction_parameters
33  ),
34  Verbosity = cms.untracked.int32(0),
35  AddAntiParticle = cms.bool(False)
36  )
37 
38  process.p1 = cms.Path(process.generator*process.VtxSmeared*process.generatorSmeared*process.g4SimHits*process.testbeam)
39 
40  process.common_maximum_time.MaxTrackTime = cms.double(1000.0)
41  process.common_maximum_time.MaxTimeNames = cms.vstring()
42  process.common_maximum_time.MaxTrackTimes = cms.vstring()
43  process.common_maximum_time.DeadRegions = cms.vstring()
44 
45  process.g4SimHits.NonBeamEvent = True
46  process.g4SimHits.UseMagneticField = False
47 
48  process.g4SimHits.Physics.type = 'SimG4Core/Physics/QGSP_FTFP_BERT_EML'
49  process.g4SimHits.Physics.Region = 'HcalRegion'
50  process.g4SimHits.Physics.MaxTrackTime = cms.double(1000.0)
51 
52  process.g4SimHits.Generator.ApplyEtaCuts = cms.bool(False)
53 
54  process.g4SimHits.StackingAction.MaxTrackTime = cms.double(1000.0)
55  process.g4SimHits.StackingAction.MaxTimeNames = cms.vstring()
56  process.g4SimHits.StackingAction.MaxTrackTimes = cms.vdouble()
57  process.g4SimHits.StackingAction.DeadRegions = cms.vstring()
58 
59  process.g4SimHits.SteppingAction.MaxTrackTime = cms.double(1000.0)
60  process.g4SimHits.SteppingAction.MaxTimeNames = cms.vstring()
61  process.g4SimHits.SteppingAction.MaxTrackTimes = cms.vdouble()
62  process.g4SimHits.SteppingAction.DeadRegions = cms.vstring()
63 
64  process.g4SimHits.CaloSD.EminHits = cms.vdouble(0.0,0.0,0.0,0.0)
65  process.g4SimHits.CaloSD.TmaxHits = cms.vdouble(1000.0,1000.0,1000.0,1000.0)
66 
67  process.g4SimHits.HCalSD.UseShowerLibrary = False
68  process.g4SimHits.HCalSD.UseHF = False
69  process.g4SimHits.HCalSD.ForTBHCAL = True
70  process.g4SimHits.HCalSD.ForTBH2 = False
71 
72  return(process)
73 
return((rh^lh)&mask)
def testbeam2006(process)