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highPtTripletStepTrackCandidates_cfi.py
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1 import FWCore.ParameterSet.Config as cms
2 
3 highPtTripletStepTrackCandidates = cms.EDProducer("CkfTrackCandidateMaker",
4  # MeasurementTrackerEvent = cms.InputTag("MeasurementTrackerEvent"),
5  NavigationSchool = cms.string('SimpleNavigationSchool'),
6  RedundantSeedCleaner = cms.string('CachingSeedCleanerBySharedInput'),
7  # SimpleMagneticField = cms.string('ParabolicMf'),
8  # TrajectoryBuilder = cms.string('GroupedCkfTrajectoryBuilder'),
9  TrajectoryBuilderPSet = cms.PSet(
10  refToPSet_ = cms.string('highPtTripletStepTrajectoryBuilder')
11  ),
12  TrajectoryCleaner = cms.string('highPtTripletStepTrajectoryCleanerBySharedHits'),
13  TransientInitialStateEstimatorParameters = cms.PSet(
14  numberMeasurementsForFit = cms.int32(4),
15  propagatorAlongTISE = cms.string('PropagatorWithMaterialParabolicMf'),
16  propagatorOppositeTISE = cms.string('PropagatorWithMaterialParabolicMfOpposite')
17  ),
18  cleanTrajectoryAfterInOut = cms.bool(True),
19  doSeedingRegionRebuilding = cms.bool(True),
20  maxNSeeds = cms.uint32(100000),
21  maxSeedsBeforeCleaning = cms.uint32(1000),
22  numHitsForSeedCleaner = cms.int32(50),
23  onlyPixelHitsForSeedCleaner = cms.bool(True),
24  phase2clustersToSkip = cms.InputTag("highPtTripletStepClusters"),
25  reverseTrajectories = cms.bool(False),
26  src = cms.InputTag("highPtTripletStepSeeds"),
27  useHitsSplitting = cms.bool(False)
28 )