def trackingPreFilter(name, prefilter):

    VeloMuonBuilder1 = VeloMuonBuilder("VeloMuonBuilder")
    VeloMuonBuilder1.OutputLevel = 6
    VeloMuonBuilder1.MuonLocation = "Hlt1/Track/MuonSeg"
    VeloMuonBuilder1.VeloLocation = "Rec/Track/FittedVelo"
    VeloMuonBuilder1.lhcbids = 4
    VeloMuonBuilder1.OutputLocation = "Rec/VeloMuon/Tracks"

    preve = TrackPrepareVelo("preve")
    preve.inputLocation = "Rec/Track/Velo"
    preve.outputLocation = "Rec/Track/UnfittedPreparedVelo"
    preve.bestLocation = ""
    vefit = ConfiguredFit("vefit", "Rec/Track/UnfittedPreparedVelo")
    vefit.TracksOutContainer = "Rec/Track/FittedVelo"
    vefit.addTool(TrackMasterFitter, name='Fitter')
    ConfiguredFastFitter(getattr(vefit, 'Fitter'))

    alg = GaudiSequencer(
        "VeloMuonTrackingFor" + name,
        Members=[
            DecodeVeloRawBuffer(name + "VeloDecoding",
                                DecodeToVeloLiteClusters=True,
                                DecodeToVeloClusters=True),
            FastVeloTracking(name + "FastVelo",
                             OutputTracksName="Rec/Track/Velo"), preve, vefit,
            StandaloneMuonRec(name + "MuonStandalone"), VeloMuonBuilder1
        ])

    return GSWrapper(name="WrappedVeloMuonTracking",
                     sequencer=alg,
                     output='Rec/VeloMuon/Tracks',
                     requiredSelections=prefilter)
def trackingPreFilter(name, prefilter):

    VeloMuonBuilder1 = VeloMuonBuilder("VeloMuonBuilder")
    VeloMuonBuilder1.OutputLevel = 6
    VeloMuonBuilder1.MuonLocation = "Hlt1/Track/MuonSeg"
    VeloMuonBuilder1.VeloLocation = "Rec/Track/UnFittedVelo"
    VeloMuonBuilder1.lhcbids = 4
    VeloMuonBuilder1.OutputLocation = "Rec/VeloMuon/Tracks"

    preve = TrackPrepareVelo("preve")
    preve.inputLocation = "Rec/Track/Velo"
    preve.outputLocation = "Rec/Track/UnFittedVelo"
    preve.bestLocation = ""

    #TODO: apparently FastVelo is now (april 2012) run with fixes in the production which don't neccessarily apply to the stripping...
    alg = GaudiSequencer(
        "VeloMuonTrackingFor" + name,
        Members=[
            DecodeVeloRawBuffer(name + "VeloDecoding",
                                DecodeToVeloLiteClusters=True,
                                DecodeToVeloClusters=True),
            FastVeloTracking(name + "FastVelo",
                             OutputTracksName="Rec/Track/Velo"), preve,
            StandaloneMuonRec(name + "MuonStandalone"), VeloMuonBuilder1
        ])

    return GSWrapper(name="WrappedVeloMuonTracking",
                     sequencer=alg,
                     output='Rec/VeloMuon/Tracks',
                     requiredSelections=prefilter)
def trackingPreFilter(name, prefilter):

    VeloMuonBuilder1 = VeloMuonBuilder("VeloMuonBuilder")
    VeloMuonBuilder1.OutputLevel = 6
    VeloMuonBuilder1.MuonLocation = "Hlt1/Track/MuonSeg"
    VeloMuonBuilder1.VeloLocation = "Rec/Track/UnFittedVelo"
    VeloMuonBuilder1.lhcbids = 4
    VeloMuonBuilder1.OutputLocation = "Rec/VeloMuon/Tracks"

    preve = TrackPrepareVelo("preve")
    preve.inputLocation = "Rec/Track/Velo"
    preve.outputLocation = "Rec/Track/UnFittedVelo"
    preve.bestLocation = ""

    alg = GaudiSequencer(
        "VeloMuonTrackingFor" + name,
        Members=[
            DecodeVeloRawBuffer(name + "VeloDecoding",
                                DecodeToVeloLiteClusters=True,
                                DecodeToVeloClusters=True),
            FastVeloTracking(name + "FastVelo",
                             OutputTracksName="Rec/Track/Velo"), preve,
            StandaloneMuonRec(name + "MuonStandalone"), VeloMuonBuilder1
        ])

    return GSWrapper(name="WrappedVeloMuonTracking",
                     sequencer=alg,
                     output='Rec/VeloMuon/Tracks',
                     requiredSelections=prefilter)
Exemple #4
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def trackingPreFilter(name, prefilter):

   VeloMuonBuilder1 = VeloMuonBuilder("VeloMuonBuilder")
   VeloMuonBuilder1.OutputLevel = 6
   VeloMuonBuilder1.MuonLocation = "Hlt1/Track/MuonSeg"
   VeloMuonBuilder1.VeloLocation = "Rec/Track/FittedVelo"
   VeloMuonBuilder1.lhcbids = 4
   VeloMuonBuilder1.OutputLocation = "Rec/VeloMuon/Tracks"

   preve = TrackPrepareVelo("preve")
   preve.inputLocation = "Rec/Track/Velo"
   preve.outputLocation = "Rec/Track/UnfittedPreparedVelo"
   preve.bestLocation = ""
   vefit = TrackEventFitter('vefit')
   vefit.TracksInContainer = "Rec/Track/UnfittedPreparedVelo"
   vefit.TracksOutContainer = "Rec/Track/FittedVelo"
   vefit.addTool(TrackMasterFitter, name = 'Fitter')
   ConfiguredFastFitter( getattr(vefit,'Fitter'))
	
   #define a TrackCloneFinder
   #low = TrackCloneFinder("TrackCloneFinder/low")
   #low.MatchingFraction = 0.6
	
   Tf__PatVeloSpaceTracking("PatVeloSpaceTracking").addTool( Tf__PatVeloSpaceTool(), name="PatVeloSpaceTool" )
   Tf__PatVeloSpaceTracking("PatVeloSpaceTracking").PatVeloSpaceTool.MarkClustersUsed = True;
   #Tf__PatVeloSpaceTracking("PatVeloSpaceTracking").OutputLevel = 0;
	
#	algos = [tisTosPreFilterHlt1Jpsi, tisTosPreFilterHlt2Jpsi, Tf__PatVeloRTracking(), Tf__PatVeloSpaceTracking(),Tf__PatVeloGeneralTracking(), preve,vefit, StandaloneMuonRec(), VeloMuonBuilder1]
#	
   alg = GaudiSequencer("VeloMuonTrackingFor"+name,
                         #Members = [Jpsi_already_there,
                         #           jpsidotracking],
                         Members = [ DecodeVeloRawBuffer(name+"VeloDecoding"),
                                 Tf__PatVeloRTracking(name+"VeloR"), Tf__PatVeloSpaceTracking(name+"VeloSpace"),
				 Tf__PatVeloGeneralTracking(name+"VeloGen"), preve,vefit, 
				 StandaloneMuonRec(name+"MuonStandalone"), VeloMuonBuilder1])

   return GSWrapper(name="WrappedVeloMuonTracking",
                     sequencer=alg,
                     output='Rec/VeloMuon/Tracks',
                     requiredSelections = [ prefilter])
Exemple #5
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def RecoTracking(exclude=[]):
    '''What used to be in the options file, moved here'''
    ## Start TransportSvc, needed by track fit
    ApplicationMgr().ExtSvc.append("TransportSvc")

    ## --------------------------------------------------------------------
    ## Pattern Recognition and Fitting
    ## --------------------------------------------------------------------

    # Which algs to run ?
    trackAlgs = TrackSys().getProp("TrackPatRecAlgorithms")

    # Which data type is it?
    dataType = TrackSys().getProp("DataType")

    # Decode the RAW banks
    DecodeTracking(trackAlgs)

    from Configurables import STOfflinePosition
    IT = STOfflinePosition('ITClusterPosition')
    IT.DetType = "IT"
    TT = STOfflinePosition('TTClusterPosition')
    TT.DetType = "TT"

    from STTools import STOfflineConf
    STOfflineConf.DefaultConf().configureTools()

    #importOptions( "$STTOOLSROOT/options/Brunel.opts" )

    ## Velo tracking
    if "FastVelo" in trackAlgs:
        from Configurables import FastVeloTracking
        GaudiSequencer("RecoVELOSeq").Members += [FastVeloTracking()]
        if TrackSys().timing():
            FastVeloTracking().TimingMeasurement = True

    if "Velo" in trackAlgs:
        from Configurables import Tf__PatVeloGeneralTracking
        if TrackSys().veloOpen():
            if TrackSys().beamGas():
                from Configurables import Tf__PatVeloGeneric
                GaudiSequencer("RecoVELOSeq").Members += [
                    Tf__PatVeloGeneric("PatVeloGeneric"),
                    Tf__PatVeloGeneralTracking("PatVeloGeneralTracking")
                ]
            else:
                from Configurables import Tf__PatVeloTrackTool
                GaudiSequencer("RecoVELOSeq").Members += [
                    Tf__PatVeloGeneralTracking("PatVeloGeneralTracking")
                ]
                Tf__PatVeloGeneralTracking(
                    "PatVeloGeneralTracking").PointErrorMin = 2 * mm
                Tf__PatVeloGeneralTracking("PatVeloGeneralTracking").addTool(
                    Tf__PatVeloTrackTool("PatVeloTrackTool"))
                Tf__PatVeloTrackTool("PatVeloTrackTool").highChargeFract = 0.5
                if TrackSys().timing():
                    Tf__PatVeloGeneralTracking(
                        "PatVeloGeneralTracking").TimingMeasurement = True
        else:
            from Configurables import (Tf__PatVeloRTracking,
                                       Tf__PatVeloSpaceTool,
                                       Tf__PatVeloSpaceTracking)
            GaudiSequencer("RecoVELOSeq").Members += [
                Tf__PatVeloRTracking("PatVeloRTracking"),
                Tf__PatVeloSpaceTracking("PatVeloSpaceTracking"),
                Tf__PatVeloGeneralTracking("PatVeloGeneralTracking")
            ]
            Tf__PatVeloSpaceTracking("PatVeloSpaceTracking").addTool(
                Tf__PatVeloSpaceTool(), name="PatVeloSpaceTool")
            Tf__PatVeloSpaceTracking("PatVeloSpaceTracking"
                                     ).PatVeloSpaceTool.MarkClustersUsed = True
            if TrackSys().timing():
                Tf__PatVeloSpaceTracking(
                    "PatVeloSpaceTracking").TimingMeasurement = True
                Tf__PatVeloRTracking(
                    "PatVeloRTracking").TimingMeasurement = True
                Tf__PatVeloGeneralTracking(
                    "PatVeloGeneralTracking").TimingMeasurement = True

    ## Make sure the default extrapolator and interpolator use simplified material
    if TrackSys().simplifiedGeometry() and ('SimpleGeom' not in exclude):
        from Configurables import TrackMasterExtrapolator, TrackInterpolator
        TrackMasterExtrapolator().MaterialLocator = 'SimplifiedMaterialLocator'
        TrackInterpolator().addTool(TrackMasterExtrapolator(
            MaterialLocator='SimplifiedMaterialLocator'),
                                    name='Extrapolator')

    ## Tracking sequence
    from Configurables import ProcessPhase
    track = ProcessPhase("Track")
    GaudiSequencer("RecoTrSeq").Members += [track]

    from Configurables import MagneticFieldSvc
    if TrackSys().fieldOff():
        MagneticFieldSvc().ForcedSignedCurrentScaling = 0.

    if "noDrifttimes" in TrackSys().getProp("ExpertTracking"):
        from Configurables import (Tf__OTHitCreator)
        Tf__OTHitCreator("OTHitCreator").NoDriftTimes = True

    # Get the fitters
    from TrackFitter.ConfiguredFitters import ConfiguredFit, ConfiguredFitSeed, ConfiguredMasterFitter

    # Clone killer
    tracklists = []

    # Is this standard sequence?
    stdSeq = "fastSequence" not in TrackSys().getProp("ExpertTracking")

    # TrackMatching not supported anymore, raise error
    if "Match" in trackAlgs:
        raise RuntimeError(
            "TrackMatching not supported anymore. If you think this is wrong, report to [email protected]"
        )

    ## Forward pattern
    if "Forward" in trackAlgs:
        track.DetectorList += ["ForwardPat"]
        from Configurables import PatForward
        GaudiSequencer("TrackForwardPatSeq").Members += [
            PatForward("PatForward")
        ]
        from PatAlgorithms import PatAlgConf
        PatAlgConf.ForwardConf().configureAlg()
        if TrackSys().timing():
            PatForward("PatForward").TimingMeasurement = True
        tracklists += ["Rec/Track/Forward"]

    ## Seed pattern
    if "TsaSeed" in trackAlgs and "PatSeed" in trackAlgs:
        raise RuntimeError("Cannot run both Tsa and Pat Seeding at once")

    if "TsaSeed" in trackAlgs:
        track.DetectorList += ["SeedPat"]
        from Configurables import Tf__Tsa__Seed, Tf__Tsa__SeedTrackCnv
        GaudiSequencer("TrackSeedPatSeq").Members += [
            Tf__Tsa__Seed("TsaSeed"),
            Tf__Tsa__SeedTrackCnv("TsaSeedTrackCnv")
        ]
        from TsaAlgorithms import TsaAlgConf
        TsaAlgConf.TsaSeedConf().configureAlg()
        if TrackSys().timing():
            Tf__Tsa__Seed("TsaSeed").TimingMeasurement = True

    if "PatSeed" in trackAlgs:
        track.DetectorList += ["SeedPat"]
        from Configurables import PatSeeding
        GaudiSequencer("TrackSeedPatSeq").Members += [PatSeeding("PatSeeding")]
        from PatAlgorithms import PatAlgConf
        PatAlgConf.SeedingConf().configureAlg()

        if TrackSys().timing():
            PatSeeding("PatSeeding").TimingMeasurement = True

        if TrackSys().cosmics():
            from PatAlgorithms import PatAlgConf
            PatAlgConf.CosmicConf().configureAlg()

    if "TsaSeed" in trackAlgs or "PatSeed" in trackAlgs:
        tracklists += ["Rec/Track/Seed"]
        # TrackMatching not supported anymore, comment for the moment in case anything breaks
        #if "Match" in trackAlgs :
        # Fit now
        #track.DetectorList += [ "SeedFit" ]
        ## Seed fit initialization
        #from Configurables import TrackStateInitAlg, TrackStateInitTool
        #initSeedFit = TrackStateInitAlg("InitSeedFit",
        #                                TrackLocation = "Rec/Track/Seed")
        #GaudiSequencer("TrackSeedFitSeq").Members += [initSeedFit]
        #if "FastVelo" in trackAlgs :
        #   initSeedFit.StateInitTool.VeloFitterName = "FastVeloFitLHCbIDs"
        # Use small ErrorQoP fitter, needed for Match
        #GaudiSequencer("TrackSeedFitSeq").Members += [ConfiguredFitSeed()]

    # TrackMatching not supported anymore, comment for the moment in case anything breaks
    ## Match
    #if "Match" in trackAlgs and "PatMatch" in trackAlgs :
    #   raise RuntimeError("Cannot run both TrackMatching and PatMatch at once")
    #if "Match" in trackAlgs :
    #   track.DetectorList += [ "MatchPat" ]
    #   from Configurables import TrackMatchVeloSeed
    #   GaudiSequencer("TrackMatchPatSeq").Members += [ TrackMatchVeloSeed("TrackMatch") ]
    #   from TrackMatching import TrackMatchConf
    #   TrackMatchConf.MatchingConf().configureAlg()
    #   TrackMatchVeloSeed("TrackMatch").LikCut = -99999.
    #   if TrackSys().timing() :
    #      TrackMatchVeloSeed("TrackMatch").TimingMeasurement = True;

    if "PatMatch" in trackAlgs:
        track.DetectorList += ["MatchPat"]
        from Configurables import PatMatch
        GaudiSequencer("TrackMatchPatSeq").Members += [PatMatch("PatMatch")]
    if "Match" in trackAlgs or "PatMatch" in trackAlgs:
        tracklists += ["Rec/Track/Match"]

    ## Downstream
    if "Downstream" in trackAlgs:
        track.DetectorList += ["DownstreamPat"]
        from Configurables import PatDownstream
        GaudiSequencer("TrackDownstreamPatSeq").Members += [PatDownstream()]
        tracklists += ["Rec/Track/Downstream"]
        from PatAlgorithms import PatAlgConf
        #PatAlgConf.DownstreamConf().configureAlg()
        if TrackSys().timing():
            PatDownstream("PatDownstream").TimingMeasurement = True

    ## Velo-TT pattern
    if "VeloTT" in trackAlgs:
        track.DetectorList += ["VeloTTPat"]
        # from 2015 on, 'VeloTTHybrid' is used (as in the HLT)
        # on python configuration is used
        if dataType is "2015":
            from Configurables import PatVeloTTHybrid
            GaudiSequencer("TrackVeloTTPatSeq").Members += [
                PatVeloTTHybrid("PatVeloTTHybrid")
            ]
            if TrackSys().timing():
                PatVeloTTHybrid("PatVeloTTHybrid").TimingMeasurement = True
        # for everything older, the old 'PatVeloTT' is run
        else:
            from Configurables import PatVeloTT
            GaudiSequencer("TrackVeloTTPatSeq").Members += [
                PatVeloTT("PatVeloTT")
            ]
            from PatVeloTT.PatVeloTTAlgConf import PatVeloTTConf
            PatVeloTTConf().configureAlg()
            if TrackSys().timing():
                PatVeloTT("PatVeloTT").TimingMeasurement = True
        tracklists += ["Rec/Track/VeloTT"]

    ### Clean clone and fit
    track.DetectorList += ["Fit"]
    if TrackSys().getProp("OldCloneKiller"):
        from Configurables import TrackEventCloneKiller, TrackStateInitAlg, TrackContainerCopy
        cloneKiller = TrackEventCloneKiller()
        cloneKiller.TracksInContainers = tracklists
        cloneKiller.TracksOutContainer = "Rec/Track/AllBest"
        GaudiSequencer("TrackFitSeq").Members += [cloneKiller]
        stateInitAlg = TrackStateInitAlg("InitBestFit")
        stateInitAlg.TrackLocation = "Rec/Track/AllBest"
        if "FastVelo" in trackAlgs:
            stateInitAlg.StateInitTool.VeloFitterName = "FastVeloFitLHCbIDs"
        GaudiSequencer("TrackFitSeq").Members += [stateInitAlg]

        GaudiSequencer("TrackFitSeq").Members += [
            ConfiguredFit("FitBest", "Rec/Track/AllBest")
        ]
        copyBest = TrackContainerCopy("CopyBest")
        copyBest.inputLocations = ["Rec/Track/AllBest"]
        GaudiSequencer("TrackFitSeq").Members += [copyBest]

        ## Velo fitting
        if "Velo" in trackAlgs or "FastVelo" in trackAlgs:
            ## Prepare the velo tracks for the fit
            track.DetectorList += ["VeloFit"]
            from Configurables import TrackPrepareVelo
            GaudiSequencer("TrackVeloFitSeq").Members += [TrackPrepareVelo()]
            ## Fit the velo tracks
            GaudiSequencer("TrackVeloFitSeq").Members += [
                ConfiguredFit("FitVelo", "Rec/Track/PreparedVelo")
            ]
            ## copy the velo tracks to the "best" container
            copyVelo = TrackContainerCopy("CopyVelo")
            copyVelo.inputLocations = ["Rec/Track/PreparedVelo"]
            GaudiSequencer("TrackVeloFitSeq").Members += [copyVelo]
    else:
        # complete the list of track lists
        if "Velo" in trackAlgs or "FastVelo" in trackAlgs:
            tracklists += ["Rec/Track/Velo"]
        # create the best track creator
        from Configurables import TrackBestTrackCreator
        bestTrackCreator = TrackBestTrackCreator(TracksInContainers=tracklists)
        # configure its fitter and stateinittool
        ConfiguredMasterFitter(bestTrackCreator.Fitter)
        if "FastVelo" in trackAlgs:
            bestTrackCreator.StateInitTool.VeloFitterName = "FastVeloFitLHCbIDs"
        # add to the sequence
        GaudiSequencer("TrackFitSeq").Members.append(bestTrackCreator)

    ### Change dEdx correction for simulated data
    if TrackSys().getProp("Simulation"):
        from Configurables import StateDetailedBetheBlochEnergyCorrectionTool, DetailedMaterialLocator
        if TrackSys().getProp("OldCloneKiller"):
            from Configurables import TrackEventFitter, TrackMasterFitter
            fitBest = TrackEventFitter("FitBest")
            fitBest.Fitter.MaterialLocator.addTool(
                StateDetailedBetheBlochEnergyCorrectionTool("GeneralDedxTool"))
            fitBest.Fitter.MaterialLocator.GeneralDedxTool.EnergyLossFactor = 0.76
        else:
            from Configurables import TrackBestTrackCreator
            fitter = TrackBestTrackCreator().Fitter
            fitter.MaterialLocator.addTool(
                StateDetailedBetheBlochEnergyCorrectionTool("GeneralDedxTool"))
            fitter.MaterialLocator.GeneralDedxTool.EnergyLossFactor = 0.76

    ## Extra track information sequence
    extraInfos = TrackSys().getProp("TrackExtraInfoAlgorithms")
    if len(extraInfos) > 0:

        track.DetectorList += ["AddExtraInfo"]

        ## Clone finding and flagging
        if "CloneFlagging" in extraInfos:
            from Configurables import TrackBuildCloneTable, TrackCloneCleaner
            trackClones = GaudiSequencer("TrackClonesSeq")
            GaudiSequencer("TrackAddExtraInfoSeq").Members += [trackClones]
            if TrackSys().timing():
                trackClones.MeasureTime = True
            cloneTable = TrackBuildCloneTable("FindTrackClones")
            cloneTable.maxDz = 500 * mm
            cloneTable.zStates = [0 * mm, 990 * mm, 9450 * mm]
            cloneTable.klCut = 5e3
            cloneCleaner = TrackCloneCleaner("FlagTrackClones")
            cloneCleaner.CloneCut = 5e3
            trackClones.Members += [cloneTable, cloneCleaner]

        ## Add expected hit information
        #if "ExpectedHits" in extraInfos :
        #   GaudiSequencer("TrackAddExtraInfoSeq").Members += [ TrackComputeExpectedHits() ]

        ## Add the likelihood information
        if "TrackLikelihood" in extraInfos and ('TrackLikelihood'
                                                not in exclude):
            from Configurables import TrackAddLikelihood, TrackLikelihood
            trackAddLikelihood = TrackAddLikelihood()
            trackAddLikelihood.addTool(TrackLikelihood,
                                       name="TrackMatching_likTool")
            trackAddLikelihood.TrackMatching_likTool.otEff = 0.9
            GaudiSequencer("TrackAddExtraInfoSeq").Members += [
                trackAddLikelihood
            ]

        ## ghost probability using a Neural Net
        if "GhostProbability" in extraInfos:
            from Configurables import TrackAddNNGhostId, TrackNNGhostId
            nn = TrackAddNNGhostId()
            GaudiSequencer("TrackAddExtraInfoSeq").Members += [nn]

    track.DetectorList += ["EraseExtraInformation"]
    from Configurables import TrackEraseExtraInfo
    GaudiSequencer("TrackEraseExtraInformationSeq").Members += [
        TrackEraseExtraInfo()
    ]

    ## Muon alignment tracks
    if "MuonAlign" in trackAlgs:
        from Configurables import TrackEventFitter, AlignMuonRec
        track.DetectorList += ["MuonRec"]
        GaudiSequencer("TrackMuonRecSeq").Members += [
            AlignMuonRec("AlignMuonRec"),
            TrackEventFitter("MuonTrackFitter")
        ]
        importOptions("$TRACKSYSROOT/options/AlignMuonRec.opts")
        if TrackSys().fieldOff():
            AlignMuonRec("AlignMuonRec").BField = False
            importOptions("$STDOPTS/DstContentMuonAlign.opts")