def test2KwConstructor( self ): """Test keyword constructor""" i = CfgItemList( 'MyItems', items = [ 'Klass1#klass1', 'Klass2#klass2', ], allowWildCard = False ) self.failUnless( i.has_item( 'Klass1#klass1' ), 'Corrupted output item list !' ) self.failUnless( i.has_item( 'Klass2#klass2' ), 'Corrupted output item list !' ) self.failUnless( i.has_item( 'Klass1#*' ), 'Corrupted output item list !' ) self.failUnless( i.has_item( 'Klass2#*' ), 'Corrupted output item list !' ) self.failUnless( i.has_item( 'Klass1#klass*' ), 'Corrupted output item list !' ) self.failUnless( i.has_item( 'Klass2#klass*' ), 'Corrupted output item list !' ) self.failUnless( not i.has_item( 'Klass1#klass2' ), 'Corrupted output item list !' ) self.failUnless( not i.has_item( 'Klass2#klass1' ), 'Corrupted output item list !' ) self.failUnless( i._allowWildCard == False, 'Invalid "allowWildCard" state !' ) self.failUnless( i() == [ 'Klass1#klass1', 'Klass2#klass2', ], 'Invalid output item list value !' ) del i i = CfgItemList( 'MyItems', items = [ 'Klass3#klass3', 'Klass4#klass4', ], allowWildCard = True ) self.failUnless( i._allowWildCard == True, 'Invalid "allowWildCard" state !' ) self.failUnless( i() == [ 'Klass3#klass3', 'Klass4#klass4', ], 'Invalid output item list value !' ) del i msg.setLevel( logging.ERROR ) i = CfgItemList( 'MyItems', items = [ 'Klass3#*' ], allowWildCard = False ) self.failUnless( len(i()) == 0, "AllowWildCard does not work !" ) del i i = CfgItemList( 'MyItems', items = [ 'Klass3#*' ] ) self.failUnless( len(i()) == 0, "AllowWildCard does not work !" ) del i i = CfgItemList( 'MyItems' ) i.add( 'Klass3#*' ) self.failUnless( len(i()) == 0, "AllowWildCard does not work !" )
def test2KwConstructor( self ): """Test keyword constructor""" i = CfgItemList( 'MyItems', items = [ 'Klass1#klass1', 'Klass2#klass2', ], allowWildCard = False ) self.assertTrue( i.has_item( 'Klass1#klass1' ), 'Corrupted output item list !' ) self.assertTrue( i.has_item( 'Klass2#klass2' ), 'Corrupted output item list !' ) self.assertTrue( i.has_item( 'Klass1#*' ), 'Corrupted output item list !' ) self.assertTrue( i.has_item( 'Klass2#*' ), 'Corrupted output item list !' ) self.assertTrue( i.has_item( 'Klass1#klass*' ), 'Corrupted output item list !' ) self.assertTrue( i.has_item( 'Klass2#klass*' ), 'Corrupted output item list !' ) self.assertTrue( not i.has_item( 'Klass1#klass2' ), 'Corrupted output item list !' ) self.assertTrue( not i.has_item( 'Klass2#klass1' ), 'Corrupted output item list !' ) self.assertTrue( i._allowWildCard == False, 'Invalid "allowWildCard" state !' ) self.assertTrue( i() == [ 'Klass1#klass1', 'Klass2#klass2', ], 'Invalid output item list value !' ) del i i = CfgItemList( 'MyItems', items = [ 'Klass3#klass3', 'Klass4#klass4', ], allowWildCard = True ) self.assertTrue( i._allowWildCard == True, 'Invalid "allowWildCard" state !' ) self.assertTrue( i() == [ 'Klass3#klass3', 'Klass4#klass4', ], 'Invalid output item list value !' ) del i msg.setLevel( logging.ERROR ) i = CfgItemList( 'MyItems', items = [ 'Klass3#*' ], allowWildCard = False ) self.assertTrue( len(i()) == 0, "AllowWildCard does not work !" ) del i i = CfgItemList( 'MyItems', items = [ 'Klass3#*' ] ) self.assertTrue( len(i()) == 0, "AllowWildCard does not work !" ) del i i = CfgItemList( 'MyItems' ) i.add( 'Klass3#*' ) self.assertTrue( len(i()) == 0, "AllowWildCard does not work !" )
def test4Methods(self): """Test various methods of CfgItemList""" i = CfgItemList('MyItems') self.failUnless(i.name() == 'MyItems') i.add({'Klass': ['key1', 'key2']}) self.failUnless(i() == ['Klass#key1', 'Klass#key2']) i.add({'Klass': ['key1', 'key3']}) self.failUnless(i() == ['Klass#key1', 'Klass#key2', 'Klass#key3']) props = i.getProperties() self.failUnless(props.has_key('Klass')) self.failUnless(len(props['Klass']) == len(['key1', 'key2', 'key3'])) self.failUnless('key1' in props['Klass']) self.failUnless('key2' in props['Klass']) self.failUnless('key3' in props['Klass']) self.failUnless(len(i.allChildren()) == 0) self.failUnless(i.has_item('Klass#key1')) self.failUnless(i.has_item('Klass#key*')) self.failUnless(not i.has_item('Klass#Key1')) self.failUnless(not i.has_item('Klass#Key*')) i.clear() self.failUnless(len(i()) == 0) i.add({'Klass': ['key1', 'key2']}) self.failUnless(len(i()) == 2) i.remove('Klass') self.failUnless(len(i()) == 2) i.remove('Klass#key1') self.failUnless(len(i()) == 2) i.removeAll() self.failUnless(len(i()) == 2) i.removeItem('Klass') self.failUnless(len(i()) == 2) i.removeItem('Klass#key1') self.failUnless(len(i()) == 1) _keys = ['key1', 'key2', 'key3'] i.add({'Klass': _keys}) self.failUnless(len(i()) == 3) i.removeAllItems('Klass#key2') self.failUnless(len(i()) == 2) ## test we don't modify input dict d = {'Klassy': ['key1', 'key2', 'key3']} orig_d = d.copy() i.add(d) self.failUnless(d == orig_d) d = {'Klassy': 'key4'} orig_d = d.copy() i.add(d) self.failUnless(d == orig_d) ## test extraction of the item list of a given Container type _keys = ["Klassy#%s" % k for k in 'key1', 'key2', 'key3', 'key4'] self.failUnless(i("Klassy") == _keys) self.failUnless(i.list("Klassy") == _keys) self.failUnless(i(key="Klassy") == _keys) self.failUnless(i.list(key="Klassy") == _keys) ## test dict() _keys = ['key1', 'key2', 'key3', 'key4'] self.failUnless(i.dict()['Klass'] == ['key1', 'key3']) self.failUnless(i.dict()['Klassy'] == _keys) _dict = { 'Klass': ['key1', 'key3'], 'Klassy': ['key1', 'key2', 'key3', 'key4'] } self.failUnless(i.dict() == _dict)
def HSG5D3PD (alg = None, file = 'hsg5.root', tuplename = 'physics', streamname = 'd3pdstream', flags=HSG5Flags, **kw): if flags.doTaus(): # tau from TauD3PDMaker.TauD3PDObject import TauD3PDObject # define associations if flags.doPhotons() and not PhotonD3PDObject.allBlocknames().has_key('RecoveryMatch'): from PhotonD3PDMaker.PhotonRecoveryAssociation import PhotonRecoveryAssociation PhotonRecoveryAssoc = PhotonRecoveryAssociation(PhotonD3PDObject, 'ElectronContainer', D3PDMakerFlags.ElectronSGKey(), prefix = 'el_', blockname = 'RecoveryMatch', target = 'ph_ElectronRecovered_') # define track and cluster filters preseq = AlgSequence (D3PDMakerFlags.PreD3PDAlgSeqName()) if flags.doGoodTracks() and not hasattr( preseq, "GoodTracks" ): filter1 = makeTrackFilterAlg(TracksName = D3PDMakerFlags.TrackSGKey(), OutputTracksName='GoodTracks', ptCut=0.,nSCTPix=4) preseq += filter1 if flags.doHighPtTracks() and not hasattr( preseq, "HighPtTracks" ): filter2 = makeTrackFilterAlg(TracksName = D3PDMakerFlags.TrackSGKey(), OutputTracksName='HighPtTracks', ptCut=5000.,nSCTPix=4) preseq += filter2 if flags.doHighPtClusters() and not hasattr( preseq, "HighPtClusters" ): filter3 = makeClusterFilter(InputName = D3PDMakerFlags.ClusterSGKey(), OutputName = 'HighPtClusters', ptCut=10000.) preseq += filter3 if flags.doHighPtEMClusters() and not hasattr( preseq, "HighPtEMClusters" ): filter4 = makeClusterFilter(InputName = D3PDMakerFlags.EMTopoClusterSGKey(), OutputName = 'HighPtEMClusters', ptCut=10000.) preseq += filter4 # perform recoil calculation if flags.doHadronicRecoil(): from HadronicRecoil.HadronicRecoilConf import HadronicRecoil__ElectronSelector from HadronicRecoil.HadronicRecoilConf import HadronicRecoil__MuonSelector from HadronicRecoil.HadronicRecoilConf import HadronicRecoil__EflowSelector from HadronicRecoil.HadronicRecoilConf import HadronicRecoil__RecoilCalculation from HadronicRecoil.HadronicRecoilConf import HadronicRecoil__EflowRecoil if not hasattr( preseq, "HadronicRecoil::ElectronSelector" ): preseq += HadronicRecoil__ElectronSelector() if not hasattr( preseq, "HadronicRecoil::MuonSelector" ): preseq += HadronicRecoil__MuonSelector() if not hasattr( preseq, "HadronicRecoil::EflowSelector" ): preseq += HadronicRecoil__EflowSelector() if not hasattr( preseq, "HadronicRecoil::RecoilCalculation" ): preseq += HadronicRecoil__RecoilCalculation( ConeSizes = [0.20] ) if not hasattr( preseq, "EflowRecoil_20" ): preseq += HadronicRecoil__EflowRecoil("EflowRecoil_20", TrackRough = "RoughRecoil_track_20", TrackUE = "ueCorrection_track_20", TrackRef = "RefinedRecoil_track_20", ClusNoTrackRough = "RoughRecoil_clusNoTrack_20", ClusNoTrackUE = "ueCorrection_clusNoTrack_20", ClusNoTrackRef = "RefinedRecoil_clusNoTrack_20", RoughRecoil_out = "RoughRecoil_Eflow_20", ueCorrection_out = "ueCorrection_Eflow_20", RefinedRecoil_out= "RefinedRecoil_Eflow_20", MET_out = "MET_HR_Eflow_20" ) # now configure the D3PD if not alg: alg = MSMgr.NewRootStream(StreamName = streamname, FileName = file, TreeName = tuplename) alg += EventInfoD3PDObject (**_args (10, 'EventInfo', kw)) alg += LArCollisionTimeD3PDObject (**_args (10, 'LArCollisionTime', kw)) from TriggerD3PDMaker.BunchStructureMetadata import addBunchStructureMetadata addBunchStructureMetadata (alg) # Eta rings of energy # FIXME brian crashing aod running if not rec.readAOD: from CaloD3PDMaker.RapgapD3PDObject import EtaRingsNonTileD3PDObject from CaloD3PDMaker.RapgapD3PDObject import EtaRingsD3PDObject alg += EtaRingsNonTileD3PDObject ( **_args ( 0, 'EtaRings', kw) ) alg += EtaRingsD3PDObject ( **_args ( 0, 'EtaRings', kw) ) # Electron/Photon blocks alg += ElectronD3PDObject (**_args (10, 'Electron', kw)) if testSGKey ('ElectronContainer', D3PDMakerFlags.GSFElectronSGKey()): alg += GSFElectronD3PDObject (**_args (10, 'GSFElectron', kw, sgkey = D3PDMakerFlags.GSFElectronSGKey(), prefix = 'el_gsf_')) if flags.doPhotons(): print "adding photons" alg += PhotonD3PDObject (**_args (10, 'Photon', kw)) # Muon blocks ### add the scattering significance filler - to be removed when added in the MuonD3PDMaker if not MuonD3PDObject.allBlocknames().has_key("MuonScatteringAngleSignificance"): from AthenaCommon.AppMgr import ToolSvc muonScatteringSigTool=None if hasattr(ToolSvc, "MuonScatteringSigTool"): muonScatteringSigTool=ToolSvc.MuonScatteringSigTool from JetTagD3PDMaker import MuonScatteringAngleSignificanceFillerTool MuonD3PDObject.defineBlock (100, "MuonScatteringAngleSignificance", MuonScatteringAngleSignificanceFillerTool, ScatteringSigTool=muonScatteringSigTool) alg += MuonD3PDObject (**_args (10, 'MuidMuon', kw, sgkey='MuidMuonCollection', prefix='mu_muid_', include = ["EFCBInfoIndex", "EFMGInfoIndex", "EFMEInfoIndex", "L2CBInfoIndex", "L1InfoIndex"], exclude = ["EFCBInfo", "EFMGInfo", "EFMEInfo", "L2CBInfo", "L1Info"], allowMissing = True )) alg += MuonD3PDObject (**_args (10, 'StacoMuon', kw, sgkey='StacoMuonCollection', prefix='mu_staco_', include = ["EFCBInfoIndex", "EFMGInfoIndex", "EFMEInfoIndex", "L2CBInfoIndex", "L1InfoIndex"], exclude = ["EFCBInfo", "EFMGInfo", "EFMEInfo", "L2CBInfo", "L1Info"], allowMissing = True )) from AthenaCommon.KeyStore import CfgItemList if CfgItemList("KeyStore_inputFile").has_item("Analysis::MuonContainer#Muons"): alg += MuonD3PDObject (**_args (10, 'Muons', kw, sgkey='Muons', prefix='mu_muons_', include = ["EFCBInfoIndex", "EFMGInfoIndex", "EFMEInfoIndex", "L2CBInfoIndex", "L1InfoIndex"], exclude = ["EFCBInfo", "EFMGInfo", "EFMEInfo", "L2CBInfo", "L1Info"], allowMissing = True )) alg += MuonD3PDObject (**_args (0, 'CaloMuon', kw, sgkey='CaloMuonCollection', prefix='mu_calo_', include = ["MuonHitSummary", "Authors", "Likelihood", "Isolation", "CaloEnergyLoss", "Quality"] )) # Tau block if flags.doTaus(): alg += TauD3PDObject (**_args ( 1, 'Tau', kw)) # track and cluster blocks # ... all clusters, very low LOD alg += ClusterD3PDObject (**_args ( 0, 'Clusters1', kw, exclude='SamplingBasics')) # ... higher LOD for pt>10 GeV if flags.doHighPtClusters(): alg += ClusterD3PDObject (**_args ( 2, 'Clusters2', kw, sgkey = 'HighPtClusters', prefix = 'clpt10_')) if flags.doHighPtEMClusters(): alg += ClusterD3PDObject (**_args ( 3, 'Clusters3', kw, sgkey = 'HighPtEMClusters', prefix = 'emclpt10_')) from TrackD3PDMaker.TrackD3PDObject import TrackD3PDObject # ... good tracks only (nSCT>3; no pt cut) # use standard level of track info for 'GoodTracks' if flags.doGoodTracks(): # use standard level of track info for 'GoodTracks' alg += TrackParticleD3PDObject (**_args ( 3, 'Tracks1', kw, sgkey = 'GoodTracks', label = 'trk', prefix = 'trk_')) # ... high-pt tracks (nSCT>3; pt>5 GeV) if flags.doHighPtTracks(): from TrackD3PDMaker.TrackD3PDMakerFlags import TrackD3PDFlags as highPtFlags highPtFlags.doTruth = True highPtFlags.storeDiagonalCovarianceAsErrors = True highPtFlags.storeHitTruthMatching = True highPtFlags.storePixelHitsOnTrack = False highPtFlags.storePixelHolesOnTrack = False highPtFlags.storePixelOutliersOnTrack = False highPtFlags.storeSCTHitsOnTrack = False highPtFlags.storeSCTHolesOnTrack = False highPtFlags.storeSCTOutliersOnTrack = False highPtFlags.storeTRTHitsOnTrack = False highPtFlags.storeTRTHolesOnTrack = False highPtFlags.storeTRTOutliersOnTrack = False highPtFlags.storeTrackFitQuality = True highPtFlags.storeTrackMomentum = True highPtFlags.storeTrackSummary = True highPtFlags.storeTrackSummary.IDOutliers = True highPtFlags.storeTrackSummary.PixelInfoPlus = True highPtFlags.storeTrackSummary.SCTInfoPlus = True highPtFlags.storeTrackSummary.TRTInfoPlus = True highPtFlags.storeTrackSummary.InfoPlus = True highPtFlags.trackParametersAtBeamSpotLevelOfDetails = 0 highPtFlags.trackParametersAtGlobalPerigeeLevelOfDetails = 2 highPtFlags.trackParametersAtPrimaryVertexLevelOfDetails = 3 HighPtTrackParticleD3PDObject = TrackD3PDObject(_label='trkpt5', _prefix='trkpt5_', _sgkey='HighPtTracks', typeName='Rec::TrackParticleContainer', flags=highPtFlags) alg += HighPtTrackParticleD3PDObject(**_args ( 3, 'Tracks2', kw, sgkey = 'HighPtTracks', label = 'trkpt5', prefix = 'trkpt5_')) # Jet blocks from JetTagD3PDMaker.JetTagD3PDMakerFlags import JetTagD3PDFlags # include list modified for HSG5D3PD includelist = JetTagD3PDFlags.StdInfoInclude() from JetTagD3PDMaker.JetTagD3PDMakerKeys import JetTagD3PDKeys includelist += [JetTagD3PDKeys.BTagWeightsBlockName()] #includelist += [JetTagD3PDKeys.JetFitterInfoBaseBlockName()] #includelist += [JetTagD3PDKeys.JetFitterTagInfoBlockName()] #includelist += [JetTagD3PDKeys.IP3DInfoBaseBlockName()] #includelist += [JetTagD3PDKeys.IP3DIPInfoBaseBlockName()] #includelist += [JetTagD3PDKeys.JetFitterCombInfoBaseBlockName()] includelist += [JetTagD3PDKeys.JetTrackAssocBlockName()] includelist += [JetTagD3PDKeys.JetTrackBlockName()] includelist += [JetTagD3PDKeys.IPInfoPlusTrackAssocBlockName()] includelist += [JetTagD3PDKeys.IPInfoPlusTrackBlockName()] includelist += ['ConstituentScale'] jetkw = kw if not jetkw.has_key ( 'AK4TopoEMJet_'+JetTagD3PDKeys.JetTrackAssocBlockName()+'_target'): jetkw['AK4TopoEMJet_'+JetTagD3PDKeys.JetTrackAssocBlockName()+'_target']= "trk" if not jetkw.has_key ( 'AK4TopoEMJet_'+JetTagD3PDKeys.IPInfoPlusTrackAssocBlockName()+'_target'): jetkw['AK4TopoEMJet_'+JetTagD3PDKeys.IPInfoPlusTrackAssocBlockName()+'_target']= "trk" alg += JetD3PDObject (**_args ( 3, 'AK4TopoEMJet', jetkw, sgkey='AntiKt4TopoEMJets', prefix='jet_AntiKt4TopoEM_', include = includelist, JetVertexFraction_FromUD=True, JetVertexFraction_FillFullJVF=True, allowMissing = True)) alg += JetD3PDObject (**_args ( 3, 'AK6TopoEMJet', kw, sgkey='AntiKt6TopoEMJets', prefix='jet_AntiKt6TopoEM_', include = [JetTagD3PDFlags.StdInfoInclude(),'ConstituentScale'], JetVertexFraction_FromUD=True, JetVertexFraction_FillFullJVF=True, allowMissing = True)) alg += JetD3PDObject (**_args ( 3, 'AK4LCTopoJet', kw, sgkey='AntiKt4LCTopoJets', prefix='jet_AntiKt4LCTopo_', exclude=['Layer'], include=['ConstituentScale'], JetVertexFraction_FromUD=True, JetVertexFraction_FillFullJVF=True, allowMissing = True)) alg += JetD3PDObject (**_args ( 3, 'AK6LCTopoJet', kw, sgkey='AntiKt6LCTopoJets', prefix='jet_AntiKt6LCTopo_', exclude=['Layer'], include=['ConstituentScale'], JetVertexFraction_FromUD=True, JetVertexFraction_FillFullJVF=True, allowMissing = True)) from TopInputsD3PDMaker.HforD3PDObject import HforD3PDObject alg += HforD3PDObject(**_args (0, 'HforInfo', kw)) # MET blocks # a whole mess to remove x,y components separately for all flavours if flags.doAllMissingET() : alg += MissingETD3PDObject (**_args (10, 'MissingET', kw, exclude=['MET_Base', 'MET_Base0', 'MET_Truth_Int', 'MET_RefFinal_Comps','MET_Calib_Comps','MET_CellOut_Comps', 'MET_CorrTopo_Comps','MET_Cryo_Comps','MET_CryoCone_Comps', 'MET_Final_Comps','MET_LocHadTopo_Comps', 'MET_LocHadTopoObj_Comps', 'MET_Muid_Comps','MET_Muid_Spectro_Comps','MET_Muid_Track_Comps', 'MET_MuonBoy_Comps','MET_MuonBoy_Spectro_Comps','MET_MuonBoy_Track_Comps', 'MET_Muons_Comps','MET_Muons_Spectro_Comps','MET_Muons_Track_Comps', 'MET_MuonMuid_Comps', 'MET_Muon_Comps','MET_Muon_Isol_Muid_Comps', 'MET_Muon_Isol_Staco_Comps','MET_Muon_NonIsol_Muid_Comps', 'MET_Muon_NonIsol_Staco_Comps','MET_Muon_Total_Muid_Comps', 'MET_Muon_Total_Staco_Comps','MET_RefEle_Comps', 'MET_RefEle_em_Comps','MET_RefGamma_Comps', 'MET_RefGamma_em_Comps','MET_RefJet_Comps', 'MET_RefJet_em_Comps','MET_RefMuon_Comps', 'MET_RefMuon_Muid_Comps','MET_RefMons_Comps','MET_RefMuon_Staco_Comps', 'MET_RefMuon_Track_Muid_Comps','MET_RefMuon_Track_Staco_Comps', 'MET_RefMuon_Track_em_Comps','MET_RefMuon_Track_Comps', 'MET_RefMuons_Track_Comps', 'MET_RefMuon_em_Comps','MET_RefTau_Comps', 'MET_RefTau_em_Comps','MET_SoftJets_Comps', 'MET_SoftJets_em_Comps','MET_Topo_Comps', 'MET_TopoObj_Comps','MET_Track_Comps','MET_Comps', 'MET_Track_Weights','MET_Cluster_Weights'], allowMissing=True)) else : alg += MissingETD3PDObject(0, sgkey = "MET_RefFinal", prefix = "MET_RefFinal") # MuonBoy terms used in RefFinal alg += MissingETD3PDObject(0, sgkey = "MET_MuonBoy", prefix = "MET_MuonBoy") alg += MissingETD3PDObject(0, sgkey = "MET_RefMuon", prefix = "MET_RefMuon") alg += MissingETD3PDObject(0, sgkey = "MET_CellOut_Eflow", prefix = "MET_CellOut_Eflow") # terms needed to calculate RefFinal with Muid instead of Staco alg += MissingETD3PDObject(0, sgkey = "MET_RefMuon_Muid", prefix = "MET_RefMuon_Muid") alg += MissingETD3PDObject(0, sgkey = "MET_MuonMuid", prefix = "MET_MuonMuid") alg += MissingETD3PDObject(0, sgkey = "MET_Muid", prefix = "MET_Muid") alg += MissingETD3PDObject(0, sgkey = "MET_CellOut_Eflow_Muid", prefix = "MET_CellOut_Eflow_Muid") # terms needed to calculate RefFinal with third chain instead of Staco from AthenaCommon.KeyStore import CfgItemList keystore = CfgItemList("KeyStore_inputFile") if keystore.has_item("MissingET#MET_Muons"): alg += MissingETD3PDObject(0, sgkey = "MET_Muons", prefix = "MET_Muons") if keystore.has_item("MissingET#MET_RefMuons"): alg += MissingETD3PDObject(0, sgkey = "MET_RefMuons", prefix = "MET_RefMuons") if keystore.has_item("MissingET#MET_CellOut_Eflow_Muons"): alg += MissingETD3PDObject(0, sgkey = "MET_CellOut_Eflow_Muons", prefix = "MET_CellOut_Eflow_Muons") # I have no idea what these are for alg += MissingETD3PDObject(0, sgkey = "MET_SoftJets", prefix = "MET_SoftJets") alg += MissingETD3PDObject(0, sgkey = "MET_RefFinal_em", prefix = "MET_RefFinal_em") alg += MissingETD3PDObject(0, sgkey = "MET_CellOut_em", prefix = "MET_CellOut_em") alg += MissingETD3PDObject(0, sgkey = "MET_SoftJets_em", prefix = "MET_SoftJets_em") # HadronicRecoil blocks if flags.doHadronicRecoil(): alg += ElectronD3PDObject(0, sgkey = "HR_selectedElectrons", prefix = "hr_el_") alg += MuonD3PDObject( 0, sgkey = "HR_selectedMuons", prefix = "hr_mu_" ) alg += MissingETD3PDObject(0, sgkey = "RoughRecoil_20", prefix = "hr_roughRecoil_20", exclude=['MET_Regions','MET_Comps'] ) alg += MissingETD3PDObject(0, sgkey = "ueCorrection_20", prefix = "hr_ueCorrection_20", exclude=['MET_Regions','MET_Comps'] ) alg += MissingETD3PDObject(0, sgkey = "RefinedRecoil_20", prefix = "hr_corrRecoil_20", exclude=['MET_Regions','MET_Comps'] ) alg += MissingETD3PDObject(0, sgkey = "MET_HR_20", prefix = "hr_MET_20", exclude=['MET_Regions','MET_Comps'] ) alg += MissingETD3PDObject(0, sgkey = "RoughRecoil_track_20", prefix = "hr_roughRecoil_track_20", exclude=['MET_Regions','MET_Comps'] ) alg += MissingETD3PDObject(0, sgkey = "ueCorrection_track_20", prefix = "hr_ueCorrection_track_20", exclude=['MET_Regions','MET_Comps'] ) alg += MissingETD3PDObject(0, sgkey = "RefinedRecoil_track_20", prefix = "hr_corrRecoil_track_20", exclude=['MET_Regions','MET_Comps'] ) alg += MissingETD3PDObject(0, sgkey = "MET_HR_track_20", prefix = "hr_MET_track_20", exclude=['MET_Regions','MET_Comps'] ) alg += MissingETD3PDObject(0, sgkey = "RoughRecoil_clusNoTrack_20", prefix = "hr_roughRecoil_clusNoTrack_20", exclude=['MET_Regions','MET_Comps'] ) alg += MissingETD3PDObject(0, sgkey = "ueCorrection_clusNoTrack_20", prefix = "hr_ueCorrection_clusNoTrack_20", exclude=['MET_Regions','MET_Comps'] ) alg += MissingETD3PDObject(0, sgkey = "RefinedRecoil_clusNoTrack_20", prefix = "hr_corrRecoil_clusNoTrack_20", exclude=['MET_Regions','MET_Comps'] ) alg += MissingETD3PDObject(0, sgkey = "MET_HR_clusNoTrack_20", prefix = "hr_MET_clusNoTrack_20", exclude=['MET_Regions','MET_Comps'] ) alg += MissingETD3PDObject(0, sgkey = "RoughRecoil_Eflow_20", prefix = "hr_roughRecoil_Eflow_20", exclude=['MET_Regions','MET_Comps'] ) alg += MissingETD3PDObject(0, sgkey = "ueCorrection_Eflow_20", prefix = "hr_ueCorrection_Eflow_20", exclude=['MET_Regions','MET_Comps'] ) alg += MissingETD3PDObject(0, sgkey = "RefinedRecoil_Eflow_20", prefix = "hr_corrRecoil_Eflow_20", exclude=['MET_Regions','MET_Comps'] ) alg += MissingETD3PDObject(0, sgkey = "MET_HR_Eflow_20", prefix = "hr_MET_Eflow_20", exclude=['MET_Regions','MET_Comps'] ) """ # track and cluster blocks # ... all clusters, very low LOD alg += ClusterD3PDObject (**_args ( 0, 'Clusters1', kw, exclude='SamplingBasics')) # ... higher LOD for pt>10 GeV if flags.doHighPtClusters(): alg += ClusterD3PDObject (**_args ( 2, 'Clusters2', kw, sgkey = 'HighPtClusters', prefix = 'clpt10_')) if flags.doHighPtEMClusters(): alg += ClusterD3PDObject (**_args ( 3, 'Clusters3', kw, sgkey = 'HighPtEMClusters', prefix = 'emclpt10_')) from TrackD3PDMaker.TrackD3PDObject import TrackD3PDObject # ... good tracks only (nSCT>3; no pt cut) # use standard level of track info for 'GoodTracks' if flags.doGoodTracks(): # use standard level of track info for 'GoodTracks' alg += TrackParticleD3PDObject (**_args ( 3, 'Tracks1', kw, sgkey = 'GoodTracks', label = 'trk', prefix = 'trk_')) # ... high-pt tracks (nSCT>3; pt>5 GeV) if flags.doHighPtTracks(): from TrackD3PDMaker.TrackD3PDMakerFlags import TrackD3PDFlags as highPtFlags highPtFlags.doTruth = True highPtFlags.storeDiagonalCovarianceAsErrors = True highPtFlags.storeHitTruthMatching = True highPtFlags.storePixelHitsOnTrack = False highPtFlags.storePixelHolesOnTrack = False highPtFlags.storePixelOutliersOnTrack = False highPtFlags.storeSCTHitsOnTrack = False highPtFlags.storeSCTHolesOnTrack = False highPtFlags.storeSCTOutliersOnTrack = False highPtFlags.storeTRTHitsOnTrack = False highPtFlags.storeTRTHolesOnTrack = False highPtFlags.storeTRTOutliersOnTrack = False highPtFlags.storeTrackFitQuality = True highPtFlags.storeTrackMomentum = True highPtFlags.storeTrackSummary = True highPtFlags.storeTrackSummary.IDOutliers = True highPtFlags.storeTrackSummary.PixelInfoPlus = True highPtFlags.storeTrackSummary.SCTInfoPlus = True highPtFlags.storeTrackSummary.TRTInfoPlus = True highPtFlags.storeTrackSummary.InfoPlus = True highPtFlags.trackParametersAtBeamSpotLevelOfDetails = 0 highPtFlags.trackParametersAtGlobalPerigeeLevelOfDetails = 2 highPtFlags.trackParametersAtPrimaryVertexLevelOfDetails = 3 HighPtTrackParticleD3PDObject = TrackD3PDObject(_label='trkpt5', _prefix='trkpt5_', _sgkey='HighPtTracks', typeName='Rec::TrackParticleContainer', flags=highPtFlags) alg += HighPtTrackParticleD3PDObject(**_args ( 3, 'Tracks2', kw, sgkey = 'HighPtTracks', label = 'trkpt5', prefix = 'trkpt5_')) """ # Primary vertex block - May be missing in single-beam data. alg += PrimaryVertexD3PDObject (**_args (1, 'PrimaryVertex', kw, allowMissing = True, sgkey = D3PDMakerFlags.VertexSGKey(), prefix = 'vxp_')) # MBTS alg += MBTSD3PDObject (**_args (10, 'MBTS', kw)) alg += MBTSTimeD3PDObject (**_args (10, 'MBTSTime', kw)) alg += MBTSTriggerBitsD3PDObject (**_args (10, 'MBTSTriggerBits', kw)) #alg += CollisionDecisionD3PDObject(**_args (10, 'CollisionDecision', kw)) # Truth if rec.doTruth(): from TruthD3PDMaker.TruthParticleD3PDObject import TruthParticleD3PDObject from MuonD3PDMaker.TruthMuonD3PDObject import TruthMuonD3PDObject alg += TruthMuonD3PDObject (**_args ( 2, 'TruthMuon', kw)) alg += GenEventD3PDObject (**_args ( 1, 'GenEvent', kw)) alg += TruthParticleD3PDObject(**_args ( 1, 'TruthParticle', kw)) # TruthJets alg += JetD3PDObject (**_args ( 1, 'AK4TruthJet', kw, sgkey='AntiKt4TruthJets',prefix='jet_AntiKt4Truth_', allowMissing = True)) alg += JetD3PDObject (**_args ( 1, 'AK6TruthJet', kw, sgkey='AntiKt6TruthJets', prefix='jet_AntiKt6Truth_', allowMissing = True)) alg += JetD3PDObject (**_args ( 1, 'AK4TruthJetALL', kw, sgkey='AntiKt4TruthJets_ALL', prefix='jet_AntiKt4TruthALL_', allowMissing = True)) alg += JetD3PDObject (**_args ( 1, 'AK6TruthJetALL', kw, sgkey='AntiKt6TruthJets_ALL', prefix='jet_AntiKt6TruthALL_', allowMissing = True)) alg += JetD3PDObject (**_args ( 1, 'AK4TruthJetWZ', kw, sgkey='AntiKt4TruthJets_WZ', prefix='jet_AntiKt4TruthWZ_', allowMissing = True)) alg += JetD3PDObject (**_args ( 1, 'AK6TruthJetWZ', kw, sgkey='AntiKt6TruthJets_WZ', prefix='jet_AntiKt6TruthWZ_', allowMissing = True)) if not rec.doTruth(): alg += BeamSpotD3PDObject(10) from TrigMissingETD3PDMaker.TrigMETD3PD import TrigMETD3PDObjects TrigMETD3PDObjects(alg,10) # Trigger if D3PDMakerFlags.DoTrigger(): alg += SMWZTriggerBitsD3PDObject (**_args (10, 'SMWZTriggerBits', kw)) # Trigger Decision + metadata alg += TrigDecisionD3PDObject (**_args(10, 'TrigDecision', kw)) addTrigConfMetadata(alg) # Bunch group info alg += BGCodeD3PDObject (**_args (2, 'BGCode', kw)) # Egamma and Mu TrigEgammaD3PDObjects (alg, 1) TrigMuonD3PDObjects( alg, 1) # Esum #alg += EnergySumROID3PDObject(**_args (2, 'EnergySumROI', kw, # prefix = "trig_L1_esum_")) # The LVL2 information: #alg += TrigMETD3PDObject(**_args( 2, 'TrigMETL2', kw, # prefix = "trig_L2_met_", # sgkey = "HLT_T2MissingET" )) # The EF information: #alg += TrigMETD3PDObject(**_args ( 2, 'TrigMETEF', kw, # prefix = "trig_EF_met_", # sgkey = "HLT_TrigEFMissingET" )) # Event metadata alg.MetadataTools += [LBMetadataConfig()] # Invoke routine to write GSCFactor and WidthFraction jet moments #addSTRUCTCalib('AntiKt4LCTopoJets', input='Topo', mainParam=0.4) #addSTRUCTCalib('AntiKt6LCTopoJets', input='Topo', mainParam=0.6) #addSTRUCTCalib('AntiKt4TopoEMJets', input='Topo', mainParam=0.4) #addSTRUCTCalib('AntiKt6TopoEMJets', input='Topo', mainParam=0.6) if D3PDMakerFlags.FilterCollCand(): from CaloD3PDMaker.CollisionFilterAlg import CollisionFilterAlg alg.filterSeq += CollisionFilterAlg (tuplename + '_CollCandFilter') return alg
def test4Methods( self ): """Test various methods of CfgItemList""" i = CfgItemList( 'MyItems' ) self.failUnless( i.name() == 'MyItems' ) i.add( { 'Klass' : ['key1', 'key2'] } ) self.failUnless( i() == [ 'Klass#key1', 'Klass#key2' ] ) i.add( { 'Klass' : ['key1', 'key3' ] } ) self.failUnless( i() == [ 'Klass#key1', 'Klass#key2', 'Klass#key3' ] ) props = i.getProperties() self.failUnless( props.has_key( 'Klass' ) ) self.failUnless( len(props['Klass']) == len(['key1','key2','key3']) ) self.failUnless( 'key1' in props['Klass'] ) self.failUnless( 'key2' in props['Klass'] ) self.failUnless( 'key3' in props['Klass'] ) self.failUnless( len(i.allChildren()) == 0 ) self.failUnless( i.has_item( 'Klass#key1' ) ) self.failUnless( i.has_item( 'Klass#key*' ) ) self.failUnless( not i.has_item( 'Klass#Key1' ) ) self.failUnless( not i.has_item( 'Klass#Key*' ) ) i.clear() self.failUnless( len(i()) == 0 ) i.add( { 'Klass' : ['key1', 'key2'] } ) self.failUnless( len(i()) == 2 ) i.remove( 'Klass' ) self.failUnless( len(i()) == 2 ) i.remove( 'Klass#key1' ) self.failUnless( len(i()) == 2 ) i.removeAll() self.failUnless( len(i()) == 2 ) i.removeItem( 'Klass' ) self.failUnless( len(i()) == 2 ) i.removeItem( 'Klass#key1' ) self.failUnless( len(i()) == 1 ) _keys = ['key1', 'key2', 'key3'] i.add( { 'Klass' : _keys } ) self.failUnless( len(i()) == 3 ) i.removeAllItems( 'Klass#key2' ) self.failUnless( len(i()) == 2 ) ## test we don't modify input dict d = { 'Klassy' : ['key1', 'key2', 'key3'] } orig_d = d.copy() i.add( d ) self.failUnless( d == orig_d ) d = { 'Klassy' : 'key4' } orig_d = d.copy() i.add( d ) self.failUnless( d == orig_d ) ## test extraction of the item list of a given Container type _keys = [ "Klassy#%s" % k for k in 'key1', 'key2', 'key3', 'key4' ] self.failUnless( i( "Klassy" ) == _keys ) self.failUnless( i.list( "Klassy" ) == _keys ) self.failUnless( i( key = "Klassy" ) == _keys ) self.failUnless( i.list( key = "Klassy" ) == _keys ) ## test dict() _keys = [ 'key1', 'key2', 'key3', 'key4' ] self.failUnless( i.dict()['Klass' ] == ['key1', 'key3'] ) self.failUnless( i.dict()['Klassy'] == _keys ) _dict = { 'Klass' : ['key1', 'key3'], 'Klassy': ['key1', 'key2', 'key3', 'key4']} self.failUnless( i.dict() == _dict )