[ae1d49f] | 1 | import ROOT
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| 2 | import libPyROOT as _root
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| 3 | ROOT.gSystem.Load("libDelphes")
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| 4 |
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| 5 | #####################################################
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| 6 | ### Definition of the string conversion methods ###
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| 7 | #####################################################
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| 8 |
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| 9 | def _Event__str__( self ):
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| 10 | theString = "Event number %i\n" % self.Number
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| 11 | theString += "Read in %f and processed in %f.\n" % (self.ReadTime, self.ProcTime)
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| 12 | return theString
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| 13 |
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[407aeba] | 14 | if hasattr(_root,"MakeRootClass"):
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| 15 | _root.MakeRootClass( "Event" ).__str__ = _Event__str__
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| 16 | else:
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| 17 | _root.CreateScopeProxy( "Event" ).__str__ = _Event__str__
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[ae1d49f] | 18 |
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| 19 | def _LHCOEvent__str__( self ):
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| 20 | theString = "Trigger word: %b\n" % self.Trigger
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| 21 | return theString
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| 22 |
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[407aeba] | 23 | if hasattr(_root,"MakeRootClass"):
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| 24 | _root.MakeRootClass( "LHCOEvent" ).__str__ = _LHCOEvent__str__
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| 25 | else:
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| 26 | _root.CreateScopeProxy( "LHCOEvent" ).__str__ = _LHCOEvent__str__
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[ae1d49f] | 27 |
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| 28 | def _LHEFEvent__str__( self ):
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| 29 | hepmcstr = "Process ID: %i\n" % self.ProcessID
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| 30 | hepmcstr += "ScalePDF = %f\n" % self.ScalePDF
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| 31 | hepmcstr += "Alpha QED = %f\n" % self.AlphaQED
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| 32 | hepmcstr += "Alpha DCQ = %f\n" % self.AlphaQCD
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| 33 | hepmcstr += "Event weight = %f\n" % self.Weight
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| 34 | return hepmcstr
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| 35 |
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[407aeba] | 36 | if hasattr(_root,"MakeRootClass"):
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| 37 | _root.MakeRootClass( "LHEFEvent" ).__str__ = _LHEFEvent__str__
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| 38 | else:
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| 39 | _root.CreateScopeProxy( "LHEFEvent" ).__str__ = _LHEFEvent__str__
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[ae1d49f] | 40 |
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| 41 | def _HepMCEvent__str__( self ):
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| 42 | hepmcstr = "Process ID: %i\n" % self.ProcessID
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| 43 | hepmcstr += "Energy scale: %f\n" % self.Scale
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| 44 | hepmcstr += "Alpha QED = %f\n" % self.AlphaQED
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| 45 | hepmcstr += "Alpha QCD = %f\n" % self.AlphaQCD
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| 46 | hepmcstr += "Number of multi parton interactions: %f\n" % self.MPI
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| 47 | hepmcstr += """Q-scale used in evaluation of PDFs (in GeV): %f\n""" % self.ScalePDF
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| 48 | hepmcstr += """Fraction of beam momentum carried by %i parton ("beam side"): %f\n""" % (self.ID1,self.X1)
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| 49 | hepmcstr += """Fraction of beam momentum carried by %i parton ("target side"): %f\n""" % (self.ID2,self.X2)
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| 50 | hepmcstr += "PDF (id1, x1, Q) = %f\n" % self.PDF1
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| 51 | hepmcstr += "PDF (id2, x2, Q) = %f\n" % self.PDF2
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| 52 | return hepmcstr
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| 53 |
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[407aeba] | 54 | if hasattr(_root,"MakeRootClass"):
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| 55 | _root.MakeRootClass( "HepMCEvent" ).__str__ = _HepMCEvent__str__
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| 56 | else:
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| 57 | _root.CreateScopeProxy( "HepMCEvent" ).__str__ = _HepMCEvent__str__
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| 58 |
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[ae1d49f] | 59 |
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| 60 | def _GenParticle__str__( self ):
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| 61 | thestring = "Particle HEP ID number = %d\n" % self.PID
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| 62 | thestring += "Particle status: %d\n" % self.Status
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| 63 | if self.IsPU: thestring += "That particle is from PU.\n"
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| 64 | thestring += "Particle 1st mother: %d\n" % self.M1
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| 65 | thestring += "Particle 2nd mother: %d\n" % self.M2
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| 66 | thestring += "Particle 1st daughter: %d\n" % self.D1
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| 67 | thestring += "Particle last daughter: %d\n" % self.D2
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| 68 | thestring += "(Px,Py,Pz,E) = (%f,%f,%f,%f)\n" % (self.Px,self.Py,self.Pz,self.E)
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| 69 | thestring += "(Pt,Eta,Phi) = (%f,%f,%f)\n" % (self.PT,self.Eta,self.Phi)
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| 70 | thestring += "Rapidity = %f\n" % self.Rapidity
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| 71 | thestring += "Charge: %d\n" % self.Charge
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| 72 | thestring += "Mass: %f\n" % self.Mass
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| 73 | thestring += "Vertex position: (x,y,z,t) = (%f,%f,%f,%f)\n" % (self.X,self.Y,self.Z,self.T)
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| 74 | return thestring
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| 75 |
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[407aeba] | 76 | if hasattr(_root,"MakeRootClass"):
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| 77 | _root.MakeRootClass( "GenParticle" ).__str__ = _GenParticle__str__
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| 78 | else:
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| 79 | _root.CreateScopeProxy( "GenParticle" ).__str__ = _GenParticle__str__
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[ae1d49f] | 80 |
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| 81 | def _GenParticle_printDecay( self, db, particles, pre="" ):
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| 82 | thestring = "%s (%f,%f,%f,%f) (status %d)\n" % (db.GetParticle(self.PID).GetName(),self.Px,self.Py,self.Pz,self.E, self.Status)
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| 83 | for daughter in range(self.D1,self.D2+1):
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| 84 | if daughter==-1: break
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| 85 | if daughter<self.D2 : thestring += "%s+->%s" % (pre,particles.At(daughter).printDecay(db,particles,pre+"| "))
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| 86 | else: thestring += "%s+->%s" % (pre,particles.At(daughter).printDecay(db,particles,pre+" "))
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| 87 | return thestring
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| 88 |
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[407aeba] | 89 | if hasattr(_root,"MakeRootClass"):
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| 90 | _root.MakeRootClass( "GenParticle" ).printDecay = _GenParticle_printDecay
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| 91 | else:
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| 92 | _root.CreateScopeProxy( "GenParticle" ).printDecay = _GenParticle_printDecay
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[ae1d49f] | 93 |
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| 94 | def _MissingET__str__( self ):
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| 95 | thestring = "Mising transverse energy: %f\n" % self.MET
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| 96 | thestring += "Mising energy azimuthal angle: %f\n" % self.Phi
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| 97 | return thestring
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[407aeba] | 98 |
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| 99 | if hasattr(_root,"MakeRootClass"):
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| 100 | _root.MakeRootClass( "MissingET" ).__str__ = _MissingET__str__
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| 101 | else:
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| 102 | _root.CreateScopeProxy( "MissingET" ).__str__ = _MissingET__str__
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[ae1d49f] | 103 |
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| 104 | def _ScalarHT__str__( self ):
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| 105 | thestring = "Scalar sum of transverse momenta: %f\n" %self.HT
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| 106 |
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[407aeba] | 107 | if hasattr(_root,"MakeRootClass"):
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| 108 | _root.MakeRootClass( "ScalarHT" ).__str__ = _ScalarHT__str__
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| 109 | else:
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| 110 | _root.CreateScopeProxy( "ScalarHT" ).__str__ = _ScalarHT__str__
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[ae1d49f] | 111 |
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| 112 | def _Photon__str__( self ):
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| 113 | thestring = "(Pt,Eta,Phi) =(%f,%f,%f)\n" % (self.PT,self.Eta,self.Phi)
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| 114 | return thestring
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| 115 |
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[407aeba] | 116 | if hasattr(_root,"MakeRootClass"):
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| 117 | _root.MakeRootClass( "Photon" ).__str__ = _Photon__str__
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| 118 | else:
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| 119 | _root.CreateScopeProxy( "Photon" ).__str__ = _Photon__str__
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[ae1d49f] | 120 |
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| 121 | def _Electron__str__( self ):
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| 122 | thestring = "(Pt,Eta,Phi) =(%f,%f,%f)\n" % (self.PT,self.Eta,self.Phi)
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| 123 | thestring += "charge: %d\n" % self.Charge
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| 124 | return thestring
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| 125 |
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[407aeba] | 126 | if hasattr(_root,"MakeRootClass"):
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| 127 | _root.MakeRootClass( "Electron" ).__str__ = _Electron__str__
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| 128 | else:
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| 129 | _root.CreateScopeProxy( "Electron" ).__str__ = _Electron__str__
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[ae1d49f] | 130 |
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| 131 | def _Muon__str__( self ):
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| 132 | thestring = "(Pt,Eta,Phi) =(%f,%f,%f)\n" % (self.PT,self.Eta,self.Phi)
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| 133 | thestring += "charge: %d\n" % self.Charge
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| 134 | return thestring
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| 135 |
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[407aeba] | 136 | if hasattr(_root,"MakeRootClass"):
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| 137 | _root.MakeRootClass( "Muon" ).__str__ = _Muon__str__
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| 138 | else:
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| 139 | _root.CreateScopeProxy( "Muon" ).__str__ = _Muon__str__
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| 140 |
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[ae1d49f] | 141 |
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| 142 | def _Jet__str__( self ):
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| 143 | thestring = "(Pt,Eta,Phi) =(%f,%f,%f)\n" % (self.PT,self.Eta,self.Phi)
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| 144 | thestring += "Charge: %d\n" % self.Charge
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| 145 | thestring += "Mass: %f\n" % self.Mass
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| 146 | if self.BTag: thestring += "This jet is b-tagged.\n"
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| 147 | if self.TauTag: thestring += "This jet is tagged as a tau-jet.\n"
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| 148 | thestring += "Jet radius in (eta,phi) = (%f,%f)\n" % (self.DeltaEta,self.DeltaPhi)
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| 149 | thestring += "Number of constituents: %d\n" % self.Constituents.GetEntries()
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| 150 | thestring += "H/E ratio in the calorimeters: %f\n" % self.EhadOverEem
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| 151 | nch = 0
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| 152 | ech = 0.
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| 153 | for constit in self.Constituents:
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| 154 | if constit.Charge != 0:
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| 155 | fourvector = ROOT.TLorentzVector()
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| 156 | fourvector.SetPtEtaPhiM(constit.PT,constit.Eta,constit.Phi,0.)
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| 157 | nch += 1
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| 158 | ech += fourvector.E()
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| 159 | thestring += "Charged Energy fraction: %f\n" % (ech/self.P4().E())
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| 160 | thestring += "Charged Multiplicity: %d\n" % nch
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| 161 | return thestring
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| 162 |
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[407aeba] | 163 | if hasattr(_root,"MakeRootClass"):
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| 164 | _root.MakeRootClass( "Jet" ).__str__ = _Jet__str__
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| 165 | else:
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| 166 | _root.CreateScopeProxy( "Jet" ).__str__ = _Jet__str__
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[ae1d49f] | 167 |
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| 168 | def _Track__str__( self ):
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| 169 | thestring = "Particle HEP ID number = %d\n" % self.PID
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| 170 | thestring += "(Pt,Eta,Phi) = (%f,%f,%f)\n" % (self.PT,self.Eta,self.Phi)
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| 171 | thestring += "Charge: %d\n" % self.Charge
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| 172 | thestring += "At calorimeter surface: (Pt,Eta,Phi) = (%f,%f,%f)\n" % (self.PT,self.EtaOuter,self.PhiOuter)
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| 173 | thestring += "Vertex position: (x,y,z) = (%f,%f,%f)\n" % (self.X,self.Y,self.Z)
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| 174 | thestring += "Position at calorimer surface: (x,y,z) = (%f,%f,%f)\n" % (self.XOuter,self.YOuter,self.ZOuter)
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| 175 | return thestring
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| 176 |
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[407aeba] | 177 | if hasattr(_root,"MakeRootClass"):
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| 178 | _root.MakeRootClass( "Track" ).__str__ = _Track__str__
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| 179 | else:
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| 180 | _root.CreateScopeProxy( "Track" ).__str__ = _Track__str__
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[ae1d49f] | 181 |
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| 182 | def _Tower__str__( self):
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| 183 | thestring = "(Et,Eta,Phi) = (%f,%f,%f)\n" % (self.ET,self.Eta,self.Phi)
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| 184 | thestring += "(E,Eem,Ehad) = (%f,%f,%f)\n" % (tower.E,tower.Eem,tower.Ehad)
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| 185 | thestring += "Edges: %f, %f, %f, %f\n" % (tower.Edges[0],tower.Edges[1],tower.Edges[2],tower.Edges[3])
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| 186 | return thestring
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| 187 |
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[407aeba] | 188 | if hasattr(_root,"MakeRootClass"):
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| 189 | _root.MakeRootClass( "Tower" ).__str__ = _Tower__str__
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| 190 | else:
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| 191 | _root.CreateScopeProxy( "Tower" ).__str__ = _Tower__str__
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[ae1d49f] | 192 |
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| 193 | #####################################################
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| 194 | ### Definition of additional ROOT methods ###
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| 195 | #####################################################
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| 196 |
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| 197 | def _lorentzVector__str__( self ):
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| 198 | theString = "(pt, eta, phi) = (%f,%f,%f)\n" % (self.Pt(), self.Eta(), self.Phi())
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| 199 | theString += "mass = %f, p = %f, mt = %f\n" % (self.M(), self.P(), self.Mt())
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| 200 | return theString
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| 201 |
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[407aeba] | 202 | if hasattr(_root,"MakeRootClass"):
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| 203 | _root.MakeRootClass( "TLorentzVector" ).__str__ = _lorentzVector__str__
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| 204 | else:
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| 205 | _root.CreateScopeProxy( "TLorentzVector" ).__str__ = _lorentzVector__str__
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[ae1d49f] | 206 |
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| 207 |
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