ViewVC Help
View File | Revision Log | Show Annotations | Root Listing
root/cvsroot/UserCode/MitPhysics/Mods/interface/ElectronIDMod.h
Revision: 1.49
Committed: Tue Jun 14 11:08:36 2011 UTC (13 years, 10 months ago) by fabstoec
Content type: text/plain
Branch: MAIN
CVS Tags: Mit_023, Mit_022a, Mit_022
Changes since 1.48: +5 -2 lines
Log Message:
fixed CombIso default value

File Contents

# Content
1 //--------------------------------------------------------------------------------------------------
2 // $Id: ElectronIDMod.h,v 1.48 2011/06/10 10:42:36 ceballos Exp $
3 //
4 // ElectronIDMod
5 //
6 // This module applies electron identification criteria and exports a pointer to a collection
7 // of "good electrons" according to the specified identification scheme.
8 //
9 // See http://indico.cern.ch/contributionDisplay.py?contribId=1&confId=42251
10 //
11 // Authors: S.Xie, C.Loizides
12 //--------------------------------------------------------------------------------------------------
13
14 #ifndef MITPHYSICS_MODS_ELECTRONIDMOD_H
15 #define MITPHYSICS_MODS_ELECTRONIDMOD_H
16
17 #include "MitAna/TreeMod/interface/BaseMod.h"
18 #include "MitAna/DataTree/interface/ElectronFwd.h"
19 #include "MitAna/DataTree/interface/VertexFwd.h"
20 #include "MitAna/DataTree/interface/TrackFwd.h"
21 #include "MitAna/DataTree/interface/DecayParticleFwd.h"
22 #include "MitAna/DataTree/interface/PFCandidateFwd.h"
23 #include "MitPhysics/Utils/interface/ElectronTools.h"
24 #include "MitPhysics/Utils/interface/IsolationTools.h"
25 #include "MitPhysics/ElectronLikelihood/interface/ElectronLikelihood.h"
26 #include "MitPhysics/ElectronLikelihood/interface/LikelihoodSwitches.h"
27 #include "MitPhysics/ElectronLikelihood/interface/LikelihoodMeasurements.h"
28 #include "MitAna/DataTree/interface/PileupEnergyDensityCol.h"
29 #include <TFile.h>
30 #include <TDirectory.h>
31
32 namespace mithep
33 {
34 class ElectronIDMod : public BaseMod
35 {
36 public:
37 ElectronIDMod(const char *name="ElectronIDMod",
38 const char *title="Electron identification module");
39
40 Bool_t GetApplyConversionFilterType1() const { return fApplyConvFilterType1; }
41 Bool_t GetApplyConversionFilterType2() const { return fApplyConvFilterType2; }
42 Bool_t GetApplySpikeRemoval() const { return fApplySpikeRemoval; }
43 Bool_t GetApplyD0Cut() const { return fApplyD0Cut; }
44 Bool_t GetApplyDZCut() const { return fApplyDZCut; }
45 Double_t GetCaloIsoCut() const { return fCaloIsolationCut; }
46 Double_t GetEcalJurIsoCut() const { return fEcalJuraIsoCut; }
47 Double_t GetCombIsoCut() const { return fCombIsolationCut; }
48 Double_t GetPFIsoCut() const { return fPFIsolationCut; }
49 const char *GetGoodName() const { return GetGoodElectronsName(); }
50 const char *GetGoodElectronsName() const { return fGoodElectronsName; }
51 Double_t GetHcalIsoCut() const { return fHcalIsolationCut; }
52 Double_t GetIDLikelihoodCut() const { return fIDLikelihoodCut; }
53 const char *GetIDType() const { return fElectronIDType; }
54 const char *GetInputName() const { return fElectronBranchName; }
55 const char *GetIsoType() const { return fElectronIsoType; }
56 const char *GetOutputName() const { return GetGoodElectronsName(); }
57 Double_t GetPtMin() const { return fElectronPtMin; }
58 Double_t GetEtaMax() const { return fElectronEtaMax; }
59 Bool_t GetApplyTriggerMatching() const { return fApplyTriggerMatching; }
60 Double_t GetTrackIsoCut() const { return fTrackIsolationCut; }
61 Bool_t GetChargeFilter() const { return fChargeFilter; }
62 Bool_t Likelihood(const Electron *ele) const;
63 Bool_t PassIDCut(const Electron *el, ElectronTools::EElIdType idType) const;
64 Bool_t PassIsolationCut(const Electron *el, ElectronTools::EElIsoType isoType,
65 const TrackCol *tracks, const Vertex *vertex,
66 const Double_t rho) const;
67 Bool_t GetCombinedIdCut() const { return fCombinedIdCut; }
68 void SetApplyConversionFilterType1(Bool_t b){ fApplyConvFilterType1 = b; }
69 void SetApplyConversionFilterType2(Bool_t b){ fApplyConvFilterType2 = b; }
70 void SetNExpectedHitsInnerCut(Double_t cut) {fNExpectedHitsInnerCut = cut;}
71 void SetApplySpikeRemoval(Bool_t b) { fApplySpikeRemoval = b; }
72 void SetApplyD0Cut(Bool_t b) { fApplyD0Cut = b; }
73 void SetApplyDZCut(Bool_t b) { fApplyDZCut = b; }
74 void SetCaloIsoCut(Double_t cut) { fCaloIsolationCut = cut; }
75 void SetCombIsoCut(Double_t cut) { fCombIsolationCut = cut; }
76 void SetPFIsoCut(Double_t cut) { fPFIsolationCut = cut; }
77 void SetD0Cut(Double_t cut) { fD0Cut = cut; }
78 void SetDZCut(Double_t cut) { fDZCut = cut; }
79 void SetWhichVertex(Int_t d) { fWhichVertex = d; }
80 void SetEcalJurIsoCut(Double_t cut) { fEcalJuraIsoCut = cut; }
81 void SetGoodElectronsName(const char *n) { fGoodElectronsName = n; }
82 void SetOldMuonsName(const char *n) { fNonIsolatedMuonsName = n; }
83 void SetOldElectronsName(const char *n) { fNonIsolatedElectronsName = n;}
84 void SetGoodName(const char *n) { SetGoodElectronsName(n); }
85 void SetHcalIsoCut(Double_t cut) { fHcalIsolationCut = cut; }
86 void SetIDLikelihoodCut(Double_t cut) { fIDLikelihoodCut = cut; }
87 void SetIDType(const char *type) { fElectronIDType = type; }
88 void SetInputName(const char *n) { fElectronBranchName = n; }
89 void SetIsoType(const char *type) { fElectronIsoType = type; }
90 void SetTriggerObjectsName(const char *n) { fTrigObjectsName = n; }
91 void SetOutputName(const char *n) { SetGoodElectronsName(n); }
92 void SetPtMin(Double_t pt) { fElectronPtMin = pt; }
93 void SetEtMin(Double_t et) { fElectronEtMin = et; }
94 void SetEtaMax(Double_t eta) { fElectronEtaMax = eta; }
95 void SetApplyTriggerMatching(Bool_t b) { fApplyTriggerMatching = b; }
96 void SetTrackIsoCut(Double_t cut) { fTrackIsolationCut = cut; }
97 void SetChargeFilter(Bool_t b) { fChargeFilter = b; }
98 void SetNWrongHitsMax(UInt_t n) { fNWrongHitsMax = n; }
99 void SetCombinedIdCut(Bool_t b) { fCombinedIdCut = b; }
100 void SetApplyEcalFiducial(Bool_t b) { fApplyEcalFiducial = b; }
101 void SetApplyEcalSeeded(Bool_t b) { fApplyEcalSeeded = b; }
102 void SetApplyCombinedIso(Bool_t b) { fApplyCombinedIso = b; }
103 void SetElectronsFromBranch(Bool_t b) { fElectronsFromBranch = b; }
104 void SetLH(ElectronLikelihood *l) { fLH = l; }
105 void SetVertexName(TString name) { fVertexName = name; }
106 void Setup();
107
108 protected:
109 void Process();
110 void SlaveBegin();
111 void Terminate();
112
113 TString fElectronBranchName; //name of electron collection (input)
114 TString fConversionBranchName; //name of electron collection (input)
115 TString fGoodElectronsName; //name of exported "good electrons" col
116 TString fNonIsolatedMuonsName; //name of imported "old muon" collection
117 TString fNonIsolatedElectronsName;//name of imported "old electron" collection
118 TString fVertexName; //name of vertex collection
119 TString fBeamSpotName; //name of beamspot collection
120 TString fTrackName; //name of track collection
121 TString fPFCandidatesName; //name of pfcandidates collection
122 TString fElectronIDType; //type of electron ID we impose
123 TString fElectronIsoType; //type of electron Isolation we impose
124 TString fTrigObjectsName; //name of trigger object collection
125 Double_t fElectronPtMin; //min pt cut
126 Double_t fElectronEtMin; //min pt cut
127 Double_t fElectronEtaMax; //max eta cut
128 Double_t fIDLikelihoodCut; //cut value for ID likelihood
129 Double_t fTrackIsolationCut; //cut value for track isolation
130 Double_t fCaloIsolationCut; //cut value for calo isolation
131 Double_t fEcalJuraIsoCut; //cut value for ecal jurassic isolation
132 Double_t fHcalIsolationCut; //cut value for hcal isolation
133 Double_t fCombIsolationCut; //cut value for combined isolation
134 Double_t fPFIsolationCut; //cut value for PF isolation, default -1.0
135 Bool_t fApplyConvFilterType1; //whether remove conversions using fit method
136 Bool_t fApplyConvFilterType2; //whether remove conversions using DCotTheta method
137 UInt_t fNWrongHitsMax; //whether to use wrong hits req
138 //for conversion removal
139 Double_t fNExpectedHitsInnerCut; //cut value for NExpectedHitsInner maximum
140 Bool_t fCombinedIdCut; //whether to use full combined id
141 Bool_t fApplySpikeRemoval; //whether spike removal
142 Bool_t fApplyD0Cut; //whether apply d0 cut
143 Bool_t fApplyDZCut; //whether apply dz cut
144 Bool_t fChargeFilter; //whether apply GSF and CFT equal requirement
145 Double_t fD0Cut; //max d0
146 Double_t fDZCut; //max dz
147 Int_t fWhichVertex; //vertex to use (-2: beamspot, -1: closest in Z)
148 Bool_t fApplyTriggerMatching; //match to hlt electron (default=0)
149 Bool_t fApplyEcalSeeded; //require ecal seeded flag
150 Bool_t fApplyCombinedIso; //apply combined isolation
151 Bool_t fApplyEcalFiducial; //apply ecal fiducial cuts on supercluster eta
152 Bool_t fElectronsFromBranch; //where to get input electrons
153 ElectronTools::EElIdType fElIdType; //!identification scheme
154 ElectronTools::EElIsoType fElIsoType; //!isolation scheme
155 const ElectronCol *fElectrons; //!electron collection
156 const DecayParticleCol *fConversions; //!conversion collection
157 const VertexCol *fVertices; //!vertices branches
158 const BeamSpotCol *fBeamSpot; //!beamspot branch
159 const TrackCol *fTracks; //!Track branch
160 const PFCandidateCol *fPFCandidates; //!pfcandidate branch
161
162 MuonCol *fNonIsolatedMuons; //!pointer to old muon collection
163 ElectronCol *fNonIsolatedElectrons; //!pointer to old electron collection
164 ElectronLikelihood *fLH; //LH
165 TString fPileupEnergyDensityName;
166 const PileupEnergyDensityCol *fPileupEnergyDensity;
167
168 ClassDef(ElectronIDMod, 1) // Electron identification module
169 };
170 }
171 #endif