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root/cvsroot/UserCode/MitPhysics/Utils/interface/ElectronIDMVA.h
Revision: 1.10
Committed: Tue Apr 24 12:48:29 2012 UTC (13 years ago) by sixie
Content type: text/plain
Branch: MAIN
Changes since 1.9: +39 -1 lines
Log Message:
update electron and muon mva interfaces. add Andrews's muon ID mva.

File Contents

# User Rev Content
1 sixie 1.1 //--------------------------------------------------------------------------------------------------
2     // $Id $
3     //
4     // ElectronIDMVA
5     //
6     // Helper Class for Electron Identification MVA
7     //
8     // Authors: S.Xie
9     //--------------------------------------------------------------------------------------------------
10    
11     #ifndef MITPHYSICS_UTILS_ElectronIDMVA_H
12     #define MITPHYSICS_UTILS_ElectronIDMVA_H
13    
14     #include "MitAna/DataTree/interface/ElectronFwd.h"
15     #include "MitAna/DataTree/interface/VertexFwd.h"
16     #include "MitAna/DataTree/interface/TrackFwd.h"
17     #include "MitAna/DataTree/interface/Electron.h"
18     #include "MitAna/DataTree/interface/ElectronCol.h"
19 sixie 1.8 #include "MitAna/DataTree/interface/MuonCol.h"
20 sixie 1.5 #include "MitAna/DataTree/interface/PFCandidateCol.h"
21     #include "MitAna/DataTree/interface/PileupEnergyDensityCol.h"
22 sixie 1.1 #include "MitCommon/MathTools/interface/MathUtils.h"
23 sixie 1.8 #include "MitPhysics/Utils/interface/ElectronTools.h"
24 sixie 1.1
25     class TRandom3;
26     namespace TMVA {
27     class Reader;
28     }
29    
30     namespace mithep {
31     class ElectronIDMVA {
32     public:
33     ElectronIDMVA();
34     ~ElectronIDMVA();
35    
36 sixie 1.3 enum MVAType {
37 sixie 1.8 kUninitialized = 0,
38     kBaseline, // SigmaIEtaIEta, DEtaIn, DPhiIn, FBrem, SigmaIPhiIPhi, NBrem, OneOverEMinusOneOverP
39     kNoIPInfo, // kBaseline + EOverP, ESeedClusterOverPout, ESeedClusterOverPIn
40     kWithIPInfo, // kBaseline + d0 , IP3d, IP3dSig
41     kIDIsoCombined, // ID variables , PFIso03 , PFIso04
42     kIDEGamma2012TrigV0, // EGamma certified (Spring 2012) ID-only MVA
43     kIDEGamma2012NonTrigV0, // EGamma certified (Spring 2012) ID-only MVA
44     kIsoRingsV0 // Isolation MVA with IsoRings as input
45 sixie 1.3 };
46    
47    
48 sixie 1.8 void Initialize( std::string methodName,
49     std::string weightsfile,
50     ElectronIDMVA::MVAType type);
51     void Initialize( std::string methodName,
52     ElectronIDMVA::MVAType type,
53     Bool_t useBinnedVersion,
54     std::vector<std::string> weightsfiles );
55 sixie 1.1 void Initialize(TString methodName,
56     TString Subdet0Pt10To20Weights ,
57     TString Subdet1Pt10To20Weights ,
58     TString Subdet2Pt10To20Weights,
59     TString Subdet0Pt20ToInfWeights,
60     TString Subdet1Pt20ToInfWeights,
61     TString Subdet2Pt20ToInfWeights,
62 sixie 1.3 ElectronIDMVA::MVAType type );
63 sixie 1.1
64     Bool_t IsInitialized() const { return fIsInitialized; }
65 sixie 1.8 void bindVariables();
66     UInt_t GetMVABin(double eta,double pt ) const;
67    
68     Double_t MVAValue(const Electron *ele, const Vertex *vertex, Bool_t printDebug = kFALSE);
69 sixie 1.5 Double_t MVAValue(const Electron *ele, const Vertex *vertex,
70 sixie 1.6 const PFCandidateCol *PFCands,
71     const PileupEnergyDensityCol *PileupEnergyDensity,
72 sixie 1.7 Double_t intRadius,
73 sixie 1.6 Bool_t printDebug = kFALSE);
74 sixie 1.8 Double_t MVAValue(const Electron *ele, const Vertex *vertex,
75     const PFCandidateCol *PFCands,
76     const PileupEnergyDensityCol *PileupEnergyDensity,
77     ElectronTools::EElectronEffectiveAreaTarget EffectiveAreaTarget,
78     const ElectronCol *goodElectrons,
79     const MuonCol *goodMuons,
80     Bool_t printDebug = kFALSE);
81 sixie 1.5 Double_t MVAValue(Double_t ElePt , Double_t EleEta,
82 sixie 1.2 Double_t EleSigmaIEtaIEta,
83     Double_t EleDEtaIn,
84     Double_t EleDPhiIn,
85     Double_t EleHoverE,
86     Double_t EleD0,
87     Double_t EleDZ,
88     Double_t EleFBrem,
89     Double_t EleEOverP,
90     Double_t EleESeedClusterOverPout,
91     Double_t EleSigmaIPhiIPhi,
92     Double_t EleNBrem,
93     Double_t EleOneOverEMinusOneOverP,
94     Double_t EleESeedClusterOverPIn,
95     Double_t EleIP3d,
96 sixie 1.5 Double_t EleIP3dSig);
97     Double_t MVAValue(Double_t ElePt , Double_t EleEta,
98     Double_t PileupEnergyDensity,
99     Double_t EleSigmaIEtaIEta,
100     Double_t EleDEtaIn,
101     Double_t EleDPhiIn,
102     Double_t EleHoverE,
103     Double_t EleD0,
104     Double_t EleDZ,
105     Double_t EleFBrem,
106     Double_t EleEOverP,
107     Double_t EleESeedClusterOverPout,
108     Double_t EleSigmaIPhiIPhi,
109     Double_t EleNBrem,
110     Double_t EleOneOverEMinusOneOverP,
111     Double_t EleESeedClusterOverPIn,
112     Double_t EleIP3d,
113     Double_t EleIP3dSig,
114     Double_t EleGsfTrackChi2OverNdof,
115     Double_t EledEtaCalo,
116     Double_t EledPhiCalo,
117     Double_t EleR9,
118     Double_t EleSCEtaWidth,
119     Double_t EleSCPhiWidth,
120     Double_t EleCovIEtaIPhi,
121     Double_t ElePreShowerOverRaw,
122     Double_t EleChargedIso03,
123     Double_t EleNeutralHadronIso03,
124     Double_t EleGammaIso03,
125     Double_t EleChargedIso04,
126     Double_t EleNeutralHadronIso04,
127 sixie 1.6 Double_t EleGammaIso04,
128     Bool_t printDebug = kFALSE );
129 sixie 1.10 Double_t MVAValue_IsoRings( Double_t ElePt,
130     Double_t EleSCEta,
131     Double_t ChargedIso_DR0p0To0p1,
132     Double_t ChargedIso_DR0p1To0p2,
133     Double_t ChargedIso_DR0p2To0p3,
134     Double_t ChargedIso_DR0p3To0p4,
135     Double_t ChargedIso_DR0p4To0p5,
136     Double_t GammaIso_DR0p0To0p1,
137     Double_t GammaIso_DR0p1To0p2,
138     Double_t GammaIso_DR0p2To0p3,
139     Double_t GammaIso_DR0p3To0p4,
140     Double_t GammaIso_DR0p4To0p5,
141     Double_t NeutralHadronIso_DR0p0To0p1,
142     Double_t NeutralHadronIso_DR0p1To0p2,
143     Double_t NeutralHadronIso_DR0p2To0p3,
144     Double_t NeutralHadronIso_DR0p3To0p4,
145     Double_t NeutralHadronIso_DR0p4To0p5,
146     Bool_t printDebug = kFALSE);
147     Double_t MVAValue_IDNonTrig( Double_t ElePt,
148     Double_t EleSCEta,
149     Double_t EleFBrem,
150     Double_t EleKFTrkChiSqr,
151     Double_t EleKFTrkNHits,
152     Double_t EleGsfTrackChi2OverNdof,
153     Double_t EleDEtaIn,
154     Double_t EleDPhiIn,
155     Double_t EledEtaCalo,
156     Double_t EleSigmaIEtaIEta,
157     Double_t EleSigmaIPhiIPhi,
158     Double_t EleSCEtaWidth,
159     Double_t EleSCPhiWidth,
160     Double_t EleE1x5OverE5x5,
161     Double_t EleR9,
162     Double_t EleHoverE,
163     Double_t EleEOverP,
164     Double_t EleOneOverEMinusOneOverP,
165     Double_t EleESeedClusterOverPout,
166     Double_t ElePreShowerOverRaw,
167     Bool_t printDebug = kFALSE);
168 sixie 1.2
169 sixie 1.1 protected:
170 sixie 1.8 std::vector<TMVA::Reader*> fTMVAReader;
171     TString fMethodname;
172 sixie 1.1 Bool_t fIsInitialized;
173 sixie 1.8 MVAType fMVAType;
174     Bool_t fUseBinnedVersion;
175     UInt_t fNMVABins;
176    
177     Float_t fMVAVar_ElePt;
178     Float_t fMVAVar_EleEta;
179 sixie 1.1 Float_t fMVAVar_EleSigmaIEtaIEta;
180     Float_t fMVAVar_EleDEtaIn;
181     Float_t fMVAVar_EleDPhiIn;
182     Float_t fMVAVar_EleHoverE;
183     Float_t fMVAVar_EleD0;
184     Float_t fMVAVar_EleDZ;
185     Float_t fMVAVar_EleFBrem;
186     Float_t fMVAVar_EleEOverP;
187     Float_t fMVAVar_EleESeedClusterOverPout;
188     Float_t fMVAVar_EleSigmaIPhiIPhi;
189     Float_t fMVAVar_EleNBrem;
190     Float_t fMVAVar_EleOneOverEMinusOneOverP;
191     Float_t fMVAVar_EleESeedClusterOverPIn;
192     Float_t fMVAVar_EleIP3d;
193     Float_t fMVAVar_EleIP3dSig;
194 sixie 1.5 Float_t fMVAVar_EleGsfTrackChi2OverNdof;
195     Float_t fMVAVar_EledEtaCalo;
196     Float_t fMVAVar_EledPhiCalo;
197     Float_t fMVAVar_EleR9;
198     Float_t fMVAVar_EleSCEtaWidth;
199     Float_t fMVAVar_EleSCPhiWidth;
200     Float_t fMVAVar_EleCovIEtaIPhi;
201     Float_t fMVAVar_ElePreShowerOverRaw;
202     Float_t fMVAVar_EleChargedIso03OverPt;
203     Float_t fMVAVar_EleNeutralHadronIso03OverPt;
204     Float_t fMVAVar_EleGammaIso03OverPt;
205     Float_t fMVAVar_EleChargedIso04OverPt;
206     Float_t fMVAVar_EleNeutralHadronIso04OverPt;
207     Float_t fMVAVar_EleGammaIso04OverPt;
208 sixie 1.8
209     Float_t fMVAVar_EleEEleClusterOverPout;
210     Float_t fMVAVar_EleKFTrkChiSqr;
211     Float_t fMVAVar_EleKFTrkNHits;
212 sixie 1.9 Float_t fMVAVar_EleKFTrkNLayers;
213 sixie 1.8 Float_t fMVAVar_EleE1x5OverE5x5;
214    
215     Float_t fMVAVar_ChargedIso_DR0p0To0p1;
216     Float_t fMVAVar_ChargedIso_DR0p1To0p2;
217     Float_t fMVAVar_ChargedIso_DR0p2To0p3;
218     Float_t fMVAVar_ChargedIso_DR0p3To0p4;
219     Float_t fMVAVar_ChargedIso_DR0p4To0p5;
220     Float_t fMVAVar_GammaIso_DR0p0To0p1;
221     Float_t fMVAVar_GammaIso_DR0p1To0p2;
222     Float_t fMVAVar_GammaIso_DR0p2To0p3;
223     Float_t fMVAVar_GammaIso_DR0p3To0p4;
224     Float_t fMVAVar_GammaIso_DR0p4To0p5;
225     Float_t fMVAVar_NeutralHadronIso_DR0p0To0p1;
226     Float_t fMVAVar_NeutralHadronIso_DR0p1To0p2;
227     Float_t fMVAVar_NeutralHadronIso_DR0p2To0p3;
228     Float_t fMVAVar_NeutralHadronIso_DR0p3To0p4;
229     Float_t fMVAVar_NeutralHadronIso_DR0p4To0p5;
230    
231    
232 sixie 1.1 ClassDef(ElectronIDMVA, 0) // Muon tools
233     };
234     }
235    
236     #endif