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root/cvsroot/UserCode/MitPhysics/Mods/interface/PhotonIDMod.h
Revision: 1.34
Committed: Mon Dec 9 17:55:50 2013 UTC (11 years, 5 months ago) by bendavid
Content type: text/plain
Branch: MAIN
CVS Tags: HEAD
Changes since 1.33: +7 -69 lines
Log Message:
Implement energy scales from dat files including Et dependence, update 8TeV scale and smearing numbers

File Contents

# Content
1 //--------------------------------------------------------------------------------------------------
2 // $Id: PhotonIDMod.h,v 1.33 2013/06/26 21:44:21 mingyang Exp $
3 //
4 // PhotonIDMod
5 //
6 // This module applies photon identification criteria and exports a pointer to a collection
7 // of "good photons" according to the specified identification scheme.
8 //
9 // Authors: S.Xie, C.Loizides
10 //--------------------------------------------------------------------------------------------------
11
12 #ifndef MITPHYSICS_MODS_PHOTONIDMOD_H
13 #define MITPHYSICS_MODS_PHOTONIDMOD_H
14
15 #include "MitAna/TreeMod/interface/BaseMod.h"
16 #include "MitAna/DataTree/interface/PhotonFwd.h"
17 #include "MitAna/DataTree/interface/TrackCol.h"
18 #include "MitAna/DataTree/interface/BeamSpotCol.h"
19 #include "MitAna/DataTree/interface/PileupEnergyDensityCol.h"
20 #include "MitAna/DataTree/interface/DecayParticleCol.h"
21 #include "MitAna/DataTree/interface/ElectronCol.h"
22 #include "MitAna/DataTree/interface/VertexCol.h"
23 #include "MitAna/DataTree/interface/DecayParticleCol.h"
24 #include "MitAna/DataTree/interface/PileupInfoCol.h"
25 #include "MitAna/DataTree/interface/MCParticleCol.h"
26 #include "MitAna/DataTree/interface/PFCandidateCol.h"
27
28 #include "MitPhysics/Utils/interface/MVATools.h"
29 #include "MitPhysics/Utils/interface/PhotonTools.h"
30 #include "MitPhysics/Utils/interface/RhoUtilities.h"
31
32 class TRandom3;
33
34 namespace mithep
35 {
36 class PhotonIDMod : public BaseMod
37 {
38 public:
39 PhotonIDMod(const char *name="PhotonIDMod",
40 const char *title="Photon identification module");
41
42 Bool_t GetApplySpikeRemoval() const { return fApplySpikeRemoval; }
43 Bool_t GetApplyPixelSeed() const { return fApplyPixelSeed; }
44 const char *GetGoodName() const { return GetGoodPhotonsName(); }
45 const char *GetGoodPhotonsName() const { return fGoodPhotonsName; }
46 Double_t GetHadOverEmMax() const { return fHadOverEmMax; }
47 const char *GetIDType() const { return fPhotonIDType; }
48 const char *GetInputName() const { return fPhotonBranchName; }
49 const char *GetIsoType() const { return fPhotonIsoType; }
50 const char *GetOutputName() const { return GetGoodPhotonsName(); }
51 Double_t GetPtMin() const { return fPhotonPtMin; }
52 Bool_t GetApplyFiduciality() const { return fFiduciality; }
53 Double_t GetEtaWidthEB() const { return fEtaWidthEB; }
54 Double_t GetEtaWidthEE() const { return fEtaWidthEE; }
55 Double_t GetAbsEtaMax() const { return fAbsEtaMax; }
56 void SetApplySpikeRemoval(Bool_t b) { fApplySpikeRemoval = b; }
57 void SetApplyPixelSeed(Bool_t b) { fApplyPixelSeed = b; }
58 void SetApplyElectronVeto(Bool_t b) { fApplyElectronVeto = b; }
59 void SetInvertElectronVeto(Bool_t b) { fInvertElectronVeto = b; }
60 void SetApplyElectronVetoConvRecovery(Bool_t b) { fApplyElectronVetoConvRecovery = b; }
61 void SetApplyConversionId(Bool_t b) { fApplyConversionId = b; }
62 void SetApplyTriggerMatching(Bool_t b) { fApplyTriggerMatching = b; }
63 void SetGoodName(const char *n) { SetGoodPhotonsName(n); }
64 void SetGoodPhotonsName(const char *n) { fGoodPhotonsName = n; }
65 void SetHadOverEmMax(Double_t hoe) { fHadOverEmMax = hoe; }
66 void SetIDType(const char *type) { fPhotonIDType = type; }
67 void SetInputName(const char *n) { fPhotonBranchName= n; }
68 void SetTrackName(const char *n) { fTrackBranchName = n; }
69 void SetBeamspotName(const char *n) { fBeamspotBranchName = n; }
70 void SetIsoType(const char *type) { fPhotonIsoType = type; }
71 void SetOutputName(const char *n) { SetGoodPhotonsName(n); }
72 void SetPtMin(Double_t pt) { fPhotonPtMin = pt; }
73 void SetR9Min(Double_t x) { fPhotonR9Min = x; }
74 void SetEtaWidthEB(Double_t x) { fEtaWidthEB = x; }
75 void SetEtaWidthEE(Double_t x) { fEtaWidthEE = x; }
76 void SetAbsEtaMax(Double_t x) { fAbsEtaMax = x; }
77 void SetApplyR9Min(Bool_t b) { fApplyR9Min = b; }
78 void SetApplyFiduciality(Bool_t b) { fFiduciality = b; }
79 void SetEffAreas(Double_t ecal, Double_t hcal, Double_t track) {
80 fEffAreaEcalEE = ecal; fEffAreaHcalEE = hcal; fEffAreaTrackEE = track;
81 fEffAreaEcalEB = ecal; fEffAreaHcalEB = hcal; fEffAreaTrackEB = track;
82 }
83 void SetEffAreasEEEB(Double_t ecalEE, Double_t hcalEE, Double_t trackEE,
84 Double_t ecalEB, Double_t hcalEB, Double_t trackEB) {
85 fEffAreaEcalEE = ecalEE; fEffAreaHcalEE = hcalEE; fEffAreaTrackEE = trackEE;
86 fEffAreaEcalEB = ecalEB; fEffAreaHcalEB = hcalEB; fEffAreaTrackEB = trackEB;
87 }
88 void SetTriggerObjectsName(const char *n) { fTrigObjectsName = n; }
89
90
91 void SetPhotonsFromBranch(bool b) { fPhotonsFromBranch = b; }
92
93 void SetPVName(const char *n) { fPVName = n; }
94 void SetPVFromBranch(bool b) { fPVFromBranch = b; }
95 void SetIsData (Bool_t b) { fIsData = b;}
96
97 void SetShowerShapeType(const char *type) { fShowerShapeType = type; }
98
99 // methods to set the MC smearing/energy correction values
100 void AddEnCorrPerRun( UInt_t sRun, UInt_t eRun,
101 Double_t corr_EBlowEta_hR9,
102 Double_t corr_EBlowEta_lR9,
103 Double_t corr_EBhighEta_hR9,
104 Double_t corr_EBhighEta_lR9,
105 Double_t corr_EElowEta_hR9,
106 Double_t corr_EElowEta_lR9,
107 Double_t corr_EEhighEta_hR9,
108 Double_t corr_EEhighEta_lR9) {
109
110 fDataEnCorr_EBlowEta_hR9.push_back(corr_EBlowEta_hR9);
111 fDataEnCorr_EBlowEta_lR9.push_back(corr_EBlowEta_lR9);
112 fDataEnCorr_EBhighEta_hR9.push_back(corr_EBhighEta_hR9);
113 fDataEnCorr_EBhighEta_lR9.push_back(corr_EBhighEta_lR9);
114 fDataEnCorr_EElowEta_hR9.push_back(corr_EElowEta_hR9);
115 fDataEnCorr_EElowEta_lR9.push_back(corr_EElowEta_lR9);
116 fDataEnCorr_EEhighEta_hR9.push_back(corr_EEhighEta_hR9);
117 fDataEnCorr_EEhighEta_lR9.push_back(corr_EEhighEta_lR9);
118 fRunStart.push_back (sRun);
119 fRunEnd.push_back (eRun);
120 };
121
122 void SetMCSmearFactors(Double_t _EBlowEta_hR9,
123 Double_t _EBlowEta_lR9,
124 Double_t _EBhighEta_hR9,
125 Double_t _EBhighEta_lR9,
126 Double_t _EElowEta_hR9,
127 Double_t _EElowEta_lR9,
128 Double_t _EEhighEta_hR9,
129 Double_t _EEhighEta_lR9) {
130 fMCSmear_EBlowEta_hR9 = _EBlowEta_hR9;
131 fMCSmear_EBlowEta_lR9 = _EBlowEta_lR9;
132 fMCSmear_EBhighEta_hR9 = _EBhighEta_hR9;
133 fMCSmear_EBhighEta_lR9 = _EBhighEta_lR9;
134 fMCSmear_EElowEta_hR9 = _EElowEta_hR9;
135 fMCSmear_EElowEta_lR9 = _EElowEta_lR9;
136 fMCSmear_EEhighEta_hR9 = _EEhighEta_hR9;
137 fMCSmear_EEhighEta_lR9 = _EEhighEta_lR9;
138 };
139
140
141
142
143 void SetGoodElectronsFromBranch(Bool_t b) { fGoodElectronsFromBranch = b; }
144 void SetGoodElectronName(TString name) { fGoodElectronName = name; }
145
146 void SetBdtCutBarrel(double a) {fbdtCutBarrel = a; }
147 void SetBdtCutEndcap(double a) {fbdtCutEndcap = a; }
148
149
150 void DoDataEneCorr(bool a) { fDoDataEneCorr = a; }
151 void DoMCSmear(bool a) { fDoMCSmear = a; }
152 void SetDoShowerShapeScaling(Bool_t b) { fDoShowerShapeScaling = b; }
153
154 // replaced by ShowerShapeScaling (fab)
155 /* void SetDoMCR9Scaling(Bool_t b) { fDoMCR9Scaling = b; } */
156 /* void SetMCR9Scale(Double_t ebscale, Double_t eescale) { fMCR9ScaleEB = ebscale; fMCR9ScaleEE = eescale; } */
157 /* void SetDoMCSigIEtaIEtaScaling(Bool_t b) { fDoMCSigIEtaIEtaScaling = b; } */
158 /* void SetDoMCWidthScaling(Bool_t b) { fDoMCWidthScaling = b; } */
159
160 void SetDoMCErrScaling(Bool_t b) { fDoMCErrScaling = b; }
161 void SetMCErrScale(Double_t ebscale, Double_t eescale) { fMCErrScaleEB = ebscale; fMCErrScaleEE = eescale; }
162
163 void SetIdMVAType(const char *type) { fIdMVATypeName = type; }
164
165 void SetRhoType(RhoUtilities::RhoType type) { fRhoType = type ; }
166
167 enum EPhIdType {
168 kIdUndef = 0, //not defined
169 kTight, //"Tight"
170 kLoose, //"Loose"
171 kLooseEM, //"LooseEM"
172 kBaseLineCiC, //"2011" Hgg BaseLine CiC
173 kBaseLineCiCPF, //"2012" Hgg BaseLine CiC
174 kBaseLineCiCPFNoPresel, //"2012" Hgg BaseLine CiC plus eleveto -- for mono photon
175 kMITMVAId, // MingMing MVA ID
176 kMITPhSelection, //MIT loose preselection (for mva)
177 kMITPFPhSelection, //MIT loose preselection (for mva)
178 kMITPFPhSelectionNoEcal,
179 kMITPFPhSelection_NoTrigger, //MIT loose preselection (for mva, no Trigger)
180 kVgamma2011Selection, // Vgamma 2011 Photon ID
181 kTrivialSelection, // only pt & eta cuts
182 kCustomId //"Custom"
183 };
184
185 enum EPhIsoType {
186 kIsoUndef = 0, //not defined
187 kNoIso, //"NoIso"
188 kCombinedIso, //"CombinedIso"
189 kCustomIso, //"Custom"
190 kMITPUCorrected //PileUp Corrected Hgg Isolation
191 };
192
193 protected:
194 void Process();
195 void SlaveBegin();
196
197 Int_t FindRunRangeIdx(UInt_t run);
198 Double_t GetDataEnCorr(Int_t runRange, PhotonTools::eScaleCats cat);
199 Double_t GetMCSmearFac(PhotonTools::eScaleCats cat); // last flag in case of special smearing for error computation
200
201 TString fPhotonBranchName; //name of photon collection (input)
202 TString fGoodPhotonsName; //name of exported "good photon" collection
203 TString fTrackBranchName; // name of the track collection (only needed for PU corrected isolation)
204 TString fBeamspotBranchName; //name of the Beamspot collection (only needed for PU corrected isolation)
205 TString fPileUpDenName; //name of the PU density collection
206 TString fConversionName; //name of conversion branch
207 TString fElectronName;
208 TString fGoodElectronName;
209 TString fTrigObjectsName; //name of trigger object collection
210 TString fPVName;
211 TString fMCParticleName;
212 TString fPileUpName;
213 TString fPFCandsName;
214 TString fPhotonIDType; //type of photon identification we impose
215 TString fPhotonIsoType; //type of photon isolation we impose
216 Double_t fPhotonPtMin; //min pt cut
217 Double_t fHadOverEmMax; //maximum of hadronic/em energy
218 Bool_t fApplySpikeRemoval; //whether apply spike removal
219 Bool_t fApplyPixelSeed; //=true then apply pixel seed constraint
220 Bool_t fApplyElectronVeto; //=true then apply electron veto (with no conversion recovery)
221 Bool_t fInvertElectronVeto; //=true then invert electron veto (for cic selection only atm)
222 Bool_t fApplyElectronVetoConvRecovery; //=true then apply electron veto with conversion recovery
223 Bool_t fApplyConversionId; //=true then apply conversion id cuts
224 Bool_t fApplyTriggerMatching; //match to hlt photon (default=0)
225 Double_t fPhotonR9Min; //min R9 value
226 EPhIdType fPhIdType; //!identification scheme
227 EPhIsoType fPhIsoType; //!isolation scheme
228 Bool_t fFiduciality; //=true then apply fiducual requirement
229
230 Double_t fEtaWidthEB; //max Eta Width in ECAL Barrel
231 Double_t fEtaWidthEE; //max Eta Width in ECAL End Cap
232 Double_t fAbsEtaMax; //max Abs Eta
233 Bool_t fApplyR9Min; //apply R9 min
234 Double_t fEffAreaEcalEE;
235 Double_t fEffAreaHcalEE;
236 Double_t fEffAreaTrackEE;
237 Double_t fEffAreaEcalEB;
238 Double_t fEffAreaHcalEB;
239 Double_t fEffAreaTrackEB;
240 const PhotonCol *fPhotons; //!photon branch
241 const TrackCol *fTracks; //!track branch
242 const BeamSpotCol *fBeamspots; //!beamspot branch
243 const PileupEnergyDensityCol *fPileUpDen; //!rho branch
244 const DecayParticleCol *fConversions; //!conversion branch
245 const ElectronCol *fElectrons; //!electron branch
246 const ElectronCol *fGoodElectrons; //!electron branch
247 const VertexCol* fPV; //!
248 const MCParticleCol *fMCParticles;//!
249 const PileupInfoCol *fPileUp; //!
250 const PFCandidateCol *fPFCands; //!
251
252 Double_t fbdtCutBarrel;
253 Double_t fbdtCutEndcap;
254
255 // ----------------------------------------------------------------
256 // these guys should go away.... (let MVATools handle this) (fab)
257 int fVariableType;
258 TString fEndcapWeights;
259 TString fBarrelWeights;
260 // ----------------------------------------------------------------
261 MVATools fTool;
262 TString fIdMVATypeName;
263 MVATools::IdMVAType fIdMVAType;
264 // ----------------------------------------------------------------
265
266 Bool_t fDoMCR9Scaling;
267 Double_t fMCR9ScaleEB;
268 Double_t fMCR9ScaleEE;
269
270 Bool_t fDoMCSigIEtaIEtaScaling;
271 Bool_t fDoMCWidthScaling;
272
273 Bool_t fDoMCErrScaling;
274 Double_t fMCErrScaleEB;
275 Double_t fMCErrScaleEE;
276
277 Bool_t fPhotonsFromBranch;
278 Bool_t fPVFromBranch;
279 Bool_t fGoodElectronsFromBranch;
280 Bool_t fIsData;
281
282 // showershape
283 TString fShowerShapeType;
284 PhotonTools::ShowerShapeScales fSSType;
285
286 bool fDoDataEneCorr;
287 bool fDoMCSmear;
288 Bool_t fDoShowerShapeScaling;
289
290
291 // Vectroes to hols smeraring/correction factors
292 std::vector<Double_t> fDataEnCorr_EBlowEta_hR9;
293 std::vector<Double_t> fDataEnCorr_EBlowEta_lR9;
294 std::vector<Double_t> fDataEnCorr_EBhighEta_hR9;
295 std::vector<Double_t> fDataEnCorr_EBhighEta_lR9;
296 std::vector<Double_t> fDataEnCorr_EElowEta_hR9;
297 std::vector<Double_t> fDataEnCorr_EElowEta_lR9;
298 std::vector<Double_t> fDataEnCorr_EEhighEta_hR9;
299 std::vector<Double_t> fDataEnCorr_EEhighEta_lR9;
300
301 std::vector<UInt_t> fRunStart;
302 std::vector<UInt_t> fRunEnd;
303
304 Double_t fMCSmear_EBlowEta_hR9;
305 Double_t fMCSmear_EBlowEta_lR9;
306 Double_t fMCSmear_EBhighEta_hR9;
307 Double_t fMCSmear_EBhighEta_lR9;
308 Double_t fMCSmear_EElowEta_hR9;
309 Double_t fMCSmear_EElowEta_lR9;
310 Double_t fMCSmear_EEhighEta_hR9;
311 Double_t fMCSmear_EEhighEta_lR9;
312
313 TRandom3* fRng;
314
315 RhoUtilities::RhoType fRhoType;
316
317 ClassDef(PhotonIDMod, 1) // Photon identification module
318 };
319 }
320 #endif