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Comparing UserCode/MitPhysics/Utils/src/ElectronTools.cc (file contents):
Revision 1.2 by sixie, Sat Apr 10 19:51:58 2010 UTC vs.
Revision 1.52 by pharris, Sat Jan 12 11:49:50 2013 UTC

# Line 3 | Line 3
3   #include "MitPhysics/Utils/interface/ElectronTools.h"
4   #include "MitAna/DataTree/interface/StableData.h"
5   #include <TFile.h>
6 + #include "MitPhysics/ElectronLikelihood/interface/ElectronLikelihood.h"
7 + #include "MitPhysics/ElectronLikelihood/interface/LikelihoodSwitches.h"
8 + #include "MitPhysics/ElectronLikelihood/interface/LikelihoodMeasurements.h"
9  
10   ClassImp(mithep::ElectronTools)
11  
# Line 35 | Line 38 | Bool_t ElectronTools::PassCustomID(const
38      {0.3, 0.92, 0.211, 0.0, 0.42, 0.88, 0.68, 0.0},             //eoverp
39      {0.8,0.2,0,0,0,0,0,0}};                                     //extra cuts fbrem and E_Over_P
40  
41 +  Double_t VBTFWorkingPointFakeable[6][8] = {
42 +    {0.12,  0.12,  0.12,  0.12,  0.10,   0.10,   0.10,   0.10  }, //hovere
43 +    {0.01,  0.01,  0.01,  0.01,  0.03,   0.03,   0.03,   0.03  }, //sigmaetaeta
44 +    {0.15,  0.15,  0.15,  0.15,  0.10,   0.10,   0.10,   0.10  }, //deltaphiin
45 +    {0.007, 0.007, 0.007, 0.007, 0.009,  0.009,  0.009,  0.009 }, //deltaetain
46 +    {0.0,   0.0,   0.0,   0.0,   0.0,    0.0,    0.0,    0.0   }, //eoverp
47 +    {0.0,   0.0,   0,     0,     0,      0,      0,      0     }  //extra cuts fbrem and E_Over_P
48 +  };            
49 +
50    Double_t VBTFWorkingPoint95[6][8] = {
51 <    {0.05,  0.05,  0.05,  0.05,  0.04,   0.04,   0.04,   0.04  }, //hovere
51 >    {0.15,  0.15,  0.15,  0.15,  0.07,   0.07,   0.07,   0.07  }, //hovere
52      {0.01,  0.01,  0.01,  0.01,  0.03,   0.03,   0.03,   0.03  }, //sigmaetaeta
53      {0.8,   0.8,   0.8,   0.8,   0.7,    0.7,    0.7,    0.7   }, //deltaphiin
54 <    {0.006, 0.006, 0.006, 0.006, 0.008,  0.008,  0.008,  0.008 }, //deltaetain
54 >    {0.007, 0.007, 0.007, 0.007, 0.010,  0.010,  0.010,  0.010 }, //deltaetain
55      {0.0,   0.0,   0.0,   0.0,   0.0,    0.0,    0.0,    0.0   }, //eoverp
56      {0.0,   0.0,   0,     0,     0,      0,      0,      0     }  //extra cuts fbrem and E_Over_P
57    };            
58  
47
59    Double_t VBTFWorkingPoint90[6][8] = {
60 <    {0.05,  0.05,  0.05,  0.05,  0.025,  0.025,  0.025,  0.025 }, //hovere
60 >    {0.12,  0.12,  0.12,  0.12,  0.05,   0.05,   0.05,   0.05  }, //hovere
61 >    {0.01,  0.01,  0.01,  0.01,  0.03,   0.03,   0.03,   0.03  }, //sigmaetaeta
62 >    {0.8,   0.8,   0.8,   0.8,   0.7,    0.7,    0.7,    0.7   }, //deltaphiin
63 >    {0.007, 0.007, 0.007, 0.007, 0.009,  0.009,  0.009,  0.009 }, //deltaetain
64 >    {0.0,   0.0,   0.0,   0.0,   0.0,    0.0,    0.0,    0.0   }, //eoverp
65 >    {0.0,   0.0,   0,     0,     0,      0,      0,      0     }  //extra cuts fbrem and E_Over_P
66 >  };            
67 >
68 >  Double_t VBTFWorkingPoint85[6][8] = {
69 >    {0.04,  0.04,  0.04,  0.04,  0.025,  0.025,  0.025,  0.025 }, //hovere
70      {0.01,  0.01,  0.01,  0.01,  0.03,   0.03,   0.03,   0.03  }, //sigmaetaeta
71 <    {0.04,  0.04,  0.04,  0.04,  0.025,  0.025,  0.025,  0.025 }, //deltaphiin
72 <    {0.006, 0.006, 0.006, 0.006, 0.008,  0.008,  0.008,  0.008 }, //deltaetain
71 >    {0.06,  0.06,  0.06,  0.06,  0.04,   0.04,   0.04,   0.04  }, //deltaphiin
72 >    {0.006, 0.006, 0.006, 0.006, 0.007,  0.007,  0.007,  0.007 }, //deltaetain
73      {0.0,   0.0,   0.0,   0.0,   0.0,    0.0,    0.0,    0.0   }, //eoverp
74      {0.0,   0.0,   0,     0,     0,      0,      0,      0     }  //extra cuts fbrem and E_Over_P
75    };            
76  
77    Double_t VBTFWorkingPoint80[6][8] = {
78 <    {0.05,  0.05,  0.05,  0.05,  0.025,  0.025,  0.025,  0.025}, //hovere
78 >    {0.04,  0.04,  0.04,  0.04,  0.10,   0.10,   0.10,   0.10 }, //hovere
79      {0.01,  0.01,  0.01,  0.01,  0.03,   0.03,   0.03,   0.03 }, //sigmaetaeta
80 <    {0.02,  0.02,  0.02,  0.02,  0.02,   0.02,   0.02,   0.02 }, //deltaphiin
81 <    {0.006, 0.006, 0.006, 0.006, 0.006,  0.006,  0.006,  0.006}, //deltaetain
80 >    {0.06,  0.06,  0.06,  0.06,  0.03,   0.03,   0.03,   0.03 }, //deltaphiin
81 >    {0.004, 0.004, 0.004, 0.004, 0.007,  0.007,  0.007,  0.007}, //deltaetain
82      {0.0,   0.0,   0.0,   0.0,   0.0,    0.0,    0.0,    0.0  }, //eoverp
83      {0.0,   0.0,   0,     0,     0,      0,      0,      0    }  //extra cuts fbrem and E_Over_P
84    };            
85  
86    Double_t VBTFWorkingPoint70[6][8] = {
87 <    {0.02,  0.02,  0.02,  0.02,  0.025,  0.025,  0.025,  0.025}, //hovere
87 >    {0.025, 0.025, 0.025, 0.025, 0.012,  0.012,  0.012,  0.012}, //hovere
88 >    {0.01,  0.01,  0.01,  0.01,  0.03,   0.03,   0.03,   0.03 }, //sigmaetaeta
89 >    {0.03,  0.03,  0.03,  0.03,  0.02,   0.02,   0.02,   0.02 }, //deltaphiin
90 >    {0.004, 0.004, 0.004, 0.004, 0.005,  0.005,  0.005,  0.005}, //deltaetain
91 >    {0.0,   0.0,   0.0,   0.0,   0.0,    0.0,    0.0,    0.0  }, //eoverp
92 >    {0.0,   0.0,   0,     0,     0,      0,      0,      0    }  //extra cuts fbrem and E_Over_P
93 >  };            
94 >
95 >  Double_t VBTFWorkingPoint80NoHOverEE[6][8] = {
96 >    {0.04,  0.04,  0.04,  0.04,  0.10,   0.10,   0.10,   0.10 }, //hovere
97 >    {0.01,  0.01,  0.01,  0.01,  0.03,   0.03,   0.03,   0.03 }, //sigmaetaeta
98 >    {0.06,  0.06,  0.06,  0.06,  0.03,   0.03,   0.03,   0.03 }, //deltaphiin
99 >    {0.004, 0.004, 0.004, 0.004, 0.007,  0.007,  0.007,  0.007}, //deltaetain
100 >    {0.0,   0.0,   0.0,   0.0,   0.0,    0.0,    0.0,    0.0  }, //eoverp
101 >    {0.0,   0.0,   0,     0,     0,      0,      0,      0    }  //extra cuts fbrem and E_Over_P
102 >  };            
103 >
104 >  Double_t VBTFWorkingPoint70NoHOverEE[6][8] = {
105 >    {0.025, 0.025, 0.025, 0.025, 0.10,   0.10,   0.10,   0.10 }, //hovere
106      {0.01,  0.01,  0.01,  0.01,  0.03,   0.03,   0.03,   0.03 }, //sigmaetaeta
107 <    {0.02,  0.02,  0.02,  0.02,  0.02,   0.02,   0.02,   0.02 }, //deltaphiin
108 <    {0.006, 0.006, 0.006, 0.006, 0.003,  0.003,  0.003,  0.003}, //deltaetain
107 >    {0.03,  0.03,  0.03,  0.03,  0.02,   0.02,   0.02,   0.02 }, //deltaphiin
108 >    {0.004, 0.004, 0.004, 0.004, 0.005,  0.005,  0.005,  0.005}, //deltaetain
109      {0.0,   0.0,   0.0,   0.0,   0.0,    0.0,    0.0,    0.0  }, //eoverp
110      {0.0,   0.0,   0,     0,     0,      0,      0,      0    }  //extra cuts fbrem and E_Over_P
111    };            
# Line 79 | Line 117 | Bool_t ElectronTools::PassCustomID(const
117      case kCustomIdLoose:
118        memcpy(fCuts,loosecuts,sizeof(fCuts));
119        break;
120 +    case kVBTFWorkingPointFakeableId:
121 +      memcpy(fCuts,VBTFWorkingPointFakeable,sizeof(fCuts));
122 +      break;
123      case kVBTFWorkingPoint95Id:
124        memcpy(fCuts,VBTFWorkingPoint95,sizeof(fCuts));
125        break;
126      case kVBTFWorkingPoint90Id:
127        memcpy(fCuts,VBTFWorkingPoint90,sizeof(fCuts));
128        break;
129 +    case kVBTFWorkingPoint85Id:
130 +      memcpy(fCuts,VBTFWorkingPoint85,sizeof(fCuts));
131 +      break;
132      case kVBTFWorkingPoint80Id:
133        memcpy(fCuts,VBTFWorkingPoint80,sizeof(fCuts));
134        break;
135 +    case kVBTFWorkingPointLowPtId:
136 +      if(ele->Pt() < 20)
137 +        memcpy(fCuts,VBTFWorkingPoint70NoHOverEE,sizeof(fCuts));
138 +      else
139 +        memcpy(fCuts,VBTFWorkingPoint80NoHOverEE,sizeof(fCuts));
140 +      break;
141      case kVBTFWorkingPoint70Id:
142        memcpy(fCuts,VBTFWorkingPoint70,sizeof(fCuts));
143        break;
# Line 96 | Line 146 | Bool_t ElectronTools::PassCustomID(const
146        break;
147    }
148  
99
149    // Based on RecoEgamma/ElectronIdentification/src/CutBasedElectronID.cc.
150    Double_t eOverP = ele->ESuperClusterOverP();
151    Double_t fBrem  = ele->FBrem();
152  
153 <  if ((eOverP < fCuts[5][0]) && (fBrem < fCuts[5][1]))
153 >  if ( (fCuts[5][0]>0.0) && (eOverP < fCuts[5][0]) && (fCuts[5][1]>0.0) && (fBrem < fCuts[5][1]))
154      return kFALSE;
155  
156 <  if (eOverP < fCuts[5][2]*(1-fBrem))
156 >  if ( (fCuts[5][2]>0.0) && (eOverP < fCuts[5][2]*(1-fBrem)))
157      return kFALSE;
158  
159    Int_t cat = 2;
# Line 112 | Line 161 | Bool_t ElectronTools::PassCustomID(const
161      cat=1;
162    else if (eOverP < 1.2 && eOverP > 0.8)
163      cat=0;
164 <
165 <  Double_t eSeedOverPin = ele->ESeedClusterOverPIn();
164 >  
165 >  if(ele->SCluster() == 0)
166 >    return kFALSE;
167 >  Double_t eSeedOverPin = ele->ESeedClusterOverPIn();
168    Double_t hOverE       = ele->HadronicOverEm();
169    Double_t sigmaee      = ele->CoviEtaiEta();
170    Double_t deltaPhiIn   = TMath::Abs(ele->DeltaPhiSuperClusterTrackAtVtx());
# Line 122 | Line 173 | Bool_t ElectronTools::PassCustomID(const
173    Int_t eb = 1;
174    if (ele->IsEB())
175      eb = 0;
176 <
176 >
177    if (hOverE>fCuts[0][cat+4*eb])
178      return kFALSE;
179  
# Line 138 | Line 189 | Bool_t ElectronTools::PassCustomID(const
189    if(eSeedOverPin<fCuts[4][cat+4*eb])
190      return kFALSE;
191  
192 +  // Apply detector isolation at high pt only
193 +  Bool_t isoCut = kTRUE;
194 +  if(idType == kVBTFWorkingPointFakeableId){
195 +    double isoEcal = ele->EcalRecHitIsoDr03();
196 +    if(ele->IsEB()) isoEcal = isoEcal - 1.0;
197 +    isoCut = (ele->TrackIsolationDr03() < ele->Pt()*0.2) &&
198 +             (isoEcal                   < ele->Pt()*0.2) &&
199 +             (ele->HcalTowerSumEtDr03() < ele->Pt()*0.2);
200 +  }
201 +  if(isoCut == kFALSE) return kFALSE;
202 +
203 +  // Cuts only for pt<20 region and kVBTFWorkingPointLowPtId
204 +  if(ele->Pt() < 20 && idType == kVBTFWorkingPointLowPtId) {
205 +    Bool_t isGoodLowPtEl = fBrem > 0.15 ||
206 +                          (ele->SCluster()->AbsEta() < 1.0 && eOverP > 0.95);
207 +    if(!isGoodLowPtEl) return kFALSE;
208 +  }
209 +  
210    return kTRUE;
211   }
212  
213   //--------------------------------------------------------------------------------------------------
214 < Bool_t ElectronTools::PassCustomIso(const Electron *ele, EElIsoType isoType)
214 > Bool_t ElectronTools::PassCustomIso(const Electron *ele, EElIsoType isoType,
215 >                                    Bool_t useCombineIso)
216   {
217    Bool_t pass = kTRUE;
218    Double_t fIsoCuts[4][2];          //!custom isolation cuts
149
219    Double_t VBTFWorkingPoint95[4][2] = {
220 <    {7.0 ,  8.0   },   //TrkIso
221 <    {5.0 ,  3.0   },   //ECALIso
222 <    {5.0 ,  2.0   },   //HCALIso
223 <    {9999,  9999  }   //Combined    
220 >    {0.15 , 0.08   },   //TrkIso
221 >    {2.00 , 0.06   },   //ECALIso
222 >    {0.12 , 0.05   },   //HCALIso
223 >    {0.15,  0.10   }   //Combined    
224    };            
225  
226    Double_t VBTFWorkingPoint90[4][2] = {
227 <    {6.0 ,  6.0   },   //TrkIso
228 <    {5.0 ,  2.5   },   //ECALIso
229 <    {5.0 ,  1.5   },   //HCALIso
230 <    {9999,  9999  }   //Combined    
227 >    {0.12 , 0.05   },   //TrkIso
228 >    {0.09 , 0.06   },   //ECALIso
229 >    {0.10 , 0.03   },   //HCALIso
230 >    {0.10,  0.07   }   //Combined    
231 >  };            
232 >
233 >  Double_t VBTFWorkingPoint85[4][2] = {
234 >    {0.09 , 0.05   },   //TrkIso
235 >    {0.08 , 0.05   },   //ECALIso
236 >    {0.10 , 0.025  },   //HCALIso
237 >    {0.09,  0.06   }   //Combined    
238    };            
239  
240    Double_t VBTFWorkingPoint80[4][2] = {
241 <    {3.0 ,  1.5   },   //TrkIso
242 <    {4.0 ,  2.5   },   //ECALIso
243 <    {5.0 ,  0.7   },   //HCALIso
244 <    {9999,  9999  }   //Combined    
241 >    {0.09 , 0.04   },   //TrkIso
242 >    {0.07 , 0.05   },   //ECALIso
243 >    {0.10 , 0.025  },   //HCALIso
244 >    {0.07,  0.06   }   //Combined    
245    };            
246  
247    Double_t VBTFWorkingPoint70[4][2] = {
248 <    {2.5 ,  0.8   },   //TrkIso
249 <    {3.0 ,  2.5   },   //ECALIso
250 <    {5.0 ,  0.25  },   //HCALIso
251 <    {9999,  9999  }   //Combined    
248 >    {0.05 , 0.025  },   //TrkIso
249 >    {0.06 , 0.025  },   //ECALIso
250 >    {0.03 , 0.020  },   //HCALIso
251 >    {0.04,  0.030  }   //Combined
252    };            
253  
254    switch (isoType) {
# Line 182 | Line 258 | Bool_t ElectronTools::PassCustomIso(cons
258      case kVBTFWorkingPoint90Iso:
259        memcpy(fIsoCuts,VBTFWorkingPoint90,sizeof(fIsoCuts));
260        break;
261 +    case kVBTFWorkingPoint85Iso:
262 +      memcpy(fIsoCuts,VBTFWorkingPoint85,sizeof(fIsoCuts));
263 +      break;
264      case kVBTFWorkingPoint80Iso:
265        memcpy(fIsoCuts,VBTFWorkingPoint80,sizeof(fIsoCuts));
266        break;
# Line 193 | Line 272 | Bool_t ElectronTools::PassCustomIso(cons
272        break;
273    }
274  
275 <  Double_t trkIso  = ele->TrackIsolationDr03();
276 <  Double_t ecalIso = ele->EcalRecHitIsoDr04();
277 <  Double_t hcalIso = ele->HcalIsolation();
278 <  Double_t combinedIso = ele->TrackIsolationDr03() + ele->EcalRecHitIsoDr04() - 1.5;
275 >  Double_t trkIso  = ele->TrackIsolationDr03() / ele->Pt();
276 >  Double_t ecalIso = ele->EcalRecHitIsoDr03() / ele->Pt();
277 >  Double_t hcalIso = ele->HcalTowerSumEtDr03() / ele->Pt();
278 >  Double_t combinedIso = ele->TrackIsolationDr03() + ele->EcalRecHitIsoDr03() + ele->HcalTowerSumEtDr03();
279 >  if(ele->IsEB()) combinedIso = ele->TrackIsolationDr03() + TMath::Max(ele->EcalRecHitIsoDr03() - 1.0, 0.0) + ele->HcalTowerSumEtDr03();
280 >  combinedIso = combinedIso / ele->Pt();
281  
282    Int_t eb = 1;
283    if (ele->IsEB())
284      eb = 0;
285  
286 <  if (trkIso>fIsoCuts[0][eb])
287 <    pass = kFALSE;
288 <  if (ecalIso>fIsoCuts[1][eb])
289 <    pass = kFALSE;
290 <  if (hcalIso>fIsoCuts[2][eb])
291 <    pass = kFALSE;
292 <  if (combinedIso>fIsoCuts[3][eb])
293 <    pass = kFALSE;
294 <
286 >  if(useCombineIso == kFALSE){
287 >    if (trkIso>fIsoCuts[0][eb])
288 >      pass = kFALSE;
289 >    if (ecalIso>fIsoCuts[1][eb])
290 >      pass = kFALSE;
291 >    if (hcalIso>fIsoCuts[2][eb])
292 >      pass = kFALSE;
293 >  }
294 >  else {
295 >    if (combinedIso>fIsoCuts[3][eb])
296 >      pass = kFALSE;
297 >  }
298  
299    return pass;
300   }
# Line 218 | Line 302 | Bool_t ElectronTools::PassCustomIso(cons
302  
303   //--------------------------------------------------------------------------------------------------
304   Bool_t ElectronTools::PassConversionFilter(const Electron *ele,
305 <                                           const DecayParticleCol *conversions,
306 <                                           Bool_t WrongHitsRequirement)
305 >                                           const DecayParticleCol *conversions,
306 >                                           const BaseVertex *vtx,
307 >                                           UInt_t nWrongHitsMax,
308 >                                           Double_t probMin,
309 >                                           Double_t lxyMin,
310 >                                           Bool_t matchCkf,
311 >                                           Bool_t requireArbitratedMerged,
312 >                                           Double_t trkptMin)
313   {
314    Bool_t isGoodConversion = kFALSE;
315  
# Line 228 | Line 318 | Bool_t ElectronTools::PassConversionFilt
318      for (UInt_t d=0; d<conversions->At(ifc)->NDaughters(); d++) {
319        const Track *trk = dynamic_cast<const ChargedParticle*>
320          (conversions->At(ifc)->Daughter(d))->Trk();
321 <      if (ele->GsfTrk() == trk) {
321 >      if (ele->GsfTrk() == trk || (matchCkf && ele->TrackerTrk()==trk) ) {
322          ConversionMatchFound = kTRUE;
323          break;
324        }
# Line 236 | Line 326 | Bool_t ElectronTools::PassConversionFilt
326  
327      // if match between the e-track and one of the conversion legs
328      if (ConversionMatchFound == kTRUE){
329 <      isGoodConversion =  (conversions->At(ifc)->Prob() > 1e-6) &&
330 <        (conversions->At(ifc)->Lxy() > 0) &&
331 <        (conversions->At(ifc)->Position().Rho() > 2.0);
329 >      isGoodConversion =  (conversions->At(ifc)->Prob() > probMin) &&
330 >        (!requireArbitratedMerged || conversions->At(ifc)->Quality().Quality(ConversionQuality::arbitratedMerged)) &&
331 >        (conversions->At(ifc)->LxyCorrected(vtx) > lxyMin);
332  
333        if (isGoodConversion == kTRUE) {
334          for (UInt_t d=0; d<conversions->At(ifc)->NDaughters(); d++) {
335            const Track *trk = dynamic_cast<const ChargedParticle*>
336              (conversions->At(ifc)->Daughter(d))->Trk();
337            if (trk) {
338 <            // These requirements are not used for the GSF track
249 <            if (!(trk->NHits() >= 3 && trk->Prob() > 1e-6) && trk!=ele->GsfTrk())
250 <              isGoodConversion = kFALSE;
338 >            if (trk->Pt()<trkptMin) isGoodConversion = kFALSE;
339              const StableData *sd = dynamic_cast<const StableData*>
340                (conversions->At(ifc)->DaughterDat(d));
341 <            if (WrongHitsRequirement && sd->NWrongHits() != 0)
341 >            if (sd->NWrongHits() > nWrongHitsMax)
342                isGoodConversion = kFALSE;
343            } else {
344              isGoodConversion = kFALSE;
# Line 258 | Line 346 | Bool_t ElectronTools::PassConversionFilt
346          }
347        }
348      }
349 +
350      if (isGoodConversion == kTRUE) break;
351      
352    } // loop over all conversions
# Line 266 | Line 355 | Bool_t ElectronTools::PassConversionFilt
355   }
356  
357   //--------------------------------------------------------------------------------------------------
358 < Bool_t ElectronTools::PassD0Cut(const Electron *ele, const VertexCol *vertices, Double_t fD0Cut,
359 <                                Bool_t fReverseD0Cut)
358 > Bool_t ElectronTools::PassConversionFilterPFAOD(const Electron *ele,
359 >                                           const DecayParticleCol *conversions,
360 >                                           const BaseVertex *vtx,
361 >                                           UInt_t nWrongHitsMax,
362 >                                           Double_t probMin,
363 >                                           Double_t lxyMin,
364 >                                           Bool_t matchCkf,
365 >                                           Bool_t requireArbitratedMerged,
366 >                                           Double_t trkptMin)
367 > {
368 >
369 >  Bool_t isGoodConversion = kFALSE;
370 >
371 >  for (UInt_t ifc=0; ifc<conversions->GetEntries(); ifc++) {
372 >    Bool_t ConversionMatchFound = kFALSE;
373 >    for (UInt_t d=0; d<conversions->At(ifc)->NDaughters(); d++) {
374 >      const ChargedParticle *pParticle = 0;
375 >      pParticle = dynamic_cast<const ChargedParticle*>(conversions->At(ifc)->Daughter(d));
376 >      if(pParticle == 0) continue;
377 >      const Track* trk = 0;
378 >      trk = pParticle->Trk();
379 >      if(trk == 0) continue;
380 >      if (ele->GsfTrk() == trk || (matchCkf && ele->TrackerTrk()==trk) ) {
381 >        ConversionMatchFound = kTRUE;
382 >        break;
383 >      }
384 >    }
385 >
386 >    // if match between the e-track and one of the conversion legs
387 >    if (ConversionMatchFound == kTRUE){
388 >      isGoodConversion =  (conversions->At(ifc)->Prob() > probMin) &&
389 >        (!requireArbitratedMerged || conversions->At(ifc)->Quality().Quality(ConversionQuality::arbitratedMerged)) &&
390 >        (conversions->At(ifc)->LxyCorrected(vtx) > lxyMin);
391 >
392 >      if (isGoodConversion == kTRUE) {
393 >        for (UInt_t d=0; d<conversions->At(ifc)->NDaughters(); d++) {
394 >          const ChargedParticle *pParticle = 0;
395 >          pParticle = dynamic_cast<const ChargedParticle*>(conversions->At(ifc)->Daughter(d));
396 >          if(pParticle == 0) continue;
397 >          const Track* trk = 0;
398 >          trk = pParticle->Trk();
399 >          if(trk == 0) continue;
400 >          if (trk) {
401 >            if (trk->Pt()<trkptMin) isGoodConversion = kFALSE;
402 >            const StableData *sd = dynamic_cast<const StableData*>
403 >              (conversions->At(ifc)->DaughterDat(d));
404 >            if (sd->NWrongHits() > nWrongHitsMax)
405 >              isGoodConversion = kFALSE;
406 >          } else {
407 >            isGoodConversion = kFALSE;
408 >          }
409 >        }
410 >      }
411 >    }
412 >    
413 >    if (isGoodConversion == kTRUE) break;
414 >    
415 >  } // loop over all conversions
416 >  
417 >  return !isGoodConversion;
418 > }
419 > //--------------------------------------------------------------------------------------------------
420 > Bool_t ElectronTools::PassD0Cut(const Electron *ele, const VertexCol *vertices, Double_t fD0Cut, Int_t nVertex)
421   {
422    Bool_t d0cut = kFALSE;
423 <  // d0 cut
424 <  Double_t d0_real = 99999;
425 <  for(UInt_t i0 = 0; i0 < vertices->GetEntries(); i0++) {
426 <    Double_t pD0 = ele->GsfTrk()->D0Corrected(*vertices->At(i0));
427 <    if(TMath::Abs(pD0) < TMath::Abs(d0_real)) d0_real = TMath::Abs(pD0);
423 >
424 >  Double_t d0_real = 1e30;
425 >
426 >  if( nVertex >= (int) vertices->GetEntries() )
427 >    nVertex = vertices->GetEntries() - 1;
428 >  
429 >  if(nVertex >= 0) d0_real = TMath::Abs(ele->GsfTrk()->D0Corrected(*vertices->At(nVertex)));
430 >  else            {
431 >    Double_t distVtx = 999.0;
432 >    Int_t closestVtx = 0;
433 >    for(UInt_t nv=0; nv<vertices->GetEntries(); nv++){
434 >      double dz = TMath::Abs(ele->GsfTrk()->DzCorrected(*vertices->At(nv)));
435 >      if(dz < distVtx) {
436 >        distVtx    = dz;
437 >        closestVtx = nv;
438 >      }
439 >    }
440 >    d0_real = TMath::Abs(ele->GsfTrk()->D0Corrected(*vertices->At(closestVtx)));
441    }
442    if(d0_real < fD0Cut) d0cut = kTRUE;
443    
281  if     (fReverseD0Cut == kTRUE &&
282          d0cut == kFALSE && d0_real < 0.05)
283    d0cut = kTRUE;
284  else if(fReverseD0Cut == kTRUE)
285    d0cut = kFALSE;
286  
444    return d0cut;
445   }
446  
447   //--------------------------------------------------------------------------------------------------
448 < Bool_t ElectronTools::PassD0Cut(const Electron *ele, const BeamSpotCol *beamspots, Double_t fD0Cut,
292 <                                Bool_t fReverseD0Cut)
448 > Bool_t ElectronTools::PassD0Cut(const Electron *ele, const BeamSpotCol *beamspots, Double_t fD0Cut)
449   {
450    Bool_t d0cut = kFALSE;
451    // d0 cut
# Line 300 | Line 456 | Bool_t ElectronTools::PassD0Cut(const El
456    }
457    if(d0_real < fD0Cut) d0cut = kTRUE;
458    
303  if     (fReverseD0Cut == kTRUE &&
304          d0cut == kFALSE && d0_real < 0.05)
305    d0cut = kTRUE;
306  else if(fReverseD0Cut == kTRUE)
307    d0cut = kFALSE;
308  
459    return d0cut;
460   }
461  
462   //--------------------------------------------------------------------------------------------------
463 + Bool_t ElectronTools::PassDZCut(const Electron *ele, const VertexCol *vertices, Double_t fDZCut, Int_t nVertex)
464 + {
465 +  Bool_t dzcut = kFALSE;
466 +
467 +  Double_t distVtx = 999.0;
468 +
469 +  if( nVertex >= (int) vertices->GetEntries() )
470 +    nVertex = vertices->GetEntries()-1;
471 +  
472 +  if(nVertex >= 0) distVtx = TMath::Abs(ele->GsfTrk()->DzCorrected(*vertices->At(nVertex)));
473 +  else {
474 +    for(UInt_t nv=0; nv<vertices->GetEntries(); nv++){
475 +      double dz = TMath::Abs(ele->GsfTrk()->DzCorrected(*vertices->At(nv)));
476 +      if(dz < distVtx) {
477 +        distVtx  = dz;
478 +      }
479 +    }
480 +  }
481 +  
482 +  if(distVtx < fDZCut) dzcut = kTRUE;
483 +  
484 +  return dzcut;
485 + }
486 +
487 + //--------------------------------------------------------------------------------------------------
488   Bool_t ElectronTools::PassChargeFilter(const Electron *ele)
489   {
490    Bool_t passChargeFilter = kTRUE;
# Line 323 | Line 498 | Bool_t ElectronTools::PassChargeFilter(c
498   Bool_t ElectronTools::PassSpikeRemovalFilter(const Electron *ele)
499   {
500    Bool_t passSpikeRemovalFilter = kTRUE;
501 <  if(ele->SCluster()->Seed()->Energy() > 5.0 &&
501 >  if(ele->SCluster() &&
502 >     ele->SCluster()->Seed()->Energy() > 5.0 &&
503       ele->SCluster()->Seed()->EMax() / ele->SCluster()->Seed()->E3x3() > 0.95
504      ) {
505      passSpikeRemovalFilter = kFALSE;
# Line 338 | Line 514 | Bool_t ElectronTools::PassSpikeRemovalFi
514      
515    return passSpikeRemovalFilter;
516   }
517 +
518 + Bool_t ElectronTools::PassTriggerMatching(const Electron *ele, const TriggerObjectCol *trigobjs)
519 + {
520 +  
521 +  for (UInt_t i=0; i<trigobjs->GetEntries(); ++i) {
522 +    const TriggerObject *trigobj = trigobjs->At(i);
523 +    if (trigobj->TriggerType()==TriggerObject::TriggerCluster || trigobj->TriggerType()==TriggerObject::TriggerElectron || trigobj->TriggerType()==TriggerObject::TriggerPhoton) {
524 +      if (MathUtils::DeltaR(ele->SCluster(),trigobj)<0.3) {
525 +        return kTRUE;
526 +      }
527 +    }
528 +  }
529 +  
530 +  return kFALSE;
531 +  
532 +  
533 + }
534 +
535 + //--------------------------------------------------------------------------------------------------
536 + Int_t ElectronTools::Classify(const Electron *ele) {
537 +  
538 +  double eta    = ele->AbsEta();
539 +  double eOverP = ele->ESuperClusterOverP();
540 +  double fBrem  = ele->FBrem();
541 +
542 +  int cat = -1;
543 +  if (ele->IsEB()) {
544 +    if ((fBrem >= 0.12) and (eOverP > 0.9) and (eOverP < 1.2))
545 +      cat = 0;
546 +    else if (((eta >  .445   and eta <  .45  ) or
547 +              (eta >  .79    and eta <  .81  ) or
548 +              (eta > 1.137   and eta < 1.157 ) or
549 +              (eta > 1.47285 and eta < 1.4744)))
550 +      cat = 6;
551 +    else if (ele->IsTrackerDriven() and !ele->IsEcalDriven())
552 +      cat = 8;
553 +    else if (fBrem < 0.12)
554 +      cat = 1;
555 +    else
556 +      cat = 2;
557 +  } else {
558 +    if ((fBrem >= 0.2) and (eOverP > 0.82) and (eOverP < 1.22))
559 +      cat = 3;
560 +    else if (eta > 1.5 and eta <  1.58)
561 +      cat = 7;
562 +    else if (ele->IsTrackerDriven() and !ele->IsEcalDriven())
563 +      cat = 8;
564 +    else if (fBrem < 0.2)
565 +      cat = 4;
566 +    else
567 +      cat = 5;
568 +  }
569 +
570 +  return cat;
571 + }
572 +
573 + //--------------------------------------------------------------------------------------------------
574 + Int_t ElectronTools::PassTightId(const Electron *ele, const VertexCol *vertices,
575 +                                 const DecayParticleCol *conversions, const Int_t typeCuts,
576 +                                 Double_t beta){
577 +
578 + // original code on
579 + // http://cmssw.cvs.cern.ch/cgi-bin/cmssw.cgi/CMSSW/RecoEgamma/ElectronIdentification/src/CutBasedElectronID.cc
580 + // beta must be computed with a DR cone of 0.4
581 +
582 +  Double_t scEt   = ele->SCluster()->Et();
583 +  Double_t scEta  = ele->SCluster()->Eta();
584 +
585 +  Double_t fBrem = ele->FBrem();
586 +  Double_t hOverE = ele->HadronicOverEm();
587 +  Double_t sigmaee = ele->CoviEtaiEta();
588 +  Double_t deltaPhiIn = TMath::Abs(ele->DeltaPhiSuperClusterTrackAtVtx());
589 +  Double_t deltaEtaIn = TMath::Abs(ele->DeltaEtaSuperClusterTrackAtVtx());
590 +  Double_t eSeedOverPin = ele->ESeedClusterOverPIn();
591 +
592 +  Int_t mishits = ele->BestTrk()->NExpectedHitsInner();
593 +  Double_t tkIso   = ele->TrackIsolationDr03();
594 +  Double_t ecalIso = ele->EcalRecHitIsoDr04()*beta;
595 +  Double_t hcalIso  = ele->HcalTowerSumEtDr04()*beta;
596 +
597 +  int cat = Classify(ele);
598 +  int eb;
599 +
600 +  if (ele->IsEB())
601 +    eb = 0;
602 +  else
603 +    eb = 1;
604 +
605 +  // Medium cuts
606 +  Double_t cutdcotdistMedium[9] = {
607 +  3.32e-02, 2.92e-02, 2.49e-02, 3.92e-02, 3.41e-02, 3.96e-02, 2.91e-02, 3.95e-02, 7.71e-03};
608 +  Double_t cutdetainMedium[9] = {
609 +  1.33e-02, 4.48e-03, 9.22e-03, 1.54e-02, 7.26e-03, 1.24e-02, 1.29e-02, 3.84e-02, 1.88e-02};
610 +  Double_t cutdetainlMedium[9] = {
611 +  1.21e-02, 4.22e-03, 9.18e-03, 1.61e-02, 6.45e-03, 1.16e-02, 1.23e-02, 6.20e-02, 2.43e-02};
612 +  Double_t cutdphiinMedium[9] = {
613 +  7.09e-02, 2.43e-01, 2.96e-01, 7.98e-02, 2.35e-01, 2.76e-01, 3.42e-01, 4.04e-01, 2.99e-01};
614 +  Double_t cutdphiinlMedium[9] = {
615 +  7.42e-02, 2.43e-01, 2.97e-01, 9.12e-02, 2.26e-01, 2.76e-01, 3.34e-01, 5.58e-01, 2.91e-01};
616 +  Double_t cuteseedopcorMedium[9] = {
617 +  6.42e-01, 9.44e-01, 4.53e-01, 7.62e-01, 3.67e-01, 5.57e-01, 1.98e-01, 9.15e-01, 6.28e-02};
618 +  Double_t cutfmishitsMedium[9] = {
619 +  4.50e+00, 1.50e+00, 1.50e+00, 1.50e+00, 1.50e+00, 5.00e-01, 1.50e+00, 5.00e-01, 5.00e-01};
620 +  Double_t cuthoeMedium[9] = {
621 +  1.96e-01, 6.30e-02, 1.48e-01, 3.66e-01, 5.66e-02, 1.45e-01, 4.29e-01, 4.28e-01, 3.99e-01};
622 +  Double_t cuthoelMedium[9] = {
623 +  2.19e-01, 6.19e-02, 1.47e-01, 3.58e-01, 4.61e-02, 1.46e-01, 3.26e-01, 3.81e-01, 3.89e-01};
624 +  Double_t cutip_gsfMedium[9] = {
625 +  2.45e-02, 9.74e-02, 1.48e-01, 5.49e-02, 5.65e-01, 3.33e-01, 2.04e-01, 5.41e-01, 1.21e-01};
626 +  Double_t cutip_gsflMedium[9] = {
627 +  1.92e-02, 9.81e-02, 1.33e-01, 4.34e-02, 5.65e-01, 3.24e-01, 2.33e-01, 4.30e-01, 6.44e-02};
628 +  Double_t cutiso_sumMedium[9] = {
629 +  1.44e+01, 1.12e+01, 1.09e+01, 1.08e+01, 6.35e+00, 9.78e+00, 1.30e+01, 1.62e+01, 1.96e+00};
630 +  Double_t cutiso_sumoetMedium[9] = {
631 +  1.01e+01, 6.41e+00, 6.00e+00, 8.14e+00, 3.90e+00, 4.76e+00, 6.86e+00, 6.48e+00, 1.74e+01};
632 +  Double_t cutiso_sumoetlMedium[9] = {
633 +  9.44e+00, 7.67e+00, 7.15e+00, 7.34e+00, 3.35e+00, 4.70e+00, 8.32e+00, 7.55e+00, 6.25e+00};
634 +  Double_t cutseeMedium[9] = {
635 +  1.30e-02, 1.09e-02, 1.18e-02, 3.94e-02, 3.04e-02, 3.28e-02, 1.00e-02, 3.73e-02, 6.69e-02};
636 +  Double_t cutseelMedium[9] = {
637 +  1.42e-02, 1.11e-02, 1.29e-02, 4.32e-02, 2.96e-02, 3.82e-02, 1.01e-02, 4.45e-02, 1.19e-01};
638 +
639 +  // Tight cuts
640 +  Double_t cutdcotdistTight[9] = {
641 +  2.68e-02, 2.36e-02, 2.21e-02, 3.72e-02, 3.17e-02, 3.61e-02, 2.55e-02, 3.75e-02, 2.16e-04};
642 +  Double_t cutdetainTight[9] = {
643 +  8.92e-03, 3.96e-03, 8.50e-03, 1.34e-02, 6.27e-03, 1.05e-02, 1.12e-02, 3.09e-02, 1.88e-02};
644 +  Double_t cutdetainlTight[9] = {
645 +  9.23e-03, 3.77e-03, 8.70e-03, 1.39e-02, 5.60e-03, 9.40e-03, 1.07e-02, 6.20e-02, 4.10e-03};
646 +  Double_t cutdphiinTight[9] = {
647 +  6.37e-02, 1.53e-01, 2.90e-01, 7.69e-02, 1.81e-01, 2.34e-01, 3.42e-01, 3.93e-01, 2.84e-01};
648 +  Double_t cutdphiinlTight[9] = {
649 +  6.92e-02, 2.33e-01, 2.96e-01, 8.65e-02, 1.85e-01, 2.76e-01, 3.34e-01, 3.53e-01, 2.90e-01};
650 +  Double_t cuteseedopcorTight[9] = {
651 +  6.52e-01, 9.69e-01, 9.12e-01, 7.79e-01, 3.67e-01, 6.99e-01, 3.28e-01, 9.67e-01, 5.89e-01};
652 +  Double_t cutfmishitsTight[9] = {
653 +  4.50e+00, 1.50e+00, 5.00e-01, 1.50e+00, 1.50e+00, 5.00e-01, 5.00e-01, 5.00e-01, 5.00e-01};
654 +  Double_t cuthoeTight[9] = {
655 +  1.74e-01, 4.88e-02, 1.46e-01, 3.64e-01, 4.93e-02, 1.45e-01, 4.29e-01, 4.20e-01, 3.99e-01};
656 +  Double_t cuthoelTight[9] = {
657 +  2.19e-01, 5.25e-02, 1.47e-01, 3.57e-01, 4.25e-02, 1.45e-01, 3.26e-01, 3.80e-01, 1.32e-01};
658 +  Double_t cutip_gsfTight[9] = {
659 +  1.58e-02, 8.25e-02, 1.15e-01, 4.05e-02, 5.40e-01, 1.51e-01, 7.74e-02, 4.17e-01, 7.80e-02};
660 +  Double_t cutip_gsflTight[9] = {
661 +  1.27e-02, 6.26e-02, 9.68e-02, 3.02e-02, 5.65e-01, 1.46e-01, 7.90e-02, 4.10e-01, 4.79e-02};
662 +  Double_t cutiso_sumTight[9] = {
663 +  1.23e+01, 9.77e+00, 1.01e+01, 9.77e+00, 6.13e+00, 7.55e+00, 1.30e+01, 1.62e+01, 1.78e+00};
664 +  Double_t cutiso_sumoetTight[9] = {
665 +  7.75e+00, 5.45e+00, 5.67e+00, 5.97e+00, 3.17e+00, 3.86e+00, 6.06e+00, 5.31e+00, 1.05e+01};
666 +  Double_t cutiso_sumoetlTight[9] = {
667 +  7.56e+00, 5.08e+00, 5.77e+00, 5.74e+00, 2.37e+00, 3.32e+00, 4.97e+00, 5.46e+00, 3.82e+00};
668 +  Double_t cutseeTight[9] = {
669 +  1.16e-02, 1.07e-02, 1.08e-02, 3.49e-02, 2.89e-02, 3.08e-02, 9.87e-03, 3.37e-02, 4.40e-02};
670 +  Double_t cutseelTight[9] = {
671 +  1.27e-02, 1.08e-02, 1.13e-02, 4.19e-02, 2.81e-02, 3.02e-02, 9.76e-03, 4.28e-02, 2.98e-02};
672 +  
673 +  // SuperTight cuts
674 +  Double_t cutdcotdistSuperTight[9] = {
675 +  2.11e-02, 1.86e-02, 1.55e-02, 3.40e-02, 2.85e-02, 3.32e-02, 1.64e-02, 3.75e-02, 1.30e-04};
676 +  Double_t cutdetainSuperTight[9] = {
677 +  7.84e-03, 3.67e-03, 7.00e-03, 1.28e-02, 5.65e-03, 9.53e-03, 1.08e-02, 2.97e-02, 7.24e-03};
678 +  Double_t cutdetainlSuperTight[9] = {
679 +  7.61e-03, 3.28e-03, 6.57e-03, 1.03e-02, 5.05e-03, 8.55e-03, 1.07e-02, 2.94e-02, 4.10e-03};
680 +  Double_t cutdphiinSuperTight[9] = {
681 +  4.83e-02, 7.39e-02, 2.38e-01, 5.74e-02, 1.29e-01, 2.13e-01, 3.31e-01, 3.93e-01, 2.84e-01};
682 +  Double_t cutdphiinlSuperTight[9] = {
683 +  5.79e-02, 7.21e-02, 2.18e-01, 7.70e-02, 1.41e-01, 2.11e-01, 2.43e-01, 3.53e-01, 2.89e-01};
684 +  Double_t cuteseedopcorSuperTight[9] = {
685 +  7.32e-01, 9.77e-01, 9.83e-01, 8.55e-01, 4.31e-01, 7.35e-01, 4.18e-01, 9.99e-01, 5.89e-01};
686 +  Double_t cutfmishitsSuperTight[9] = {
687 +  3.50e+00, 1.50e+00, 5.00e-01, 5.00e-01, 5.00e-01, 5.00e-01, 5.00e-01, 5.00e-01, 5.00e-01};
688 +  Double_t cuthoeSuperTight[9] = {
689 +  9.19e-02, 4.11e-02, 1.42e-01, 3.35e-01, 3.82e-02, 1.41e-01, 4.29e-01, 4.01e-01, 3.99e-01};
690 +  Double_t cuthoelSuperTight[9] = {
691 +  7.51e-02, 3.81e-02, 1.41e-01, 3.32e-01, 3.10e-02, 1.43e-01, 2.35e-01, 3.80e-01, 1.32e-01};
692 +  Double_t cutip_gsfSuperTight[9] = {
693 +  1.42e-02, 2.66e-02, 1.06e-01, 3.38e-02, 3.23e-01, 1.07e-01, 7.74e-02, 2.32e-01, 7.80e-02};
694 +  Double_t cutip_gsflSuperTight[9] = {
695 +  1.15e-02, 2.72e-02, 8.41e-02, 2.49e-02, 4.17e-01, 1.02e-01, 7.90e-02, 1.69e-01, 4.79e-02};
696 +  Double_t cutiso_sumSuperTight[9] = {
697 +  8.95e+00, 8.18e+00, 8.75e+00, 7.47e+00, 5.43e+00, 5.87e+00, 8.16e+00, 1.02e+01, 1.78e+00};
698 +  Double_t cutiso_sumoetSuperTight[9] = {
699 +  6.45e+00, 5.14e+00, 4.99e+00, 5.21e+00, 2.65e+00, 3.12e+00, 4.52e+00, 4.72e+00, 3.68e+00};
700 +  Double_t cutiso_sumoetlSuperTight[9] = {
701 +  6.02e+00, 3.96e+00, 4.23e+00, 4.73e+00, 1.99e+00, 2.64e+00, 3.72e+00, 3.81e+00, 1.44e+00};
702 +  Double_t cutseeSuperTight[9] = {
703 +  1.09e-02, 1.05e-02, 1.05e-02, 3.24e-02, 2.81e-02, 2.95e-02, 9.77e-03, 2.75e-02, 2.95e-02};
704 +  Double_t cutseelSuperTight[9] = {
705 +  1.12e-02, 1.05e-02, 1.07e-02, 3.51e-02, 2.75e-02, 2.87e-02, 9.59e-03, 2.67e-02, 2.98e-02};
706 +
707 +  // HyperTight1 cuts
708 +  Double_t cutdcotdistHyperTight1[9] = {
709 +  1.48e-02, 1.50e-02, 8.25e-03, 3.16e-02, 2.85e-02, 3.15e-02, 6.62e-03, 3.48e-02, 3.63e-06};
710 +  Double_t cutdetainHyperTight1[9] = {
711 +  6.51e-03, 3.51e-03, 5.53e-03, 9.16e-03, 5.30e-03, 8.28e-03, 1.08e-02, 2.97e-02, 7.24e-03};
712 +  Double_t cutdetainlHyperTight1[9] = {
713 +  6.05e-03, 3.23e-03, 4.93e-03, 8.01e-03, 4.93e-03, 7.91e-03, 1.03e-02, 2.94e-02, 4.10e-03};
714 +  Double_t cutdphiinHyperTight1[9] = {
715 +  4.83e-02, 4.91e-02, 2.30e-01, 3.48e-02, 7.44e-02, 2.04e-01, 9.95e-02, 3.93e-01, 2.84e-01};
716 +  Double_t cutdphiinlHyperTight1[9] = {
717 +  4.74e-02, 4.51e-02, 2.18e-01, 2.99e-02, 7.37e-02, 2.11e-01, 9.99e-02, 3.53e-01, 2.89e-01};
718 +  Double_t cuteseedopcorHyperTight1[9] = {
719 +  7.72e-01, 9.90e-01, 1.01e+00, 8.55e-01, 9.11e-01, 7.72e-01, 9.17e-01, 1.06e+00, 7.63e-01};
720 +  Double_t cutfmishitsHyperTight1[9] = {
721 +  3.50e+00, 1.50e+00, 5.00e-01, 5.00e-01, 5.00e-01, 5.00e-01, 5.00e-01, 5.00e-01, 5.00e-01};
722 +  Double_t cuthoeHyperTight1[9] = {
723 +  6.17e-02, 3.70e-02, 1.41e-01, 2.91e-01, 3.82e-02, 1.34e-01, 4.19e-01, 3.87e-01, 3.93e-01};
724 +  Double_t cuthoelHyperTight1[9] = {
725 +  4.43e-02, 3.57e-02, 1.41e-01, 2.81e-01, 3.07e-02, 1.28e-01, 2.27e-01, 3.80e-01, 1.32e-01};
726 +  Double_t cutip_gsfHyperTight1[9] = {
727 +  1.21e-02, 1.76e-02, 6.01e-02, 2.96e-02, 1.74e-01, 9.70e-02, 7.74e-02, 1.33e-01, 7.80e-02};
728 +  Double_t cutip_gsflHyperTight1[9] = {
729 +  1.01e-02, 1.56e-02, 6.87e-02, 2.13e-02, 1.25e-01, 8.16e-02, 7.90e-02, 1.30e-01, 4.79e-02};
730 +  Double_t cutiso_sumHyperTight1[9] = {
731 +  7.92e+00, 6.85e+00, 7.87e+00, 6.77e+00, 4.47e+00, 5.28e+00, 6.57e+00, 1.02e+01, 1.78e+00};
732 +  Double_t cutiso_sumoetHyperTight1[9] = {
733 +  5.20e+00, 3.93e+00, 3.88e+00, 4.10e+00, 2.40e+00, 2.43e+00, 3.49e+00, 3.94e+00, 3.01e+00};
734 +  Double_t cutiso_sumoetlHyperTight1[9] = {
735 +  4.18e+00, 3.12e+00, 3.44e+00, 3.25e+00, 1.77e+00, 2.06e+00, 2.83e+00, 3.12e+00, 1.43e+00};
736 +  Double_t cutseeHyperTight1[9] = {
737 +  1.05e-02, 1.04e-02, 1.01e-02, 3.24e-02, 2.80e-02, 2.85e-02, 9.67e-03, 2.61e-02, 2.95e-02};
738 +  Double_t cutseelHyperTight1[9] = {
739 +  1.04e-02, 1.03e-02, 1.01e-02, 3.04e-02, 2.74e-02, 2.78e-02, 9.58e-03, 2.54e-02, 2.83e-02};
740 +
741 +  // HyperTight2 cuts
742 +  Double_t cutdcotdistHyperTight2[9] = {
743 +  1.15e-02, 1.07e-02, 4.01e-03, 2.97e-02, 2.85e-02, 3.10e-02, 9.34e-04, 3.40e-02, 2.82e-07};
744 +  Double_t cutdetainHyperTight2[9] = {
745 +  5.29e-03, 2.56e-03, 4.89e-03, 7.89e-03, 5.30e-03, 7.37e-03, 8.91e-03, 9.36e-03, 5.94e-03};
746 +  Double_t cutdetainlHyperTight2[9] = {
747 +  4.48e-03, 2.59e-03, 4.42e-03, 6.54e-03, 4.93e-03, 6.98e-03, 8.49e-03, 9.06e-03, -4.81e-03};
748 +  Double_t cutdphiinHyperTight2[9] = {
749 +  2.41e-02, 3.83e-02, 1.48e-01, 2.91e-02, 3.15e-02, 1.57e-01, 8.90e-02, 1.02e-01, 2.81e-01};
750 +  Double_t cutdphiinlHyperTight2[9] = {
751 +  2.13e-02, 3.79e-02, 1.25e-01, 2.24e-02, 3.69e-02, 1.64e-01, 9.99e-02, 9.23e-02, 2.37e-01};
752 +  Double_t cuteseedopcorHyperTight2[9] = {
753 +  1.03e+00, 9.95e-01, 1.03e+00, 1.01e+00, 9.46e-01, 9.03e-01, 9.97e-01, 1.14e+00, 8.00e-01};
754 +  Double_t cutfmishitsHyperTight2[9] = {
755 +  1.50e+00, 1.50e+00, 5.00e-01, 5.00e-01, 5.00e-01, 5.00e-01, 5.00e-01, 5.00e-01, -5.00e-01};
756 +  Double_t cuthoeHyperTight2[9] = {
757 +  4.94e-02, 3.45e-02, 1.40e-01, 2.02e-01, 3.82e-02, 1.19e-01, 1.23e-01, 3.82e-01, 2.50e-01};
758 +  Double_t cuthoelHyperTight2[9] = {
759 +  4.04e-02, 3.42e-02, 1.31e-01, 1.85e-01, 3.01e-02, 1.27e-01, 2.27e-01, 3.80e-01, 1.32e-01};
760 +  Double_t cutip_gsfHyperTight2[9] = {
761 +  1.14e-02, 1.38e-02, 5.29e-02, 1.87e-02, 1.31e-01, 8.63e-02, 7.74e-02, 1.04e-01, 2.42e-02};
762 +  Double_t cutip_gsflHyperTight2[9] = {
763 +  9.83e-03, 1.35e-02, 4.27e-02, 1.72e-02, 1.25e-01, 7.92e-02, 7.90e-02, 1.30e-01, 3.40e-02};
764 +  Double_t cutiso_sumHyperTight2[9] = {
765 +  6.40e+00, 5.77e+00, 6.54e+00, 5.22e+00, 3.86e+00, 4.63e+00, 6.31e+00, 1.02e+01, 1.78e+00};
766 +  Double_t cutiso_sumoetHyperTight2[9] = {
767 +  4.03e+00, 3.03e+00, 3.24e+00, 3.13e+00, 2.05e+00, 2.01e+00, 2.99e+00, 3.44e+00, 2.76e+00};
768 +  Double_t cutiso_sumoetlHyperTight2[9] = {
769 +  3.08e+00, 2.31e+00, 2.84e+00, 2.53e+00, 1.65e+00, 1.72e+00, 2.34e+00, 3.11e+00, 1.35e+00};
770 +  Double_t cutseeHyperTight2[9] = {
771 +  1.03e-02, 1.03e-02, 9.88e-03, 3.03e-02, 2.79e-02, 2.79e-02, 9.67e-03, 2.52e-02, 2.58e-02};
772 +  Double_t cutseelHyperTight2[9] = {
773 +  1.02e-02, 1.02e-02, 9.80e-03, 2.90e-02, 2.74e-02, 2.75e-02, 9.58e-03, 2.49e-02, 2.50e-02};
774 +
775 +  // HyperTight3 cuts
776 +  Double_t cutdcotdistHyperTight3[9] = {
777 +  9.63e-03, 5.11e-03, 1.95e-04, 2.97e-02, 2.85e-02, 2.18e-02, 2.61e-05, 2.57e-02, 2.82e-07};
778 +  Double_t cutdetainHyperTight3[9] = {
779 +  4.86e-03, 2.29e-03, 4.40e-03, 7.79e-03, 4.07e-03, 6.33e-03, 7.70e-03, 7.93e-03, 5.94e-03};
780 +  Double_t cutdetainlHyperTight3[9] = {
781 +  4.48e-03, 2.30e-03, 4.14e-03, 6.04e-03, 3.87e-03, 6.09e-03, 7.97e-03, 8.04e-03, -4.81e-03};
782 +  Double_t cutdphiinHyperTight3[9] = {
783 +  2.41e-02, 2.88e-02, 7.39e-02, 2.91e-02, 1.91e-02, 1.14e-01, 3.61e-02, 8.92e-02, 2.81e-01};
784 +  Double_t cutdphiinlHyperTight3[9] = {
785 +  1.95e-02, 3.42e-02, 8.06e-02, 2.22e-02, 2.26e-02, 9.73e-02, 4.51e-02, 9.23e-02, 2.37e-01};
786 +  Double_t cuteseedopcorHyperTight3[9] = {
787 +  1.07e+00, 1.01e+00, 1.08e+00, 1.01e+00, 9.69e-01, 9.10e-01, 1.04e+00, 1.20e+00, 8.00e-01};
788 +  Double_t cutfmishitsHyperTight3[9] = {
789 +  5.00e-01, 1.50e+00, 5.00e-01, 5.00e-01, 5.00e-01, 5.00e-01, 5.00e-01, 5.00e-01, -5.00e-01};
790 +  Double_t cuthoeHyperTight3[9] = {
791 +  3.52e-02, 3.45e-02, 1.33e-01, 1.88e-01, 2.72e-02, 1.19e-01, 9.28e-02, 2.46e-01, 2.50e-01};
792 +  Double_t cuthoelHyperTight3[9] = {
793 +  4.04e-02, 3.40e-02, 1.31e-01, 1.84e-01, 2.64e-02, 1.18e-01, 9.76e-02, 2.53e-01, 1.32e-01};
794 +  Double_t cutip_gsfHyperTight3[9] = {
795 +  1.14e-02, 1.26e-02, 3.79e-02, 1.68e-02, 1.21e-01, 5.29e-02, 7.74e-02, 3.35e-02, 2.42e-02};
796 +  Double_t cutip_gsflHyperTight3[9] = {
797 +  9.83e-03, 1.18e-02, 3.59e-02, 1.56e-02, 1.20e-01, 5.36e-02, 7.90e-02, 2.88e-02, 3.40e-02};
798 +  Double_t cutiso_sumHyperTight3[9] = {
799 +  5.40e+00, 5.41e+00, 5.88e+00, 4.32e+00, 3.86e+00, 4.33e+00, 5.87e+00, 9.05e+00, 1.78e+00};
800 +  Double_t cutiso_sumoetHyperTight3[9] = {
801 +  3.03e+00, 2.50e+00, 2.58e+00, 2.44e+00, 1.91e+00, 1.76e+00, 2.92e+00, 3.13e+00, 2.76e+00};
802 +  Double_t cutiso_sumoetlHyperTight3[9] = {
803 +  2.36e+00, 2.02e+00, 2.29e+00, 1.89e+00, 1.65e+00, 1.69e+00, 2.03e+00, 2.79e+00, 1.35e+00};
804 +  Double_t cutseeHyperTight3[9] = {
805 +  1.03e-02, 1.01e-02, 9.84e-03, 2.89e-02, 2.74e-02, 2.73e-02, 9.47e-03, 2.44e-02, 2.58e-02};
806 +  Double_t cutseelHyperTight3[9] = {
807 +  1.02e-02, 1.00e-02, 9.73e-03, 2.79e-02, 2.73e-02, 2.69e-02, 9.40e-03, 2.46e-02, 2.50e-02};
808 +
809 +  // HyperTight4 cuts
810 +  Double_t cutdcotdistHyperTight4[9] = {
811 +  2.70e-04, 1.43e-04, 1.95e-04, 2.64e-03, 2.82e-02, 1.64e-02, 2.61e-05, 2.57e-02, 2.82e-07};
812 +  Double_t cutdetainHyperTight4[9] = {
813 +  2.44e-03, 1.67e-03, 2.26e-03, 3.43e-03, 3.51e-03, 3.52e-03, 2.98e-03, 4.79e-03, 5.94e-03};
814 +  Double_t cutdetainlHyperTight4[9] = {
815 +  2.34e-03, 1.29e-03, 2.30e-03, 3.30e-03, 3.61e-03, 3.84e-03, 2.53e-03, 3.66e-03, -4.81e-03};
816 +  Double_t cutdphiinHyperTight4[9] = {
817 +  8.44e-03, 5.21e-03, 2.18e-02, 1.39e-02, 7.82e-03, 1.52e-02, 2.59e-02, 3.87e-02, 2.81e-01};
818 +  Double_t cutdphiinlHyperTight4[9] = {
819 +  5.77e-03, 3.20e-03, 2.85e-02, 2.22e-02, 7.00e-03, 1.84e-02, 2.91e-02, 4.40e-02, 2.37e-01};
820 +  Double_t cuteseedopcorHyperTight4[9] = {
821 +  1.15e+00, 1.01e+00, 1.21e+00, 1.07e+00, 9.69e-01, 9.10e-01, 1.08e+00, 1.36e+00, 8.00e-01};
822 +  Double_t cutfmishitsHyperTight4[9] = {
823 +  5.00e-01, 5.00e-01, 5.00e-01, 5.00e-01, 5.00e-01, 5.00e-01, 5.00e-01, 5.00e-01, -5.00e-01};
824 +  Double_t cuthoeHyperTight4[9] = {
825 +  2.39e-02, 2.68e-02, 2.12e-02, 1.03e-01, 9.92e-03, 7.07e-02, 7.12e-02, 1.48e-01, 2.50e-01};
826 +  Double_t cuthoelHyperTight4[9] = {
827 +  2.87e-02, 1.94e-02, 2.16e-02, 5.68e-02, 1.35e-02, 4.04e-02, 7.98e-02, 1.50e-01, 1.32e-01};
828 +  Double_t cutip_gsfHyperTight4[9] = {
829 +  7.61e-03, 5.22e-03, 3.79e-02, 1.02e-02, 4.62e-02, 1.82e-02, 7.74e-02, 3.35e-02, 2.42e-02};
830 +  Double_t cutip_gsflHyperTight4[9] = {
831 +  7.81e-03, 4.25e-03, 3.08e-02, 1.04e-02, 2.35e-02, 2.45e-02, 7.90e-02, 2.88e-02, 3.40e-02};
832 +  Double_t cutiso_sumHyperTight4[9] = {
833 +  5.40e+00, 5.41e+00, 5.88e+00, 4.32e+00, 3.86e+00, 4.33e+00, 5.86e+00, 9.05e+00, 1.78e+00};
834 +  Double_t cutiso_sumoetHyperTight4[9] = {
835 +  2.53e+00, 2.10e+00, 1.87e+00, 1.84e+00, 1.79e+00, 1.61e+00, 2.53e+00, 1.98e+00, 2.76e+00};
836 +  Double_t cutiso_sumoetlHyperTight4[9] = {
837 +  2.28e+00, 2.02e+00, 2.04e+00, 1.69e+00, 1.65e+00, 1.61e+00, 2.03e+00, 1.82e+00, 1.35e+00};
838 +  Double_t cutseeHyperTight4[9] = {
839 +  9.99e-03, 9.61e-03, 9.65e-03, 2.75e-02, 2.61e-02, 2.64e-02, 9.18e-03, 2.44e-02, 2.58e-02};
840 +  Double_t cutseelHyperTight4[9] = {
841 +  9.66e-03, 9.69e-03, 9.58e-03, 2.73e-02, 2.66e-02, 2.66e-02, 8.64e-03, 2.46e-02, 2.50e-02};
842 +
843 +  Double_t cutdcotdist[9];
844 +  Double_t cutdetain[9];
845 +  Double_t cutdetainl[9];
846 +  Double_t cutdphiin[9];
847 +  Double_t cutdphiinl[9];
848 +  Double_t cuteseedopcor[9];
849 +  Double_t cutfmishits[9];
850 +  Double_t cuthoe[9];
851 +  Double_t cuthoel[9];
852 +  Double_t cutip_gsf[9];
853 +  Double_t cutip_gsfl[9];
854 +  Double_t cutiso_sum[9];
855 +  Double_t cutiso_sumoet[9];
856 +  Double_t cutiso_sumoetl[9];
857 +  Double_t cutsee[9];
858 +  Double_t cutseel[9];
859 +  if     (typeCuts == 0) {
860 +    memcpy(cutdcotdist   ,cutdcotdistMedium   ,sizeof(cutdcotdistMedium));
861 +    memcpy(cutdetain     ,cutdetainMedium     ,sizeof(cutdetainMedium));
862 +    memcpy(cutdetainl    ,cutdetainlMedium    ,sizeof(cutdetainlMedium));
863 +    memcpy(cutdphiin     ,cutdphiinMedium     ,sizeof(cutdphiinMedium));
864 +    memcpy(cutdphiinl    ,cutdphiinlMedium    ,sizeof(cutdphiinlMedium));
865 +    memcpy(cuteseedopcor ,cuteseedopcorMedium ,sizeof(cuteseedopcorMedium));
866 +    memcpy(cutfmishits   ,cutfmishitsMedium   ,sizeof(cutfmishitsMedium));
867 +    memcpy(cuthoe        ,cuthoeMedium        ,sizeof(cuthoeMedium));
868 +    memcpy(cuthoel       ,cuthoelMedium       ,sizeof(cuthoelMedium));
869 +    memcpy(cutip_gsf     ,cutip_gsfMedium     ,sizeof(cutip_gsfMedium));
870 +    memcpy(cutip_gsfl    ,cutip_gsflMedium    ,sizeof(cutip_gsflMedium));
871 +    memcpy(cutiso_sum    ,cutiso_sumMedium    ,sizeof(cutiso_sumMedium));
872 +    memcpy(cutiso_sumoet ,cutiso_sumoetMedium ,sizeof(cutiso_sumoetMedium));
873 +    memcpy(cutiso_sumoetl,cutiso_sumoetlMedium,sizeof(cutiso_sumoetlMedium));
874 +    memcpy(cutsee        ,cutseeMedium        ,sizeof(cutseeMedium));
875 +    memcpy(cutseel       ,cutseelMedium       ,sizeof(cutseelMedium));
876 +  }
877 +  else if(typeCuts == 1) {
878 +    memcpy(cutdcotdist   ,cutdcotdistTight   ,sizeof(cutdcotdistTight));
879 +    memcpy(cutdetain     ,cutdetainTight     ,sizeof(cutdetainTight));
880 +    memcpy(cutdetainl    ,cutdetainlTight    ,sizeof(cutdetainlTight));
881 +    memcpy(cutdphiin     ,cutdphiinTight     ,sizeof(cutdphiinTight));
882 +    memcpy(cutdphiinl    ,cutdphiinlTight    ,sizeof(cutdphiinlTight));
883 +    memcpy(cuteseedopcor ,cuteseedopcorTight ,sizeof(cuteseedopcorTight));
884 +    memcpy(cutfmishits   ,cutfmishitsTight   ,sizeof(cutfmishitsTight));
885 +    memcpy(cuthoe        ,cuthoeTight        ,sizeof(cuthoeTight));
886 +    memcpy(cuthoel       ,cuthoelTight       ,sizeof(cuthoelTight));
887 +    memcpy(cutip_gsf     ,cutip_gsfTight     ,sizeof(cutip_gsfTight));
888 +    memcpy(cutip_gsfl    ,cutip_gsflTight    ,sizeof(cutip_gsflTight));
889 +    memcpy(cutiso_sum    ,cutiso_sumTight    ,sizeof(cutiso_sumTight));
890 +    memcpy(cutiso_sumoet ,cutiso_sumoetTight ,sizeof(cutiso_sumoetTight));
891 +    memcpy(cutiso_sumoetl,cutiso_sumoetlTight,sizeof(cutiso_sumoetlTight));
892 +    memcpy(cutsee        ,cutseeTight        ,sizeof(cutseeTight));
893 +    memcpy(cutseel       ,cutseelTight       ,sizeof(cutseelTight));
894 +  }
895 +  else if(typeCuts == 2) {
896 +    memcpy(cutdcotdist   ,cutdcotdistSuperTight   ,sizeof(cutdcotdistSuperTight));
897 +    memcpy(cutdetain     ,cutdetainSuperTight     ,sizeof(cutdetainSuperTight));
898 +    memcpy(cutdetainl    ,cutdetainlSuperTight    ,sizeof(cutdetainlSuperTight));
899 +    memcpy(cutdphiin     ,cutdphiinSuperTight     ,sizeof(cutdphiinSuperTight));
900 +    memcpy(cutdphiinl    ,cutdphiinlSuperTight    ,sizeof(cutdphiinlSuperTight));
901 +    memcpy(cuteseedopcor ,cuteseedopcorSuperTight ,sizeof(cuteseedopcorSuperTight));
902 +    memcpy(cutfmishits   ,cutfmishitsSuperTight   ,sizeof(cutfmishitsSuperTight));
903 +    memcpy(cuthoe        ,cuthoeSuperTight        ,sizeof(cuthoeSuperTight));
904 +    memcpy(cuthoel       ,cuthoelSuperTight       ,sizeof(cuthoelSuperTight));
905 +    memcpy(cutip_gsf     ,cutip_gsfSuperTight     ,sizeof(cutip_gsfSuperTight));
906 +    memcpy(cutip_gsfl    ,cutip_gsflSuperTight    ,sizeof(cutip_gsflSuperTight));
907 +    memcpy(cutiso_sum    ,cutiso_sumSuperTight    ,sizeof(cutiso_sumSuperTight));
908 +    memcpy(cutiso_sumoet ,cutiso_sumoetSuperTight ,sizeof(cutiso_sumoetSuperTight));
909 +    memcpy(cutiso_sumoetl,cutiso_sumoetlSuperTight,sizeof(cutiso_sumoetlSuperTight));
910 +    memcpy(cutsee        ,cutseeSuperTight        ,sizeof(cutseeSuperTight));
911 +    memcpy(cutseel       ,cutseelSuperTight       ,sizeof(cutseelSuperTight));
912 +  }
913 +  else if(typeCuts == 3) {
914 +    memcpy(cutdcotdist   ,cutdcotdistHyperTight1   ,sizeof(cutdcotdistHyperTight1));
915 +    memcpy(cutdetain     ,cutdetainHyperTight1     ,sizeof(cutdetainHyperTight1));
916 +    memcpy(cutdetainl    ,cutdetainlHyperTight1    ,sizeof(cutdetainlHyperTight1));
917 +    memcpy(cutdphiin     ,cutdphiinHyperTight1     ,sizeof(cutdphiinHyperTight1));
918 +    memcpy(cutdphiinl    ,cutdphiinlHyperTight1    ,sizeof(cutdphiinlHyperTight1));
919 +    memcpy(cuteseedopcor ,cuteseedopcorHyperTight1 ,sizeof(cuteseedopcorHyperTight1));
920 +    memcpy(cutfmishits   ,cutfmishitsHyperTight1   ,sizeof(cutfmishitsHyperTight1));
921 +    memcpy(cuthoe        ,cuthoeHyperTight1       ,sizeof(cuthoeHyperTight1));
922 +    memcpy(cuthoel       ,cuthoelHyperTight1      ,sizeof(cuthoelHyperTight1));
923 +    memcpy(cutip_gsf     ,cutip_gsfHyperTight1     ,sizeof(cutip_gsfHyperTight1));
924 +    memcpy(cutip_gsfl    ,cutip_gsflHyperTight1    ,sizeof(cutip_gsflHyperTight1));
925 +    memcpy(cutiso_sum    ,cutiso_sumHyperTight1    ,sizeof(cutiso_sumHyperTight1));
926 +    memcpy(cutiso_sumoet ,cutiso_sumoetHyperTight1 ,sizeof(cutiso_sumoetHyperTight1));
927 +    memcpy(cutiso_sumoetl,cutiso_sumoetlHyperTight1,sizeof(cutiso_sumoetlHyperTight1));
928 +    memcpy(cutsee        ,cutseeHyperTight1       ,sizeof(cutseeHyperTight1));
929 +    memcpy(cutseel       ,cutseelHyperTight1      ,sizeof(cutseelHyperTight1));
930 +  }
931 +  else if(typeCuts == 4) {
932 +    memcpy(cutdcotdist   ,cutdcotdistHyperTight2   ,sizeof(cutdcotdistHyperTight2));
933 +    memcpy(cutdetain     ,cutdetainHyperTight2     ,sizeof(cutdetainHyperTight2));
934 +    memcpy(cutdetainl    ,cutdetainlHyperTight2    ,sizeof(cutdetainlHyperTight2));
935 +    memcpy(cutdphiin     ,cutdphiinHyperTight2     ,sizeof(cutdphiinHyperTight2));
936 +    memcpy(cutdphiinl    ,cutdphiinlHyperTight2    ,sizeof(cutdphiinlHyperTight2));
937 +    memcpy(cuteseedopcor ,cuteseedopcorHyperTight2 ,sizeof(cuteseedopcorHyperTight2));
938 +    memcpy(cutfmishits   ,cutfmishitsHyperTight2   ,sizeof(cutfmishitsHyperTight2));
939 +    memcpy(cuthoe        ,cuthoeHyperTight2       ,sizeof(cuthoeHyperTight2));
940 +    memcpy(cuthoel       ,cuthoelHyperTight2      ,sizeof(cuthoelHyperTight2));
941 +    memcpy(cutip_gsf     ,cutip_gsfHyperTight2     ,sizeof(cutip_gsfHyperTight2));
942 +    memcpy(cutip_gsfl    ,cutip_gsflHyperTight2    ,sizeof(cutip_gsflHyperTight2));
943 +    memcpy(cutiso_sum    ,cutiso_sumHyperTight2    ,sizeof(cutiso_sumHyperTight2));
944 +    memcpy(cutiso_sumoet ,cutiso_sumoetHyperTight2 ,sizeof(cutiso_sumoetHyperTight2));
945 +    memcpy(cutiso_sumoetl,cutiso_sumoetlHyperTight2,sizeof(cutiso_sumoetlHyperTight2));
946 +    memcpy(cutsee        ,cutseeHyperTight2       ,sizeof(cutseeHyperTight2));
947 +    memcpy(cutseel       ,cutseelHyperTight2      ,sizeof(cutseelHyperTight2));
948 +  }
949 +  else if(typeCuts == 5) {
950 +    memcpy(cutdcotdist   ,cutdcotdistHyperTight3   ,sizeof(cutdcotdistHyperTight3));
951 +    memcpy(cutdetain     ,cutdetainHyperTight3     ,sizeof(cutdetainHyperTight3));
952 +    memcpy(cutdetainl    ,cutdetainlHyperTight3    ,sizeof(cutdetainlHyperTight3));
953 +    memcpy(cutdphiin     ,cutdphiinHyperTight3     ,sizeof(cutdphiinHyperTight3));
954 +    memcpy(cutdphiinl    ,cutdphiinlHyperTight3    ,sizeof(cutdphiinlHyperTight3));
955 +    memcpy(cuteseedopcor ,cuteseedopcorHyperTight3 ,sizeof(cuteseedopcorHyperTight3));
956 +    memcpy(cutfmishits   ,cutfmishitsHyperTight3   ,sizeof(cutfmishitsHyperTight3));
957 +    memcpy(cuthoe        ,cuthoeHyperTight3       ,sizeof(cuthoeHyperTight3));
958 +    memcpy(cuthoel       ,cuthoelHyperTight3      ,sizeof(cuthoelHyperTight3));
959 +    memcpy(cutip_gsf     ,cutip_gsfHyperTight3     ,sizeof(cutip_gsfHyperTight3));
960 +    memcpy(cutip_gsfl    ,cutip_gsflHyperTight3    ,sizeof(cutip_gsflHyperTight3));
961 +    memcpy(cutiso_sum    ,cutiso_sumHyperTight3    ,sizeof(cutiso_sumHyperTight3));
962 +    memcpy(cutiso_sumoet ,cutiso_sumoetHyperTight3 ,sizeof(cutiso_sumoetHyperTight3));
963 +    memcpy(cutiso_sumoetl,cutiso_sumoetlHyperTight3,sizeof(cutiso_sumoetlHyperTight3));
964 +    memcpy(cutsee        ,cutseeHyperTight3       ,sizeof(cutseeHyperTight3));
965 +    memcpy(cutseel       ,cutseelHyperTight3      ,sizeof(cutseelHyperTight3));
966 +  }
967 +  else if(typeCuts == 6) {
968 +    memcpy(cutdcotdist   ,cutdcotdistHyperTight4   ,sizeof(cutdcotdistHyperTight4));
969 +    memcpy(cutdetain     ,cutdetainHyperTight4     ,sizeof(cutdetainHyperTight4));
970 +    memcpy(cutdetainl    ,cutdetainlHyperTight4    ,sizeof(cutdetainlHyperTight4));
971 +    memcpy(cutdphiin     ,cutdphiinHyperTight4     ,sizeof(cutdphiinHyperTight4));
972 +    memcpy(cutdphiinl    ,cutdphiinlHyperTight4    ,sizeof(cutdphiinlHyperTight4));
973 +    memcpy(cuteseedopcor ,cuteseedopcorHyperTight4 ,sizeof(cuteseedopcorHyperTight4));
974 +    memcpy(cutfmishits   ,cutfmishitsHyperTight4   ,sizeof(cutfmishitsHyperTight4));
975 +    memcpy(cuthoe        ,cuthoeHyperTight4       ,sizeof(cuthoeHyperTight4));
976 +    memcpy(cuthoel       ,cuthoelHyperTight4      ,sizeof(cuthoelHyperTight4));
977 +    memcpy(cutip_gsf     ,cutip_gsfHyperTight4     ,sizeof(cutip_gsfHyperTight4));
978 +    memcpy(cutip_gsfl    ,cutip_gsflHyperTight4    ,sizeof(cutip_gsflHyperTight4));
979 +    memcpy(cutiso_sum    ,cutiso_sumHyperTight4    ,sizeof(cutiso_sumHyperTight4));
980 +    memcpy(cutiso_sumoet ,cutiso_sumoetHyperTight4 ,sizeof(cutiso_sumoetHyperTight4));
981 +    memcpy(cutiso_sumoetl,cutiso_sumoetlHyperTight4,sizeof(cutiso_sumoetlHyperTight4));
982 +    memcpy(cutsee        ,cutseeHyperTight4       ,sizeof(cutseeHyperTight4));
983 +    memcpy(cutseel       ,cutseelHyperTight4      ,sizeof(cutseelHyperTight4));
984 +  }
985 +  else {
986 +    return 0;
987 +  }
988 +  int result = 0;
989 +  
990 +  const int ncuts = 10;
991 +  std::vector<bool> cut_results(ncuts, false);
992 +  
993 +  float iso_sum = tkIso + ecalIso + hcalIso;
994 +  if(fabs(scEta)>1.5)
995 +    iso_sum += (fabs(scEta)-1.5)*1.09;
996 +  
997 +  float iso_sumoet = iso_sum*(40./scEt);
998 +  
999 +  float eseedopincor = eSeedOverPin + fBrem;
1000 +  if(fBrem < 0)
1001 +    eseedopincor = eSeedOverPin;
1002 +
1003 +  float dist = (TMath::Abs(ele->ConvPartnerDist())      == -9999.? 9999:TMath::Abs(ele->ConvPartnerDist()));
1004 +  float dcot = (TMath::Abs(ele->ConvPartnerDCotTheta()) == -9999.? 9999:TMath::Abs(ele->ConvPartnerDCotTheta()));
1005 +
1006 +  float dcotdistcomb = ((0.04 - std::max(dist, dcot)) > 0?(0.04 - std::max(dist, dcot)):0);
1007 +
1008 +  Double_t ip = 99999;
1009 +  for(UInt_t i0 = 0; i0 < vertices->GetEntries(); i0++) {
1010 +    if(vertices->At(i0)->NTracks() > 0){
1011 +      Double_t pD0 = ele->GsfTrk()->D0Corrected(*vertices->At(i0));
1012 +      ip = TMath::Abs(pD0);
1013 +      break;
1014 +    }
1015 +  }
1016 +
1017 +  for (int cut=0; cut<ncuts; cut++) {
1018 +    switch (cut) {
1019 +    case 0:
1020 +      cut_results[cut] = compute_cut(fabs(deltaEtaIn), scEt, cutdetainl[cat], cutdetain[cat]);
1021 +      break;
1022 +    case 1:
1023 +      cut_results[cut] = compute_cut(fabs(deltaPhiIn), scEt, cutdphiinl[cat], cutdphiin[cat]);
1024 +      break;
1025 +    case 2:
1026 +      cut_results[cut] = (eseedopincor > cuteseedopcor[cat]);
1027 +      break;
1028 +    case 3:
1029 +      cut_results[cut] = compute_cut(hOverE, scEt, cuthoel[cat], cuthoe[cat]);
1030 +      break;
1031 +    case 4:
1032 +      cut_results[cut] = compute_cut(sigmaee, scEt, cutseel[cat], cutsee[cat]);
1033 +      break;
1034 +    case 5:
1035 +      cut_results[cut] = compute_cut(iso_sumoet, scEt, cutiso_sumoetl[cat], cutiso_sumoet[cat]);
1036 +      break;
1037 +    case 6:
1038 +      cut_results[cut] = (iso_sum < cutiso_sum[cat]);
1039 +      break;
1040 +    case 7:
1041 +      cut_results[cut] = compute_cut(fabs(ip), scEt, cutip_gsfl[cat], cutip_gsf[cat]);
1042 +      break;
1043 +    case 8:
1044 +      cut_results[cut] = (mishits < cutfmishits[cat]);
1045 +      break;
1046 +    case 9:
1047 +      cut_results[cut] = (dcotdistcomb < cutdcotdist[cat]);
1048 +      break;
1049 +    }
1050 +  }
1051 +  
1052 +  // ID part
1053 +  if (cut_results[0] & cut_results[1] & cut_results[2] & cut_results[3] & cut_results[4])
1054 +    result = result + 1;
1055 +  
1056 +  // ISO part
1057 +  if (cut_results[5] & cut_results[6])
1058 +    result = result + 2;
1059 +  
1060 +  // IP part
1061 +  if (cut_results[7])
1062 +    result = result + 8;
1063 +  
1064 +  // Conversion part
1065 +  if (cut_results[8] and cut_results[9])
1066 +    result = result + 4;
1067 +  
1068 +  return result;
1069 + }
1070 +
1071 + //--------------------------------------------------------------------------------------------------
1072 + bool ElectronTools::compute_cut(double x, double et, double cut_min, double cut_max, bool gtn) {
1073 +
1074 +  float et_min = 10;
1075 +  float et_max = 40;
1076 +
1077 +  bool accept = false;
1078 +  float cut = cut_max; //  the cut at et=40 GeV
1079 +
1080 +  if(et < et_max) {
1081 +    cut = cut_min + (1/et_min - 1/et)*(cut_max - cut_min)/(1/et_min - 1/et_max);
1082 +  }
1083 +  
1084 +  if(et < et_min) {
1085 +    cut = cut_min;
1086 +  }
1087 +
1088 +  if(gtn) {   // useful for e/p cut which is gt
1089 +    accept = (x >= cut);
1090 +  }
1091 +  else {
1092 +    accept = (x <= cut);
1093 +  }
1094 +
1095 +  return accept;
1096 + }
1097 +
1098 + //--------------------------------------------------------------------------------------------------
1099 + Double_t ElectronTools::Likelihood(ElectronLikelihood *LH, const Electron *ele)
1100 + {
1101 +  if (!LH) {
1102 +    std::cout << "Error: Likelihood not properly initialized\n";
1103 +    return -9999;
1104 +  }
1105 +
1106 +  LikelihoodMeasurements measurements;
1107 +  measurements.pt = ele->Pt();
1108 +  if (ele->IsEB() && ele->AbsEta()<1.0) measurements.subdet = 0;
1109 +  else if (ele->IsEB())                 measurements.subdet = 1;
1110 +  else                                  measurements.subdet = 2;
1111 +  measurements.deltaPhi = TMath::Abs(ele->DeltaPhiSuperClusterTrackAtVtx());
1112 +  measurements.deltaEta = TMath::Abs(ele->DeltaEtaSuperClusterTrackAtVtx());
1113 +  measurements.eSeedClusterOverPout = ele->ESeedClusterOverPout();
1114 +  measurements.eSuperClusterOverP = ele->ESuperClusterOverP();
1115 +  measurements.hadronicOverEm = ele->HadronicOverEm();
1116 +  measurements.sigmaIEtaIEta = ele->CoviEtaiEta();
1117 +  measurements.sigmaIPhiIPhi = TMath::Sqrt(ele->SCluster()->Seed()->CoviPhiiPhi());
1118 +  measurements.fBrem = ele->FBrem();
1119 +  measurements.nBremClusters = ele->NumberOfClusters() - 1;
1120 +  //measurements.OneOverEMinusOneOverP = (1.0 / ele->SCluster()->Energy()) - (1.0 / ele->BestTrk()->P());
1121 +  measurements.OneOverEMinusOneOverP = (1.0 / ele->ESuperClusterOverP() / ele->BestTrk()->P()) - (1.0 / ele->BestTrk()->P());
1122 +  double likelihood = LH->result(measurements);
1123 +
1124 +  double newLik = 0.0;
1125 +  if     (likelihood<=0) newLik = -20.0;
1126 +  else if(likelihood>=1) newLik =  20.0;
1127 +  else                   newLik = log(likelihood/(1.0-likelihood));
1128 +
1129 +  Bool_t isDebug = kFALSE;
1130 +  if(isDebug == kTRUE){
1131 +    printf("LIKELIHOOD: %f %d %f %f %f %f %f %f %f %f %d %f %f %f - %f %f\n",measurements.pt,measurements.subdet,
1132 +    measurements.deltaPhi          ,measurements.deltaEta      ,measurements.eSeedClusterOverPout,
1133 +    measurements.eSuperClusterOverP,measurements.hadronicOverEm,measurements.sigmaIEtaIEta,
1134 +    measurements.sigmaIPhiIPhi     ,measurements.fBrem         ,measurements.nBremClusters,
1135 +    measurements.OneOverEMinusOneOverP,ele->SCluster()->Energy(),ele->BestTrk()->P(),
1136 +    likelihood,newLik);
1137 +  }
1138 +
1139 +  return newLik;
1140 +
1141 + }
1142 +
1143 + Double_t ElectronTools::ElectronEffectiveArea(EElectronEffectiveAreaType type, Double_t SCEta, EElectronEffectiveAreaTarget EffectiveAreaTarget) {
1144 +
1145 +  Double_t EffectiveArea = 0;
1146 +  
1147 +  if(type == ElectronTools::kEleNeutralIso04){
1148 +    if     (fabs(SCEta) < 1.0                           ) EffectiveArea = 0.19;
1149 +    else if(fabs(SCEta) >= 1.0   && fabs(SCEta) < 1.479 ) EffectiveArea = 0.25;
1150 +    else if(fabs(SCEta) >= 1.479 && fabs(SCEta) < 2.000 ) EffectiveArea = 0.12;
1151 +    else if(fabs(SCEta) >= 2.000 && fabs(SCEta) < 2.200 ) EffectiveArea = 0.21;
1152 +    else if(fabs(SCEta) >= 2.200 && fabs(SCEta) < 2.300 ) EffectiveArea = 0.27;
1153 +    else if(fabs(SCEta) >= 2.300 && fabs(SCEta) < 2.400 ) EffectiveArea = 0.44;
1154 +    else                                                  EffectiveArea = 0.52;
1155 +    return EffectiveArea;
1156 +  }
1157 +
1158 +  if (fabs(SCEta) < 1.0) {
1159 +    if (type == ElectronTools::kEleChargedIso03) EffectiveArea = 0.000;
1160 +    if (type == ElectronTools::kEleNeutralHadronIso03) EffectiveArea = 0.017;
1161 +    if (type == ElectronTools::kEleGammaIso03) EffectiveArea = 0.045;
1162 +    if (type == ElectronTools::kEleGammaIsoVetoEtaStrip03) EffectiveArea = 0.014;
1163 +    if (type == ElectronTools::kEleChargedIso04) EffectiveArea = 0.000;
1164 +    if (type == ElectronTools::kEleNeutralHadronIso04) EffectiveArea = 0.034;
1165 +    if (type == ElectronTools::kEleGammaIso04) EffectiveArea = 0.079;
1166 +    if (type == ElectronTools::kEleGammaIsoVetoEtaStrip04) EffectiveArea = 0.014;
1167 +    if (type == ElectronTools::kEleNeutralHadronIso007) EffectiveArea = 0.000;
1168 +    if (type == ElectronTools::kEleHoverE) EffectiveArea = 0.00016;
1169 +    if (type == ElectronTools::kEleHcalDepth1OverEcal) EffectiveArea = 0.00016;
1170 +    if (type == ElectronTools::kEleHcalDepth2OverEcal) EffectiveArea = 0.00000;    
1171 +  } else if (fabs(SCEta) >= 1.0 && fabs(SCEta) < 1.479 ) {
1172 +    if (type == ElectronTools::kEleChargedIso03) EffectiveArea = 0.000;
1173 +    if (type == ElectronTools::kEleNeutralHadronIso03) EffectiveArea = 0.025;
1174 +    if (type == ElectronTools::kEleGammaIso03) EffectiveArea = 0.052;
1175 +    if (type == ElectronTools::kEleGammaIsoVetoEtaStrip03) EffectiveArea = 0.030;
1176 +    if (type == ElectronTools::kEleChargedIso04) EffectiveArea = 0.000;
1177 +    if (type == ElectronTools::kEleNeutralHadronIso04) EffectiveArea = 0.050;
1178 +    if (type == ElectronTools::kEleGammaIso04) EffectiveArea = 0.073;
1179 +    if (type == ElectronTools::kEleGammaIsoVetoEtaStrip04) EffectiveArea = 0.030;
1180 +    if (type == ElectronTools::kEleNeutralHadronIso007) EffectiveArea = 0.000;
1181 +    if (type == ElectronTools::kEleHoverE) EffectiveArea = 0.00022;
1182 +    if (type == ElectronTools::kEleHcalDepth1OverEcal) EffectiveArea = 0.00022;
1183 +    if (type == ElectronTools::kEleHcalDepth2OverEcal) EffectiveArea = 0.00000;    
1184 +  } else if (fabs(SCEta) >= 1.479 && fabs(SCEta) < 2.0 ) {
1185 +    if (type == ElectronTools::kEleChargedIso03) EffectiveArea = 0.000;
1186 +    if (type == ElectronTools::kEleNeutralHadronIso03) EffectiveArea = 0.030;
1187 +    if (type == ElectronTools::kEleGammaIso03) EffectiveArea = 0.170;
1188 +    if (type == ElectronTools::kEleGammaIsoVetoEtaStrip03) EffectiveArea = 0.134;
1189 +    if (type == ElectronTools::kEleChargedIso04) EffectiveArea = 0.000;
1190 +    if (type == ElectronTools::kEleNeutralHadronIso04) EffectiveArea = 0.060;
1191 +    if (type == ElectronTools::kEleGammaIso04) EffectiveArea = 0.187;
1192 +    if (type == ElectronTools::kEleGammaIsoVetoEtaStrip04) EffectiveArea = 0.134;
1193 +    if (type == ElectronTools::kEleNeutralHadronIso007) EffectiveArea = 0.000;
1194 +    if (type == ElectronTools::kEleHoverE) EffectiveArea = 0.00030;
1195 +    if (type == ElectronTools::kEleHcalDepth1OverEcal) EffectiveArea = 0.00026;
1196 +    if (type == ElectronTools::kEleHcalDepth2OverEcal) EffectiveArea = 0.00002;        
1197 +  } else if (fabs(SCEta) >= 2.0 && fabs(SCEta) < 2.25 ) {
1198 +    if (type == ElectronTools::kEleChargedIso03) EffectiveArea = 0.000;
1199 +    if (type == ElectronTools::kEleNeutralHadronIso03) EffectiveArea = 0.022;
1200 +    if (type == ElectronTools::kEleGammaIso03) EffectiveArea = 0.623;
1201 +    if (type == ElectronTools::kEleGammaIsoVetoEtaStrip03) EffectiveArea = 0.516;
1202 +    if (type == ElectronTools::kEleChargedIso04) EffectiveArea = 0.000;
1203 +    if (type == ElectronTools::kEleNeutralHadronIso04) EffectiveArea = 0.055;
1204 +    if (type == ElectronTools::kEleGammaIso04) EffectiveArea = 0.659;
1205 +    if (type == ElectronTools::kEleGammaIsoVetoEtaStrip04) EffectiveArea = 0.517;
1206 +    if (type == ElectronTools::kEleNeutralHadronIso007) EffectiveArea = 0.000;
1207 +    if (type == ElectronTools::kEleHoverE) EffectiveArea = 0.00054;
1208 +    if (type == ElectronTools::kEleHcalDepth1OverEcal) EffectiveArea = 0.00045;
1209 +    if (type == ElectronTools::kEleHcalDepth2OverEcal) EffectiveArea = 0.00003;
1210 +  } else if (fabs(SCEta) >= 2.25 && fabs(SCEta) < 2.5 ) {
1211 +    if (type == ElectronTools::kEleChargedIso03) EffectiveArea = 0.000;
1212 +    if (type == ElectronTools::kEleNeutralHadronIso03) EffectiveArea = 0.018;
1213 +    if (type == ElectronTools::kEleGammaIso03) EffectiveArea = 1.198;
1214 +    if (type == ElectronTools::kEleGammaIsoVetoEtaStrip03) EffectiveArea = 1.049;
1215 +    if (type == ElectronTools::kEleChargedIso04) EffectiveArea = 0.000;
1216 +    if (type == ElectronTools::kEleNeutralHadronIso04) EffectiveArea = 0.073;
1217 +    if (type == ElectronTools::kEleGammaIso04) EffectiveArea = 1.258;
1218 +    if (type == ElectronTools::kEleGammaIsoVetoEtaStrip04) EffectiveArea = 1.051;
1219 +    if (type == ElectronTools::kEleNeutralHadronIso007) EffectiveArea = 0.000;
1220 +    if (type == ElectronTools::kEleHoverE) EffectiveArea = 0.00082;
1221 +    if (type == ElectronTools::kEleHcalDepth1OverEcal) EffectiveArea = 0.00066;
1222 +    if (type == ElectronTools::kEleHcalDepth2OverEcal) EffectiveArea = 0.00004;
1223 +  }
1224 +    
1225 +  //NoCorrections
1226 +  if (EffectiveAreaTarget == kEleEANoCorr) {
1227 +    return 0.0;
1228 +  }
1229 +  else if (EffectiveAreaTarget == kEleEAData2012) {
1230 +    if (type == kEleGammaIso03) {
1231 +      if (fabs(SCEta) >= 0.0 && fabs(SCEta) < 1.0 ) EffectiveArea = 0.122;
1232 +      if (fabs(SCEta) >= 1.0 && fabs(SCEta) < 1.479 ) EffectiveArea = 0.147;
1233 +      if (fabs(SCEta) >= 1.479 && fabs(SCEta) < 2.0 ) EffectiveArea = 0.055;
1234 +      if (fabs(SCEta) >= 2.0 && fabs(SCEta) < 2.2 ) EffectiveArea = 0.106;
1235 +      if (fabs(SCEta) >= 2.2 && fabs(SCEta) < 2.3 ) EffectiveArea = 0.138;
1236 +      if (fabs(SCEta) >= 2.3 && fabs(SCEta) < 2.4 ) EffectiveArea = 0.221;
1237 +      if (fabs(SCEta) >= 2.4 ) EffectiveArea = 0.211;
1238 +    }
1239 +    if (type == kEleGammaIso04) {
1240 +      if (fabs(SCEta) >= 0.0 && fabs(SCEta) < 1.0 ) EffectiveArea = 0.176;
1241 +      if (fabs(SCEta) >= 1.0 && fabs(SCEta) < 1.479 ) EffectiveArea = 0.206;
1242 +      if (fabs(SCEta) >= 1.479 && fabs(SCEta) < 2.0 ) EffectiveArea = 0.094;
1243 +      if (fabs(SCEta) >= 2.2 && fabs(SCEta) < 2.2 ) EffectiveArea = 0.172;
1244 +      if (fabs(SCEta) >= 2.3 && fabs(SCEta) < 2.3 ) EffectiveArea = 0.244;
1245 +      if (fabs(SCEta) >= 2.4 && fabs(SCEta) < 2.4 ) EffectiveArea = 0.333;
1246 +      if (fabs(SCEta) >= 2.4 ) EffectiveArea = 0.348;
1247 +    }
1248 +    if (type == kEleNeutralHadronIso03) {
1249 +      if (fabs(SCEta) >= 0.0 && fabs(SCEta) < 1.0 ) EffectiveArea = 0.013;
1250 +      if (fabs(SCEta) >= 1.0 && fabs(SCEta) < 1.479 ) EffectiveArea = 0.021;
1251 +      if (fabs(SCEta) >= 1.479 && fabs(SCEta) < 2.0 ) EffectiveArea = 0.013;
1252 +      if (fabs(SCEta) >= 2.0 && fabs(SCEta) < 2.2 ) EffectiveArea = 0.010;
1253 +      if (fabs(SCEta) >= 2.2 && fabs(SCEta) < 2.3 ) EffectiveArea = 0.024;
1254 +      if (fabs(SCEta) >= 2.3 && fabs(SCEta) < 2.4 ) EffectiveArea = 0.020;
1255 +      if (fabs(SCEta) >= 2.4 ) EffectiveArea = 0.019;
1256 +    }
1257 +    if (type == kEleNeutralHadronIso04) {
1258 +      if (fabs(SCEta) >= 0.0 && fabs(SCEta) < 1.0 ) EffectiveArea = 0.022;
1259 +      if (fabs(SCEta) >= 1.0 && fabs(SCEta) < 1.479 ) EffectiveArea = 0.036;
1260 +      if (fabs(SCEta) >= 1.479 && fabs(SCEta) < 2.0 ) EffectiveArea = 0.027;
1261 +      if (fabs(SCEta) >= 2.0 && fabs(SCEta) < 2.2 ) EffectiveArea = 0.028;
1262 +      if (fabs(SCEta) >= 2.2 && fabs(SCEta) < 2.3 ) EffectiveArea = 0.052;
1263 +      if (fabs(SCEta) >= 2.3 && fabs(SCEta) < 2.4 ) EffectiveArea = 0.063;
1264 +      if (fabs(SCEta) >= 2.4 ) EffectiveArea = 0.028;
1265 +    }
1266 +    if (type == kEleGammaAndNeutralHadronIso04) {
1267 +      if (fabs(SCEta) >= 0.0 && fabs(SCEta) < 1.0 ) EffectiveArea = 0.19;
1268 +      if (fabs(SCEta) >= 1.0 && fabs(SCEta) < 1.479 ) EffectiveArea = 0.25;
1269 +      if (fabs(SCEta) >= 1.479 && fabs(SCEta) < 2.0 ) EffectiveArea = 0.12;
1270 +      if (fabs(SCEta) >= 2.0 && fabs(SCEta) < 2.2 ) EffectiveArea = 0.21;
1271 +      if (fabs(SCEta) >= 2.2 && fabs(SCEta) < 2.3 ) EffectiveArea = 0.27;
1272 +      if (fabs(SCEta) >= 2.3 && fabs(SCEta) < 2.4 ) EffectiveArea = 0.44;
1273 +      if (fabs(SCEta) >= 2.4) EffectiveArea = 0.52;
1274 +    }                          
1275 +    if (type == kEleGammaIsoDR0p0To0p1) {
1276 +      if (fabs(SCEta) >= 0.0 && fabs(SCEta) < 1.0 ) EffectiveArea = 0.051;
1277 +      if (fabs(SCEta) >= 1.0 && fabs(SCEta) < 1.479 ) EffectiveArea = 0.032;
1278 +      if (fabs(SCEta) >= 1.479 && fabs(SCEta) < 2.0 ) EffectiveArea = 0.006;
1279 +      if (fabs(SCEta) >= 2.0 && fabs(SCEta) < 2.2 ) EffectiveArea = 0.007;
1280 +      if (fabs(SCEta) >= 2.2 && fabs(SCEta) < 2.3 ) EffectiveArea = 0.024;
1281 +      if (fabs(SCEta) >= 2.3 && fabs(SCEta) < 2.4 ) EffectiveArea = 0.013;
1282 +      if (fabs(SCEta) >= 2.4) EffectiveArea = 0.013;
1283 +    }
1284 +    if (type == kEleGammaIsoDR0p1To0p2) {
1285 +      if (fabs(SCEta) >= 0.0 && fabs(SCEta) < 1.0 ) EffectiveArea = 0.013;
1286 +      if (fabs(SCEta) >= 1.0 && fabs(SCEta) < 1.479 ) EffectiveArea = 0.013;
1287 +      if (fabs(SCEta) >= 1.479 && fabs(SCEta) < 2.0 ) EffectiveArea = 0.021;
1288 +      if (fabs(SCEta) >= 2.0 && fabs(SCEta) < 2.2 ) EffectiveArea = 0.052;
1289 +      if (fabs(SCEta) >= 2.2 && fabs(SCEta) < 2.3 ) EffectiveArea = 0.066;
1290 +      if (fabs(SCEta) >= 2.3 && fabs(SCEta) < 2.4 ) EffectiveArea = 0.043;
1291 +      if (fabs(SCEta) >= 2.4) EffectiveArea = 0.102;
1292 +    }
1293 +    if (type == kEleGammaIsoDR0p2To0p3) {
1294 +      if (fabs(SCEta) >= 0.0 && fabs(SCEta) < 1.0 ) EffectiveArea = 0.026;
1295 +      if (fabs(SCEta) >= 1.0 && fabs(SCEta) < 1.479 ) EffectiveArea = 0.017;
1296 +      if (fabs(SCEta) >= 1.479 && fabs(SCEta) < 2.0 ) EffectiveArea = 0.012;
1297 +      if (fabs(SCEta) >= 2.0 && fabs(SCEta) < 2.2 ) EffectiveArea = 0.028;
1298 +      if (fabs(SCEta) >= 2.2 && fabs(SCEta) < 2.3 ) EffectiveArea = 0.041;
1299 +      if (fabs(SCEta) >= 2.3 && fabs(SCEta) < 2.4 ) EffectiveArea = 0.034;
1300 +      if (fabs(SCEta) >= 2.4) EffectiveArea = 0.042;
1301 +    }
1302 +    if (type == kEleGammaIsoDR0p3To0p4) {
1303 +      if (fabs(SCEta) >= 0.0 && fabs(SCEta) < 1.0 ) EffectiveArea = 0.039;
1304 +      if (fabs(SCEta) >= 1.0 && fabs(SCEta) < 1.479 ) EffectiveArea = 0.032;
1305 +      if (fabs(SCEta) >= 1.479 && fabs(SCEta) < 2.0 ) EffectiveArea = 0.017;
1306 +      if (fabs(SCEta) >= 2.0 && fabs(SCEta) < 2.2 ) EffectiveArea = 0.024;
1307 +      if (fabs(SCEta) >= 2.2 && fabs(SCEta) < 2.3 ) EffectiveArea = 0.053;
1308 +      if (fabs(SCEta) >= 2.3 && fabs(SCEta) < 2.4 ) EffectiveArea = 0.059;
1309 +      if (fabs(SCEta) >= 2.4) EffectiveArea = 0.069;
1310 +    }
1311 +    if (type == kEleGammaIsoDR0p4To0p5) {
1312 +      if (fabs(SCEta) >= 0.0 && fabs(SCEta) < 1.0 ) EffectiveArea = 0.059;
1313 +      if (fabs(SCEta) >= 1.0 && fabs(SCEta) < 1.479 ) EffectiveArea = 0.045;
1314 +      if (fabs(SCEta) >= 1.479 && fabs(SCEta) < 2.0 ) EffectiveArea = 0.033;
1315 +     if (fabs(SCEta) >= 2.0 && fabs(SCEta) < 2.2 ) EffectiveArea = 0.043;
1316 +      if (fabs(SCEta) >= 2.2 && fabs(SCEta) < 2.3 ) EffectiveArea = 0.056;
1317 +      if (fabs(SCEta) >= 2.3 && fabs(SCEta) < 2.4 ) EffectiveArea = 0.065;
1318 +      if (fabs(SCEta) >= 2.4) EffectiveArea = 0.074;
1319 +    }
1320 +    if (type == kEleNeutralHadronIsoDR0p0To0p1) {
1321 +      if (fabs(SCEta) >= 0.0 && fabs(SCEta) < 1.0 ) EffectiveArea = 0.001;
1322 +      if (fabs(SCEta) >= 1.0 && fabs(SCEta) < 1.479 ) EffectiveArea = 0.006;
1323 +      if (fabs(SCEta) >= 1.479 && fabs(SCEta) < 2.0 ) EffectiveArea = 0.001;
1324 +      if (fabs(SCEta) >= 2.0 && fabs(SCEta) < 2.2 ) EffectiveArea = 0.000;
1325 +      if (fabs(SCEta) >= 2.2 && fabs(SCEta) < 2.3 ) EffectiveArea = 0.001;
1326 +      if (fabs(SCEta) >= 2.3 && fabs(SCEta) < 2.4 ) EffectiveArea = 0.003;
1327 +      if (fabs(SCEta) >= 2.4) EffectiveArea = 0.008;
1328 +    }
1329 +    if (type == kEleNeutralHadronIsoDR0p1To0p2) {
1330 +      if (fabs(SCEta) >= 0.0 && fabs(SCEta) < 1.0 ) EffectiveArea = 0.002;
1331 +      if (fabs(SCEta) >= 1.0 && fabs(SCEta) < 1.479 ) EffectiveArea = 0.001;
1332 +      if (fabs(SCEta) >= 1.479 && fabs(SCEta) < 2.0 ) EffectiveArea = 0.004;
1333 +      if (fabs(SCEta) >= 2.0 && fabs(SCEta) < 2.2 ) EffectiveArea = 0.003;
1334 +      if (fabs(SCEta) >= 2.2 && fabs(SCEta) < 2.3 ) EffectiveArea = 0.005;
1335 +      if (fabs(SCEta) >= 2.3 && fabs(SCEta) < 2.4 ) EffectiveArea = 0.006;
1336 +      if (fabs(SCEta) >= 2.4) EffectiveArea = 0.010;
1337 +    }
1338 +    if (type == kEleNeutralHadronIsoDR0p2To0p3) {
1339 +      if (fabs(SCEta) >= 0.0 && fabs(SCEta) < 1.0 ) EffectiveArea = 0.007;
1340 +      if (fabs(SCEta) >= 1.0 && fabs(SCEta) < 1.479 ) EffectiveArea = 0.010;
1341 +      if (fabs(SCEta) >= 1.479 && fabs(SCEta) < 2.0 ) EffectiveArea = 0.009;
1342 +      if (fabs(SCEta) >= 2.0 && fabs(SCEta) < 2.2 ) EffectiveArea = 0.009;
1343 +      if (fabs(SCEta) >= 2.2 && fabs(SCEta) < 2.3 ) EffectiveArea = 0.007;
1344 +      if (fabs(SCEta) >= 2.3 && fabs(SCEta) < 2.4 ) EffectiveArea = 0.018;
1345 +      if (fabs(SCEta) >= 2.4) EffectiveArea = 0.028;
1346 +    }
1347 +    if (type == kEleNeutralHadronIsoDR0p3To0p4) {
1348 +      if (fabs(SCEta) >= 0.0 && fabs(SCEta) < 1.0 ) EffectiveArea = 0.010;
1349 +      if (fabs(SCEta) >= 1.0 && fabs(SCEta) < 1.479 ) EffectiveArea = 0.011;
1350 +      if (fabs(SCEta) >= 1.479 && fabs(SCEta) < 2.0 ) EffectiveArea = 0.012;
1351 +      if (fabs(SCEta) >= 2.0 && fabs(SCEta) < 2.2 ) EffectiveArea = 0.008;
1352 +      if (fabs(SCEta) >= 2.2 && fabs(SCEta) < 2.3 ) EffectiveArea = 0.018;
1353 +      if (fabs(SCEta) >= 2.3 && fabs(SCEta) < 2.4 ) EffectiveArea = 0.026;
1354 +      if (fabs(SCEta) >= 2.4) EffectiveArea = 0.063;
1355 +    }
1356 +    if (type == kEleNeutralHadronIsoDR0p4To0p5) {
1357 +      if (fabs(SCEta) >= 0.0 && fabs(SCEta) < 1.0 ) EffectiveArea = 0.011;
1358 +      if (fabs(SCEta) >= 1.0 && fabs(SCEta) < 1.479 ) EffectiveArea = 0.012;
1359 +      if (fabs(SCEta) >= 1.479 && fabs(SCEta) < 2.0 ) EffectiveArea = 0.016;
1360 +      if (fabs(SCEta) >= 2.0 && fabs(SCEta) < 2.2 ) EffectiveArea = 0.023;
1361 +      if (fabs(SCEta) >= 2.2 && fabs(SCEta) < 2.3 ) EffectiveArea = 0.038;
1362 +      if (fabs(SCEta) >= 2.3 && fabs(SCEta) < 2.4 ) EffectiveArea = 0.051;
1363 +      if (fabs(SCEta) >= 2.4) EffectiveArea = 0.143;
1364 +    }
1365 +  }
1366 +
1367 +  //2011 Data Effective Areas
1368 +  else if (EffectiveAreaTarget == kEleEAData2011) {
1369 +    if (type == kEleGammaAndNeutralHadronIso03) {
1370 +      if (fabs(SCEta) >= 0.0 && fabs(SCEta) < 1.0 ) EffectiveArea = 0.100;
1371 +      if (fabs(SCEta) >= 1.0 && fabs(SCEta) < 1.479 ) EffectiveArea = 0.120;
1372 +      if (fabs(SCEta) >= 1.479 && fabs(SCEta) < 2.0 ) EffectiveArea = 0.085;
1373 +      if (fabs(SCEta) >= 2.0 && fabs(SCEta) < 2.2 ) EffectiveArea = 0.110;
1374 +      if (fabs(SCEta) >= 2.2 && fabs(SCEta) < 2.3 ) EffectiveArea = 0.120;
1375 +      if (fabs(SCEta) >= 2.3 && fabs(SCEta) < 2.4 ) EffectiveArea = 0.120;
1376 +      if (fabs(SCEta) >= 2.4) EffectiveArea = 0.130;
1377 +    }
1378 +    if (type == kEleGammaAndNeutralHadronIso04) {
1379 +      if (fabs(SCEta) >= 0.0 && fabs(SCEta) < 1.0 ) EffectiveArea = 0.180;
1380 +      if (fabs(SCEta) >= 1.0 && fabs(SCEta) < 1.479 ) EffectiveArea = 0.200;
1381 +      if (fabs(SCEta) >= 1.479 && fabs(SCEta) < 2.0 ) EffectiveArea = 0.150;
1382 +      if (fabs(SCEta) >= 2.0 && fabs(SCEta) < 2.2 ) EffectiveArea = 0.190;
1383 +      if (fabs(SCEta) >= 2.2 && fabs(SCEta) < 2.3 ) EffectiveArea = 0.210;
1384 +      if (fabs(SCEta) >= 2.3 && fabs(SCEta) < 2.4 ) EffectiveArea = 0.220;
1385 +      if (fabs(SCEta) >= 2.4) EffectiveArea = 0.290;
1386 +    }
1387 +    if (type == kEleGammaIsoDR0p0To0p1) {
1388 +      if (fabs(SCEta) >= 0.0 && fabs(SCEta) < 1.0 ) EffectiveArea = 0.017;
1389 +      if (fabs(SCEta) >= 1.0 && fabs(SCEta) < 1.479 ) EffectiveArea = 0.033;
1390 +      if (fabs(SCEta) >= 1.479 && fabs(SCEta) < 2.0 ) EffectiveArea = 0.005;
1391 +      if (fabs(SCEta) >= 2.0 && fabs(SCEta) < 2.2 ) EffectiveArea = 0.007;
1392 +      if (fabs(SCEta) >= 2.2 && fabs(SCEta) < 2.3 ) EffectiveArea = 0.004;
1393 +      if (fabs(SCEta) >= 2.3 && fabs(SCEta) < 2.4 ) EffectiveArea = 0.000;
1394 +      if (fabs(SCEta) >= 2.4) EffectiveArea = 0.000;
1395 +    }
1396 +    if (type == kEleGammaIsoDR0p1To0p2) {
1397 +      if (fabs(SCEta) >= 0.0 && fabs(SCEta) < 1.0 ) EffectiveArea = 0.010;
1398 +      if (fabs(SCEta) >= 1.0 && fabs(SCEta) < 1.479 ) EffectiveArea = 0.010;
1399 +      if (fabs(SCEta) >= 1.479 && fabs(SCEta) < 2.0 ) EffectiveArea = 0.019;
1400 +      if (fabs(SCEta) >= 2.0 && fabs(SCEta) < 2.2 ) EffectiveArea = 0.042;
1401 +      if (fabs(SCEta) >= 2.2 && fabs(SCEta) < 2.3 ) EffectiveArea = 0.041;
1402 +      if (fabs(SCEta) >= 2.3 && fabs(SCEta) < 2.4 ) EffectiveArea = 0.035;
1403 +      if (fabs(SCEta) >= 2.4) EffectiveArea = 0.041;
1404 +    }
1405 +    if (type == kEleGammaIsoDR0p2To0p3) {
1406 +      if (fabs(SCEta) >= 0.0 && fabs(SCEta) < 1.0 ) EffectiveArea = 0.020;
1407 +      if (fabs(SCEta) >= 1.0 && fabs(SCEta) < 1.479 ) EffectiveArea = 0.017;
1408 +      if (fabs(SCEta) >= 1.479 && fabs(SCEta) < 2.0 ) EffectiveArea = 0.014;
1409 +      if (fabs(SCEta) >= 2.0 && fabs(SCEta) < 2.2 ) EffectiveArea = 0.029;
1410 +      if (fabs(SCEta) >= 2.2 && fabs(SCEta) < 2.3 ) EffectiveArea = 0.039;
1411 +      if (fabs(SCEta) >= 2.3 && fabs(SCEta) < 2.4 ) EffectiveArea = 0.042;
1412 +      if (fabs(SCEta) >= 2.4) EffectiveArea = 0.048;
1413 +    }
1414 +    if (type == kEleGammaIsoDR0p3To0p4) {
1415 +      if (fabs(SCEta) >= 0.0 && fabs(SCEta) < 1.0 ) EffectiveArea = 0.036;
1416 +      if (fabs(SCEta) >= 1.0 && fabs(SCEta) < 1.479 ) EffectiveArea = 0.029;
1417 +      if (fabs(SCEta) >= 1.479 && fabs(SCEta) < 2.0 ) EffectiveArea = 0.020;
1418 +      if (fabs(SCEta) >= 2.0 && fabs(SCEta) < 2.2 ) EffectiveArea = 0.029;
1419 +      if (fabs(SCEta) >= 2.2 && fabs(SCEta) < 2.3 ) EffectiveArea = 0.042;
1420 +      if (fabs(SCEta) >= 2.3 && fabs(SCEta) < 2.4 ) EffectiveArea = 0.047;
1421 +      if (fabs(SCEta) >= 2.4) EffectiveArea = 0.054;
1422 +    }
1423 +    if (type == kEleGammaIsoDR0p4To0p5) {
1424 +      if (fabs(SCEta) >= 0.0 && fabs(SCEta) < 1.0 ) EffectiveArea = 0.051;
1425 +      if (fabs(SCEta) >= 1.0 && fabs(SCEta) < 1.479 ) EffectiveArea = 0.038;
1426 +      if (fabs(SCEta) >= 1.479 && fabs(SCEta) < 2.0 ) EffectiveArea = 0.028;
1427 +     if (fabs(SCEta) >= 2.0 && fabs(SCEta) < 2.2 ) EffectiveArea = 0.036;
1428 +      if (fabs(SCEta) >= 2.2 && fabs(SCEta) < 2.3 ) EffectiveArea = 0.047;
1429 +      if (fabs(SCEta) >= 2.3 && fabs(SCEta) < 2.4 ) EffectiveArea = 0.057;
1430 +      if (fabs(SCEta) >= 2.4) EffectiveArea = 0.059;
1431 +    }
1432 +    if (type == kEleNeutralHadronIsoDR0p0To0p1) {
1433 +      if (fabs(SCEta) >= 0.0 && fabs(SCEta) < 1.0 ) EffectiveArea = 0.001;
1434 +      if (fabs(SCEta) >= 1.0 && fabs(SCEta) < 1.479 ) EffectiveArea = 0.002;
1435 +      if (fabs(SCEta) >= 1.479 && fabs(SCEta) < 2.0 ) EffectiveArea = 0.002;
1436 +      if (fabs(SCEta) >= 2.0 && fabs(SCEta) < 2.2 ) EffectiveArea = 0.000;
1437 +      if (fabs(SCEta) >= 2.2 && fabs(SCEta) < 2.3 ) EffectiveArea = 0.000;
1438 +      if (fabs(SCEta) >= 2.3 && fabs(SCEta) < 2.4 ) EffectiveArea = 0.000;
1439 +      if (fabs(SCEta) >= 2.4) EffectiveArea = 0.000;
1440 +    }
1441 +    if (type == kEleNeutralHadronIsoDR0p1To0p2) {
1442 +      if (fabs(SCEta) >= 0.0 && fabs(SCEta) < 1.0 ) EffectiveArea = 0.005;
1443 +      if (fabs(SCEta) >= 1.0 && fabs(SCEta) < 1.479 ) EffectiveArea = 0.008;
1444 +      if (fabs(SCEta) >= 1.479 && fabs(SCEta) < 2.0 ) EffectiveArea = 0.008;
1445 +      if (fabs(SCEta) >= 2.0 && fabs(SCEta) < 2.2 ) EffectiveArea = 0.006;
1446 +      if (fabs(SCEta) >= 2.2 && fabs(SCEta) < 2.3 ) EffectiveArea = 0.003;
1447 +      if (fabs(SCEta) >= 2.3 && fabs(SCEta) < 2.4 ) EffectiveArea = 0.001;
1448 +      if (fabs(SCEta) >= 2.4) EffectiveArea = 0.003;
1449 +    }
1450 +    if (type == kEleNeutralHadronIsoDR0p2To0p3) {
1451 +      if (fabs(SCEta) >= 0.0 && fabs(SCEta) < 1.0 ) EffectiveArea = 0.010;
1452 +      if (fabs(SCEta) >= 1.0 && fabs(SCEta) < 1.479 ) EffectiveArea = 0.014;
1453 +      if (fabs(SCEta) >= 1.479 && fabs(SCEta) < 2.0 ) EffectiveArea = 0.017;
1454 +      if (fabs(SCEta) >= 2.0 && fabs(SCEta) < 2.2 ) EffectiveArea = 0.016;
1455 +      if (fabs(SCEta) >= 2.2 && fabs(SCEta) < 2.3 ) EffectiveArea = 0.016;
1456 +      if (fabs(SCEta) >= 2.3 && fabs(SCEta) < 2.4 ) EffectiveArea = 0.016;
1457 +      if (fabs(SCEta) >= 2.4) EffectiveArea = 0.019;
1458 +    }
1459 +    if (type == kEleNeutralHadronIsoDR0p3To0p4) {
1460 +      if (fabs(SCEta) >= 0.0 && fabs(SCEta) < 1.0 ) EffectiveArea = 0.015;
1461 +      if (fabs(SCEta) >= 1.0 && fabs(SCEta) < 1.479 ) EffectiveArea = 0.021;
1462 +      if (fabs(SCEta) >= 1.479 && fabs(SCEta) < 2.0 ) EffectiveArea = 0.025;
1463 +      if (fabs(SCEta) >= 2.0 && fabs(SCEta) < 2.2 ) EffectiveArea = 0.030;
1464 +      if (fabs(SCEta) >= 2.2 && fabs(SCEta) < 2.3 ) EffectiveArea = 0.036;
1465 +      if (fabs(SCEta) >= 2.3 && fabs(SCEta) < 2.4 ) EffectiveArea = 0.038;
1466 +      if (fabs(SCEta) >= 2.4) EffectiveArea = 0.084;
1467 +    }
1468 +    if (type == kEleNeutralHadronIsoDR0p4To0p5) {
1469 +      if (fabs(SCEta) >= 0.0 && fabs(SCEta) < 1.0 ) EffectiveArea = 0.020;
1470 +      if (fabs(SCEta) >= 1.0 && fabs(SCEta) < 1.479 ) EffectiveArea = 0.027;
1471 +      if (fabs(SCEta) >= 1.479 && fabs(SCEta) < 2.0 ) EffectiveArea = 0.035;
1472 +      if (fabs(SCEta) >= 2.0 && fabs(SCEta) < 2.2 ) EffectiveArea = 0.045;
1473 +      if (fabs(SCEta) >= 2.2 && fabs(SCEta) < 2.3 ) EffectiveArea = 0.051;
1474 +      if (fabs(SCEta) >= 2.3 && fabs(SCEta) < 2.4 ) EffectiveArea = 0.107;
1475 +      if (fabs(SCEta) >= 2.4) EffectiveArea = 0.228;
1476 +    }
1477 +  }
1478 +
1479 +  //Summer11 MC Effective Areas
1480 +  else if (EffectiveAreaTarget == kEleEASummer11MC) {
1481 +    if (type == kEleGammaIsoDR0p0To0p1) {
1482 +      if (fabs(SCEta) >= 0.0 && fabs(SCEta) < 1.0 ) EffectiveArea = 0.015;
1483 +      if (fabs(SCEta) >= 1.0 && fabs(SCEta) < 1.479 ) EffectiveArea = 0.030;
1484 +      if (fabs(SCEta) >= 1.479 && fabs(SCEta) < 2.0 ) EffectiveArea = 0.004;
1485 +      if (fabs(SCEta) >= 2.0 && fabs(SCEta) < 2.2 ) EffectiveArea = 0.010;
1486 +      if (fabs(SCEta) >= 2.2 && fabs(SCEta) < 2.3 ) EffectiveArea = 0.014;
1487 +      if (fabs(SCEta) >= 2.3 && fabs(SCEta) < 2.4 ) EffectiveArea = 0.024;
1488 +      if (fabs(SCEta) >= 2.4) EffectiveArea = 0.023;
1489 +    }
1490 +    if (type == kEleGammaIsoDR0p1To0p2) {
1491 +      if (fabs(SCEta) >= 0.0 && fabs(SCEta) < 1.0 ) EffectiveArea = 0.012;
1492 +      if (fabs(SCEta) >= 1.0 && fabs(SCEta) < 1.479 ) EffectiveArea = 0.010;
1493 +      if (fabs(SCEta) >= 1.479 && fabs(SCEta) < 2.0 ) EffectiveArea = 0.009;
1494 +      if (fabs(SCEta) >= 2.0 && fabs(SCEta) < 2.2 ) EffectiveArea = 0.037;
1495 +      if (fabs(SCEta) >= 2.2 && fabs(SCEta) < 2.3 ) EffectiveArea = 0.046;
1496 +      if (fabs(SCEta) >= 2.3 && fabs(SCEta) < 2.4 ) EffectiveArea = 0.055;
1497 +      if (fabs(SCEta) >= 2.4) EffectiveArea = 0.046;
1498 +    }
1499 +    if (type == kEleGammaIsoDR0p2To0p3) {
1500 +      if (fabs(SCEta) >= 0.0 && fabs(SCEta) < 1.0 ) EffectiveArea = 0.021;
1501 +      if (fabs(SCEta) >= 1.0 && fabs(SCEta) < 1.479 ) EffectiveArea = 0.018;
1502 +      if (fabs(SCEta) >= 1.479 && fabs(SCEta) < 2.0 ) EffectiveArea = 0.013;
1503 +      if (fabs(SCEta) >= 2.0 && fabs(SCEta) < 2.2 ) EffectiveArea = 0.026;
1504 +      if (fabs(SCEta) >= 2.2 && fabs(SCEta) < 2.3 ) EffectiveArea = 0.038;
1505 +      if (fabs(SCEta) >= 2.3 && fabs(SCEta) < 2.4 ) EffectiveArea = 0.045;
1506 +      if (fabs(SCEta) >= 2.4) EffectiveArea = 0.059;
1507 +    }
1508 +    if (type == kEleGammaIsoDR0p3To0p4) {
1509 +      if (fabs(SCEta) >= 0.0 && fabs(SCEta) < 1.0 ) EffectiveArea = 0.036;
1510 +      if (fabs(SCEta) >= 1.0 && fabs(SCEta) < 1.479 ) EffectiveArea = 0.030;
1511 +      if (fabs(SCEta) >= 1.479 && fabs(SCEta) < 2.0 ) EffectiveArea = 0.017;
1512 +      if (fabs(SCEta) >= 2.0 && fabs(SCEta) < 2.2 ) EffectiveArea = 0.036;
1513 +      if (fabs(SCEta) >= 2.2 && fabs(SCEta) < 2.3 ) EffectiveArea = 0.058;
1514 +      if (fabs(SCEta) >= 2.3 && fabs(SCEta) < 2.4 ) EffectiveArea = 0.073;
1515 +      if (fabs(SCEta) >= 2.4) EffectiveArea = 0.083;
1516 +    }
1517 +    if (type == kEleGammaIsoDR0p4To0p5) {
1518 +      if (fabs(SCEta) >= 0.0 && fabs(SCEta) < 1.0 ) EffectiveArea = 0.053;
1519 +      if (fabs(SCEta) >= 1.0 && fabs(SCEta) < 1.479 ) EffectiveArea = 0.037;
1520 +      if (fabs(SCEta) >= 1.479 && fabs(SCEta) < 2.0 ) EffectiveArea = 0.032;
1521 +      if (fabs(SCEta) >= 2.0 && fabs(SCEta) < 2.2 ) EffectiveArea = 0.048;
1522 +      if (fabs(SCEta) >= 2.2 && fabs(SCEta) < 2.3 ) EffectiveArea = 0.062;
1523 +      if (fabs(SCEta) >= 2.3 && fabs(SCEta) < 2.4 ) EffectiveArea = 0.085;
1524 +      if (fabs(SCEta) >= 2.4) EffectiveArea = 0.118;
1525 +    }
1526 +    if (type == kEleNeutralHadronIsoDR0p0To0p1) {
1527 +      if (fabs(SCEta) >= 0.0 && fabs(SCEta) < 1.0 ) EffectiveArea = 0.000;
1528 +      if (fabs(SCEta) >= 1.0 && fabs(SCEta) < 1.479 ) EffectiveArea = 0.000;
1529 +      if (fabs(SCEta) >= 1.479 && fabs(SCEta) < 2.0 ) EffectiveArea = 0.000;
1530 +      if (fabs(SCEta) >= 2.0 && fabs(SCEta) < 2.2 ) EffectiveArea = 0.000;
1531 +      if (fabs(SCEta) >= 2.2 && fabs(SCEta) < 2.3 ) EffectiveArea = 0.000;
1532 +      if (fabs(SCEta) >= 2.3 && fabs(SCEta) < 2.4 ) EffectiveArea = 0.000;
1533 +      if (fabs(SCEta) >= 2.4) EffectiveArea = 0.000;
1534 +    }
1535 +    if (type == kEleNeutralHadronIsoDR0p1To0p2) {
1536 +      if (fabs(SCEta) >= 0.0 && fabs(SCEta) < 1.0 ) EffectiveArea = 0.004;
1537 +      if (fabs(SCEta) >= 1.0 && fabs(SCEta) < 1.479 ) EffectiveArea = 0.007;
1538 +      if (fabs(SCEta) >= 1.479 && fabs(SCEta) < 2.0 ) EffectiveArea = 0.009;
1539 +      if (fabs(SCEta) >= 2.0 && fabs(SCEta) < 2.2 ) EffectiveArea = 0.004;
1540 +      if (fabs(SCEta) >= 2.2 && fabs(SCEta) < 2.3 ) EffectiveArea = 0.003;
1541 +      if (fabs(SCEta) >= 2.3 && fabs(SCEta) < 2.4 ) EffectiveArea = 0.000;
1542 +      if (fabs(SCEta) >= 2.4) EffectiveArea = 0.004;
1543 +    }
1544 +    if (type == kEleNeutralHadronIsoDR0p2To0p3) {
1545 +      if (fabs(SCEta) >= 0.0 && fabs(SCEta) < 1.0 ) EffectiveArea = 0.008;
1546 +      if (fabs(SCEta) >= 1.0 && fabs(SCEta) < 1.479 ) EffectiveArea = 0.013;
1547 +      if (fabs(SCEta) >= 1.479 && fabs(SCEta) < 2.0 ) EffectiveArea = 0.016;
1548 +      if (fabs(SCEta) >= 2.0 && fabs(SCEta) < 2.2 ) EffectiveArea = 0.013;
1549 +      if (fabs(SCEta) >= 2.2 && fabs(SCEta) < 2.3 ) EffectiveArea = 0.014;
1550 +      if (fabs(SCEta) >= 2.3 && fabs(SCEta) < 2.4 ) EffectiveArea = 0.016;
1551 +      if (fabs(SCEta) >= 2.4) EffectiveArea = 0.021;
1552 +    }
1553 +    if (type == kEleNeutralHadronIsoDR0p3To0p4) {
1554 +      if (fabs(SCEta) >= 0.0 && fabs(SCEta) < 1.0 ) EffectiveArea = 0.012;
1555 +      if (fabs(SCEta) >= 1.0 && fabs(SCEta) < 1.479 ) EffectiveArea = 0.017;
1556 +      if (fabs(SCEta) >= 1.479 && fabs(SCEta) < 2.0 ) EffectiveArea = 0.020;
1557 +      if (fabs(SCEta) >= 2.0 && fabs(SCEta) < 2.2 ) EffectiveArea = 0.024;
1558 +      if (fabs(SCEta) >= 2.2 && fabs(SCEta) < 2.3 ) EffectiveArea = 0.040;
1559 +      if (fabs(SCEta) >= 2.3 && fabs(SCEta) < 2.4 ) EffectiveArea = 0.036;
1560 +      if (fabs(SCEta) >= 2.4) EffectiveArea = 0.086;
1561 +    }
1562 +    if (type == kEleNeutralHadronIsoDR0p4To0p5) {
1563 +      if (fabs(SCEta) >= 0.0 && fabs(SCEta) < 1.0 ) EffectiveArea = 0.016;
1564 +      if (fabs(SCEta) >= 1.0 && fabs(SCEta) < 1.479 ) EffectiveArea = 0.026;
1565 +      if (fabs(SCEta) >= 1.479 && fabs(SCEta) < 2.0 ) EffectiveArea = 0.030;
1566 +      if (fabs(SCEta) >= 2.0 && fabs(SCEta) < 2.2 ) EffectiveArea = 0.038;
1567 +      if (fabs(SCEta) >= 2.2 && fabs(SCEta) < 2.3 ) EffectiveArea = 0.051;
1568 +      if (fabs(SCEta) >= 2.3 && fabs(SCEta) < 2.4 ) EffectiveArea = 0.105;
1569 +      if (fabs(SCEta) >= 2.4) EffectiveArea = 0.169;
1570 +    }
1571 +  }
1572 +  
1573 +  //Fall11 MC Effective Areas
1574 +  else if (EffectiveAreaTarget == kEleEAFall11MC) {
1575 +    if (type == kEleGammaIsoDR0p0To0p1) {
1576 +      if (fabs(SCEta) >= 0.0 && fabs(SCEta) < 1.0 ) EffectiveArea = 0.014;
1577 +      if (fabs(SCEta) >= 1.0 && fabs(SCEta) < 1.479 ) EffectiveArea = 0.020;
1578 +      if (fabs(SCEta) >= 1.479 && fabs(SCEta) < 2.0 ) EffectiveArea = 0.004;
1579 +      if (fabs(SCEta) >= 2.0 && fabs(SCEta) < 2.2 ) EffectiveArea = 0.012;
1580 +      if (fabs(SCEta) >= 2.2 && fabs(SCEta) < 2.3 ) EffectiveArea = 0.016;
1581 +      if (fabs(SCEta) >= 2.3 && fabs(SCEta) < 2.4 ) EffectiveArea = 0.021;
1582 +      if (fabs(SCEta) >= 2.4) EffectiveArea = 0.012;
1583 +    }
1584 +    if (type == kEleGammaIsoDR0p1To0p2) {
1585 +      if (fabs(SCEta) >= 0.0 && fabs(SCEta) < 1.0 ) EffectiveArea = 0.012;
1586 +      if (fabs(SCEta) >= 1.0 && fabs(SCEta) < 1.479 ) EffectiveArea = 0.011;
1587 +      if (fabs(SCEta) >= 1.479 && fabs(SCEta) < 2.0 ) EffectiveArea = 0.015;
1588 +      if (fabs(SCEta) >= 2.0 && fabs(SCEta) < 2.2 ) EffectiveArea = 0.042;
1589 +      if (fabs(SCEta) >= 2.2 && fabs(SCEta) < 2.3 ) EffectiveArea = 0.055;
1590 +      if (fabs(SCEta) >= 2.3 && fabs(SCEta) < 2.4 ) EffectiveArea = 0.068;
1591 +      if (fabs(SCEta) >= 2.4) EffectiveArea = 0.067;
1592 +    }
1593 +    if (type == kEleGammaIsoDR0p2To0p3) {
1594 +      if (fabs(SCEta) >= 0.0 && fabs(SCEta) < 1.0 ) EffectiveArea = 0.024;
1595 +      if (fabs(SCEta) >= 1.0 && fabs(SCEta) < 1.479 ) EffectiveArea = 0.020;
1596 +      if (fabs(SCEta) >= 1.479 && fabs(SCEta) < 2.0 ) EffectiveArea = 0.017;
1597 +      if (fabs(SCEta) >= 2.0 && fabs(SCEta) < 2.2 ) EffectiveArea = 0.038;
1598 +      if (fabs(SCEta) >= 2.2 && fabs(SCEta) < 2.3 ) EffectiveArea = 0.051;
1599 +      if (fabs(SCEta) >= 2.3 && fabs(SCEta) < 2.4 ) EffectiveArea = 0.066;
1600 +      if (fabs(SCEta) >= 2.4) EffectiveArea = 0.080;
1601 +    }
1602 +    if (type == kEleGammaIsoDR0p3To0p4) {
1603 +      if (fabs(SCEta) >= 0.0 && fabs(SCEta) < 1.0 ) EffectiveArea = 0.040;
1604 +      if (fabs(SCEta) >= 1.0 && fabs(SCEta) < 1.479 ) EffectiveArea = 0.032;
1605 +      if (fabs(SCEta) >= 1.479 && fabs(SCEta) < 2.0 ) EffectiveArea = 0.021;
1606 +      if (fabs(SCEta) >= 2.0 && fabs(SCEta) < 2.2 ) EffectiveArea = 0.047;
1607 +      if (fabs(SCEta) >= 2.2 && fabs(SCEta) < 2.3 ) EffectiveArea = 0.066;
1608 +      if (fabs(SCEta) >= 2.3 && fabs(SCEta) < 2.4 ) EffectiveArea = 0.083;
1609 +      if (fabs(SCEta) >= 2.4) EffectiveArea = 0.123;
1610 +    }
1611 +    if (type == kEleGammaIsoDR0p4To0p5) {
1612 +      if (fabs(SCEta) >= 0.0 && fabs(SCEta) < 1.0 ) EffectiveArea = 0.059;
1613 +      if (fabs(SCEta) >= 1.0 && fabs(SCEta) < 1.479 ) EffectiveArea = 0.041;
1614 +      if (fabs(SCEta) >= 1.479 && fabs(SCEta) < 2.0 ) EffectiveArea = 0.037;
1615 +      if (fabs(SCEta) >= 2.0 && fabs(SCEta) < 2.2 ) EffectiveArea = 0.057;
1616 +      if (fabs(SCEta) >= 2.2 && fabs(SCEta) < 2.3 ) EffectiveArea = 0.095;
1617 +      if (fabs(SCEta) >= 2.3 && fabs(SCEta) < 2.4 ) EffectiveArea = 0.123;
1618 +      if (fabs(SCEta) >= 2.4) EffectiveArea = 0.133;
1619 +    }
1620 +    if (type == kEleNeutralHadronIsoDR0p0To0p1) {
1621 +      if (fabs(SCEta) >= 0.0 && fabs(SCEta) < 1.0 ) EffectiveArea = 0.002;
1622 +      if (fabs(SCEta) >= 1.0 && fabs(SCEta) < 1.479 ) EffectiveArea = 0.003;
1623 +      if (fabs(SCEta) >= 1.479 && fabs(SCEta) < 2.0 ) EffectiveArea = 0.000;
1624 +      if (fabs(SCEta) >= 2.0 && fabs(SCEta) < 2.2 ) EffectiveArea = 0.000;
1625 +      if (fabs(SCEta) >= 2.2 && fabs(SCEta) < 2.3 ) EffectiveArea = 0.000;
1626 +      if (fabs(SCEta) >= 2.3 && fabs(SCEta) < 2.4 ) EffectiveArea = 0.000;
1627 +      if (fabs(SCEta) >= 2.4) EffectiveArea = 0.000;
1628 +    }
1629 +    if (type == kEleNeutralHadronIsoDR0p1To0p2) {
1630 +      if (fabs(SCEta) >= 0.0 && fabs(SCEta) < 1.0 ) EffectiveArea = 0.006;
1631 +      if (fabs(SCEta) >= 1.0 && fabs(SCEta) < 1.479 ) EffectiveArea = 0.008;
1632 +      if (fabs(SCEta) >= 1.479 && fabs(SCEta) < 2.0 ) EffectiveArea = 0.010;
1633 +      if (fabs(SCEta) >= 2.0 && fabs(SCEta) < 2.2 ) EffectiveArea = 0.006;
1634 +      if (fabs(SCEta) >= 2.2 && fabs(SCEta) < 2.3 ) EffectiveArea = 0.005;
1635 +      if (fabs(SCEta) >= 2.3 && fabs(SCEta) < 2.4 ) EffectiveArea = 0.002;
1636 +      if (fabs(SCEta) >= 2.4) EffectiveArea = 0.007;
1637 +    }
1638 +    if (type == kEleNeutralHadronIsoDR0p2To0p3) {
1639 +      if (fabs(SCEta) >= 0.0 && fabs(SCEta) < 1.0 ) EffectiveArea = 0.009;
1640 +      if (fabs(SCEta) >= 1.0 && fabs(SCEta) < 1.479 ) EffectiveArea = 0.014;
1641 +      if (fabs(SCEta) >= 1.479 && fabs(SCEta) < 2.0 ) EffectiveArea = 0.018;
1642 +      if (fabs(SCEta) >= 2.0 && fabs(SCEta) < 2.2 ) EffectiveArea = 0.016;
1643 +      if (fabs(SCEta) >= 2.2 && fabs(SCEta) < 2.3 ) EffectiveArea = 0.017;
1644 +      if (fabs(SCEta) >= 2.3 && fabs(SCEta) < 2.4 ) EffectiveArea = 0.020;
1645 +      if (fabs(SCEta) >= 2.4) EffectiveArea = 0.021;
1646 +    }
1647 +    if (type == kEleNeutralHadronIsoDR0p3To0p4) {
1648 +      if (fabs(SCEta) >= 0.0 && fabs(SCEta) < 1.0 ) EffectiveArea = 0.013;
1649 +      if (fabs(SCEta) >= 1.0 && fabs(SCEta) < 1.479 ) EffectiveArea = 0.019;
1650 +      if (fabs(SCEta) >= 1.479 && fabs(SCEta) < 2.0 ) EffectiveArea = 0.027;
1651 +      if (fabs(SCEta) >= 2.0 && fabs(SCEta) < 2.2 ) EffectiveArea = 0.035;
1652 +      if (fabs(SCEta) >= 2.2 && fabs(SCEta) < 2.3 ) EffectiveArea = 0.037;
1653 +      if (fabs(SCEta) >= 2.3 && fabs(SCEta) < 2.4 ) EffectiveArea = 0.043;
1654 +      if (fabs(SCEta) >= 2.4) EffectiveArea = 0.110;
1655 +    }
1656 +    if (type == kEleNeutralHadronIsoDR0p4To0p5) {
1657 +      if (fabs(SCEta) >= 0.0 && fabs(SCEta) < 1.0 ) EffectiveArea = 0.017;
1658 +      if (fabs(SCEta) >= 1.0 && fabs(SCEta) < 1.479 ) EffectiveArea = 0.027;
1659 +      if (fabs(SCEta) >= 1.479 && fabs(SCEta) < 2.0 ) EffectiveArea = 0.036;
1660 +      if (fabs(SCEta) >= 2.0 && fabs(SCEta) < 2.2 ) EffectiveArea = 0.045;
1661 +      if (fabs(SCEta) >= 2.2 && fabs(SCEta) < 2.3 ) EffectiveArea = 0.057;
1662 +      if (fabs(SCEta) >= 2.3 && fabs(SCEta) < 2.4 ) EffectiveArea = 0.123;
1663 +      if (fabs(SCEta) >= 2.4) EffectiveArea = 0.220;
1664 +    }
1665 +  }
1666 +
1667 +  return EffectiveArea;  
1668 + }
1669 +
1670 +
1671 + Bool_t ElectronTools::PassHggLeptonTagID(const Electron* ele) {
1672 +  
1673 +  float dist = ( ele->ConvPartnerDist()      == -9999.? 9999:TMath::Abs(ele->ConvPartnerDist()));
1674 +  float dcot = ( ele->ConvPartnerDCotTheta() == -9999.? 9999:TMath::Abs(ele->ConvPartnerDCotTheta()));  
1675 +  
1676 +  if (dist < 0.02) return false;
1677 +  if (dcot < 0.02) return false;
1678 +  
1679 +  int numInnerHits = ele->Trk()->NExpectedHitsInner();
1680 +  if( numInnerHits > 1 ) return false;
1681 +
1682 +  float coviEtaiEta = ele->CoviEtaiEta();
1683 +  if( ele->SCluster()->AbsEta() < 1.5 && coviEtaiEta > 0.01 ) return false;
1684 +  else if( ele->SCluster()->AbsEta() > 1.5 && coviEtaiEta > 0.031 ) return false;
1685 +
1686 +  Double_t deltaPhiIn   = TMath::Abs(ele->DeltaPhiSuperClusterTrackAtVtx());
1687 +  Double_t deltaEtaIn   = TMath::Abs(ele->DeltaEtaSuperClusterTrackAtVtx());
1688 +
1689 +  if( ele->SCluster()->AbsEta() < 1.5 && ( deltaPhiIn > 0.039 || deltaEtaIn > 0.005 ) ) return false;
1690 +  else if ( ele->SCluster()->AbsEta() > 1.5 && ( deltaPhiIn > 0.028 || deltaEtaIn > 0.007 ) ) return false;
1691 +
1692 +  return true;
1693 + }
1694 +
1695 + Bool_t ElectronTools::PassHggLeptonTagID2012(const Electron* ele) {
1696 +  
1697 +  if (TMath::Abs(1./ele->E()-1./ele->Pt())>0.05) return false;
1698 +
1699 +  int numInnerHits = ele->Trk()->NExpectedHitsInner();
1700 +  if( numInnerHits > 1 ) return false;
1701 +
1702 +  float coviEtaiEta = ele->CoviEtaiEta();
1703 +  if( ele->SCluster()->AbsEta() < 1.5 && coviEtaiEta > 0.01 ) return false;
1704 +  else if( ele->SCluster()->AbsEta() > 1.5 && coviEtaiEta > 0.03 ) return false; // h
1705 +
1706 +  Double_t deltaPhiIn   = TMath::Abs(ele->DeltaPhiSuperClusterTrackAtVtx());
1707 +  Double_t deltaEtaIn   = TMath::Abs(ele->DeltaEtaSuperClusterTrackAtVtx());
1708 +
1709 +  if( ele->SCluster()->AbsEta() < 1.5 && ( deltaPhiIn > 0.15 || deltaEtaIn > 0.007 || ele->HadronicOverEm()>0.12) ) return false;   // h
1710 +  else if ( ele->SCluster()->AbsEta() > 1.5 && ( deltaPhiIn > 0.10 || deltaEtaIn > 0.009 || ele->HadronicOverEm()>0.10 ) ) return false;   // h
1711 +
1712 +  return true;
1713 + }
1714 +
1715 + std::pair<Double_t,Double_t> ElectronTools::ComputeEPCombination( const Electron * ele, const float regression_energy,
1716 +                                                  const float regression_energy_error) {
1717 +
1718 +  enum Classification { GSF_ELECTRON_UNKNOWN=-1,
1719 +                        GSF_ELECTRON_GOLDEN=0,
1720 +                        GSF_ELECTRON_BIGBREM=1,
1721 +                        GSF_ELECTRON_BADTRACK=2,
1722 +                        GSF_ELECTRON_SHOWERING=3,
1723 +                        GSF_ELECTRON_GAP=4 } ;
1724 +
1725 +  float newEnergyError_ = regression_energy_error;
1726 +  float scEnergy = regression_energy;
1727 +
1728 +  int elClass = ele->Classification();
1729 +
1730 +  float trackMomentum  = ele->PIn() ;
1731 +  float errorTrackMomentum_ = 999. ;
1732 +  
1733 +  // the electron's track momentum error was not available in bambu versions less than 029
1734 +  if(ele->TrackMomentumError() > 0)
1735 +    errorTrackMomentum_ = ele->TrackMomentumError();
1736 +  else if ( ele->GsfTrk()->PtErr() > 0)
1737 +    errorTrackMomentum_ = ele->GsfTrk()->PtErr()*cosh(ele->GsfTrk()->Eta());
1738 +  else
1739 +    assert(0);
1740 +
1741 +  float finalMomentum = ele->E(); // initial
1742 +  float finalMomentumError = 999.;
1743 +  
1744 +  // first check for large errors
1745 +
1746 +  if (errorTrackMomentum_/trackMomentum > 0.5 && regression_energy_error/regression_energy <= 0.5) {
1747 +    finalMomentum = regression_energy;    finalMomentumError = regression_energy_error;
1748 +  }
1749 +  else if (errorTrackMomentum_/trackMomentum <= 0.5 && regression_energy_error/regression_energy > 0.5){  
1750 +    finalMomentum = trackMomentum;  finalMomentumError = errorTrackMomentum_;
1751 +  }
1752 +  else if (errorTrackMomentum_/trackMomentum > 0.5 && regression_energy_error/regression_energy > 0.5){
1753 +    if (errorTrackMomentum_/trackMomentum < regression_energy_error/regression_energy) {
1754 +      finalMomentum = trackMomentum; finalMomentumError = errorTrackMomentum_;
1755 +    }
1756 +    else{
1757 +      finalMomentum = regression_energy; finalMomentumError = regression_energy_error;
1758 +    }
1759 +  }
1760 +  // then apply the combination algorithm
1761 +  else {
1762 +     // calculate E/p and corresponding error
1763 +    float eOverP = regression_energy / trackMomentum;
1764 +    float errorEOverP = sqrt(
1765 +                             (regression_energy_error/trackMomentum)*(regression_energy_error/trackMomentum) +
1766 +                             (regression_energy*errorTrackMomentum_/trackMomentum/trackMomentum)*
1767 +                             (regression_energy*errorTrackMomentum_/trackMomentum/trackMomentum));
1768 +
1769 +
1770 +    bool eleIsNotInCombination = false ;
1771 +    if ( (eOverP  > 1 + 2.5*errorEOverP) || (eOverP  < 1 - 2.5*errorEOverP) || (eOverP < 0.8) || (eOverP > 1.3) )
1772 +      { eleIsNotInCombination = true ; }
1773 +     if (eleIsNotInCombination)
1774 +       {
1775 +         if (eOverP > 1)
1776 +           { finalMomentum = regression_energy ; finalMomentumError = regression_energy_error ; }
1777 +         else
1778 +           {
1779 +             if (elClass == GSF_ELECTRON_GOLDEN)
1780 +               { finalMomentum = regression_energy; finalMomentumError = regression_energy_error; }
1781 +             if (elClass == GSF_ELECTRON_BIGBREM)
1782 +               {
1783 +                 if (regression_energy<36)
1784 +                   { finalMomentum = trackMomentum ; finalMomentumError = errorTrackMomentum_ ; }
1785 +                 else
1786 +                   { finalMomentum = regression_energy ; finalMomentumError = regression_energy_error ; }
1787 +               }
1788 +             if (elClass == GSF_ELECTRON_BADTRACK)
1789 +               { finalMomentum = regression_energy; finalMomentumError = regression_energy_error ; }
1790 +             if (elClass == GSF_ELECTRON_SHOWERING)
1791 +               {
1792 +                 if (regression_energy<30)
1793 +                   { finalMomentum = trackMomentum ; finalMomentumError = errorTrackMomentum_; }
1794 +                 else
1795 +                   { finalMomentum = regression_energy; finalMomentumError = regression_energy_error;}
1796 +               }
1797 +             if (elClass == GSF_ELECTRON_GAP)
1798 +               {
1799 +                 if (regression_energy<60)
1800 +                   { finalMomentum = trackMomentum ; finalMomentumError = errorTrackMomentum_ ; }
1801 +                 else
1802 +                   { finalMomentum = regression_energy; finalMomentumError = regression_energy_error ; }
1803 +               }
1804 +           }
1805 +       }    
1806 +     else
1807 +       {
1808 +         // combination
1809 +         finalMomentum = (regression_energy/regression_energy_error/regression_energy_error + trackMomentum/errorTrackMomentum_/errorTrackMomentum_) /
1810 +           (1/regression_energy_error/regression_energy_error + 1/errorTrackMomentum_/errorTrackMomentum_);
1811 +         float finalMomentumVariance = 1 / (1/regression_energy_error/regression_energy_error + 1/errorTrackMomentum_/errorTrackMomentum_);
1812 +         finalMomentumError = sqrt(finalMomentumVariance);
1813 +       }
1814 +  }  
1815 +
1816 +  std::pair<Double_t,Double_t> value;
1817 +  value.first = finalMomentum;
1818 +  value.second = finalMomentumError;
1819 +  return value;
1820 +
1821 + }

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