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Comparing UserCode/VHbbAnalysis/HbbAnalyzer/plugins/HbbAnalyzerNew.cc (file contents):
Revision 1.22 by bortigno, Mon Aug 22 13:59:46 2011 UTC vs.
Revision 1.59 by dlopes, Thu Feb 16 00:17:42 2012 UTC

# Line 17 | Line 17 | Implementation:
17   //
18   //
19  
20 #include "VHbbAnalysis/HbbAnalyzer/interface/HbbAnalyzerNew.h"
21 #include "VHbbAnalysis/VHbbDataFormats/interface/VHbbEvent.h"
22 #include "VHbbAnalysis/VHbbDataFormats/interface/VHbbEventAuxInfo.h"
20  
21 < #include "FWCore/Framework/interface/ESHandle.h"
22 < #include "DataFormats/PatCandidates/interface/PATObject.h"
23 < #include "DataFormats/PatCandidates/interface/TriggerObject.h"
24 < #include "DataFormats/PatCandidates/interface/TriggerObjectStandAlone.h"
25 < #include "RecoBTag/Records/interface/BTagPerformanceRecord.h"
26 < #include "CondFormats/PhysicsToolsObjects/interface/BinningPointByMap.h"
27 < #include "RecoBTag/PerformanceDB/interface/BtagPerformance.h"
21 > //uncomment to save also jet collections 1 and 4
22 > //#define ENABLE_SIMPLEJETS1
23 > //#define ENABLE_SIMPLEJETS4
24 >
25 > #include "CondFormats/JetMETObjects/interface/JetCorrectorParameters.h"
26 > #include "CondFormats/JetMETObjects/interface/JetCorrectionUncertainty.h"
27 > #include "JetMETCorrections/Objects/interface/JetCorrector.h"
28 > #include "JetMETCorrections/Objects/interface/JetCorrectionsRecord.h"
29 > #include "DataFormats/TrackReco/interface/TrackFwd.h"
30 >
31 > #include "VHbbAnalysis/HbbAnalyzer/interface/HbbAnalyzerNew.h"
32 > #include "SimDataFormats/PileupSummaryInfo/interface/PileupSummaryInfo.h"
33  
34 < #include "DataFormats/GeometryVector/interface/VectorUtil.h"
34 > #include "SimDataFormats/GeneratorProducts/interface/GenEventInfoProduct.h"
35 > #include "DataFormats/Math/interface/deltaR.h"
36  
37  
38   #define GENPTOLOR(a) TLorentzVector((a).px(), (a).py(), (a).pz(), (a).energy())
39   #define GENPTOLORP(a) TLorentzVector((a)->px(), (a)->py(), (a)->pz(), (a)->energy())
40  
41 +
42 +
43 + struct CompareJetPtMuons {
44 +  bool operator()( const VHbbEvent::MuonInfo& j1, const  VHbbEvent::MuonInfo& j2 ) const {
45 +    return j1.p4.Pt() > j2.p4.Pt();
46 +  }
47 + };
48 + struct CompareJetPtElectrons {
49 +  bool operator()( const VHbbEvent::ElectronInfo& j1, const  VHbbEvent::ElectronInfo& j2 ) const {
50 +    return j1.p4.Pt() > j2.p4.Pt();
51 +  }
52 + };
53 + struct CompareJetPtTaus {
54 +  bool operator()( const VHbbEvent::TauInfo& j1, const  VHbbEvent::TauInfo& j2 ) const {
55 +    return j1.p4.Pt() > j2.p4.Pt();
56 +  }
57 + };
58 +
59 +
60 +
61   HbbAnalyzerNew::HbbAnalyzerNew(const edm::ParameterSet& iConfig):
62    eleLabel_(iConfig.getParameter<edm::InputTag>("electronTag")),
63    muoLabel_(iConfig.getParameter<edm::InputTag>("muonTag")),
64 +  lep_ptCutForBjets_(iConfig.getParameter<double>("lep_ptCutForBjets")),
65 +  elenoCutsLabel_(iConfig.getParameter<edm::InputTag>("electronNoCutsTag")),
66 +  muonoCutsLabel_(iConfig.getParameter<edm::InputTag>("muonNoCutsTag")),
67    jetLabel_(iConfig.getParameter<edm::InputTag>("jetTag")),
68    subjetLabel_(iConfig.getParameter<edm::InputTag>("subjetTag")),
69 +  filterjetLabel_(iConfig.getParameter<edm::InputTag>("filterjetTag")),
70    simplejet1Label_(iConfig.getParameter<edm::InputTag>("simplejet1Tag")),
71    simplejet2Label_(iConfig.getParameter<edm::InputTag>("simplejet2Tag")),
72    simplejet3Label_(iConfig.getParameter<edm::InputTag>("simplejet3Tag")),
# Line 47 | Line 74 | HbbAnalyzerNew::HbbAnalyzerNew(const edm
74    tauLabel_(iConfig.getParameter<edm::InputTag>("tauTag")),
75    metLabel_(iConfig.getParameter<edm::InputTag>("metTag")),
76    phoLabel_(iConfig.getParameter<edm::InputTag>("photonTag")),
50  dimuLabel_(iConfig.getParameter<edm::InputTag>("dimuTag")),
51  dielecLabel_(iConfig.getParameter<edm::InputTag>("dielecTag")),
77    hltResults_(iConfig.getParameter<edm::InputTag>("hltResultsTag")),
78    runOnMC_(iConfig.getParameter<bool>("runOnMC")), verbose_(iConfig.getUntrackedParameter<bool>("verbose")) {
79  
# Line 79 | Line 104 | void
104   HbbAnalyzerNew::produce(edm::Event& iEvent, const edm::EventSetup& iSetup){
105    using namespace edm;
106    using namespace reco;
107 <  
107 >
108 >
109 >  // JEC Uncertainty
110 >
111 >  //  JetCorrectionUncertainty *jecUnc=0;
112 >  edm::ESHandle<JetCorrectorParametersCollection> JetCorParColl;
113 >  iSetup.get<JetCorrectionsRecord>().get("AK5PFchs",JetCorParColl);
114 >  JetCorrectionUncertainty *jecUnc=0;
115 >  //  if (!runOnMC_){
116 >  JetCorrectorParameters const & JetCorPar = (*JetCorParColl)["Uncertainty"];
117 >  jecUnc = new JetCorrectionUncertainty(JetCorPar);
118 >  //  }
119    
120    std::auto_ptr<VHbbEvent> hbbInfo( new VHbbEvent() );  
121    std::auto_ptr<VHbbEventAuxInfo> auxInfo( new VHbbEventAuxInfo() );
122 <  
122 >
123 >
124 >  if (runOnMC_){
125 >    Handle<GenEventInfoProduct> evt_info;
126 >    iEvent.getByType(evt_info);
127 >    auxInfo->weightMCProd = evt_info->weight();
128 >  }
129 >  else
130 >    { auxInfo->weightMCProd =1.;}
131    //
132    // ??
133 <  
133 >  
134 >  // trigger
135 >
136    // trigger
137    edm::Handle<edm::TriggerResults>  hltresults;
138    //iEvent.getByLabel("TriggerResults", hltresults);
# Line 96 | Line 142 | HbbAnalyzerNew::produce(edm::Event& iEve
142    iEvent.getByLabel(hltResults_, hltresults);
143    
144    const edm::TriggerNames & triggerNames_ = iEvent.triggerNames(*hltresults);
99  
100  int ntrigs = hltresults->size();
101  if (ntrigs==0){std::cout << "%HLTInfo -- No trigger name given in TriggerResults of the input " << std::endl;}
102
103  for (int itrig = 0; itrig != ntrigs; ++itrig){
104
105    TString trigName=triggerNames_.triggerName(itrig);
106    bool accept = hltresults->accept(itrig);
107
108    if (accept){(auxInfo->triggerInfo.flag)[itrig] = 1;}
109    else { (auxInfo->triggerInfo.flag)[itrig] = 0;}
110
111    //    std::cout << "%HLTInfo --  Number of HLT Triggers: " << ntrigs << std::endl;
112    //    std::cout << "%HLTInfo --  HLTTrigger(" << itrig << "): " << trigName << " = " << accept << std::endl;
113  }
114
115  //
116  // big bloat
117  //
118
119
120  int goodDoubleMu3=0,goodDoubleMu3_2=0,  
121    goodMu9=0, goodIsoMu9=0, goodMu11=0, goodIsoMu13_3=0, goodMu15=0, goodMu15_1=0;
122  int goodDoubleElec10=0,goodDoubleElec15_1=0,goodDoubleElec17_1=0;
123  int goodMet100=0;
124  int goodSingleEle1=0,goodSingleEle2=0,goodSingleEle3=0,goodSingleEle4=0;
125  int goodBtagMu1=0,goodBtagMu2=0,goodBtagMu0=0,goodBtagMu11=0;  
126  int goodBtagMuJet1=0, goodBtagMuJet2=0, goodBtagMuJet3=0, goodBtagMuJet4=0;
127  int goodIsoMu15=0,goodIsoMu17v5=0,goodIsoMu17v6=0;
128
129  for (int itrig = 0; itrig != ntrigs; ++itrig){
130    TString trigName=triggerNames_.triggerName(itrig);
131    if(strcmp(trigName,"HLT_Mu9")==0) goodMu9++;
132    if(strcmp(trigName,"HLT_IsoMu9")==0) goodIsoMu9++;
133    if(strcmp(trigName,"HLT_IsoMu13_v3")==0) goodIsoMu13_3++;
134    if(strcmp(trigName,"HLT_Mu11")==0) goodMu11++;
135    if(strcmp(trigName,"HLT_DoubleMu3")==0) goodDoubleMu3++;
136    if(strcmp(trigName,"HLT_DoubleMu3_v2")==0) goodDoubleMu3_2++;
137    if(strcmp(trigName,"HLT_Mu15")==0) goodMu15++;
138    if(strcmp(trigName,"HLT_Mu15_v1")==0) goodMu15_1++;
139
140    if(strcmp(trigName,"HLT_DoubleEle10_SW_L1R")==0) goodDoubleElec10++;
141    if(strcmp(trigName,"HLT_DoubleEle15_SW_L1R_v1")==0) goodDoubleElec15_1++;
142    if(strcmp(trigName,"HLT_DoubleEle17_SW_L1R_v1")==0) goodDoubleElec17_1++;
143    if(strcmp(trigName,"HLT_MET100_v1")==0) goodMet100++;
144    if(strcmp(trigName,"HLT_Ele15_SW_L1R")==0) goodSingleEle1++;
145    if(strcmp(trigName,"HLT_Ele17_SW_TightEleId_L1R")==0) goodSingleEle2++;
146    if(strcmp(trigName,"HLT_Ele17_SW_TighterEleIdIsol_L1R_v2")==0) goodSingleEle3++;
147    if(strcmp(trigName,"HLT_Ele17_SW_TighterEleIdIsol_L1R_v3")==0) goodSingleEle4++;
148    if(strcmp(trigName,"HLT_BTagMu_DiJet20U_v1")==0) goodBtagMu1++;
149    if(strcmp(trigName,"HLT_BTagMu_DiJet30U_Mu5_v3")==0) goodBtagMu2++;
150    if(strcmp(trigName,"HLT_BTagMu_Jet20U")==0) goodBtagMu0++;
151    if(strcmp(trigName,"HLT_BTagMu_DiJet20U_Mu5_v1")==0) goodBtagMu11++;
152    if(strcmp(trigName,"HLT_Mu17_CentralJet30_BTagIP_v2")==0) goodBtagMuJet1++;
153    if(strcmp(trigName,"HLT_Mu17_CentralJet30_v2")==0) goodBtagMuJet2++;
154    if(strcmp(trigName,"HLT_HT200_Mu5_PFMHT35_v2")==0) goodBtagMuJet3++;
155    if(strcmp(trigName,"HLT_Mu12_CentralJet30_BTagIP_v2")==0) goodBtagMuJet4++;  
156
157    if(strcmp(trigName,"HLT_IsoMu15_v5")==0) goodIsoMu15++;
158    if(strcmp(trigName,"HLT_IsoMu17_v5")==0) goodIsoMu17v5++;  
159    if(strcmp(trigName,"HLT_IsoMu17_v6")==0) goodIsoMu17v6++;  
160  }
161  int itrig1=-99;
162  if(goodMu9!=0) itrig1 = triggerNames_.triggerIndex("HLT_Mu9");
163  int itrig2=-99;
164  if(goodIsoMu9!=0) itrig2 = triggerNames_.triggerIndex("HLT_IsoMu9");
165  int itrig3=-99;
166  if(goodIsoMu13_3!=0) itrig3 = triggerNames_.triggerIndex("HLT_IsoMu13_v3");
167  int itrig4=-99;
168  if(goodMu11!=0) itrig4 = triggerNames_.triggerIndex("HLT_Mu11");
169  int itrig5=-99;  
170  if(goodDoubleMu3!=0) itrig5 = triggerNames_.triggerIndex("HLT_DoubleMu3");
171  int itrig6=-99;
172  if(goodDoubleMu3_2!=0) itrig6 = triggerNames_.triggerIndex("HLT_DoubleMu3_v2");
173  int itrig7=-99;
174  if(goodMu15!=0) itrig7 = triggerNames_.triggerIndex("HLT_Mu15");
175  int itrig8=-99;
176  if(goodMu15_1!=0) itrig8 = triggerNames_.triggerIndex("HLT_Mu15_v1");
177
178  int itrig9=-99;
179  if(goodDoubleElec10!=0) itrig9 = triggerNames_.triggerIndex("HLT_DoubleEle10_SW_L1R");
180  int itrig10=-99;
181  if(goodDoubleElec15_1!=0) itrig10 = triggerNames_.triggerIndex("HLT_DoubleEle15_SW_L1R_v1");
182  int itrig11=-99;
183  if(goodDoubleElec17_1!=0) itrig11 = triggerNames_.triggerIndex("HLT_DoubleEle17_SW_L1R_v1");
184  int itrig12=-99;
185  if(goodMet100!=0) itrig12 = triggerNames_.triggerIndex("HLT_MET100_v1");
186
187  int itrig13=-99;
188  if(goodSingleEle1!=0) itrig13 = triggerNames_.triggerIndex("HLT_Ele15_SW_L1R");
189  int itrig14=-99;
190  if(goodSingleEle2!=0) itrig14 = triggerNames_.triggerIndex("HLT_Ele17_SW_TightEleId_L1R");
191  int itrig15=-99;
192  if(goodSingleEle3!=0) itrig15 = triggerNames_.triggerIndex("HLT_Ele17_SW_TighterEleIdIsol_L1R_v2");
193  int itrig16=-99;
194  if(goodSingleEle4!=0) itrig16 = triggerNames_.triggerIndex("HLT_Ele17_SW_TighterEleIdIsol_L1R_v3");
195
196  int itrig17=-99;
197  if(goodBtagMu1!=0) itrig17 = triggerNames_.triggerIndex("HLT_BTagMu_DiJet20U_v1");      
198  int itrig18=-99;
199  if(goodBtagMu2!=0) itrig18 = triggerNames_.triggerIndex("HLT_BTagMu_DiJet30U_Mu5_v3");    
200  int itrig19=-99;
201  if(goodBtagMu0!=0) itrig19 = triggerNames_.triggerIndex("HLT_BTagMu_Jet20U");
202  int itrig20=-99;
203  if(goodBtagMu11!=0) itrig20 = triggerNames_.triggerIndex("HLT_BTagMu_DiJet20U_Mu5_v1");
204  int itrig21=-99;
205  if(goodBtagMuJet1!=0) itrig21 = triggerNames_.triggerIndex("HLT_Mu17_CentralJet30_BTagIP_v2");
206  int itrig22=-99;
207  if(goodBtagMuJet2!=0) itrig22 = triggerNames_.triggerIndex("HLT_Mu17_CentralJet30_v2");
208  int itrig23=-99;
209  if(goodBtagMuJet3!=0) itrig23 = triggerNames_.triggerIndex("HLT_HT200_Mu5_PFMHT35_v2");
210  int itrig231=-99;
211  if(goodBtagMuJet4!=0) itrig231 = triggerNames_.triggerIndex("HLT_Mu12_CentralJet30_BTagIP_v2");  
212
213  int itrig24=-99;
214  if(goodIsoMu15!=0) itrig24 = triggerNames_.triggerIndex("HLT_IsoMu15_v5");
215  int itrig25=-99;
216  if(goodIsoMu17v5!=0) itrig25 = triggerNames_.triggerIndex("HLT_IsoMu17_v5");
217  int itrig26=-99;
218  if(goodIsoMu17v6!=0) itrig26 = triggerNames_.triggerIndex("HLT_IsoMu17_v6");
219  
220  if (itrig1!=-99 && hltresults->accept(itrig1))  auxInfo->triggerInfo.triggerMu9=1; else auxInfo->triggerInfo.triggerMu9=0;
221  if (itrig2!=-99 && hltresults->accept(itrig2))  auxInfo->triggerInfo.triggerIsoMu9=1; else auxInfo->triggerInfo.triggerIsoMu9=0;
222  if (itrig3!=-99 && hltresults->accept(itrig3))  auxInfo->triggerInfo.triggerIsoMu13_3=1; else auxInfo->triggerInfo.triggerIsoMu13_3=0;
223  if (itrig4!=-99 && hltresults->accept(itrig4))  auxInfo->triggerInfo.triggerMu11=1; else auxInfo->triggerInfo.triggerMu11=0;
224  if (itrig5!=-99 && hltresults->accept(itrig5))  auxInfo->triggerInfo.triggerDoubleMu3=1; else auxInfo->triggerInfo.triggerDoubleMu3=0;
225  if (itrig6!=-99 && hltresults->accept(itrig6))  auxInfo->triggerInfo.triggerDoubleMu3_2=1; else auxInfo->triggerInfo.triggerDoubleMu3_2=0;
226  if (itrig7!=-99 && hltresults->accept(itrig7))  auxInfo->triggerInfo.triggerMu15=1; else auxInfo->triggerInfo.triggerMu15=0;
227  if (itrig8!=-99 && hltresults->accept(itrig8))  auxInfo->triggerInfo.triggerMu15_1=1; else auxInfo->triggerInfo.triggerMu15_1=0;  
228  
229  if (itrig9!=-99 && hltresults->accept(itrig9))  auxInfo->triggerInfo.triggerDoubleElec10=1; else auxInfo->triggerInfo.triggerDoubleElec10=0;  
230  if (itrig10!=-99 && hltresults->accept(itrig10))  auxInfo->triggerInfo.triggerDoubleElec15_1=1; else auxInfo->triggerInfo.triggerDoubleElec15_1=0;  
231  if (itrig11!=-99 && hltresults->accept(itrig11))  auxInfo->triggerInfo.triggerDoubleElec17_1=1; else auxInfo->triggerInfo.triggerDoubleElec17_1=0;  
232  if (itrig12!=-99 && hltresults->accept(itrig12))  auxInfo->triggerInfo.triggerMet100_1=1; else auxInfo->triggerInfo.triggerMet100_1=0;
233  
234  if (itrig13!=-99 && hltresults->accept(itrig13))  auxInfo->triggerInfo.triggerSingleEle1=1; else auxInfo->triggerInfo.triggerSingleEle1=0;
235  if (itrig14!=-99 && hltresults->accept(itrig14))  auxInfo->triggerInfo.triggerSingleEle2=1; else auxInfo->triggerInfo.triggerSingleEle2=0;
236  if (itrig15!=-99 && hltresults->accept(itrig15))  auxInfo->triggerInfo.triggerSingleEle3=1; else auxInfo->triggerInfo.triggerSingleEle3=0;
237  if (itrig16!=-99 && hltresults->accept(itrig16))  auxInfo->triggerInfo.triggerSingleEle4=1; else auxInfo->triggerInfo.triggerSingleEle4=0;
238  
239  if (itrig17!=-99 && hltresults->accept(itrig17))  auxInfo->triggerInfo.triggerBtagMu1=1; else auxInfo->triggerInfo.triggerBtagMu1=0;  
240  if (itrig18!=-99 && hltresults->accept(itrig18))  auxInfo->triggerInfo.triggerBtagMu2=1; else auxInfo->triggerInfo.triggerBtagMu2=0;
241  if (itrig19!=-99 && hltresults->accept(itrig19))  auxInfo->triggerInfo.triggerBtagMu0=1; else auxInfo->triggerInfo.triggerBtagMu0=0;
242  if (itrig20!=-99 && hltresults->accept(itrig20))  auxInfo->triggerInfo.triggerBtagMu11=1; else auxInfo->triggerInfo.triggerBtagMu11=0;
243  if (itrig21!=-99 && hltresults->accept(itrig21))  auxInfo->triggerInfo.triggerBtagMuJet1=1; else auxInfo->triggerInfo.triggerBtagMuJet1=0;
244  if (itrig22!=-99 && hltresults->accept(itrig22))  auxInfo->triggerInfo.triggerBtagMuJet2=1; else auxInfo->triggerInfo.triggerBtagMuJet2=0;
245  if (itrig23!=-99 && hltresults->accept(itrig23))  auxInfo->triggerInfo.triggerBtagMuJet3=1; else auxInfo->triggerInfo.triggerBtagMuJet3=0;
246  if (itrig231!=-99 && hltresults->accept(itrig231))  auxInfo->triggerInfo.triggerBtagMuJet4=1; else auxInfo->triggerInfo.triggerBtagMuJet4=0;
247  
248  if (itrig24!=-99 && hltresults->accept(itrig24))  auxInfo->triggerInfo.triggerIsoMu15=1; else auxInfo->triggerInfo.triggerIsoMu15=0;
249  if (itrig25!=-99 && hltresults->accept(itrig25))  auxInfo->triggerInfo.triggerIsoMu17v5=1; else auxInfo->triggerInfo.triggerIsoMu17v5=0;
250  if (itrig26!=-99 && hltresults->accept(itrig26))  auxInfo->triggerInfo.triggerIsoMu17v6=1; else auxInfo->triggerInfo.triggerIsoMu17v6=0;
251  
252  if (itrig1==-99)  auxInfo->triggerInfo.triggerMu9=-99;
253  if (itrig2==-99)  auxInfo->triggerInfo.triggerIsoMu9=-99;
254  if (itrig3==-99)  auxInfo->triggerInfo.triggerIsoMu13_3=-99;
255  if (itrig4==-99)  auxInfo->triggerInfo.triggerMu11=-99;
256  if (itrig5==-99)  auxInfo->triggerInfo.triggerDoubleMu3=-99;
257  if (itrig6==-99)  auxInfo->triggerInfo.triggerDoubleMu3_2=-99;
258  if (itrig7==-99)  auxInfo->triggerInfo.triggerMu15=-99;
259  if (itrig8==-99)  auxInfo->triggerInfo.triggerMu15_1=-99;
260
261  if (itrig9==-99)  auxInfo->triggerInfo.triggerDoubleElec10=-99;
262  if (itrig10==-99)  auxInfo->triggerInfo.triggerDoubleElec15_1=-99;
263  if (itrig11==-99)  auxInfo->triggerInfo.triggerDoubleElec17_1=-99;
264  if (itrig12==-99) auxInfo->triggerInfo.triggerMet100_1=-99;
265
266  if (itrig13==-99) auxInfo->triggerInfo.triggerSingleEle1=-99;
267  if (itrig14==-99) auxInfo->triggerInfo.triggerSingleEle2=-99;
268  if (itrig15==-99) auxInfo->triggerInfo.triggerSingleEle3=-99;
269  if (itrig16==-99) auxInfo->triggerInfo.triggerSingleEle4=-99;
270
271  if(itrig17==-99)  auxInfo->triggerInfo.triggerBtagMu1=-99;  
272  if(itrig18==-99)  auxInfo->triggerInfo.triggerBtagMu2=-99;
273  if(itrig19==-99)  auxInfo->triggerInfo.triggerBtagMu0=-99;
274  if(itrig20==-99)  auxInfo->triggerInfo.triggerBtagMu11=-99;
275  if(itrig21==-99)  auxInfo->triggerInfo.triggerBtagMuJet1=-99;
276  if(itrig22==-99)  auxInfo->triggerInfo.triggerBtagMuJet2=-99;
277  if(itrig23==-99)  auxInfo->triggerInfo.triggerBtagMuJet3=-99;
278  if(itrig231==-99)  auxInfo->triggerInfo.triggerBtagMuJet4=-99;
279
280  if(itrig24==-99)  auxInfo->triggerInfo.triggerIsoMu15=-99;
281  if(itrig25==-99)  auxInfo->triggerInfo.triggerIsoMu17v5=-99;
282  if(itrig26==-99)  auxInfo->triggerInfo.triggerIsoMu17v6=-99;
283
284  //  MinDRMu=-99.,MCBestMuId=-99,MCBestMuMomId=-99,MCBestMuGMomId=-99;
285  //  for(int i=0;i<50;i++) {DeltaRMu[i]=-99;}
286
145  
146 +  int ntrigs = hltresults->size();
147 +  if (ntrigs==0){std::cerr << "%HLTInfo -- No trigger name given in TriggerResults of the input " << std::endl;}
148  
149    BeamSpot vertexBeamSpot;
150    edm::Handle<reco::BeamSpot> recoBeamSpotHandle;
# Line 318 | Line 178 | HbbAnalyzerNew::produce(edm::Event& iEve
178    
179    auxInfo->pvInfo.firstPVInPT2 = TVector3(RecVtxFirst.x(), RecVtxFirst.y(), RecVtxFirst.z());
180    auxInfo->pvInfo.firstPVInProb = TVector3(RecVtx.x(), RecVtx.y(), RecVtx.z());
181 <
181 >  
182 >  (auxInfo->pvInfo).efirstPVInPT2 = (RecVtxFirst.error());
183 >  (auxInfo->pvInfo).efirstPVInProb = RecVtx.error();
184      
185    edm::Handle<double> rhoHandle;
186 <  iEvent.getByLabel(edm::InputTag("kt6PFJets", "rho"),rhoHandle);   auxInfo->puInfo.rho = *rhoHandle;
187 <  
186 >  iEvent.getByLabel(edm::InputTag("kt6PFJets", "rho"),rhoHandle);  
187 >  auxInfo->puInfo.rho = *rhoHandle;
188 >  
189 >  edm::Handle<double> rho25Handle;
190 >  iEvent.getByLabel(edm::InputTag("kt6PFJets25", "rho"),rho25Handle);  
191 >  auxInfo->puInfo.rho25 = *rho25Handle;
192 >
193 >  edm::Handle<std::vector< PileupSummaryInfo> > puHandle;
194 >
195 >  if (runOnMC_){
196 >    iEvent.getByType(puHandle);
197 >    if (puHandle.isValid()){
198 >      
199 >      std::vector< PileupSummaryInfo> pu = (*puHandle);
200 >      for (std::vector<PileupSummaryInfo>::const_iterator it= pu.begin(); it!=pu.end(); ++it){
201 >         int bx = (*it).getBunchCrossing();
202 >        unsigned int num = (*it).getPU_NumInteractions();
203 >        //      std::cout <<" PU PUSHING "<<bx<<" " <<num<<std::endl;
204 >        auxInfo->puInfo.pus[bx]  =num;
205 >      }
206 >    }
207 >  }
208 >
209    //// real start
210    
211    
# Line 333 | Line 216 | HbbAnalyzerNew::produce(edm::Event& iEve
216    
217    if(runOnMC_){
218      
219 <    int Hin=-99,Win=-99,Zin=-99,bin=-99,bbarin=-99;
337 <    iEvent.getByLabel("genParticles", genParticles);
219 >   iEvent.getByLabel("genParticles", genParticles);
220      
221      for(size_t i = 0; i < genParticles->size(); ++ i) {
222 <      int Hin=-99,Win=-99,Zin=-99,bin=-99,bbarin=-99;
341 <      
222 >    
223        const GenParticle & p = (*genParticles)[i];
224        int id = p.pdgId();
225        int st = p.status();  
226        
227        if(id==25){
228          
348        /*          int wh=0;
349                    int nMoth = p.numberOfMothers();
350                    for(size_t jj = 0; jj < nMoth; ++ jj) {
351                    const Candidate * mom = p.mother( jj );
352                    int nmomdau= mom->numberOfDaughters();
353                    for(size_t j = 0; j < nmomdau; ++ j) {
354                    const Candidate * Wmomdau = mom->daughter( j );
355                    if(abs(Wmomdau->pdgId())==24) wh++;
356                    }
357                    }
358                    
359                    if(wh==0) continue;
360        */
229          VHbbEventAuxInfo::ParticleMCInfo htemp;
362        Hin=i;
230          htemp.status=st;
231          htemp.charge=p.charge();
232          if(p.mother(0)!=0) htemp.momid=p.mother(0)->pdgId();
233          if(p.mother(0)!=0 && p.mother(0)->mother(0)!=0) htemp.gmomid=p.mother(0)->mother(0)->pdgId();
234          htemp.p4 = GENPTOLOR(p);
235 <          
235 >        
236          int ndau = p.numberOfDaughters();
237          for(int j = 0; j < ndau; ++ j) {
238            const Candidate * Hdau = p.daughter( j );
# Line 374 | Line 241 | HbbAnalyzerNew::produce(edm::Event& iEve
241          }
242          (auxInfo->mcH).push_back(htemp);
243        }
244 <        
245 <        
244 >      
245 >      
246        if(abs(id)==24){
247 <          
381 <        Win=i;
247 >        
248          VHbbEventAuxInfo::ParticleMCInfo wtemp;
249          wtemp.status=st;
250          wtemp.charge=p.charge();
251          if(p.mother(0)!=0) wtemp.momid=p.mother(0)->pdgId();
252          if(p.mother(0)!=0 && p.mother(0)->mother(0)!=0) wtemp.gmomid=p.mother(0)->mother(0)->pdgId();
253          wtemp.p4=GENPTOLOR(p);
254 <
254 >        
255          int ndau = p.numberOfDaughters();
256          for(int j = 0; j < ndau; ++ j) {
257            const Candidate * Wdau = p.daughter( j );
# Line 397 | Line 263 | HbbAnalyzerNew::produce(edm::Event& iEve
263          
264        if(abs(id)==23){
265  
266 <        Zin=i;
266 >
267          VHbbEventAuxInfo::ParticleMCInfo ztemp;
268          ztemp.status=st;
269          ztemp.charge=p.charge();
# Line 409 | Line 275 | HbbAnalyzerNew::produce(edm::Event& iEve
275          for(int j = 0; j < ndau; ++ j) {
276            const Candidate * Zdau = p.daughter( j );
277            ztemp.dauid.push_back(Zdau->pdgId());
278 <          ztemp.dauFourMomentum.push_back(GENPTOLOR(p));
278 >          ztemp.dauFourMomentum.push_back(GENPTOLORP(Zdau));
279          }
280          auxInfo->mcZ.push_back(ztemp);
281        }
# Line 419 | Line 285 | HbbAnalyzerNew::produce(edm::Event& iEve
285        
286        
287        if(id==5){
288 <        bin=i;
288 >
289          VHbbEventAuxInfo::ParticleMCInfo btemp;
290          btemp.status=st;
291          btemp.charge=p.charge();
292          if(p.mother(0)!=0) btemp.momid=p.mother(0)->pdgId();
293          if(p.mother(0)!=0 && p.mother(0)->mother(0)!=0) btemp.gmomid=p.mother(0)->mother(0)->pdgId();
294 +
295 +        btemp.p4=GENPTOLOR(p);
296 +        
297 +        int nHDaubdau = p.numberOfDaughters();
298 +        for(int j = 0; j < nHDaubdau; ++ j) {
299 +          const Candidate * Bdau = p.daughter( j );
300 +          btemp.dauid.push_back(Bdau->pdgId());
301 +        }
302          auxInfo->mcB.push_back(btemp);
303        }
304        
305        if(id==-5){
306 <        bbarin=i;
306 >
307          VHbbEventAuxInfo::ParticleMCInfo bbtemp;
308          
309          bbtemp.status=st;
310          bbtemp.charge=p.charge();
311          if(p.mother(0)!=0) bbtemp.momid=p.mother(0)->pdgId();
312          if(p.mother(0)!=0 && p.mother(0)->mother(0)!=0) bbtemp.gmomid=p.mother(0)->mother(0)->pdgId();
313 +
314 +        bbtemp.p4=GENPTOLOR(p);
315 +        
316 +        int nHDaubdau = p.numberOfDaughters();
317 +        for(int j = 0; j < nHDaubdau; ++ j) {
318 +          const Candidate * Bdau = p.daughter( j );
319 +          bbtemp.dauid.push_back(Bdau->pdgId());
320 +        }
321 +
322 +
323          auxInfo->mcBbar.push_back(bbtemp);
324       }
325        
# Line 445 | Line 329 | HbbAnalyzerNew::produce(edm::Event& iEve
329          ctemp.charge=p.charge();
330          if(p.mother(0)!=0) ctemp.momid=p.mother(0)->pdgId();
331          if(p.mother(0)!=0 && p.mother(0)->mother(0)!=0) ctemp.gmomid=p.mother(0)->mother(0)->pdgId();
332 +
333 +        ctemp.p4=GENPTOLOR(p);
334 +        
335 +        int nHDaubdau = p.numberOfDaughters();
336 +        for(int j = 0; j < nHDaubdau; ++ j) {
337 +          const Candidate * Bdau = p.daughter( j );
338 +          ctemp.dauid.push_back(Bdau->pdgId());
339 +        }
340 +
341          auxInfo->mcC.push_back(ctemp);  
342 +
343        }
450    
451      if(bin!=-99 && bbarin!=-99){
452      const Candidate & bGen = (*genParticles)[bin];
453      const Candidate & bbarGen = (*genParticles)[bbarin];
454      ((auxInfo->mcB).back()).p4=GENPTOLOR(bGen);
455     ((auxInfo->mcBbar).back()).p4=GENPTOLOR(bbarGen);
456      
457      int nHDaubdau = bGen.numberOfDaughters();
458      for(int j = 0; j < nHDaubdau; ++ j) {
459        const Candidate * Bdau = bGen.daughter( j );
460        ((auxInfo->mcB).back()).dauid.push_back(Bdau->pdgId());
461        ((auxInfo->mcB).back()).dauFourMomentum.push_back(GENPTOLORP(Bdau));
462      }
463      int nHDaubbardau = bbarGen.numberOfDaughters();
464      for(int j = 0; j < nHDaubbardau; ++ j) {
465        const Candidate * Bbardau = bbarGen.daughter( j );
466        ((auxInfo->mcBbar).back()).dauid.push_back(Bbardau->pdgId());
467        ((auxInfo->mcBbar).back()).dauFourMomentum.push_back(GENPTOLORP(Bbardau));
468      }
469      
470    }
344  
345      }
346  
474
347    }   // isMC
348  
349    /////// end generator block    
# Line 491 | Line 363 | HbbAnalyzerNew::produce(edm::Event& iEve
363    iEvent.getByLabel(subjetLabel_,subjetHandle);
364    edm::View<pat::Jet> subjets = *subjetHandle;
365  
366 +  // filter jet  
367 +  edm::Handle<edm::View<pat::Jet> > filterjetHandle;
368 +  iEvent.getByLabel(filterjetLabel_,filterjetHandle);
369 +  edm::View<pat::Jet> filterjets = *filterjetHandle;
370 +
371    // standard jets
372  
373    edm::Handle<edm::View<pat::Jet> > simplejet1Handle;
# Line 514 | Line 391 | HbbAnalyzerNew::produce(edm::Event& iEve
391    iEvent.getByLabel(eleLabel_,electronHandle);
392    edm::View<pat::Electron> electrons = *electronHandle;
393  
517  edm::Handle<edm::View<pat::MET> > metHandle;
518  iEvent.getByLabel(metLabel_,metHandle);
519  edm::View<pat::MET> mets = *metHandle;
394  
395    //   edm::Handle<edm::View<pat::Photon> > phoHandle;
396    //   iEvent.getByLabel(phoLabel_,phoHandle);
# Line 526 | Line 400 | HbbAnalyzerNew::produce(edm::Event& iEve
400    iEvent.getByLabel(tauLabel_,tauHandle);
401    edm::View<pat::Tau> taus = *tauHandle;
402  
529  edm::Handle<CandidateView> dimuons;
530  iEvent.getByLabel(dimuLabel_,dimuons);
531
532  edm::Handle<CandidateView> dielectrons;
533  iEvent.getByLabel(dielecLabel_,dielectrons);
403  
404    //BTAGGING SCALE FACTOR FROM DATABASE
405    //Combined Secondary Vertex Loose
406    edm::ESHandle<BtagPerformance> bTagSF_CSVL_;
407    iSetup.get<BTagPerformanceRecord>().get("BTAGCSVL",bTagSF_CSVL_);
539  const BtagPerformance & bTagSF_CSVL = *(bTagSF_CSVL_.product());
408    //Combined Secondary Vertex Medium
409    edm::ESHandle<BtagPerformance> bTagSF_CSVM_;
410    iSetup.get<BTagPerformanceRecord>().get("BTAGCSVM",bTagSF_CSVM_);
543  const BtagPerformance & bTagSF_CSVM = *(bTagSF_CSVM_.product());
411    //Combined Secondary Vertex Tight
412    edm::ESHandle<BtagPerformance> bTagSF_CSVT_;
413    iSetup.get<BTagPerformanceRecord>().get("BTAGCSVT",bTagSF_CSVT_);
547  const BtagPerformance & bTagSF_CSVT = *(bTagSF_CSVT_.product());
414  
415    edm::ESHandle<BtagPerformance> mistagSF_CSVL_;
416    iSetup.get<BTagPerformanceRecord>().get("MISTAGCSVL",mistagSF_CSVL_);
551  const BtagPerformance & mistagSF_CSVL = *(mistagSF_CSVL_.product());
417    //Combined Secondary Vertex Medium
418    edm::ESHandle<BtagPerformance> mistagSF_CSVM_;
419    iSetup.get<BTagPerformanceRecord>().get("MISTAGCSVM",mistagSF_CSVM_);
555  const BtagPerformance & mistagSF_CSVM = *(mistagSF_CSVM_.product());
420    //Combined Secondary Vertex Tight
421    edm::ESHandle<BtagPerformance> mistagSF_CSVT_;
422    iSetup.get<BTagPerformanceRecord>().get("MISTAGCSVT",mistagSF_CSVT_);
559  const BtagPerformance & mistagSF_CSVT = *(mistagSF_CSVT_.product());
423  
424 + BTagSFContainer btagSFs;
425 +  btagSFs.BTAGSF_CSVL = (bTagSF_CSVL_.product());
426 +  btagSFs.BTAGSF_CSVM = (bTagSF_CSVM_.product());
427 +  btagSFs.BTAGSF_CSVT = (bTagSF_CSVT_.product());
428 +  btagSFs.MISTAGSF_CSVL = (mistagSF_CSVL_.product());
429 +  btagSFs.MISTAGSF_CSVM = (mistagSF_CSVM_.product());
430 +  btagSFs.MISTAGSF_CSVT = (mistagSF_CSVT_.product());
431  
432 + #ifdef ENABLE_SIMPLEJETS1
433    for(edm::View<pat::Jet>::const_iterator jet_iter = simplejets1.begin(); jet_iter!=simplejets1.end(); ++jet_iter){
434      //     if(jet_iter->pt()>50)
435      //       njetscounter++;
436      VHbbEvent::SimpleJet sj;
437 <    sj.flavour = jet_iter->partonFlavour();
437 >    //    std::cout <<" sj1"<<std::endl;
438 >    fillSimpleJet(sj,jet_iter);
439 >    //    if(!runOnMC_)
440  
441 <    sj.tche=jet_iter->bDiscriminator("trackCountingHighEffBJetTags");
569 <    sj.tchp=jet_iter->bDiscriminator("trackCountingHighPurBJetTags");
570 <    sj.jp=jet_iter->bDiscriminator("jetProbabilityBJetTags");
571 <    sj.jpb=jet_iter->bDiscriminator("jetBProbabilityBJetTags");
572 <    sj.ssvhe=jet_iter->bDiscriminator("simpleSecondaryVertexHighEffBJetTags");
573 <    sj.csv=jet_iter->bDiscriminator("combinedSecondaryVertexBJetTags");
574 <    sj.csvmva=jet_iter->bDiscriminator("combinedSecondaryVertexMVABJetTags");
575 <    sj.charge=jet_iter->jetCharge();
576 <    sj.ntracks=jet_iter->associatedTracks().size();
577 <    sj.p4=GENPTOLORP(jet_iter);
578 <    sj.chargedTracksFourMomentum=(getChargedTracksMomentum(&*(jet_iter)));
579 <    sj.SF_CSVL=1;
580 <    sj.SF_CSVM=1;
581 <    sj.SF_CSVT=1;
582 <    sj.SF_CSVLerr=0;
583 <    sj.SF_CSVMerr=0;
584 <    sj.SF_CSVTerr=0;
585 <    //
586 <    // add tVector
587 <    //
588 <    sj.tVector = getTvect(&(*jet_iter));
441 >   setJecUnc(sj,jecUnc);
442  
443      Particle::LorentzVector p4Jet = jet_iter->p4();
444  
445      if(runOnMC_){
446 <      double minb1DR=9999.;
447 <      //scale factor
448 <      BinningPointByMap measurePoint;
449 <      //for a USDG
450 <      //for CB jets
451 <      //scale factor 1 for CB jets over 240GeV/c
452 <      if( TMath::Abs(sj.flavour) == 4 or TMath::Abs(sj.flavour) == 5 ){
453 <        measurePoint.insert( BinningVariables::JetEt, sj.p4.Et() );
454 <        measurePoint.insert( BinningVariables::JetAbsEta, fabs(sj.p4.Eta()) );
455 <        if( bTagSF_CSVL.isResultOk(PerformanceResult::BTAGBEFFCORR , measurePoint) ){
456 <          sj.SF_CSVL = bTagSF_CSVL.getResult(PerformanceResult::BTAGBEFFCORR , measurePoint);
604 <          sj.SF_CSVLerr = bTagSF_CSVL.getResult(PerformanceResult::BTAGBERRCORR , measurePoint);          
605 <          if(verbose_){
606 <            std::clog << "C/B Jet flavour = " << sj.flavour << std::endl;
607 <            std::clog << "C/B Jet Et = " << sj.p4.Et() << std::endl;
608 <            std::clog << "C/B Jet eta = " << sj.p4.Eta() << std::endl;      
609 <            std::clog << "C/B Scale Factor = " << sj.SF_CSVL << std::endl;
610 <            std::clog << "C/B Scale Factor error = " << sj.SF_CSVLerr << std::endl;
611 <          }
612 <        }
613 <        if( bTagSF_CSVM.isResultOk(PerformanceResult::BTAGBEFFCORR , measurePoint) ){
614 <          sj.SF_CSVM = bTagSF_CSVM.getResult(PerformanceResult::BTAGBEFFCORR , measurePoint);
615 <          sj.SF_CSVMerr = bTagSF_CSVM.getResult(PerformanceResult::BTAGBERRCORR , measurePoint);          
616 <        }
617 <        if( bTagSF_CSVT.isResultOk(PerformanceResult::BTAGBEFFCORR , measurePoint) ){
618 <          sj.SF_CSVT = bTagSF_CSVT.getResult(PerformanceResult::BTAGBEFFCORR , measurePoint);
619 <          sj.SF_CSVTerr = bTagSF_CSVT.getResult(PerformanceResult::BTAGBERRCORR , measurePoint);          
620 <        }
621 <        else{
622 <          std::cerr << "No SF found in the database for this jet" << std::endl;
623 <          if(verbose_){
624 <            std::clog << "No SF found: Jet flavour = " << sj.flavour << std::endl;
625 <            std::clog << "No SF found: Jet Et = " << sj.p4.Et() << std::endl;
626 <            std::clog << "No SF found: Jet eta = " << sj.p4.Eta() << std::endl;
627 <          }
628 <        }
446 >
447 >      fillScaleFactors(sj, btagSFs);
448 >
449 >      //PAT genJet matching
450 >      //genJet
451 >      const reco::GenJet *gJ = jet_iter->genJet();
452 >      //physical parton for mother info ONLY
453 >      if( (jet_iter->genParton()) ){
454 >        sj.bestMCid = jet_iter->genParton()->pdgId();
455 >        if( (jet_iter->genParton()->mother()) )
456 >          sj.bestMCmomid=jet_iter->genParton()->mother()->pdgId();
457        }
458 <      else {
459 <        measurePoint.insert( BinningVariables::JetEt, sj.p4.Et() );
460 <        measurePoint.insert( BinningVariables::JetAbsEta, fabs(sj.p4.Eta()) );
461 <        if( mistagSF_CSVL.isResultOk(PerformanceResult::BTAGLEFFCORR , measurePoint) ){
462 <          sj.SF_CSVL = mistagSF_CSVL.getResult(PerformanceResult::BTAGLEFFCORR , measurePoint);
463 <          sj.SF_CSVLerr = mistagSF_CSVL.getResult(PerformanceResult::BTAGLERRCORR , measurePoint);
464 <          if(verbose_){
465 <            std::clog << "Light Jet flavour = " << sj.flavour << std::endl;
466 <            std::clog << "Light Jet Et = " << sj.p4.Et() << std::endl;
639 <            std::clog << "Light Jet eta = " << sj.p4.Eta() << std::endl;            
640 <            std::clog << "Light Scale Factor = " << sj.SF_CSVL << std::endl;
641 <            std::clog << "Light Scale Factor error = " << sj.SF_CSVLerr << std::endl;
642 <          }
643 <        }
644 <        if( mistagSF_CSVM.isResultOk(PerformanceResult::BTAGLEFFCORR , measurePoint) ){
645 <          sj.SF_CSVM = mistagSF_CSVM.getResult(PerformanceResult::BTAGLEFFCORR , measurePoint);
646 <          sj.SF_CSVMerr = mistagSF_CSVM.getResult(PerformanceResult::BTAGLERRCORR , measurePoint);
647 <        }
648 <        if( mistagSF_CSVT.isResultOk(PerformanceResult::BTAGLEFFCORR , measurePoint) ){
649 <          sj.SF_CSVT = mistagSF_CSVT.getResult(PerformanceResult::BTAGLEFFCORR , measurePoint);
650 <          sj.SF_CSVTerr = mistagSF_CSVT.getResult(PerformanceResult::BTAGLERRCORR , measurePoint);
458 >      TLorentzVector gJp4;
459 >      if(gJ){
460 >        gJp4.SetPtEtaPhiE(gJ->pt(),gJ->eta(),gJ->phi(),gJ->energy());
461 >        sj.bestMCp4 = gJp4;
462 >        if(verbose_){
463 >          std::clog << "genJet matched Pt = " << gJp4.Pt() << std::endl;
464 >          std::clog << "genJet matched eta = " << gJp4.Eta() << std::endl;
465 >          std::clog << "genJet matched deltaR = " <<gJp4.DeltaR(sj.p4) << std::endl;
466 >          std::clog << "genJet matched mother id = " << sj.bestMCmomid << std::endl;
467          }
468 <        else{
469 <          std::cerr << "No SF found in the database for this jet" << std::endl;
470 <          if(verbose_){
471 <            std::clog << "No SF found: Jet flavour = " << sj.flavour << std::endl;
472 <            std::clog << "No SF found: Jet Et = " << sj.p4.Et() << std::endl;
473 <            std::clog << "No SF found: Jet eta = " << sj.p4.Eta() << std::endl;
474 <          }
468 >      }
469 >      
470 >    } //isMC
471 >    hbbInfo->simpleJets.push_back(sj);
472 >    
473 >  }
474 > #endif //ENABLE_SIMPLEJETS1
475 >
476 >  for(edm::View<pat::Jet>::const_iterator jet_iter = simplejets3.begin(); jet_iter!=simplejets3.end(); ++jet_iter){
477 >    //     if(jet_iter->pt()>50)
478 >    //       njetscounter++;
479 >    VHbbEvent::SimpleJet sj;
480 >    //    std::cout <<" sj3"<<std::endl;
481 >    fillSimpleJet(sj,jet_iter);
482 >    //    if(!runOnMC_)  
483 >  setJecUnc(sj,jecUnc);
484 >
485 >   Particle::LorentzVector p4Jet = jet_iter->p4();
486 >
487 >    if(runOnMC_){
488 >
489 >      fillScaleFactors(sj, btagSFs);
490 >
491 >      //PAT genJet matching
492 >      //genJet
493 >      const reco::GenJet *gJ = jet_iter->genJet();
494 >      //physical parton for mother info ONLY
495 >      if( (jet_iter->genParton()) ){
496 >        sj.bestMCid = jet_iter->genParton()->pdgId();
497 >        if( (jet_iter->genParton()->mother()) )
498 >          sj.bestMCmomid=jet_iter->genParton()->mother()->pdgId();
499 >      }
500 >      TLorentzVector gJp4;
501 >      if(gJ){
502 >        gJp4.SetPtEtaPhiE(gJ->pt(),gJ->eta(),gJ->phi(),gJ->energy());
503 >        sj.bestMCp4 = gJp4;
504 >        if(verbose_){
505 >          std::clog << "genJet matched Pt = " << gJp4.Pt() << std::endl;
506 >          std::clog << "genJet matched eta = " << gJp4.Eta() << std::endl;
507 >          std::clog << "genJet matched deltaR = " <<gJp4.DeltaR(sj.p4) << std::endl;
508 >          std::clog << "genJet matched mother id = " << sj.bestMCmomid << std::endl;
509          }
510        }
511 +      
512 +    } //isMC
513 +    //
514  
515 <      for(size_t i = 0; i < genParticles->size(); ++ i) {
516 <        const GenParticle & p = (*genParticles)[i];
517 <        int id = p.pdgId();
518 <        if(abs(id)<=6 || id==21 || id==23 || abs(id)==24){
519 <          TLorentzVector bestMCp4_,bestMCp4mom_;
520 <          double bb1DR=TMath::Sqrt((p.eta()-p4Jet.eta())*(p.eta()-p4Jet.eta())+
521 <                                   (p.phi()-p4Jet.phi())*(p.phi()-p4Jet.phi()));
522 <          if(bb1DR<minb1DR){
523 <            minb1DR=bb1DR;
524 <            sj.bestMCid=id;
525 <            bestMCp4_.SetPtEtaPhiE(p.pt(),p.eta(),p.phi(),p.energy());
526 <            sj.bestMCp4= bestMCp4_;
527 <            if(p.mother()!=0){
528 <              sj.bestMCmomid=p.mother()->pdgId();
529 <              bestMCp4mom_.SetPtEtaPhiE(p.mother()->pt(),p.mother()->eta(),p.mother()->phi(),p.mother()->energy());
530 <              sj.bestMCp4mom=bestMCp4mom_;
531 <            }
532 <          }
515 >
516 >    hbbInfo->simpleJets3.push_back(sj);
517 >    
518 >  }
519 >
520 > #ifdef ENABLE_SIMPLEJETS4
521 >  for(edm::View<pat::Jet>::const_iterator jet_iter = simplejets4.begin(); jet_iter!=simplejets4.end(); ++jet_iter){
522 >    //     if(jet_iter->pt()>50)
523 >    //       njetscounter++;
524 >    VHbbEvent::SimpleJet sj;
525 >    //    std::cout <<" sj4"<<std::endl;
526 >    fillSimpleJet(sj,jet_iter);
527 >    //    if(!runOnMC_)  
528 >    setJecUnc(sj,jecUnc);
529 >
530 >
531 >    Particle::LorentzVector p4Jet = jet_iter->p4();
532 >
533 >    if(runOnMC_){
534 >
535 >      fillScaleFactors(sj, btagSFs);
536 >
537 >      //PAT genJet matching
538 >      //genJet
539 >      const reco::GenJet *gJ = jet_iter->genJet();
540 >      //physical parton for mother info ONLY
541 >      if( (jet_iter->genParton()) ){
542 >        sj.bestMCid = jet_iter->genParton()->pdgId();
543 >        if( (jet_iter->genParton()->mother()) )
544 >          sj.bestMCmomid=jet_iter->genParton()->mother()->pdgId();
545 >      }
546 >      TLorentzVector gJp4;
547 >      if(gJ){
548 >        gJp4.SetPtEtaPhiE(gJ->pt(),gJ->eta(),gJ->phi(),gJ->energy());
549 >        sj.bestMCp4 = gJp4;
550 >        if(verbose_){
551 >          std::clog << "genJet matched Pt = " << gJp4.Pt() << std::endl;
552 >          std::clog << "genJet matched eta = " << gJp4.Eta() << std::endl;
553 >          std::clog << "genJet matched deltaR = " <<gJp4.DeltaR(sj.p4) << std::endl;
554 >          std::clog << "genJet matched mother id = " << sj.bestMCmomid << std::endl;
555          }
556        }
557 +      
558      } //isMC
559 <    hbbInfo->simpleJets.push_back(sj);
559 >    hbbInfo->simpleJets4.push_back(sj);
560      
561    }
562 <  
562 > #endif //ENABLE SIMPLEJETS4
563 >
564    
565    for(edm::View<pat::Jet>::const_iterator jet_iter = simplejets2.begin(); jet_iter!=simplejets2.end(); ++jet_iter){
566      
567      VHbbEvent::SimpleJet sj;
568 <    sj.flavour = jet_iter->partonFlavour();
568 >    //    std::cout <<" sj2"<<std::endl;
569 >    fillSimpleJet(sj,jet_iter);    
570 >    //  if(!runOnMC_)  
571 > setJecUnc(sj,jecUnc);
572 >    /*    sj.flavour = jet_iter->partonFlavour();
573      
574      
575      sj.tche=jet_iter->bDiscriminator("trackCountingHighEffBJetTags");
# Line 702 | Line 583 | HbbAnalyzerNew::produce(edm::Event& iEve
583      sj.ntracks=jet_iter->associatedTracks().size();
584      sj.p4=GENPTOLORP(jet_iter);
585      sj.chargedTracksFourMomentum=(getChargedTracksMomentum(&*(jet_iter)));
586 <    sj.tVector = getTvect(&(*jet_iter));
586 >    sj.SF_CSVL=1;
587 >    sj.SF_CSVM=1;
588 >    sj.SF_CSVT=1;
589 >    sj.SF_CSVLerr=0;
590 >    sj.SF_CSVMerr=0;
591 >    sj.SF_CSVTerr=0;
592 >
593 >    //
594 >    // addtaginfo for csv
595 >    //
596  
597 +    if (jet_iter->hasTagInfo("SimpleSecondaryVertex")) {
598 +
599 +      const reco::SecondaryVertexTagInfo * tf = jet_iter->tagInfoSecondaryVertex();
600 +      sj.vtxMass = tf->secondaryVertex(0).p4().mass();
601 +      sj.vtxNTracks = tf->secondaryVertex(0).nTracks();
602 +      Measurement1D m = tf->flightDistance(0);
603 +      sj.vtx3dL = m.value();
604 +      sj.vtx3deL = m.error();
605 +    }
606 +
607 +
608 +    //
609 +    // add tVector
610 +    //
611 +    sj.tVector = getTvect(&(*jet_iter));
612 +    */
613      Particle::LorentzVector p4Jet = jet_iter->p4();
614  
615      if(runOnMC_){
616 <      double minb2DR=9999.;
617 <      for(size_t i = 0; i < genParticles->size(); ++ i) {
618 <        const GenParticle & p = (*genParticles)[i];
619 <        int id = p.pdgId();
620 <        if(abs(id)<=6 || id==21 || id==23 || abs(id)==24){
621 <          double bb2DR=TMath::Sqrt((p.eta()-p4Jet.eta())*(p.eta()-p4Jet.eta())+
622 <                                   (p.phi()-p4Jet.phi())*(p.phi()-p4Jet.phi()));
623 <          if(bb2DR<minb2DR) {minb2DR=bb2DR; sj.bestMCid=id; if(p.mother()!=0) sj.bestMCmomid=p.mother()->pdgId();}
616 >
617 >      //BTV scale factors
618 >      fillScaleFactors(sj, btagSFs);
619 >
620 >      //PAT genJet matching
621 >      //genJet
622 >      const reco::GenJet *gJ = jet_iter->genJet();
623 >      //physical parton for mother info ONLY
624 >      if( (jet_iter->genParton()) ){
625 >        sj.bestMCid = jet_iter->genParton()->pdgId();
626 >        if( (jet_iter->genParton()->mother()) )
627 >          sj.bestMCmomid=jet_iter->genParton()->mother()->pdgId();
628 >      }
629 >      TLorentzVector gJp4;
630 >      if(gJ){
631 >        gJp4.SetPtEtaPhiE(gJ->pt(),gJ->eta(),gJ->phi(),gJ->energy());
632 >        sj.bestMCp4 = gJp4;
633 >        if(verbose_){
634 >          std::clog << "genJet matched Pt = " << gJp4.Pt() << std::endl;
635 >          std::clog << "genJet matched eta = " << gJp4.Eta() << std::endl;
636 >          std::clog << "genJet matched deltaR = " << gJp4.DeltaR(sj.p4) << std::endl;
637 >          std::clog << "genJet matched mother id = " << sj.bestMCmomid << std::endl;
638          }
639        }
640 <    }   //isMC
640 >
641 >        // add flag if a mc lepton is find inside a cone around the jets...
642 >      iEvent.getByLabel("genParticles", genParticles);
643 >      
644 >      for(size_t i = 0; i < genParticles->size(); ++ i) {
645 >    
646 >      const GenParticle & p = (*genParticles)[i];
647 >      int id = 0;
648 >      p.pt()> lep_ptCutForBjets_ ? id= p.pdgId(): 0;
649 >  
650 >      //      std::cout<< "found a muon with pt " << mu->pt()   << std::endl;
651 >      if   ((abs(id)==13 || abs(id)==11) && deltaR(p.eta(), p.phi(), sj.p4.Eta(), sj.p4.Phi() ) <0.3)  sj.isSemiLeptMCtruth=1;
652 >      }
653 >
654 >    }  //isMC
655 >        // add flag if a reco lepton is find inside a cone around the jets...
656 >    edm::Handle<edm::View<reco::Candidate> > muonNoCutsHandle;
657 >    iEvent.getByLabel(muonoCutsLabel_,muonNoCutsHandle);
658 >    edm::View<reco::Candidate> muonsNoCuts = *muonNoCutsHandle;
659 >    
660 >
661 >    for(edm::View<reco::Candidate>::const_iterator mu = muonsNoCuts.begin(); mu!=muonsNoCuts.end() && sj.isSemiLept!=1; ++mu){
662 >      //      std::cout<< "found a muon with pt " << mu->pt()   << std::endl;
663 >      if   ( (mu->pt()> lep_ptCutForBjets_) && deltaR(mu->eta(), mu->phi(), sj.p4.Eta(), sj.p4.Phi() ) <0.3)  sj.isSemiLept=1;
664 >    }
665 >    
666 >    edm::Handle<edm::View<reco::Candidate> > electronNoCutsHandle;
667 >      iEvent.getByLabel(elenoCutsLabel_,electronNoCutsHandle);
668 >      edm::View<reco::Candidate> electronsNoCuts = *electronNoCutsHandle;
669 >      for(edm::View<reco::Candidate>::const_iterator ele = electronsNoCuts.begin(); ele!=electronsNoCuts.end() && sj.isSemiLept!=1; ++ele){
670 >        if   ( (ele->pt()> lep_ptCutForBjets_) && deltaR(ele->eta(), ele->phi(), sj.p4.Eta(), sj.p4.Phi() ) <0.3)  sj.isSemiLept=1;
671 >        //  std::cout<< " found an electron with pt " << ele->pt()   << std::endl;
672 >      }  
673 >
674 >    
675      
676      hbbInfo->simpleJets2.push_back(sj);
677      
# Line 755 | Line 709 | HbbAnalyzerNew::produce(edm::Event& iEve
709      VHbbEvent::HardJet hj;
710      hj.constituents=constituents.size();
711      hj.p4 =GENPTOLORP(jet_iter);
712 <
712 >    
713      for (unsigned int iJC(0); iJC<constituents.size(); ++iJC ){
714        Jet::Constituent icandJet = constituents[iJC];
715  
# Line 788 | Line 742 | HbbAnalyzerNew::produce(edm::Event& iEve
742                              << "," << subjet_iter->bDiscriminator("combinedSecondaryVertexBJetTags") << "\n";}
743  
744      VHbbEvent::SimpleJet sj;
745 <
746 <    sj.flavour = subjet_iter->partonFlavour();
745 >    //    std::cout <<" sub jet "<<std::endl;
746 >    fillSimpleJet(sj,subjet_iter);
747 >    //  if(!runOnMC_)  
748 >    setJecUnc(sj,jecUnc);
749 >    /*    sj.flavour = subjet_iter->partonFlavour();
750      sj.tVector = getTvect(&(*subjet_iter));
751      sj.tche=subjet_iter->bDiscriminator("trackCountingHighEffBJetTags");
752      sj.tchp=subjet_iter->bDiscriminator("trackCountingHighPurBJetTags");
# Line 802 | Line 759 | HbbAnalyzerNew::produce(edm::Event& iEve
759      sj.ntracks=subjet_iter->associatedTracks().size();
760      sj.p4=GENPTOLORP(subjet_iter);
761      sj.p4=(getChargedTracksMomentum(&*(subjet_iter)));
762 +
763 +    //
764 +    // addtaginfo for csv
765 +    //
766 +
767 +    if (subjet_iter->hasTagInfo("SimpleSecondaryVertex")) {
768 +
769 +      const reco::SecondaryVertexTagInfo * tf = subjet_iter->tagInfoSecondaryVertex();
770 +      sj.vtxMass = tf->secondaryVertex(0).p4().mass();
771 +      sj.vtxNTracks = tf->secondaryVertex(0).nTracks();
772 +      Measurement1D m = tf->flightDistance(0);
773 +      sj.vtx3dL = m.value();
774 +      sj.vtx3deL = m.error();
775 +    }
776 +    */
777      hbbInfo->subJets.push_back(sj);
778  
779    }
780  
781 +  for(edm::View<pat::Jet>::const_iterator filterjet_iter = filterjets.begin(); filterjet_iter!=filterjets.end(); ++filterjet_iter){
782 +
783 +    if(printJet) {std::cout << "FilterjetTagged Pt: " << filterjet_iter->pt() << " E,M,eta,phi,Btag: " << filterjet_iter->p4().E()  << "," << filterjet_iter->p4().M() << "," << filterjet_iter->eta() << "," << filterjet_iter->phi()  << "," << filterjet_iter->bDiscriminator("combinedSecondaryVertexBJetTags") << "\n";}
784 +
785 +    VHbbEvent::SimpleJet fj;
786 +    //    std::cout <<" sub jet "<<std::endl;
787 +    fillSimpleJet(fj,filterjet_iter);
788 +    //  if(!runOnMC_)  
789 +    setJecUnc(fj,jecUnc);
790 +
791 +    hbbInfo->filterJets.push_back(fj);
792 +    
793 +
794 +  }
795 +
796 +  //
797 +  // add charged met
798 +  //
799 +  
800 +  edm::Handle<edm::View<reco::MET> > metChargedHandle;
801 +  iEvent.getByLabel("pfMETNoPUCharge",metChargedHandle);
802 +  edm::View<reco::MET> metsCh = *metChargedHandle;
803 +  if(metsCh.size()){
804 +    hbbInfo->metCh.sumEt=(metsCh[0]).sumEt();
805 +    hbbInfo->metCh.metSig=metSignificance(& (metsCh[0]));
806 +    hbbInfo->metCh.eLong=(metsCh[0]).e_longitudinal();
807 +    hbbInfo->metCh.p4=GENPTOLOR((metsCh[0]));
808 +    if (verbose_)     std::cout <<" METCharged "<<     hbbInfo->metCh.metSig <<" " <<     hbbInfo->metCh.sumEt<<std::endl;
809 +  }
810  
811    //
812    // met is calomet
# Line 816 | Line 817 | HbbAnalyzerNew::produce(edm::Event& iEve
817    edm::View<pat::MET> metsTC = *metTCHandle;
818    if(metsTC.size()){
819      hbbInfo->tcmet.sumEt=(metsTC[0]).sumEt();
820 <    hbbInfo->tcmet.metSig=(metsTC[0]).mEtSig();
820 >    hbbInfo->tcmet.metSig=metSignificance(&(metsTC[0]));
821      hbbInfo->tcmet.eLong=(metsTC[0]).e_longitudinal();
822      hbbInfo->tcmet.p4=GENPTOLOR((metsTC[0]));
823      if (verbose_)     std::cout <<" METTC "<<     hbbInfo->tcmet.metSig <<" " <<     hbbInfo->tcmet.sumEt<<std::endl;
824    }
825    
826 +  edm::Handle<edm::View<reco::MET> > pfMETNoPUHandle;
827 +  iEvent.getByLabel("pfMETNoPU",pfMETNoPUHandle);
828 +  edm::View<reco::MET> metspfMETNoPU = *pfMETNoPUHandle;
829 +  if(metspfMETNoPU.size()){
830 +    hbbInfo->metNoPU.sumEt=(metspfMETNoPU[0]).sumEt();
831 +    hbbInfo->metNoPU.metSig=metSignificance(&(metspfMETNoPU[0]));                
832 +    hbbInfo->metNoPU.eLong=(metspfMETNoPU[0]).e_longitudinal();
833 +    hbbInfo->metNoPU.p4=GENPTOLOR((metspfMETNoPU[0]));
834 +    if (verbose_)     std::cout <<" pfMETNoPU "<<     hbbInfo->metNoPU.metSig <<" " <<     hbbInfo->metNoPU.sumEt<<std::endl;
835 +  }
836 +
837 +  edm::Handle<edm::View<reco::MET> > mHTHandle;
838 +  iEvent.getByLabel("patMETsHT",mHTHandle);
839 +  edm::View<reco::MET> metsHT = *mHTHandle;
840 +  if(metsHT.size()){
841 +    hbbInfo->mht.sumEt=(metsHT[0]).sumEt();
842 +    hbbInfo->mht.metSig=metSignificance(&(metsHT[0]));
843 +    hbbInfo->mht.eLong=(metsHT[0]).e_longitudinal();
844 +    hbbInfo->mht.p4=GENPTOLOR((metsHT[0]));
845 +    if (verbose_)     std::cout <<" METHT "<<     hbbInfo->mht.metSig <<" " <<     hbbInfo->mht.sumEt<<std::endl;
846 +  }
847 +  
848 +  edm::Handle<edm::View<reco::MET> > metHandle;
849 +  iEvent.getByLabel(metLabel_,metHandle);
850 +  edm::View<reco::MET> mets = *metHandle;
851 +  
852    if(mets.size()){
853      hbbInfo->calomet.sumEt=(mets[0]).sumEt();
854 <    hbbInfo->calomet.metSig=(mets[0]).mEtSig();
854 >    hbbInfo->calomet.metSig=metSignificance(&(mets[0]));
855      hbbInfo->calomet.eLong=(mets[0]).e_longitudinal();
856      hbbInfo->calomet.p4=GENPTOLOR((mets[0]));
857 <    if (verbose_)     std::cout <<" METTC "<<     hbbInfo->calomet.metSig <<" " <<     hbbInfo->calomet.sumEt<<std::endl;
857 >    if (verbose_)     std::cout <<" METCALO "<<     hbbInfo->calomet.metSig <<" " <<     hbbInfo->calomet.sumEt<<std::endl;
858    }
832
859    
860    edm::Handle<edm::View<pat::MET> > metPFHandle;
861    iEvent.getByLabel("patMETsPF",metPFHandle);
862    edm::View<pat::MET> metsPF = *metPFHandle;
863 <
863 >  
864    if(metsPF.size()){
865      hbbInfo->pfmet.sumEt=(metsPF[0]).sumEt();
866 <    hbbInfo->pfmet.metSig=(metsPF[0]).mEtSig();
866 >    hbbInfo->pfmet.metSig=metSignificance(&(metsPF[0]));
867      hbbInfo->pfmet.eLong=(metsPF[0]).e_longitudinal();
868      hbbInfo->pfmet.p4=GENPTOLOR((metsPF[0]));
869 <    if (verbose_)     std::cout <<" METTC "<<     hbbInfo->pfmet.metSig <<" " <<     hbbInfo->pfmet.sumEt<<std::endl;
869 >    if (verbose_)     std::cout <<" METPF "<<     hbbInfo->pfmet.metSig <<" " <<     hbbInfo->pfmet.sumEt<<std::endl;
870    }
871 <
872 <
871 >  
872 >  
873    if(verbose_){
874 <    std::cout << "METs: calomet "<<mets.size()<<" tcmet "<<metsTC.size()<<" pfmet "<<metsPF.size()<<std::endl;  
874 >    std::cout << "METs: calomet "<<mets.size()<<" tcmet"<<metsTC.size()<<" pfmet "<<metsPF.size()<<" MHT" <<metsHT.size()<<std::endl;  
875    }
876  
877 <  std::cout << " INPUT MUONS "<<muons.size()<<std::endl;
877 >  if(verbose_)
878 >    std::cout << " INPUT MUONS "<<muons.size()<<std::endl;
879  
880    for(edm::View<pat::Muon>::const_iterator mu = muons.begin(); mu!=muons.end(); ++mu){
881      VHbbEvent::MuonInfo mf;
# Line 858 | Line 885 | HbbAnalyzerNew::produce(edm::Event& iEve
885      mf.eIso=mu->ecalIso();
886      mf.hIso=mu->hcalIso();
887      mf.pfChaIso=mu->chargedHadronIso();
888 +    mf.pfChaPUIso=mu->userIso(5);
889      mf.pfPhoIso=mu->photonIso();
890      mf.pfNeuIso=mu->neutralHadronIso();
891      Geom::Phi<double> deltaphi(mu->phi()-atan2(mf.p4.Px(), mf.p4.Py()));
892      double acop = deltaphi.value();
893      mf.acop=acop;
894  
895 +    mf.emEnergy = mu->calEnergy().em;
896 +    mf.hadEnergy = mu->calEnergy().had;
897 +
898 +    mf.nMatches = mu->numberOfMatches();
899 +
900      mf.ipDb=mu->dB();
901      mf.ipErrDb=mu->edB();
902 +    mf.cat=0;
903      if(mu->isGlobalMuon()) mf.cat|=1;
904      if(mu->isTrackerMuon()) mf.cat|=2;
905 <    else mf.cat|=4;
905 >    if(mu->isStandAloneMuon()) mf.cat|=4;
906      TrackRef trkMu1Ref = mu->get<TrackRef>();
907      if(trkMu1Ref.isNonnull()){
908        const Track* MuTrk1 = mu->get<TrackRef>().get();
# Line 879 | Line 913 | HbbAnalyzerNew::produce(edm::Event& iEve
913        TrackRef iTrack1 = mu->innerTrack();
914        const reco::HitPattern& p1 = iTrack1->hitPattern();
915        mf.nPixelHits=p1.pixelLayersWithMeasurement();
916 <    }
916 >
917 >      mf.nValidTracker = p1.numberOfValidTrackerHits();
918 >      mf.nValidPixel = p1.numberOfValidPixelHits();
919 >
920 >
921 >
922 >   }
923      if(mu->isGlobalMuon()){
924        TrackRef gTrack = mu->globalTrack();
925        const reco::HitPattern& q = gTrack->hitPattern();
926        mf.globChi2=gTrack.get()->normalizedChi2();
927        mf.globNHits=q.numberOfValidMuonHits();
928 <      mf. validMuStations = q. muonStationsWithValidHits();
928 >      mf.validMuStations = q.muonStationsWithValidHits();
929      }else{
930        mf.globChi2=-99;
931        mf.globNHits=-99;
# Line 894 | Line 934 | HbbAnalyzerNew::produce(edm::Event& iEve
934      //Muon trigger matching
935      for (int itrig = 0; itrig != ntrigs; ++itrig){
936        std::string trigName=triggerNames_.triggerName(itrig);
937 <      if( (mu->triggerObjectMatchesByPath(trigName).size() != 0) ){
937 >      if( (mu->triggerObjectMatchesByPath(trigName,false,false).size() != 0) ){
938          mf.hltMatchedBits.push_back(itrig);
939          if(verbose_){
940            std::clog << "Trigger Matching box" << std::endl;
# Line 902 | Line 942 | HbbAnalyzerNew::produce(edm::Event& iEve
942            std::clog << "Matching parameters are defined in the cfg" << std::endl;
943            std::clog << "Trigger bit = " << itrig << std::endl;
944            std::clog << "Trigger name = " << trigName << std::endl;
945 <          std::clog << "Trigger object matched collection size = " << mu->triggerObjectMatchesByPath(trigName).size() << std::endl;
945 >          std::clog << "Trigger object matched collection size = " << mu->triggerObjectMatchesByPath(trigName,false,false).size() << std::endl;
946            std::clog << "Pat Muon pt = " << mf.p4.Pt() << " HLT object matched = " << mu->triggerObjectMatch(0)->p4().Pt() << std::endl;
947            std::clog << "+++++++++++++++++++++++++++++++++++++++++++++++++" << std::endl;
948          }
# Line 931 | Line 971 | HbbAnalyzerNew::produce(edm::Event& iEve
971      hbbInfo->muInfo.push_back(mf);
972    }
973  
974 <  std::cout << " INPUT electrons "<<electrons.size()<<std::endl;
974 > if(verbose_)
975 >    std::cout << " INPUT electrons "<<electrons.size()<<std::endl;
976    for(edm::View<pat::Electron>::const_iterator elec = electrons.begin(); elec!=electrons.end(); ++elec){
977      VHbbEvent::ElectronInfo ef;
978      ef.p4=GENPTOLORP(elec);
# Line 943 | Line 984 | HbbAnalyzerNew::produce(edm::Event& iEve
984      ef.eIso=elec->ecalIso();
985      ef.hIso=elec->hcalIso();
986      ef.pfChaIso=elec->chargedHadronIso();
987 +    ef.pfChaPUIso=elec->userIso(5);
988      ef.pfPhoIso=elec->photonIso();
989      ef.pfNeuIso=elec->neutralHadronIso();
990  
991 <    Geom::Phi<double> deltaphi(elec->superCluster()->phi()-atan2(hbbInfo->calomet.p4.Py(),hbbInfo->calomet.p4.Px()));
991 >    //
992 >    // ip info
993 >    //
994 >
995 >    ef.ipDb=elec->dB();
996 >    ef.ipErrDb=elec->edB();
997 >    
998 >
999 >
1000 >    Geom::Phi<double> deltaphi(elec->superCluster()->phi()-atan2(hbbInfo->pfmet.p4.Py(),hbbInfo->pfmet.p4.Px()));
1001      ef.acop = deltaphi.value();
1002      //
1003 +    ef.sihih = elec->sigmaIetaIeta();
1004 +    ef.Dphi = elec->deltaPhiSuperClusterTrackAtVtx();
1005 +    ef.Deta = elec->deltaEtaSuperClusterTrackAtVtx();
1006 +    ef.HoE = elec->hadronicOverEm();
1007 +    ef.convDist = elec->convDist();
1008 +    ef.convDcot = elec->convDcot();
1009 +    if(elec->gsfTrack().isNonnull()) ef.innerHits = elec->gsfTrack()->trackerExpectedHitsInner().numberOfHits();  
1010 +    ef.isEB = elec->isEB();
1011 +    ef.isEE = elec->isEE();
1012 +    //
1013      // fill eleids
1014      //    
1015   /*    ef.id95 = elec->electronID("simpleEleId95cIso");
# Line 967 | Line 1028 | HbbAnalyzerNew::produce(edm::Event& iEve
1028      ef.id70 =elec->electronID("eidVBTFCom70");
1029      ef.id70r=elec->electronID("eidVBTFRel70");
1030  
1031 <    //Muon trigger matching
1031 >    //Electron trigger matching
1032      for (int itrig = 0; itrig != ntrigs; ++itrig){
1033        std::string trigName=triggerNames_.triggerName(itrig);
1034        if( (elec->triggerObjectMatchesByPath(trigName).size() != 0) ){
# Line 996 | Line 1057 | HbbAnalyzerNew::produce(edm::Event& iEve
1057      hbbInfo->eleInfo.push_back(ef);
1058    }
1059  
1060 <
1061 <  std::cout << " INPUT taus "<<taus.size()<<std::endl;
1060 >  if(verbose_)
1061 >    std::cout << " INPUT taus "<<taus.size()<<std::endl;
1062    for(edm::View<pat::Tau>::const_iterator tau = taus.begin(); tau!=taus.end(); ++tau){
1063      VHbbEvent::TauInfo tf;
1064      tf.p4=GENPTOLORP(tau);
# Line 1005 | Line 1066 | HbbAnalyzerNew::produce(edm::Event& iEve
1066      tf.tIso=tau->trackIso();
1067      tf.eIso=tau->ecalIso();
1068      tf.hIso=tau->hcalIso();
1069 <    Geom::Phi<double> deltaphi(tau->phi()-atan2(hbbInfo->calomet.p4.Py(),hbbInfo->calomet.p4.Px()));
1069 >    Geom::Phi<double> deltaphi(tau->phi()-atan2(hbbInfo->pfmet.p4.Py(),hbbInfo->pfmet.p4.Px()));
1070      double acop = deltaphi.value();
1071      tf.acop=acop;
1072 <    tf.idbyIso=tau->tauID("byIsolation");
1073 <    tf.idbyTrackIso=tau->tauID("trackIsolation");
1074 <    tf.idbyTaNCfrOnePercent=tau->tauID("byTaNCfrOnePercent");
1075 <    tf.idbyTaNCfrHalfPercent=tau->tauID("byTaNCfrHalfPercent");
1076 <    tf.idbyTaNCfrQuarterPercent=tau->tauID("byTaNCfrQuarterPercent");
1077 <    tf.idbyTaNCfrTenthPercent=tau->tauID("byTaNCfrTenthPercent");  
1078 <    tf.idbyTaNC=tau->tauID("byTaNC");
1072 >    if (tau->isTauIDAvailable("againstElectronLoose")) tf.idagainstElectronLoose=tau->tauID("againstElectronLoose");
1073 >    if (tau->isTauIDAvailable("againstElectronMedium")) tf.idagainstElectronMedium=tau->tauID("againstElectronMedium");
1074 >    if (tau->isTauIDAvailable("againstElectronTight")) tf.idagainstElectronTight=tau->tauID("againstElectronTight");
1075 >    if (tau->isTauIDAvailable("againstMuonLoose")) tf.idagainstMuonLoose=tau->tauID("againstMuonLoose");
1076 >    if (tau->isTauIDAvailable("againstMuonTight")) tf.idagainstMuonTight=tau->tauID("againstMuonTight");
1077 >    if (tau->isTauIDAvailable("byLooseIsolation")) tf.idbyLooseIsolation=tau->tauID("byLooseIsolation");
1078 >    if (tau->isTauIDAvailable("byMediumIsolation")) tf.idbyMediumIsolation=tau->tauID("byMediumIsolation");
1079 >    if (tau->isTauIDAvailable("byTightIsolation")) tf.idbyTightIsolation=tau->tauID("byTightIsolation");
1080 >    if (tau->isTauIDAvailable("byVLooseIsolation")) tf.idbyVLooseIsolation=tau->tauID("byVLooseIsolation");
1081 >    if (tau->isTauIDAvailable("decayModeFinding")) tf.iddecayModeFinding=tau->tauID("decayModeFinding");
1082 >    if (tau->isTauIDAvailable("byIsolation")) tf.idbyIso=tau->tauID("byIsolation");
1083 >    if (tau->isTauIDAvailable("trackIsolation")) tf.idbyTrackIso=tau->tauID("trackIsolation");
1084 >    if (tau->isTauIDAvailable("byTaNCfrOnePercent")) tf.idbyTaNCfrOnePercent=tau->tauID("byTaNCfrOnePercent");
1085 >    if (tau->isTauIDAvailable("byTaNCfrHalfPercent")) tf.idbyTaNCfrHalfPercent=tau->tauID("byTaNCfrHalfPercent");
1086 >    if (tau->isTauIDAvailable("byTaNCfrQuarterPercent")) tf.idbyTaNCfrQuarterPercent=tau->tauID("byTaNCfrQuarterPercent");
1087 >    if (tau->isTauIDAvailable("byTaNCfrTenthPercent")) tf.idbyTaNCfrTenthPercent=tau->tauID("byTaNCfrTenthPercent");
1088 >    if (tau->isTauIDAvailable("byTaNC")) tf.idbyTaNC=tau->tauID("byTaNC");
1089 >    if (tau->isPFTau()) {
1090 >      tf.isolationPFChargedHadrCandsPtSum = tau->isolationPFChargedHadrCandsPtSum();
1091 >      tf.isolationPFGammaCandsEtSum = tau->isolationPFGammaCandsEtSum();
1092 >      if (tau->leadPFChargedHadrCand().isAvailable()) tf.leadPFChargedHadrCandPt = tau->leadPFChargedHadrCand()->pt();
1093 >    }
1094      hbbInfo->tauInfo.push_back(tf);
1095 <  }
1096 <
1097 <
1098 <  // dimuons and dielectrons
1099 <
1100 <  for( size_t i = 0; i < dimuons->size(); i++ ) {
1101 <    VHbbEvent::DiMuonInfo df;
1102 <    const Candidate & dimuonCand = (*dimuons)[ i ];
1103 <    df.p4= GENPTOLOR(dimuonCand);
1104 <    const Candidate * lep0 = dimuonCand.daughter( 0 );
1105 <    const Candidate * lep1 = dimuonCand.daughter( 1 );
1106 <    // needed to access specific methods of pat::Muon
1107 <    const pat::Muon & muonDau0 = dynamic_cast<const pat::Muon &>(*lep0->masterClone());
1108 <    const pat::Muon & muonDau1 = dynamic_cast<const pat::Muon &>(*lep1->masterClone());
1109 <    
1110 <    df.daughter1.p4=GENPTOLOR(muonDau0);
1111 <    df.daughter2.p4=GENPTOLOR(muonDau1);
1112 <    
1113 <    df.daughter1.tIso= muonDau0.trackIso();
1114 <    df.daughter2.tIso= muonDau1.trackIso();
1115 <
1040 <    df.daughter1.eIso= muonDau0.ecalIso();
1041 <    df.daughter2.eIso= muonDau1.ecalIso();
1042 <
1043 <    df.daughter1.hIso= muonDau0.hcalIso();
1044 <    df.daughter2.hIso= muonDau1.hcalIso();
1045 <
1046 <    df.daughter1.ipDb=muonDau0.dB();
1047 <    df.daughter2.ipDb=muonDau1.dB();
1048 <
1049 <    df.daughter1.ipErrDb=muonDau0.edB();
1050 <    df.daughter2.ipErrDb=muonDau1.edB();
1051 <
1052 <
1053 <    if(muonDau0.isGlobalMuon()) df.daughter1.cat =1;
1054 <    else if(muonDau0.isTrackerMuon()) df.daughter1.cat=2;
1055 <    else df.daughter1.cat=3;
1056 <    if(muonDau1.isGlobalMuon()) df.daughter2.cat =1;
1057 <    else if(muonDau1.isTrackerMuon()) df.daughter2.cat=2;
1058 <    else df.daughter2.cat=3;
1059 <
1060 <    TrackRef trkMu1Ref = muonDau0.get<TrackRef>();
1061 <    TrackRef trkMu2Ref = muonDau1.get<TrackRef>();
1062 <
1063 <    if(trkMu1Ref.isNonnull() && trkMu2Ref.isNonnull()){
1064 <      const Track* MuTrk1 = muonDau0.get<TrackRef>().get();
1065 <      const Track* MuTrk2 = muonDau1.get<TrackRef>().get();
1066 <      df.daughter1.zPVPt=MuTrk1->dz(RecVtxFirst.position());
1067 <      df.daughter1.zPVProb=MuTrk1->dz(RecVtx.position());
1068 <      df.daughter2.zPVPt=MuTrk2->dz(RecVtxFirst.position());
1069 <      df.daughter2.zPVProb=MuTrk2->dz(RecVtx.position());
1070 <
1071 <      df.daughter1.nHits = MuTrk1->numberOfValidHits();
1072 <      df.daughter2.nHits = MuTrk2->numberOfValidHits();
1073 <
1074 <      df.daughter1.chi2 = MuTrk1->normalizedChi2();
1075 <      df.daughter2.chi2 = MuTrk2->normalizedChi2();
1076 <
1077 <      TrackRef iTrack1 = muonDau0.innerTrack();
1078 <      const reco::HitPattern& p1 = iTrack1->hitPattern();
1079 <      TrackRef iTrack2 = muonDau1.innerTrack();
1080 <      const reco::HitPattern& p2 = iTrack2->hitPattern();
1081 <
1082 <      df.daughter1.nPixelHits = p1.pixelLayersWithMeasurement();
1083 <      df.daughter2.nPixelHits = p2.pixelLayersWithMeasurement();
1084 <
1085 <      if(muonDau0.isGlobalMuon()){
1086 <        TrackRef gTrack = muonDau0.globalTrack();
1087 <        const reco::HitPattern& q = gTrack->hitPattern();
1088 <        df.daughter1.globNHits=q.numberOfValidMuonHits();
1089 <        df.daughter1.globChi2=gTrack.get()->normalizedChi2();
1090 <        df.daughter1.validMuStations = q. muonStationsWithValidHits();
1091 <      }
1092 <      if(muonDau1.isGlobalMuon()){
1093 <        TrackRef gTrack = muonDau1.globalTrack();
1094 <        const reco::HitPattern& q = gTrack->hitPattern();
1095 <        df.daughter2.globNHits=q.numberOfValidMuonHits();
1096 <        df.daughter2.globChi2=gTrack.get()->normalizedChi2();
1097 <        df.daughter2.validMuStations = q. muonStationsWithValidHits();
1098 <      }
1099 <  
1095 >    if (verbose_) {
1096 >      std::cout << "SCZ DEBUG: againstElectronLoose is " << tf.idagainstElectronLoose << std::endl;
1097 >      std::cout << "SCZ DEBUG: againstElectronMedium is " << tf.idagainstElectronMedium << std::endl;
1098 >      std::cout << "SCZ DEBUG: againstElectronTight is " << tf.idagainstElectronTight << std::endl;
1099 >      std::cout << "SCZ DEBUG: againstMuonLoose is " << tf.idagainstMuonLoose << std::endl;
1100 >      std::cout << "SCZ DEBUG: againstMuonTight is " << tf.idagainstMuonTight << std::endl;
1101 >      std::cout << "SCZ DEBUG: byLooseIsolation is " << tf.idbyLooseIsolation << std::endl;
1102 >      std::cout << "SCZ DEBUG: byMediumIsolation is " << tf.idbyMediumIsolation << std::endl;
1103 >      std::cout << "SCZ DEBUG: byTightIsolation is " << tf.idbyTightIsolation << std::endl;
1104 >      std::cout << "SCZ DEBUG: byVLooseIsolation is " << tf.idbyVLooseIsolation << std::endl;
1105 >      std::cout << "SCZ DEBUG: decayModeFinding is " << tf.iddecayModeFinding << std::endl;
1106 >      std::cout << "SCZ DEBUG: byIsolation is " << tf.idbyIso<< std::endl;
1107 >      std::cout << "SCZ DEBUG: trackIsolation is " << tf.idbyTrackIso << std::endl;
1108 >      std::cout << "SCZ DEBUG: byTaNCfrOnePercent is " << tf.idbyTaNCfrOnePercent << std::endl;
1109 >      std::cout << "SCZ DEBUG: byTaNCfrHalfPercent is " << tf.idbyTaNCfrHalfPercent << std::endl;
1110 >      std::cout << "SCZ DEBUG: byTaNCfrQuarterPercent is " << tf.idbyTaNCfrQuarterPercent << std::endl;
1111 >      std::cout << "SCZ DEBUG: byTaNCfrTenthPercent is " << tf.idbyTaNCfrTenthPercent << std::endl;
1112 >      std::cout << "SCZ DEBUG: byTaNC is " << tf.idbyTaNC << std::endl;
1113 >      std::cout << "SCZ DEBUG: isolationPFChargedHadrCandsPtSum is " << tf.isolationPFChargedHadrCandsPtSum << std::endl;
1114 >      std::cout << "SCZ DEBUG: isolationPFGammaCandsEtSum is " << tf.isolationPFGammaCandsEtSum << std::endl;
1115 >      std::cout << "SCZ DEBUG: isolationPFGammaCandsEtSum is " << tf.leadPFChargedHadrCandPt << std::endl;
1116      }
1101      
1102    hbbInfo->diMuonInfo.push_back(df);
1117    }
1118  
1119 <  for( size_t i = 0; i < dielectrons->size(); i++ ) {
1120 <    VHbbEvent::DiElectronInfo df;
1121 <    const Candidate & dielecCand = (*dielectrons)[ i ];
1122 <
1123 <    df.p4=GENPTOLOR(dielecCand);
1124 <
1125 <    // accessing the daughters of the dimuon candidate
1112 <    const Candidate * lep0 = dielecCand.daughter( 0 );
1113 <    const Candidate * lep1 = dielecCand.daughter( 1 );
1114 <    // needed to access specific methods of pat::Muon
1115 <    const pat::Electron & elecDau0 = dynamic_cast<const pat::Electron &>(*lep0->masterClone());
1116 <    const pat::Electron & elecDau1 = dynamic_cast<const pat::Electron &>(*lep1->masterClone());
1119 >  CompareJetPtMuons ptComparatorMu;
1120 >  CompareJetPtElectrons ptComparatorE;
1121 >  CompareJetPtTaus ptComparatorTau;
1122 >
1123 >  std::sort(hbbInfo->muInfo.begin(), hbbInfo->muInfo.end(), ptComparatorMu);
1124 >  std::sort(hbbInfo->eleInfo.begin(), hbbInfo->eleInfo.end(), ptComparatorE);
1125 >  std::sort(hbbInfo->tauInfo.begin(), hbbInfo->tauInfo.end(), ptComparatorTau);
1126  
1118    df.daughter1.p4 = GENPTOLOR(elecDau0);
1119    df.daughter2.p4= GENPTOLOR(elecDau1);
1127  
1121    df.daughter1.tIso = elecDau0.trackIso();
1122    df.daughter2.tIso = elecDau1.trackIso();
1123
1124    df.daughter1.eIso = elecDau0.ecalIso();
1125    df.daughter2.eIso = elecDau1.ecalIso();
1126
1127    df.daughter1.hIso = elecDau0.hcalIso();
1128    df.daughter2.hIso = elecDau1.hcalIso();
1128      
1129 <    // ids
1131 <    /*df.daughter1.id95 = elecDau0.electronID("simpleEleId95cIso");
1132 <    df.daughter1.id85 = elecDau0.electronID  ("simpleEleId85cIso");
1133 <    df.daughter1.id70 = elecDau0.electronID  ("simpleEleId70cIso");
1134 <    df.daughter1.id95r = elecDau0.electronID ("simpleEleId95relIso");
1135 <    df.daughter1.id85r = elecDau0.electronID ("simpleEleId85relIso");
1136 <    df.daughter1.id70r = elecDau0.electronID ("simpleEleId70relIso");
1137 <
1138 <
1139 <    df.daughter2.id95 = elecDau1.electronID("simpleEleId95cIso");
1140 <    df.daughter2.id85 = elecDau1.electronID  ("simpleEleId85cIso");
1141 <    df.daughter2.id70 = elecDau1.electronID  ("simpleEleId70cIso");
1142 <    df.daughter2.id95r = elecDau1.electronID ("simpleEleId95relIso");
1143 <    df.daughter2.id85r = elecDau1.electronID ("simpleEleId85relIso");
1144 <    df.daughter2.id70r = elecDau1.electronID ("simpleEleId70relIso");
1145 < */
1146 <    hbbInfo->diElectronInfo.push_back(df);
1147 <    
1148 <  }
1129 >  
1130     if (verbose_){
1131       std::cout <<" Pushing hbbInfo "<<std::endl;
1132       std::cout <<" SimpleJets1 = "<<hbbInfo->simpleJets.size()<<std::endl<<
1133         " SimpleJets2 = "<<hbbInfo->simpleJets2.size()<<std::endl<<
1134         " SubJets = "<<hbbInfo->subJets.size()<<std::endl<<
1135         " HardJets = "<<hbbInfo->hardJets.size()<<std::endl<<
1136 +       " FilterJets = "<<hbbInfo->filterJets.size()<<std::endl<<
1137         " Muons = "<<hbbInfo->muInfo.size()<<std::endl<<
1138         " Electrons = "<<hbbInfo->eleInfo.size()<<std::endl<<
1139         " Taus = "<<hbbInfo->tauInfo.size()<<std::endl<<
# Line 1164 | Line 1146 | HbbAnalyzerNew::produce(edm::Event& iEve
1146    iEvent.put(auxInfo);
1147  
1148  
1149 +  delete jecUnc;
1150 +
1151   }
1152    
1153   void
# Line 1273 | Line 1257 | TLorentzVector HbbAnalyzerNew::getCharge
1257    //re-
1258   }
1259  
1260 +
1261 + //Btagging scale factors
1262 + void HbbAnalyzerNew::fillScaleFactors(VHbbEvent::SimpleJet& sj, BTagSFContainer iSF){
1263 +
1264 +
1265 +  BinningPointByMap measurePoint;
1266 +  //for a USDG
1267 +  //for CB jets
1268 +  //scale factor 1 for CB jets over 240GeV/c
1269 +  if( TMath::Abs(sj.flavour) == 4 or TMath::Abs(sj.flavour) == 5 ){
1270 +    measurePoint.insert( BinningVariables::JetEt, sj.p4.Et() );
1271 +    measurePoint.insert( BinningVariables::JetAbsEta, fabs(sj.p4.Eta()) );
1272 +    if( iSF.BTAGSF_CSVL->isResultOk(PerformanceResult::BTAGBEFFCORR , measurePoint) ){
1273 +      sj.SF_CSVL = iSF.BTAGSF_CSVL->getResult(PerformanceResult::BTAGBEFFCORR , measurePoint);
1274 +      sj.SF_CSVLerr = iSF.BTAGSF_CSVL->getResult(PerformanceResult::BTAGBERRCORR , measurePoint);        
1275 +      if(verbose_){
1276 +        std::clog << "C/B Jet flavour = " << sj.flavour << std::endl;
1277 +        std::clog << "C/B Jet Et = " << sj.p4.Et() << std::endl;
1278 +        std::clog << "C/B Jet eta = " << sj.p4.Eta() << std::endl;          
1279 +        std::clog << "C/B CSVL Scale Factor = " << sj.SF_CSVL << std::endl;
1280 +        std::clog << "C/B CSVL Scale Factor error = " << sj.SF_CSVLerr << std::endl;
1281 +      }
1282 +    }
1283 +    if( iSF.BTAGSF_CSVM->isResultOk(PerformanceResult::BTAGBEFFCORR , measurePoint) ){
1284 +      sj.SF_CSVM = iSF.BTAGSF_CSVM->getResult(PerformanceResult::BTAGBEFFCORR , measurePoint);
1285 +      sj.SF_CSVMerr = iSF.BTAGSF_CSVM->getResult(PerformanceResult::BTAGBERRCORR , measurePoint);        
1286 +    }
1287 +    if( iSF.BTAGSF_CSVT->isResultOk(PerformanceResult::BTAGBEFFCORR , measurePoint) ){
1288 +      sj.SF_CSVT = iSF.BTAGSF_CSVT->getResult(PerformanceResult::BTAGBEFFCORR , measurePoint);
1289 +      sj.SF_CSVTerr = iSF.BTAGSF_CSVT->getResult(PerformanceResult::BTAGBERRCORR , measurePoint);        
1290 +    }
1291 +    else{
1292 +      if(verbose_){
1293 +        std::cerr << "No SF found in the database for this jet" << std::endl;
1294 +        std::clog << "No SF found: Jet flavour = " << sj.flavour << std::endl;
1295 +        std::clog << "No SF found: Jet Et = " << sj.p4.Et() << std::endl;
1296 +        std::clog << "No SF found: Jet eta = " << sj.p4.Eta() << std::endl;
1297 +      }
1298 +    }
1299 +  }
1300 +  else {
1301 +    measurePoint.insert( BinningVariables::JetEt, sj.p4.Et() );
1302 +    measurePoint.insert( BinningVariables::JetAbsEta, fabs(sj.p4.Eta()) );
1303 +    if( iSF.MISTAGSF_CSVL->isResultOk(PerformanceResult::BTAGLEFFCORR , measurePoint) ){
1304 +      sj.SF_CSVL = iSF.MISTAGSF_CSVL->getResult(PerformanceResult::BTAGLEFFCORR , measurePoint);
1305 +      sj.SF_CSVLerr = iSF.MISTAGSF_CSVL->getResult(PerformanceResult::BTAGLERRCORR , measurePoint);
1306 +      if(verbose_){
1307 +        std::clog << "Light Jet flavour = " << sj.flavour << std::endl;
1308 +        std::clog << "Light Jet Et = " << sj.p4.Et() << std::endl;
1309 +        std::clog << "Light Jet eta = " << sj.p4.Eta() << std::endl;        
1310 +        std::clog << "Light CSVL Scale Factor = " << sj.SF_CSVL << std::endl;
1311 +        std::clog << "Light CSVL Scale Factor error = " << sj.SF_CSVLerr << std::endl;
1312 +      }
1313 +    }
1314 +    if( iSF.MISTAGSF_CSVM->isResultOk(PerformanceResult::BTAGLEFFCORR , measurePoint) ){
1315 +      sj.SF_CSVM = iSF.MISTAGSF_CSVM->getResult(PerformanceResult::BTAGLEFFCORR , measurePoint);
1316 +      sj.SF_CSVMerr = iSF.MISTAGSF_CSVM->getResult(PerformanceResult::BTAGLERRCORR , measurePoint);
1317 +    }
1318 +    if( iSF.MISTAGSF_CSVT->isResultOk(PerformanceResult::BTAGLEFFCORR , measurePoint) ){
1319 +      sj.SF_CSVT = iSF.MISTAGSF_CSVT->getResult(PerformanceResult::BTAGLEFFCORR , measurePoint);
1320 +      sj.SF_CSVTerr = iSF.MISTAGSF_CSVT->getResult(PerformanceResult::BTAGLERRCORR , measurePoint);
1321 +    }
1322 +    else{
1323 +      if(verbose_){
1324 +        std::cerr << "No SF found in the database for this jet" << std::endl;
1325 +        std::clog << "No SF found: Jet flavour = " << sj.flavour << std::endl;
1326 +        std::clog << "No SF found: Jet Et = " << sj.p4.Et() << std::endl;
1327 +        std::clog << "No SF found: Jet eta = " << sj.p4.Eta() << std::endl;
1328 +      }
1329 +    }
1330 +  }
1331 +    
1332 + }
1333 +
1334 + void HbbAnalyzerNew::setJecUnc(VHbbEvent::SimpleJet& sj,JetCorrectionUncertainty* jecunc){
1335 +  //
1336 +  // test
1337 +  //
1338 +
1339 +  //  return;
1340 +  double eta = sj.p4.Eta();
1341 +  double pt = sj.p4.Pt();
1342 +  
1343 +  jecunc->setJetEta(eta);
1344 +  jecunc->setJetPt(pt); // here you must use the CORRECTED jet pt
1345 +  double unc = jecunc->getUncertainty(true);
1346 +  sj.jecunc= unc;
1347 + }
1348 +
1349 +
1350 + void HbbAnalyzerNew ::fillSimpleJet (VHbbEvent::SimpleJet& sj, edm::View<pat::Jet>::const_iterator jet_iter){
1351 +      sj.flavour = jet_iter->partonFlavour();
1352 +
1353 +    sj.tche=jet_iter->bDiscriminator("trackCountingHighEffBJetTags");
1354 +    sj.tchp=jet_iter->bDiscriminator("trackCountingHighPurBJetTags");
1355 +    sj.jp=jet_iter->bDiscriminator("jetProbabilityBJetTags");
1356 +    sj.jpb=jet_iter->bDiscriminator("jetBProbabilityBJetTags");
1357 +    sj.ssvhe=jet_iter->bDiscriminator("simpleSecondaryVertexHighEffBJetTags");
1358 +    sj.csv=jet_iter->bDiscriminator("combinedSecondaryVertexBJetTags");
1359 +   sj.csvmva=jet_iter->bDiscriminator("combinedSecondaryVertexMVABJetTags");
1360 +    sj.charge=jet_iter->jetCharge();
1361 +    sj.ntracks=jet_iter->associatedTracks().size();
1362 +    sj.p4=GENPTOLORP(jet_iter);
1363 +    //    std::cout << " ECCO "<<sj.csv<< " "<< sj.p4.Pt()<<std::endl;
1364 +    sj.chargedTracksFourMomentum=(getChargedTracksMomentum(&*(jet_iter)));
1365 +    sj.SF_CSVL=1;
1366 +    sj.SF_CSVM=1;
1367 +    sj.SF_CSVT=1;
1368 +    sj.SF_CSVLerr=0;
1369 +    sj.SF_CSVMerr=0;
1370 +    sj.SF_CSVTerr=0;
1371 +
1372 +    
1373 +    if (jet_iter->isPFJet() == true) {
1374 +
1375 +      sj.chargedHadronEFraction = jet_iter-> chargedHadronEnergyFraction();
1376 +      sj.neutralHadronEFraction = jet_iter-> neutralHadronEnergyFraction ();
1377 +      sj.chargedEmEFraction = jet_iter-> chargedEmEnergyFraction ();
1378 +      sj.neutralEmEFraction = jet_iter-> neutralEmEnergyFraction ();
1379 +      sj.nConstituents = jet_iter->getPFConstituents().size();
1380 +      
1381 +    }
1382 +    //
1383 +    // addtaginfo for csv
1384 +    //
1385 +
1386 +    //    if (jet_iter->hasTagInfo("SimpleSecondaryVertex")) {
1387 +
1388 +    const reco::SecondaryVertexTagInfo * tf = jet_iter->tagInfoSecondaryVertex();
1389 +   if (tf){
1390 +     if (tf->nVertices() >0){
1391 +        sj.vtxMass = tf->secondaryVertex(0).p4().mass();
1392 +        sj.vtxNTracks = tf->secondaryVertex(0).nTracks();
1393 +        std::vector<reco::TrackBaseRef >::const_iterator tit =  tf->secondaryVertex(0).tracks_begin();
1394 +        for (; tit<  tf->secondaryVertex(0).tracks_end(); ++tit){
1395 +          sj.vtxTrackIds.push_back(tit->key());
1396 +        }
1397 +        Measurement1D m = tf->flightDistance(0);
1398 +        sj.vtx3dL = m.value();
1399 +        sj.vtx3deL = m.error();
1400 +     }
1401 +    }
1402 +   //
1403 +    // add tVector
1404 +    //
1405 +    sj.tVector = getTvect(&(*jet_iter));
1406 +
1407 +
1408 + }
1409 +
1410 + float HbbAnalyzerNew::metSignificance(const reco::MET * met)
1411 + {
1412 + double sigmaX2= met->getSignificanceMatrix()(0,0);
1413 + double sigmaY2= met->getSignificanceMatrix()(1,1);
1414 + double significance = 0;
1415 + try {
1416 + if(sigmaX2<1.e10 && sigmaY2<1.e10) significance = met->significance();
1417 + }
1418 + catch(...)
1419 + {
1420 + std::cout << "PROBLEM WITH MET SIGNIFICANCE sigma X2 and Y2 are: " << sigmaX2 << " " << sigmaY2 << std::endl;
1421 + }
1422 + return significance;
1423 + }
1424 +
1425 +
1426   //define this as a plug-in
1427   DEFINE_FWK_MODULE(HbbAnalyzerNew);

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