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Comparing UserCode/VHbbAnalysis/HbbAnalyzer/plugins/HbbAnalyzerNew.cc (file contents):
Revision 1.75 by arizzi, Thu May 24 15:55:16 2012 UTC vs.
Revision 1.77.2.2 by ntran, Mon Nov 19 20:53:44 2012 UTC

# Line 1 | Line 1
1 < // -*- C++ -*-
2 < //
3 < // Package:    HbbAnalyzerNew
4 < // Class:      HbbAnalyzerNew
5 < //
1 >    // -*- C++ -*-
2 >    //
3 >    // Package:    HbbAnalyzerNew
4 >    // Class:      HbbAnalyzerNew
5 >    //
6   /**\class HbbAnalyzerNew HbbAnalyzerNew.cc Analysis/HbbAnalyzer/src/HbbAnalyzerNew.cc
7 +
8 + Description: <one line class summary>
9 +
10 + Implementation:
11 + <Notes on implementation>
12 + */
13 +    //
14 +    // Original Author:  David Lopes Pegna,Address unknown,NONE,
15 +    //         Created:  Thu Mar  5 13:51:28 EST 2009
16 +    // $Id$
17 +    //
18 +    //
19  
8 Description: <one line class summary>
20  
21 < Implementation:
22 < <Notes on implementation>
23 < */
13 < //
14 < // Original Author:  David Lopes Pegna,Address unknown,NONE,
15 < //         Created:  Thu Mar  5 13:51:28 EST 2009
16 < // $Id$
17 < //
18 < //
19 <
20 <
21 < //uncomment to save also jet collections 1 and 4
22 < //#define ENABLE_SIMPLEJETS1
23 < //#define ENABLE_SIMPLEJETS4
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"
# Line 44 | Line 44 | Implementation:
44  
45   #include "CMGTools/External/interface/PileupJetIdentifier.h"
46   #include "CMGTools/External/interface/PileupJetIdAlgo.h"
47 < //#include "CMGTools/External/interface/PileupJetIdProducer.h"
47 >    //#include "CMGTools/External/interface/PileupJetIdProducer.h"
48  
49   #include <cmath>
50  
# Line 57 | Line 57 | Implementation:
57  
58  
59   struct CompareJetPtMuons {
60 <  bool operator()( const VHbbEvent::MuonInfo& j1, const  VHbbEvent::MuonInfo& j2 ) const {
61 <    return j1.p4.Pt() > j2.p4.Pt();
62 <  }
60 >    bool operator()( const VHbbEvent::MuonInfo& j1, const  VHbbEvent::MuonInfo& j2 ) const {
61 >        return j1.p4.Pt() > j2.p4.Pt();
62 >    }
63   };
64   struct CompareJetPtElectrons {
65 <  bool operator()( const VHbbEvent::ElectronInfo& j1, const  VHbbEvent::ElectronInfo& j2 ) const {
66 <    return j1.p4.Pt() > j2.p4.Pt();
67 <  }
65 >    bool operator()( const VHbbEvent::ElectronInfo& j1, const  VHbbEvent::ElectronInfo& j2 ) const {
66 >        return j1.p4.Pt() > j2.p4.Pt();
67 >    }
68   };
69   struct CompareJetPtTaus {
70 <  bool operator()( const VHbbEvent::TauInfo& j1, const  VHbbEvent::TauInfo& j2 ) const {
71 <    return j1.p4.Pt() > j2.p4.Pt();
72 <  }
70 >    bool operator()( const VHbbEvent::TauInfo& j1, const  VHbbEvent::TauInfo& j2 ) const {
71 >        return j1.p4.Pt() > j2.p4.Pt();
72 >    }
73   };
74  
75  
76  
77   HbbAnalyzerNew::HbbAnalyzerNew(const edm::ParameterSet& iConfig):
78 <  eleLabel_(iConfig.getParameter<edm::InputTag>("electronTag")),
79 <  muoLabel_(iConfig.getParameter<edm::InputTag>("muonTag")),
80 <  lep_ptCutForBjets_(iConfig.getParameter<double>("lep_ptCutForBjets")),
81 <  elenoCutsLabel_(iConfig.getParameter<edm::InputTag>("electronNoCutsTag")),
82 <  muonoCutsLabel_(iConfig.getParameter<edm::InputTag>("muonNoCutsTag")),
83 <  jetLabel_(iConfig.getParameter<edm::InputTag>("jetTag")),
84 <  subjetLabel_(iConfig.getParameter<edm::InputTag>("subjetTag")),
85 <  filterjetLabel_(iConfig.getParameter<edm::InputTag>("filterjetTag")),
86 <  simplejet1Label_(iConfig.getParameter<edm::InputTag>("simplejet1Tag")),
87 <  simplejet2Label_(iConfig.getParameter<edm::InputTag>("simplejet2Tag")),
88 <  simplejet3Label_(iConfig.getParameter<edm::InputTag>("simplejet3Tag")),
89 <  simplejet4Label_(iConfig.getParameter<edm::InputTag>("simplejet4Tag")),
90 <  tauLabel_(iConfig.getParameter<edm::InputTag>("tauTag")),
91 <  metLabel_(iConfig.getParameter<edm::InputTag>("metTag")),
92 <  phoLabel_(iConfig.getParameter<edm::InputTag>("photonTag")),
93 <  hltResults_(iConfig.getParameter<edm::InputTag>("hltResultsTag")),
94 <  runOnMC_(iConfig.getParameter<bool>("runOnMC")), verbose_(iConfig.getUntrackedParameter<bool>("verbose")) {
95 <
96 <  //
97 <  // put the setwhatproduced etc etc
98 <
99 <  produces<VHbbEvent>();
100 <  produces<VHbbEventAuxInfo>();
101 <
102 <
78 > eleLabel_(iConfig.getParameter<edm::InputTag>("electronTag")),
79 > muoLabel_(iConfig.getParameter<edm::InputTag>("muonTag")),
80 > lep_ptCutForBjets_(iConfig.getParameter<double>("lep_ptCutForBjets")),
81 > elenoCutsLabel_(iConfig.getParameter<edm::InputTag>("electronNoCutsTag")),
82 > muonoCutsLabel_(iConfig.getParameter<edm::InputTag>("muonNoCutsTag")),
83 > jetLabel_(iConfig.getParameter<edm::InputTag>("jetTag")),
84 > subjetLabel_(iConfig.getParameter<edm::InputTag>("subjetTag")),
85 > filterjetLabel_(iConfig.getParameter<edm::InputTag>("filterjetTag")),
86 > simplejet1Label_(iConfig.getParameter<edm::InputTag>("simplejet1Tag")),
87 > simplejet2Label_(iConfig.getParameter<edm::InputTag>("simplejet2Tag")),
88 > simplejet3Label_(iConfig.getParameter<edm::InputTag>("simplejet3Tag")),
89 > simplejet4Label_(iConfig.getParameter<edm::InputTag>("simplejet4Tag")),
90 > tauLabel_(iConfig.getParameter<edm::InputTag>("tauTag")),
91 > metLabel_(iConfig.getParameter<edm::InputTag>("metTag")),
92 > phoLabel_(iConfig.getParameter<edm::InputTag>("photonTag")),
93 > hltResults_(iConfig.getParameter<edm::InputTag>("hltResultsTag")),
94 > runOnMC_(iConfig.getParameter<bool>("runOnMC")), verbose_(iConfig.getUntrackedParameter<bool>("verbose")) {
95 >    
96 >        //
97 >        // put the setwhatproduced etc etc
98 >    
99 >    produces<VHbbEvent>();
100 >    produces<VHbbEventAuxInfo>();
101 >    
102 >    
103   }
104  
105  
106   HbbAnalyzerNew::~HbbAnalyzerNew(){
107 <  
108 <  // do anything here that needs to be done at desctruction time
109 <  // (e.g. close files, deallocate resources etc.)
110 <  
107 >    
108 >        // do anything here that needs to be done at desctruction time
109 >        // (e.g. close files, deallocate resources etc.)
110 >    
111   }
112  
113  
114 < //
115 < // member functions
116 < //
114 >    //
115 >    // member functions
116 >    //
117  
118 < // ------------ method called to for each event  ------------
118 >    // ------------ method called to for each event  ------------
119   void
120   HbbAnalyzerNew::produce(edm::Event& iEvent, const edm::EventSetup& iSetup){
121 <  using namespace edm;
122 <  using namespace reco;
123 <
124 <
125 <  // JEC Uncertainty
126 <
127 <  //  JetCorrectionUncertainty *jecUnc=0;
128 <  edm::ESHandle<JetCorrectorParametersCollection> JetCorParColl;
129 <  iSetup.get<JetCorrectionsRecord>().get("AK5PFchs",JetCorParColl);
130 <  JetCorrectionUncertainty *jecUnc=0;
131 <  //  if (!runOnMC_){
132 <  JetCorrectorParameters const & JetCorPar = (*JetCorParColl)["Uncertainty"];
133 <  jecUnc = new JetCorrectionUncertainty(JetCorPar);
134 <  //  }
135 <  
136 <  std::auto_ptr<VHbbEvent> hbbInfo( new VHbbEvent() );  
137 <  std::auto_ptr<VHbbEventAuxInfo> auxInfo( new VHbbEventAuxInfo() );
138 <
139 <
140 <  if (runOnMC_){
141 <    Handle<GenEventInfoProduct> evt_info;
142 <    iEvent.getByType(evt_info);
143 <    auxInfo->weightMCProd = evt_info->weight();
144 <  }
145 <  else
146 <    { auxInfo->weightMCProd =1.;}
147 <  //
148 <  // ??
149 <  
150 <  // trigger
151 <
152 <  // trigger
153 <  edm::Handle<edm::TriggerResults>  hltresults;
154 <  //iEvent.getByLabel("TriggerResults", hltresults);
155 <  
156 <  //edm::InputTag tag("TriggerResults::HLT");
157 <  //  edm::InputTag tag("TriggerResults::HLT0");
158 <  iEvent.getByLabel(hltResults_, hltresults);
159 <  
160 <  const edm::TriggerNames & triggerNames_ = iEvent.triggerNames(*hltresults);
161 <
162 <  int ntrigs = hltresults->size();
163 <  if (ntrigs==0){std::cerr << "%HLTInfo -- No trigger name given in TriggerResults of the input " << std::endl;}
164 <
165 <  BeamSpot vertexBeamSpot;
166 <  edm::Handle<reco::BeamSpot> recoBeamSpotHandle;
167 <  iEvent.getByLabel("offlineBeamSpot",recoBeamSpotHandle);
168 <  vertexBeamSpot = *recoBeamSpotHandle;
169 <  /*
170 <    double BSx=vertexBeamSpot.x0();
171 <    double BSy=vertexBeamSpot.y0();
172 <    double BSz=vertexBeamSpot.z0();
173 <  */
174 <
175 <  double MinVtxProb=-999.;
176 <  int VtxIn=-99;
177 <  
178 <  Handle<reco::VertexCollection> recVtxs;
179 <  iEvent.getByLabel("offlinePrimaryVertices", recVtxs);
180 <  
181 <  auxInfo->pvInfo.nVertices = recVtxs->size();
182 <
183 <  for(size_t i = 0; i < recVtxs->size(); ++ i) {
184 <    const Vertex &vtx = (*recVtxs)[i];
185 <    double RecVtxProb=TMath::Prob(vtx.chi2(),vtx.ndof());
186 <    if(RecVtxProb>MinVtxProb){
187 <      VtxIn=i;
188 <      MinVtxProb=RecVtxProb;      
189 <    }
190 <  }
191 <
192 <  const Vertex &RecVtx = (*recVtxs)[VtxIn];
193 <  const Vertex &RecVtxFirst = (*recVtxs)[0];
194 <  const Vertex &vertex = RecVtxFirst; //used in ele id 2012
195 <  
196 <  auxInfo->pvInfo.firstPVInPT2 = TVector3(RecVtxFirst.x(), RecVtxFirst.y(), RecVtxFirst.z());
197 <  auxInfo->pvInfo.firstPVInProb = TVector3(RecVtx.x(), RecVtx.y(), RecVtx.z());
198 <  
199 <  (auxInfo->pvInfo).efirstPVInPT2 = (RecVtxFirst.error());
200 <  (auxInfo->pvInfo).efirstPVInProb = RecVtx.error();
201 <    
202 <  edm::Handle<double> rhoHandle;
203 <  iEvent.getByLabel(edm::InputTag("kt6PFJets", "rho"),rhoHandle);  
204 <  auxInfo->puInfo.rho = *rhoHandle;
205 <  
206 <  edm::Handle<double> rho25Handle;
207 <  iEvent.getByLabel(edm::InputTag("kt6PFJets25", "rho"),rho25Handle);  
208 <  auxInfo->puInfo.rho25 = *rho25Handle;
209 <
210 <  edm::Handle<double> rhoNeutralHandle;
211 <  iEvent.getByLabel(edm::InputTag("kt6PFJetsCentralNeutral", "rho"),rhoNeutralHandle);  
212 <  auxInfo->puInfo.rhoNeutral = *rhoNeutralHandle;
213 <
214 <
215 <  edm::Handle<std::vector< PileupSummaryInfo> > puHandle;
216 <
217 <  if (runOnMC_){
218 <    iEvent.getByType(puHandle);
219 <    if (puHandle.isValid()){
220 <      
221 <      std::vector< PileupSummaryInfo> pu = (*puHandle);
222 <      for (std::vector<PileupSummaryInfo>::const_iterator it= pu.begin(); it!=pu.end(); ++it){
223 <         int bx = (*it).getBunchCrossing();
224 <         if(bx == 0) { auxInfo->puInfo.truePU = (*it).getTrueNumInteractions();}
225 <        unsigned int num = (*it).getPU_NumInteractions();
226 <        //      std::cout <<" PU PUSHING "<<bx<<" " <<num<<std::endl;
227 <        auxInfo->puInfo.pus[bx]  =num;
228 <      }
229 <    }
230 <  }
231 <
232 <  //// real start
233 <  
234 <  
235 <  Handle<GenParticleCollection> genParticles;
236 <  
237 <  bool printJet=0;
238 <  
239 <  
240 <  if(runOnMC_){
121 >    using namespace edm;
122 >    using namespace reco;
123      
242   iEvent.getByLabel("genParticles", genParticles);
124      
125 <    for(size_t i = 0; i < genParticles->size(); ++ i) {
126 <    
127 <      const GenParticle & p = (*genParticles)[i];
128 <      int id = p.pdgId();
129 <      int st = p.status();  
130 <      
131 <      if(id==25){
132 <        
133 <        VHbbEventAuxInfo::ParticleMCInfo htemp;
134 <        htemp.status=st;
135 <        htemp.charge=p.charge();
136 <        if(p.mother(0)!=0) htemp.momid=p.mother(0)->pdgId();
137 <        if(p.mother(0)!=0 && p.mother(0)->mother(0)!=0) htemp.gmomid=p.mother(0)->mother(0)->pdgId();
138 <        htemp.p4 = GENPTOLOR(p);
139 <        
140 <        int ndau = p.numberOfDaughters();
141 <        for(int j = 0; j < ndau; ++ j) {
142 <          const Candidate * Hdau = p.daughter( j );
143 <          htemp.dauid.push_back(Hdau->pdgId());
144 <          htemp.dauFourMomentum.push_back(GENPTOLORP(Hdau));
145 <        }
146 <        (auxInfo->mcH).push_back(htemp);
147 <      }
148 <      
149 <      
150 <      if(abs(id)==24){
151 <        
152 <        VHbbEventAuxInfo::ParticleMCInfo wtemp;
153 <        wtemp.status=st;
154 <        wtemp.charge=p.charge();
155 <        if(p.mother(0)!=0) wtemp.momid=p.mother(0)->pdgId();
156 <        if(p.mother(0)!=0 && p.mother(0)->mother(0)!=0) wtemp.gmomid=p.mother(0)->mother(0)->pdgId();
157 <        wtemp.p4=GENPTOLOR(p);
158 <        
159 <        int ndau = p.numberOfDaughters();
160 <        for(int j = 0; j < ndau; ++ j) {
161 <          const Candidate * Wdau = p.daughter( j );
162 <          wtemp.dauid.push_back(Wdau->pdgId());
163 <          wtemp.dauFourMomentum.push_back(GENPTOLORP(Wdau));
164 <        }
165 <        auxInfo->mcW.push_back(wtemp);
166 <      }
167 <
168 <      if(abs(id)==15) {
169 <        VHbbEventAuxInfo::ParticleMCInfo tautemp;
170 <        tautemp.status=st;
171 <        tautemp.charge=p.charge();
172 <        if(p.mother(0)!=0) tautemp.momid=p.mother(0)->pdgId();
173 <        if(p.mother(0)!=0 && p.mother(0)->mother(0)!=0) tautemp.gmomid=p.mother(0)->mother(0)->pdgId();
174 <        tautemp.p4=GENPTOLOR(p);
175 <
176 <        int ndau = p.numberOfDaughters();
177 <        for(int j = 0; j < ndau; ++ j) {
178 <          const Candidate * Taudau = p.daughter( j );
179 <          tautemp.dauid.push_back(Taudau->pdgId());
180 <          tautemp.dauFourMomentum.push_back(GENPTOLORP(Taudau));
181 <        }
182 <        auxInfo->mcTau.push_back(tautemp);
183 <      }
184 <        
185 <      if(abs(id)==23){
186 <
187 <
188 <        VHbbEventAuxInfo::ParticleMCInfo ztemp;
189 <        ztemp.status=st;
190 <        ztemp.charge=p.charge();
191 <        if(p.mother(0)!=0) ztemp.momid=p.mother(0)->pdgId();
192 <        if(p.mother(0)!=0 && p.mother(0)->mother(0)!=0) ztemp.gmomid=p.mother(0)->mother(0)->pdgId();
193 <        ztemp.p4=GENPTOLOR(p);
194 <
195 <        int ndau = p.numberOfDaughters();
196 <        for(int j = 0; j < ndau; ++ j) {
197 <          const Candidate * Zdau = p.daughter( j );
198 <          ztemp.dauid.push_back(Zdau->pdgId());
199 <          ztemp.dauFourMomentum.push_back(GENPTOLORP(Zdau));
200 <        }
201 <        auxInfo->mcZ.push_back(ztemp);
202 <      }
203 <      //
204 <      // binfo
205 <      //
206 <      
207 <      
208 <      if(id==5){
209 <
210 <        VHbbEventAuxInfo::ParticleMCInfo btemp;
211 <        btemp.status=st;
212 <        btemp.charge=p.charge();
213 <        if(p.mother(0)!=0) btemp.momid=p.mother(0)->pdgId();
214 <        if(p.mother(0)!=0 && p.mother(0)->mother(0)!=0) btemp.gmomid=p.mother(0)->mother(0)->pdgId();
215 <
216 <        btemp.p4=GENPTOLOR(p);
217 <        
218 <        int nHDaubdau = p.numberOfDaughters();
219 <        for(int j = 0; j < nHDaubdau; ++ j) {
220 <          const Candidate * Bdau = p.daughter( j );
221 <          btemp.dauid.push_back(Bdau->pdgId());
222 <        }
223 <        auxInfo->mcB.push_back(btemp);
224 <      }
225 <      
226 <      if(id==-5){
227 <
228 <        VHbbEventAuxInfo::ParticleMCInfo bbtemp;
229 <        
230 <        bbtemp.status=st;
231 <        bbtemp.charge=p.charge();
232 <        if(p.mother(0)!=0) bbtemp.momid=p.mother(0)->pdgId();
233 <        if(p.mother(0)!=0 && p.mother(0)->mother(0)!=0) bbtemp.gmomid=p.mother(0)->mother(0)->pdgId();
234 <
235 <        bbtemp.p4=GENPTOLOR(p);
236 <        
237 <        int nHDaubdau = p.numberOfDaughters();
238 <        for(int j = 0; j < nHDaubdau; ++ j) {
239 <          const Candidate * Bdau = p.daughter( j );
240 <          bbtemp.dauid.push_back(Bdau->pdgId());
360 <        }
361 <
362 <
363 <        auxInfo->mcBbar.push_back(bbtemp);
364 <     }
365 <      
366 <      if(abs(id)==4){
367 <        VHbbEventAuxInfo::ParticleMCInfo ctemp;
368 <        ctemp.status=st;
369 <        ctemp.charge=p.charge();
370 <        if(p.mother(0)!=0) ctemp.momid=p.mother(0)->pdgId();
371 <        if(p.mother(0)!=0 && p.mother(0)->mother(0)!=0) ctemp.gmomid=p.mother(0)->mother(0)->pdgId();
372 <
373 <        ctemp.p4=GENPTOLOR(p);
374 <        
375 <        int nHDaubdau = p.numberOfDaughters();
376 <        for(int j = 0; j < nHDaubdau; ++ j) {
377 <          const Candidate * Bdau = p.daughter( j );
378 <          ctemp.dauid.push_back(Bdau->pdgId());
379 <        }
380 <
381 <        auxInfo->mcC.push_back(ctemp);  
382 <
383 <      }
384 <
385 <    }
386 <
387 <  }   // isMC
388 <
389 <  /////// end generator block    
390 <
391 < /// photon used in isolation
392 <  edm::Handle<edm::View<reco::PFCandidate> > photonIsoH;
393 <  iEvent.getByLabel("pfAllPhotons",photonIsoH);
394 <  edm::View<reco::PFCandidate> photonsForIso = *photonIsoH;
395 <
396 <  edm::Handle<edm::View<pat::Muon> > muonHandle;
397 <  iEvent.getByLabel(muoLabel_,muonHandle);
398 <  edm::View<pat::Muon> muons = *muonHandle;
399 <
400 <  // hard jet  
401 <  edm::Handle<edm::View<pat::Jet> > jetHandle;
402 <  iEvent.getByLabel(jetLabel_,jetHandle);
403 <  edm::View<pat::Jet> jets = *jetHandle;
404 <
405 <  // sub jet  
406 <  edm::Handle<edm::View<pat::Jet> > subjetHandle;
407 <  iEvent.getByLabel(subjetLabel_,subjetHandle);
408 <  edm::View<pat::Jet> subjets = *subjetHandle;
409 <
410 <  // filter jet  
411 <  edm::Handle<edm::View<pat::Jet> > filterjetHandle;
412 <  iEvent.getByLabel(filterjetLabel_,filterjetHandle);
413 <  edm::View<pat::Jet> filterjets = *filterjetHandle;
414 <
415 <  // standard jets
416 <
417 <
418 <  edm::Handle<edm::View<pat::Jet> > simplejet2Handle;
419 <  iEvent.getByLabel(simplejet2Label_,simplejet2Handle);
420 <  edm::View<pat::Jet> simplejets2 = *simplejet2Handle;
421 <
422 <  edm::Handle<edm::View<pat::Jet> > simplejet3Handle;
423 <  iEvent.getByLabel(simplejet3Label_,simplejet3Handle);
424 <  edm::View<pat::Jet> simplejets3 = *simplejet3Handle;
425 <
426 <
427 <
428 <  edm::Handle<edm::View<pat::Electron> > electronHandle;
429 <  iEvent.getByLabel(eleLabel_,electronHandle);
430 <  edm::View<pat::Electron> electrons = *electronHandle;
431 <
432 <
433 <  //   edm::Handle<edm::View<pat::Photon> > phoHandle;
434 <  //   iEvent.getByLabel(phoLabel_,phoHandle);
435 <  //   edm::View<pat::Photon> photons = *phoHandle;
436 <
437 <  edm::Handle<edm::View<pat::Tau> > tauHandle;
438 <  iEvent.getByLabel(tauLabel_,tauHandle);
439 <  edm::View<pat::Tau> taus = *tauHandle;
440 <  
441 <  //Get the computer for the CSV
442 <  ESHandle<JetTagComputer> handle;
443 <  iSetup.get<JetTagComputerRecord>().get("combinedSecondaryVertex", handle);
444 <  computer = dynamic_cast<const GenericMVAJetTagComputer*>(handle.product());
445 <
446 <  //BTAGGING SCALE FACTOR FROM DATABASE
447 <  //Combined Secondary Vertex Loose
448 <  edm::ESHandle<BtagPerformance> bTagSF_CSVL_;
449 <  iSetup.get<BTagPerformanceRecord>().get("BTAGCSVL",bTagSF_CSVL_);
450 <  //Combined Secondary Vertex Medium
451 <  edm::ESHandle<BtagPerformance> bTagSF_CSVM_;
452 <  iSetup.get<BTagPerformanceRecord>().get("BTAGCSVM",bTagSF_CSVM_);
453 <  //Combined Secondary Vertex Tight
454 <  edm::ESHandle<BtagPerformance> bTagSF_CSVT_;
455 <  iSetup.get<BTagPerformanceRecord>().get("BTAGCSVT",bTagSF_CSVT_);
456 <
457 <  edm::ESHandle<BtagPerformance> mistagSF_CSVL_;
458 <  iSetup.get<BTagPerformanceRecord>().get("MISTAGCSVL",mistagSF_CSVL_);
459 <  //Combined Secondary Vertex Medium
460 <  edm::ESHandle<BtagPerformance> mistagSF_CSVM_;
461 <  iSetup.get<BTagPerformanceRecord>().get("MISTAGCSVM",mistagSF_CSVM_);
462 <  //Combined Secondary Vertex Tight
463 <  edm::ESHandle<BtagPerformance> mistagSF_CSVT_;
464 <  iSetup.get<BTagPerformanceRecord>().get("MISTAGCSVT",mistagSF_CSVT_);
465 <
466 < BTagSFContainer btagSFs;
467 <  btagSFs.BTAGSF_CSVL = (bTagSF_CSVL_.product());
468 <  btagSFs.BTAGSF_CSVM = (bTagSF_CSVM_.product());
469 <  btagSFs.BTAGSF_CSVT = (bTagSF_CSVT_.product());
470 <  btagSFs.MISTAGSF_CSVL = (mistagSF_CSVL_.product());
471 <  btagSFs.MISTAGSF_CSVM = (mistagSF_CSVM_.product());
472 <  btagSFs.MISTAGSF_CSVT = (mistagSF_CSVT_.product());
473 <
474 < #ifdef ENABLE_SIMPLEJETS1
475 <  edm::Handle<edm::View<pat::Jet> > simplejet1Handle;
476 <  iEvent.getByLabel(simplejet1Label_,simplejet1Handle);
477 <  edm::View<pat::Jet> simplejets1 = *simplejet1Handle;
478 <  for(edm::View<pat::Jet>::const_iterator jet_iter = simplejets1.begin(); jet_iter!=simplejets1.end(); ++jet_iter){
479 <    //     if(jet_iter->pt()>50)
480 <    //       njetscounter++;
481 <    VHbbEvent::SimpleJet sj;
482 <    //    std::cout <<" sj1"<<std::endl;
483 <    fillSimpleJet(sj,jet_iter);
484 <    //    if(!runOnMC_)
485 <
486 <   setJecUnc(sj,jecUnc);
487 <
488 <    Particle::LorentzVector p4Jet = jet_iter->p4();
489 <
490 <    if(runOnMC_){
491 <
492 <      fillScaleFactors(sj, btagSFs);
493 <
494 <      //PAT genJet matching
495 <      //genJet
496 <      const reco::GenJet *gJ = jet_iter->genJet();
497 <      //physical parton for mother info ONLY
498 <      if( (jet_iter->genParton()) ){
499 <        sj.bestMCid = jet_iter->genParton()->pdgId();
500 <        if( (jet_iter->genParton()->mother()) )
501 <          sj.bestMCmomid=jet_iter->genParton()->mother()->pdgId();
502 <      }
503 <      TLorentzVector gJp4;
504 <      if(gJ){
505 <        gJp4.SetPtEtaPhiE(gJ->pt(),gJ->eta(),gJ->phi(),gJ->energy());
506 <        sj.bestMCp4 = gJp4;
507 <        if(verbose_){
508 <          std::clog << "genJet matched Pt = " << gJp4.Pt() << std::endl;
509 <          std::clog << "genJet matched eta = " << gJp4.Eta() << std::endl;
510 <          std::clog << "genJet matched deltaR = " <<gJp4.DeltaR(sj.p4) << std::endl;
511 <          std::clog << "genJet matched mother id = " << sj.bestMCmomid << std::endl;
512 <        }
513 <      }
514 <      
515 <    } //isMC
516 <    hbbInfo->simpleJets.push_back(sj);
125 >        // JEC Uncertainty
126 >    
127 >        //  JetCorrectionUncertainty *jecUnc=0;
128 >    edm::ESHandle<JetCorrectorParametersCollection> JetCorParColl;
129 >    iSetup.get<JetCorrectionsRecord>().get("AK5PFchs",JetCorParColl);
130 >    JetCorrectionUncertainty *jecUnc=0;
131 >        //  if (!runOnMC_){
132 >    JetCorrectorParameters const & JetCorPar = (*JetCorParColl)["Uncertainty"];
133 >    jecUnc = new JetCorrectionUncertainty(JetCorPar);
134 >        //  }
135 >    
136 >    std::auto_ptr<VHbbEvent> hbbInfo( new VHbbEvent() );  
137 >    std::auto_ptr<VHbbEventAuxInfo> auxInfo( new VHbbEventAuxInfo() );
138 >    
139 >    
140 >    if (runOnMC_){
141 >        Handle<GenEventInfoProduct> evt_info;
142 >        iEvent.getByType(evt_info);
143 >        auxInfo->weightMCProd = evt_info->weight();
144 >    }
145 >    else
146 >        { auxInfo->weightMCProd =1.;}
147 >        //
148 >        // ??
149 >    
150 >        // trigger
151 >    
152 >        // trigger
153 >    edm::Handle<edm::TriggerResults>  hltresults;
154 >        //iEvent.getByLabel("TriggerResults", hltresults);
155 >    
156 >        //edm::InputTag tag("TriggerResults::HLT");
157 >        //  edm::InputTag tag("TriggerResults::HLT0");
158 >    iEvent.getByLabel(hltResults_, hltresults);
159 >    
160 >    const edm::TriggerNames & triggerNames_ = iEvent.triggerNames(*hltresults);
161 >    
162 >    int ntrigs = hltresults->size();
163 >    if (ntrigs==0){std::cerr << "%HLTInfo -- No trigger name given in TriggerResults of the input " << std::endl;}
164 >    
165 >    BeamSpot vertexBeamSpot;
166 >    edm::Handle<reco::BeamSpot> recoBeamSpotHandle;
167 >    iEvent.getByLabel("offlineBeamSpot",recoBeamSpotHandle);
168 >    vertexBeamSpot = *recoBeamSpotHandle;
169 >    /*
170 >     double BSx=vertexBeamSpot.x0();
171 >     double BSy=vertexBeamSpot.y0();
172 >     double BSz=vertexBeamSpot.z0();
173 >     */
174 >    
175 >    double MinVtxProb=-999.;
176 >    int VtxIn=-99;
177 >    
178 >    Handle<reco::VertexCollection> recVtxs;
179 >    iEvent.getByLabel("offlinePrimaryVertices", recVtxs);
180 >    
181 >    auxInfo->pvInfo.nVertices = recVtxs->size();
182 >    
183 >    for(size_t i = 0; i < recVtxs->size(); ++ i) {
184 >        const Vertex &vtx = (*recVtxs)[i];
185 >        double RecVtxProb=TMath::Prob(vtx.chi2(),vtx.ndof());
186 >        if(RecVtxProb>MinVtxProb){
187 >            VtxIn=i;
188 >            MinVtxProb=RecVtxProb;      
189 >        }
190 >    }
191 >    
192 >    const Vertex &RecVtx = (*recVtxs)[VtxIn];
193 >    const Vertex &RecVtxFirst = (*recVtxs)[0];
194 >    const Vertex &vertex = RecVtxFirst; //used in ele id 2012
195 >    
196 >    auxInfo->pvInfo.firstPVInPT2 = TVector3(RecVtxFirst.x(), RecVtxFirst.y(), RecVtxFirst.z());
197 >    auxInfo->pvInfo.firstPVInProb = TVector3(RecVtx.x(), RecVtx.y(), RecVtx.z());
198 >    
199 >    (auxInfo->pvInfo).efirstPVInPT2 = (RecVtxFirst.error());
200 >    (auxInfo->pvInfo).efirstPVInProb = RecVtx.error();
201 >    
202 >    edm::Handle<double> rhoHandle;
203 >    iEvent.getByLabel(edm::InputTag("kt6PFJets", "rho"),rhoHandle);  
204 >    auxInfo->puInfo.rho = *rhoHandle;
205 >    
206 >    edm::Handle<double> rho25Handle;
207 >    iEvent.getByLabel(edm::InputTag("kt6PFJets25", "rho"),rho25Handle);  
208 >    auxInfo->puInfo.rho25 = *rho25Handle;
209 >    edm::Handle<double> rho25HandleIso;
210 >    iEvent.getByLabel(edm::InputTag("kt6PFJetsForIsolation", "rho"),rho25HandleIso);  
211 >    auxInfo->puInfo.rho25Iso = *rho25HandleIso;
212 >    
213 >    edm::Handle<double> rhoNeutralHandle;
214 >    iEvent.getByLabel(edm::InputTag("kt6PFJetsCentralNeutral", "rho"),rhoNeutralHandle);  
215 >    auxInfo->puInfo.rhoNeutral = *rhoNeutralHandle;
216 >    
217 >    
218 >    edm::Handle<std::vector< PileupSummaryInfo> > puHandle;
219 >    
220 >    if (runOnMC_){
221 >        iEvent.getByType(puHandle);
222 >        if (puHandle.isValid()){
223 >            
224 >            std::vector< PileupSummaryInfo> pu = (*puHandle);
225 >            for (std::vector<PileupSummaryInfo>::const_iterator it= pu.begin(); it!=pu.end(); ++it){
226 >                int bx = (*it).getBunchCrossing();
227 >                if(bx == 0) { auxInfo->puInfo.truePU = (*it).getTrueNumInteractions();}
228 >                unsigned int num = (*it).getPU_NumInteractions();
229 >                    //  std::cout <<" PU PUSHING "<<bx<<" " <<num<<std::endl;
230 >                auxInfo->puInfo.pus[bx]  =num;
231 >            }
232 >        }
233 >    }
234 >    
235 >        //// real start
236 >    
237 >    
238 >    Handle<GenParticleCollection> genParticles;
239 >    
240 >    bool printJet=0;
241      
518  }
519 #endif //ENABLE_SIMPLEJETS1
520
521  for(edm::View<pat::Jet>::const_iterator jet_iter = simplejets3.begin(); jet_iter!=simplejets3.end(); ++jet_iter){
522    //     if(jet_iter->pt()>50)
523    //       njetscounter++;
524    VHbbEvent::SimpleJet sj;
525    //    std::cout <<" sj3"<<std::endl;
526    fillSimpleJet(sj,jet_iter);
527    //    if(!runOnMC_)  
528  setJecUnc(sj,jecUnc);
529
530   Particle::LorentzVector p4Jet = jet_iter->p4();
531
532    if(runOnMC_){
533
534      fillScaleFactors(sj, btagSFs);
535
536      //PAT genJet matching
537      //genJet
538      const reco::GenJet *gJ = jet_iter->genJet();
539      //physical parton for mother info ONLY
540      if( (jet_iter->genParton()) ){
541        sj.bestMCid = jet_iter->genParton()->pdgId();
542        if( (jet_iter->genParton()->mother()) )
543          sj.bestMCmomid=jet_iter->genParton()->mother()->pdgId();
544      }
545      TLorentzVector gJp4;
546      if(gJ){
547        gJp4.SetPtEtaPhiE(gJ->pt(),gJ->eta(),gJ->phi(),gJ->energy());
548        sj.bestMCp4 = gJp4;
549        if(verbose_){
550          std::clog << "genJet matched Pt = " << gJp4.Pt() << std::endl;
551          std::clog << "genJet matched eta = " << gJp4.Eta() << std::endl;
552          std::clog << "genJet matched deltaR = " <<gJp4.DeltaR(sj.p4) << std::endl;
553          std::clog << "genJet matched mother id = " << sj.bestMCmomid << std::endl;
554        }
555      }
556      
557    } //isMC
558    //
559
560
561    hbbInfo->simpleJets3.push_back(sj);
242      
563  }
564
565 #ifdef ENABLE_SIMPLEJETS4
566  edm::Handle<edm::View<pat::Jet> > simplejet4Handle;
567  iEvent.getByLabel(simplejet4Label_,simplejet4Handle);
568  edm::View<pat::Jet> simplejets4 = *simplejet4Handle;
569  for(edm::View<pat::Jet>::const_iterator jet_iter = simplejets4.begin(); jet_iter!=simplejets4.end(); ++jet_iter){
570    //     if(jet_iter->pt()>50)
571    //       njetscounter++;
572  
573   VHbbEvent::SimpleJet sj;
574    //    std::cout <<" sj4"<<std::endl;
575    fillSimpleJet(sj,jet_iter);
576    //    if(!runOnMC_)  
577    setJecUnc(sj,jecUnc);
578  
579
580
581    Particle::LorentzVector p4Jet = jet_iter->p4();
582
243      if(runOnMC_){
244 <
245 <      fillScaleFactors(sj, btagSFs);
246 <
247 <      //PAT genJet matching
248 <      //genJet
249 <      const reco::GenJet *gJ = jet_iter->genJet();
250 <      //physical parton for mother info ONLY
251 <      if( (jet_iter->genParton()) ){
252 <        sj.bestMCid = jet_iter->genParton()->pdgId();
253 <        if( (jet_iter->genParton()->mother()) )
254 <          sj.bestMCmomid=jet_iter->genParton()->mother()->pdgId();
255 <      }
256 <      TLorentzVector gJp4;
257 <      if(gJ){
258 <        gJp4.SetPtEtaPhiE(gJ->pt(),gJ->eta(),gJ->phi(),gJ->energy());
259 <        sj.bestMCp4 = gJp4;
260 <        if(verbose_){
261 <          std::clog << "genJet matched Pt = " << gJp4.Pt() << std::endl;
262 <          std::clog << "genJet matched eta = " << gJp4.Eta() << std::endl;
263 <          std::clog << "genJet matched deltaR = " <<gJp4.DeltaR(sj.p4) << std::endl;
264 <          std::clog << "genJet matched mother id = " << sj.bestMCmomid << std::endl;
265 <        }
266 <      }
267 <      
268 <    } //isMC
269 <    hbbInfo->simpleJets4.push_back(sj);
244 >        
245 >        iEvent.getByLabel("genParticles", genParticles);
246 >        
247 >        for(size_t i = 0; i < genParticles->size(); ++ i) {
248 >            
249 >            const GenParticle & p = (*genParticles)[i];
250 >            int id = p.pdgId();
251 >            int st = p.status();  
252 >            
253 >            if(id==25){
254 >                
255 >                VHbbEventAuxInfo::ParticleMCInfo htemp;
256 >                htemp.status=st;
257 >                htemp.charge=p.charge();
258 >                if(p.mother(0)!=0) htemp.momid=p.mother(0)->pdgId();
259 >                if(p.mother(0)!=0 && p.mother(0)->mother(0)!=0) htemp.gmomid=p.mother(0)->mother(0)->pdgId();
260 >                htemp.p4 = GENPTOLOR(p);
261 >                
262 >                int ndau = p.numberOfDaughters();
263 >                for(int j = 0; j < ndau; ++ j) {
264 >                    const Candidate * Hdau = p.daughter( j );
265 >                    htemp.dauid.push_back(Hdau->pdgId());
266 >                    htemp.dauFourMomentum.push_back(GENPTOLORP(Hdau));
267 >                }
268 >                (auxInfo->mcH).push_back(htemp);
269 >            }
270 >            
271 >            
272 >            if(abs(id)==24){
273 >                
274 >                VHbbEventAuxInfo::ParticleMCInfo wtemp;
275 >                wtemp.status=st;
276 >                wtemp.charge=p.charge();
277 >                if(p.mother(0)!=0) wtemp.momid=p.mother(0)->pdgId();
278 >                if(p.mother(0)!=0 && p.mother(0)->mother(0)!=0) wtemp.gmomid=p.mother(0)->mother(0)->pdgId();
279 >                wtemp.p4=GENPTOLOR(p);
280 >                
281 >                int ndau = p.numberOfDaughters();
282 >                for(int j = 0; j < ndau; ++ j) {
283 >                    const Candidate * Wdau = p.daughter( j );
284 >                    wtemp.dauid.push_back(Wdau->pdgId());
285 >                    wtemp.dauFourMomentum.push_back(GENPTOLORP(Wdau));
286 >                }
287 >                auxInfo->mcW.push_back(wtemp);
288 >            }
289 >            
290 >            if(abs(id)==15) {
291 >                VHbbEventAuxInfo::ParticleMCInfo tautemp;
292 >                tautemp.status=st;
293 >                tautemp.charge=p.charge();
294 >                if(p.mother(0)!=0) tautemp.momid=p.mother(0)->pdgId();
295 >                if(p.mother(0)!=0 && p.mother(0)->mother(0)!=0) tautemp.gmomid=p.mother(0)->mother(0)->pdgId();
296 >                tautemp.p4=GENPTOLOR(p);
297 >                
298 >                int ndau = p.numberOfDaughters();
299 >                for(int j = 0; j < ndau; ++ j) {
300 >                    const Candidate * Taudau = p.daughter( j );
301 >                    tautemp.dauid.push_back(Taudau->pdgId());
302 >                    tautemp.dauFourMomentum.push_back(GENPTOLORP(Taudau));
303 >                }
304 >                auxInfo->mcTau.push_back(tautemp);
305 >            }
306 >            
307 >            if(abs(id)==23){
308 >                
309 >                
310 >                VHbbEventAuxInfo::ParticleMCInfo ztemp;
311 >                ztemp.status=st;
312 >                ztemp.charge=p.charge();
313 >                if(p.mother(0)!=0) ztemp.momid=p.mother(0)->pdgId();
314 >                if(p.mother(0)!=0 && p.mother(0)->mother(0)!=0) ztemp.gmomid=p.mother(0)->mother(0)->pdgId();
315 >                ztemp.p4=GENPTOLOR(p);
316 >                
317 >                int ndau = p.numberOfDaughters();
318 >                for(int j = 0; j < ndau; ++ j) {
319 >                    const Candidate * Zdau = p.daughter( j );
320 >                    ztemp.dauid.push_back(Zdau->pdgId());
321 >                    ztemp.dauFourMomentum.push_back(GENPTOLORP(Zdau));
322 >                }
323 >                auxInfo->mcZ.push_back(ztemp);
324 >            }
325 >                //
326 >                // binfo
327 >                //
328 >            
329 >            
330 >            if(id==5){
331 >                
332 >                VHbbEventAuxInfo::ParticleMCInfo btemp;
333 >                btemp.status=st;
334 >                btemp.charge=p.charge();
335 >                if(p.mother(0)!=0) btemp.momid=p.mother(0)->pdgId();
336 >                if(p.mother(0)!=0 && p.mother(0)->mother(0)!=0) btemp.gmomid=p.mother(0)->mother(0)->pdgId();
337 >                
338 >                btemp.p4=GENPTOLOR(p);
339 >                
340 >                int nHDaubdau = p.numberOfDaughters();
341 >                for(int j = 0; j < nHDaubdau; ++ j) {
342 >                    const Candidate * Bdau = p.daughter( j );
343 >                    btemp.dauid.push_back(Bdau->pdgId());
344 >                }
345 >                auxInfo->mcB.push_back(btemp);
346 >            }
347 >            
348 >            if(id==-5){
349 >                
350 >                VHbbEventAuxInfo::ParticleMCInfo bbtemp;
351 >                
352 >                bbtemp.status=st;
353 >                bbtemp.charge=p.charge();
354 >                if(p.mother(0)!=0) bbtemp.momid=p.mother(0)->pdgId();
355 >                if(p.mother(0)!=0 && p.mother(0)->mother(0)!=0) bbtemp.gmomid=p.mother(0)->mother(0)->pdgId();
356 >                
357 >                bbtemp.p4=GENPTOLOR(p);
358 >                
359 >                int nHDaubdau = p.numberOfDaughters();
360 >                for(int j = 0; j < nHDaubdau; ++ j) {
361 >                    const Candidate * Bdau = p.daughter( j );
362 >                    bbtemp.dauid.push_back(Bdau->pdgId());
363 >                }
364 >                
365 >                
366 >                auxInfo->mcBbar.push_back(bbtemp);
367 >            }
368 >            
369 >            if(abs(id)==4){
370 >                VHbbEventAuxInfo::ParticleMCInfo ctemp;
371 >                ctemp.status=st;
372 >                ctemp.charge=p.charge();
373 >                if(p.mother(0)!=0) ctemp.momid=p.mother(0)->pdgId();
374 >                if(p.mother(0)!=0 && p.mother(0)->mother(0)!=0) ctemp.gmomid=p.mother(0)->mother(0)->pdgId();
375 >                
376 >                ctemp.p4=GENPTOLOR(p);
377 >                
378 >                int nHDaubdau = p.numberOfDaughters();
379 >                for(int j = 0; j < nHDaubdau; ++ j) {
380 >                    const Candidate * Bdau = p.daughter( j );
381 >                    ctemp.dauid.push_back(Bdau->pdgId());
382 >                }
383 >                
384 >                auxInfo->mcC.push_back(ctemp);  
385 >                
386 >            }
387 >            
388 >        }
389 >        
390 >    }   // isMC
391      
392 <  }
612 < #endif //ENABLE SIMPLEJETS4
613 <
614 <
615 <  for(edm::View<pat::Jet>::const_iterator jet_iter = simplejets2.begin(); jet_iter!=simplejets2.end(); ++jet_iter){
392 >        /////// end generator block    
393      
394 <
395 <
396 <    VHbbEvent::SimpleJet sj;
397 <    //    std::cout <<" sj2"<<std::endl;
398 <    fillSimpleJet(sj,jet_iter);  
399 <
400 <    ///###########          PU JET ID #################
401 <   // add puId...
402 <    edm::Handle<edm::ValueMap<float> > puJetIdMVA;
403 <    iEvent.getByLabel("puJetMva","fullDiscriminant", puJetIdMVA);
404 <
405 <    edm::Handle<edm::ValueMap<int> > puJetIdFlag;
406 <    iEvent.getByLabel("puJetMva", "fullId", puJetIdFlag);
407 <
408 <    //    cout  << " pt " << jet_iter->pt() << " eta " << jet_iter->eta() << std::endl;
409 <    unsigned int idx = jet_iter - simplejets2.begin();
410 <
411 <
412 <
413 <    sj.puJetIdMva   = (*puJetIdMVA)[simplejets2.refAt(idx)];
414 <    int    idflag = (*puJetIdFlag)[simplejets2.refAt(idx)];
415 <  
394 >        /// photon used in isolation
395 >    edm::Handle<edm::View<reco::PFCandidate> > photonIsoH;
396 >    iEvent.getByLabel("pfAllPhotons",photonIsoH);
397 >    edm::View<reco::PFCandidate> photonsForIso = *photonIsoH;
398 >    
399 >    edm::Handle<edm::View<pat::Muon> > muonHandle;
400 >    iEvent.getByLabel(muoLabel_,muonHandle);
401 >    edm::View<pat::Muon> muons = *muonHandle;
402 >    
403 >        // hard jet  
404 >    edm::Handle<edm::View<pat::Jet> > jetHandle;
405 >    iEvent.getByLabel(jetLabel_,jetHandle);
406 >    edm::View<pat::Jet> jets = *jetHandle;
407 >    
408 >        // sub jet  
409 >    edm::Handle<edm::View<pat::Jet> > subjetHandle;
410 >    iEvent.getByLabel(subjetLabel_,subjetHandle);
411 >    edm::View<pat::Jet> subjets = *subjetHandle;
412 >    
413 >        // filter jet  
414 >    edm::Handle<edm::View<pat::Jet> > filterjetHandle;
415 >    iEvent.getByLabel(filterjetLabel_,filterjetHandle);
416 >    edm::View<pat::Jet> filterjets = *filterjetHandle;
417 >    
418 >        // standard jets
419 >    
420 >    
421 >    edm::Handle<edm::View<pat::Jet> > simplejet2Handle;
422 >    iEvent.getByLabel(simplejet2Label_,simplejet2Handle);
423 >    edm::View<pat::Jet> simplejets2 = *simplejet2Handle;
424 >    
425 >    edm::Handle<edm::View<pat::Jet> > simplejet3Handle;
426 >    iEvent.getByLabel(simplejet3Label_,simplejet3Handle);
427 >    edm::View<pat::Jet> simplejets3 = *simplejet3Handle;
428 >    
429 >    
430 >    
431 >    edm::Handle<edm::View<pat::Electron> > electronHandle;
432 >    iEvent.getByLabel(eleLabel_,electronHandle);
433 >    edm::View<pat::Electron> electrons = *electronHandle;
434 >    
435 >    
436 >        //   edm::Handle<edm::View<pat::Photon> > phoHandle;
437 >        //   iEvent.getByLabel(phoLabel_,phoHandle);
438 >        //   edm::View<pat::Photon> photons = *phoHandle;
439 >    
440 >    edm::Handle<edm::View<pat::Tau> > tauHandle;
441 >    iEvent.getByLabel(tauLabel_,tauHandle);
442 >    edm::View<pat::Tau> taus = *tauHandle;
443 >    
444 >        //Get the computer for the CSV
445 >    ESHandle<JetTagComputer> handle;
446 >    iSetup.get<JetTagComputerRecord>().get("combinedSecondaryVertex", handle);
447 >    computer = dynamic_cast<const GenericMVAJetTagComputer*>(handle.product());
448 >    
449 >        //BTAGGING SCALE FACTOR FROM DATABASE
450 >        //Combined Secondary Vertex Loose
451 >    edm::ESHandle<BtagPerformance> bTagSF_CSVL_;
452 >    iSetup.get<BTagPerformanceRecord>().get("BTAGCSVL",bTagSF_CSVL_);
453 >        //Combined Secondary Vertex Medium
454 >    edm::ESHandle<BtagPerformance> bTagSF_CSVM_;
455 >    iSetup.get<BTagPerformanceRecord>().get("BTAGCSVM",bTagSF_CSVM_);
456 >        //Combined Secondary Vertex Tight
457 >    edm::ESHandle<BtagPerformance> bTagSF_CSVT_;
458 >    iSetup.get<BTagPerformanceRecord>().get("BTAGCSVT",bTagSF_CSVT_);
459 >    
460 >    edm::ESHandle<BtagPerformance> mistagSF_CSVL_;
461 >    iSetup.get<BTagPerformanceRecord>().get("MISTAGCSVL",mistagSF_CSVL_);
462 >        //Combined Secondary Vertex Medium
463 >    edm::ESHandle<BtagPerformance> mistagSF_CSVM_;
464 >    iSetup.get<BTagPerformanceRecord>().get("MISTAGCSVM",mistagSF_CSVM_);
465 >        //Combined Secondary Vertex Tight
466 >    edm::ESHandle<BtagPerformance> mistagSF_CSVT_;
467 >    iSetup.get<BTagPerformanceRecord>().get("MISTAGCSVT",mistagSF_CSVT_);
468 >    
469 >    BTagSFContainer btagSFs;
470 >    btagSFs.BTAGSF_CSVL = (bTagSF_CSVL_.product());
471 >    btagSFs.BTAGSF_CSVM = (bTagSF_CSVM_.product());
472 >    btagSFs.BTAGSF_CSVT = (bTagSF_CSVT_.product());
473 >    btagSFs.MISTAGSF_CSVL = (mistagSF_CSVL_.product());
474 >    btagSFs.MISTAGSF_CSVM = (mistagSF_CSVM_.product());
475 >    btagSFs.MISTAGSF_CSVT = (mistagSF_CSVT_.product());
476      
477 <    //     cout << " PU JetID MVA " << mva;
478 <    if( PileupJetIdentifier::passJetId( idflag, PileupJetIdentifier::kLoose )) {
479 <      //cout << " pass loose wp";
480 <      sj.puJetIdL =1;
481 <        }
482 <    if( PileupJetIdentifier::passJetId( idflag, PileupJetIdentifier::kMedium )) {
483 <      //    cout << " pass medium wp";
484 <      sj.puJetIdM =1;
477 > #ifdef ENABLE_SIMPLEJETS1
478 >    edm::Handle<edm::View<pat::Jet> > simplejet1Handle;
479 >    iEvent.getByLabel(simplejet1Label_,simplejet1Handle);
480 >    edm::View<pat::Jet> simplejets1 = *simplejet1Handle;
481 >    for(edm::View<pat::Jet>::const_iterator jet_iter = simplejets1.begin(); jet_iter!=simplejets1.end(); ++jet_iter){
482 >            //     if(jet_iter->pt()>50)
483 >            //       njetscounter++;
484 >        VHbbEvent::SimpleJet sj;
485 >            //    std::cout <<" sj1"<<std::endl;
486 >        fillSimpleJet(sj,jet_iter);
487 >            //    if(!runOnMC_)
488 >        
489 >        setJecUnc(sj,jecUnc);
490 >        
491 >        Particle::LorentzVector p4Jet = jet_iter->p4();
492 >        
493 >        if(runOnMC_){
494 >            
495 >            fillScaleFactors(sj, btagSFs);
496 >            
497 >                //PAT genJet matching
498 >                //genJet
499 >            const reco::GenJet *gJ = jet_iter->genJet();
500 >                //physical parton for mother info ONLY
501 >            if( (jet_iter->genParton()) ){
502 >                sj.bestMCid = jet_iter->genParton()->pdgId();
503 >                if( (jet_iter->genParton()->mother()) )
504 >                    sj.bestMCmomid=jet_iter->genParton()->mother()->pdgId();
505 >            }
506 >            TLorentzVector gJp4;
507 >            if(gJ){
508 >                gJp4.SetPtEtaPhiE(gJ->pt(),gJ->eta(),gJ->phi(),gJ->energy());
509 >                sj.bestMCp4 = gJp4;
510 >                if(verbose_){
511 >                    std::clog << "genJet matched Pt = " << gJp4.Pt() << std::endl;
512 >                    std::clog << "genJet matched eta = " << gJp4.Eta() << std::endl;
513 >                    std::clog << "genJet matched deltaR = " <<gJp4.DeltaR(sj.p4) << std::endl;
514 >                    std::clog << "genJet matched mother id = " << sj.bestMCmomid << std::endl;
515 >                }
516 >            }
517 >            
518 >        } //isMC
519 >        hbbInfo->simpleJets.push_back(sj);
520 >        
521 >    }
522 > #endif //ENABLE_SIMPLEJETS1
523 >    
524 >    for(edm::View<pat::Jet>::const_iterator jet_iter = simplejets3.begin(); jet_iter!=simplejets3.end(); ++jet_iter){
525 >            //     if(jet_iter->pt()>50)
526 >            //       njetscounter++;
527 >        VHbbEvent::SimpleJet sj;
528 >            //    std::cout <<" sj3"<<std::endl;
529 >        fillSimpleJet(sj,jet_iter);
530 >            //    if(!runOnMC_)  
531 >        setJecUnc(sj,jecUnc);
532 >        
533 >        Particle::LorentzVector p4Jet = jet_iter->p4();
534 >        
535 >        if(runOnMC_){
536 >            
537 >            fillScaleFactors(sj, btagSFs);
538 >            
539 >                //PAT genJet matching
540 >                //genJet
541 >            const reco::GenJet *gJ = jet_iter->genJet();
542 >                //physical parton for mother info ONLY
543 >            if( (jet_iter->genParton()) ){
544 >                sj.bestMCid = jet_iter->genParton()->pdgId();
545 >                if( (jet_iter->genParton()->mother()) )
546 >                    sj.bestMCmomid=jet_iter->genParton()->mother()->pdgId();
547 >            }
548 >            TLorentzVector gJp4;
549 >            if(gJ){
550 >                gJp4.SetPtEtaPhiE(gJ->pt(),gJ->eta(),gJ->phi(),gJ->energy());
551 >                sj.bestMCp4 = gJp4;
552 >                if(verbose_){
553 >                    std::clog << "genJet matched Pt = " << gJp4.Pt() << std::endl;
554 >                    std::clog << "genJet matched eta = " << gJp4.Eta() << std::endl;
555 >                    std::clog << "genJet matched deltaR = " <<gJp4.DeltaR(sj.p4) << std::endl;
556 >                    std::clog << "genJet matched mother id = " << sj.bestMCmomid << std::endl;
557 >                }
558 >            }
559 >            
560 >        } //isMC
561 >          //
562 >        
563 >        
564 >        hbbInfo->simpleJets3.push_back(sj);
565 >        
566      }
567 <    if( PileupJetIdentifier::passJetId( idflag, PileupJetIdentifier::kTight )) {
568 <      //    cout << " pass tight wp";
569 <      sj.puJetIdT =1;
567 >    
568 > #ifdef ENABLE_SIMPLEJETS4
569 >    edm::Handle<edm::View<pat::Jet> > simplejet4Handle;
570 >    iEvent.getByLabel(simplejet4Label_,simplejet4Handle);
571 >    edm::View<pat::Jet> simplejets4 = *simplejet4Handle;
572 >    for(edm::View<pat::Jet>::const_iterator jet_iter = simplejets4.begin(); jet_iter!=simplejets4.end(); ++jet_iter){
573 >            //     if(jet_iter->pt()>50)
574 >            //       njetscounter++;
575 >        
576 >        VHbbEvent::SimpleJet sj;
577 >            //    std::cout <<" sj4"<<std::endl;
578 >        fillSimpleJet(sj,jet_iter);
579 >            //    if(!runOnMC_)  
580 >        setJecUnc(sj,jecUnc);
581 >        
582 >        
583 >        
584 >        Particle::LorentzVector p4Jet = jet_iter->p4();
585 >        
586 >        if(runOnMC_){
587 >            
588 >            fillScaleFactors(sj, btagSFs);
589 >            
590 >                //PAT genJet matching
591 >                //genJet
592 >            const reco::GenJet *gJ = jet_iter->genJet();
593 >                //physical parton for mother info ONLY
594 >            if( (jet_iter->genParton()) ){
595 >                sj.bestMCid = jet_iter->genParton()->pdgId();
596 >                if( (jet_iter->genParton()->mother()) )
597 >                    sj.bestMCmomid=jet_iter->genParton()->mother()->pdgId();
598 >            }
599 >            TLorentzVector gJp4;
600 >            if(gJ){
601 >                gJp4.SetPtEtaPhiE(gJ->pt(),gJ->eta(),gJ->phi(),gJ->energy());
602 >                sj.bestMCp4 = gJp4;
603 >                if(verbose_){
604 >                    std::clog << "genJet matched Pt = " << gJp4.Pt() << std::endl;
605 >                    std::clog << "genJet matched eta = " << gJp4.Eta() << std::endl;
606 >                    std::clog << "genJet matched deltaR = " <<gJp4.DeltaR(sj.p4) << std::endl;
607 >                    std::clog << "genJet matched mother id = " << sj.bestMCmomid << std::endl;
608 >                }
609 >            }
610 >            
611 >        } //isMC
612 >        hbbInfo->simpleJets4.push_back(sj);
613 >        
614      }
615 <    //    cout << endl;
654 <    //  #############  END OF PU JET ID ######################
655 <
656 <  
657 <    //  if(!runOnMC_)  
658 < setJecUnc(sj,jecUnc);
659 <    /*    sj.flavour = jet_iter->partonFlavour();
615 > #endif //ENABLE SIMPLEJETS4
616      
617      
618 <    sj.tche=jet_iter->bDiscriminator("trackCountingHighEffBJetTags");
619 <    sj.tchp=jet_iter->bDiscriminator("trackCountingHighPurBJetTags");
620 <    sj.jp=jet_iter->bDiscriminator("jetProbabilityBJetTags");
621 <    sj.jpb=jet_iter->bDiscriminator("jetBProbabilityBJetTags");
622 <    sj.ssvhe=jet_iter->bDiscriminator("simpleSecondaryVertexHighEffBJetTags");
623 <    sj.csv=jet_iter->bDiscriminator("combinedSecondaryVertexBJetTags");
624 <    sj.csvmva=jet_iter->bDiscriminator("combinedSecondaryVertexMVABJetTags");
625 <    sj.charge=jet_iter->jetCharge();
626 <    sj.ntracks=jet_iter->associatedTracks().size();
627 <    sj.p4=GENPTOLORP(jet_iter);
628 <    sj.chargedTracksFourMomentum=(getChargedTracksMomentum(&*(jet_iter)));
629 <    sj.SF_CSVL=1;
630 <    sj.SF_CSVM=1;
631 <    sj.SF_CSVT=1;
632 <    sj.SF_CSVLerr=0;
633 <    sj.SF_CSVMerr=0;
634 <    sj.SF_CSVTerr=0;
635 <  
636 <
637 <    //
638 <    // addtaginfo for csv
639 <    //
640 <
641 <    if (jet_iter->hasTagInfo("SimpleSecondaryVertex")) {
642 <
643 <      const reco::SecondaryVertexTagInfo * tf = jet_iter->tagInfoSecondaryVertex();
644 <      sj.vtxMass = tf->secondaryVertex(0).p4().mass();
645 <      sj.vtxNTracks = tf->secondaryVertex(0).nTracks();
646 <      Measurement1D m = tf->flightDistance(0);
647 <      sj.vtx3dL = m.value();
648 <      sj.vtx3deL = m.error();
618 >    for(edm::View<pat::Jet>::const_iterator jet_iter = simplejets2.begin(); jet_iter!=simplejets2.end(); ++jet_iter){
619 >        
620 >        
621 >        
622 >        VHbbEvent::SimpleJet sj;
623 >            //    std::cout <<" sj2"<<std::endl;
624 >        fillSimpleJet(sj,jet_iter);  
625 >        
626 >            ///###########          PU JET ID #################
627 >            // add puId...
628 >        edm::Handle<edm::ValueMap<float> > puJetIdMVA;
629 >        iEvent.getByLabel("puJetMva","fullDiscriminant", puJetIdMVA);
630 >        
631 >        edm::Handle<edm::ValueMap<int> > puJetIdFlag;
632 >        iEvent.getByLabel("puJetMva", "fullId", puJetIdFlag);
633 >        
634 >            //    cout  << " pt " << jet_iter->pt() << " eta " << jet_iter->eta() << std::endl;
635 >        unsigned int idx = jet_iter - simplejets2.begin();
636 >        
637 >        
638 >        
639 >        sj.puJetIdMva   = (*puJetIdMVA)[simplejets2.refAt(idx)];
640 >        int    idflag = (*puJetIdFlag)[simplejets2.refAt(idx)];
641 >        
642 >        
643 >            //     cout << " PU JetID MVA " << mva;
644 >        if( PileupJetIdentifier::passJetId( idflag, PileupJetIdentifier::kLoose )) {
645 >                //cout << " pass loose wp";
646 >            sj.puJetIdL =1;
647 >        }
648 >        if( PileupJetIdentifier::passJetId( idflag, PileupJetIdentifier::kMedium )) {
649 >                //    cout << " pass medium wp";
650 >            sj.puJetIdM =1;
651 >        }
652 >        if( PileupJetIdentifier::passJetId( idflag, PileupJetIdentifier::kTight )) {
653 >                //    cout << " pass tight wp";
654 >            sj.puJetIdT =1;
655 >        }
656 >            //    cout << endl;
657 >            //  #############  END OF PU JET ID ######################
658 >        
659 >        
660 >            //  if(!runOnMC_)  
661 >        setJecUnc(sj,jecUnc);
662 >        /*    sj.flavour = jet_iter->partonFlavour();
663 >        
664 >        
665 >         sj.tche=jet_iter->bDiscriminator("trackCountingHighEffBJetTags");
666 >         sj.tchp=jet_iter->bDiscriminator("trackCountingHighPurBJetTags");
667 >         sj.jp=jet_iter->bDiscriminator("jetProbabilityBJetTags");
668 >         sj.jpb=jet_iter->bDiscriminator("jetBProbabilityBJetTags");
669 >         sj.ssvhe=jet_iter->bDiscriminator("simpleSecondaryVertexHighEffBJetTags");
670 >         sj.csv=jet_iter->bDiscriminator("combinedSecondaryVertexBJetTags");
671 >         sj.csvmva=jet_iter->bDiscriminator("combinedSecondaryVertexMVABJetTags");
672 >         sj.charge=jet_iter->jetCharge();
673 >         sj.ntracks=jet_iter->associatedTracks().size();
674 >         sj.p4=GENPTOLORP(jet_iter);
675 >         sj.chargedTracksFourMomentum=(getChargedTracksMomentum(&*(jet_iter)));
676 >         sj.SF_CSVL=1;
677 >         sj.SF_CSVM=1;
678 >         sj.SF_CSVT=1;
679 >         sj.SF_CSVLerr=0;
680 >         sj.SF_CSVMerr=0;
681 >         sj.SF_CSVTerr=0;
682 >        
683 >        
684 >         //
685 >         // addtaginfo for csv
686 >         //
687 >        
688 >         if (jet_iter->hasTagInfo("SimpleSecondaryVertex")) {
689 >        
690 >         const reco::SecondaryVertexTagInfo * tf = jet_iter->tagInfoSecondaryVertex();
691 >         sj.vtxMass = tf->secondaryVertex(0).p4().mass();
692 >         sj.vtxNTracks = tf->secondaryVertex(0).nTracks();
693 >         Measurement1D m = tf->flightDistance(0);
694 >         sj.vtx3dL = m.value();
695 >         sj.vtx3deL = m.error();
696 >         }
697 >        
698 >        
699 >         //
700 >         // add tVector
701 >         //
702 >         sj.tVector = getTvect(&(*jet_iter));
703 >         */
704 >        Particle::LorentzVector p4Jet = jet_iter->p4();
705 >        
706 >        if(runOnMC_){
707 >            
708 >                //BTV scale factors
709 >            fillScaleFactors(sj, btagSFs);
710 >            
711 >                //PAT genJet matching
712 >                //genJet
713 >            const reco::GenJet *gJ = jet_iter->genJet();
714 >                //physical parton for mother info ONLY
715 >            if( (jet_iter->genParton()) ){
716 >                sj.bestMCid = jet_iter->genParton()->pdgId();
717 >                if( (jet_iter->genParton()->mother()) )
718 >                    sj.bestMCmomid=jet_iter->genParton()->mother()->pdgId();
719 >            }
720 >            TLorentzVector gJp4;
721 >            if(gJ){
722 >                gJp4.SetPtEtaPhiE(gJ->pt(),gJ->eta(),gJ->phi(),gJ->energy());
723 >                sj.bestMCp4 = gJp4;
724 >                if(verbose_){
725 >                    std::clog << "genJet matched Pt = " << gJp4.Pt() << std::endl;
726 >                    std::clog << "genJet matched eta = " << gJp4.Eta() << std::endl;
727 >                    std::clog << "genJet matched deltaR = " << gJp4.DeltaR(sj.p4) << std::endl;
728 >                    std::clog << "genJet matched mother id = " << sj.bestMCmomid << std::endl;
729 >                }
730 >            }
731 >            
732 >                // add flag if a mc lepton is find inside a cone around the jets...
733 >            iEvent.getByLabel("genParticles", genParticles);
734 >            
735 >            for(size_t i = 0; i < genParticles->size(); ++ i) {
736 >                
737 >                const GenParticle & p = (*genParticles)[i];
738 >                int id = 0;
739 >                p.pt()> lep_ptCutForBjets_ ? id= p.pdgId(): 0;
740 >                
741 >                    //      std::cout<< "found a muon with pt " << mu->pt()   << std::endl;
742 >                if   ((abs(id)==13 || abs(id)==11) && deltaR(p.eta(), p.phi(), sj.p4.Eta(), sj.p4.Phi() ) <0.5)  sj.isSemiLeptMCtruth=1;
743 >            }
744 >            
745 >        }  //isMC
746 >        
747 >            // add flag if a reco lepton is find inside a cone around the jets...
748 >        edm::Handle<edm::View<reco::Candidate> > muonNoCutsHandle;
749 >        iEvent.getByLabel(muonoCutsLabel_,muonNoCutsHandle);
750 >        edm::View<reco::Candidate> muonsNoCuts = *muonNoCutsHandle;
751 >        
752 >        
753 >        
754 >        for(edm::View<reco::Candidate>::const_iterator mu = muonsNoCuts.begin(); mu!=muonsNoCuts.end() && sj.isSemiLept!=1; ++mu){
755 >                //      std::cout<< "found a muon with pt " << mu->pt()   << std::endl;
756 >            const pat::Muon& m = static_cast <const pat::Muon&> (*mu);
757 >            float Smpt = m.pt();
758 >            float Smeta = m.eta();
759 >            float Smphi = m.phi();
760 >            
761 >            float SmJdR = deltaR(Smeta, Smphi, sj.p4.Eta(), sj.p4.Phi());
762 >            
763 >            if   ( Smpt> lep_ptCutForBjets_ && SmJdR <0.5)  {
764 >                sj.isSemiLept=1;
765 >                    //isSemiLept(-99), isSemiLeptMCtruth(-99), SoftLeptPt(-99), SoftLeptdR(-99), SoftLeptptRel(-99), SoftLeptpdgId(-99), SoftLeptIdlooseMu(-99), SoftLeptId95(-99), SoftLeptRelCombIso(-99),  
766 >                sj.SoftLeptpdgId =13;
767 >                sj.SoftLeptdR= SmJdR;
768 >                sj.SoftLeptPt=Smpt;
769 >                TVector3 mvec ( m.p4().Vect().X(), m.p4().Vect().Y(), m.p4().Vect().Z()  );
770 >                sj.SoftLeptptRel=  sj.p4.Perp(  mvec );
771 >                sj.SoftLeptRelCombIso = (m.trackIso() + m.ecalIso() + m.hcalIso() ) / Smpt ;
772 >                sj.SoftLeptIdlooseMu=m.muonID("TMLastStationLoose");
773 >            }
774 >        }
775 >        
776 >        
777 >        edm::Handle<edm::View<reco::Candidate> > eleNoCutsHandle;
778 >        iEvent.getByLabel(elenoCutsLabel_,eleNoCutsHandle);
779 >        edm::View<reco::Candidate> elesNoCuts = *eleNoCutsHandle;
780 >        
781 >        
782 >        
783 >        for(edm::View<reco::Candidate>::const_iterator ele = elesNoCuts.begin(); ele!=elesNoCuts.end() && sj.isSemiLept!=1; ++ele){
784 >            
785 >            const pat::Electron& e = static_cast <const pat::Electron&> (*ele);
786 >            float Smpt = e.pt();
787 >            float Smeta = e.eta();
788 >            float Smphi = e.phi();
789 >            
790 >            float SmJdR = deltaR(Smeta, Smphi, sj.p4.Eta(), sj.p4.Phi());
791 >            if   ( Smpt> lep_ptCutForBjets_ && SmJdR <0.5)  {
792 >                sj.isSemiLept=1;
793 >                sj.SoftLeptpdgId =11;
794 >                sj.SoftLeptdR= SmJdR;
795 >                sj.SoftLeptPt=Smpt;
796 >                TVector3 mvec ( e.p4().Vect().X(), e.p4().Vect().Y(), e.p4().Vect().Z()  );
797 >                sj.SoftLeptptRel=  sj.p4.Perp(  mvec );
798 >                sj.SoftLeptRelCombIso = (e.trackIso() + e.ecalIso() + e.hcalIso() ) / Smpt ;
799 >                    //   sj.SoftLeptId95=e.electronID("eidVBTFCom95");
800 >                    //std::cout << "before ele id " << std::endl;      
801 >                    // std::cout << " e.e.sigmaIetaIeta " << e.sigmaIetaIeta() <<  std::endl;
802 >                    //std::cout << " e.isEB() " << e.isEB() << std::endl;
803 >                if (  
804 >                    ( fabs(Smeta)<2.5 && !( abs(Smeta)>1.4442 && abs(Smeta)<1.566))  &&
805 >                    
806 >                    (( abs(Smeta)>1.566  && (e.sigmaIetaIeta()<0.01) && ( e.deltaPhiSuperClusterTrackAtVtx()<0.8  && e.deltaPhiSuperClusterTrackAtVtx()>-0.8) && ( e.deltaEtaSuperClusterTrackAtVtx()<0.007 && e.deltaEtaSuperClusterTrackAtVtx()>-0.007 )  )
807 >                     || ( abs(Smeta)<1.4442  && (e.sigmaIetaIeta()<0.03) && ( e.deltaPhiSuperClusterTrackAtVtx()<0.7 && e.deltaPhiSuperClusterTrackAtVtx()>-0.7 ) && ( e.deltaEtaSuperClusterTrackAtVtx()<0.01 && e.deltaEtaSuperClusterTrackAtVtx()>-0.01 ) ))
808 >                    )
809 >                    sj.SoftLeptId95=1;
810 >            }
811 >        }
812 >        
813 >        
814 >        
815 >        
816 >        
817 >        hbbInfo->simpleJets2.push_back(sj);
818 >        
819      }
694
695
696    //
697    // add tVector
698    //
699    sj.tVector = getTvect(&(*jet_iter));
700    */
701    Particle::LorentzVector p4Jet = jet_iter->p4();
702
703    if(runOnMC_){
704
705      //BTV scale factors
706      fillScaleFactors(sj, btagSFs);
707
708      //PAT genJet matching
709      //genJet
710      const reco::GenJet *gJ = jet_iter->genJet();
711      //physical parton for mother info ONLY
712      if( (jet_iter->genParton()) ){
713        sj.bestMCid = jet_iter->genParton()->pdgId();
714        if( (jet_iter->genParton()->mother()) )
715          sj.bestMCmomid=jet_iter->genParton()->mother()->pdgId();
716      }
717      TLorentzVector gJp4;
718      if(gJ){
719        gJp4.SetPtEtaPhiE(gJ->pt(),gJ->eta(),gJ->phi(),gJ->energy());
720        sj.bestMCp4 = gJp4;
721        if(verbose_){
722          std::clog << "genJet matched Pt = " << gJp4.Pt() << std::endl;
723          std::clog << "genJet matched eta = " << gJp4.Eta() << std::endl;
724          std::clog << "genJet matched deltaR = " << gJp4.DeltaR(sj.p4) << std::endl;
725          std::clog << "genJet matched mother id = " << sj.bestMCmomid << std::endl;
726        }
727      }
728
729        // add flag if a mc lepton is find inside a cone around the jets...
730      iEvent.getByLabel("genParticles", genParticles);
731      
732      for(size_t i = 0; i < genParticles->size(); ++ i) {
733    
734      const GenParticle & p = (*genParticles)[i];
735      int id = 0;
736      p.pt()> lep_ptCutForBjets_ ? id= p.pdgId(): 0;
737  
738      //      std::cout<< "found a muon with pt " << mu->pt()   << std::endl;
739      if   ((abs(id)==13 || abs(id)==11) && deltaR(p.eta(), p.phi(), sj.p4.Eta(), sj.p4.Phi() ) <0.5)  sj.isSemiLeptMCtruth=1;
740      }
741
742    }  //isMC
743
744        // add flag if a reco lepton is find inside a cone around the jets...
745    edm::Handle<edm::View<reco::Candidate> > muonNoCutsHandle;
746    iEvent.getByLabel(muonoCutsLabel_,muonNoCutsHandle);
747    edm::View<reco::Candidate> muonsNoCuts = *muonNoCutsHandle;
820      
821      
822 <
823 <    for(edm::View<reco::Candidate>::const_iterator mu = muonsNoCuts.begin(); mu!=muonsNoCuts.end() && sj.isSemiLept!=1; ++mu){
824 <      //      std::cout<< "found a muon with pt " << mu->pt()   << std::endl;
825 <      const pat::Muon& m = static_cast <const pat::Muon&> (*mu);
826 <      float Smpt = m.pt();
827 <      float Smeta = m.eta();
828 <      float Smphi = m.phi();
829 <      
830 <      float SmJdR = deltaR(Smeta, Smphi, sj.p4.Eta(), sj.p4.Phi());
831 <      
832 <      if   ( Smpt> lep_ptCutForBjets_ && SmJdR <0.5)  {
833 <        sj.isSemiLept=1;
834 <        //isSemiLept(-99), isSemiLeptMCtruth(-99), SoftLeptPt(-99), SoftLeptdR(-99), SoftLeptptRel(-99), SoftLeptpdgId(-99), SoftLeptIdlooseMu(-99), SoftLeptId95(-99), SoftLeptRelCombIso(-99),  
835 <        sj.SoftLeptpdgId =13;
836 <        sj.SoftLeptdR= SmJdR;
837 <        sj.SoftLeptPt=Smpt;
838 <        TVector3 mvec ( m.p4().Vect().X(), m.p4().Vect().Y(), m.p4().Vect().Z()  );
839 <        sj.SoftLeptptRel=  sj.p4.Perp(  mvec );
840 <        sj.SoftLeptRelCombIso = (m.trackIso() + m.ecalIso() + m.hcalIso() ) / Smpt ;
841 <        sj.SoftLeptIdlooseMu=m.muonID("TMLastStationLoose");
842 <      }
822 >    /*   const GenJet* jet1Mc = bjet1.genJet();
823 >     const GenJet* jet2Mc = bjet2.genJet();
824 >     if(jet1Mc!=0){
825 >     MCbJet1MomId=jet1Mc->mother()->pdgId();
826 >     MCbJet1GMomId=jet1Mc->mother()->mother()->pdgId();
827 >     }
828 >    
829 >     if(jet2Mc!=0){
830 >     MCbJet2MomId=jet2Mc->mother()->pdgId();
831 >     MCbJet2GMomId=jet2Mc->mother()->mother()->pdgId();
832 >     }
833 >     */
834 >    
835 >        //////////////////////////////////////////////////////////////
836 >        //////////////////////////////////////////////////////////////
837 >        ////// Nhan's Jets  
838 >    
839 >        // C A 1 2   R A W   J E T
840 >    edm::Handle<edm::View<pat::Jet> > ca12jetHandle;
841 >    iEvent.getByLabel("selectedPatJetsCA12PF",ca12jetHandle);
842 >    edm::View<pat::Jet> ca12jets = *ca12jetHandle;
843 >    edm::Handle<edm::View<pat::Jet> > camdft12jetHandle;
844 >    iEvent.getByLabel("selectedPatJetsCA12MassDropFilteredPF",camdft12jetHandle);
845 >    edm::View<pat::Jet> camdft12jets = *camdft12jetHandle;
846 >
847 >    edm::Handle<edm::View<pat::Jet> > camdft12subjetHandle;
848 >    iEvent.getByLabel("selectedPatJetsCA12MassDropFilteredSubjetsPF",camdft12subjetHandle);
849 >    edm::View<pat::Jet> camdft12subjets = *camdft12subjetHandle;
850 >    edm::Handle<edm::View<pat::Jet> > caft12subjetHandle;
851 >    iEvent.getByLabel("selectedPatJetsCA12FilteredSubjetsPF",caft12subjetHandle);
852 >    edm::View<pat::Jet> caft12subjets = *caft12subjetHandle;
853 >    edm::Handle<edm::View<pat::Jet> > capr12subjetHandle;
854 >    iEvent.getByLabel("selectedPatJetsCA12PrunedSubjetsPF",capr12subjetHandle);
855 >    edm::View<pat::Jet> capr12subjets = *capr12subjetHandle;
856 >
857 >    int ctr = 0;
858 >        // C A 1 2   R A W   J E T S
859 > //    std::cout << "Fill CA12 Raw jet!" << std::endl;
860 >    for(edm::View<pat::Jet>::const_iterator jet_iter = ca12jets.begin(); jet_iter!=ca12jets.end(); ++jet_iter){
861 >            //        std::cout << "jet # " << ctr << std::endl;
862 >            //        std::cout << "size: " << jet_iter->getPFConstituents().size() << std::endl;
863 >        
864 >        std::vector<reco::PFCandidatePtr> constituents = jet_iter->getPFConstituents();        
865 >        VHbbEvent::RawJet rj;
866 >        rj.p4 = GENPTOLORP(jet_iter);
867 >        rj.Nconstituents = jet_iter->getPFConstituents().size();
868 >        
869 >        for (unsigned int iJC = 0; iJC<constituents.size(); ++iJC ){
870 >            
871 >            rj.constituents_px.push_back( jet_iter->getPFConstituents().at(iJC)->px() );
872 >            rj.constituents_py.push_back( jet_iter->getPFConstituents().at(iJC)->py() );
873 >            rj.constituents_pz.push_back( jet_iter->getPFConstituents().at(iJC)->pz() );
874 >            rj.constituents_e.push_back( jet_iter->getPFConstituents().at(iJC)->energy() );
875 >            rj.constituents_pdgId.push_back( jet_iter->getPFConstituents().at(iJC)->pdgId() );
876 >        }
877 >        
878 >        hbbInfo->CA12wConstits.push_back( rj );
879 >        ctr++;
880 >        
881      }
882 +        // C A 1 2   M A S S D R O P / F I L T E R E D   J E T S
883 + //    std::cout << "Fill CA12 MDFT jet!" << std::endl;    
884      
885 +    for(edm::View<pat::Jet>::const_iterator jet_iter = camdft12jets.begin(); jet_iter!=camdft12jets.end(); ++jet_iter){
886 +        
887 +        if(printJet) {std::cout << "Jet Pt: " << jet_iter->pt() << " E,M: " << jet_iter->p4().E() << " " << jet_iter->p4().M() << "\n";}
888 +        
889 +        reco::Jet::Constituents constituents = jet_iter->getJetConstituents();
890 + //        std::cout << "NsubJets: " << constituents.size() << "\n";
891 +        
892 +            //    if(printJet) {std::cout << "NsubJets: " << constituents.size() << "\n";}
893 +        VHbbEvent::HardJet hj;
894 +        hj.constituents=constituents.size();
895 +        hj.p4 =GENPTOLORP(jet_iter);
896 +        
897 +        for (unsigned int iJC(0); iJC<constituents.size(); ++iJC ){
898 +            Jet::Constituent icandJet = constituents[iJC];
899 +            
900 +            if(printJet) {std::cout << "subJet Pt: " << icandJet->pt() << " subJet E,M,eta,phi: " <<  icandJet->p4().E() << ","
901 +                << icandJet->p4().M() << "," << icandJet->eta() << "," << icandJet->phi() << "\n"; }
902 +            
903 +            
904 +            hj.subFourMomentum.push_back(GENPTOLORP(icandJet));
905 +            hj.etaSub.push_back(icandJet->eta());
906 +            hj.phiSub.push_back(icandJet->phi());
907 +            
908 +                //        std::cout << "subjet constituents: " << icandJet->getJetConstituents.size() << std::endl;  
909 +            
910 +        }
911 +        hbbInfo->CAmdft12.push_back(hj);
912 +    }
913      
914 <    edm::Handle<edm::View<reco::Candidate> > eleNoCutsHandle;
915 <      iEvent.getByLabel(elenoCutsLabel_,eleNoCutsHandle);
916 <      edm::View<reco::Candidate> elesNoCuts = *eleNoCutsHandle;
917 <
914 >        // C A 1 2   M A S S D R O P / F I L T E R E D   S U B J E T S
915 > //    std::cout << "Fill CA12 MDFT subjet!" << std::endl;    
916 >    for(edm::View<pat::Jet>::const_iterator subjet_iter = camdft12subjets.begin(); subjet_iter!=camdft12subjets.end(); ++subjet_iter){
917 >        VHbbEvent::SimpleJet sj;
918 >        fillSimpleJet(sj,subjet_iter);  
919 > //        setJecUnc(sj,jecUnc);
920 >        hbbInfo->CAmdft12_subjets.push_back(sj);
921 >    }    
922 >        // C A 1 2   F I L T E R E D   S U B J E T S
923 > //    std::cout << "Fill CA12 FT subjet!" << std::endl;    
924 >    for(edm::View<pat::Jet>::const_iterator subjet_iter = caft12subjets.begin(); subjet_iter!=caft12subjets.end(); ++subjet_iter){
925 >        VHbbEvent::SimpleJet sj;
926 >        fillSimpleJet(sj,subjet_iter);  
927 >            //        setJecUnc(sj,jecUnc);
928 >        hbbInfo->CAft12_subjets.push_back(sj);
929 >    }    
930 >        // C A 1 2   P R U N E D   S U B J E T S
931 > //    std::cout << "Fill CA12 PR subjet!" << std::endl;    
932 >    for(edm::View<pat::Jet>::const_iterator subjet_iter = capr12subjets.begin(); subjet_iter!=capr12subjets.end(); ++subjet_iter){
933 >        VHbbEvent::SimpleJet sj;
934 >        fillSimpleJet(sj,subjet_iter);  
935 >            //        setJecUnc(sj,jecUnc);
936 >        hbbInfo->CApr12_subjets.push_back(sj);
937 >    }    
938      
939  
940 <      for(edm::View<reco::Candidate>::const_iterator ele = elesNoCuts.begin(); ele!=elesNoCuts.end() && sj.isSemiLept!=1; ++ele){
940 >        // C A 1 2   R A W   J E T   G E N
941 >        // fill the GEN jet information too!
942 >    if(runOnMC_){
943 >        
944 >        
945 >        edm::Handle<reco::GenJetCollection> genJets ;
946 >        iEvent.getByLabel("ca12GenJetsNoNu",genJets);
947 >        
948 >        for (reco::GenJetCollection::const_iterator moIter = genJets->begin(); moIter != genJets->end(); ++moIter) {
949 >                //            std::cout << "jet eta: " << moIter->eta() << std::endl;
950 >            if (moIter->pt() > 80.){
951 >                VHbbEvent::RawJet rgj;
952 >                rgj.p4 = TLorentzVector( moIter->px(), moIter->py(), moIter->pz(), moIter->energy() );
953 >                rgj.Nconstituents = moIter->getGenConstituents().size();
954 >                
955 >                for (unsigned int iJC = 0; iJC < moIter->getGenConstituents().size(); iJC++){
956 >                    rgj.constituents_px.push_back( moIter->getGenConstituents().at(iJC)->px() );
957 >                    rgj.constituents_py.push_back( moIter->getGenConstituents().at(iJC)->py() );
958 >                    rgj.constituents_pz.push_back( moIter->getGenConstituents().at(iJC)->pz() );
959 >                    rgj.constituents_e.push_back( moIter->getGenConstituents().at(iJC)->energy() );
960 >                    rgj.constituents_pdgId.push_back( moIter->getGenConstituents().at(iJC)->pdgId() );
961 >                }
962 >                hbbInfo->CA12wConstitsGen.push_back( rgj );
963 >            }
964 >        }
965 >            //        edm::Handle<edm::View<reco::GenJet> > ca12genjetHandle;
966 >            //        iEvent.getByLabel("ca12GenJetsNoNu",ca12genjetHandle);
967 >            //        edm::View<pat::Jet> ca12genjets = *ca12genjetHandle;
968 >            //        ctr = 0;
969 >            //        for(edm::View<reco::GenJet>::const_iterator jet_iter = ca12genjets.begin(); jet_iter!=ca12genjets.end(); ++jet_iter){
970 >            //            std::cout << "jet # " << ctr << std::endl;
971 >            //            std::coit << "jet pt = " << jet_iter->pt() << std::endl;
972 >        
973 >            //            std::cout << "size: " << jet_iter->getPFConstituents().size() << std::endl;
974 >            //            
975 >            //            std::vector<reco::PFCandidatePtr> constituents = jet_iter->getPFConstituents();        
976 >            //            VHbbEvent::RawJet rj;
977 >            //            rj.p4 = GENPTOLORP(jet_iter);
978 >            //            rj.Nconstituents = jet_iter->getPFConstituents().size();
979 >            //            
980 >            //            for (unsigned int iJC = 0; iJC<constituents.size(); ++iJC ){
981 >            //                
982 >            //                rj.constituents_px.push_back( jet_iter->getPFConstituents().at(iJC)->px() );
983 >            //                rj.constituents_py.push_back( jet_iter->getPFConstituents().at(iJC)->py() );
984 >            //                rj.constituents_pz.push_back( jet_iter->getPFConstituents().at(iJC)->pz() );
985 >            //                rj.constituents_e.push_back( jet_iter->getPFConstituents().at(iJC)->energy() );
986 >            //                rj.constituents_pdgId.push_back( jet_iter->getPFConstituents().at(iJC)->pdgId() );
987 >            //            }
988 >            //            
989 >            //            hbbInfo->rawJetsGen.push_back( rj );
990 >        
991 >            //            ctr++;
992 >            //            
993 >            //        }
994 >        
995 >    }
996 >        //////////////////////////////////////////////////////////////
997 >        //////////////////////////////////////////////////////////////
998      
999 <        const pat::Electron& e = static_cast <const pat::Electron&> (*ele);
783 <        float Smpt = e.pt();
784 <        float Smeta = e.eta();
785 <        float Smphi = e.phi();
786 <      
787 <        float SmJdR = deltaR(Smeta, Smphi, sj.p4.Eta(), sj.p4.Phi());
788 <        if   ( Smpt> lep_ptCutForBjets_ && SmJdR <0.5)  {
789 <         sj.isSemiLept=1;
790 <         sj.SoftLeptpdgId =11;
791 <         sj.SoftLeptdR= SmJdR;
792 <         sj.SoftLeptPt=Smpt;
793 <         TVector3 mvec ( e.p4().Vect().X(), e.p4().Vect().Y(), e.p4().Vect().Z()  );
794 <         sj.SoftLeptptRel=  sj.p4.Perp(  mvec );
795 <         sj.SoftLeptRelCombIso = (e.trackIso() + e.ecalIso() + e.hcalIso() ) / Smpt ;
796 <         //      sj.SoftLeptId95=e.electronID("eidVBTFCom95");
797 <         //std::cout << "before ele id " << std::endl;      
798 <         // std::cout << " e.e.sigmaIetaIeta " << e.sigmaIetaIeta() <<  std::endl;
799 <         //std::cout << " e.isEB() " << e.isEB() << std::endl;
800 <         if (  
801 <             ( fabs(Smeta)<2.5 && !( abs(Smeta)>1.4442 && abs(Smeta)<1.566))  &&
802 <              
803 <             (( abs(Smeta)>1.566  && (e.sigmaIetaIeta()<0.01) && ( e.deltaPhiSuperClusterTrackAtVtx()<0.8  && e.deltaPhiSuperClusterTrackAtVtx()>-0.8) && ( e.deltaEtaSuperClusterTrackAtVtx()<0.007 && e.deltaEtaSuperClusterTrackAtVtx()>-0.007 )  )
804 <              || ( abs(Smeta)<1.4442  && (e.sigmaIetaIeta()<0.03) && ( e.deltaPhiSuperClusterTrackAtVtx()<0.7 && e.deltaPhiSuperClusterTrackAtVtx()>-0.7 ) && ( e.deltaEtaSuperClusterTrackAtVtx()<0.01 && e.deltaEtaSuperClusterTrackAtVtx()>-0.01 ) ))
805 <             )
806 <           sj.SoftLeptId95=1;
807 <       }
808 <     }
809 <  
810 <        
811 <
999 >        /////// hard jet
1000      
1001      
1002 <    hbbInfo->simpleJets2.push_back(sj);
1002 >    double matEta[1000*30],matPhi[1000*30];
1003 >    for(int i=0;i<1000;i++){for(int j=0;j<30;j++){matEta[i*j]=-99.;matPhi[i*j]=-99.;}}
1004      
1005 <  }
1006 <
1007 <
1008 <  /*   const GenJet* jet1Mc = bjet1.genJet();
1009 <       const GenJet* jet2Mc = bjet2.genJet();
1010 <       if(jet1Mc!=0){
1011 <       MCbJet1MomId=jet1Mc->mother()->pdgId();
1012 <       MCbJet1GMomId=jet1Mc->mother()->mother()->pdgId();
1013 <       }
1014 <
1015 <       if(jet2Mc!=0){
1016 <       MCbJet2MomId=jet2Mc->mother()->pdgId();
1017 <       MCbJet2GMomId=jet2Mc->mother()->mother()->pdgId();
1018 <       }
1019 <  */
1020 <  
1021 <
1022 <
1023 <  /////// hard jet
1024 <
1025 <  
1026 <  double matEta[1000*30],matPhi[1000*30];
1027 <  for(int i=0;i<1000;i++){for(int j=0;j<30;j++){matEta[i*j]=-99.;matPhi[i*j]=-99.;}}
1028 <
1029 <  for(edm::View<pat::Jet>::const_iterator jet_iter = jets.begin(); jet_iter!=jets.end(); ++jet_iter){
1005 >    for(edm::View<pat::Jet>::const_iterator jet_iter = jets.begin(); jet_iter!=jets.end(); ++jet_iter){
1006 >        
1007 >        if(printJet) {std::cout << "Jet Pt: " << jet_iter->pt() << " E,M: " << jet_iter->p4().E() << " " << jet_iter->p4().M() << "\n";}
1008 >        
1009 >        reco::Jet::Constituents constituents = jet_iter->getJetConstituents();
1010 >        std::cout << "NsubJets: " << constituents.size() << "\n";
1011 >            //    std::cout << "Nconstituents: " << jet_iter->getConstituents().size() << "\n";
1012 >        
1013 >            //    if(printJet) {std::cout << "NsubJets: " << constituents.size() << "\n";}
1014 >        VHbbEvent::HardJet hj;
1015 >        hj.constituents=constituents.size();
1016 >        hj.p4 =GENPTOLORP(jet_iter);
1017 >        
1018 >        for (unsigned int iJC(0); iJC<constituents.size(); ++iJC ){
1019 >            Jet::Constituent icandJet = constituents[iJC];
1020 >            
1021 >            if(printJet) {std::cout << "subJet Pt: " << icandJet->pt() << " subJet E,M,eta,phi: " <<  icandJet->p4().E() << ","
1022 >                << icandJet->p4().M() << "," << icandJet->eta() << "," << icandJet->phi() << "\n"; }
1023 >            
1024 >            
1025 >            hj.subFourMomentum.push_back(GENPTOLORP(icandJet));
1026 >            hj.etaSub.push_back(icandJet->eta());
1027 >            hj.phiSub.push_back(icandJet->phi());
1028 >            
1029 >                //        std::cout << "subjet constituents: " << icandJet->getJetConstituents.size() << std::endl;  
1030 >            
1031 >        }
1032 >        hbbInfo->hardJets.push_back(hj);
1033 >    }
1034      
1035 <    if(printJet) {std::cout << "Jet Pt: " << jet_iter->pt() << " E,M: " << jet_iter->p4().E() << " " << jet_iter->p4().M() << "\n";}
1035 >        //  HardJetSubEta2.SetMatrixArray(matEta);
1036 >        //  HardJetSubPhi2.SetMatrixArray(matPhi);
1037 >        //  TMatrixDRow a1(HardJetSubEta2,0);
1038 >        //  for(int i=0;i<30;i++){
1039 >        //   std::cout << "test: " << a1[i] << "\n";  
1040 >        //  }
1041      
1042 <    reco::Jet::Constituents constituents = jet_iter->getJetConstituents();
1042 >        // pat subJets with Btag
1043      
846    //    if(printJet) {std::cout << "NsubJets: " << constituents.size() << "\n";}
847    VHbbEvent::HardJet hj;
848    hj.constituents=constituents.size();
849    hj.p4 =GENPTOLORP(jet_iter);
1044      
1045 <    for (unsigned int iJC(0); iJC<constituents.size(); ++iJC ){
1046 <      Jet::Constituent icandJet = constituents[iJC];
1047 <
1048 <      if(printJet) {std::cout << "subJet Pt: " << icandJet->pt() << " subJet E,M,eta,phi: " <<  icandJet->p4().E() << ","
1049 <                              << icandJet->p4().M() << "," << icandJet->eta() << "," << icandJet->phi() << "\n"; }
1050 <
1051 <
1052 <      hj.subFourMomentum.push_back(GENPTOLORP(icandJet));
1053 <      hj.etaSub.push_back(icandJet->eta());
1054 <      hj.phiSub.push_back(icandJet->phi());
1055 <    
1045 >    for(edm::View<pat::Jet>::const_iterator subjet_iter = subjets.begin(); subjet_iter!=subjets.end(); ++subjet_iter){
1046 >        
1047 >        if(printJet) {std::cout << "SubJetTagged Pt: " << subjet_iter->pt() << " E,M,eta,phi,Btag: " << subjet_iter->p4().E()
1048 >            << "," << subjet_iter->p4().M() << "," << subjet_iter->eta() << "," << subjet_iter->phi()  
1049 >            << "," << subjet_iter->bDiscriminator("combinedSecondaryVertexBJetTags") << "\n";}
1050 >        
1051 >        VHbbEvent::SimpleJet sj;
1052 >            //    std::cout <<" sub jet "<<std::endl;
1053 >        fillSimpleJet(sj,subjet_iter);
1054 >            //  if(!runOnMC_)  
1055 >        setJecUnc(sj,jecUnc);
1056 >        /*    sj.flavour = subjet_iter->partonFlavour();
1057 >         sj.tVector = getTvect(&(*subjet_iter));
1058 >         sj.tche=subjet_iter->bDiscriminator("trackCountingHighEffBJetTags");
1059 >         sj.tchp=subjet_iter->bDiscriminator("trackCountingHighPurBJetTags");
1060 >         sj.jp=subjet_iter->bDiscriminator("jetProbabilityBJetTags");
1061 >         sj.jpb=subjet_iter->bDiscriminator("jetBProbabilityBJetTags");
1062 >         sj.ssvhe=subjet_iter->bDiscriminator("simpleSecondaryVertexHighEffBJetTags");
1063 >         sj.csv=subjet_iter->bDiscriminator("combinedSecondaryVertexBJetTags");
1064 >         sj.csvmva=subjet_iter->bDiscriminator("combinedSecondaryVertexMVABJetTags");
1065 >         sj.charge=subjet_iter->jetCharge();
1066 >         sj.ntracks=subjet_iter->associatedTracks().size();
1067 >         sj.p4=GENPTOLORP(subjet_iter);
1068 >         sj.p4=(getChargedTracksMomentum(&*(subjet_iter)));
1069 >        
1070 >         //
1071 >         // addtaginfo for csv
1072 >         //
1073 >        
1074 >         if (subjet_iter->hasTagInfo("SimpleSecondaryVertex")) {
1075 >        
1076 >         const reco::SecondaryVertexTagInfo * tf = subjet_iter->tagInfoSecondaryVertex();
1077 >         sj.vtxMass = tf->secondaryVertex(0).p4().mass();
1078 >         sj.vtxNTracks = tf->secondaryVertex(0).nTracks();
1079 >         Measurement1D m = tf->flightDistance(0);
1080 >         sj.vtx3dL = m.value();
1081 >         sj.vtx3deL = m.error();
1082 >         }
1083 >         */
1084 >        hbbInfo->subJets.push_back(sj);
1085 >        
1086      }
863    hbbInfo->hardJets.push_back(hj);
864  }
1087      
1088 <  //  HardJetSubEta2.SetMatrixArray(matEta);
1089 <  //  HardJetSubPhi2.SetMatrixArray(matPhi);
1090 <  //  TMatrixDRow a1(HardJetSubEta2,0);
1091 <  //  for(int i=0;i<30;i++){
1092 <  //   std::cout << "test: " << a1[i] << "\n";  
1093 <  //  }
1094 <
1095 <  // pat subJets with Btag
1096 <
1097 <
1098 <  for(edm::View<pat::Jet>::const_iterator subjet_iter = subjets.begin(); subjet_iter!=subjets.end(); ++subjet_iter){
1099 <
1100 <    if(printJet) {std::cout << "SubJetTagged Pt: " << subjet_iter->pt() << " E,M,eta,phi,Btag: " << subjet_iter->p4().E()
1101 <                            << "," << subjet_iter->p4().M() << "," << subjet_iter->eta() << "," << subjet_iter->phi()  
1102 <                            << "," << subjet_iter->bDiscriminator("combinedSecondaryVertexBJetTags") << "\n";}
1103 <
1104 <    VHbbEvent::SimpleJet sj;
1105 <    //    std::cout <<" sub jet "<<std::endl;
1106 <    fillSimpleJet(sj,subjet_iter);
1107 <    //  if(!runOnMC_)  
1108 <    setJecUnc(sj,jecUnc);
1109 <    /*    sj.flavour = subjet_iter->partonFlavour();
1110 <    sj.tVector = getTvect(&(*subjet_iter));
1111 <    sj.tche=subjet_iter->bDiscriminator("trackCountingHighEffBJetTags");
1112 <    sj.tchp=subjet_iter->bDiscriminator("trackCountingHighPurBJetTags");
1113 <    sj.jp=subjet_iter->bDiscriminator("jetProbabilityBJetTags");
1114 <    sj.jpb=subjet_iter->bDiscriminator("jetBProbabilityBJetTags");
1115 <    sj.ssvhe=subjet_iter->bDiscriminator("simpleSecondaryVertexHighEffBJetTags");
1116 <    sj.csv=subjet_iter->bDiscriminator("combinedSecondaryVertexBJetTags");
1117 <    sj.csvmva=subjet_iter->bDiscriminator("combinedSecondaryVertexMVABJetTags");
1118 <    sj.charge=subjet_iter->jetCharge();
1119 <    sj.ntracks=subjet_iter->associatedTracks().size();
1120 <    sj.p4=GENPTOLORP(subjet_iter);
1121 <    sj.p4=(getChargedTracksMomentum(&*(subjet_iter)));
1122 <
1123 <    //
1124 <    // addtaginfo for csv
1125 <    //
1126 <
1127 <    if (subjet_iter->hasTagInfo("SimpleSecondaryVertex")) {
906 <
907 <      const reco::SecondaryVertexTagInfo * tf = subjet_iter->tagInfoSecondaryVertex();
908 <      sj.vtxMass = tf->secondaryVertex(0).p4().mass();
909 <      sj.vtxNTracks = tf->secondaryVertex(0).nTracks();
910 <      Measurement1D m = tf->flightDistance(0);
911 <      sj.vtx3dL = m.value();
912 <      sj.vtx3deL = m.error();
1088 >    for(edm::View<pat::Jet>::const_iterator filterjet_iter = filterjets.begin(); filterjet_iter!=filterjets.end(); ++filterjet_iter){
1089 >        
1090 >        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";}
1091 >        
1092 >        VHbbEvent::SimpleJet fj;
1093 >            //    std::cout <<" sub jet "<<std::endl;
1094 >        fillSimpleJet(fj,filterjet_iter);
1095 >            //  if(!runOnMC_)  
1096 >        setJecUnc(fj,jecUnc);
1097 >        
1098 >        if(runOnMC_){
1099 >            
1100 >                //BTV scale factors
1101 >                // fillScaleFactors(sj, btagSFs);
1102 >            
1103 >                //PAT genJet matching
1104 >                //genJet
1105 >            const reco::GenJet *gJ = filterjet_iter->genJet();
1106 >                //physical parton for mother info ONLY
1107 >            if( (filterjet_iter->genParton()) ){
1108 >                fj.bestMCid = filterjet_iter->genParton()->pdgId();
1109 >                if( (filterjet_iter->genParton()->mother()) )
1110 >                    fj.bestMCmomid=filterjet_iter->genParton()->mother()->pdgId();
1111 >            }
1112 >            TLorentzVector gJp4;
1113 >            if(gJ){
1114 >                gJp4.SetPtEtaPhiE(gJ->pt(),gJ->eta(),gJ->phi(),gJ->energy());
1115 >                fj.bestMCp4 = gJp4;
1116 >                if(verbose_){
1117 >                    std::clog << "filter genJet matched Pt = " << gJp4.Pt() << std::endl;
1118 >                    std::clog << "filter genJet matched eta = " << gJp4.Eta() << std::endl;
1119 >                    std::clog << "filter genJet matched deltaR = " << gJp4.DeltaR(fj.p4) << std::endl;
1120 >                    std::clog << "filter genJet matched mother id = " << fj.bestMCmomid << std::endl;
1121 >                }
1122 >            }
1123 >        }
1124 >        
1125 >        hbbInfo->filterJets.push_back(fj);
1126 >        
1127 >        
1128      }
1129 <    */
1130 <    hbbInfo->subJets.push_back(sj);
1131 <
1132 <  }
1133 <
1134 <  for(edm::View<pat::Jet>::const_iterator filterjet_iter = filterjets.begin(); filterjet_iter!=filterjets.end(); ++filterjet_iter){
1135 <
1136 <    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";}
1137 <
1138 <    VHbbEvent::SimpleJet fj;
1139 <    //    std::cout <<" sub jet "<<std::endl;
1140 <    fillSimpleJet(fj,filterjet_iter);
1141 <    //  if(!runOnMC_)  
1142 <    setJecUnc(fj,jecUnc);
1143 <
1144 <    hbbInfo->filterJets.push_back(fj);
1145 <    
1146 <
1147 <  }
1148 <
1149 <  //
1150 <  // add charged met
1151 <  //
1152 <  
1153 <  edm::Handle<edm::View<reco::MET> > metChargedHandle;
1154 <  iEvent.getByLabel("pfMETNoPUCharge",metChargedHandle);
940 <  edm::View<reco::MET> metsCh = *metChargedHandle;
941 <  if(metsCh.size()){
942 <    hbbInfo->metCh.sumEt=(metsCh[0]).sumEt();
943 <    hbbInfo->metCh.metSig=metSignificance(& (metsCh[0]));
944 <    hbbInfo->metCh.eLong=(metsCh[0]).e_longitudinal();
945 <    hbbInfo->metCh.p4=GENPTOLOR((metsCh[0]));
946 <    if (verbose_)     std::cout <<" METCharged "<<     hbbInfo->metCh.metSig <<" " <<     hbbInfo->metCh.sumEt<<std::endl;
947 <  }
948 <
949 <  // type 1 corr met
950 <  edm::Handle<edm::View<reco::MET> > pfmetType1corrHandle;
951 <  iEvent.getByLabel("patType1CorrectedPFMet",pfmetType1corrHandle);
952 <  edm::View<reco::MET> pfmetsType1corr = *pfmetType1corrHandle;
953 <  if(pfmetsType1corr.size()){
954 <    hbbInfo->pfmetType1corr.sumEt=(pfmetsType1corr[0]).sumEt();
955 <    hbbInfo->pfmetType1corr.metSig=metSignificance(& (pfmetsType1corr[0]));
956 <    hbbInfo->pfmetType1corr.eLong=(pfmetsType1corr[0]).e_longitudinal();
957 <    hbbInfo->pfmetType1corr.p4=GENPTOLOR((pfmetsType1corr[0]));
958 <    if (verbose_)     std::cout <<" type 1 corrected pfMET "<<     hbbInfo->pfmetType1corr.metSig <<" " <<     hbbInfo->pfmetType1corr.sumEt<<std::endl;
959 <  }
960 <
961 <
962 <  // type 1 + 2 corr met
963 <  edm::Handle<edm::View<reco::MET> > pfmetType1p2corrHandle;
964 <  iEvent.getByLabel("patType1p2CorrectedPFMet",pfmetType1p2corrHandle);
965 <  edm::View<reco::MET> pfmetsType1p2corr = *pfmetType1p2corrHandle;
966 <  if(pfmetsType1p2corr.size()){
967 <    hbbInfo->pfmetType1p2corr.sumEt=(pfmetsType1p2corr[0]).sumEt();
968 <    hbbInfo->pfmetType1p2corr.metSig=metSignificance(& (pfmetsType1p2corr[0]));
969 <    hbbInfo->pfmetType1p2corr.eLong=(pfmetsType1p2corr[0]).e_longitudinal();
970 <    hbbInfo->pfmetType1p2corr.p4=GENPTOLOR((pfmetsType1p2corr[0]));
971 <    if (verbose_)     std::cout <<" type 1 +2 corrected pfMET "<<     hbbInfo->pfmetType1p2corr.metSig <<" " <<     hbbInfo->pfmetType1p2corr.sumEt<<std::endl;
972 <  }
973 <
974 <  // type 1 corr met NoPU
975 < /*  edm::Handle<edm::View<reco::MET> > pfmetNoPUType1corrHandle;
976 <  iEvent.getByLabel("patType1CorrectedPFMetNoPU",pfmetNoPUType1corrHandle);
977 <  edm::View<reco::MET> pfmetsNoPUType1corr = *pfmetNoPUType1corrHandle;
978 <  if(pfmetsNoPUType1corr.size()){
979 <    hbbInfo->pfmetNoPUType1corr.sumEt=(pfmetsNoPUType1corr[0]).sumEt();
980 <    hbbInfo->pfmetNoPUType1corr.metSig=metSignificance(& (pfmetsNoPUType1corr[0]));
981 <    hbbInfo->pfmetNoPUType1corr.eLong=(pfmetsNoPUType1corr[0]).e_longitudinal();
982 <    hbbInfo->pfmetNoPUType1corr.p4=GENPTOLOR((pfmetsNoPUType1corr[0]));
983 <    if (verbose_)     std::cout <<" type 1 corrected pfMET NoPU"<<     hbbInfo->pfmetNoPUType1corr.metSig <<" " <<     hbbInfo->pfmetNoPUType1corr.sumEt<<std::endl;
984 <  }
985 <
986 <
987 <  // type 1 + 2 corr met
988 <  edm::Handle<edm::View<reco::MET> > pfmetNoPUType1p2corrHandle;
989 <  iEvent.getByLabel("patType1p2CorrectedPFMetNoPU",pfmetNoPUType1p2corrHandle);
990 <  edm::View<reco::MET> pfmetsNoPUType1p2corr = *pfmetNoPUType1p2corrHandle;
991 <  if(pfmetsNoPUType1p2corr.size()){
992 <    hbbInfo->pfmetNoPUType1p2corr.sumEt=(pfmetsNoPUType1p2corr[0]).sumEt();
993 <    hbbInfo->pfmetNoPUType1p2corr.metSig=metSignificance(& (pfmetsNoPUType1p2corr[0]));
994 <    hbbInfo->pfmetNoPUType1p2corr.eLong=(pfmetsNoPUType1p2corr[0]).e_longitudinal();
995 <    hbbInfo->pfmetNoPUType1p2corr.p4=GENPTOLOR((pfmetsNoPUType1p2corr[0]));
996 <    if (verbose_)     std::cout <<" type 1 +2 corrected pfMET "<<     hbbInfo->pfmetNoPUType1p2corr.metSig <<" " <<     hbbInfo->pfmetNoPUType1p2corr.sumEt<<std::endl;
997 <  }
998 <
999 < */
1000 <
1001 <  /*
1002 <  // MET uncertainty vector
1003 <    vector<pat::MET>                 "patType1CorrectedPFMet"    ""                "VH"      
1004 <    vector<pat::MET>                 "patType1CorrectedPFMetElectronEnDown"   ""                "VH"      
1005 <    vector<pat::MET>                 "patType1CorrectedPFMetElectronEnUp"   ""                "VH"      
1006 <    vector<pat::MET>                 "patType1CorrectedPFMetJetEnDown"   ""                "VH"      
1007 <    vector<pat::MET>                 "patType1CorrectedPFMetJetEnUp"   ""                "VH"      
1008 <    vector<pat::MET>                 "patType1CorrectedPFMetJetResDown"   ""                "VH"      
1009 <    vector<pat::MET>                 "patType1CorrectedPFMetJetResUp"   ""                "VH"      
1010 <    vector<pat::MET>                 "patType1CorrectedPFMetMuonEnDown"   ""                "VH"      
1011 <    vector<pat::MET>                 "patType1CorrectedPFMetMuonEnUp"   ""                "VH"      
1012 <    vector<pat::MET>                 "patType1CorrectedPFMetNoPU"   ""                "VH"      
1013 <    vector<pat::MET>                 "patType1CorrectedPFMetTauEnDown"   ""                "VH"      
1014 <    vector<pat::MET>                 "patType1CorrectedPFMetTauEnUp"   ""                "VH"      
1015 <    vector<pat::MET>                 "patType1CorrectedPFMetUnclusteredEnDown"   ""                "VH"      
1016 <    vector<pat::MET>                 "patType1CorrectedPFMetUnclusteredEnUp"   ""                "VH"      
1017 <    vector<pat::MET>                 "patType1p2CorrectedPFMet"   ""                "VH"      
1018 <    vector<pat::MET>                 "patType1p2CorrectedPFMetElectronEnDown"   ""                "VH"      
1019 <    vector<pat::MET>                 "patType1p2CorrectedPFMetElectronEnUp"   ""                "VH"      
1020 <    vector<pat::MET>                 "patType1p2CorrectedPFMetJetEnDown"   ""                "VH"      
1021 <    vector<pat::MET>                 "patType1p2CorrectedPFMetJetEnUp"   ""                "VH"      
1022 <    vector<pat::MET>                 "patType1p2CorrectedPFMetJetResDown"   ""                "VH"      
1023 <    vector<pat::MET>                 "patType1p2CorrectedPFMetJetResUp"   ""                "VH"      
1024 <    vector<pat::MET>                 "patType1p2CorrectedPFMetMuonEnDown"   ""                "VH"      
1025 <    vector<pat::MET>                 "patType1p2CorrectedPFMetMuonEnUp"   ""                "VH"      
1026 <    vector<pat::MET>                 "patType1p2CorrectedPFMetNoPU"   ""                "VH"      
1027 <    vector<pat::MET>                 "patType1p2CorrectedPFMetTauEnDown"   ""                "VH"      
1028 <    vector<pat::MET>                 "patType1p2CorrectedPFMetTauEnUp"   ""                "VH"      
1029 <    vector<pat::MET>                 "patType1p2CorrectedPFMetUnclusteredEnDown"   ""                "VH"      
1030 <    vector<pat::MET>                 "patType1p2CorrectedPFMetUnclusteredEnUp"   ""                "VH"      
1031 <      */
1032 <
1033 <    VHbbEvent::METInfo metunc;
1034 <  edm::Handle<edm::View<reco::MET> > patType1CorrectedPFMetElectronEnDownHandle;
1035 <  iEvent.getByLabel("patType1CorrectedPFMetElectronEnDown",patType1CorrectedPFMetElectronEnDownHandle);
1036 <  edm::View<reco::MET> patType1CorrectedPFMetsElectronEnDown = *patType1CorrectedPFMetElectronEnDownHandle;
1037 <  if(patType1CorrectedPFMetsElectronEnDown.size()){
1038 <    metunc.sumEt =(patType1CorrectedPFMetsElectronEnDown[0]).sumEt();
1039 <    metunc.metSig=metSignificance(& (patType1CorrectedPFMetsElectronEnDown[0]));
1040 <    metunc.eLong=(patType1CorrectedPFMetsElectronEnDown[0]).e_longitudinal();
1041 <    metunc.p4=GENPTOLOR((patType1CorrectedPFMetsElectronEnDown[0]));
1042 <    hbbInfo->metUncInfo.push_back(metunc);
1043 <  }
1044 <
1045 <  edm::Handle<edm::View<reco::MET> > patType1CorrectedPFMetElectronEnUpHandle;
1046 <  iEvent.getByLabel("patType1CorrectedPFMetElectronEnUp",patType1CorrectedPFMetElectronEnUpHandle);
1047 <  edm::View<reco::MET> patType1CorrectedPFMetsElectronEnUp = *patType1CorrectedPFMetElectronEnUpHandle;
1048 <  if(patType1CorrectedPFMetsElectronEnUp.size()){
1049 <    metunc.sumEt =(patType1CorrectedPFMetsElectronEnUp[0]).sumEt();
1050 <    metunc.metSig=metSignificance(& (patType1CorrectedPFMetsElectronEnUp[0]));
1051 <    metunc.eLong=(patType1CorrectedPFMetsElectronEnUp[0]).e_longitudinal();
1052 <    metunc.p4=GENPTOLOR((patType1CorrectedPFMetsElectronEnUp[0]));
1053 <    hbbInfo->metUncInfo.push_back(metunc);
1054 <  }
1055 <
1056 <
1057 <
1058 <  edm::Handle<edm::View<reco::MET> > patType1CorrectedPFMetMuonEnDownHandle;
1059 <  iEvent.getByLabel("patType1CorrectedPFMetMuonEnDown",patType1CorrectedPFMetMuonEnDownHandle);
1060 <  edm::View<reco::MET> patType1CorrectedPFMetsMuonEnDown = *patType1CorrectedPFMetMuonEnDownHandle;
1061 <  if(patType1CorrectedPFMetsMuonEnDown.size()){
1062 <    metunc.sumEt =(patType1CorrectedPFMetsMuonEnDown[0]).sumEt();
1063 <    metunc.metSig=metSignificance(& (patType1CorrectedPFMetsMuonEnDown[0]));
1064 <    metunc.eLong=(patType1CorrectedPFMetsMuonEnDown[0]).e_longitudinal();
1065 <    metunc.p4=GENPTOLOR((patType1CorrectedPFMetsMuonEnDown[0]));
1066 <    hbbInfo->metUncInfo.push_back(metunc);
1067 <  }
1068 <
1069 <  edm::Handle<edm::View<reco::MET> > patType1CorrectedPFMetMuonEnUpHandle;
1070 <  iEvent.getByLabel("patType1CorrectedPFMetMuonEnUp",patType1CorrectedPFMetMuonEnUpHandle);
1071 <  edm::View<reco::MET> patType1CorrectedPFMetsMuonEnUp = *patType1CorrectedPFMetMuonEnUpHandle;
1072 <  if(patType1CorrectedPFMetsMuonEnUp.size()){
1073 <    metunc.sumEt =(patType1CorrectedPFMetsMuonEnUp[0]).sumEt();
1074 <    metunc.metSig=metSignificance(& (patType1CorrectedPFMetsMuonEnUp[0]));
1075 <    metunc.eLong=(patType1CorrectedPFMetsMuonEnUp[0]).e_longitudinal();
1076 <    metunc.p4=GENPTOLOR((patType1CorrectedPFMetsMuonEnUp[0]));
1077 <    hbbInfo->metUncInfo.push_back(metunc);
1078 <  }
1079 <
1080 <
1081 <
1082 <  edm::Handle<edm::View<reco::MET> > patType1CorrectedPFMetTauEnDownHandle;
1083 <  iEvent.getByLabel("patType1CorrectedPFMetTauEnDown",patType1CorrectedPFMetTauEnDownHandle);
1084 <  edm::View<reco::MET> patType1CorrectedPFMetsTauEnDown = *patType1CorrectedPFMetTauEnDownHandle;
1085 <  if(patType1CorrectedPFMetsTauEnDown.size()){
1086 <    metunc.sumEt =(patType1CorrectedPFMetsTauEnDown[0]).sumEt();
1087 <    metunc.metSig=metSignificance(& (patType1CorrectedPFMetsTauEnDown[0]));
1088 <    metunc.eLong=(patType1CorrectedPFMetsTauEnDown[0]).e_longitudinal();
1089 <    metunc.p4=GENPTOLOR((patType1CorrectedPFMetsTauEnDown[0]));
1090 <    hbbInfo->metUncInfo.push_back(metunc);
1091 <  }
1092 <
1093 <  edm::Handle<edm::View<reco::MET> > patType1CorrectedPFMetTauEnUpHandle;
1094 <  iEvent.getByLabel("patType1CorrectedPFMetTauEnUp",patType1CorrectedPFMetTauEnUpHandle);
1095 <  edm::View<reco::MET> patType1CorrectedPFMetsTauEnUp = *patType1CorrectedPFMetTauEnUpHandle;
1096 <  if(patType1CorrectedPFMetsTauEnUp.size()){
1097 <    metunc.sumEt =(patType1CorrectedPFMetsTauEnUp[0]).sumEt();
1098 <    metunc.metSig=metSignificance(& (patType1CorrectedPFMetsTauEnUp[0]));
1099 <    metunc.eLong=(patType1CorrectedPFMetsTauEnUp[0]).e_longitudinal();
1100 <    metunc.p4=GENPTOLOR((patType1CorrectedPFMetsTauEnUp[0]));
1101 <    hbbInfo->metUncInfo.push_back(metunc);
1102 <  }
1103 <
1104 <
1105 <  edm::Handle<edm::View<reco::MET> > patType1CorrectedPFMetJetEnDownHandle;
1106 <  iEvent.getByLabel("patType1CorrectedPFMetJetEnDown",patType1CorrectedPFMetJetEnDownHandle);
1107 <  edm::View<reco::MET> patType1CorrectedPFMetsJetEnDown = *patType1CorrectedPFMetJetEnDownHandle;
1108 <  if(patType1CorrectedPFMetsJetEnDown.size()){
1109 <    metunc.sumEt =(patType1CorrectedPFMetsJetEnDown[0]).sumEt();
1110 <    metunc.metSig=metSignificance(& (patType1CorrectedPFMetsJetEnDown[0]));
1111 <    metunc.eLong=(patType1CorrectedPFMetsJetEnDown[0]).e_longitudinal();
1112 <    metunc.p4=GENPTOLOR((patType1CorrectedPFMetsJetEnDown[0]));
1113 <    hbbInfo->metUncInfo.push_back(metunc);
1114 <  }
1115 <
1116 <  edm::Handle<edm::View<reco::MET> > patType1CorrectedPFMetJetEnUpHandle;
1117 <  iEvent.getByLabel("patType1CorrectedPFMetJetEnUp",patType1CorrectedPFMetJetEnUpHandle);
1118 <  edm::View<reco::MET> patType1CorrectedPFMetsJetEnUp = *patType1CorrectedPFMetJetEnUpHandle;
1119 <  if(patType1CorrectedPFMetsJetEnUp.size()){
1120 <    metunc.sumEt =(patType1CorrectedPFMetsJetEnUp[0]).sumEt();
1121 <    metunc.metSig=metSignificance(& (patType1CorrectedPFMetsJetEnUp[0]));
1122 <    metunc.eLong=(patType1CorrectedPFMetsJetEnUp[0]).e_longitudinal();
1123 <    metunc.p4=GENPTOLOR((patType1CorrectedPFMetsJetEnUp[0]));
1124 <    hbbInfo->metUncInfo.push_back(metunc);
1125 <  }
1126 <
1127 <
1128 <  edm::Handle<edm::View<reco::MET> > patType1CorrectedPFMetJetResDownHandle;
1129 <  iEvent.getByLabel("patType1CorrectedPFMetJetResDown",patType1CorrectedPFMetJetResDownHandle);
1130 <  edm::View<reco::MET> patType1CorrectedPFMetsJetResDown = *patType1CorrectedPFMetJetResDownHandle;
1131 <  if(patType1CorrectedPFMetsJetResDown.size()){
1132 <    metunc.sumEt =(patType1CorrectedPFMetsJetResDown[0]).sumEt();
1133 <    metunc.metSig=metSignificance(& (patType1CorrectedPFMetsJetResDown[0]));
1134 <    metunc.eLong=(patType1CorrectedPFMetsJetResDown[0]).e_longitudinal();
1135 <    metunc.p4=GENPTOLOR((patType1CorrectedPFMetsJetResDown[0]));
1136 <    hbbInfo->metUncInfo.push_back(metunc);
1137 <  }
1138 <
1139 <  edm::Handle<edm::View<reco::MET> > patType1CorrectedPFMetJetResUpHandle;
1140 <  iEvent.getByLabel("patType1CorrectedPFMetJetResUp",patType1CorrectedPFMetJetResUpHandle);
1141 <  edm::View<reco::MET> patType1CorrectedPFMetsJetResUp = *patType1CorrectedPFMetJetResUpHandle;
1142 <  if(patType1CorrectedPFMetsJetResUp.size()){
1143 <    metunc.sumEt =(patType1CorrectedPFMetsJetResUp[0]).sumEt();
1144 <    metunc.metSig=metSignificance(& (patType1CorrectedPFMetsJetResUp[0]));
1145 <    metunc.eLong=(patType1CorrectedPFMetsJetResUp[0]).e_longitudinal();
1146 <    metunc.p4=GENPTOLOR((patType1CorrectedPFMetsJetResUp[0]));
1147 <    hbbInfo->metUncInfo.push_back(metunc);
1148 <  }
1149 <
1150 <
1151 <  edm::Handle<edm::View<reco::MET> > patType1CorrectedPFMetUnclusteredEnDownHandle;
1152 <  iEvent.getByLabel("patType1CorrectedPFMetUnclusteredEnDown",patType1CorrectedPFMetUnclusteredEnDownHandle);
1153 <  edm::View<reco::MET> patType1CorrectedPFMetsUnclusteredEnDown = *patType1CorrectedPFMetUnclusteredEnDownHandle;
1154 <  if(patType1CorrectedPFMetsUnclusteredEnDown.size()){
1155 <    metunc.sumEt =(patType1CorrectedPFMetsUnclusteredEnDown[0]).sumEt();
1156 <    metunc.metSig=metSignificance(& (patType1CorrectedPFMetsUnclusteredEnDown[0]));
1157 <    metunc.eLong=(patType1CorrectedPFMetsUnclusteredEnDown[0]).e_longitudinal();
1158 <    metunc.p4=GENPTOLOR((patType1CorrectedPFMetsUnclusteredEnDown[0]));
1159 <    hbbInfo->metUncInfo.push_back(metunc);
1160 <  }
1161 <
1162 <  edm::Handle<edm::View<reco::MET> > patType1CorrectedPFMetUnclusteredEnUpHandle;
1163 <  iEvent.getByLabel("patType1CorrectedPFMetUnclusteredEnUp",patType1CorrectedPFMetUnclusteredEnUpHandle);
1164 <  edm::View<reco::MET> patType1CorrectedPFMetsUnclusteredEnUp = *patType1CorrectedPFMetUnclusteredEnUpHandle;
1165 <  if(patType1CorrectedPFMetsUnclusteredEnUp.size()){
1166 <    metunc.sumEt =(patType1CorrectedPFMetsUnclusteredEnUp[0]).sumEt();
1167 <    metunc.metSig=metSignificance(& (patType1CorrectedPFMetsUnclusteredEnUp[0]));
1168 <    metunc.eLong=(patType1CorrectedPFMetsUnclusteredEnUp[0]).e_longitudinal();
1169 <    metunc.p4=GENPTOLOR((patType1CorrectedPFMetsUnclusteredEnUp[0]));
1170 <    hbbInfo->metUncInfo.push_back(metunc);
1171 <  }
1172 <
1173 <
1174 <  edm::Handle<edm::View<reco::MET> > patType1p2CorrectedPFMetElectronEnDownHandle;
1175 <  iEvent.getByLabel("patType1p2CorrectedPFMetElectronEnDown",patType1p2CorrectedPFMetElectronEnDownHandle);
1176 <  edm::View<reco::MET> patType1p2CorrectedPFMetsElectronEnDown = *patType1p2CorrectedPFMetElectronEnDownHandle;
1177 <  if(patType1p2CorrectedPFMetsElectronEnDown.size()){
1178 <    metunc.sumEt =(patType1p2CorrectedPFMetsElectronEnDown[0]).sumEt();
1179 <    metunc.metSig=metSignificance(& (patType1p2CorrectedPFMetsElectronEnDown[0]));
1180 <    metunc.eLong=(patType1p2CorrectedPFMetsElectronEnDown[0]).e_longitudinal();
1181 <    metunc.p4=GENPTOLOR((patType1p2CorrectedPFMetsElectronEnDown[0]));
1182 <    hbbInfo->metUncInfo.push_back(metunc);
1183 <  }
1184 <
1185 <  edm::Handle<edm::View<reco::MET> > patType1p2CorrectedPFMetElectronEnUpHandle;
1186 <  iEvent.getByLabel("patType1p2CorrectedPFMetElectronEnUp",patType1p2CorrectedPFMetElectronEnUpHandle);
1187 <  edm::View<reco::MET> patType1p2CorrectedPFMetsElectronEnUp = *patType1p2CorrectedPFMetElectronEnUpHandle;
1188 <  if(patType1p2CorrectedPFMetsElectronEnUp.size()){
1189 <    metunc.sumEt =(patType1p2CorrectedPFMetsElectronEnUp[0]).sumEt();
1190 <    metunc.metSig=metSignificance(& (patType1p2CorrectedPFMetsElectronEnUp[0]));
1191 <    metunc.eLong=(patType1p2CorrectedPFMetsElectronEnUp[0]).e_longitudinal();
1192 <    metunc.p4=GENPTOLOR((patType1p2CorrectedPFMetsElectronEnUp[0]));
1193 <    hbbInfo->metUncInfo.push_back(metunc);
1194 <  }
1195 <
1196 <
1197 <
1198 <  edm::Handle<edm::View<reco::MET> > patType1p2CorrectedPFMetMuonEnDownHandle;
1199 <  iEvent.getByLabel("patType1p2CorrectedPFMetMuonEnDown",patType1p2CorrectedPFMetMuonEnDownHandle);
1200 <  edm::View<reco::MET> patType1p2CorrectedPFMetsMuonEnDown = *patType1p2CorrectedPFMetMuonEnDownHandle;
1201 <  if(patType1p2CorrectedPFMetsMuonEnDown.size()){
1202 <    metunc.sumEt =(patType1p2CorrectedPFMetsMuonEnDown[0]).sumEt();
1203 <    metunc.metSig=metSignificance(& (patType1p2CorrectedPFMetsMuonEnDown[0]));
1204 <    metunc.eLong=(patType1p2CorrectedPFMetsMuonEnDown[0]).e_longitudinal();
1205 <    metunc.p4=GENPTOLOR((patType1p2CorrectedPFMetsMuonEnDown[0]));
1206 <    hbbInfo->metUncInfo.push_back(metunc);
1207 <  }
1208 <
1209 <  edm::Handle<edm::View<reco::MET> > patType1p2CorrectedPFMetMuonEnUpHandle;
1210 <  iEvent.getByLabel("patType1p2CorrectedPFMetMuonEnUp",patType1p2CorrectedPFMetMuonEnUpHandle);
1211 <  edm::View<reco::MET> patType1p2CorrectedPFMetsMuonEnUp = *patType1p2CorrectedPFMetMuonEnUpHandle;
1212 <  if(patType1p2CorrectedPFMetsMuonEnUp.size()){
1213 <    metunc.sumEt =(patType1p2CorrectedPFMetsMuonEnUp[0]).sumEt();
1214 <    metunc.metSig=metSignificance(& (patType1p2CorrectedPFMetsMuonEnUp[0]));
1215 <    metunc.eLong=(patType1p2CorrectedPFMetsMuonEnUp[0]).e_longitudinal();
1216 <    metunc.p4=GENPTOLOR((patType1p2CorrectedPFMetsMuonEnUp[0]));
1217 <    hbbInfo->metUncInfo.push_back(metunc);
1218 <  }
1219 <
1220 <
1221 <
1222 <  edm::Handle<edm::View<reco::MET> > patType1p2CorrectedPFMetTauEnDownHandle;
1223 <  iEvent.getByLabel("patType1p2CorrectedPFMetTauEnDown",patType1p2CorrectedPFMetTauEnDownHandle);
1224 <  edm::View<reco::MET> patType1p2CorrectedPFMetsTauEnDown = *patType1p2CorrectedPFMetTauEnDownHandle;
1225 <  if(patType1p2CorrectedPFMetsTauEnDown.size()){
1226 <    metunc.sumEt =(patType1p2CorrectedPFMetsTauEnDown[0]).sumEt();
1227 <    metunc.metSig=metSignificance(& (patType1p2CorrectedPFMetsTauEnDown[0]));
1228 <    metunc.eLong=(patType1p2CorrectedPFMetsTauEnDown[0]).e_longitudinal();
1229 <    metunc.p4=GENPTOLOR((patType1p2CorrectedPFMetsTauEnDown[0]));
1230 <    hbbInfo->metUncInfo.push_back(metunc);
1231 <  }
1232 <
1233 <  edm::Handle<edm::View<reco::MET> > patType1p2CorrectedPFMetTauEnUpHandle;
1234 <  iEvent.getByLabel("patType1p2CorrectedPFMetTauEnUp",patType1p2CorrectedPFMetTauEnUpHandle);
1235 <  edm::View<reco::MET> patType1p2CorrectedPFMetsTauEnUp = *patType1p2CorrectedPFMetTauEnUpHandle;
1236 <  if(patType1p2CorrectedPFMetsTauEnUp.size()){
1237 <    metunc.sumEt =(patType1p2CorrectedPFMetsTauEnUp[0]).sumEt();
1238 <    metunc.metSig=metSignificance(& (patType1p2CorrectedPFMetsTauEnUp[0]));
1239 <    metunc.eLong=(patType1p2CorrectedPFMetsTauEnUp[0]).e_longitudinal();
1240 <    metunc.p4=GENPTOLOR((patType1p2CorrectedPFMetsTauEnUp[0]));
1241 <    hbbInfo->metUncInfo.push_back(metunc);
1242 <  }
1243 <
1244 <
1245 <  edm::Handle<edm::View<reco::MET> > patType1p2CorrectedPFMetJetEnDownHandle;
1246 <  iEvent.getByLabel("patType1p2CorrectedPFMetJetEnDown",patType1p2CorrectedPFMetJetEnDownHandle);
1247 <  edm::View<reco::MET> patType1p2CorrectedPFMetsJetEnDown = *patType1p2CorrectedPFMetJetEnDownHandle;
1248 <  if(patType1p2CorrectedPFMetsJetEnDown.size()){
1249 <    metunc.sumEt =(patType1p2CorrectedPFMetsJetEnDown[0]).sumEt();
1250 <    metunc.metSig=metSignificance(& (patType1p2CorrectedPFMetsJetEnDown[0]));
1251 <    metunc.eLong=(patType1p2CorrectedPFMetsJetEnDown[0]).e_longitudinal();
1252 <    metunc.p4=GENPTOLOR((patType1p2CorrectedPFMetsJetEnDown[0]));
1253 <    hbbInfo->metUncInfo.push_back(metunc);
1254 <  }
1255 <
1256 <  edm::Handle<edm::View<reco::MET> > patType1p2CorrectedPFMetJetEnUpHandle;
1257 <  iEvent.getByLabel("patType1p2CorrectedPFMetJetEnUp",patType1p2CorrectedPFMetJetEnUpHandle);
1258 <  edm::View<reco::MET> patType1p2CorrectedPFMetsJetEnUp = *patType1p2CorrectedPFMetJetEnUpHandle;
1259 <  if(patType1p2CorrectedPFMetsJetEnUp.size()){
1260 <    metunc.sumEt =(patType1p2CorrectedPFMetsJetEnUp[0]).sumEt();
1261 <    metunc.metSig=metSignificance(& (patType1p2CorrectedPFMetsJetEnUp[0]));
1262 <    metunc.eLong=(patType1p2CorrectedPFMetsJetEnUp[0]).e_longitudinal();
1263 <    metunc.p4=GENPTOLOR((patType1p2CorrectedPFMetsJetEnUp[0]));
1264 <    hbbInfo->metUncInfo.push_back(metunc);
1265 <  }
1266 <
1267 <
1268 <  edm::Handle<edm::View<reco::MET> > patType1p2CorrectedPFMetJetResDownHandle;
1269 <  iEvent.getByLabel("patType1p2CorrectedPFMetJetResDown",patType1p2CorrectedPFMetJetResDownHandle);
1270 <  edm::View<reco::MET> patType1p2CorrectedPFMetsJetResDown = *patType1p2CorrectedPFMetJetResDownHandle;
1271 <  if(patType1p2CorrectedPFMetsJetResDown.size()){
1272 <    metunc.sumEt =(patType1p2CorrectedPFMetsJetResDown[0]).sumEt();
1273 <    metunc.metSig=metSignificance(& (patType1p2CorrectedPFMetsJetResDown[0]));
1274 <    metunc.eLong=(patType1p2CorrectedPFMetsJetResDown[0]).e_longitudinal();
1275 <    metunc.p4=GENPTOLOR((patType1p2CorrectedPFMetsJetResDown[0]));
1276 <    hbbInfo->metUncInfo.push_back(metunc);
1277 <  }
1278 <
1279 <  edm::Handle<edm::View<reco::MET> > patType1p2CorrectedPFMetJetResUpHandle;
1280 <  iEvent.getByLabel("patType1p2CorrectedPFMetJetResUp",patType1p2CorrectedPFMetJetResUpHandle);
1281 <  edm::View<reco::MET> patType1p2CorrectedPFMetsJetResUp = *patType1p2CorrectedPFMetJetResUpHandle;
1282 <  if(patType1p2CorrectedPFMetsJetResUp.size()){
1283 <    metunc.sumEt =(patType1p2CorrectedPFMetsJetResUp[0]).sumEt();
1284 <    metunc.metSig=metSignificance(& (patType1p2CorrectedPFMetsJetResUp[0]));
1285 <    metunc.eLong=(patType1p2CorrectedPFMetsJetResUp[0]).e_longitudinal();
1286 <    metunc.p4=GENPTOLOR((patType1p2CorrectedPFMetsJetResUp[0]));
1287 <    hbbInfo->metUncInfo.push_back(metunc);
1288 <  }
1289 <
1290 <
1291 <  edm::Handle<edm::View<reco::MET> > patType1p2CorrectedPFMetUnclusteredEnDownHandle;
1292 <  iEvent.getByLabel("patType1p2CorrectedPFMetUnclusteredEnDown",patType1p2CorrectedPFMetUnclusteredEnDownHandle);
1293 <  edm::View<reco::MET> patType1p2CorrectedPFMetsUnclusteredEnDown = *patType1p2CorrectedPFMetUnclusteredEnDownHandle;
1294 <  if(patType1p2CorrectedPFMetsUnclusteredEnDown.size()){
1295 <    metunc.sumEt =(patType1p2CorrectedPFMetsUnclusteredEnDown[0]).sumEt();
1296 <    metunc.metSig=metSignificance(& (patType1p2CorrectedPFMetsUnclusteredEnDown[0]));
1297 <    metunc.eLong=(patType1p2CorrectedPFMetsUnclusteredEnDown[0]).e_longitudinal();
1298 <    metunc.p4=GENPTOLOR((patType1p2CorrectedPFMetsUnclusteredEnDown[0]));
1299 <    hbbInfo->metUncInfo.push_back(metunc);
1300 <  }
1301 <
1302 <  edm::Handle<edm::View<reco::MET> > patType1p2CorrectedPFMetUnclusteredEnUpHandle;
1303 <  iEvent.getByLabel("patType1p2CorrectedPFMetUnclusteredEnUp",patType1p2CorrectedPFMetUnclusteredEnUpHandle);
1304 <  edm::View<reco::MET> patType1p2CorrectedPFMetsUnclusteredEnUp = *patType1p2CorrectedPFMetUnclusteredEnUpHandle;
1305 <  if(patType1p2CorrectedPFMetsUnclusteredEnUp.size()){
1306 <    metunc.sumEt =(patType1p2CorrectedPFMetsUnclusteredEnUp[0]).sumEt();
1307 <    metunc.metSig=metSignificance(& (patType1p2CorrectedPFMetsUnclusteredEnUp[0]));
1308 <    metunc.eLong=(patType1p2CorrectedPFMetsUnclusteredEnUp[0]).e_longitudinal();
1309 <    metunc.p4=GENPTOLOR((patType1p2CorrectedPFMetsUnclusteredEnUp[0]));
1310 <    hbbInfo->metUncInfo.push_back(metunc);
1311 <  }
1312 <
1313 <
1314 <
1315 <  //
1316 <  // met is calomet
1317 <  //
1318 <
1319 <  edm::Handle<edm::View<pat::MET> > metTCHandle;
1320 <  iEvent.getByLabel("patMETsTC",metTCHandle);
1321 <  edm::View<pat::MET> metsTC = *metTCHandle;
1322 <  if(metsTC.size()){
1323 <    hbbInfo->tcmet.sumEt=(metsTC[0]).sumEt();
1324 <    hbbInfo->tcmet.metSig=metSignificance(&(metsTC[0]));
1325 <    hbbInfo->tcmet.eLong=(metsTC[0]).e_longitudinal();
1326 <    hbbInfo->tcmet.p4=GENPTOLOR((metsTC[0]));
1327 <    if (verbose_)     std::cout <<" METTC "<<     hbbInfo->tcmet.metSig <<" " <<     hbbInfo->tcmet.sumEt<<std::endl;
1328 <  }
1329 <  
1330 <  edm::Handle<edm::View<reco::MET> > pfMETNoPUHandle;
1331 <  iEvent.getByLabel("pfMETNoPU",pfMETNoPUHandle);
1332 <  edm::View<reco::MET> metspfMETNoPU = *pfMETNoPUHandle;
1333 <  if(metspfMETNoPU.size()){
1334 <    hbbInfo->metNoPU.sumEt=(metspfMETNoPU[0]).sumEt();
1335 <    hbbInfo->metNoPU.metSig=metSignificance(&(metspfMETNoPU[0]));                
1336 <    hbbInfo->metNoPU.eLong=(metspfMETNoPU[0]).e_longitudinal();
1337 <    hbbInfo->metNoPU.p4=GENPTOLOR((metspfMETNoPU[0]));
1338 <    if (verbose_)     std::cout <<" pfMETNoPU "<<     hbbInfo->metNoPU.metSig <<" " <<     hbbInfo->metNoPU.sumEt<<std::endl;
1339 <  }
1340 <
1341 <  edm::Handle<edm::View<reco::MET> > mHTHandle;
1342 <  iEvent.getByLabel("patMETsHT",mHTHandle);
1343 <  edm::View<reco::MET> metsHT = *mHTHandle;
1344 <  if(metsHT.size()){
1345 <    hbbInfo->mht.sumEt=(metsHT[0]).sumEt();
1346 <    hbbInfo->mht.metSig=metSignificance(&(metsHT[0]));
1347 <    hbbInfo->mht.eLong=(metsHT[0]).e_longitudinal();
1348 <    hbbInfo->mht.p4=GENPTOLOR((metsHT[0]));
1349 <    if (verbose_)     std::cout <<" METHT "<<     hbbInfo->mht.metSig <<" " <<     hbbInfo->mht.sumEt<<std::endl;
1350 <  }
1351 <  
1352 <  edm::Handle<edm::View<reco::MET> > metHandle;
1353 <  iEvent.getByLabel(metLabel_,metHandle);
1354 <  edm::View<reco::MET> mets = *metHandle;
1355 <  
1356 <  if(mets.size()){
1357 <    hbbInfo->calomet.sumEt=(mets[0]).sumEt();
1358 <    hbbInfo->calomet.metSig=metSignificance(&(mets[0]));
1359 <    hbbInfo->calomet.eLong=(mets[0]).e_longitudinal();
1360 <    hbbInfo->calomet.p4=GENPTOLOR((mets[0]));
1361 <    if (verbose_)     std::cout <<" METCALO "<<     hbbInfo->calomet.metSig <<" " <<     hbbInfo->calomet.sumEt<<std::endl;
1362 <  }
1363 <  
1364 <  edm::Handle<edm::View<pat::MET> > metPFHandle;
1365 <  iEvent.getByLabel("patMETsPFlow",metPFHandle);
1366 <  edm::View<pat::MET> metsPF = *metPFHandle;
1367 <  
1368 <  if(metsPF.size()){
1369 <    hbbInfo->pfmet.sumEt=(metsPF[0]).sumEt();
1370 <    hbbInfo->pfmet.metSig=metSignificance(&(metsPF[0]));
1371 <    hbbInfo->pfmet.eLong=(metsPF[0]).e_longitudinal();
1372 <    hbbInfo->pfmet.p4=GENPTOLOR((metsPF[0]));
1373 <    if (verbose_)     std::cout <<" METPF "<<     hbbInfo->pfmet.metSig <<" " <<     hbbInfo->pfmet.sumEt<<std::endl;
1374 <  }
1375 <  
1376 <  
1377 <  if(verbose_){
1378 <    std::cout << "METs: calomet "<<mets.size()<<" tcmet"<<metsTC.size()<<" pfmet "<<metsPF.size()<<" MHT" <<metsHT.size()<<std::endl;  
1379 <  }
1380 <
1381 <  if(verbose_)
1382 <    std::cout << " INPUT MUONS "<<muons.size()<<std::endl;
1383 <
1384 <  for(edm::View<pat::Muon>::const_iterator mu = muons.begin(); mu!=muons.end(); ++mu){
1385 <    VHbbEvent::MuonInfo mf;
1386 <    mf.p4 =GENPTOLORP( mu);
1387 <    mf.charge=mu->charge();
1388 <    mf.tIso=mu->trackIso();
1389 <    mf.eIso=mu->ecalIso();
1390 <    mf.hIso=mu->hcalIso();
1391 <    mf.pfChaIso=mu->chargedHadronIso();
1392 <    mf.pfChaPUIso=mu->puChargedHadronIso(); //userIso(5);
1393 <    mf.pfPhoIso=mu->photonIso();
1394 <    mf.pfNeuIso=mu->neutralHadronIso();
1395 <    Geom::Phi<double> deltaphi(mu->phi()-atan2(mf.p4.Px(), mf.p4.Py()));
1396 <    double acop = deltaphi.value();
1397 <    mf.acop=acop;
1398 <
1399 <    mf.emEnergy = mu->calEnergy().em;
1400 <    mf.hadEnergy = mu->calEnergy().had;
1401 <
1402 <    mf.nMatches = mu->numberOfMatches();
1403 <
1404 <    mf.ipDb=mu->dB();
1405 <    mf.ipErrDb=mu->edB();
1406 <    mf.cat=0;
1407 <
1408 <    if(mu->isGlobalMuon()) mf.cat|=1;
1409 <    if(mu->isTrackerMuon()) mf.cat|=2;
1410 <    if(mu->isStandAloneMuon()) mf.cat|=4;
1411 <    TrackRef trkMu1Ref = mu->get<TrackRef>();
1412 <    if(trkMu1Ref.isNonnull()){
1413 <      const Track* MuTrk1 = mu->get<TrackRef>().get();
1414 <      mf.zPVPt=MuTrk1->dz(RecVtxFirst.position());
1415 <      mf.zPVProb=MuTrk1->dz(RecVtx.position());
1416 <      mf.nHits=MuTrk1->numberOfValidHits();
1417 <      mf.chi2=MuTrk1->normalizedChi2();
1418 <      TrackRef iTrack1 = mu->innerTrack();
1419 <      const reco::HitPattern& p1 = iTrack1->hitPattern();
1420 <      mf.nPixelHits=p1.pixelLayersWithMeasurement();
1421 <
1422 <      mf.nValidTracker = p1.numberOfValidTrackerHits();
1423 <      mf.nValidPixel = p1.numberOfValidPixelHits();
1424 <      mf.nValidLayers = p1.trackerLayersWithMeasurement();
1425 <      mf.isPF = mu->isPFMuon();
1426 <
1427 <
1428 <
1429 <   }
1430 <    if(mu->isGlobalMuon()){
1431 <      TrackRef gTrack = mu->globalTrack();
1432 <      const reco::HitPattern& q = gTrack->hitPattern();
1433 <      mf.globChi2=gTrack.get()->normalizedChi2();
1434 <      mf.globNHits=q.numberOfValidMuonHits();
1435 <      mf.validMuStations = q.muonStationsWithValidHits();
1436 <    }else{
1437 <      mf.globChi2=-99;
1438 <      mf.globNHits=-99;
1439 <    }
1440 <
1441 <    //Muon trigger matching
1442 <    for (int itrig = 0; itrig != ntrigs; ++itrig){
1443 <      std::string trigName=triggerNames_.triggerName(itrig);
1444 <      if( (mu->triggerObjectMatchesByPath(trigName,false,false).size() != 0) ){
1445 <        mf.hltMatchedBits.push_back(itrig);
1446 <        if(verbose_){
1447 <          std::clog << "Trigger Matching box" << std::endl;
1448 <          std::clog << "+++++++++++++++++++++++++++++++++++++++++++++++++" << std::endl;
1449 <          std::clog << "Matching parameters are defined in the cfg" << std::endl;
1450 <          std::clog << "Trigger bit = " << itrig << std::endl;
1451 <          std::clog << "Trigger name = " << trigName << std::endl;
1452 <          std::clog << "Trigger object matched collection size = " << mu->triggerObjectMatchesByPath(trigName,false,false).size() << std::endl;
1453 <          std::clog << "Pat Muon pt = " << mf.p4.Pt() << " HLT object matched = " << mu->triggerObjectMatch(0)->p4().Pt() << std::endl;
1454 <          std::clog << "+++++++++++++++++++++++++++++++++++++++++++++++++" << std::endl;
1455 <        }
1456 <      }
1129 >    
1130 >        //
1131 >        // add charged met
1132 >        //
1133 >    
1134 >    edm::Handle<edm::View<reco::MET> > metChargedHandle;
1135 >    iEvent.getByLabel("pfMETNoPUCharge",metChargedHandle);
1136 >    edm::View<reco::MET> metsCh = *metChargedHandle;
1137 >    if(metsCh.size()){
1138 >        hbbInfo->metCh.sumEt=(metsCh[0]).sumEt();
1139 >        hbbInfo->metCh.metSig=metSignificance(& (metsCh[0]));
1140 >        hbbInfo->metCh.eLong=(metsCh[0]).e_longitudinal();
1141 >        hbbInfo->metCh.p4=GENPTOLOR((metsCh[0]));
1142 >        if (verbose_)     std::cout <<" METCharged "<<     hbbInfo->metCh.metSig <<" " <<     hbbInfo->metCh.sumEt<<std::endl;
1143 >    }
1144 >    
1145 >        // type 1 corr met
1146 >    edm::Handle<edm::View<reco::MET> > pfmetType1corrHandle;
1147 >    iEvent.getByLabel("patType1CorrectedPFMet",pfmetType1corrHandle);
1148 >    edm::View<reco::MET> pfmetsType1corr = *pfmetType1corrHandle;
1149 >    if(pfmetsType1corr.size()){
1150 >        hbbInfo->pfmetType1corr.sumEt=(pfmetsType1corr[0]).sumEt();
1151 >        hbbInfo->pfmetType1corr.metSig=metSignificance(& (pfmetsType1corr[0]));
1152 >        hbbInfo->pfmetType1corr.eLong=(pfmetsType1corr[0]).e_longitudinal();
1153 >        hbbInfo->pfmetType1corr.p4=GENPTOLOR((pfmetsType1corr[0]));
1154 >        if (verbose_)     std::cout <<" type 1 corrected pfMET "<<     hbbInfo->pfmetType1corr.metSig <<" " <<     hbbInfo->pfmetType1corr.sumEt<<std::endl;
1155      }
1156 <    //
1157 <
1158 <    // add stamuon
1159 <
1160 <    //    if (mu->isStandAloneMuon()) {
1161 <    //      reco::TrackRef sta = mu->standAloneMuon();
1162 <    //      
1163 <    //    }
1164 <
1165 <
1166 <    //     int muInfo[12];
1167 <    //     fillMuBlock(mu,  muInfo);
1168 <    if(runOnMC_){
1169 <      const GenParticle* muMc = mu->genLepton();
1170 <      if(muMc!=0){
1171 <        mf.mcId=muMc->pdgId();
1172 <        mf.mcFourMomentum=GENPTOLORP(muMc);
1173 <        if(muMc->mother()!=0) mf.mcMomId=muMc->mother()->pdgId();
1174 <        if(muMc->mother()!=0 && muMc->mother()->mother()!=0) mf.mcgMomId=muMc->mother()->mother()->pdgId();
1175 <      } }
1176 <    hbbInfo->muInfo.push_back(mf);
1177 <  }
1178 <
1179 < if(verbose_)
1482 <    std::cout << " INPUT electrons "<<electrons.size()<<std::endl;
1483 <  InputTag  reducedEBRecHitCollection(string("reducedEcalRecHitsEB"));
1484 <  InputTag  reducedEERecHitCollection(string("reducedEcalRecHitsEE"));
1485 <  EcalClusterLazyTools lazyTools(iEvent, iSetup, reducedEBRecHitCollection, reducedEERecHitCollection);
1486 <  edm::ESHandle<TransientTrackBuilder> builder;
1487 <  iSetup.get<TransientTrackRecord>().get("TransientTrackBuilder", builder);
1488 <  const TransientTrackBuilder & transientTrackBuilder= *(builder.product());
1489 <
1490 <  for(edm::View<pat::Electron>::const_iterator elec = electrons.begin(); elec!=electrons.end(); ++elec){
1491 <    VHbbEvent::ElectronInfo ef;
1492 <    ef.p4=GENPTOLORP(elec);
1493 <    ef.scEta =elec->superCluster()->eta();
1494 <    ef.scPhi =elec->superCluster()->phi();
1495 <    //    if(ElecEta[eleccont]!=0) ElecEt[eleccont]=elec->superCluster()->energy()/cosh(elec->superCluster()->eta());
1496 <    ef.charge=elec->charge();
1497 <    ef.tIso=elec->trackIso();
1498 <    ef.eIso=elec->ecalIso();
1499 <    ef.hIso=elec->hcalIso();
1500 <    ef.pfChaIso=elec->chargedHadronIso();
1501 <    ef.pfChaPUIso=elec->puChargedHadronIso();//userIso(5);
1502 <    ef.pfPhoIso=elec->photonIso();
1503 <    ef.pfPhoIsoDoubleCounted=0;
1504 <
1505 < /* Check if there are photons sharing the super cluster*/
1506 <    for(size_t k=0;k<photonsForIso.size();k++) {
1507 <       if(deltaR(elec->eta(),elec->phi(),photonsForIso[k].eta(),photonsForIso[k].phi()) < 0.05 && abs(photonsForIso[k].pt()-elec->pt())/(photonsForIso[k].pt()+elec->pt()) < 0.05 ) {
1508 <          std::cout << "Double counting of supercluster!" << std::endl;
1509 <          ef.pfPhoIsoDoubleCounted+=photonsForIso[k].pt();
1156 >    
1157 >    
1158 >        // type 1 + 2 corr met
1159 >    edm::Handle<edm::View<reco::MET> > pfmetType1p2corrHandle;
1160 >    iEvent.getByLabel("patType1p2CorrectedPFMet",pfmetType1p2corrHandle);
1161 >    edm::View<reco::MET> pfmetsType1p2corr = *pfmetType1p2corrHandle;
1162 >    if(pfmetsType1p2corr.size()){
1163 >        hbbInfo->pfmetType1p2corr.sumEt=(pfmetsType1p2corr[0]).sumEt();
1164 >        hbbInfo->pfmetType1p2corr.metSig=metSignificance(& (pfmetsType1p2corr[0]));
1165 >        hbbInfo->pfmetType1p2corr.eLong=(pfmetsType1p2corr[0]).e_longitudinal();
1166 >        hbbInfo->pfmetType1p2corr.p4=GENPTOLOR((pfmetsType1p2corr[0]));
1167 >        if (verbose_)     std::cout <<" type 1 +2 corrected pfMET "<<     hbbInfo->pfmetType1p2corr.metSig <<" " <<     hbbInfo->pfmetType1p2corr.sumEt<<std::endl;
1168 >    }
1169 >    
1170 >        // type 1 corr met NoPU
1171 >    /*  edm::Handle<edm::View<reco::MET> > pfmetNoPUType1corrHandle;
1172 >     iEvent.getByLabel("patType1CorrectedPFMetNoPU",pfmetNoPUType1corrHandle);
1173 >     edm::View<reco::MET> pfmetsNoPUType1corr = *pfmetNoPUType1corrHandle;
1174 >     if(pfmetsNoPUType1corr.size()){
1175 >     hbbInfo->pfmetNoPUType1corr.sumEt=(pfmetsNoPUType1corr[0]).sumEt();
1176 >     hbbInfo->pfmetNoPUType1corr.metSig=metSignificance(& (pfmetsNoPUType1corr[0]));
1177 >     hbbInfo->pfmetNoPUType1corr.eLong=(pfmetsNoPUType1corr[0]).e_longitudinal();
1178 >     hbbInfo->pfmetNoPUType1corr.p4=GENPTOLOR((pfmetsNoPUType1corr[0]));
1179 >     if (verbose_)     std::cout <<" type 1 corrected pfMET NoPU"<<     hbbInfo->pfmetNoPUType1corr.metSig <<" " <<     hbbInfo->pfmetNoPUType1corr.sumEt<<std::endl;
1180       }
1181 <    }
1182 <    ef.pfNeuIso=elec->neutralHadronIso();
1183 <
1184 <    //
1185 <    // ip info
1186 <    //
1187 <
1188 <    ef.ipDb=elec->dB();
1189 <    ef.ipErrDb=elec->edB();
1181 >    
1182 >    
1183 >     // type 1 + 2 corr met
1184 >     edm::Handle<edm::View<reco::MET> > pfmetNoPUType1p2corrHandle;
1185 >     iEvent.getByLabel("patType1p2CorrectedPFMetNoPU",pfmetNoPUType1p2corrHandle);
1186 >     edm::View<reco::MET> pfmetsNoPUType1p2corr = *pfmetNoPUType1p2corrHandle;
1187 >     if(pfmetsNoPUType1p2corr.size()){
1188 >     hbbInfo->pfmetNoPUType1p2corr.sumEt=(pfmetsNoPUType1p2corr[0]).sumEt();
1189 >     hbbInfo->pfmetNoPUType1p2corr.metSig=metSignificance(& (pfmetsNoPUType1p2corr[0]));
1190 >     hbbInfo->pfmetNoPUType1p2corr.eLong=(pfmetsNoPUType1p2corr[0]).e_longitudinal();
1191 >     hbbInfo->pfmetNoPUType1p2corr.p4=GENPTOLOR((pfmetsNoPUType1p2corr[0]));
1192 >     if (verbose_)     std::cout <<" type 1 +2 corrected pfMET "<<     hbbInfo->pfmetNoPUType1p2corr.metSig <<" " <<     hbbInfo->pfmetNoPUType1p2corr.sumEt<<std::endl;
1193 >     }
1194 >    
1195 >     */
1196      
1197 <
1198 <
1199 <    Geom::Phi<double> deltaphi(elec->superCluster()->phi()-atan2(hbbInfo->pfmet.p4.Py(),hbbInfo->pfmet.p4.Px()));
1200 <    ef.acop = deltaphi.value();
1201 <    //
1202 <    ef.sihih = elec->sigmaIetaIeta();
1203 <    ef.Dphi = elec->deltaPhiSuperClusterTrackAtVtx();
1204 <    ef.Deta = elec->deltaEtaSuperClusterTrackAtVtx();
1205 <    ef.HoE = elec->hadronicOverEm();
1206 <    ef.convDist = elec->convDist();
1207 <    ef.convDcot = elec->convDcot();
1208 <    if(elec->gsfTrack().isNonnull())
1209 <    {
1210 <     ef.innerHits = elec->gsfTrack()->trackerExpectedHitsInner().numberOfHits();  
1211 <    }
1212 <    ef.isEB = elec->isEB();
1213 <    ef.isEE = elec->isEE();
1214 < /* 2012 ELEID*/
1215 <
1216 <  const pat::Electron & ele = *elec;
1217 <  bool validKF= false;
1218 <  reco::TrackRef myTrackRef = ele.closestCtfTrackRef();
1219 <  validKF = (myTrackRef.isAvailable());
1220 <  validKF = (myTrackRef.isNonnull());  
1221 <
1222 <  // Pure tracking variables
1223 <  ef.fMVAVar_fbrem           =  ele.fbrem();
1224 <  ef.fMVAVar_kfchi2          =  (validKF) ? myTrackRef->normalizedChi2() : 0 ;
1225 <  ef.fMVAVar_kfhits          =  (validKF) ? myTrackRef->hitPattern().trackerLayersWithMeasurement() : -1. ;
1226 <  //  fMVAVar_kfhitsall          =  (validKF) ? myTrackRef->numberOfValidHits() : -1. ;   //  save also this in your ntuple as possible alternative
1227 <  ef.fMVAVar_gsfchi2         =  ele.gsfTrack()->normalizedChi2();  
1228 <
1229 <  
1230 <  // Geometrical matchings
1231 <  ef.fMVAVar_deta            =  ele.deltaEtaSuperClusterTrackAtVtx();
1232 <  ef.fMVAVar_dphi            =  ele.deltaPhiSuperClusterTrackAtVtx();
1233 <  ef.fMVAVar_detacalo        =  ele.deltaEtaSeedClusterTrackAtCalo();
1234 <  // fMVAVar_dphicalo        =  ele.deltaPhiSeedClusterTrackAtCalo();   //  save also this in your ntuple
1235 <
1236 <
1237 <  // Pure ECAL -> shower shapes
1238 <  ef.fMVAVar_see             =  ele.sigmaIetaIeta();    //EleSigmaIEtaIEta
1239 <  std::vector<float> vCov = lazyTools.localCovariances(*(ele.superCluster()->seed())) ;
1240 <  if (!isnan(vCov[2])) ef.fMVAVar_spp = sqrt (vCov[2]);   //EleSigmaIPhiIPhi
1241 <  else ef.fMVAVar_spp = 0.;    
1242 <  // fMVAVar_sigmaIEtaIPhi = vCov[1];  //  save also this in your ntuple
1243 <
1244 <  ef.fMVAVar_etawidth        =  ele.superCluster()->etaWidth();
1245 <  ef.fMVAVar_phiwidth        =  ele.superCluster()->phiWidth();
1246 <  ef.fMVAVar_e1x5e5x5        =  (ele.e5x5()) !=0. ? 1.-(ele.e1x5()/ele.e5x5()) : -1. ;
1247 <  ef.fMVAVar_R9              =  lazyTools.e3x3(*(ele.superCluster()->seed())) / ele.superCluster()->rawEnergy();
1248 <  //fMVAVar_nbrems          =  fabs(ele.numberOfBrems());    //  save also this in your ntuple
1249 <
1250 <  // Energy matching
1251 <  ef.fMVAVar_HoE             =  ele.hadronicOverEm();
1252 <  ef.fMVAVar_EoP             =  ele.eSuperClusterOverP();
1253 <  // fMVAVar_IoEmIoP         =  (1.0/(ele.superCluster()->energy())) - (1.0 / ele.p());  // in the future to be changed with ele.gsfTrack()->p()
1254 <  ef.fMVAVar_IoEmIoP         =  (1.0/ele.ecalEnergy()) - (1.0 / ele.p());  // in the future to be changed with ele.gsfTrack()->p()   // 24/04/2012 changed to correctly access the   corrected supercluster energy from CMSSW_52X
1255 <
1256 <  ef.fMVAVar_eleEoPout       =  ele.eEleClusterOverPout();
1257 <  ef.fMVAVar_PreShowerOverRaw=  ele.superCluster()->preshowerEnergy() / ele.superCluster()->rawEnergy();
1258 <  // fMVAVar_EoPout          =  ele.eSeedClusterOverPout();     //  save also this in your ntuple
1259 <
1260 <
1261 <  // Spectators
1262 <  ef.fMVAVar_eta             =  ele.superCluster()->eta();        
1263 <  ef.fMVAVar_pt              =  ele.pt();                          
1264 <
1265 <  //additional for cut based
1266 <  ef.dxy = elec->gsfTrack()->dxy(vertex.position());
1267 <  ef.dz  = elec->gsfTrack()->dz(vertex.position());
1268 <
1269 <
1270 <    //d0
1271 <    if (ele.gsfTrack().isNonnull()) {
1272 <      ef.fMVAVar_d0 = (-1.0)*ele.gsfTrack()->dxy(vertex.position());
1273 <    } else if (ele.closestCtfTrackRef().isNonnull()) {
1274 <      ef.fMVAVar_d0 = (-1.0)*ele.closestCtfTrackRef()->dxy(vertex.position());
1275 <    } else {
1276 <      ef.fMVAVar_d0 = -9999.0;
1277 <    
1278 <    //default values for IP3D
1279 <    ef.fMVAVar_ip3d = -999.0;
1280 <    // fMVAVar_ip3dSig = 0.0;
1281 <    if (ele.gsfTrack().isNonnull()) {
1282 <      const double gsfsign   = ( (-ele.gsfTrack()->dxy(vertex.position()))   >=0 ) ? 1. : -1.;
1283 <      
1284 <      const reco::TransientTrack &tt = transientTrackBuilder.build(ele.gsfTrack());
1285 <      const std::pair<bool,Measurement1D> &ip3dpv =  IPTools::absoluteImpactParameter3D(tt,vertex);
1286 <      if (ip3dpv.first) {
1287 <        double ip3d = gsfsign*ip3dpv.second.value();
1288 <        //double ip3derr = ip3dpv.second.error();  
1289 <        ef.fMVAVar_ip3d = ip3d;
1290 <        // fMVAVar_ip3dSig = ip3d/ip3derr;
1291 <      }
1197 >    /*
1198 >     // MET uncertainty vector
1199 >     vector<pat::MET>                 "patType1CorrectedPFMet"    ""                "VH"      
1200 >     vector<pat::MET>                 "patType1CorrectedPFMetElectronEnDown"   ""                "VH"      
1201 >     vector<pat::MET>                 "patType1CorrectedPFMetElectronEnUp"   ""                "VH"      
1202 >     vector<pat::MET>                 "patType1CorrectedPFMetJetEnDown"   ""                "VH"      
1203 >     vector<pat::MET>                 "patType1CorrectedPFMetJetEnUp"   ""                "VH"      
1204 >     vector<pat::MET>                 "patType1CorrectedPFMetJetResDown"   ""                "VH"      
1205 >     vector<pat::MET>                 "patType1CorrectedPFMetJetResUp"   ""                "VH"      
1206 >     vector<pat::MET>                 "patType1CorrectedPFMetMuonEnDown"   ""                "VH"      
1207 >     vector<pat::MET>                 "patType1CorrectedPFMetMuonEnUp"   ""                "VH"      
1208 >     vector<pat::MET>                 "patType1CorrectedPFMetNoPU"   ""                "VH"      
1209 >     vector<pat::MET>                 "patType1CorrectedPFMetTauEnDown"   ""                "VH"      
1210 >     vector<pat::MET>                 "patType1CorrectedPFMetTauEnUp"   ""                "VH"      
1211 >     vector<pat::MET>                 "patType1CorrectedPFMetUnclusteredEnDown"   ""                "VH"      
1212 >     vector<pat::MET>                 "patType1CorrectedPFMetUnclusteredEnUp"   ""                "VH"      
1213 >     vector<pat::MET>                 "patType1p2CorrectedPFMet"   ""                "VH"      
1214 >     vector<pat::MET>                 "patType1p2CorrectedPFMetElectronEnDown"   ""                "VH"      
1215 >     vector<pat::MET>                 "patType1p2CorrectedPFMetElectronEnUp"   ""                "VH"      
1216 >     vector<pat::MET>                 "patType1p2CorrectedPFMetJetEnDown"   ""                "VH"      
1217 >     vector<pat::MET>                 "patType1p2CorrectedPFMetJetEnUp"   ""                "VH"      
1218 >     vector<pat::MET>                 "patType1p2CorrectedPFMetJetResDown"   ""                "VH"      
1219 >     vector<pat::MET>                 "patType1p2CorrectedPFMetJetResUp"   ""                "VH"      
1220 >     vector<pat::MET>                 "patType1p2CorrectedPFMetMuonEnDown"   ""                "VH"      
1221 >     vector<pat::MET>                 "patType1p2CorrectedPFMetMuonEnUp"   ""                "VH"      
1222 >     vector<pat::MET>                 "patType1p2CorrectedPFMetNoPU"   ""                "VH"      
1223 >     vector<pat::MET>                 "patType1p2CorrectedPFMetTauEnDown"   ""                "VH"      
1224 >     vector<pat::MET>                 "patType1p2CorrectedPFMetTauEnUp"   ""                "VH"      
1225 >     vector<pat::MET>                 "patType1p2CorrectedPFMetUnclusteredEnDown"   ""                "VH"      
1226 >     vector<pat::MET>                 "patType1p2CorrectedPFMetUnclusteredEnUp"   ""                "VH"      
1227 >     */
1228 >    
1229 >    VHbbEvent::METInfo metunc;
1230 >    edm::Handle<edm::View<reco::MET> > patType1CorrectedPFMetElectronEnDownHandle;
1231 >    iEvent.getByLabel("patType1CorrectedPFMetElectronEnDown",patType1CorrectedPFMetElectronEnDownHandle);
1232 >    edm::View<reco::MET> patType1CorrectedPFMetsElectronEnDown = *patType1CorrectedPFMetElectronEnDownHandle;
1233 >    if(patType1CorrectedPFMetsElectronEnDown.size()){
1234 >        metunc.sumEt =(patType1CorrectedPFMetsElectronEnDown[0]).sumEt();
1235 >        metunc.metSig=metSignificance(& (patType1CorrectedPFMetsElectronEnDown[0]));
1236 >        metunc.eLong=(patType1CorrectedPFMetsElectronEnDown[0]).e_longitudinal();
1237 >        metunc.p4=GENPTOLOR((patType1CorrectedPFMetsElectronEnDown[0]));
1238 >        hbbInfo->metUncInfo.push_back(metunc);
1239 >    }
1240 >    
1241 >    edm::Handle<edm::View<reco::MET> > patType1CorrectedPFMetElectronEnUpHandle;
1242 >    iEvent.getByLabel("patType1CorrectedPFMetElectronEnUp",patType1CorrectedPFMetElectronEnUpHandle);
1243 >    edm::View<reco::MET> patType1CorrectedPFMetsElectronEnUp = *patType1CorrectedPFMetElectronEnUpHandle;
1244 >    if(patType1CorrectedPFMetsElectronEnUp.size()){
1245 >        metunc.sumEt =(patType1CorrectedPFMetsElectronEnUp[0]).sumEt();
1246 >        metunc.metSig=metSignificance(& (patType1CorrectedPFMetsElectronEnUp[0]));
1247 >        metunc.eLong=(patType1CorrectedPFMetsElectronEnUp[0]).e_longitudinal();
1248 >        metunc.p4=GENPTOLOR((patType1CorrectedPFMetsElectronEnUp[0]));
1249 >        hbbInfo->metUncInfo.push_back(metunc);
1250 >    }
1251 >    
1252 >    
1253 >    
1254 >    edm::Handle<edm::View<reco::MET> > patType1CorrectedPFMetMuonEnDownHandle;
1255 >    iEvent.getByLabel("patType1CorrectedPFMetMuonEnDown",patType1CorrectedPFMetMuonEnDownHandle);
1256 >    edm::View<reco::MET> patType1CorrectedPFMetsMuonEnDown = *patType1CorrectedPFMetMuonEnDownHandle;
1257 >    if(patType1CorrectedPFMetsMuonEnDown.size()){
1258 >        metunc.sumEt =(patType1CorrectedPFMetsMuonEnDown[0]).sumEt();
1259 >        metunc.metSig=metSignificance(& (patType1CorrectedPFMetsMuonEnDown[0]));
1260 >        metunc.eLong=(patType1CorrectedPFMetsMuonEnDown[0]).e_longitudinal();
1261 >        metunc.p4=GENPTOLOR((patType1CorrectedPFMetsMuonEnDown[0]));
1262 >        hbbInfo->metUncInfo.push_back(metunc);
1263 >    }
1264 >    
1265 >    edm::Handle<edm::View<reco::MET> > patType1CorrectedPFMetMuonEnUpHandle;
1266 >    iEvent.getByLabel("patType1CorrectedPFMetMuonEnUp",patType1CorrectedPFMetMuonEnUpHandle);
1267 >    edm::View<reco::MET> patType1CorrectedPFMetsMuonEnUp = *patType1CorrectedPFMetMuonEnUpHandle;
1268 >    if(patType1CorrectedPFMetsMuonEnUp.size()){
1269 >        metunc.sumEt =(patType1CorrectedPFMetsMuonEnUp[0]).sumEt();
1270 >        metunc.metSig=metSignificance(& (patType1CorrectedPFMetsMuonEnUp[0]));
1271 >        metunc.eLong=(patType1CorrectedPFMetsMuonEnUp[0]).e_longitudinal();
1272 >        metunc.p4=GENPTOLOR((patType1CorrectedPFMetsMuonEnUp[0]));
1273 >        hbbInfo->metUncInfo.push_back(metunc);
1274 >    }
1275 >    
1276 >    
1277 >    
1278 >    edm::Handle<edm::View<reco::MET> > patType1CorrectedPFMetTauEnDownHandle;
1279 >    iEvent.getByLabel("patType1CorrectedPFMetTauEnDown",patType1CorrectedPFMetTauEnDownHandle);
1280 >    edm::View<reco::MET> patType1CorrectedPFMetsTauEnDown = *patType1CorrectedPFMetTauEnDownHandle;
1281 >    if(patType1CorrectedPFMetsTauEnDown.size()){
1282 >        metunc.sumEt =(patType1CorrectedPFMetsTauEnDown[0]).sumEt();
1283 >        metunc.metSig=metSignificance(& (patType1CorrectedPFMetsTauEnDown[0]));
1284 >        metunc.eLong=(patType1CorrectedPFMetsTauEnDown[0]).e_longitudinal();
1285 >        metunc.p4=GENPTOLOR((patType1CorrectedPFMetsTauEnDown[0]));
1286 >        hbbInfo->metUncInfo.push_back(metunc);
1287 >    }
1288 >    
1289 >    edm::Handle<edm::View<reco::MET> > patType1CorrectedPFMetTauEnUpHandle;
1290 >    iEvent.getByLabel("patType1CorrectedPFMetTauEnUp",patType1CorrectedPFMetTauEnUpHandle);
1291 >    edm::View<reco::MET> patType1CorrectedPFMetsTauEnUp = *patType1CorrectedPFMetTauEnUpHandle;
1292 >    if(patType1CorrectedPFMetsTauEnUp.size()){
1293 >        metunc.sumEt =(patType1CorrectedPFMetsTauEnUp[0]).sumEt();
1294 >        metunc.metSig=metSignificance(& (patType1CorrectedPFMetsTauEnUp[0]));
1295 >        metunc.eLong=(patType1CorrectedPFMetsTauEnUp[0]).e_longitudinal();
1296 >        metunc.p4=GENPTOLOR((patType1CorrectedPFMetsTauEnUp[0]));
1297 >        hbbInfo->metUncInfo.push_back(metunc);
1298 >    }
1299 >    
1300 >    
1301 >    edm::Handle<edm::View<reco::MET> > patType1CorrectedPFMetJetEnDownHandle;
1302 >    iEvent.getByLabel("patType1CorrectedPFMetJetEnDown",patType1CorrectedPFMetJetEnDownHandle);
1303 >    edm::View<reco::MET> patType1CorrectedPFMetsJetEnDown = *patType1CorrectedPFMetJetEnDownHandle;
1304 >    if(patType1CorrectedPFMetsJetEnDown.size()){
1305 >        metunc.sumEt =(patType1CorrectedPFMetsJetEnDown[0]).sumEt();
1306 >        metunc.metSig=metSignificance(& (patType1CorrectedPFMetsJetEnDown[0]));
1307 >        metunc.eLong=(patType1CorrectedPFMetsJetEnDown[0]).e_longitudinal();
1308 >        metunc.p4=GENPTOLOR((patType1CorrectedPFMetsJetEnDown[0]));
1309 >        hbbInfo->metUncInfo.push_back(metunc);
1310 >    }
1311 >    
1312 >    edm::Handle<edm::View<reco::MET> > patType1CorrectedPFMetJetEnUpHandle;
1313 >    iEvent.getByLabel("patType1CorrectedPFMetJetEnUp",patType1CorrectedPFMetJetEnUpHandle);
1314 >    edm::View<reco::MET> patType1CorrectedPFMetsJetEnUp = *patType1CorrectedPFMetJetEnUpHandle;
1315 >    if(patType1CorrectedPFMetsJetEnUp.size()){
1316 >        metunc.sumEt =(patType1CorrectedPFMetsJetEnUp[0]).sumEt();
1317 >        metunc.metSig=metSignificance(& (patType1CorrectedPFMetsJetEnUp[0]));
1318 >        metunc.eLong=(patType1CorrectedPFMetsJetEnUp[0]).e_longitudinal();
1319 >        metunc.p4=GENPTOLOR((patType1CorrectedPFMetsJetEnUp[0]));
1320 >        hbbInfo->metUncInfo.push_back(metunc);
1321 >    }
1322 >    
1323 >    
1324 >    edm::Handle<edm::View<reco::MET> > patType1CorrectedPFMetJetResDownHandle;
1325 >    iEvent.getByLabel("patType1CorrectedPFMetJetResDown",patType1CorrectedPFMetJetResDownHandle);
1326 >    edm::View<reco::MET> patType1CorrectedPFMetsJetResDown = *patType1CorrectedPFMetJetResDownHandle;
1327 >    if(patType1CorrectedPFMetsJetResDown.size()){
1328 >        metunc.sumEt =(patType1CorrectedPFMetsJetResDown[0]).sumEt();
1329 >        metunc.metSig=metSignificance(& (patType1CorrectedPFMetsJetResDown[0]));
1330 >        metunc.eLong=(patType1CorrectedPFMetsJetResDown[0]).e_longitudinal();
1331 >        metunc.p4=GENPTOLOR((patType1CorrectedPFMetsJetResDown[0]));
1332 >        hbbInfo->metUncInfo.push_back(metunc);
1333 >    }
1334 >    
1335 >    edm::Handle<edm::View<reco::MET> > patType1CorrectedPFMetJetResUpHandle;
1336 >    iEvent.getByLabel("patType1CorrectedPFMetJetResUp",patType1CorrectedPFMetJetResUpHandle);
1337 >    edm::View<reco::MET> patType1CorrectedPFMetsJetResUp = *patType1CorrectedPFMetJetResUpHandle;
1338 >    if(patType1CorrectedPFMetsJetResUp.size()){
1339 >        metunc.sumEt =(patType1CorrectedPFMetsJetResUp[0]).sumEt();
1340 >        metunc.metSig=metSignificance(& (patType1CorrectedPFMetsJetResUp[0]));
1341 >        metunc.eLong=(patType1CorrectedPFMetsJetResUp[0]).e_longitudinal();
1342 >        metunc.p4=GENPTOLOR((patType1CorrectedPFMetsJetResUp[0]));
1343 >        hbbInfo->metUncInfo.push_back(metunc);
1344 >    }
1345 >    
1346 >    
1347 >    edm::Handle<edm::View<reco::MET> > patType1CorrectedPFMetUnclusteredEnDownHandle;
1348 >    iEvent.getByLabel("patType1CorrectedPFMetUnclusteredEnDown",patType1CorrectedPFMetUnclusteredEnDownHandle);
1349 >    edm::View<reco::MET> patType1CorrectedPFMetsUnclusteredEnDown = *patType1CorrectedPFMetUnclusteredEnDownHandle;
1350 >    if(patType1CorrectedPFMetsUnclusteredEnDown.size()){
1351 >        metunc.sumEt =(patType1CorrectedPFMetsUnclusteredEnDown[0]).sumEt();
1352 >        metunc.metSig=metSignificance(& (patType1CorrectedPFMetsUnclusteredEnDown[0]));
1353 >        metunc.eLong=(patType1CorrectedPFMetsUnclusteredEnDown[0]).e_longitudinal();
1354 >        metunc.p4=GENPTOLOR((patType1CorrectedPFMetsUnclusteredEnDown[0]));
1355 >        hbbInfo->metUncInfo.push_back(metunc);
1356 >    }
1357 >    
1358 >    edm::Handle<edm::View<reco::MET> > patType1CorrectedPFMetUnclusteredEnUpHandle;
1359 >    iEvent.getByLabel("patType1CorrectedPFMetUnclusteredEnUp",patType1CorrectedPFMetUnclusteredEnUpHandle);
1360 >    edm::View<reco::MET> patType1CorrectedPFMetsUnclusteredEnUp = *patType1CorrectedPFMetUnclusteredEnUpHandle;
1361 >    if(patType1CorrectedPFMetsUnclusteredEnUp.size()){
1362 >        metunc.sumEt =(patType1CorrectedPFMetsUnclusteredEnUp[0]).sumEt();
1363 >        metunc.metSig=metSignificance(& (patType1CorrectedPFMetsUnclusteredEnUp[0]));
1364 >        metunc.eLong=(patType1CorrectedPFMetsUnclusteredEnUp[0]).e_longitudinal();
1365 >        metunc.p4=GENPTOLOR((patType1CorrectedPFMetsUnclusteredEnUp[0]));
1366 >        hbbInfo->metUncInfo.push_back(metunc);
1367 >    }
1368 >    
1369 >    
1370 >    edm::Handle<edm::View<reco::MET> > patType1p2CorrectedPFMetElectronEnDownHandle;
1371 >    iEvent.getByLabel("patType1p2CorrectedPFMetElectronEnDown",patType1p2CorrectedPFMetElectronEnDownHandle);
1372 >    edm::View<reco::MET> patType1p2CorrectedPFMetsElectronEnDown = *patType1p2CorrectedPFMetElectronEnDownHandle;
1373 >    if(patType1p2CorrectedPFMetsElectronEnDown.size()){
1374 >        metunc.sumEt =(patType1p2CorrectedPFMetsElectronEnDown[0]).sumEt();
1375 >        metunc.metSig=metSignificance(& (patType1p2CorrectedPFMetsElectronEnDown[0]));
1376 >        metunc.eLong=(patType1p2CorrectedPFMetsElectronEnDown[0]).e_longitudinal();
1377 >        metunc.p4=GENPTOLOR((patType1p2CorrectedPFMetsElectronEnDown[0]));
1378 >        hbbInfo->metUncInfo.push_back(metunc);
1379 >    }
1380 >    
1381 >    edm::Handle<edm::View<reco::MET> > patType1p2CorrectedPFMetElectronEnUpHandle;
1382 >    iEvent.getByLabel("patType1p2CorrectedPFMetElectronEnUp",patType1p2CorrectedPFMetElectronEnUpHandle);
1383 >    edm::View<reco::MET> patType1p2CorrectedPFMetsElectronEnUp = *patType1p2CorrectedPFMetElectronEnUpHandle;
1384 >    if(patType1p2CorrectedPFMetsElectronEnUp.size()){
1385 >        metunc.sumEt =(patType1p2CorrectedPFMetsElectronEnUp[0]).sumEt();
1386 >        metunc.metSig=metSignificance(& (patType1p2CorrectedPFMetsElectronEnUp[0]));
1387 >        metunc.eLong=(patType1p2CorrectedPFMetsElectronEnUp[0]).e_longitudinal();
1388 >        metunc.p4=GENPTOLOR((patType1p2CorrectedPFMetsElectronEnUp[0]));
1389 >        hbbInfo->metUncInfo.push_back(metunc);
1390 >    }
1391 >    
1392 >    
1393 >    
1394 >    edm::Handle<edm::View<reco::MET> > patType1p2CorrectedPFMetMuonEnDownHandle;
1395 >    iEvent.getByLabel("patType1p2CorrectedPFMetMuonEnDown",patType1p2CorrectedPFMetMuonEnDownHandle);
1396 >    edm::View<reco::MET> patType1p2CorrectedPFMetsMuonEnDown = *patType1p2CorrectedPFMetMuonEnDownHandle;
1397 >    if(patType1p2CorrectedPFMetsMuonEnDown.size()){
1398 >        metunc.sumEt =(patType1p2CorrectedPFMetsMuonEnDown[0]).sumEt();
1399 >        metunc.metSig=metSignificance(& (patType1p2CorrectedPFMetsMuonEnDown[0]));
1400 >        metunc.eLong=(patType1p2CorrectedPFMetsMuonEnDown[0]).e_longitudinal();
1401 >        metunc.p4=GENPTOLOR((patType1p2CorrectedPFMetsMuonEnDown[0]));
1402 >        hbbInfo->metUncInfo.push_back(metunc);
1403 >    }
1404 >    
1405 >    edm::Handle<edm::View<reco::MET> > patType1p2CorrectedPFMetMuonEnUpHandle;
1406 >    iEvent.getByLabel("patType1p2CorrectedPFMetMuonEnUp",patType1p2CorrectedPFMetMuonEnUpHandle);
1407 >    edm::View<reco::MET> patType1p2CorrectedPFMetsMuonEnUp = *patType1p2CorrectedPFMetMuonEnUpHandle;
1408 >    if(patType1p2CorrectedPFMetsMuonEnUp.size()){
1409 >        metunc.sumEt =(patType1p2CorrectedPFMetsMuonEnUp[0]).sumEt();
1410 >        metunc.metSig=metSignificance(& (patType1p2CorrectedPFMetsMuonEnUp[0]));
1411 >        metunc.eLong=(patType1p2CorrectedPFMetsMuonEnUp[0]).e_longitudinal();
1412 >        metunc.p4=GENPTOLOR((patType1p2CorrectedPFMetsMuonEnUp[0]));
1413 >        hbbInfo->metUncInfo.push_back(metunc);
1414 >    }
1415 >    
1416 >    
1417 >    
1418 >    edm::Handle<edm::View<reco::MET> > patType1p2CorrectedPFMetTauEnDownHandle;
1419 >    iEvent.getByLabel("patType1p2CorrectedPFMetTauEnDown",patType1p2CorrectedPFMetTauEnDownHandle);
1420 >    edm::View<reco::MET> patType1p2CorrectedPFMetsTauEnDown = *patType1p2CorrectedPFMetTauEnDownHandle;
1421 >    if(patType1p2CorrectedPFMetsTauEnDown.size()){
1422 >        metunc.sumEt =(patType1p2CorrectedPFMetsTauEnDown[0]).sumEt();
1423 >        metunc.metSig=metSignificance(& (patType1p2CorrectedPFMetsTauEnDown[0]));
1424 >        metunc.eLong=(patType1p2CorrectedPFMetsTauEnDown[0]).e_longitudinal();
1425 >        metunc.p4=GENPTOLOR((patType1p2CorrectedPFMetsTauEnDown[0]));
1426 >        hbbInfo->metUncInfo.push_back(metunc);
1427 >    }
1428 >    
1429 >    edm::Handle<edm::View<reco::MET> > patType1p2CorrectedPFMetTauEnUpHandle;
1430 >    iEvent.getByLabel("patType1p2CorrectedPFMetTauEnUp",patType1p2CorrectedPFMetTauEnUpHandle);
1431 >    edm::View<reco::MET> patType1p2CorrectedPFMetsTauEnUp = *patType1p2CorrectedPFMetTauEnUpHandle;
1432 >    if(patType1p2CorrectedPFMetsTauEnUp.size()){
1433 >        metunc.sumEt =(patType1p2CorrectedPFMetsTauEnUp[0]).sumEt();
1434 >        metunc.metSig=metSignificance(& (patType1p2CorrectedPFMetsTauEnUp[0]));
1435 >        metunc.eLong=(patType1p2CorrectedPFMetsTauEnUp[0]).e_longitudinal();
1436 >        metunc.p4=GENPTOLOR((patType1p2CorrectedPFMetsTauEnUp[0]));
1437 >        hbbInfo->metUncInfo.push_back(metunc);
1438 >    }
1439 >    
1440 >    
1441 >    edm::Handle<edm::View<reco::MET> > patType1p2CorrectedPFMetJetEnDownHandle;
1442 >    iEvent.getByLabel("patType1p2CorrectedPFMetJetEnDown",patType1p2CorrectedPFMetJetEnDownHandle);
1443 >    edm::View<reco::MET> patType1p2CorrectedPFMetsJetEnDown = *patType1p2CorrectedPFMetJetEnDownHandle;
1444 >    if(patType1p2CorrectedPFMetsJetEnDown.size()){
1445 >        metunc.sumEt =(patType1p2CorrectedPFMetsJetEnDown[0]).sumEt();
1446 >        metunc.metSig=metSignificance(& (patType1p2CorrectedPFMetsJetEnDown[0]));
1447 >        metunc.eLong=(patType1p2CorrectedPFMetsJetEnDown[0]).e_longitudinal();
1448 >        metunc.p4=GENPTOLOR((patType1p2CorrectedPFMetsJetEnDown[0]));
1449 >        hbbInfo->metUncInfo.push_back(metunc);
1450 >    }
1451 >    
1452 >    edm::Handle<edm::View<reco::MET> > patType1p2CorrectedPFMetJetEnUpHandle;
1453 >    iEvent.getByLabel("patType1p2CorrectedPFMetJetEnUp",patType1p2CorrectedPFMetJetEnUpHandle);
1454 >    edm::View<reco::MET> patType1p2CorrectedPFMetsJetEnUp = *patType1p2CorrectedPFMetJetEnUpHandle;
1455 >    if(patType1p2CorrectedPFMetsJetEnUp.size()){
1456 >        metunc.sumEt =(patType1p2CorrectedPFMetsJetEnUp[0]).sumEt();
1457 >        metunc.metSig=metSignificance(& (patType1p2CorrectedPFMetsJetEnUp[0]));
1458 >        metunc.eLong=(patType1p2CorrectedPFMetsJetEnUp[0]).e_longitudinal();
1459 >        metunc.p4=GENPTOLOR((patType1p2CorrectedPFMetsJetEnUp[0]));
1460 >        hbbInfo->metUncInfo.push_back(metunc);
1461 >    }
1462 >    
1463 >    
1464 >    edm::Handle<edm::View<reco::MET> > patType1p2CorrectedPFMetJetResDownHandle;
1465 >    iEvent.getByLabel("patType1p2CorrectedPFMetJetResDown",patType1p2CorrectedPFMetJetResDownHandle);
1466 >    edm::View<reco::MET> patType1p2CorrectedPFMetsJetResDown = *patType1p2CorrectedPFMetJetResDownHandle;
1467 >    if(patType1p2CorrectedPFMetsJetResDown.size()){
1468 >        metunc.sumEt =(patType1p2CorrectedPFMetsJetResDown[0]).sumEt();
1469 >        metunc.metSig=metSignificance(& (patType1p2CorrectedPFMetsJetResDown[0]));
1470 >        metunc.eLong=(patType1p2CorrectedPFMetsJetResDown[0]).e_longitudinal();
1471 >        metunc.p4=GENPTOLOR((patType1p2CorrectedPFMetsJetResDown[0]));
1472 >        hbbInfo->metUncInfo.push_back(metunc);
1473 >    }
1474 >    
1475 >    edm::Handle<edm::View<reco::MET> > patType1p2CorrectedPFMetJetResUpHandle;
1476 >    iEvent.getByLabel("patType1p2CorrectedPFMetJetResUp",patType1p2CorrectedPFMetJetResUpHandle);
1477 >    edm::View<reco::MET> patType1p2CorrectedPFMetsJetResUp = *patType1p2CorrectedPFMetJetResUpHandle;
1478 >    if(patType1p2CorrectedPFMetsJetResUp.size()){
1479 >        metunc.sumEt =(patType1p2CorrectedPFMetsJetResUp[0]).sumEt();
1480 >        metunc.metSig=metSignificance(& (patType1p2CorrectedPFMetsJetResUp[0]));
1481 >        metunc.eLong=(patType1p2CorrectedPFMetsJetResUp[0]).e_longitudinal();
1482 >        metunc.p4=GENPTOLOR((patType1p2CorrectedPFMetsJetResUp[0]));
1483 >        hbbInfo->metUncInfo.push_back(metunc);
1484 >    }
1485 >    
1486 >    
1487 >    edm::Handle<edm::View<reco::MET> > patType1p2CorrectedPFMetUnclusteredEnDownHandle;
1488 >    iEvent.getByLabel("patType1p2CorrectedPFMetUnclusteredEnDown",patType1p2CorrectedPFMetUnclusteredEnDownHandle);
1489 >    edm::View<reco::MET> patType1p2CorrectedPFMetsUnclusteredEnDown = *patType1p2CorrectedPFMetUnclusteredEnDownHandle;
1490 >    if(patType1p2CorrectedPFMetsUnclusteredEnDown.size()){
1491 >        metunc.sumEt =(patType1p2CorrectedPFMetsUnclusteredEnDown[0]).sumEt();
1492 >        metunc.metSig=metSignificance(& (patType1p2CorrectedPFMetsUnclusteredEnDown[0]));
1493 >        metunc.eLong=(patType1p2CorrectedPFMetsUnclusteredEnDown[0]).e_longitudinal();
1494 >        metunc.p4=GENPTOLOR((patType1p2CorrectedPFMetsUnclusteredEnDown[0]));
1495 >        hbbInfo->metUncInfo.push_back(metunc);
1496 >    }
1497 >    
1498 >    edm::Handle<edm::View<reco::MET> > patType1p2CorrectedPFMetUnclusteredEnUpHandle;
1499 >    iEvent.getByLabel("patType1p2CorrectedPFMetUnclusteredEnUp",patType1p2CorrectedPFMetUnclusteredEnUpHandle);
1500 >    edm::View<reco::MET> patType1p2CorrectedPFMetsUnclusteredEnUp = *patType1p2CorrectedPFMetUnclusteredEnUpHandle;
1501 >    if(patType1p2CorrectedPFMetsUnclusteredEnUp.size()){
1502 >        metunc.sumEt =(patType1p2CorrectedPFMetsUnclusteredEnUp[0]).sumEt();
1503 >        metunc.metSig=metSignificance(& (patType1p2CorrectedPFMetsUnclusteredEnUp[0]));
1504 >        metunc.eLong=(patType1p2CorrectedPFMetsUnclusteredEnUp[0]).e_longitudinal();
1505 >        metunc.p4=GENPTOLOR((patType1p2CorrectedPFMetsUnclusteredEnUp[0]));
1506 >        hbbInfo->metUncInfo.push_back(metunc);
1507 >    }
1508 >    
1509 >    
1510 >    
1511 >        //
1512 >        // met is calomet
1513 >        //
1514 >    
1515 >    edm::Handle<edm::View<pat::MET> > metTCHandle;
1516 >    iEvent.getByLabel("patMETsTC",metTCHandle);
1517 >    edm::View<pat::MET> metsTC = *metTCHandle;
1518 >    if(metsTC.size()){
1519 >        hbbInfo->tcmet.sumEt=(metsTC[0]).sumEt();
1520 >        hbbInfo->tcmet.metSig=metSignificance(&(metsTC[0]));
1521 >        hbbInfo->tcmet.eLong=(metsTC[0]).e_longitudinal();
1522 >        hbbInfo->tcmet.p4=GENPTOLOR((metsTC[0]));
1523 >        if (verbose_)     std::cout <<" METTC "<<     hbbInfo->tcmet.metSig <<" " <<     hbbInfo->tcmet.sumEt<<std::endl;
1524 >    }
1525 >    
1526 >    edm::Handle<edm::View<reco::MET> > pfMETNoPUHandle;
1527 >    iEvent.getByLabel("pfMETNoPU",pfMETNoPUHandle);
1528 >    edm::View<reco::MET> metspfMETNoPU = *pfMETNoPUHandle;
1529 >    if(metspfMETNoPU.size()){
1530 >        hbbInfo->metNoPU.sumEt=(metspfMETNoPU[0]).sumEt();
1531 >        hbbInfo->metNoPU.metSig=metSignificance(&(metspfMETNoPU[0]));                
1532 >        hbbInfo->metNoPU.eLong=(metspfMETNoPU[0]).e_longitudinal();
1533 >        hbbInfo->metNoPU.p4=GENPTOLOR((metspfMETNoPU[0]));
1534 >        if (verbose_)     std::cout <<" pfMETNoPU "<<     hbbInfo->metNoPU.metSig <<" " <<     hbbInfo->metNoPU.sumEt<<std::endl;
1535 >    }
1536 >    
1537 >    edm::Handle<edm::View<reco::MET> > mHTHandle;
1538 >    iEvent.getByLabel("patMETsHT",mHTHandle);
1539 >    edm::View<reco::MET> metsHT = *mHTHandle;
1540 >    if(metsHT.size()){
1541 >        hbbInfo->mht.sumEt=(metsHT[0]).sumEt();
1542 >        hbbInfo->mht.metSig=metSignificance(&(metsHT[0]));
1543 >        hbbInfo->mht.eLong=(metsHT[0]).e_longitudinal();
1544 >        hbbInfo->mht.p4=GENPTOLOR((metsHT[0]));
1545 >        if (verbose_)     std::cout <<" METHT "<<     hbbInfo->mht.metSig <<" " <<     hbbInfo->mht.sumEt<<std::endl;
1546 >    }
1547 >    
1548 >    edm::Handle<edm::View<reco::MET> > metHandle;
1549 >    iEvent.getByLabel(metLabel_,metHandle);
1550 >    edm::View<reco::MET> mets = *metHandle;
1551 >    
1552 >    if(mets.size()){
1553 >        hbbInfo->calomet.sumEt=(mets[0]).sumEt();
1554 >        hbbInfo->calomet.metSig=metSignificance(&(mets[0]));
1555 >        hbbInfo->calomet.eLong=(mets[0]).e_longitudinal();
1556 >        hbbInfo->calomet.p4=GENPTOLOR((mets[0]));
1557 >        if (verbose_)     std::cout <<" METCALO "<<     hbbInfo->calomet.metSig <<" " <<     hbbInfo->calomet.sumEt<<std::endl;
1558 >    }
1559 >    
1560 >    edm::Handle<edm::View<pat::MET> > metPFHandle;
1561 >    iEvent.getByLabel("patMETsPFlow",metPFHandle);
1562 >    edm::View<pat::MET> metsPF = *metPFHandle;
1563 >    
1564 >    if(metsPF.size()){
1565 >        hbbInfo->pfmet.sumEt=(metsPF[0]).sumEt();
1566 >        hbbInfo->pfmet.metSig=metSignificance(&(metsPF[0]));
1567 >        hbbInfo->pfmet.eLong=(metsPF[0]).e_longitudinal();
1568 >        hbbInfo->pfmet.p4=GENPTOLOR((metsPF[0]));
1569 >        if (verbose_)     std::cout <<" METPF "<<     hbbInfo->pfmet.metSig <<" " <<     hbbInfo->pfmet.sumEt<<std::endl;
1570 >    }
1571 >    
1572 >    
1573 >    if(verbose_){
1574 >        std::cout << "METs: calomet "<<mets.size()<<" tcmet"<<metsTC.size()<<" pfmet "<<metsPF.size()<<" MHT" <<metsHT.size()<<std::endl;  
1575 >    }
1576 >    
1577 >    if(verbose_)
1578 >        std::cout << " INPUT MUONS "<<muons.size()<<std::endl;
1579 >    
1580 >    for(edm::View<pat::Muon>::const_iterator mu = muons.begin(); mu!=muons.end(); ++mu){
1581 >        VHbbEvent::MuonInfo mf;
1582 >        mf.p4 =GENPTOLORP( mu);
1583 >        mf.charge=mu->charge();
1584 >        mf.tIso=mu->trackIso();
1585 >        mf.eIso=mu->ecalIso();
1586 >        mf.hIso=mu->hcalIso();
1587 >        mf.pfChaIso=mu->chargedHadronIso();
1588 >        mf.pfChaPUIso=mu->puChargedHadronIso(); //userIso(5);
1589 >        mf.pfPhoIso=mu->photonIso();
1590 >        mf.pfNeuIso=mu->neutralHadronIso();
1591 >        Geom::Phi<double> deltaphi(mu->phi()-atan2(mf.p4.Px(), mf.p4.Py()));
1592 >        double acop = deltaphi.value();
1593 >        mf.acop=acop;
1594 >        
1595 >        mf.emEnergy = mu->calEnergy().em;
1596 >        mf.hadEnergy = mu->calEnergy().had;
1597 >        
1598 >        mf.nMatches = mu->numberOfMatches();
1599 >        
1600 >        mf.ipDb=mu->dB();
1601 >        mf.ipErrDb=mu->edB();
1602 >        mf.cat=0;
1603 >        
1604 >        if(mu->isGlobalMuon()) mf.cat|=1;
1605 >        if(mu->isTrackerMuon()) mf.cat|=2;
1606 >        if(mu->isStandAloneMuon()) mf.cat|=4;
1607 >        TrackRef trkMu1Ref = mu->get<TrackRef>();
1608 >        if(trkMu1Ref.isNonnull()){
1609 >            const Track* MuTrk1 = mu->get<TrackRef>().get();
1610 >            mf.zPVPt=MuTrk1->dz(RecVtxFirst.position());
1611 >            mf.zPVProb=MuTrk1->dz(RecVtx.position());
1612 >            mf.nHits=MuTrk1->numberOfValidHits();
1613 >            mf.chi2=MuTrk1->normalizedChi2();
1614 >            TrackRef iTrack1 = mu->innerTrack();
1615 >            const reco::HitPattern& p1 = iTrack1->hitPattern();
1616 >            mf.nPixelHits=p1.pixelLayersWithMeasurement();
1617 >            
1618 >            mf.nValidTracker = p1.numberOfValidTrackerHits();
1619 >            mf.nValidPixel = p1.numberOfValidPixelHits();
1620 >            mf.nValidLayers = p1.trackerLayersWithMeasurement();
1621 >            mf.isPF = mu->isPFMuon();
1622 >            
1623 >            
1624 >            
1625 >        }
1626 >        if(mu->isGlobalMuon()){
1627 >            TrackRef gTrack = mu->globalTrack();
1628 >            const reco::HitPattern& q = gTrack->hitPattern();
1629 >            mf.globChi2=gTrack.get()->normalizedChi2();
1630 >            mf.globNHits=q.numberOfValidMuonHits();
1631 >            mf.validMuStations = q.muonStationsWithValidHits();
1632 >        }else{
1633 >            mf.globChi2=-99;
1634 >            mf.globNHits=-99;
1635 >        }
1636 >        
1637 >            //Muon trigger matching
1638 >        for (int itrig = 0; itrig != ntrigs; ++itrig){
1639 >            std::string trigName=triggerNames_.triggerName(itrig);
1640 >            if( (mu->triggerObjectMatchesByPath(trigName,false,false).size() != 0) ){
1641 >                mf.hltMatchedBits.push_back(itrig);
1642 >                if(verbose_){
1643 >                    std::clog << "Trigger Matching box" << std::endl;
1644 >                    std::clog << "+++++++++++++++++++++++++++++++++++++++++++++++++" << std::endl;
1645 >                    std::clog << "Matching parameters are defined in the cfg" << std::endl;
1646 >                    std::clog << "Trigger bit = " << itrig << std::endl;
1647 >                    std::clog << "Trigger name = " << trigName << std::endl;
1648 >                    std::clog << "Trigger object matched collection size = " << mu->triggerObjectMatchesByPath(trigName,false,false).size() << std::endl;
1649 >                    std::clog << "Pat Muon pt = " << mf.p4.Pt() << " HLT object matched = " << mu->triggerObjectMatch(0)->p4().Pt() << std::endl;
1650 >                    std::clog << "+++++++++++++++++++++++++++++++++++++++++++++++++" << std::endl;
1651 >                }
1652 >            }
1653 >        }
1654 >            //
1655 >        
1656 >            // add stamuon
1657 >        
1658 >            //    if (mu->isStandAloneMuon()) {
1659 >            //      reco::TrackRef sta = mu->standAloneMuon();
1660 >            //      
1661 >            //    }
1662 >        
1663 >        
1664 >            //     int muInfo[12];
1665 >            //     fillMuBlock(mu,  muInfo);
1666 >        if(runOnMC_){
1667 >            const GenParticle* muMc = mu->genLepton();
1668 >            if(muMc!=0){
1669 >                mf.mcId=muMc->pdgId();
1670 >                mf.mcFourMomentum=GENPTOLORP(muMc);
1671 >                if(muMc->mother()!=0) mf.mcMomId=muMc->mother()->pdgId();
1672 >                if(muMc->mother()!=0 && muMc->mother()->mother()!=0) mf.mcgMomId=muMc->mother()->mother()->pdgId();
1673 >            } }
1674 >        hbbInfo->muInfo.push_back(mf);
1675 >    }
1676 >    
1677 >    if(verbose_)
1678 >        std::cout << " INPUT electrons "<<electrons.size()<<std::endl;
1679 >    InputTag  reducedEBRecHitCollection(string("reducedEcalRecHitsEB"));
1680 >    InputTag  reducedEERecHitCollection(string("reducedEcalRecHitsEE"));
1681 >    EcalClusterLazyTools lazyTools(iEvent, iSetup, reducedEBRecHitCollection, reducedEERecHitCollection);
1682 >    edm::ESHandle<TransientTrackBuilder> builder;
1683 >    iSetup.get<TransientTrackRecord>().get("TransientTrackBuilder", builder);
1684 >    const TransientTrackBuilder & transientTrackBuilder= *(builder.product());
1685 >    
1686 >    for(edm::View<pat::Electron>::const_iterator elec = electrons.begin(); elec!=electrons.end(); ++elec){
1687 >        VHbbEvent::ElectronInfo ef;
1688 >        ef.p4=GENPTOLORP(elec);
1689 >        ef.scEta =elec->superCluster()->eta();
1690 >        ef.scPhi =elec->superCluster()->phi();
1691 >            //    if(ElecEta[eleccont]!=0) ElecEt[eleccont]=elec->superCluster()->energy()/cosh(elec->superCluster()->eta());
1692 >        ef.charge=elec->charge();
1693 >        ef.tIso=elec->trackIso();
1694 >        ef.eIso=elec->ecalIso();
1695 >        ef.hIso=elec->hcalIso();
1696 >        ef.pfChaIso=elec->chargedHadronIso();
1697 >        ef.pfChaPUIso=elec->puChargedHadronIso();//userIso(5);
1698 >        ef.pfPhoIso=elec->photonIso();
1699 >        ef.pfPhoIsoDoubleCounted=0;
1700 >        
1701 >        /* Check if there are photons sharing the super cluster*/
1702 >        for(size_t k=0;k<photonsForIso.size();k++) {
1703 >            if(deltaR(elec->eta(),elec->phi(),photonsForIso[k].eta(),photonsForIso[k].phi()) < 0.05 && abs(photonsForIso[k].pt()-elec->pt())/(photonsForIso[k].pt()+elec->pt()) < 0.05 ) {
1704 >                std::cout << "Double counting of supercluster!" << std::endl;
1705 >                ef.pfPhoIsoDoubleCounted+=photonsForIso[k].pt();
1706 >            }
1707 >        }
1708 >        ef.pfNeuIso=elec->neutralHadronIso();
1709 >        
1710 >            //
1711 >            // ip info
1712 >            //
1713 >        
1714 >        ef.ipDb=elec->dB();
1715 >        ef.ipErrDb=elec->edB();
1716 >        
1717 >        
1718 >        
1719 >        Geom::Phi<double> deltaphi(elec->superCluster()->phi()-atan2(hbbInfo->pfmet.p4.Py(),hbbInfo->pfmet.p4.Px()));
1720 >        ef.acop = deltaphi.value();
1721 >            //
1722 >        ef.sihih = elec->sigmaIetaIeta();
1723 >        ef.Dphi = elec->deltaPhiSuperClusterTrackAtVtx();
1724 >        ef.Deta = elec->deltaEtaSuperClusterTrackAtVtx();
1725 >        ef.HoE = elec->hadronicOverEm();
1726 >        ef.convDist = elec->convDist();
1727 >        ef.convDcot = elec->convDcot();
1728 >        if(elec->gsfTrack().isNonnull())
1729 >            {
1730 >            ef.innerHits = elec->gsfTrack()->trackerExpectedHitsInner().numberOfHits();  
1731 >            }
1732 >        ef.isEB = elec->isEB();
1733 >        ef.isEE = elec->isEE();
1734 >        /* 2012 ELEID*/
1735 >        
1736 >        const pat::Electron & ele = *elec;
1737 >        bool validKF= false;
1738 >        reco::TrackRef myTrackRef = ele.closestCtfTrackRef();
1739 >        validKF = (myTrackRef.isAvailable());
1740 >        validKF = (myTrackRef.isNonnull());  
1741 >        
1742 >            // Pure tracking variables
1743 >        ef.fMVAVar_fbrem           =  ele.fbrem();
1744 >        ef.fMVAVar_kfchi2          =  (validKF) ? myTrackRef->normalizedChi2() : 0 ;
1745 >        ef.fMVAVar_kfhits          =  (validKF) ? myTrackRef->hitPattern().trackerLayersWithMeasurement() : -1. ;
1746 >            //  fMVAVar_kfhitsall          =  (validKF) ? myTrackRef->numberOfValidHits() : -1. ;   //  save also this in your ntuple as possible alternative
1747 >        ef.fMVAVar_gsfchi2         =  ele.gsfTrack()->normalizedChi2();  
1748 >        
1749 >        
1750 >            // Geometrical matchings
1751 >        ef.fMVAVar_deta            =  ele.deltaEtaSuperClusterTrackAtVtx();
1752 >        ef.fMVAVar_dphi            =  ele.deltaPhiSuperClusterTrackAtVtx();
1753 >        ef.fMVAVar_detacalo        =  ele.deltaEtaSeedClusterTrackAtCalo();
1754 >            // fMVAVar_dphicalo        =  ele.deltaPhiSeedClusterTrackAtCalo();   //  save also this in your ntuple
1755 >        
1756 >        
1757 >            // Pure ECAL -> shower shapes
1758 >        ef.fMVAVar_see             =  ele.sigmaIetaIeta();    //EleSigmaIEtaIEta
1759 >        std::vector<float> vCov = lazyTools.localCovariances(*(ele.superCluster()->seed())) ;
1760 >        if (!isnan(vCov[2])) ef.fMVAVar_spp = sqrt (vCov[2]);   //EleSigmaIPhiIPhi
1761 >        else ef.fMVAVar_spp = 0.;    
1762 >            // fMVAVar_sigmaIEtaIPhi = vCov[1];  //  save also this in your ntuple
1763 >        
1764 >        ef.fMVAVar_etawidth        =  ele.superCluster()->etaWidth();
1765 >        ef.fMVAVar_phiwidth        =  ele.superCluster()->phiWidth();
1766 >        ef.fMVAVar_e1x5e5x5        =  (ele.e5x5()) !=0. ? 1.-(ele.e1x5()/ele.e5x5()) : -1. ;
1767 >        ef.fMVAVar_R9              =  lazyTools.e3x3(*(ele.superCluster()->seed())) / ele.superCluster()->rawEnergy();
1768 >            //fMVAVar_nbrems          =  fabs(ele.numberOfBrems());    //  save also this in your ntuple
1769 >        
1770 >            // Energy matching
1771 >        ef.fMVAVar_HoE             =  ele.hadronicOverEm();
1772 >        ef.fMVAVar_EoP             =  ele.eSuperClusterOverP();
1773 >            // fMVAVar_IoEmIoP         =  (1.0/(ele.superCluster()->energy())) - (1.0 / ele.p());  // in the future to be changed with ele.gsfTrack()->p()
1774 >        ef.fMVAVar_IoEmIoP         =  (1.0/ele.ecalEnergy()) - (1.0 / ele.p());  // in the future to be changed with ele.gsfTrack()->p()   // 24/04/2012 changed to correctly access the   corrected supercluster energy from CMSSW_52X
1775 >        
1776 >        ef.fMVAVar_eleEoPout       =  ele.eEleClusterOverPout();
1777 >        ef.fMVAVar_PreShowerOverRaw=  ele.superCluster()->preshowerEnergy() / ele.superCluster()->rawEnergy();
1778 >            // fMVAVar_EoPout          =  ele.eSeedClusterOverPout();     //  save also this in your ntuple
1779 >        
1780 >        
1781 >            // Spectators
1782 >        ef.fMVAVar_eta             =  ele.superCluster()->eta();        
1783 >        ef.fMVAVar_pt              =  ele.pt();                          
1784 >        
1785 >            //additional for cut based
1786 >        ef.dxy = elec->gsfTrack()->dxy(vertex.position());
1787 >        ef.dz  = elec->gsfTrack()->dz(vertex.position());
1788 >        
1789 >        
1790 >            //d0
1791 >        if (ele.gsfTrack().isNonnull()) {
1792 >            ef.fMVAVar_d0 = (-1.0)*ele.gsfTrack()->dxy(vertex.position());
1793 >        } else if (ele.closestCtfTrackRef().isNonnull()) {
1794 >            ef.fMVAVar_d0 = (-1.0)*ele.closestCtfTrackRef()->dxy(vertex.position());
1795 >        } else {
1796 >            ef.fMVAVar_d0 = -9999.0;
1797 >            
1798 >                //default values for IP3D
1799 >            ef.fMVAVar_ip3d = -999.0;
1800 >                // fMVAVar_ip3dSig = 0.0;
1801 >            if (ele.gsfTrack().isNonnull()) {
1802 >                const double gsfsign   = ( (-ele.gsfTrack()->dxy(vertex.position()))   >=0 ) ? 1. : -1.;
1803 >                
1804 >                const reco::TransientTrack &tt = transientTrackBuilder.build(ele.gsfTrack());
1805 >                const std::pair<bool,Measurement1D> &ip3dpv =  IPTools::absoluteImpactParameter3D(tt,vertex);
1806 >                if (ip3dpv.first) {
1807 >                    double ip3d = gsfsign*ip3dpv.second.value();
1808 >                        //double ip3derr = ip3dpv.second.error();  
1809 >                    ef.fMVAVar_ip3d = ip3d;
1810 >                        // fMVAVar_ip3dSig = ip3d/ip3derr;
1811 >                }
1812 >            }
1813 >        }
1814 >        
1815 >        
1816 >        /* end of 2012 ELEID*/
1817 >        
1818 >            //
1819 >            // fill eleids
1820 >            //    
1821 >        /*    ef.id95 = elec->electronID("simpleEleId95cIso");
1822 >         ef.id85 = elec->electronID("simpleEleId85cIso");
1823 >         ef.id70 = elec->electronID("simpleEleId70cIso");
1824 >         ef.id95r = elec->electronID("simpleEleId95relIso");
1825 >         ef.id70r = elec->electronID("simpleEleId70relIso");
1826 >         ef.id85r = elec->electronID("simpleEleId85relIso");
1827 >         */
1828 >        ef.id95 =elec->electronID("eidVBTFCom95");
1829 >        ef.id95r=elec->electronID("eidVBTFRel95");
1830 >        ef.id85 =elec->electronID("eidVBTFCom85");
1831 >        ef.id85r=elec->electronID("eidVBTFRel85");
1832 >        ef.id80 =elec->electronID("eidVBTFCom80");
1833 >        ef.id80r=elec->electronID("eidVBTFRel80");
1834 >        ef.id70 =elec->electronID("eidVBTFCom70");
1835 >        ef.id70r=elec->electronID("eidVBTFRel70");
1836 >        ef.mvaOut=elec->electronID("mvaNonTrigV0");
1837 >        ef.mvaOutTrig=elec->electronID("mvaTrigV0");
1838 >        
1839 >            //Electron trigger matching
1840 >        for (int itrig = 0; itrig != ntrigs; ++itrig){
1841 >            std::string trigName=triggerNames_.triggerName(itrig);
1842 >            if( (elec->triggerObjectMatchesByPath(trigName).size() != 0) ){
1843 >                ef.hltMatchedBits.push_back(itrig);
1844 >                if(verbose_){
1845 >                    std::clog << "Trigger Matching box" << std::endl;
1846 >                    std::clog << "+++++++++++++++++++++++++++++++++++++++++++++++++" << std::endl;
1847 >                    std::clog << "Matching parameters are defined in the cfg" << std::endl;
1848 >                    std::clog << "Trigger bit = " << itrig << std::endl;
1849 >                    std::clog << "Trigger name = " << trigName << std::endl;
1850 >                    std::clog << "Trigger object matched collection size = " << elec->triggerObjectMatchesByPath(trigName).size() << std::endl;
1851 >                    std::clog << "Pat Electron pt = " << ef.p4.Pt() << " HLT object matched = " << elec->triggerObjectMatch(0)->p4().Pt() << std::endl;
1852 >                    std::clog << "+++++++++++++++++++++++++++++++++++++++++++++++++" << std::endl;
1853 >                }
1854 >            }
1855 >        }
1856 >        
1857 >        if(runOnMC_){
1858 >            const GenParticle* elecMc = elec->genLepton();
1859 >            if(elecMc!=0){
1860 >                ef.mcId=elecMc->pdgId();
1861 >                ef.mcFourMomentum=GENPTOLORP(elecMc);
1862 >                if(elecMc->mother()!=0) ef.mcMomId=elecMc->mother()->pdgId();
1863 >                if(elecMc->mother()!=0 && elecMc->mother()->mother()!=0) ef.mcgMomId=elecMc->mother()->mother()->pdgId();
1864 >            }}
1865 >        hbbInfo->eleInfo.push_back(ef);
1866 >    }
1867 >    
1868 >    if(verbose_)
1869 >        std::cout << " INPUT taus "<<taus.size()<<std::endl;
1870 >    for(edm::View<pat::Tau>::const_iterator tau = taus.begin(); tau!=taus.end(); ++tau){
1871 >        VHbbEvent::TauInfo tf;
1872 >        tf.p4=GENPTOLORP(tau);
1873 >        tf.charge=tau->charge();
1874 >        tf.tIso=tau->trackIso();
1875 >        tf.eIso=tau->ecalIso();
1876 >        tf.hIso=tau->hcalIso();
1877 >        Geom::Phi<double> deltaphi(tau->phi()-atan2(hbbInfo->pfmet.p4.Py(),hbbInfo->pfmet.p4.Px()));
1878 >        double acop = deltaphi.value();
1879 >        tf.acop=acop;
1880 >        if (tau->isTauIDAvailable("againstElectronLoose")) tf.againstElectronLoose=tau->tauID("againstElectronLoose");
1881 >        if (tau->isTauIDAvailable("againstElectronMedium")) tf.againstElectronMedium=tau->tauID("againstElectronMedium");
1882 >        if (tau->isTauIDAvailable("againstElectronTight")) tf.againstElectronTight=tau->tauID("againstElectronTight");
1883 >        if (tau->isTauIDAvailable("againstMuonLoose")) tf.againstMuonLoose=tau->tauID("againstMuonLoose");
1884 >        if (tau->isTauIDAvailable("againstMuonTight")) tf.againstMuonTight=tau->tauID("againstMuonTight");
1885 >        if (tau->isTauIDAvailable("byLooseIsolation")) tf.byLooseIsolation=tau->tauID("byLooseIsolation");
1886 >        if (tau->isTauIDAvailable("byMediumIsolation")) tf.byMediumIsolation=tau->tauID("byMediumIsolation");
1887 >        if (tau->isTauIDAvailable("byTightIsolation")) tf.byTightIsolation=tau->tauID("byTightIsolation");
1888 >        if (tau->isTauIDAvailable("byVLooseIsolation")) tf.byVLooseIsolation=tau->tauID("byVLooseIsolation");
1889 >        if (tau->isTauIDAvailable("decayModeFinding")) tf.decayModeFinding=tau->tauID("decayModeFinding");
1890 >        if (tau->isTauIDAvailable("byIsolation")) tf.byIsolation=tau->tauID("byIsolation");
1891 >        if (tau->isTauIDAvailable("trackIsolation")) tf.trackIsolation=tau->tauID("trackIsolation");
1892 >        if (tau->isTauIDAvailable("byTaNCfrOnePercent")) tf.byTaNCfrOnePercent=tau->tauID("byTaNCfrOnePercent");
1893 >        if (tau->isTauIDAvailable("byTaNCfrHalfPercent")) tf.byTaNCfrHalfPercent=tau->tauID("byTaNCfrHalfPercent");
1894 >        if (tau->isTauIDAvailable("byTaNCfrQuarterPercent")) tf.byTaNCfrQuarterPercent=tau->tauID("byTaNCfrQuarterPercent");
1895 >        if (tau->isTauIDAvailable("byTaNCfrTenthPercent")) tf.byTaNCfrTenthPercent=tau->tauID("byTaNCfrTenthPercent");
1896 >        if (tau->isTauIDAvailable("byTaNC")) tf.byTaNC=tau->tauID("byTaNC");
1897 >        if (tau->isTauIDAvailable("byLooseCombinedIsolationDeltaBetaCorr")) tf.byLooseCombinedIsolationDeltaBetaCorr=tau->tauID("byLooseCombinedIsolationDeltaBetaCorr");
1898 >        if (tau->isTauIDAvailable("againstElectronMVA")) tf.againstElectronMVA=tau->tauID("againstElectronMVA");
1899 >        if (tau->isPFTau()) {
1900 >            tf.isolationPFChargedHadrCandsPtSum = tau->isolationPFChargedHadrCandsPtSum();
1901 >            tf.isolationPFGammaCandsEtSum = tau->isolationPFGammaCandsEtSum();
1902 >            if (tau->leadPFChargedHadrCand().isAvailable()) tf.leadPFChargedHadrCandPt = tau->leadPFChargedHadrCand()->pt();
1903 >            tf.NsignalPFChargedHadrCands = tau->signalPFChargedHadrCands().size();
1904 >            tf.NsignalPFGammaCands = tau->signalPFGammaCands().size();
1905 >        }
1906 >        hbbInfo->tauInfo.push_back(tf);
1907 >        if (verbose_) {
1908 >            std::cout << "SCZ DEBUG: againstElectronLoose is " << tf.againstElectronLoose << std::endl;
1909 >            std::cout << "SCZ DEBUG: againstElectronMedium is " << tf.againstElectronMedium << std::endl;
1910 >            std::cout << "SCZ DEBUG: againstElectronTight is " << tf.againstElectronTight << std::endl;
1911 >            std::cout << "SCZ DEBUG: againstMuonLoose is " << tf.againstMuonLoose << std::endl;
1912 >            std::cout << "SCZ DEBUG: againstMuonTight is " << tf.againstMuonTight << std::endl;
1913 >            std::cout << "SCZ DEBUG: byLooseIsolation is " << tf.byLooseIsolation << std::endl;
1914 >            std::cout << "SCZ DEBUG: byMediumIsolation is " << tf.byMediumIsolation << std::endl;
1915 >            std::cout << "SCZ DEBUG: byTightIsolation is " << tf.byTightIsolation << std::endl;
1916 >            std::cout << "SCZ DEBUG: byVLooseIsolation is " << tf.byVLooseIsolation << std::endl;
1917 >            std::cout << "SCZ DEBUG: decayModeFinding is " << tf.decayModeFinding << std::endl;
1918 >            std::cout << "SCZ DEBUG: byIsolation is " << tf.byIsolation<< std::endl;
1919 >            std::cout << "SCZ DEBUG: trackIsolation is " << tf.trackIsolation << std::endl;
1920 >            std::cout << "SCZ DEBUG: byTaNCfrOnePercent is " << tf.byTaNCfrOnePercent << std::endl;
1921 >            std::cout << "SCZ DEBUG: byTaNCfrHalfPercent is " << tf.byTaNCfrHalfPercent << std::endl;
1922 >            std::cout << "SCZ DEBUG: byTaNCfrQuarterPercent is " << tf.byTaNCfrQuarterPercent << std::endl;
1923 >            std::cout << "SCZ DEBUG: byTaNCfrTenthPercent is " << tf.byTaNCfrTenthPercent << std::endl;
1924 >            std::cout << "SCZ DEBUG: byTaNC is " << tf.byTaNC << std::endl;
1925 >            std::cout << "SCZ DEBUG: isolationPFChargedHadrCandsPtSum is " << tf.isolationPFChargedHadrCandsPtSum << std::endl;
1926 >            std::cout << "SCZ DEBUG: isolationPFGammaCandsEtSum is " << tf.isolationPFGammaCandsEtSum << std::endl;
1927 >            std::cout << "SCZ DEBUG: isolationPFGammaCandsEtSum is " << tf.leadPFChargedHadrCandPt << std::endl;
1928 >            std::cout << "SCZ DEBUG: NsignalPFChargedHadrCands is " << tf.NsignalPFChargedHadrCands << std::endl;
1929 >            std::cout << "SCZ DEBUG: NsignalPFGammaCands is " << tf.NsignalPFGammaCands << std::endl;
1930 >            std::cout << "SCZ DEBUG: byLooseCombinedIsolationDeltaBetaCorr is " << tf.byLooseCombinedIsolationDeltaBetaCorr << std::endl;
1931 >            std::cout << "SCZ DEBUG: againstElectronMVA is " << tf.againstElectronMVA << std::endl;
1932 >        }
1933      }
1934 <  }
1935 <  
1936 <
1937 < /* end of 2012 ELEID*/
1938 <
1939 <    //
1940 <    // fill eleids
1941 <    //    
1942 < /*    ef.id95 = elec->electronID("simpleEleId95cIso");
1943 <    ef.id85 = elec->electronID("simpleEleId85cIso");
1944 <    ef.id70 = elec->electronID("simpleEleId70cIso");
1945 <    ef.id95r = elec->electronID("simpleEleId95relIso");
1946 <    ef.id70r = elec->electronID("simpleEleId70relIso");
1947 <    ef.id85r = elec->electronID("simpleEleId85relIso");
1948 < */
1949 <    ef.id95 =elec->electronID("eidVBTFCom95");
1950 <    ef.id95r=elec->electronID("eidVBTFRel95");
1951 <    ef.id85 =elec->electronID("eidVBTFCom85");
1952 <    ef.id85r=elec->electronID("eidVBTFRel85");
1953 <    ef.id80 =elec->electronID("eidVBTFCom80");
1954 <    ef.id80r=elec->electronID("eidVBTFRel80");
1955 <    ef.id70 =elec->electronID("eidVBTFCom70");
1956 <    ef.id70r=elec->electronID("eidVBTFRel70");
1957 <    ef.mvaOut=elec->electronID("mvaNonTrigV0");
1641 <    ef.mvaOutTrig=elec->electronID("mvaTrigV0");
1642 <
1643 <    //Electron trigger matching
1644 <    for (int itrig = 0; itrig != ntrigs; ++itrig){
1645 <      std::string trigName=triggerNames_.triggerName(itrig);
1646 <      if( (elec->triggerObjectMatchesByPath(trigName).size() != 0) ){
1647 <        ef.hltMatchedBits.push_back(itrig);
1648 <        if(verbose_){
1649 <          std::clog << "Trigger Matching box" << std::endl;
1650 <          std::clog << "+++++++++++++++++++++++++++++++++++++++++++++++++" << std::endl;
1651 <          std::clog << "Matching parameters are defined in the cfg" << std::endl;
1652 <          std::clog << "Trigger bit = " << itrig << std::endl;
1653 <          std::clog << "Trigger name = " << trigName << std::endl;
1654 <          std::clog << "Trigger object matched collection size = " << elec->triggerObjectMatchesByPath(trigName).size() << std::endl;
1655 <          std::clog << "Pat Electron pt = " << ef.p4.Pt() << " HLT object matched = " << elec->triggerObjectMatch(0)->p4().Pt() << std::endl;
1656 <          std::clog << "+++++++++++++++++++++++++++++++++++++++++++++++++" << std::endl;
1657 <        }
1658 <      }
1934 >    
1935 >    CompareJetPtMuons ptComparatorMu;
1936 >    CompareJetPtElectrons ptComparatorE;
1937 >    CompareJetPtTaus ptComparatorTau;
1938 >    
1939 >    std::sort(hbbInfo->muInfo.begin(), hbbInfo->muInfo.end(), ptComparatorMu);
1940 >    std::sort(hbbInfo->eleInfo.begin(), hbbInfo->eleInfo.end(), ptComparatorE);
1941 >    std::sort(hbbInfo->tauInfo.begin(), hbbInfo->tauInfo.end(), ptComparatorTau);
1942 >    
1943 >    
1944 >    
1945 >    
1946 >    if (verbose_){
1947 >        std::cout <<" Pushing hbbInfo "<<std::endl;
1948 >        std::cout <<" SimpleJets1 = "<<hbbInfo->simpleJets.size()<<std::endl<<
1949 >        " SimpleJets2 = "<<hbbInfo->simpleJets2.size()<<std::endl<<
1950 >        " SubJets = "<<hbbInfo->subJets.size()<<std::endl<<
1951 >        " HardJets = "<<hbbInfo->hardJets.size()<<std::endl<<
1952 >        " FilterJets = "<<hbbInfo->filterJets.size()<<std::endl<<
1953 >        " Muons = "<<hbbInfo->muInfo.size()<<std::endl<<
1954 >        " Electrons = "<<hbbInfo->eleInfo.size()<<std::endl<<
1955 >        " Taus = "<<hbbInfo->tauInfo.size()<<std::endl<<
1956 >        " Electrons = "<<hbbInfo->eleInfo.size()<<std::endl<<
1957 >        "--------------------- "<<std::endl;
1958      }
1959 <
1960 <    if(runOnMC_){
1961 <      const GenParticle* elecMc = elec->genLepton();
1962 <      if(elecMc!=0){
1963 <        ef.mcId=elecMc->pdgId();
1964 <        ef.mcFourMomentum=GENPTOLORP(elecMc);
1965 <        if(elecMc->mother()!=0) ef.mcMomId=elecMc->mother()->pdgId();
1966 <        if(elecMc->mother()!=0 && elecMc->mother()->mother()!=0) ef.mcgMomId=elecMc->mother()->mother()->pdgId();
1668 <      }}
1669 <    hbbInfo->eleInfo.push_back(ef);
1670 <  }
1671 <
1672 <  if(verbose_)
1673 <    std::cout << " INPUT taus "<<taus.size()<<std::endl;
1674 <  for(edm::View<pat::Tau>::const_iterator tau = taus.begin(); tau!=taus.end(); ++tau){
1675 <    VHbbEvent::TauInfo tf;
1676 <    tf.p4=GENPTOLORP(tau);
1677 <    tf.charge=tau->charge();
1678 <    tf.tIso=tau->trackIso();
1679 <    tf.eIso=tau->ecalIso();
1680 <    tf.hIso=tau->hcalIso();
1681 <    Geom::Phi<double> deltaphi(tau->phi()-atan2(hbbInfo->pfmet.p4.Py(),hbbInfo->pfmet.p4.Px()));
1682 <    double acop = deltaphi.value();
1683 <    tf.acop=acop;
1684 <    if (tau->isTauIDAvailable("againstElectronLoose")) tf.againstElectronLoose=tau->tauID("againstElectronLoose");
1685 <    if (tau->isTauIDAvailable("againstElectronMedium")) tf.againstElectronMedium=tau->tauID("againstElectronMedium");
1686 <    if (tau->isTauIDAvailable("againstElectronTight")) tf.againstElectronTight=tau->tauID("againstElectronTight");
1687 <    if (tau->isTauIDAvailable("againstMuonLoose")) tf.againstMuonLoose=tau->tauID("againstMuonLoose");
1688 <    if (tau->isTauIDAvailable("againstMuonTight")) tf.againstMuonTight=tau->tauID("againstMuonTight");
1689 <    if (tau->isTauIDAvailable("byLooseIsolation")) tf.byLooseIsolation=tau->tauID("byLooseIsolation");
1690 <    if (tau->isTauIDAvailable("byMediumIsolation")) tf.byMediumIsolation=tau->tauID("byMediumIsolation");
1691 <    if (tau->isTauIDAvailable("byTightIsolation")) tf.byTightIsolation=tau->tauID("byTightIsolation");
1692 <    if (tau->isTauIDAvailable("byVLooseIsolation")) tf.byVLooseIsolation=tau->tauID("byVLooseIsolation");
1693 <    if (tau->isTauIDAvailable("decayModeFinding")) tf.decayModeFinding=tau->tauID("decayModeFinding");
1694 <    if (tau->isTauIDAvailable("byIsolation")) tf.byIsolation=tau->tauID("byIsolation");
1695 <    if (tau->isTauIDAvailable("trackIsolation")) tf.trackIsolation=tau->tauID("trackIsolation");
1696 <    if (tau->isTauIDAvailable("byTaNCfrOnePercent")) tf.byTaNCfrOnePercent=tau->tauID("byTaNCfrOnePercent");
1697 <    if (tau->isTauIDAvailable("byTaNCfrHalfPercent")) tf.byTaNCfrHalfPercent=tau->tauID("byTaNCfrHalfPercent");
1698 <    if (tau->isTauIDAvailable("byTaNCfrQuarterPercent")) tf.byTaNCfrQuarterPercent=tau->tauID("byTaNCfrQuarterPercent");
1699 <    if (tau->isTauIDAvailable("byTaNCfrTenthPercent")) tf.byTaNCfrTenthPercent=tau->tauID("byTaNCfrTenthPercent");
1700 <    if (tau->isTauIDAvailable("byTaNC")) tf.byTaNC=tau->tauID("byTaNC");
1701 <    if (tau->isTauIDAvailable("byLooseCombinedIsolationDeltaBetaCorr")) tf.byLooseCombinedIsolationDeltaBetaCorr=tau->tauID("byLooseCombinedIsolationDeltaBetaCorr");
1702 <    if (tau->isTauIDAvailable("againstElectronMVA")) tf.againstElectronMVA=tau->tauID("againstElectronMVA");
1703 <    if (tau->isPFTau()) {
1704 <      tf.isolationPFChargedHadrCandsPtSum = tau->isolationPFChargedHadrCandsPtSum();
1705 <      tf.isolationPFGammaCandsEtSum = tau->isolationPFGammaCandsEtSum();
1706 <      if (tau->leadPFChargedHadrCand().isAvailable()) tf.leadPFChargedHadrCandPt = tau->leadPFChargedHadrCand()->pt();
1707 <      tf.NsignalPFChargedHadrCands = tau->signalPFChargedHadrCands().size();
1708 <      tf.NsignalPFGammaCands = tau->signalPFGammaCands().size();
1709 <    }
1710 <    hbbInfo->tauInfo.push_back(tf);
1711 <    if (verbose_) {
1712 <      std::cout << "SCZ DEBUG: againstElectronLoose is " << tf.againstElectronLoose << std::endl;
1713 <      std::cout << "SCZ DEBUG: againstElectronMedium is " << tf.againstElectronMedium << std::endl;
1714 <      std::cout << "SCZ DEBUG: againstElectronTight is " << tf.againstElectronTight << std::endl;
1715 <      std::cout << "SCZ DEBUG: againstMuonLoose is " << tf.againstMuonLoose << std::endl;
1716 <      std::cout << "SCZ DEBUG: againstMuonTight is " << tf.againstMuonTight << std::endl;
1717 <      std::cout << "SCZ DEBUG: byLooseIsolation is " << tf.byLooseIsolation << std::endl;
1718 <      std::cout << "SCZ DEBUG: byMediumIsolation is " << tf.byMediumIsolation << std::endl;
1719 <      std::cout << "SCZ DEBUG: byTightIsolation is " << tf.byTightIsolation << std::endl;
1720 <      std::cout << "SCZ DEBUG: byVLooseIsolation is " << tf.byVLooseIsolation << std::endl;
1721 <      std::cout << "SCZ DEBUG: decayModeFinding is " << tf.decayModeFinding << std::endl;
1722 <      std::cout << "SCZ DEBUG: byIsolation is " << tf.byIsolation<< std::endl;
1723 <      std::cout << "SCZ DEBUG: trackIsolation is " << tf.trackIsolation << std::endl;
1724 <      std::cout << "SCZ DEBUG: byTaNCfrOnePercent is " << tf.byTaNCfrOnePercent << std::endl;
1725 <      std::cout << "SCZ DEBUG: byTaNCfrHalfPercent is " << tf.byTaNCfrHalfPercent << std::endl;
1726 <      std::cout << "SCZ DEBUG: byTaNCfrQuarterPercent is " << tf.byTaNCfrQuarterPercent << std::endl;
1727 <      std::cout << "SCZ DEBUG: byTaNCfrTenthPercent is " << tf.byTaNCfrTenthPercent << std::endl;
1728 <      std::cout << "SCZ DEBUG: byTaNC is " << tf.byTaNC << std::endl;
1729 <      std::cout << "SCZ DEBUG: isolationPFChargedHadrCandsPtSum is " << tf.isolationPFChargedHadrCandsPtSum << std::endl;
1730 <      std::cout << "SCZ DEBUG: isolationPFGammaCandsEtSum is " << tf.isolationPFGammaCandsEtSum << std::endl;
1731 <      std::cout << "SCZ DEBUG: isolationPFGammaCandsEtSum is " << tf.leadPFChargedHadrCandPt << std::endl;
1732 <      std::cout << "SCZ DEBUG: NsignalPFChargedHadrCands is " << tf.NsignalPFChargedHadrCands << std::endl;
1733 <      std::cout << "SCZ DEBUG: NsignalPFGammaCands is " << tf.NsignalPFGammaCands << std::endl;
1734 <      std::cout << "SCZ DEBUG: byLooseCombinedIsolationDeltaBetaCorr is " << tf.byLooseCombinedIsolationDeltaBetaCorr << std::endl;
1735 <      std::cout << "SCZ DEBUG: againstElectronMVA is " << tf.againstElectronMVA << std::endl;
1736 <    }
1737 <  }
1738 <
1739 <  CompareJetPtMuons ptComparatorMu;
1740 <  CompareJetPtElectrons ptComparatorE;
1741 <  CompareJetPtTaus ptComparatorTau;
1742 <
1743 <  std::sort(hbbInfo->muInfo.begin(), hbbInfo->muInfo.end(), ptComparatorMu);
1744 <  std::sort(hbbInfo->eleInfo.begin(), hbbInfo->eleInfo.end(), ptComparatorE);
1745 <  std::sort(hbbInfo->tauInfo.begin(), hbbInfo->tauInfo.end(), ptComparatorTau);
1746 <
1747 <
1748 <    
1749 <  
1750 <   if (verbose_){
1751 <     std::cout <<" Pushing hbbInfo "<<std::endl;
1752 <     std::cout <<" SimpleJets1 = "<<hbbInfo->simpleJets.size()<<std::endl<<
1753 <       " SimpleJets2 = "<<hbbInfo->simpleJets2.size()<<std::endl<<
1754 <       " SubJets = "<<hbbInfo->subJets.size()<<std::endl<<
1755 <       " HardJets = "<<hbbInfo->hardJets.size()<<std::endl<<
1756 <       " FilterJets = "<<hbbInfo->filterJets.size()<<std::endl<<
1757 <       " Muons = "<<hbbInfo->muInfo.size()<<std::endl<<
1758 <       " Electrons = "<<hbbInfo->eleInfo.size()<<std::endl<<
1759 <       " Taus = "<<hbbInfo->tauInfo.size()<<std::endl<<
1760 <       " Electrons = "<<hbbInfo->eleInfo.size()<<std::endl<<
1761 <       "--------------------- "<<std::endl;
1762 <  }
1763 <
1764 <
1765 <  iEvent.put(hbbInfo);
1766 <  iEvent.put(auxInfo);
1767 <
1768 <
1769 <  delete jecUnc;
1770 <
1959 >    
1960 >    
1961 >    iEvent.put(hbbInfo);
1962 >    iEvent.put(auxInfo);
1963 >    
1964 >    
1965 >    delete jecUnc;
1966 >    
1967   }
1968 <  
1968 >
1969   void
1970   HbbAnalyzerNew::fillMuBlock(edm::View<pat::Muon>::const_iterator mu, int muInfo[15])
1971   {
1972 <  if(muon::isGoodMuon(*mu,muon::TMLastStationLoose)) muInfo[0]=1;
1973 <  if(muon::isGoodMuon(*mu,muon::TMLastStationTight)) muInfo[1]=1;
1974 <  if(muon::isGoodMuon(*mu,muon::TM2DCompatibilityLoose)) muInfo[2]=1;
1975 <  if(muon::isGoodMuon(*mu,muon::TM2DCompatibilityTight)) muInfo[3]=1;
1976 <  if(muon::isGoodMuon(*mu,muon::TMOneStationLoose)) muInfo[4]=1;
1977 <  if(muon::isGoodMuon(*mu,muon::TMOneStationTight)) muInfo[5]=1;
1978 <  if(muon::isGoodMuon(*mu,muon::TMLastStationOptimizedLowPtLoose)) muInfo[6]=1;
1979 <  if(muon::isGoodMuon(*mu,muon::TMLastStationOptimizedLowPtTight))muInfo[7]=1;
1980 <  if(muon::isGoodMuon(*mu,muon::TMOneStationAngLoose)) muInfo[8]=1;
1981 <  if(muon::isGoodMuon(*mu,muon::TMOneStationAngTight)) muInfo[9]=1;
1982 <  if(muon::isGoodMuon(*mu,muon::TMLastStationAngLoose)) muInfo[10]=1;
1983 <  if(muon::isGoodMuon(*mu,muon::TMLastStationAngTight)) muInfo[11]=1;
1984 <  if(muon::isGoodMuon(*mu,muon::GMTkChiCompatibility)) muInfo[12]=1;
1985 <  if(muon::isGoodMuon(*mu,muon::GMStaChiCompatibility)) muInfo[13]=1;
1986 <  if(muon::isGoodMuon(*mu,muon::GMTkKinkTight)) muInfo[14]=1;
1972 >    if(muon::isGoodMuon(*mu,muon::TMLastStationLoose)) muInfo[0]=1;
1973 >    if(muon::isGoodMuon(*mu,muon::TMLastStationTight)) muInfo[1]=1;
1974 >    if(muon::isGoodMuon(*mu,muon::TM2DCompatibilityLoose)) muInfo[2]=1;
1975 >    if(muon::isGoodMuon(*mu,muon::TM2DCompatibilityTight)) muInfo[3]=1;
1976 >    if(muon::isGoodMuon(*mu,muon::TMOneStationLoose)) muInfo[4]=1;
1977 >    if(muon::isGoodMuon(*mu,muon::TMOneStationTight)) muInfo[5]=1;
1978 >    if(muon::isGoodMuon(*mu,muon::TMLastStationOptimizedLowPtLoose)) muInfo[6]=1;
1979 >    if(muon::isGoodMuon(*mu,muon::TMLastStationOptimizedLowPtTight))muInfo[7]=1;
1980 >    if(muon::isGoodMuon(*mu,muon::TMOneStationAngLoose)) muInfo[8]=1;
1981 >    if(muon::isGoodMuon(*mu,muon::TMOneStationAngTight)) muInfo[9]=1;
1982 >    if(muon::isGoodMuon(*mu,muon::TMLastStationAngLoose)) muInfo[10]=1;
1983 >    if(muon::isGoodMuon(*mu,muon::TMLastStationAngTight)) muInfo[11]=1;
1984 >    if(muon::isGoodMuon(*mu,muon::GMTkChiCompatibility)) muInfo[12]=1;
1985 >    if(muon::isGoodMuon(*mu,muon::GMStaChiCompatibility)) muInfo[13]=1;
1986 >    if(muon::isGoodMuon(*mu,muon::GMTkKinkTight)) muInfo[14]=1;
1987   }
1988  
1989 < // ------------ method called once each job just before starting event loop  ------------
1989 >    // ------------ method called once each job just before starting event loop  ------------
1990   void
1991   HbbAnalyzerNew::beginJob(){
1992   }
1993  
1994  
1995 < // ------------ method called once each job just after ending the event loop  ------------
1995 >    // ------------ method called once each job just after ending the event loop  ------------
1996   void
1997   HbbAnalyzerNew::endJob() {
1998   }
1999  
2000   TVector2 HbbAnalyzerNew::getTvect( const pat::Jet* patJet ){
2001 <
2002 <  TVector2 t_Vect(0,0);
2003 <  TVector2 null(0,0);
2004 <  TVector2 ci(0,0);
2005 <  TLorentzVector pi(0,0,0,0);
2006 <  TLorentzVector J(0,0,0,0);
2007 <  TVector2 r(0,0);
2008 <  double patJetpfcPt = 1e10;
2009 <  double r_mag = 1e10;
2010 <  unsigned int nOfconst = 0;
2011 <
2012 <
2013 <  if (patJet->isPFJet() == false) {
2014 <    return t_Vect;
2015 <  }
2016 <  
2017 <
2018 <  //re-reconstruct the jet direction with the charged tracks
2019 <  std::vector<reco::PFCandidatePtr>
2001 >    
2002 >    TVector2 t_Vect(0,0);
2003 >    TVector2 null(0,0);
2004 >    TVector2 ci(0,0);
2005 >    TLorentzVector pi(0,0,0,0);
2006 >    TLorentzVector J(0,0,0,0);
2007 >    TVector2 r(0,0);
2008 >    double patJetpfcPt = 1e10;
2009 >    double r_mag = 1e10;
2010 >    unsigned int nOfconst = 0;
2011 >    
2012 >    
2013 >    if (patJet->isPFJet() == false) {
2014 >        return t_Vect;
2015 >    }
2016 >    
2017 >    
2018 >        //re-reconstruct the jet direction with the charged tracks
2019 >    std::vector<reco::PFCandidatePtr>
2020      patJetpfc = patJet->getPFConstituents();
2021 <  for(size_t idx = 0; idx < patJetpfc.size(); idx++){
2022 <    if( patJetpfc.at(idx)->charge() != 0 ){
2023 <      pi.SetPtEtaPhiE( patJetpfc.at(idx)->pt(), patJetpfc.at(idx)->eta(), patJetpfc.at(idx)->phi(), patJetpfc.at(idx)->energy() );
2024 <      J += pi;
2025 <      nOfconst++;
2026 <    }
2027 <  }
2028 < // if there are less than two charged tracks do not calculate the pull (there is not enough info). It returns a null vector
2029 <
2030 <  if( nOfconst < 2 )
2031 <    return null;
2032 <  
2033 <
2034 <
2035 <  TVector2 v_J( J.Rapidity(), J.Phi() );
2036 < //calculate TVector using only charged tracks
2037 <  for(size_t idx = 0; idx < patJetpfc.size(); idx++){
2038 <    if( patJetpfc.at(idx)->charge() != 0  ){
2039 <      patJetpfcPt = patJetpfc.at(idx)->pt();
2040 <      pi.SetPtEtaPhiE( patJetpfc.at(idx)->pt(), patJetpfc.at(idx)->eta(), patJetpfc.at(idx)->phi(), patJetpfc.at(idx)->energy() );
2041 <      r.Set( pi.Rapidity() - J.Rapidity(), Geom::deltaPhi( patJetpfc.at(idx)->phi(), J.Phi() ) );
2042 <      r_mag = r.Mod();
2043 <      t_Vect += ( patJetpfcPt / J.Pt() ) * r_mag * r;
2044 <    }
2045 <  }
2046 <
2047 <  
2048 <  return t_Vect;
2049 <  
2021 >    for(size_t idx = 0; idx < patJetpfc.size(); idx++){
2022 >        if( patJetpfc.at(idx)->charge() != 0 ){
2023 >            pi.SetPtEtaPhiE( patJetpfc.at(idx)->pt(), patJetpfc.at(idx)->eta(), patJetpfc.at(idx)->phi(), patJetpfc.at(idx)->energy() );
2024 >            J += pi;
2025 >            nOfconst++;
2026 >        }
2027 >    }
2028 >        // if there are less than two charged tracks do not calculate the pull (there is not enough info). It returns a null vector
2029 >    
2030 >    if( nOfconst < 2 )
2031 >        return null;
2032 >    
2033 >    
2034 >    
2035 >    TVector2 v_J( J.Rapidity(), J.Phi() );
2036 >        //calculate TVector using only charged tracks
2037 >    for(size_t idx = 0; idx < patJetpfc.size(); idx++){
2038 >        if( patJetpfc.at(idx)->charge() != 0  ){
2039 >            patJetpfcPt = patJetpfc.at(idx)->pt();
2040 >            pi.SetPtEtaPhiE( patJetpfc.at(idx)->pt(), patJetpfc.at(idx)->eta(), patJetpfc.at(idx)->phi(), patJetpfc.at(idx)->energy() );
2041 >            r.Set( pi.Rapidity() - J.Rapidity(), Geom::deltaPhi( patJetpfc.at(idx)->phi(), J.Phi() ) );
2042 >            r_mag = r.Mod();
2043 >            t_Vect += ( patJetpfcPt / J.Pt() ) * r_mag * r;
2044 >        }
2045 >    }
2046 >    
2047 >    
2048 >    return t_Vect;
2049 >    
2050   }
2051  
2052   TLorentzVector HbbAnalyzerNew::getChargedTracksMomentum(const pat::Jet* patJet ){
2053 <  //  return TLorentzVector();
2054 <  TLorentzVector pi(0,0,0,0);
2055 <  TLorentzVector v_j1(0,0,0,0);
2056 <
2057 <
2058 <  //  std::cout <<"fff ECCCCCCOOOOO "<<patJet->isPFJet()<<std::endl;
2059 <
2060 <  if (patJet->isPFJet() == false ){
2061 <      v_j1 = GENPTOLORP(patJet);
2062 <      return v_j1;
2063 <  }
2064 <  std::vector<reco::PFCandidatePtr>
2053 >        //  return TLorentzVector();
2054 >    TLorentzVector pi(0,0,0,0);
2055 >    TLorentzVector v_j1(0,0,0,0);
2056 >    
2057 >    
2058 >        //  std::cout <<"fff ECCCCCCOOOOO "<<patJet->isPFJet()<<std::endl;
2059 >    
2060 >    if (patJet->isPFJet() == false ){
2061 >        v_j1 = GENPTOLORP(patJet);
2062 >        return v_j1;
2063 >    }
2064 >    std::vector<reco::PFCandidatePtr>
2065      j1pfc = patJet->getPFConstituents();
2066 <  for(size_t idx = 0; idx < j1pfc.size(); idx++){
2067 <    if( j1pfc.at(idx)->charge() != 0 ){
2068 <      pi.SetPtEtaPhiE( j1pfc.at(idx)->pt(), j1pfc.at(idx)->eta(), j1pfc.at(idx)->phi(), j1pfc.at(idx)->energy() );
2069 <      v_j1 += pi;
2070 <    }
2071 <  }
2072 <  return v_j1;
2073 <  //re-
2066 >    for(size_t idx = 0; idx < j1pfc.size(); idx++){
2067 >        if( j1pfc.at(idx)->charge() != 0 ){
2068 >            pi.SetPtEtaPhiE( j1pfc.at(idx)->pt(), j1pfc.at(idx)->eta(), j1pfc.at(idx)->phi(), j1pfc.at(idx)->energy() );
2069 >            v_j1 += pi;
2070 >        }
2071 >    }
2072 >    return v_j1;
2073 >        //re-
2074   }
2075  
2076  
2077 < //Btagging scale factors
2077 >    //Btagging scale factors
2078   void HbbAnalyzerNew::fillScaleFactors(VHbbEvent::SimpleJet& sj, BTagSFContainer iSF){
2079 <
2080 <
2081 <  BinningPointByMap measurePoint;
2082 <  //for a USDG
2083 <  //for CB jets
2084 <  //scale factor 1 for CB jets over 240GeV/c
2085 <  if( TMath::Abs(sj.flavour) == 4 or TMath::Abs(sj.flavour) == 5 ){
2086 <    measurePoint.insert( BinningVariables::JetEt, sj.p4.Et() );
2087 <    measurePoint.insert( BinningVariables::JetAbsEta, fabs(sj.p4.Eta()) );
2088 <    if( iSF.BTAGSF_CSVL->isResultOk(PerformanceResult::BTAGBEFFCORR , measurePoint) ){
2089 <      sj.SF_CSVL = iSF.BTAGSF_CSVL->getResult(PerformanceResult::BTAGBEFFCORR , measurePoint);
2090 <      sj.SF_CSVLerr = iSF.BTAGSF_CSVL->getResult(PerformanceResult::BTAGBERRCORR , measurePoint);        
2091 <      if(verbose_){
2092 <        std::clog << "C/B Jet flavour = " << sj.flavour << std::endl;
2093 <        std::clog << "C/B Jet Et = " << sj.p4.Et() << std::endl;
2094 <        std::clog << "C/B Jet eta = " << sj.p4.Eta() << std::endl;          
2095 <        std::clog << "C/B CSVL Scale Factor = " << sj.SF_CSVL << std::endl;
2096 <        std::clog << "C/B CSVL Scale Factor error = " << sj.SF_CSVLerr << std::endl;
2097 <      }
2098 <    }
2099 <    if( iSF.BTAGSF_CSVM->isResultOk(PerformanceResult::BTAGBEFFCORR , measurePoint) ){
2100 <      sj.SF_CSVM = iSF.BTAGSF_CSVM->getResult(PerformanceResult::BTAGBEFFCORR , measurePoint);
2101 <      sj.SF_CSVMerr = iSF.BTAGSF_CSVM->getResult(PerformanceResult::BTAGBERRCORR , measurePoint);        
2102 <    }
2103 <    if( iSF.BTAGSF_CSVT->isResultOk(PerformanceResult::BTAGBEFFCORR , measurePoint) ){
2104 <      sj.SF_CSVT = iSF.BTAGSF_CSVT->getResult(PerformanceResult::BTAGBEFFCORR , measurePoint);
2105 <      sj.SF_CSVTerr = iSF.BTAGSF_CSVT->getResult(PerformanceResult::BTAGBERRCORR , measurePoint);        
2106 <    }
2107 <    else{
2108 <      if(verbose_){
2109 <        std::cerr << "No SF found in the database for this jet" << std::endl;
2110 <        std::clog << "No SF found: Jet flavour = " << sj.flavour << std::endl;
2111 <        std::clog << "No SF found: Jet Et = " << sj.p4.Et() << std::endl;
2112 <        std::clog << "No SF found: Jet eta = " << sj.p4.Eta() << std::endl;
2113 <      }
2114 <    }
2115 <  }
2116 <  else {
2117 <    measurePoint.insert( BinningVariables::JetEt, sj.p4.Et() );
2118 <    measurePoint.insert( BinningVariables::JetAbsEta, fabs(sj.p4.Eta()) );
2119 <    if( iSF.MISTAGSF_CSVL->isResultOk(PerformanceResult::BTAGLEFFCORR , measurePoint) ){
2120 <      sj.SF_CSVL = iSF.MISTAGSF_CSVL->getResult(PerformanceResult::BTAGLEFFCORR , measurePoint);
2121 <      sj.SF_CSVLerr = iSF.MISTAGSF_CSVL->getResult(PerformanceResult::BTAGLERRCORR , measurePoint);
2122 <      if(verbose_){
2123 <        std::clog << "Light Jet flavour = " << sj.flavour << std::endl;
2124 <        std::clog << "Light Jet Et = " << sj.p4.Et() << std::endl;
2125 <        std::clog << "Light Jet eta = " << sj.p4.Eta() << std::endl;        
2126 <        std::clog << "Light CSVL Scale Factor = " << sj.SF_CSVL << std::endl;
2127 <        std::clog << "Light CSVL Scale Factor error = " << sj.SF_CSVLerr << std::endl;
2128 <      }
2129 <    }
2130 <    if( iSF.MISTAGSF_CSVM->isResultOk(PerformanceResult::BTAGLEFFCORR , measurePoint) ){
2131 <      sj.SF_CSVM = iSF.MISTAGSF_CSVM->getResult(PerformanceResult::BTAGLEFFCORR , measurePoint);
2132 <      sj.SF_CSVMerr = iSF.MISTAGSF_CSVM->getResult(PerformanceResult::BTAGLERRCORR , measurePoint);
2133 <    }
2134 <    if( iSF.MISTAGSF_CSVT->isResultOk(PerformanceResult::BTAGLEFFCORR , measurePoint) ){
2135 <      sj.SF_CSVT = iSF.MISTAGSF_CSVT->getResult(PerformanceResult::BTAGLEFFCORR , measurePoint);
2136 <      sj.SF_CSVTerr = iSF.MISTAGSF_CSVT->getResult(PerformanceResult::BTAGLERRCORR , measurePoint);
2137 <    }
2138 <    else{
2139 <      if(verbose_){
2140 <        std::cerr << "No SF found in the database for this jet" << std::endl;
2141 <        std::clog << "No SF found: Jet flavour = " << sj.flavour << std::endl;
2142 <        std::clog << "No SF found: Jet Et = " << sj.p4.Et() << std::endl;
2143 <        std::clog << "No SF found: Jet eta = " << sj.p4.Eta() << std::endl;
2144 <      }
2079 >    
2080 >    
2081 >    BinningPointByMap measurePoint;
2082 >        //for a USDG
2083 >        //for CB jets
2084 >        //scale factor 1 for CB jets over 240GeV/c
2085 >    if( TMath::Abs(sj.flavour) == 4 or TMath::Abs(sj.flavour) == 5 ){
2086 >        measurePoint.insert( BinningVariables::JetEt, sj.p4.Et() );
2087 >        measurePoint.insert( BinningVariables::JetAbsEta, fabs(sj.p4.Eta()) );
2088 >        if( iSF.BTAGSF_CSVL->isResultOk(PerformanceResult::BTAGBEFFCORR , measurePoint) ){
2089 >            sj.SF_CSVL = iSF.BTAGSF_CSVL->getResult(PerformanceResult::BTAGBEFFCORR , measurePoint);
2090 >            sj.SF_CSVLerr = iSF.BTAGSF_CSVL->getResult(PerformanceResult::BTAGBERRCORR , measurePoint);  
2091 >            if(verbose_){
2092 >                std::clog << "C/B Jet flavour = " << sj.flavour << std::endl;
2093 >                std::clog << "C/B Jet Et = " << sj.p4.Et() << std::endl;
2094 >                std::clog << "C/B Jet eta = " << sj.p4.Eta() << std::endl;          
2095 >                std::clog << "C/B CSVL Scale Factor = " << sj.SF_CSVL << std::endl;
2096 >                std::clog << "C/B CSVL Scale Factor error = " << sj.SF_CSVLerr << std::endl;
2097 >            }
2098 >        }
2099 >        if( iSF.BTAGSF_CSVM->isResultOk(PerformanceResult::BTAGBEFFCORR , measurePoint) ){
2100 >            sj.SF_CSVM = iSF.BTAGSF_CSVM->getResult(PerformanceResult::BTAGBEFFCORR , measurePoint);
2101 >            sj.SF_CSVMerr = iSF.BTAGSF_CSVM->getResult(PerformanceResult::BTAGBERRCORR , measurePoint);  
2102 >        }
2103 >        if( iSF.BTAGSF_CSVT->isResultOk(PerformanceResult::BTAGBEFFCORR , measurePoint) ){
2104 >            sj.SF_CSVT = iSF.BTAGSF_CSVT->getResult(PerformanceResult::BTAGBEFFCORR , measurePoint);
2105 >            sj.SF_CSVTerr = iSF.BTAGSF_CSVT->getResult(PerformanceResult::BTAGBERRCORR , measurePoint);  
2106 >        }
2107 >        else{
2108 >            if(verbose_){
2109 >                std::cerr << "No SF found in the database for this jet" << std::endl;
2110 >                std::clog << "No SF found: Jet flavour = " << sj.flavour << std::endl;
2111 >                std::clog << "No SF found: Jet Et = " << sj.p4.Et() << std::endl;
2112 >                std::clog << "No SF found: Jet eta = " << sj.p4.Eta() << std::endl;
2113 >            }
2114 >        }
2115 >    }
2116 >    else {
2117 >        measurePoint.insert( BinningVariables::JetEt, sj.p4.Et() );
2118 >        measurePoint.insert( BinningVariables::JetAbsEta, fabs(sj.p4.Eta()) );
2119 >        if( iSF.MISTAGSF_CSVL->isResultOk(PerformanceResult::BTAGLEFFCORR , measurePoint) ){
2120 >            sj.SF_CSVL = iSF.MISTAGSF_CSVL->getResult(PerformanceResult::BTAGLEFFCORR , measurePoint);
2121 >            sj.SF_CSVLerr = iSF.MISTAGSF_CSVL->getResult(PerformanceResult::BTAGLERRCORR , measurePoint);
2122 >            if(verbose_){
2123 >                std::clog << "Light Jet flavour = " << sj.flavour << std::endl;
2124 >                std::clog << "Light Jet Et = " << sj.p4.Et() << std::endl;
2125 >                std::clog << "Light Jet eta = " << sj.p4.Eta() << std::endl;        
2126 >                std::clog << "Light CSVL Scale Factor = " << sj.SF_CSVL << std::endl;
2127 >                std::clog << "Light CSVL Scale Factor error = " << sj.SF_CSVLerr << std::endl;
2128 >            }
2129 >        }
2130 >        if( iSF.MISTAGSF_CSVM->isResultOk(PerformanceResult::BTAGLEFFCORR , measurePoint) ){
2131 >            sj.SF_CSVM = iSF.MISTAGSF_CSVM->getResult(PerformanceResult::BTAGLEFFCORR , measurePoint);
2132 >            sj.SF_CSVMerr = iSF.MISTAGSF_CSVM->getResult(PerformanceResult::BTAGLERRCORR , measurePoint);
2133 >        }
2134 >        if( iSF.MISTAGSF_CSVT->isResultOk(PerformanceResult::BTAGLEFFCORR , measurePoint) ){
2135 >            sj.SF_CSVT = iSF.MISTAGSF_CSVT->getResult(PerformanceResult::BTAGLEFFCORR , measurePoint);
2136 >            sj.SF_CSVTerr = iSF.MISTAGSF_CSVT->getResult(PerformanceResult::BTAGLERRCORR , measurePoint);
2137 >        }
2138 >        else{
2139 >            if(verbose_){
2140 >                std::cerr << "No SF found in the database for this jet" << std::endl;
2141 >                std::clog << "No SF found: Jet flavour = " << sj.flavour << std::endl;
2142 >                std::clog << "No SF found: Jet Et = " << sj.p4.Et() << std::endl;
2143 >                std::clog << "No SF found: Jet eta = " << sj.p4.Eta() << std::endl;
2144 >            }
2145 >        }
2146      }
1950  }
2147      
2148   }
2149  
2150   void HbbAnalyzerNew::setJecUnc(VHbbEvent::SimpleJet& sj,JetCorrectionUncertainty* jecunc){
2151 <  //
2152 <  // test
2153 <  //
2154 <
2155 <  //  return;
2156 <  double eta = sj.p4.Eta();
2157 <  double pt = sj.p4.Pt();
2158 <  
2159 <  jecunc->setJetEta(eta);
2160 <  jecunc->setJetPt(pt); // here you must use the CORRECTED jet pt
2161 <  double unc = jecunc->getUncertainty(true);
2162 <  sj.jecunc= unc;
2151 >        //
2152 >        // test
2153 >        //
2154 >    
2155 >        //  return;
2156 >    double eta = sj.p4.Eta();
2157 >    double pt = sj.p4.Pt();
2158 >    
2159 >    jecunc->setJetEta(eta);
2160 >    jecunc->setJetPt(pt); // here you must use the CORRECTED jet pt
2161 >    double unc = jecunc->getUncertainty(true);
2162 >    sj.jecunc= unc;
2163   }
2164  
2165  
2166   void HbbAnalyzerNew ::fillSimpleJet (VHbbEvent::SimpleJet& sj, edm::View<pat::Jet>::const_iterator jet_iter){
2167 <      sj.flavour = jet_iter->partonFlavour();
2168 <
2167 >    sj.flavour = jet_iter->partonFlavour();
2168 >    
2169      sj.tche=jet_iter->bDiscriminator("trackCountingHighEffBJetTags");
2170      sj.tchp=jet_iter->bDiscriminator("trackCountingHighPurBJetTags");
2171      sj.jp=jet_iter->bDiscriminator("jetProbabilityBJetTags");
# Line 1982 | Line 2178 | void HbbAnalyzerNew ::fillSimpleJet (VHb
2178      sj.charge=jet_iter->jetCharge();
2179      sj.ntracks=jet_iter->associatedTracks().size();
2180      sj.p4=GENPTOLORP(jet_iter);
2181 <    //    std::cout << " ECCO "<<sj.csv<< " "<< sj.p4.Pt()<<std::endl;
2181 >        //    std::cout << " ECCO "<<sj.csv<< " "<< sj.p4.Pt()<<std::endl;
2182      sj.chargedTracksFourMomentum=(getChargedTracksMomentum(&*(jet_iter)));
2183      sj.SF_CSVL=1;
2184      sj.SF_CSVM=1;
# Line 1990 | Line 2186 | void HbbAnalyzerNew ::fillSimpleJet (VHb
2186      sj.SF_CSVLerr=0;
2187      sj.SF_CSVMerr=0;
2188      sj.SF_CSVTerr=0;
1993
2189      
2190 <
2191 <
2190 >    
2191 >    
2192 >    
2193      
2194      if (jet_iter->isPFJet() == true) {
2195 <
2196 <      sj.chargedHadronEFraction = jet_iter-> chargedHadronEnergyFraction();
2197 <      sj.neutralHadronEFraction = jet_iter-> neutralHadronEnergyFraction ();
2198 <      sj.chargedEmEFraction = jet_iter-> chargedEmEnergyFraction ();
2199 <      sj.neutralEmEFraction = jet_iter-> neutralEmEnergyFraction ();
2200 <      sj.nConstituents = jet_iter->getPFConstituents().size();
2201 <      
2195 >        
2196 >        sj.chargedHadronEFraction = jet_iter-> chargedHadronEnergyFraction();
2197 >        sj.neutralHadronEFraction = jet_iter-> neutralHadronEnergyFraction ();
2198 >        sj.chargedEmEFraction = jet_iter-> chargedEmEnergyFraction ();
2199 >        sj.neutralEmEFraction = jet_iter-> neutralEmEnergyFraction ();
2200 >        sj.nConstituents = jet_iter->getPFConstituents().size();
2201 >        
2202      }
2203      sj.jetArea = jet_iter->jetArea();
2204 <    //
2205 <    // addtaginfo for csv
2206 <    //
2207 <
2208 <    //    if (jet_iter->hasTagInfo("SimpleSecondaryVertex")) {
2209 <
2204 >        //
2205 >        // addtaginfo for csv
2206 >        //
2207 >    
2208 >        //    if (jet_iter->hasTagInfo("SimpleSecondaryVertex")) {
2209 >    
2210      const reco::SecondaryVertexTagInfo * tf = jet_iter->tagInfoSecondaryVertex();
2211 <   if (tf){
2212 <      math::XYZTLorentzVectorD vertexSum;
2213 <      for(size_t vi=0;vi< tf->nVertices();vi++)
2214 <      {
2215 <        vertexSum+=tf->secondaryVertex(vi).p4();
2216 <      }
2217 <      sj.vtxP4 = GENPTOLOR(vertexSum);
2218 <
2219 <     if (tf->nVertices() >0){
2220 <        sj.vtxPosition = TVector3(tf->secondaryVertex(0).position().x(),tf->secondaryVertex(0).position().y(),tf->secondaryVertex(0).position().z());
2221 <        sj.vtxMass =  tf->secondaryVertex(0).p4().mass();
2222 <        sj.vtxNTracks = tf->secondaryVertex(0).nTracks();
2223 <        std::vector<reco::TrackBaseRef >::const_iterator tit =  tf->secondaryVertex(0).tracks_begin();
2224 <        for (; tit<  tf->secondaryVertex(0).tracks_end(); ++tit){
2225 <          sj.vtxTrackIds.push_back(tit->key());
2226 <        }
2227 <        Measurement1D m = tf->flightDistance(0);
2228 <        sj.vtx3dL = m.value();
2229 <        sj.vtx3deL = m.error();
2230 <     }
2211 >    if (tf){
2212 >        math::XYZTLorentzVectorD vertexSum;
2213 >        for(size_t vi=0;vi< tf->nVertices();vi++)
2214 >            {
2215 >            vertexSum+=tf->secondaryVertex(vi).p4();
2216 >            }
2217 >        sj.vtxP4 = GENPTOLOR(vertexSum);
2218 >        
2219 >        if (tf->nVertices() >0){
2220 >            sj.vtxPosition = TVector3(tf->secondaryVertex(0).position().x(),tf->secondaryVertex(0).position().y(),tf->secondaryVertex(0).position().z());
2221 >            sj.vtxMass =  tf->secondaryVertex(0).p4().mass();
2222 >            sj.vtxNTracks = tf->secondaryVertex(0).nTracks();
2223 >            std::vector<reco::TrackBaseRef >::const_iterator tit =  tf->secondaryVertex(0).tracks_begin();
2224 >            for (; tit<  tf->secondaryVertex(0).tracks_end(); ++tit){
2225 >                sj.vtxTrackIds.push_back(tit->key());
2226 >            }
2227 >            Measurement1D m = tf->flightDistance(0);
2228 >            sj.vtx3dL = m.value();
2229 >            sj.vtx3deL = m.error();
2230 >        }
2231      }
2232      
2233 <    // CSV track info
2233 >        // CSV track info
2234      const reco::SecondaryVertexTagInfo * svTagInfos = jet_iter->tagInfoSecondaryVertex();
2235      const reco::TrackIPTagInfo * ipTagInfos = jet_iter->tagInfoTrackIP();
2236      for (edm::RefVector<reco::TrackCollection>::const_iterator t = ipTagInfos->selectedTracks().begin(); t != ipTagInfos->selectedTracks().end(); t++){
2237 <      sj.btagTrackIds.push_back(t->key());
2237 >        sj.btagTrackIds.push_back(t->key());
2238      }// all btag IP selected tracks    
2239      std::vector<const reco::BaseTagInfo*> tagInfos;
2240      tagInfos.push_back(dynamic_cast<const reco::BaseTagInfo*>(ipTagInfos));
2241      tagInfos.push_back(dynamic_cast<const reco::BaseTagInfo*>(svTagInfos));
2242      JetTagComputer::TagInfoHelper helper(tagInfos);
2243      reco::TaggingVariableList varList = computer->taggingVariables(helper); // computer for getting CSV variables
2244 <      
2244 >    
2245      for(reco::TaggingVariableList::const_iterator iter = varList.begin(); iter != varList.end(); ++iter)
2246 <    {
2247 <      //std::cout << reco::TaggingVariableTokens[iter->first] << " = " << iter->second << std::endl;
2248 <      for (edm::RefVector<reco::TrackCollection>::const_iterator t = ipTagInfos->selectedTracks().begin(); t != ipTagInfos->selectedTracks().end(); t++){
2249 <        
2250 <        if (strcmp(reco::TaggingVariableTokens[iter->first], "trackMomentum") == 0 && (fabs((float)iter->second - (float)(*t)->p()) < 0.0001) ){
2251 <          sj.csvTrackIds.push_back(t->key());
2252 <        }// if tagged track
2253 <      }// loop on IPtracks        
2254 <    }// loop on CSV variables
2255 <
2246 >        {
2247 >            //std::cout << reco::TaggingVariableTokens[iter->first] << " = " << iter->second << std::endl;
2248 >        for (edm::RefVector<reco::TrackCollection>::const_iterator t = ipTagInfos->selectedTracks().begin(); t != ipTagInfos->selectedTracks().end(); t++){
2249 >            
2250 >            if (strcmp(reco::TaggingVariableTokens[iter->first], "trackMomentum") == 0 && (fabs((float)iter->second - (float)(*t)->p()) < 0.0001) ){
2251 >                sj.csvTrackIds.push_back(t->key());
2252 >            }// if tagged track
2253 >        }// loop on IPtracks        
2254 >        }// loop on CSV variables
2255 >    
2256      
2257      sj.btagNTracks= ipTagInfos->selectedTracks().size();
2258      sj.csvNTracks = sj.csvTrackIds.size();
2259 <
2260 <   //
2261 <    // add tVector
2262 <    //
2259 >    
2260 >        //
2261 >        // add tVector
2262 >        //
2263      sj.tVector = getTvect(&(*jet_iter));
2264 <
2264 >    
2265      sj.ptRaw = jet_iter->correctedJet(0).pt();
2266 <
2266 >    
2267      sj.ptLeadTrack =-9999.;
2268      if (jet_iter->isPFJet() == true) {
2269 <       std::vector <reco::PFCandidatePtr> constituents = jet_iter->getPFConstituents ();
2270 <       for (unsigned ic = 0; ic < constituents.size (); ++ic) {
2271 <         if ( constituents[ic]->particleId() > 3 ) continue;
2272 <         reco::TrackRef trackRef = constituents[ic]->trackRef();
2273 <       if ( trackRef.isNonnull() ) { if(trackRef->pt() > sj.ptLeadTrack) sj.ptLeadTrack=trackRef->pt(); }
2274 <      }
2275 <     }
2276 <
2277 <
2269 >        std::vector <reco::PFCandidatePtr> constituents = jet_iter->getPFConstituents ();
2270 >        for (unsigned ic = 0; ic < constituents.size (); ++ic) {
2271 >            if ( constituents[ic]->particleId() > 3 ) continue;
2272 >            reco::TrackRef trackRef = constituents[ic]->trackRef();
2273 >            if ( trackRef.isNonnull() ) { if(trackRef->pt() > sj.ptLeadTrack) sj.ptLeadTrack=trackRef->pt(); }
2274 >        }
2275 >    }
2276 >    
2277 >    
2278   }
2279  
2280   float HbbAnalyzerNew::metSignificance(const reco::MET * met)
2281   {
2282 < double sigmaX2= met->getSignificanceMatrix()(0,0);
2283 < double sigmaY2= met->getSignificanceMatrix()(1,1);
2284 < double significance = 0;
2285 < try {
2286 < if(sigmaX2<1.e10 && sigmaY2<1.e10) significance = met->significance();
2287 < }
2288 < catch(...)
2289 < {
2290 < std::cout << "PROBLEM WITH MET SIGNIFICANCE sigma X2 and Y2 are: " << sigmaX2 << " " << sigmaY2 << std::endl;
2291 < }
2292 < return significance;
2282 >    double sigmaX2= met->getSignificanceMatrix()(0,0);
2283 >    double sigmaY2= met->getSignificanceMatrix()(1,1);
2284 >    double significance = 0;
2285 >    try {
2286 >        if(sigmaX2<1.e10 && sigmaY2<1.e10) significance = met->significance();
2287 >    }
2288 >    catch(...)
2289 >    {
2290 >    std::cout << "PROBLEM WITH MET SIGNIFICANCE sigma X2 and Y2 are: " << sigmaX2 << " " << sigmaY2 << std::endl;
2291 >    }
2292 >    return significance;
2293   }
2294  
2295  
2296 < //define this as a plug-in
2296 >    //define this as a plug-in
2297   DEFINE_FWK_MODULE(HbbAnalyzerNew);

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