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Comparing UserCode/VHbbAnalysis/HbbAnalyzer/plugins/HbbAnalyzerNew.cc (file contents):
Revision 1.33 by tboccali, Tue Sep 13 10:10:06 2011 UTC vs.
Revision 1.52 by tboccali, Thu Oct 6 09:19:18 2011 UTC

# Line 17 | Line 17 | Implementation:
17   //
18   //
19  
20 +
21 + //uncomment to save also jet collections 1 and 4
22 + //#define ENABLE_SIMPLEJETS1
23 + //#define ENABLE_SIMPLEJETS4
24 +
25   #include "CondFormats/JetMETObjects/interface/JetCorrectorParameters.h"
26   #include "CondFormats/JetMETObjects/interface/JetCorrectionUncertainty.h"
27   #include "JetMETCorrections/Objects/interface/JetCorrector.h"
# Line 26 | Line 31 | Implementation:
31   #include "VHbbAnalysis/HbbAnalyzer/interface/HbbAnalyzerNew.h"
32   #include "SimDataFormats/PileupSummaryInfo/interface/PileupSummaryInfo.h"
33  
34 + #include "SimDataFormats/GeneratorProducts/interface/GenEventInfoProduct.h"
35 +
36   #define GENPTOLOR(a) TLorentzVector((a).px(), (a).py(), (a).pz(), (a).energy())
37   #define GENPTOLORP(a) TLorentzVector((a)->px(), (a)->py(), (a)->pz(), (a)->energy())
38  
# Line 60 | Line 67 | HbbAnalyzerNew::HbbAnalyzerNew(const edm
67    tauLabel_(iConfig.getParameter<edm::InputTag>("tauTag")),
68    metLabel_(iConfig.getParameter<edm::InputTag>("metTag")),
69    phoLabel_(iConfig.getParameter<edm::InputTag>("photonTag")),
63  dimuLabel_(iConfig.getParameter<edm::InputTag>("dimuTag")),
64  dielecLabel_(iConfig.getParameter<edm::InputTag>("dielecTag")),
70    hltResults_(iConfig.getParameter<edm::InputTag>("hltResultsTag")),
71    runOnMC_(iConfig.getParameter<bool>("runOnMC")), verbose_(iConfig.getUntrackedParameter<bool>("verbose")) {
72  
# Line 92 | Line 97 | void
97   HbbAnalyzerNew::produce(edm::Event& iEvent, const edm::EventSetup& iSetup){
98    using namespace edm;
99    using namespace reco;
100 <  
100 >
101 >
102    // JEC Uncertainty
103  
104    //  JetCorrectionUncertainty *jecUnc=0;
# Line 106 | Line 112 | HbbAnalyzerNew::produce(edm::Event& iEve
112    
113    std::auto_ptr<VHbbEvent> hbbInfo( new VHbbEvent() );  
114    std::auto_ptr<VHbbEventAuxInfo> auxInfo( new VHbbEventAuxInfo() );
115 <  
115 >
116 >
117 >  if (runOnMC_){
118 >    Handle<GenEventInfoProduct> evt_info;
119 >    iEvent.getByType(evt_info);
120 >    auxInfo->weightMCProd = evt_info->weight();
121 >  }
122 >  else
123 >    { auxInfo->weightMCProd =1.;}
124    //
125    // ??
126 <  
126 >  
127    // trigger
128  
129    // trigger
# Line 157 | Line 171 | HbbAnalyzerNew::produce(edm::Event& iEve
171    
172    auxInfo->pvInfo.firstPVInPT2 = TVector3(RecVtxFirst.x(), RecVtxFirst.y(), RecVtxFirst.z());
173    auxInfo->pvInfo.firstPVInProb = TVector3(RecVtx.x(), RecVtx.y(), RecVtx.z());
174 <
174 >  
175 >  (auxInfo->pvInfo).efirstPVInPT2 = (RecVtxFirst.error());
176 >  (auxInfo->pvInfo).efirstPVInProb = RecVtx.error();
177      
178    edm::Handle<double> rhoHandle;
179    iEvent.getByLabel(edm::InputTag("kt6PFJets", "rho"),rhoHandle);  
180    auxInfo->puInfo.rho = *rhoHandle;
181 <  
181 >  
182 >  edm::Handle<double> rho25Handle;
183 >  iEvent.getByLabel(edm::InputTag("kt6PFJets25", "rho"),rho25Handle);  
184 >  auxInfo->puInfo.rho25 = *rho25Handle;
185 >
186    edm::Handle<std::vector< PileupSummaryInfo> > puHandle;
187  
188    if (runOnMC_){
# Line 368 | Line 388 | HbbAnalyzerNew::produce(edm::Event& iEve
388    iEvent.getByLabel(tauLabel_,tauHandle);
389    edm::View<pat::Tau> taus = *tauHandle;
390  
371  edm::Handle<CandidateView> dimuons;
372  iEvent.getByLabel(dimuLabel_,dimuons);
373
374  edm::Handle<CandidateView> dielectrons;
375  iEvent.getByLabel(dielecLabel_,dielectrons);
391  
392    //BTAGGING SCALE FACTOR FROM DATABASE
393    //Combined Secondary Vertex Loose
394    edm::ESHandle<BtagPerformance> bTagSF_CSVL_;
395    iSetup.get<BTagPerformanceRecord>().get("BTAGCSVL",bTagSF_CSVL_);
381  const BtagPerformance & bTagSF_CSVL = *(bTagSF_CSVL_.product());
396    //Combined Secondary Vertex Medium
397    edm::ESHandle<BtagPerformance> bTagSF_CSVM_;
398    iSetup.get<BTagPerformanceRecord>().get("BTAGCSVM",bTagSF_CSVM_);
385  const BtagPerformance & bTagSF_CSVM = *(bTagSF_CSVM_.product());
399    //Combined Secondary Vertex Tight
400    edm::ESHandle<BtagPerformance> bTagSF_CSVT_;
401    iSetup.get<BTagPerformanceRecord>().get("BTAGCSVT",bTagSF_CSVT_);
389  const BtagPerformance & bTagSF_CSVT = *(bTagSF_CSVT_.product());
402  
403    edm::ESHandle<BtagPerformance> mistagSF_CSVL_;
404    iSetup.get<BTagPerformanceRecord>().get("MISTAGCSVL",mistagSF_CSVL_);
393  const BtagPerformance & mistagSF_CSVL = *(mistagSF_CSVL_.product());
405    //Combined Secondary Vertex Medium
406    edm::ESHandle<BtagPerformance> mistagSF_CSVM_;
407    iSetup.get<BTagPerformanceRecord>().get("MISTAGCSVM",mistagSF_CSVM_);
397  const BtagPerformance & mistagSF_CSVM = *(mistagSF_CSVM_.product());
408    //Combined Secondary Vertex Tight
409    edm::ESHandle<BtagPerformance> mistagSF_CSVT_;
410    iSetup.get<BTagPerformanceRecord>().get("MISTAGCSVT",mistagSF_CSVT_);
401  const BtagPerformance & mistagSF_CSVT = *(mistagSF_CSVT_.product());
411  
412   BTagSFContainer btagSFs;
413    btagSFs.BTAGSF_CSVL = (bTagSF_CSVL_.product());
# Line 408 | Line 417 | BTagSFContainer btagSFs;
417    btagSFs.MISTAGSF_CSVM = (mistagSF_CSVM_.product());
418    btagSFs.MISTAGSF_CSVT = (mistagSF_CSVT_.product());
419  
420 + #ifdef ENABLE_SIMPLEJETS1
421    for(edm::View<pat::Jet>::const_iterator jet_iter = simplejets1.begin(); jet_iter!=simplejets1.end(); ++jet_iter){
422      //     if(jet_iter->pt()>50)
423      //       njetscounter++;
424      VHbbEvent::SimpleJet sj;
425 +    //    std::cout <<" sj1"<<std::endl;
426      fillSimpleJet(sj,jet_iter);
427      //    if(!runOnMC_)
428  
# Line 427 | Line 438 | BTagSFContainer btagSFs;
438        //genJet
439        const reco::GenJet *gJ = jet_iter->genJet();
440        //physical parton for mother info ONLY
441 <      if( (jet_iter->genParton())
442 <          and (jet_iter->genParton()->mother()) )
443 <        sj.bestMCmomid=jet_iter->genParton()->mother()->pdgId();
441 >      if( (jet_iter->genParton()) ){
442 >        sj.bestMCid = jet_iter->genParton()->pdgId();
443 >        if( (jet_iter->genParton()->mother()) )
444 >          sj.bestMCmomid=jet_iter->genParton()->mother()->pdgId();
445 >      }
446        TLorentzVector gJp4;
447        if(gJ){
448          gJp4.SetPtEtaPhiE(gJ->pt(),gJ->eta(),gJ->phi(),gJ->energy());
449 <        sj. bestMCp4mom = gJp4;
449 >        sj.bestMCp4 = gJp4;
450          if(verbose_){
451            std::clog << "genJet matched Pt = " << gJp4.Pt() << std::endl;
452            std::clog << "genJet matched eta = " << gJp4.Eta() << std::endl;
# Line 446 | Line 459 | BTagSFContainer btagSFs;
459      hbbInfo->simpleJets.push_back(sj);
460      
461    }
462 + #endif //ENABLE_SIMPLEJETS1
463  
464    for(edm::View<pat::Jet>::const_iterator jet_iter = simplejets3.begin(); jet_iter!=simplejets3.end(); ++jet_iter){
465      //     if(jet_iter->pt()>50)
466      //       njetscounter++;
467      VHbbEvent::SimpleJet sj;
468 +    //    std::cout <<" sj3"<<std::endl;
469      fillSimpleJet(sj,jet_iter);
470      //    if(!runOnMC_)  
471    setJecUnc(sj,jecUnc);
# Line 466 | Line 481 | BTagSFContainer btagSFs;
481        //genJet
482        const reco::GenJet *gJ = jet_iter->genJet();
483        //physical parton for mother info ONLY
484 <      if( (jet_iter->genParton())
485 <          and (jet_iter->genParton()->mother()) )
486 <        sj.bestMCmomid=jet_iter->genParton()->mother()->pdgId();
484 >      if( (jet_iter->genParton()) ){
485 >        sj.bestMCid = jet_iter->genParton()->pdgId();
486 >        if( (jet_iter->genParton()->mother()) )
487 >          sj.bestMCmomid=jet_iter->genParton()->mother()->pdgId();
488 >      }
489        TLorentzVector gJp4;
490        if(gJ){
491          gJp4.SetPtEtaPhiE(gJ->pt(),gJ->eta(),gJ->phi(),gJ->energy());
492 <        sj. bestMCp4mom = gJp4;
492 >        sj.bestMCp4 = gJp4;
493          if(verbose_){
494            std::clog << "genJet matched Pt = " << gJp4.Pt() << std::endl;
495            std::clog << "genJet matched eta = " << gJp4.Eta() << std::endl;
# Line 486 | Line 503 | BTagSFContainer btagSFs;
503      
504    }
505  
506 + #ifdef ENABLE_SIMPLEJETS4
507    for(edm::View<pat::Jet>::const_iterator jet_iter = simplejets4.begin(); jet_iter!=simplejets4.end(); ++jet_iter){
508      //     if(jet_iter->pt()>50)
509      //       njetscounter++;
510      VHbbEvent::SimpleJet sj;
511 +    //    std::cout <<" sj4"<<std::endl;
512      fillSimpleJet(sj,jet_iter);
513      //    if(!runOnMC_)  
514      setJecUnc(sj,jecUnc);
# Line 505 | Line 524 | BTagSFContainer btagSFs;
524        //genJet
525        const reco::GenJet *gJ = jet_iter->genJet();
526        //physical parton for mother info ONLY
527 <      if( (jet_iter->genParton())
528 <          and (jet_iter->genParton()->mother()) )
529 <        sj.bestMCmomid=jet_iter->genParton()->mother()->pdgId();
527 >      if( (jet_iter->genParton()) ){
528 >        sj.bestMCid = jet_iter->genParton()->pdgId();
529 >        if( (jet_iter->genParton()->mother()) )
530 >          sj.bestMCmomid=jet_iter->genParton()->mother()->pdgId();
531 >      }
532        TLorentzVector gJp4;
533        if(gJ){
534          gJp4.SetPtEtaPhiE(gJ->pt(),gJ->eta(),gJ->phi(),gJ->energy());
535 <        sj. bestMCp4mom = gJp4;
535 >        sj.bestMCp4 = gJp4;
536          if(verbose_){
537            std::clog << "genJet matched Pt = " << gJp4.Pt() << std::endl;
538            std::clog << "genJet matched eta = " << gJp4.Eta() << std::endl;
# Line 524 | Line 545 | BTagSFContainer btagSFs;
545      hbbInfo->simpleJets4.push_back(sj);
546      
547    }
548 <
548 > #endif //ENABLE SIMPLEJETS4
549 >
550    
551    for(edm::View<pat::Jet>::const_iterator jet_iter = simplejets2.begin(); jet_iter!=simplejets2.end(); ++jet_iter){
552      
553      VHbbEvent::SimpleJet sj;
554 +    //    std::cout <<" sj2"<<std::endl;
555      fillSimpleJet(sj,jet_iter);    
556      //  if(!runOnMC_)  
557   setJecUnc(sj,jecUnc);
# Line 575 | Line 598 | BTagSFContainer btagSFs;
598      */
599      Particle::LorentzVector p4Jet = jet_iter->p4();
600  
578
601      if(runOnMC_){
602  
603        //BTV scale factors
# Line 585 | Line 607 | BTagSFContainer btagSFs;
607        //genJet
608        const reco::GenJet *gJ = jet_iter->genJet();
609        //physical parton for mother info ONLY
610 <      if( (jet_iter->genParton())
611 <          and (jet_iter->genParton()->mother()) )
612 <        sj.bestMCmomid=jet_iter->genParton()->mother()->pdgId();
610 >      if( (jet_iter->genParton()) ){
611 >        sj.bestMCid = jet_iter->genParton()->pdgId();
612 >        if( (jet_iter->genParton()->mother()) )
613 >          sj.bestMCmomid=jet_iter->genParton()->mother()->pdgId();
614 >      }
615        TLorentzVector gJp4;
616        if(gJ){
617          gJp4.SetPtEtaPhiE(gJ->pt(),gJ->eta(),gJ->phi(),gJ->energy());
618 <        sj. bestMCp4mom = gJp4;
618 >        sj.bestMCp4 = gJp4;
619          if(verbose_){
620            std::clog << "genJet matched Pt = " << gJp4.Pt() << std::endl;
621            std::clog << "genJet matched eta = " << gJp4.Eta() << std::endl;
# Line 671 | Line 695 | BTagSFContainer btagSFs;
695                              << "," << subjet_iter->bDiscriminator("combinedSecondaryVertexBJetTags") << "\n";}
696  
697      VHbbEvent::SimpleJet sj;
698 +    //    std::cout <<" sub jet "<<std::endl;
699      fillSimpleJet(sj,subjet_iter);
700      //  if(!runOnMC_)  
701      setJecUnc(sj,jecUnc);
# Line 722 | Line 747 | BTagSFContainer btagSFs;
747      if (verbose_)     std::cout <<" METTC "<<     hbbInfo->tcmet.metSig <<" " <<     hbbInfo->tcmet.sumEt<<std::endl;
748    }
749    
750 +  edm::Handle<edm::View<reco::MET> > pfMETNoPUHandle;
751 +  iEvent.getByLabel("pfMETNoPU",pfMETNoPUHandle);
752 +  edm::View<reco::MET> metspfMETNoPU = *pfMETNoPUHandle;
753 +  if(metspfMETNoPU.size()){
754 +    hbbInfo->metNoPU.sumEt=(metspfMETNoPU[0]).sumEt();
755 +    hbbInfo->metNoPU.metSig=(metspfMETNoPU[0]).significance();
756 +    hbbInfo->metNoPU.eLong=(metspfMETNoPU[0]).e_longitudinal();
757 +    hbbInfo->metNoPU.p4=GENPTOLOR((metspfMETNoPU[0]));
758 +    if (verbose_)     std::cout <<" pfMETNoPU "<<     hbbInfo->metNoPU.metSig <<" " <<     hbbInfo->metNoPU.sumEt<<std::endl;
759 +  }
760  
761    edm::Handle<edm::View<reco::MET> > mHTHandle;
762    iEvent.getByLabel("patMETsHT",mHTHandle);
# Line 734 | Line 769 | BTagSFContainer btagSFs;
769      if (verbose_)     std::cout <<" METHT "<<     hbbInfo->mht.metSig <<" " <<     hbbInfo->mht.sumEt<<std::endl;
770    }
771    
772 <  edm::Handle<edm::View<pat::MET> > metHandle;
772 >  edm::Handle<edm::View<reco::MET> > metHandle;
773    iEvent.getByLabel(metLabel_,metHandle);
774 <  edm::View<pat::MET> mets = *metHandle;
774 >  edm::View<reco::MET> mets = *metHandle;
775    
776    if(mets.size()){
777      hbbInfo->calomet.sumEt=(mets[0]).sumEt();
# Line 774 | Line 809 | BTagSFContainer btagSFs;
809      mf.eIso=mu->ecalIso();
810      mf.hIso=mu->hcalIso();
811      mf.pfChaIso=mu->chargedHadronIso();
812 +    mf.pfChaPUIso=mu->userIso(5);
813      mf.pfPhoIso=mu->photonIso();
814      mf.pfNeuIso=mu->neutralHadronIso();
815      Geom::Phi<double> deltaphi(mu->phi()-atan2(mf.p4.Px(), mf.p4.Py()));
816      double acop = deltaphi.value();
817      mf.acop=acop;
818  
819 +    mf.emEnergy = mu->calEnergy().em;
820 +    mf.hadEnergy = mu->calEnergy().had;
821 +
822 +    mf.nMatches = mu->numberOfMatches();
823 +
824      mf.ipDb=mu->dB();
825      mf.ipErrDb=mu->edB();
826      mf.cat=0;
# Line 796 | Line 837 | BTagSFContainer btagSFs;
837        TrackRef iTrack1 = mu->innerTrack();
838        const reco::HitPattern& p1 = iTrack1->hitPattern();
839        mf.nPixelHits=p1.pixelLayersWithMeasurement();
840 <    }
840 >
841 >      mf.nValidTracker = p1.numberOfValidTrackerHits();
842 >      mf.nValidPixel = p1.numberOfValidPixelHits();
843 >
844 >
845 >
846 >   }
847      if(mu->isGlobalMuon()){
848        TrackRef gTrack = mu->globalTrack();
849        const reco::HitPattern& q = gTrack->hitPattern();
850        mf.globChi2=gTrack.get()->normalizedChi2();
851        mf.globNHits=q.numberOfValidMuonHits();
852 <      mf. validMuStations = q. muonStationsWithValidHits();
852 >      mf.validMuStations = q.muonStationsWithValidHits();
853      }else{
854        mf.globChi2=-99;
855        mf.globNHits=-99;
# Line 861 | Line 908 | BTagSFContainer btagSFs;
908      ef.eIso=elec->ecalIso();
909      ef.hIso=elec->hcalIso();
910      ef.pfChaIso=elec->chargedHadronIso();
911 +    ef.pfChaPUIso=elec->userIso(5);
912      ef.pfPhoIso=elec->photonIso();
913      ef.pfNeuIso=elec->neutralHadronIso();
914  
915 <    Geom::Phi<double> deltaphi(elec->superCluster()->phi()-atan2(hbbInfo->calomet.p4.Py(),hbbInfo->calomet.p4.Px()));
915 >    //
916 >    // ip info
917 >    //
918 >
919 >    ef.ipDb=elec->dB();
920 >    ef.ipErrDb=elec->edB();
921 >    
922 >
923 >
924 >    Geom::Phi<double> deltaphi(elec->superCluster()->phi()-atan2(hbbInfo->pfmet.p4.Py(),hbbInfo->pfmet.p4.Px()));
925      ef.acop = deltaphi.value();
926      //
927 +    ef.sihih = elec->sigmaIetaIeta();
928 +    ef.Dphi = elec->deltaPhiSuperClusterTrackAtVtx();
929 +    ef.Deta = elec->deltaEtaSuperClusterTrackAtVtx();
930 +    ef.HoE = elec->hadronicOverEm();
931 +    ef.convDist = elec->convDist();
932 +    ef.convDcot = elec->convDcot();
933 +    if(elec->gsfTrack().isNonnull()) ef.innerHits = elec->gsfTrack()->trackerExpectedHitsInner().numberOfHits();  
934 +    ef.isEB = elec->isEB();
935 +    ef.isEE = elec->isEE();
936 +    //
937      // fill eleids
938      //    
939   /*    ef.id95 = elec->electronID("simpleEleId95cIso");
# Line 923 | Line 990 | BTagSFContainer btagSFs;
990      tf.tIso=tau->trackIso();
991      tf.eIso=tau->ecalIso();
992      tf.hIso=tau->hcalIso();
993 <    Geom::Phi<double> deltaphi(tau->phi()-atan2(hbbInfo->calomet.p4.Py(),hbbInfo->calomet.p4.Px()));
993 >    Geom::Phi<double> deltaphi(tau->phi()-atan2(hbbInfo->pfmet.p4.Py(),hbbInfo->pfmet.p4.Px()));
994      double acop = deltaphi.value();
995      tf.acop=acop;
996      tf.idbyIso=tau->tauID("byIsolation");
# Line 945 | Line 1012 | BTagSFContainer btagSFs;
1012    std::sort(hbbInfo->tauInfo.begin(), hbbInfo->tauInfo.end(), ptComparatorTau);
1013  
1014  
948  // dimuons and dielectrons
949
950  for( size_t i = 0; i < dimuons->size(); i++ ) {
951    VHbbEvent::DiMuonInfo df;
952    const Candidate & dimuonCand = (*dimuons)[ i ];
953    df.p4= GENPTOLOR(dimuonCand);
954    const Candidate * lep0 = dimuonCand.daughter( 0 );
955    const Candidate * lep1 = dimuonCand.daughter( 1 );
956    // needed to access specific methods of pat::Muon
957    const pat::Muon & muonDau0 = dynamic_cast<const pat::Muon &>(*lep0->masterClone());
958    const pat::Muon & muonDau1 = dynamic_cast<const pat::Muon &>(*lep1->masterClone());
959    
960    df.daughter1.p4=GENPTOLOR(muonDau0);
961    df.daughter2.p4=GENPTOLOR(muonDau1);
1015      
963    df.daughter1.tIso= muonDau0.trackIso();
964    df.daughter2.tIso= muonDau1.trackIso();
965
966    df.daughter1.eIso= muonDau0.ecalIso();
967    df.daughter2.eIso= muonDau1.ecalIso();
968
969    df.daughter1.hIso= muonDau0.hcalIso();
970    df.daughter2.hIso= muonDau1.hcalIso();
971
972    df.daughter1.ipDb=muonDau0.dB();
973    df.daughter2.ipDb=muonDau1.dB();
974
975    df.daughter1.ipErrDb=muonDau0.edB();
976    df.daughter2.ipErrDb=muonDau1.edB();
977
978    df.daughter1.cat=0;
979    if(muonDau0.isGlobalMuon()) df.daughter1.cat|=1;
980    if(muonDau0.isTrackerMuon()) df.daughter1.cat|=2;
981    if(muonDau0.isStandAloneMuon()) df.daughter1.cat|=4;
982    df.daughter2.cat=0;
983    if(muonDau1.isGlobalMuon()) df.daughter2.cat|=1;
984    if(muonDau1.isTrackerMuon()) df.daughter2.cat|=2;
985    if(muonDau1.isStandAloneMuon()) df.daughter2.cat|=4;
986
987    TrackRef trkMu1Ref = muonDau0.get<TrackRef>();
988    TrackRef trkMu2Ref = muonDau1.get<TrackRef>();
989
990    if(trkMu1Ref.isNonnull() && trkMu2Ref.isNonnull()){
991      const Track* MuTrk1 = muonDau0.get<TrackRef>().get();
992      const Track* MuTrk2 = muonDau1.get<TrackRef>().get();
993      df.daughter1.zPVPt=MuTrk1->dz(RecVtxFirst.position());
994      df.daughter1.zPVProb=MuTrk1->dz(RecVtx.position());
995      df.daughter2.zPVPt=MuTrk2->dz(RecVtxFirst.position());
996      df.daughter2.zPVProb=MuTrk2->dz(RecVtx.position());
997
998      df.daughter1.nHits = MuTrk1->numberOfValidHits();
999      df.daughter2.nHits = MuTrk2->numberOfValidHits();
1000
1001      df.daughter1.chi2 = MuTrk1->normalizedChi2();
1002      df.daughter2.chi2 = MuTrk2->normalizedChi2();
1003
1004      TrackRef iTrack1 = muonDau0.innerTrack();
1005      const reco::HitPattern& p1 = iTrack1->hitPattern();
1006      TrackRef iTrack2 = muonDau1.innerTrack();
1007      const reco::HitPattern& p2 = iTrack2->hitPattern();
1008
1009      df.daughter1.nPixelHits = p1.pixelLayersWithMeasurement();
1010      df.daughter2.nPixelHits = p2.pixelLayersWithMeasurement();
1011
1012      if(muonDau0.isGlobalMuon()){
1013        TrackRef gTrack = muonDau0.globalTrack();
1014        const reco::HitPattern& q = gTrack->hitPattern();
1015        df.daughter1.globNHits=q.numberOfValidMuonHits();
1016        df.daughter1.globChi2=gTrack.get()->normalizedChi2();
1017        df.daughter1.validMuStations = q. muonStationsWithValidHits();
1018      }
1019      if(muonDau1.isGlobalMuon()){
1020        TrackRef gTrack = muonDau1.globalTrack();
1021        const reco::HitPattern& q = gTrack->hitPattern();
1022        df.daughter2.globNHits=q.numberOfValidMuonHits();
1023        df.daughter2.globChi2=gTrack.get()->normalizedChi2();
1024        df.daughter2.validMuStations = q. muonStationsWithValidHits();
1025      }
1016    
1027    }
1028      
1029    hbbInfo->diMuonInfo.push_back(df);
1030  }
1031
1032  for( size_t i = 0; i < dielectrons->size(); i++ ) {
1033    VHbbEvent::DiElectronInfo df;
1034    const Candidate & dielecCand = (*dielectrons)[ i ];
1035
1036    df.p4=GENPTOLOR(dielecCand);
1037
1038    // accessing the daughters of the dimuon candidate
1039    const Candidate * lep0 = dielecCand.daughter( 0 );
1040    const Candidate * lep1 = dielecCand.daughter( 1 );
1041    // needed to access specific methods of pat::Muon
1042    const pat::Electron & elecDau0 = dynamic_cast<const pat::Electron &>(*lep0->masterClone());
1043    const pat::Electron & elecDau1 = dynamic_cast<const pat::Electron &>(*lep1->masterClone());
1044
1045    df.daughter1.p4 = GENPTOLOR(elecDau0);
1046    df.daughter2.p4= GENPTOLOR(elecDau1);
1047
1048    df.daughter1.tIso = elecDau0.trackIso();
1049    df.daughter2.tIso = elecDau1.trackIso();
1050
1051    df.daughter1.eIso = elecDau0.ecalIso();
1052    df.daughter2.eIso = elecDau1.ecalIso();
1053
1054    df.daughter1.hIso = elecDau0.hcalIso();
1055    df.daughter2.hIso = elecDau1.hcalIso();
1056    
1057    // ids
1058    /*df.daughter1.id95 = elecDau0.electronID("simpleEleId95cIso");
1059    df.daughter1.id85 = elecDau0.electronID  ("simpleEleId85cIso");
1060    df.daughter1.id70 = elecDau0.electronID  ("simpleEleId70cIso");
1061    df.daughter1.id95r = elecDau0.electronID ("simpleEleId95relIso");
1062    df.daughter1.id85r = elecDau0.electronID ("simpleEleId85relIso");
1063    df.daughter1.id70r = elecDau0.electronID ("simpleEleId70relIso");
1064
1065
1066    df.daughter2.id95 = elecDau1.electronID("simpleEleId95cIso");
1067    df.daughter2.id85 = elecDau1.electronID  ("simpleEleId85cIso");
1068    df.daughter2.id70 = elecDau1.electronID  ("simpleEleId70cIso");
1069    df.daughter2.id95r = elecDau1.electronID ("simpleEleId95relIso");
1070    df.daughter2.id85r = elecDau1.electronID ("simpleEleId85relIso");
1071    df.daughter2.id70r = elecDau1.electronID ("simpleEleId70relIso");
1072 */
1073    hbbInfo->diElectronInfo.push_back(df);
1074    
1075  }
1017     if (verbose_){
1018       std::cout <<" Pushing hbbInfo "<<std::endl;
1019       std::cout <<" SimpleJets1 = "<<hbbInfo->simpleJets.size()<<std::endl<<
# Line 1279 | Line 1220 | void HbbAnalyzerNew::setJecUnc(VHbbEvent
1220    // test
1221    //
1222  
1223 <  return;
1223 >  //  return;
1224    double eta = sj.p4.Eta();
1225    double pt = sj.p4.Pt();
1226    
# Line 1299 | Line 1240 | void HbbAnalyzerNew ::fillSimpleJet (VHb
1240      sj.jpb=jet_iter->bDiscriminator("jetBProbabilityBJetTags");
1241      sj.ssvhe=jet_iter->bDiscriminator("simpleSecondaryVertexHighEffBJetTags");
1242      sj.csv=jet_iter->bDiscriminator("combinedSecondaryVertexBJetTags");
1243 <    sj.csvmva=jet_iter->bDiscriminator("combinedSecondaryVertexMVABJetTags");
1243 >   sj.csvmva=jet_iter->bDiscriminator("combinedSecondaryVertexMVABJetTags");
1244      sj.charge=jet_iter->jetCharge();
1245      sj.ntracks=jet_iter->associatedTracks().size();
1246      sj.p4=GENPTOLORP(jet_iter);
1247 +    //    std::cout << " ECCO "<<sj.csv<< " "<< sj.p4.Pt()<<std::endl;
1248      sj.chargedTracksFourMomentum=(getChargedTracksMomentum(&*(jet_iter)));
1249      sj.SF_CSVL=1;
1250      sj.SF_CSVM=1;
# Line 1318 | Line 1260 | void HbbAnalyzerNew ::fillSimpleJet (VHb
1260        sj.neutralHadronEFraction = jet_iter-> neutralHadronEnergyFraction ();
1261        sj.chargedEmEFraction = jet_iter-> chargedEmEnergyFraction ();
1262        sj.neutralEmEFraction = jet_iter-> neutralEmEnergyFraction ();
1263 <      sj. nConstituents = jet_iter->getPFConstituents().size();
1263 >      sj.nConstituents = jet_iter->getPFConstituents().size();
1264        
1265      }
1266      //

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