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root/cvsroot/UserCode/VHbbAnalysis/HbbAnalyzer/plugins/HbbAnalyzerNew.cc
Revision: 1.76
Committed: Tue Jun 12 19:40:16 2012 UTC (12 years, 11 months ago) by arizzi
Content type: text/plain
Branch: MAIN
CVS Tags: EdmV41alpha1, EdmV40alpha1, EdmV40alpha, EdmV33Jun12v2_consistent, EdmV33Jun12v2, EdmV33Jun12v1
Changes since 1.75: +4 -1 lines
Log Message:
add gen particles, add rho25Iso

File Contents

# User Rev Content
1 tboccali 1.1 // -*- 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 arizzi 1.76 // $Id: HbbAnalyzerNew.cc,v 1.75 2012/05/24 15:55:16 arizzi Exp $
17 tboccali 1.1 //
18     //
19    
20 arizzi 1.34
21     //uncomment to save also jet collections 1 and 4
22     //#define ENABLE_SIMPLEJETS1
23     //#define ENABLE_SIMPLEJETS4
24    
25 tboccali 1.28 #include "CondFormats/JetMETObjects/interface/JetCorrectorParameters.h"
26     #include "CondFormats/JetMETObjects/interface/JetCorrectionUncertainty.h"
27     #include "JetMETCorrections/Objects/interface/JetCorrector.h"
28     #include "JetMETCorrections/Objects/interface/JetCorrectionsRecord.h"
29     #include "DataFormats/TrackReco/interface/TrackFwd.h"
30    
31 tboccali 1.2 #include "VHbbAnalysis/HbbAnalyzer/interface/HbbAnalyzerNew.h"
32 tboccali 1.33 #include "SimDataFormats/PileupSummaryInfo/interface/PileupSummaryInfo.h"
33 tboccali 1.5
34 arizzi 1.34 #include "SimDataFormats/GeneratorProducts/interface/GenEventInfoProduct.h"
35 degrutto 1.58 #include "DataFormats/Math/interface/deltaR.h"
36 degrutto 1.61 #include "DataFormats/Math/interface/LorentzVector.h"
37     #include "DataFormats/Math/interface/Vector3D.h"
38     #include "Math/GenVector/PxPyPzM4D.h"
39    
40 arizzi 1.70 #include "RecoEcal/EgammaCoreTools/interface/EcalClusterLazyTools.h"
41     #include "TrackingTools/TransientTrack/interface/TransientTrackBuilder.h"
42     #include "TrackingTools/Records/interface/TransientTrackRecord.h"
43     #include "TrackingTools/IPTools/interface/IPTools.h"
44    
45 degrutto 1.73 #include "CMGTools/External/interface/PileupJetIdentifier.h"
46     #include "CMGTools/External/interface/PileupJetIdAlgo.h"
47     //#include "CMGTools/External/interface/PileupJetIdProducer.h"
48 degrutto 1.61
49     #include <cmath>
50    
51    
52 degrutto 1.58
53 arizzi 1.34
54 tboccali 1.1 #define GENPTOLOR(a) TLorentzVector((a).px(), (a).py(), (a).pz(), (a).energy())
55     #define GENPTOLORP(a) TLorentzVector((a)->px(), (a)->py(), (a)->pz(), (a)->energy())
56    
57 tboccali 1.28
58 degrutto 1.58
59 tboccali 1.28 struct CompareJetPtMuons {
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     }
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     }
73     };
74    
75    
76    
77 tboccali 1.1 HbbAnalyzerNew::HbbAnalyzerNew(const edm::ParameterSet& iConfig):
78 tboccali 1.7 eleLabel_(iConfig.getParameter<edm::InputTag>("electronTag")),
79     muoLabel_(iConfig.getParameter<edm::InputTag>("muonTag")),
80 degrutto 1.58 lep_ptCutForBjets_(iConfig.getParameter<double>("lep_ptCutForBjets")),
81     elenoCutsLabel_(iConfig.getParameter<edm::InputTag>("electronNoCutsTag")),
82     muonoCutsLabel_(iConfig.getParameter<edm::InputTag>("muonNoCutsTag")),
83 tboccali 1.7 jetLabel_(iConfig.getParameter<edm::InputTag>("jetTag")),
84     subjetLabel_(iConfig.getParameter<edm::InputTag>("subjetTag")),
85 dlopes 1.59 filterjetLabel_(iConfig.getParameter<edm::InputTag>("filterjetTag")),
86 tboccali 1.7 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 tboccali 1.9 runOnMC_(iConfig.getParameter<bool>("runOnMC")), verbose_(iConfig.getUntrackedParameter<bool>("verbose")) {
95 tboccali 1.3
96 tboccali 1.1 //
97     // put the setwhatproduced etc etc
98    
99     produces<VHbbEvent>();
100 tboccali 1.11 produces<VHbbEventAuxInfo>();
101 tboccali 1.1
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    
111     }
112    
113    
114     //
115     // member functions
116     //
117    
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 arizzi 1.34
124    
125 tboccali 1.28 // JEC Uncertainty
126    
127 tboccali 1.29 // JetCorrectionUncertainty *jecUnc=0;
128 tboccali 1.30 edm::ESHandle<JetCorrectorParametersCollection> JetCorParColl;
129 arizzi 1.55 iSetup.get<JetCorrectionsRecord>().get("AK5PFchs",JetCorParColl);
130 tboccali 1.30 JetCorrectionUncertainty *jecUnc=0;
131 tboccali 1.31 // if (!runOnMC_){
132 tboccali 1.28 JetCorrectorParameters const & JetCorPar = (*JetCorParColl)["Uncertainty"];
133 tboccali 1.30 jecUnc = new JetCorrectionUncertainty(JetCorPar);
134 tboccali 1.31 // }
135 tboccali 1.1
136 tboccali 1.11 std::auto_ptr<VHbbEvent> hbbInfo( new VHbbEvent() );
137     std::auto_ptr<VHbbEventAuxInfo> auxInfo( new VHbbEventAuxInfo() );
138 arizzi 1.34
139    
140 tboccali 1.35 if (runOnMC_){
141     Handle<GenEventInfoProduct> evt_info;
142     iEvent.getByType(evt_info);
143     auxInfo->weightMCProd = evt_info->weight();
144 arizzi 1.34 }
145     else
146 tboccali 1.35 { auxInfo->weightMCProd =1.;}
147 tboccali 1.1 //
148     // ??
149 tboccali 1.35
150 tboccali 1.1 // trigger
151 tboccali 1.28
152     // trigger
153 tboccali 1.1 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 tboccali 1.28
162 tboccali 1.1 int ntrigs = hltresults->size();
163 bortigno 1.25 if (ntrigs==0){std::cerr << "%HLTInfo -- No trigger name given in TriggerResults of the input " << std::endl;}
164 tboccali 1.1
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 tboccali 1.15 auxInfo->pvInfo.nVertices = recVtxs->size();
182    
183 tboccali 1.1 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 arizzi 1.70 const Vertex &vertex = RecVtxFirst; //used in ele id 2012
195 tboccali 1.1
196 tboccali 1.11 auxInfo->pvInfo.firstPVInPT2 = TVector3(RecVtxFirst.x(), RecVtxFirst.y(), RecVtxFirst.z());
197     auxInfo->pvInfo.firstPVInProb = TVector3(RecVtx.x(), RecVtx.y(), RecVtx.z());
198 tboccali 1.51
199     (auxInfo->pvInfo).efirstPVInPT2 = (RecVtxFirst.error());
200     (auxInfo->pvInfo).efirstPVInProb = RecVtx.error();
201 tboccali 1.1
202     edm::Handle<double> rhoHandle;
203 tboccali 1.33 iEvent.getByLabel(edm::InputTag("kt6PFJets", "rho"),rhoHandle);
204     auxInfo->puInfo.rho = *rhoHandle;
205 degrutto 1.37
206     edm::Handle<double> rho25Handle;
207     iEvent.getByLabel(edm::InputTag("kt6PFJets25", "rho"),rho25Handle);
208     auxInfo->puInfo.rho25 = *rho25Handle;
209 arizzi 1.76 edm::Handle<double> rho25HandleIso;
210     iEvent.getByLabel(edm::InputTag("kt6PFJetsForIsolation", "rho"),rho25HandleIso);
211     auxInfo->puInfo.rho25Iso = *rho25HandleIso;
212 degrutto 1.37
213 arizzi 1.71 edm::Handle<double> rhoNeutralHandle;
214     iEvent.getByLabel(edm::InputTag("kt6PFJetsCentralNeutral", "rho"),rhoNeutralHandle);
215     auxInfo->puInfo.rhoNeutral = *rhoNeutralHandle;
216    
217    
218 tboccali 1.33 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 arizzi 1.75 if(bx == 0) { auxInfo->puInfo.truePU = (*it).getTrueNumInteractions();}
228 tboccali 1.33 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 tboccali 1.1 //// real start
236    
237    
238     Handle<GenParticleCollection> genParticles;
239    
240     bool printJet=0;
241    
242    
243 tboccali 1.3 if(runOnMC_){
244 tboccali 1.1
245 tboccali 1.28 iEvent.getByLabel("genParticles", genParticles);
246 tboccali 1.1
247     for(size_t i = 0; i < genParticles->size(); ++ i) {
248 tboccali 1.28
249 tboccali 1.1 const GenParticle & p = (*genParticles)[i];
250     int id = p.pdgId();
251     int st = p.status();
252 tboccali 1.12
253     if(id==25){
254 tboccali 1.1
255 tboccali 1.12 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 tboccali 1.13 htemp.p4 = GENPTOLOR(p);
261 tboccali 1.28
262 tboccali 1.1 int ndau = p.numberOfDaughters();
263     for(int j = 0; j < ndau; ++ j) {
264     const Candidate * Hdau = p.daughter( j );
265 tboccali 1.12 htemp.dauid.push_back(Hdau->pdgId());
266     htemp.dauFourMomentum.push_back(GENPTOLORP(Hdau));
267 tboccali 1.1 }
268 tboccali 1.12 (auxInfo->mcH).push_back(htemp);
269 tboccali 1.1 }
270 tboccali 1.28
271    
272     if(abs(id)==24){
273 tboccali 1.1
274 tboccali 1.12 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 tboccali 1.13 wtemp.p4=GENPTOLOR(p);
280 tboccali 1.28
281 tboccali 1.1 int ndau = p.numberOfDaughters();
282     for(int j = 0; j < ndau; ++ j) {
283     const Candidate * Wdau = p.daughter( j );
284 tboccali 1.12 wtemp.dauid.push_back(Wdau->pdgId());
285     wtemp.dauFourMomentum.push_back(GENPTOLORP(Wdau));
286 tboccali 1.1 }
287 tboccali 1.12 auxInfo->mcW.push_back(wtemp);
288 tboccali 1.1 }
289 sethzenz 1.64
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 tboccali 1.1
307     if(abs(id)==23){
308    
309 tboccali 1.28
310 tboccali 1.12 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 tboccali 1.13 ztemp.p4=GENPTOLOR(p);
316 tboccali 1.1
317     int ndau = p.numberOfDaughters();
318     for(int j = 0; j < ndau; ++ j) {
319     const Candidate * Zdau = p.daughter( j );
320 tboccali 1.12 ztemp.dauid.push_back(Zdau->pdgId());
321 sdas 1.57 ztemp.dauFourMomentum.push_back(GENPTOLORP(Zdau));
322 tboccali 1.1 }
323 tboccali 1.12 auxInfo->mcZ.push_back(ztemp);
324 tboccali 1.1 }
325     //
326     // binfo
327     //
328 tboccali 1.12
329 tboccali 1.1
330     if(id==5){
331 tboccali 1.28
332 tboccali 1.12 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 tboccali 1.28
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 tboccali 1.12 auxInfo->mcB.push_back(btemp);
346 tboccali 1.1 }
347    
348     if(id==-5){
349 tboccali 1.28
350 tboccali 1.12 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 tboccali 1.28
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 tboccali 1.12 auxInfo->mcBbar.push_back(bbtemp);
367     }
368 tboccali 1.1
369     if(abs(id)==4){
370 tboccali 1.12 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 tboccali 1.28
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 tboccali 1.12 auxInfo->mcC.push_back(ctemp);
385 tboccali 1.28
386 tboccali 1.1 }
387    
388     }
389    
390     } // isMC
391    
392     /////// end generator block
393    
394 arizzi 1.74 /// 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 tboccali 1.1
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 dlopes 1.59 // filter jet
414     edm::Handle<edm::View<pat::Jet> > filterjetHandle;
415     iEvent.getByLabel(filterjetLabel_,filterjetHandle);
416     edm::View<pat::Jet> filterjets = *filterjetHandle;
417    
418 tboccali 1.1 // 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 malbouis 1.68
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 tboccali 1.1
449 bortigno 1.19 //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 bortigno 1.21 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 arizzi 1.27 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 tboccali 1.1
477 arizzi 1.34 #ifdef ENABLE_SIMPLEJETS1
478 arizzi 1.69 edm::Handle<edm::View<pat::Jet> > simplejet1Handle;
479     iEvent.getByLabel(simplejet1Label_,simplejet1Handle);
480     edm::View<pat::Jet> simplejets1 = *simplejet1Handle;
481 tboccali 1.1 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 tboccali 1.44 // std::cout <<" sj1"<<std::endl;
486 tboccali 1.28 fillSimpleJet(sj,jet_iter);
487 tboccali 1.31 // if(!runOnMC_)
488 tboccali 1.28
489 tboccali 1.31 setJecUnc(sj,jecUnc);
490 tboccali 1.28
491 tboccali 1.1 Particle::LorentzVector p4Jet = jet_iter->p4();
492    
493 tboccali 1.3 if(runOnMC_){
494 bortigno 1.19
495 arizzi 1.27 fillScaleFactors(sj, btagSFs);
496 bortigno 1.24
497     //PAT genJet matching
498     //genJet
499     const reco::GenJet *gJ = jet_iter->genJet();
500     //physical parton for mother info ONLY
501 bortigno 1.43 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 bortigno 1.24 TLorentzVector gJp4;
507     if(gJ){
508     gJp4.SetPtEtaPhiE(gJ->pt(),gJ->eta(),gJ->phi(),gJ->energy());
509 bortigno 1.43 sj.bestMCp4 = gJp4;
510 bortigno 1.24 if(verbose_){
511     std::clog << "genJet matched Pt = " << gJp4.Pt() << std::endl;
512     std::clog << "genJet matched eta = " << gJp4.Eta() << std::endl;
513 tboccali 1.28 std::clog << "genJet matched deltaR = " <<gJp4.DeltaR(sj.p4) << std::endl;
514 bortigno 1.24 std::clog << "genJet matched mother id = " << sj.bestMCmomid << std::endl;
515 tboccali 1.1 }
516     }
517 bortigno 1.24
518 bortigno 1.20 } //isMC
519 tboccali 1.1 hbbInfo->simpleJets.push_back(sj);
520    
521     }
522 arizzi 1.34 #endif //ENABLE_SIMPLEJETS1
523 tboccali 1.30
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 tboccali 1.44 // std::cout <<" sj3"<<std::endl;
529 tboccali 1.30 fillSimpleJet(sj,jet_iter);
530 tboccali 1.31 // if(!runOnMC_)
531     setJecUnc(sj,jecUnc);
532 tboccali 1.30
533 tboccali 1.31 Particle::LorentzVector p4Jet = jet_iter->p4();
534 tboccali 1.30
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 bortigno 1.43 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 tboccali 1.30 TLorentzVector gJp4;
549     if(gJ){
550     gJp4.SetPtEtaPhiE(gJ->pt(),gJ->eta(),gJ->phi(),gJ->energy());
551 bortigno 1.43 sj.bestMCp4 = gJp4;
552 tboccali 1.30 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 degrutto 1.58 //
562    
563    
564 tboccali 1.30 hbbInfo->simpleJets3.push_back(sj);
565    
566     }
567    
568 arizzi 1.34 #ifdef ENABLE_SIMPLEJETS4
569 arizzi 1.69 edm::Handle<edm::View<pat::Jet> > simplejet4Handle;
570     iEvent.getByLabel(simplejet4Label_,simplejet4Handle);
571     edm::View<pat::Jet> simplejets4 = *simplejet4Handle;
572 tboccali 1.30 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 degrutto 1.73
576     VHbbEvent::SimpleJet sj;
577 tboccali 1.44 // std::cout <<" sj4"<<std::endl;
578 tboccali 1.30 fillSimpleJet(sj,jet_iter);
579 tboccali 1.31 // if(!runOnMC_)
580     setJecUnc(sj,jecUnc);
581 degrutto 1.73
582 tboccali 1.30
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 bortigno 1.43 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 tboccali 1.30 TLorentzVector gJp4;
600     if(gJ){
601     gJp4.SetPtEtaPhiE(gJ->pt(),gJ->eta(),gJ->phi(),gJ->energy());
602 bortigno 1.43 sj.bestMCp4 = gJp4;
603 tboccali 1.30 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 arizzi 1.34 #endif //ENABLE SIMPLEJETS4
616    
617 degrutto 1.73
618 tboccali 1.1 for(edm::View<pat::Jet>::const_iterator jet_iter = simplejets2.begin(); jet_iter!=simplejets2.end(); ++jet_iter){
619    
620 degrutto 1.73
621    
622 tboccali 1.1 VHbbEvent::SimpleJet sj;
623 tboccali 1.44 // std::cout <<" sj2"<<std::endl;
624 degrutto 1.73 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 tboccali 1.31 // if(!runOnMC_)
661     setJecUnc(sj,jecUnc);
662 tboccali 1.28 /* sj.flavour = jet_iter->partonFlavour();
663 tboccali 1.1
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 tboccali 1.13 sj.p4=GENPTOLORP(jet_iter);
675 tboccali 1.6 sj.chargedTracksFourMomentum=(getChargedTracksMomentum(&*(jet_iter)));
676 bortigno 1.24 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 degrutto 1.73
683    
684 tboccali 1.28 //
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 bortigno 1.24 //
700     // add tVector
701     //
702 tboccali 1.5 sj.tVector = getTvect(&(*jet_iter));
703 tboccali 1.28 */
704 tboccali 1.1 Particle::LorentzVector p4Jet = jet_iter->p4();
705    
706 tboccali 1.3 if(runOnMC_){
707 bortigno 1.24
708     //BTV scale factors
709 arizzi 1.27 fillScaleFactors(sj, btagSFs);
710 bortigno 1.24
711     //PAT genJet matching
712     //genJet
713     const reco::GenJet *gJ = jet_iter->genJet();
714     //physical parton for mother info ONLY
715 bortigno 1.43 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 bortigno 1.24 TLorentzVector gJp4;
721     if(gJ){
722     gJp4.SetPtEtaPhiE(gJ->pt(),gJ->eta(),gJ->phi(),gJ->energy());
723 bortigno 1.43 sj.bestMCp4 = gJp4;
724 bortigno 1.24 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 tboccali 1.1 }
730     }
731 bortigno 1.24
732 degrutto 1.58 // 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 degrutto 1.61 if ((abs(id)==13 || abs(id)==11) && deltaR(p.eta(), p.phi(), sj.p4.Eta(), sj.p4.Phi() ) <0.5) sj.isSemiLeptMCtruth=1;
743 degrutto 1.58 }
744    
745     } //isMC
746 degrutto 1.61
747 degrutto 1.58 // 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 degrutto 1.61 edm::View<reco::Candidate> muonsNoCuts = *muonNoCutsHandle;
751    
752 degrutto 1.58
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 degrutto 1.61 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 degrutto 1.58 }
775    
776 degrutto 1.61
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 degrutto 1.62 //std::cout << "before ele id " << std::endl;
801     // std::cout << " e.e.sigmaIetaIeta " << e.sigmaIetaIeta() << std::endl;
802 degrutto 1.61 //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 degrutto 1.58
815    
816 tboccali 1.1
817     hbbInfo->simpleJets2.push_back(sj);
818    
819     }
820    
821    
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     /////// hard jet
838    
839    
840     double matEta[1000*30],matPhi[1000*30];
841     for(int i=0;i<1000;i++){for(int j=0;j<30;j++){matEta[i*j]=-99.;matPhi[i*j]=-99.;}}
842    
843     for(edm::View<pat::Jet>::const_iterator jet_iter = jets.begin(); jet_iter!=jets.end(); ++jet_iter){
844    
845     if(printJet) {std::cout << "Jet Pt: " << jet_iter->pt() << " E,M: " << jet_iter->p4().E() << " " << jet_iter->p4().M() << "\n";}
846    
847     reco::Jet::Constituents constituents = jet_iter->getJetConstituents();
848    
849     // if(printJet) {std::cout << "NsubJets: " << constituents.size() << "\n";}
850     VHbbEvent::HardJet hj;
851     hj.constituents=constituents.size();
852 tboccali 1.13 hj.p4 =GENPTOLORP(jet_iter);
853 tboccali 1.28
854 tboccali 1.1 for (unsigned int iJC(0); iJC<constituents.size(); ++iJC ){
855     Jet::Constituent icandJet = constituents[iJC];
856    
857     if(printJet) {std::cout << "subJet Pt: " << icandJet->pt() << " subJet E,M,eta,phi: " << icandJet->p4().E() << ","
858     << icandJet->p4().M() << "," << icandJet->eta() << "," << icandJet->phi() << "\n"; }
859    
860    
861     hj.subFourMomentum.push_back(GENPTOLORP(icandJet));
862     hj.etaSub.push_back(icandJet->eta());
863     hj.phiSub.push_back(icandJet->phi());
864    
865     }
866     hbbInfo->hardJets.push_back(hj);
867     }
868    
869     // HardJetSubEta2.SetMatrixArray(matEta);
870     // HardJetSubPhi2.SetMatrixArray(matPhi);
871     // TMatrixDRow a1(HardJetSubEta2,0);
872     // for(int i=0;i<30;i++){
873     // std::cout << "test: " << a1[i] << "\n";
874     // }
875    
876     // pat subJets with Btag
877    
878    
879     for(edm::View<pat::Jet>::const_iterator subjet_iter = subjets.begin(); subjet_iter!=subjets.end(); ++subjet_iter){
880    
881     if(printJet) {std::cout << "SubJetTagged Pt: " << subjet_iter->pt() << " E,M,eta,phi,Btag: " << subjet_iter->p4().E()
882     << "," << subjet_iter->p4().M() << "," << subjet_iter->eta() << "," << subjet_iter->phi()
883     << "," << subjet_iter->bDiscriminator("combinedSecondaryVertexBJetTags") << "\n";}
884    
885     VHbbEvent::SimpleJet sj;
886 tboccali 1.44 // std::cout <<" sub jet "<<std::endl;
887 tboccali 1.28 fillSimpleJet(sj,subjet_iter);
888 tboccali 1.31 // if(!runOnMC_)
889     setJecUnc(sj,jecUnc);
890 tboccali 1.28 /* sj.flavour = subjet_iter->partonFlavour();
891 tboccali 1.5 sj.tVector = getTvect(&(*subjet_iter));
892 tboccali 1.1 sj.tche=subjet_iter->bDiscriminator("trackCountingHighEffBJetTags");
893     sj.tchp=subjet_iter->bDiscriminator("trackCountingHighPurBJetTags");
894     sj.jp=subjet_iter->bDiscriminator("jetProbabilityBJetTags");
895     sj.jpb=subjet_iter->bDiscriminator("jetBProbabilityBJetTags");
896     sj.ssvhe=subjet_iter->bDiscriminator("simpleSecondaryVertexHighEffBJetTags");
897     sj.csv=subjet_iter->bDiscriminator("combinedSecondaryVertexBJetTags");
898     sj.csvmva=subjet_iter->bDiscriminator("combinedSecondaryVertexMVABJetTags");
899     sj.charge=subjet_iter->jetCharge();
900     sj.ntracks=subjet_iter->associatedTracks().size();
901 tboccali 1.13 sj.p4=GENPTOLORP(subjet_iter);
902     sj.p4=(getChargedTracksMomentum(&*(subjet_iter)));
903 tboccali 1.28
904     //
905     // addtaginfo for csv
906     //
907    
908     if (subjet_iter->hasTagInfo("SimpleSecondaryVertex")) {
909    
910     const reco::SecondaryVertexTagInfo * tf = subjet_iter->tagInfoSecondaryVertex();
911     sj.vtxMass = tf->secondaryVertex(0).p4().mass();
912     sj.vtxNTracks = tf->secondaryVertex(0).nTracks();
913     Measurement1D m = tf->flightDistance(0);
914     sj.vtx3dL = m.value();
915     sj.vtx3deL = m.error();
916     }
917     */
918 tboccali 1.1 hbbInfo->subJets.push_back(sj);
919    
920     }
921    
922 dlopes 1.59 for(edm::View<pat::Jet>::const_iterator filterjet_iter = filterjets.begin(); filterjet_iter!=filterjets.end(); ++filterjet_iter){
923    
924     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";}
925    
926     VHbbEvent::SimpleJet fj;
927     // std::cout <<" sub jet "<<std::endl;
928     fillSimpleJet(fj,filterjet_iter);
929     // if(!runOnMC_)
930     setJecUnc(fj,jecUnc);
931    
932     hbbInfo->filterJets.push_back(fj);
933    
934    
935     }
936    
937 tboccali 1.54 //
938     // add charged met
939     //
940    
941     edm::Handle<edm::View<reco::MET> > metChargedHandle;
942     iEvent.getByLabel("pfMETNoPUCharge",metChargedHandle);
943     edm::View<reco::MET> metsCh = *metChargedHandle;
944     if(metsCh.size()){
945     hbbInfo->metCh.sumEt=(metsCh[0]).sumEt();
946 arizzi 1.56 hbbInfo->metCh.metSig=metSignificance(& (metsCh[0]));
947 tboccali 1.54 hbbInfo->metCh.eLong=(metsCh[0]).e_longitudinal();
948     hbbInfo->metCh.p4=GENPTOLOR((metsCh[0]));
949     if (verbose_) std::cout <<" METCharged "<< hbbInfo->metCh.metSig <<" " << hbbInfo->metCh.sumEt<<std::endl;
950     }
951 tboccali 1.1
952 degrutto 1.62 // type 1 corr met
953     edm::Handle<edm::View<reco::MET> > pfmetType1corrHandle;
954     iEvent.getByLabel("patType1CorrectedPFMet",pfmetType1corrHandle);
955     edm::View<reco::MET> pfmetsType1corr = *pfmetType1corrHandle;
956     if(pfmetsType1corr.size()){
957     hbbInfo->pfmetType1corr.sumEt=(pfmetsType1corr[0]).sumEt();
958     hbbInfo->pfmetType1corr.metSig=metSignificance(& (pfmetsType1corr[0]));
959     hbbInfo->pfmetType1corr.eLong=(pfmetsType1corr[0]).e_longitudinal();
960     hbbInfo->pfmetType1corr.p4=GENPTOLOR((pfmetsType1corr[0]));
961     if (verbose_) std::cout <<" type 1 corrected pfMET "<< hbbInfo->pfmetType1corr.metSig <<" " << hbbInfo->pfmetType1corr.sumEt<<std::endl;
962     }
963    
964    
965     // type 1 + 2 corr met
966     edm::Handle<edm::View<reco::MET> > pfmetType1p2corrHandle;
967     iEvent.getByLabel("patType1p2CorrectedPFMet",pfmetType1p2corrHandle);
968     edm::View<reco::MET> pfmetsType1p2corr = *pfmetType1p2corrHandle;
969     if(pfmetsType1p2corr.size()){
970     hbbInfo->pfmetType1p2corr.sumEt=(pfmetsType1p2corr[0]).sumEt();
971     hbbInfo->pfmetType1p2corr.metSig=metSignificance(& (pfmetsType1p2corr[0]));
972     hbbInfo->pfmetType1p2corr.eLong=(pfmetsType1p2corr[0]).e_longitudinal();
973     hbbInfo->pfmetType1p2corr.p4=GENPTOLOR((pfmetsType1p2corr[0]));
974     if (verbose_) std::cout <<" type 1 +2 corrected pfMET "<< hbbInfo->pfmetType1p2corr.metSig <<" " << hbbInfo->pfmetType1p2corr.sumEt<<std::endl;
975     }
976    
977     // type 1 corr met NoPU
978 arizzi 1.70 /* edm::Handle<edm::View<reco::MET> > pfmetNoPUType1corrHandle;
979 degrutto 1.62 iEvent.getByLabel("patType1CorrectedPFMetNoPU",pfmetNoPUType1corrHandle);
980     edm::View<reco::MET> pfmetsNoPUType1corr = *pfmetNoPUType1corrHandle;
981     if(pfmetsNoPUType1corr.size()){
982     hbbInfo->pfmetNoPUType1corr.sumEt=(pfmetsNoPUType1corr[0]).sumEt();
983     hbbInfo->pfmetNoPUType1corr.metSig=metSignificance(& (pfmetsNoPUType1corr[0]));
984     hbbInfo->pfmetNoPUType1corr.eLong=(pfmetsNoPUType1corr[0]).e_longitudinal();
985     hbbInfo->pfmetNoPUType1corr.p4=GENPTOLOR((pfmetsNoPUType1corr[0]));
986     if (verbose_) std::cout <<" type 1 corrected pfMET NoPU"<< hbbInfo->pfmetNoPUType1corr.metSig <<" " << hbbInfo->pfmetNoPUType1corr.sumEt<<std::endl;
987     }
988    
989    
990     // type 1 + 2 corr met
991     edm::Handle<edm::View<reco::MET> > pfmetNoPUType1p2corrHandle;
992     iEvent.getByLabel("patType1p2CorrectedPFMetNoPU",pfmetNoPUType1p2corrHandle);
993     edm::View<reco::MET> pfmetsNoPUType1p2corr = *pfmetNoPUType1p2corrHandle;
994     if(pfmetsNoPUType1p2corr.size()){
995     hbbInfo->pfmetNoPUType1p2corr.sumEt=(pfmetsNoPUType1p2corr[0]).sumEt();
996     hbbInfo->pfmetNoPUType1p2corr.metSig=metSignificance(& (pfmetsNoPUType1p2corr[0]));
997     hbbInfo->pfmetNoPUType1p2corr.eLong=(pfmetsNoPUType1p2corr[0]).e_longitudinal();
998     hbbInfo->pfmetNoPUType1p2corr.p4=GENPTOLOR((pfmetsNoPUType1p2corr[0]));
999     if (verbose_) std::cout <<" type 1 +2 corrected pfMET "<< hbbInfo->pfmetNoPUType1p2corr.metSig <<" " << hbbInfo->pfmetNoPUType1p2corr.sumEt<<std::endl;
1000     }
1001    
1002 arizzi 1.70 */
1003 degrutto 1.62
1004     /*
1005     // MET uncertainty vector
1006     vector<pat::MET> "patType1CorrectedPFMet" "" "VH"
1007     vector<pat::MET> "patType1CorrectedPFMetElectronEnDown" "" "VH"
1008     vector<pat::MET> "patType1CorrectedPFMetElectronEnUp" "" "VH"
1009     vector<pat::MET> "patType1CorrectedPFMetJetEnDown" "" "VH"
1010     vector<pat::MET> "patType1CorrectedPFMetJetEnUp" "" "VH"
1011     vector<pat::MET> "patType1CorrectedPFMetJetResDown" "" "VH"
1012     vector<pat::MET> "patType1CorrectedPFMetJetResUp" "" "VH"
1013     vector<pat::MET> "patType1CorrectedPFMetMuonEnDown" "" "VH"
1014     vector<pat::MET> "patType1CorrectedPFMetMuonEnUp" "" "VH"
1015     vector<pat::MET> "patType1CorrectedPFMetNoPU" "" "VH"
1016     vector<pat::MET> "patType1CorrectedPFMetTauEnDown" "" "VH"
1017     vector<pat::MET> "patType1CorrectedPFMetTauEnUp" "" "VH"
1018     vector<pat::MET> "patType1CorrectedPFMetUnclusteredEnDown" "" "VH"
1019     vector<pat::MET> "patType1CorrectedPFMetUnclusteredEnUp" "" "VH"
1020     vector<pat::MET> "patType1p2CorrectedPFMet" "" "VH"
1021     vector<pat::MET> "patType1p2CorrectedPFMetElectronEnDown" "" "VH"
1022     vector<pat::MET> "patType1p2CorrectedPFMetElectronEnUp" "" "VH"
1023     vector<pat::MET> "patType1p2CorrectedPFMetJetEnDown" "" "VH"
1024     vector<pat::MET> "patType1p2CorrectedPFMetJetEnUp" "" "VH"
1025     vector<pat::MET> "patType1p2CorrectedPFMetJetResDown" "" "VH"
1026     vector<pat::MET> "patType1p2CorrectedPFMetJetResUp" "" "VH"
1027     vector<pat::MET> "patType1p2CorrectedPFMetMuonEnDown" "" "VH"
1028     vector<pat::MET> "patType1p2CorrectedPFMetMuonEnUp" "" "VH"
1029     vector<pat::MET> "patType1p2CorrectedPFMetNoPU" "" "VH"
1030     vector<pat::MET> "patType1p2CorrectedPFMetTauEnDown" "" "VH"
1031     vector<pat::MET> "patType1p2CorrectedPFMetTauEnUp" "" "VH"
1032     vector<pat::MET> "patType1p2CorrectedPFMetUnclusteredEnDown" "" "VH"
1033     vector<pat::MET> "patType1p2CorrectedPFMetUnclusteredEnUp" "" "VH"
1034     */
1035    
1036     VHbbEvent::METInfo metunc;
1037     edm::Handle<edm::View<reco::MET> > patType1CorrectedPFMetElectronEnDownHandle;
1038     iEvent.getByLabel("patType1CorrectedPFMetElectronEnDown",patType1CorrectedPFMetElectronEnDownHandle);
1039     edm::View<reco::MET> patType1CorrectedPFMetsElectronEnDown = *patType1CorrectedPFMetElectronEnDownHandle;
1040     if(patType1CorrectedPFMetsElectronEnDown.size()){
1041     metunc.sumEt =(patType1CorrectedPFMetsElectronEnDown[0]).sumEt();
1042     metunc.metSig=metSignificance(& (patType1CorrectedPFMetsElectronEnDown[0]));
1043     metunc.eLong=(patType1CorrectedPFMetsElectronEnDown[0]).e_longitudinal();
1044     metunc.p4=GENPTOLOR((patType1CorrectedPFMetsElectronEnDown[0]));
1045     hbbInfo->metUncInfo.push_back(metunc);
1046     }
1047    
1048     edm::Handle<edm::View<reco::MET> > patType1CorrectedPFMetElectronEnUpHandle;
1049     iEvent.getByLabel("patType1CorrectedPFMetElectronEnUp",patType1CorrectedPFMetElectronEnUpHandle);
1050     edm::View<reco::MET> patType1CorrectedPFMetsElectronEnUp = *patType1CorrectedPFMetElectronEnUpHandle;
1051     if(patType1CorrectedPFMetsElectronEnUp.size()){
1052     metunc.sumEt =(patType1CorrectedPFMetsElectronEnUp[0]).sumEt();
1053     metunc.metSig=metSignificance(& (patType1CorrectedPFMetsElectronEnUp[0]));
1054     metunc.eLong=(patType1CorrectedPFMetsElectronEnUp[0]).e_longitudinal();
1055     metunc.p4=GENPTOLOR((patType1CorrectedPFMetsElectronEnUp[0]));
1056     hbbInfo->metUncInfo.push_back(metunc);
1057     }
1058    
1059    
1060    
1061     edm::Handle<edm::View<reco::MET> > patType1CorrectedPFMetMuonEnDownHandle;
1062     iEvent.getByLabel("patType1CorrectedPFMetMuonEnDown",patType1CorrectedPFMetMuonEnDownHandle);
1063     edm::View<reco::MET> patType1CorrectedPFMetsMuonEnDown = *patType1CorrectedPFMetMuonEnDownHandle;
1064     if(patType1CorrectedPFMetsMuonEnDown.size()){
1065     metunc.sumEt =(patType1CorrectedPFMetsMuonEnDown[0]).sumEt();
1066     metunc.metSig=metSignificance(& (patType1CorrectedPFMetsMuonEnDown[0]));
1067     metunc.eLong=(patType1CorrectedPFMetsMuonEnDown[0]).e_longitudinal();
1068     metunc.p4=GENPTOLOR((patType1CorrectedPFMetsMuonEnDown[0]));
1069     hbbInfo->metUncInfo.push_back(metunc);
1070     }
1071    
1072     edm::Handle<edm::View<reco::MET> > patType1CorrectedPFMetMuonEnUpHandle;
1073     iEvent.getByLabel("patType1CorrectedPFMetMuonEnUp",patType1CorrectedPFMetMuonEnUpHandle);
1074     edm::View<reco::MET> patType1CorrectedPFMetsMuonEnUp = *patType1CorrectedPFMetMuonEnUpHandle;
1075     if(patType1CorrectedPFMetsMuonEnUp.size()){
1076     metunc.sumEt =(patType1CorrectedPFMetsMuonEnUp[0]).sumEt();
1077     metunc.metSig=metSignificance(& (patType1CorrectedPFMetsMuonEnUp[0]));
1078     metunc.eLong=(patType1CorrectedPFMetsMuonEnUp[0]).e_longitudinal();
1079     metunc.p4=GENPTOLOR((patType1CorrectedPFMetsMuonEnUp[0]));
1080     hbbInfo->metUncInfo.push_back(metunc);
1081     }
1082    
1083    
1084    
1085     edm::Handle<edm::View<reco::MET> > patType1CorrectedPFMetTauEnDownHandle;
1086     iEvent.getByLabel("patType1CorrectedPFMetTauEnDown",patType1CorrectedPFMetTauEnDownHandle);
1087     edm::View<reco::MET> patType1CorrectedPFMetsTauEnDown = *patType1CorrectedPFMetTauEnDownHandle;
1088     if(patType1CorrectedPFMetsTauEnDown.size()){
1089     metunc.sumEt =(patType1CorrectedPFMetsTauEnDown[0]).sumEt();
1090     metunc.metSig=metSignificance(& (patType1CorrectedPFMetsTauEnDown[0]));
1091     metunc.eLong=(patType1CorrectedPFMetsTauEnDown[0]).e_longitudinal();
1092     metunc.p4=GENPTOLOR((patType1CorrectedPFMetsTauEnDown[0]));
1093     hbbInfo->metUncInfo.push_back(metunc);
1094     }
1095    
1096     edm::Handle<edm::View<reco::MET> > patType1CorrectedPFMetTauEnUpHandle;
1097     iEvent.getByLabel("patType1CorrectedPFMetTauEnUp",patType1CorrectedPFMetTauEnUpHandle);
1098     edm::View<reco::MET> patType1CorrectedPFMetsTauEnUp = *patType1CorrectedPFMetTauEnUpHandle;
1099     if(patType1CorrectedPFMetsTauEnUp.size()){
1100     metunc.sumEt =(patType1CorrectedPFMetsTauEnUp[0]).sumEt();
1101     metunc.metSig=metSignificance(& (patType1CorrectedPFMetsTauEnUp[0]));
1102     metunc.eLong=(patType1CorrectedPFMetsTauEnUp[0]).e_longitudinal();
1103     metunc.p4=GENPTOLOR((patType1CorrectedPFMetsTauEnUp[0]));
1104     hbbInfo->metUncInfo.push_back(metunc);
1105     }
1106    
1107    
1108     edm::Handle<edm::View<reco::MET> > patType1CorrectedPFMetJetEnDownHandle;
1109     iEvent.getByLabel("patType1CorrectedPFMetJetEnDown",patType1CorrectedPFMetJetEnDownHandle);
1110     edm::View<reco::MET> patType1CorrectedPFMetsJetEnDown = *patType1CorrectedPFMetJetEnDownHandle;
1111     if(patType1CorrectedPFMetsJetEnDown.size()){
1112     metunc.sumEt =(patType1CorrectedPFMetsJetEnDown[0]).sumEt();
1113     metunc.metSig=metSignificance(& (patType1CorrectedPFMetsJetEnDown[0]));
1114     metunc.eLong=(patType1CorrectedPFMetsJetEnDown[0]).e_longitudinal();
1115     metunc.p4=GENPTOLOR((patType1CorrectedPFMetsJetEnDown[0]));
1116     hbbInfo->metUncInfo.push_back(metunc);
1117     }
1118    
1119     edm::Handle<edm::View<reco::MET> > patType1CorrectedPFMetJetEnUpHandle;
1120     iEvent.getByLabel("patType1CorrectedPFMetJetEnUp",patType1CorrectedPFMetJetEnUpHandle);
1121     edm::View<reco::MET> patType1CorrectedPFMetsJetEnUp = *patType1CorrectedPFMetJetEnUpHandle;
1122     if(patType1CorrectedPFMetsJetEnUp.size()){
1123     metunc.sumEt =(patType1CorrectedPFMetsJetEnUp[0]).sumEt();
1124     metunc.metSig=metSignificance(& (patType1CorrectedPFMetsJetEnUp[0]));
1125     metunc.eLong=(patType1CorrectedPFMetsJetEnUp[0]).e_longitudinal();
1126     metunc.p4=GENPTOLOR((patType1CorrectedPFMetsJetEnUp[0]));
1127     hbbInfo->metUncInfo.push_back(metunc);
1128     }
1129    
1130    
1131     edm::Handle<edm::View<reco::MET> > patType1CorrectedPFMetJetResDownHandle;
1132     iEvent.getByLabel("patType1CorrectedPFMetJetResDown",patType1CorrectedPFMetJetResDownHandle);
1133     edm::View<reco::MET> patType1CorrectedPFMetsJetResDown = *patType1CorrectedPFMetJetResDownHandle;
1134     if(patType1CorrectedPFMetsJetResDown.size()){
1135     metunc.sumEt =(patType1CorrectedPFMetsJetResDown[0]).sumEt();
1136     metunc.metSig=metSignificance(& (patType1CorrectedPFMetsJetResDown[0]));
1137     metunc.eLong=(patType1CorrectedPFMetsJetResDown[0]).e_longitudinal();
1138     metunc.p4=GENPTOLOR((patType1CorrectedPFMetsJetResDown[0]));
1139     hbbInfo->metUncInfo.push_back(metunc);
1140     }
1141    
1142     edm::Handle<edm::View<reco::MET> > patType1CorrectedPFMetJetResUpHandle;
1143     iEvent.getByLabel("patType1CorrectedPFMetJetResUp",patType1CorrectedPFMetJetResUpHandle);
1144     edm::View<reco::MET> patType1CorrectedPFMetsJetResUp = *patType1CorrectedPFMetJetResUpHandle;
1145     if(patType1CorrectedPFMetsJetResUp.size()){
1146     metunc.sumEt =(patType1CorrectedPFMetsJetResUp[0]).sumEt();
1147     metunc.metSig=metSignificance(& (patType1CorrectedPFMetsJetResUp[0]));
1148     metunc.eLong=(patType1CorrectedPFMetsJetResUp[0]).e_longitudinal();
1149     metunc.p4=GENPTOLOR((patType1CorrectedPFMetsJetResUp[0]));
1150     hbbInfo->metUncInfo.push_back(metunc);
1151     }
1152    
1153    
1154     edm::Handle<edm::View<reco::MET> > patType1CorrectedPFMetUnclusteredEnDownHandle;
1155     iEvent.getByLabel("patType1CorrectedPFMetUnclusteredEnDown",patType1CorrectedPFMetUnclusteredEnDownHandle);
1156     edm::View<reco::MET> patType1CorrectedPFMetsUnclusteredEnDown = *patType1CorrectedPFMetUnclusteredEnDownHandle;
1157     if(patType1CorrectedPFMetsUnclusteredEnDown.size()){
1158     metunc.sumEt =(patType1CorrectedPFMetsUnclusteredEnDown[0]).sumEt();
1159     metunc.metSig=metSignificance(& (patType1CorrectedPFMetsUnclusteredEnDown[0]));
1160     metunc.eLong=(patType1CorrectedPFMetsUnclusteredEnDown[0]).e_longitudinal();
1161     metunc.p4=GENPTOLOR((patType1CorrectedPFMetsUnclusteredEnDown[0]));
1162     hbbInfo->metUncInfo.push_back(metunc);
1163     }
1164    
1165     edm::Handle<edm::View<reco::MET> > patType1CorrectedPFMetUnclusteredEnUpHandle;
1166     iEvent.getByLabel("patType1CorrectedPFMetUnclusteredEnUp",patType1CorrectedPFMetUnclusteredEnUpHandle);
1167     edm::View<reco::MET> patType1CorrectedPFMetsUnclusteredEnUp = *patType1CorrectedPFMetUnclusteredEnUpHandle;
1168     if(patType1CorrectedPFMetsUnclusteredEnUp.size()){
1169     metunc.sumEt =(patType1CorrectedPFMetsUnclusteredEnUp[0]).sumEt();
1170     metunc.metSig=metSignificance(& (patType1CorrectedPFMetsUnclusteredEnUp[0]));
1171     metunc.eLong=(patType1CorrectedPFMetsUnclusteredEnUp[0]).e_longitudinal();
1172     metunc.p4=GENPTOLOR((patType1CorrectedPFMetsUnclusteredEnUp[0]));
1173     hbbInfo->metUncInfo.push_back(metunc);
1174     }
1175    
1176    
1177     edm::Handle<edm::View<reco::MET> > patType1p2CorrectedPFMetElectronEnDownHandle;
1178     iEvent.getByLabel("patType1p2CorrectedPFMetElectronEnDown",patType1p2CorrectedPFMetElectronEnDownHandle);
1179     edm::View<reco::MET> patType1p2CorrectedPFMetsElectronEnDown = *patType1p2CorrectedPFMetElectronEnDownHandle;
1180     if(patType1p2CorrectedPFMetsElectronEnDown.size()){
1181     metunc.sumEt =(patType1p2CorrectedPFMetsElectronEnDown[0]).sumEt();
1182     metunc.metSig=metSignificance(& (patType1p2CorrectedPFMetsElectronEnDown[0]));
1183     metunc.eLong=(patType1p2CorrectedPFMetsElectronEnDown[0]).e_longitudinal();
1184     metunc.p4=GENPTOLOR((patType1p2CorrectedPFMetsElectronEnDown[0]));
1185     hbbInfo->metUncInfo.push_back(metunc);
1186     }
1187    
1188     edm::Handle<edm::View<reco::MET> > patType1p2CorrectedPFMetElectronEnUpHandle;
1189     iEvent.getByLabel("patType1p2CorrectedPFMetElectronEnUp",patType1p2CorrectedPFMetElectronEnUpHandle);
1190     edm::View<reco::MET> patType1p2CorrectedPFMetsElectronEnUp = *patType1p2CorrectedPFMetElectronEnUpHandle;
1191     if(patType1p2CorrectedPFMetsElectronEnUp.size()){
1192     metunc.sumEt =(patType1p2CorrectedPFMetsElectronEnUp[0]).sumEt();
1193     metunc.metSig=metSignificance(& (patType1p2CorrectedPFMetsElectronEnUp[0]));
1194     metunc.eLong=(patType1p2CorrectedPFMetsElectronEnUp[0]).e_longitudinal();
1195     metunc.p4=GENPTOLOR((patType1p2CorrectedPFMetsElectronEnUp[0]));
1196     hbbInfo->metUncInfo.push_back(metunc);
1197     }
1198    
1199    
1200    
1201     edm::Handle<edm::View<reco::MET> > patType1p2CorrectedPFMetMuonEnDownHandle;
1202     iEvent.getByLabel("patType1p2CorrectedPFMetMuonEnDown",patType1p2CorrectedPFMetMuonEnDownHandle);
1203     edm::View<reco::MET> patType1p2CorrectedPFMetsMuonEnDown = *patType1p2CorrectedPFMetMuonEnDownHandle;
1204     if(patType1p2CorrectedPFMetsMuonEnDown.size()){
1205     metunc.sumEt =(patType1p2CorrectedPFMetsMuonEnDown[0]).sumEt();
1206     metunc.metSig=metSignificance(& (patType1p2CorrectedPFMetsMuonEnDown[0]));
1207     metunc.eLong=(patType1p2CorrectedPFMetsMuonEnDown[0]).e_longitudinal();
1208     metunc.p4=GENPTOLOR((patType1p2CorrectedPFMetsMuonEnDown[0]));
1209     hbbInfo->metUncInfo.push_back(metunc);
1210     }
1211    
1212     edm::Handle<edm::View<reco::MET> > patType1p2CorrectedPFMetMuonEnUpHandle;
1213     iEvent.getByLabel("patType1p2CorrectedPFMetMuonEnUp",patType1p2CorrectedPFMetMuonEnUpHandle);
1214     edm::View<reco::MET> patType1p2CorrectedPFMetsMuonEnUp = *patType1p2CorrectedPFMetMuonEnUpHandle;
1215     if(patType1p2CorrectedPFMetsMuonEnUp.size()){
1216     metunc.sumEt =(patType1p2CorrectedPFMetsMuonEnUp[0]).sumEt();
1217     metunc.metSig=metSignificance(& (patType1p2CorrectedPFMetsMuonEnUp[0]));
1218     metunc.eLong=(patType1p2CorrectedPFMetsMuonEnUp[0]).e_longitudinal();
1219     metunc.p4=GENPTOLOR((patType1p2CorrectedPFMetsMuonEnUp[0]));
1220     hbbInfo->metUncInfo.push_back(metunc);
1221     }
1222    
1223    
1224    
1225     edm::Handle<edm::View<reco::MET> > patType1p2CorrectedPFMetTauEnDownHandle;
1226     iEvent.getByLabel("patType1p2CorrectedPFMetTauEnDown",patType1p2CorrectedPFMetTauEnDownHandle);
1227     edm::View<reco::MET> patType1p2CorrectedPFMetsTauEnDown = *patType1p2CorrectedPFMetTauEnDownHandle;
1228     if(patType1p2CorrectedPFMetsTauEnDown.size()){
1229     metunc.sumEt =(patType1p2CorrectedPFMetsTauEnDown[0]).sumEt();
1230     metunc.metSig=metSignificance(& (patType1p2CorrectedPFMetsTauEnDown[0]));
1231     metunc.eLong=(patType1p2CorrectedPFMetsTauEnDown[0]).e_longitudinal();
1232     metunc.p4=GENPTOLOR((patType1p2CorrectedPFMetsTauEnDown[0]));
1233     hbbInfo->metUncInfo.push_back(metunc);
1234     }
1235    
1236     edm::Handle<edm::View<reco::MET> > patType1p2CorrectedPFMetTauEnUpHandle;
1237     iEvent.getByLabel("patType1p2CorrectedPFMetTauEnUp",patType1p2CorrectedPFMetTauEnUpHandle);
1238     edm::View<reco::MET> patType1p2CorrectedPFMetsTauEnUp = *patType1p2CorrectedPFMetTauEnUpHandle;
1239     if(patType1p2CorrectedPFMetsTauEnUp.size()){
1240     metunc.sumEt =(patType1p2CorrectedPFMetsTauEnUp[0]).sumEt();
1241     metunc.metSig=metSignificance(& (patType1p2CorrectedPFMetsTauEnUp[0]));
1242     metunc.eLong=(patType1p2CorrectedPFMetsTauEnUp[0]).e_longitudinal();
1243     metunc.p4=GENPTOLOR((patType1p2CorrectedPFMetsTauEnUp[0]));
1244     hbbInfo->metUncInfo.push_back(metunc);
1245     }
1246    
1247    
1248     edm::Handle<edm::View<reco::MET> > patType1p2CorrectedPFMetJetEnDownHandle;
1249     iEvent.getByLabel("patType1p2CorrectedPFMetJetEnDown",patType1p2CorrectedPFMetJetEnDownHandle);
1250     edm::View<reco::MET> patType1p2CorrectedPFMetsJetEnDown = *patType1p2CorrectedPFMetJetEnDownHandle;
1251     if(patType1p2CorrectedPFMetsJetEnDown.size()){
1252     metunc.sumEt =(patType1p2CorrectedPFMetsJetEnDown[0]).sumEt();
1253     metunc.metSig=metSignificance(& (patType1p2CorrectedPFMetsJetEnDown[0]));
1254     metunc.eLong=(patType1p2CorrectedPFMetsJetEnDown[0]).e_longitudinal();
1255     metunc.p4=GENPTOLOR((patType1p2CorrectedPFMetsJetEnDown[0]));
1256     hbbInfo->metUncInfo.push_back(metunc);
1257     }
1258    
1259     edm::Handle<edm::View<reco::MET> > patType1p2CorrectedPFMetJetEnUpHandle;
1260     iEvent.getByLabel("patType1p2CorrectedPFMetJetEnUp",patType1p2CorrectedPFMetJetEnUpHandle);
1261     edm::View<reco::MET> patType1p2CorrectedPFMetsJetEnUp = *patType1p2CorrectedPFMetJetEnUpHandle;
1262     if(patType1p2CorrectedPFMetsJetEnUp.size()){
1263     metunc.sumEt =(patType1p2CorrectedPFMetsJetEnUp[0]).sumEt();
1264     metunc.metSig=metSignificance(& (patType1p2CorrectedPFMetsJetEnUp[0]));
1265     metunc.eLong=(patType1p2CorrectedPFMetsJetEnUp[0]).e_longitudinal();
1266     metunc.p4=GENPTOLOR((patType1p2CorrectedPFMetsJetEnUp[0]));
1267     hbbInfo->metUncInfo.push_back(metunc);
1268     }
1269    
1270    
1271     edm::Handle<edm::View<reco::MET> > patType1p2CorrectedPFMetJetResDownHandle;
1272     iEvent.getByLabel("patType1p2CorrectedPFMetJetResDown",patType1p2CorrectedPFMetJetResDownHandle);
1273     edm::View<reco::MET> patType1p2CorrectedPFMetsJetResDown = *patType1p2CorrectedPFMetJetResDownHandle;
1274     if(patType1p2CorrectedPFMetsJetResDown.size()){
1275     metunc.sumEt =(patType1p2CorrectedPFMetsJetResDown[0]).sumEt();
1276     metunc.metSig=metSignificance(& (patType1p2CorrectedPFMetsJetResDown[0]));
1277     metunc.eLong=(patType1p2CorrectedPFMetsJetResDown[0]).e_longitudinal();
1278     metunc.p4=GENPTOLOR((patType1p2CorrectedPFMetsJetResDown[0]));
1279     hbbInfo->metUncInfo.push_back(metunc);
1280     }
1281    
1282     edm::Handle<edm::View<reco::MET> > patType1p2CorrectedPFMetJetResUpHandle;
1283     iEvent.getByLabel("patType1p2CorrectedPFMetJetResUp",patType1p2CorrectedPFMetJetResUpHandle);
1284     edm::View<reco::MET> patType1p2CorrectedPFMetsJetResUp = *patType1p2CorrectedPFMetJetResUpHandle;
1285     if(patType1p2CorrectedPFMetsJetResUp.size()){
1286     metunc.sumEt =(patType1p2CorrectedPFMetsJetResUp[0]).sumEt();
1287     metunc.metSig=metSignificance(& (patType1p2CorrectedPFMetsJetResUp[0]));
1288     metunc.eLong=(patType1p2CorrectedPFMetsJetResUp[0]).e_longitudinal();
1289     metunc.p4=GENPTOLOR((patType1p2CorrectedPFMetsJetResUp[0]));
1290     hbbInfo->metUncInfo.push_back(metunc);
1291     }
1292    
1293    
1294     edm::Handle<edm::View<reco::MET> > patType1p2CorrectedPFMetUnclusteredEnDownHandle;
1295     iEvent.getByLabel("patType1p2CorrectedPFMetUnclusteredEnDown",patType1p2CorrectedPFMetUnclusteredEnDownHandle);
1296     edm::View<reco::MET> patType1p2CorrectedPFMetsUnclusteredEnDown = *patType1p2CorrectedPFMetUnclusteredEnDownHandle;
1297     if(patType1p2CorrectedPFMetsUnclusteredEnDown.size()){
1298     metunc.sumEt =(patType1p2CorrectedPFMetsUnclusteredEnDown[0]).sumEt();
1299     metunc.metSig=metSignificance(& (patType1p2CorrectedPFMetsUnclusteredEnDown[0]));
1300     metunc.eLong=(patType1p2CorrectedPFMetsUnclusteredEnDown[0]).e_longitudinal();
1301     metunc.p4=GENPTOLOR((patType1p2CorrectedPFMetsUnclusteredEnDown[0]));
1302     hbbInfo->metUncInfo.push_back(metunc);
1303     }
1304    
1305     edm::Handle<edm::View<reco::MET> > patType1p2CorrectedPFMetUnclusteredEnUpHandle;
1306     iEvent.getByLabel("patType1p2CorrectedPFMetUnclusteredEnUp",patType1p2CorrectedPFMetUnclusteredEnUpHandle);
1307     edm::View<reco::MET> patType1p2CorrectedPFMetsUnclusteredEnUp = *patType1p2CorrectedPFMetUnclusteredEnUpHandle;
1308     if(patType1p2CorrectedPFMetsUnclusteredEnUp.size()){
1309     metunc.sumEt =(patType1p2CorrectedPFMetsUnclusteredEnUp[0]).sumEt();
1310     metunc.metSig=metSignificance(& (patType1p2CorrectedPFMetsUnclusteredEnUp[0]));
1311     metunc.eLong=(patType1p2CorrectedPFMetsUnclusteredEnUp[0]).e_longitudinal();
1312     metunc.p4=GENPTOLOR((patType1p2CorrectedPFMetsUnclusteredEnUp[0]));
1313     hbbInfo->metUncInfo.push_back(metunc);
1314     }
1315    
1316    
1317    
1318 tboccali 1.1 //
1319     // met is calomet
1320     //
1321    
1322     edm::Handle<edm::View<pat::MET> > metTCHandle;
1323     iEvent.getByLabel("patMETsTC",metTCHandle);
1324     edm::View<pat::MET> metsTC = *metTCHandle;
1325 tboccali 1.9 if(metsTC.size()){
1326     hbbInfo->tcmet.sumEt=(metsTC[0]).sumEt();
1327 arizzi 1.56 hbbInfo->tcmet.metSig=metSignificance(&(metsTC[0]));
1328 tboccali 1.9 hbbInfo->tcmet.eLong=(metsTC[0]).e_longitudinal();
1329 tboccali 1.13 hbbInfo->tcmet.p4=GENPTOLOR((metsTC[0]));
1330 tboccali 1.9 if (verbose_) std::cout <<" METTC "<< hbbInfo->tcmet.metSig <<" " << hbbInfo->tcmet.sumEt<<std::endl;
1331     }
1332    
1333 arizzi 1.38 edm::Handle<edm::View<reco::MET> > pfMETNoPUHandle;
1334     iEvent.getByLabel("pfMETNoPU",pfMETNoPUHandle);
1335     edm::View<reco::MET> metspfMETNoPU = *pfMETNoPUHandle;
1336     if(metspfMETNoPU.size()){
1337     hbbInfo->metNoPU.sumEt=(metspfMETNoPU[0]).sumEt();
1338 arizzi 1.56 hbbInfo->metNoPU.metSig=metSignificance(&(metspfMETNoPU[0]));
1339 arizzi 1.38 hbbInfo->metNoPU.eLong=(metspfMETNoPU[0]).e_longitudinal();
1340     hbbInfo->metNoPU.p4=GENPTOLOR((metspfMETNoPU[0]));
1341     if (verbose_) std::cout <<" pfMETNoPU "<< hbbInfo->metNoPU.metSig <<" " << hbbInfo->metNoPU.sumEt<<std::endl;
1342     }
1343 tboccali 1.28
1344 tboccali 1.29 edm::Handle<edm::View<reco::MET> > mHTHandle;
1345 tboccali 1.28 iEvent.getByLabel("patMETsHT",mHTHandle);
1346 tboccali 1.29 edm::View<reco::MET> metsHT = *mHTHandle;
1347 tboccali 1.28 if(metsHT.size()){
1348     hbbInfo->mht.sumEt=(metsHT[0]).sumEt();
1349 arizzi 1.56 hbbInfo->mht.metSig=metSignificance(&(metsHT[0]));
1350 tboccali 1.28 hbbInfo->mht.eLong=(metsHT[0]).e_longitudinal();
1351     hbbInfo->mht.p4=GENPTOLOR((metsHT[0]));
1352     if (verbose_) std::cout <<" METHT "<< hbbInfo->mht.metSig <<" " << hbbInfo->mht.sumEt<<std::endl;
1353     }
1354    
1355 arizzi 1.39 edm::Handle<edm::View<reco::MET> > metHandle;
1356 tboccali 1.28 iEvent.getByLabel(metLabel_,metHandle);
1357 arizzi 1.39 edm::View<reco::MET> mets = *metHandle;
1358 tboccali 1.28
1359 tboccali 1.9 if(mets.size()){
1360     hbbInfo->calomet.sumEt=(mets[0]).sumEt();
1361 arizzi 1.56 hbbInfo->calomet.metSig=metSignificance(&(mets[0]));
1362 tboccali 1.9 hbbInfo->calomet.eLong=(mets[0]).e_longitudinal();
1363 tboccali 1.13 hbbInfo->calomet.p4=GENPTOLOR((mets[0]));
1364 tboccali 1.28 if (verbose_) std::cout <<" METCALO "<< hbbInfo->calomet.metSig <<" " << hbbInfo->calomet.sumEt<<std::endl;
1365 tboccali 1.1 }
1366 tboccali 1.9
1367 tboccali 1.1 edm::Handle<edm::View<pat::MET> > metPFHandle;
1368 arizzi 1.75 iEvent.getByLabel("patMETsPFlow",metPFHandle);
1369 tboccali 1.1 edm::View<pat::MET> metsPF = *metPFHandle;
1370 tboccali 1.28
1371 tboccali 1.9 if(metsPF.size()){
1372     hbbInfo->pfmet.sumEt=(metsPF[0]).sumEt();
1373 arizzi 1.56 hbbInfo->pfmet.metSig=metSignificance(&(metsPF[0]));
1374 tboccali 1.9 hbbInfo->pfmet.eLong=(metsPF[0]).e_longitudinal();
1375 tboccali 1.13 hbbInfo->pfmet.p4=GENPTOLOR((metsPF[0]));
1376 tboccali 1.28 if (verbose_) std::cout <<" METPF "<< hbbInfo->pfmet.metSig <<" " << hbbInfo->pfmet.sumEt<<std::endl;
1377 tboccali 1.1 }
1378 tboccali 1.28
1379    
1380 tboccali 1.9 if(verbose_){
1381 tboccali 1.28 std::cout << "METs: calomet "<<mets.size()<<" tcmet"<<metsTC.size()<<" pfmet "<<metsPF.size()<<" MHT" <<metsHT.size()<<std::endl;
1382 tboccali 1.9 }
1383    
1384 bortigno 1.25 if(verbose_)
1385     std::cout << " INPUT MUONS "<<muons.size()<<std::endl;
1386 tboccali 1.1
1387     for(edm::View<pat::Muon>::const_iterator mu = muons.begin(); mu!=muons.end(); ++mu){
1388     VHbbEvent::MuonInfo mf;
1389 tboccali 1.13 mf.p4 =GENPTOLORP( mu);
1390 tboccali 1.1 mf.charge=mu->charge();
1391     mf.tIso=mu->trackIso();
1392     mf.eIso=mu->ecalIso();
1393     mf.hIso=mu->hcalIso();
1394 arizzi 1.16 mf.pfChaIso=mu->chargedHadronIso();
1395 arizzi 1.72 mf.pfChaPUIso=mu->puChargedHadronIso(); //userIso(5);
1396 arizzi 1.16 mf.pfPhoIso=mu->photonIso();
1397     mf.pfNeuIso=mu->neutralHadronIso();
1398 tboccali 1.13 Geom::Phi<double> deltaphi(mu->phi()-atan2(mf.p4.Px(), mf.p4.Py()));
1399 tboccali 1.1 double acop = deltaphi.value();
1400     mf.acop=acop;
1401    
1402 tboccali 1.52 mf.emEnergy = mu->calEnergy().em;
1403     mf.hadEnergy = mu->calEnergy().had;
1404    
1405 tboccali 1.45 mf.nMatches = mu->numberOfMatches();
1406    
1407 tboccali 1.1 mf.ipDb=mu->dB();
1408     mf.ipErrDb=mu->edB();
1409 bortigno 1.23 mf.cat=0;
1410 degrutto 1.61
1411 bortigno 1.22 if(mu->isGlobalMuon()) mf.cat|=1;
1412     if(mu->isTrackerMuon()) mf.cat|=2;
1413 bortigno 1.23 if(mu->isStandAloneMuon()) mf.cat|=4;
1414 tboccali 1.1 TrackRef trkMu1Ref = mu->get<TrackRef>();
1415     if(trkMu1Ref.isNonnull()){
1416     const Track* MuTrk1 = mu->get<TrackRef>().get();
1417     mf.zPVPt=MuTrk1->dz(RecVtxFirst.position());
1418     mf.zPVProb=MuTrk1->dz(RecVtx.position());
1419     mf.nHits=MuTrk1->numberOfValidHits();
1420     mf.chi2=MuTrk1->normalizedChi2();
1421     TrackRef iTrack1 = mu->innerTrack();
1422     const reco::HitPattern& p1 = iTrack1->hitPattern();
1423     mf.nPixelHits=p1.pixelLayersWithMeasurement();
1424 tboccali 1.47
1425     mf.nValidTracker = p1.numberOfValidTrackerHits();
1426     mf.nValidPixel = p1.numberOfValidPixelHits();
1427 arizzi 1.71 mf.nValidLayers = p1.trackerLayersWithMeasurement();
1428     mf.isPF = mu->isPFMuon();
1429 tboccali 1.47
1430    
1431    
1432     }
1433 tboccali 1.1 if(mu->isGlobalMuon()){
1434     TrackRef gTrack = mu->globalTrack();
1435     const reco::HitPattern& q = gTrack->hitPattern();
1436     mf.globChi2=gTrack.get()->normalizedChi2();
1437     mf.globNHits=q.numberOfValidMuonHits();
1438 tboccali 1.40 mf.validMuStations = q.muonStationsWithValidHits();
1439 tboccali 1.1 }else{
1440     mf.globChi2=-99;
1441     mf.globNHits=-99;
1442     }
1443 bortigno 1.18
1444     //Muon trigger matching
1445     for (int itrig = 0; itrig != ntrigs; ++itrig){
1446     std::string trigName=triggerNames_.triggerName(itrig);
1447 arizzi 1.26 if( (mu->triggerObjectMatchesByPath(trigName,false,false).size() != 0) ){
1448 bortigno 1.18 mf.hltMatchedBits.push_back(itrig);
1449     if(verbose_){
1450     std::clog << "Trigger Matching box" << std::endl;
1451     std::clog << "+++++++++++++++++++++++++++++++++++++++++++++++++" << std::endl;
1452     std::clog << "Matching parameters are defined in the cfg" << std::endl;
1453     std::clog << "Trigger bit = " << itrig << std::endl;
1454     std::clog << "Trigger name = " << trigName << std::endl;
1455 arizzi 1.26 std::clog << "Trigger object matched collection size = " << mu->triggerObjectMatchesByPath(trigName,false,false).size() << std::endl;
1456 bortigno 1.18 std::clog << "Pat Muon pt = " << mf.p4.Pt() << " HLT object matched = " << mu->triggerObjectMatch(0)->p4().Pt() << std::endl;
1457     std::clog << "+++++++++++++++++++++++++++++++++++++++++++++++++" << std::endl;
1458     }
1459     }
1460     }
1461 tboccali 1.8 //
1462 bortigno 1.18
1463 tboccali 1.8 // add stamuon
1464    
1465     // if (mu->isStandAloneMuon()) {
1466     // reco::TrackRef sta = mu->standAloneMuon();
1467     //
1468     // }
1469    
1470 tboccali 1.1
1471     // int muInfo[12];
1472     // fillMuBlock(mu, muInfo);
1473 tboccali 1.3 if(runOnMC_){
1474 tboccali 1.1 const GenParticle* muMc = mu->genLepton();
1475     if(muMc!=0){
1476     mf.mcId=muMc->pdgId();
1477     mf.mcFourMomentum=GENPTOLORP(muMc);
1478     if(muMc->mother()!=0) mf.mcMomId=muMc->mother()->pdgId();
1479     if(muMc->mother()!=0 && muMc->mother()->mother()!=0) mf.mcgMomId=muMc->mother()->mother()->pdgId();
1480     } }
1481     hbbInfo->muInfo.push_back(mf);
1482     }
1483    
1484 tboccali 1.28 if(verbose_)
1485 bortigno 1.25 std::cout << " INPUT electrons "<<electrons.size()<<std::endl;
1486 arizzi 1.70 InputTag reducedEBRecHitCollection(string("reducedEcalRecHitsEB"));
1487     InputTag reducedEERecHitCollection(string("reducedEcalRecHitsEE"));
1488     EcalClusterLazyTools lazyTools(iEvent, iSetup, reducedEBRecHitCollection, reducedEERecHitCollection);
1489     edm::ESHandle<TransientTrackBuilder> builder;
1490     iSetup.get<TransientTrackRecord>().get("TransientTrackBuilder", builder);
1491     const TransientTrackBuilder & transientTrackBuilder= *(builder.product());
1492    
1493 tboccali 1.1 for(edm::View<pat::Electron>::const_iterator elec = electrons.begin(); elec!=electrons.end(); ++elec){
1494     VHbbEvent::ElectronInfo ef;
1495 tboccali 1.13 ef.p4=GENPTOLORP(elec);
1496 tboccali 1.1 ef.scEta =elec->superCluster()->eta();
1497     ef.scPhi =elec->superCluster()->phi();
1498     // if(ElecEta[eleccont]!=0) ElecEt[eleccont]=elec->superCluster()->energy()/cosh(elec->superCluster()->eta());
1499     ef.charge=elec->charge();
1500     ef.tIso=elec->trackIso();
1501     ef.eIso=elec->ecalIso();
1502     ef.hIso=elec->hcalIso();
1503 arizzi 1.16 ef.pfChaIso=elec->chargedHadronIso();
1504 arizzi 1.72 ef.pfChaPUIso=elec->puChargedHadronIso();//userIso(5);
1505 arizzi 1.16 ef.pfPhoIso=elec->photonIso();
1506 arizzi 1.74 ef.pfPhoIsoDoubleCounted=0;
1507    
1508     /* Check if there are photons sharing the super cluster*/
1509     for(size_t k=0;k<photonsForIso.size();k++) {
1510     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 ) {
1511     std::cout << "Double counting of supercluster!" << std::endl;
1512     ef.pfPhoIsoDoubleCounted+=photonsForIso[k].pt();
1513     }
1514     }
1515 arizzi 1.16 ef.pfNeuIso=elec->neutralHadronIso();
1516    
1517 tboccali 1.50 //
1518     // ip info
1519     //
1520    
1521     ef.ipDb=elec->dB();
1522     ef.ipErrDb=elec->edB();
1523    
1524    
1525    
1526 arizzi 1.38 Geom::Phi<double> deltaphi(elec->superCluster()->phi()-atan2(hbbInfo->pfmet.p4.Py(),hbbInfo->pfmet.p4.Px()));
1527 tboccali 1.1 ef.acop = deltaphi.value();
1528 tboccali 1.8 //
1529 tboccali 1.48 ef.sihih = elec->sigmaIetaIeta();
1530     ef.Dphi = elec->deltaPhiSuperClusterTrackAtVtx();
1531     ef.Deta = elec->deltaEtaSuperClusterTrackAtVtx();
1532     ef.HoE = elec->hadronicOverEm();
1533     ef.convDist = elec->convDist();
1534     ef.convDcot = elec->convDcot();
1535 arizzi 1.75 if(elec->gsfTrack().isNonnull())
1536     {
1537     ef.innerHits = elec->gsfTrack()->trackerExpectedHitsInner().numberOfHits();
1538     }
1539 tboccali 1.48 ef.isEB = elec->isEB();
1540     ef.isEE = elec->isEE();
1541 arizzi 1.70 /* 2012 ELEID*/
1542    
1543     const pat::Electron & ele = *elec;
1544     bool validKF= false;
1545     reco::TrackRef myTrackRef = ele.closestCtfTrackRef();
1546     validKF = (myTrackRef.isAvailable());
1547     validKF = (myTrackRef.isNonnull());
1548    
1549     // Pure tracking variables
1550     ef.fMVAVar_fbrem = ele.fbrem();
1551     ef.fMVAVar_kfchi2 = (validKF) ? myTrackRef->normalizedChi2() : 0 ;
1552     ef.fMVAVar_kfhits = (validKF) ? myTrackRef->hitPattern().trackerLayersWithMeasurement() : -1. ;
1553     // fMVAVar_kfhitsall = (validKF) ? myTrackRef->numberOfValidHits() : -1. ; // save also this in your ntuple as possible alternative
1554     ef.fMVAVar_gsfchi2 = ele.gsfTrack()->normalizedChi2();
1555    
1556    
1557     // Geometrical matchings
1558     ef.fMVAVar_deta = ele.deltaEtaSuperClusterTrackAtVtx();
1559     ef.fMVAVar_dphi = ele.deltaPhiSuperClusterTrackAtVtx();
1560     ef.fMVAVar_detacalo = ele.deltaEtaSeedClusterTrackAtCalo();
1561     // fMVAVar_dphicalo = ele.deltaPhiSeedClusterTrackAtCalo(); // save also this in your ntuple
1562    
1563    
1564     // Pure ECAL -> shower shapes
1565     ef.fMVAVar_see = ele.sigmaIetaIeta(); //EleSigmaIEtaIEta
1566     std::vector<float> vCov = lazyTools.localCovariances(*(ele.superCluster()->seed())) ;
1567     if (!isnan(vCov[2])) ef.fMVAVar_spp = sqrt (vCov[2]); //EleSigmaIPhiIPhi
1568     else ef.fMVAVar_spp = 0.;
1569     // fMVAVar_sigmaIEtaIPhi = vCov[1]; // save also this in your ntuple
1570    
1571     ef.fMVAVar_etawidth = ele.superCluster()->etaWidth();
1572     ef.fMVAVar_phiwidth = ele.superCluster()->phiWidth();
1573     ef.fMVAVar_e1x5e5x5 = (ele.e5x5()) !=0. ? 1.-(ele.e1x5()/ele.e5x5()) : -1. ;
1574     ef.fMVAVar_R9 = lazyTools.e3x3(*(ele.superCluster()->seed())) / ele.superCluster()->rawEnergy();
1575     //fMVAVar_nbrems = fabs(ele.numberOfBrems()); // save also this in your ntuple
1576    
1577     // Energy matching
1578     ef.fMVAVar_HoE = ele.hadronicOverEm();
1579     ef.fMVAVar_EoP = ele.eSuperClusterOverP();
1580     // fMVAVar_IoEmIoP = (1.0/(ele.superCluster()->energy())) - (1.0 / ele.p()); // in the future to be changed with ele.gsfTrack()->p()
1581     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
1582    
1583     ef.fMVAVar_eleEoPout = ele.eEleClusterOverPout();
1584     ef.fMVAVar_PreShowerOverRaw= ele.superCluster()->preshowerEnergy() / ele.superCluster()->rawEnergy();
1585     // fMVAVar_EoPout = ele.eSeedClusterOverPout(); // save also this in your ntuple
1586    
1587    
1588     // Spectators
1589     ef.fMVAVar_eta = ele.superCluster()->eta();
1590     ef.fMVAVar_pt = ele.pt();
1591    
1592     //additional for cut based
1593     ef.dxy = elec->gsfTrack()->dxy(vertex.position());
1594     ef.dz = elec->gsfTrack()->dz(vertex.position());
1595    
1596    
1597     //d0
1598     if (ele.gsfTrack().isNonnull()) {
1599     ef.fMVAVar_d0 = (-1.0)*ele.gsfTrack()->dxy(vertex.position());
1600     } else if (ele.closestCtfTrackRef().isNonnull()) {
1601     ef.fMVAVar_d0 = (-1.0)*ele.closestCtfTrackRef()->dxy(vertex.position());
1602     } else {
1603     ef.fMVAVar_d0 = -9999.0;
1604    
1605     //default values for IP3D
1606     ef.fMVAVar_ip3d = -999.0;
1607     // fMVAVar_ip3dSig = 0.0;
1608     if (ele.gsfTrack().isNonnull()) {
1609     const double gsfsign = ( (-ele.gsfTrack()->dxy(vertex.position())) >=0 ) ? 1. : -1.;
1610    
1611     const reco::TransientTrack &tt = transientTrackBuilder.build(ele.gsfTrack());
1612     const std::pair<bool,Measurement1D> &ip3dpv = IPTools::absoluteImpactParameter3D(tt,vertex);
1613     if (ip3dpv.first) {
1614     double ip3d = gsfsign*ip3dpv.second.value();
1615     //double ip3derr = ip3dpv.second.error();
1616     ef.fMVAVar_ip3d = ip3d;
1617     // fMVAVar_ip3dSig = ip3d/ip3derr;
1618     }
1619     }
1620     }
1621    
1622    
1623     /* end of 2012 ELEID*/
1624    
1625 tboccali 1.48 //
1626 tboccali 1.8 // fill eleids
1627     //
1628 arizzi 1.16 /* ef.id95 = elec->electronID("simpleEleId95cIso");
1629 tboccali 1.8 ef.id85 = elec->electronID("simpleEleId85cIso");
1630     ef.id70 = elec->electronID("simpleEleId70cIso");
1631     ef.id95r = elec->electronID("simpleEleId95relIso");
1632     ef.id70r = elec->electronID("simpleEleId70relIso");
1633     ef.id85r = elec->electronID("simpleEleId85relIso");
1634 arizzi 1.16 */
1635     ef.id95 =elec->electronID("eidVBTFCom95");
1636     ef.id95r=elec->electronID("eidVBTFRel95");
1637     ef.id85 =elec->electronID("eidVBTFCom85");
1638     ef.id85r=elec->electronID("eidVBTFRel85");
1639     ef.id80 =elec->electronID("eidVBTFCom80");
1640     ef.id80r=elec->electronID("eidVBTFRel80");
1641     ef.id70 =elec->electronID("eidVBTFCom70");
1642     ef.id70r=elec->electronID("eidVBTFRel70");
1643 arizzi 1.71 ef.mvaOut=elec->electronID("mvaNonTrigV0");
1644     ef.mvaOutTrig=elec->electronID("mvaTrigV0");
1645 tboccali 1.8
1646 bortigno 1.25 //Electron trigger matching
1647 bortigno 1.18 for (int itrig = 0; itrig != ntrigs; ++itrig){
1648     std::string trigName=triggerNames_.triggerName(itrig);
1649     if( (elec->triggerObjectMatchesByPath(trigName).size() != 0) ){
1650     ef.hltMatchedBits.push_back(itrig);
1651     if(verbose_){
1652     std::clog << "Trigger Matching box" << std::endl;
1653     std::clog << "+++++++++++++++++++++++++++++++++++++++++++++++++" << std::endl;
1654     std::clog << "Matching parameters are defined in the cfg" << std::endl;
1655     std::clog << "Trigger bit = " << itrig << std::endl;
1656     std::clog << "Trigger name = " << trigName << std::endl;
1657     std::clog << "Trigger object matched collection size = " << elec->triggerObjectMatchesByPath(trigName).size() << std::endl;
1658     std::clog << "Pat Electron pt = " << ef.p4.Pt() << " HLT object matched = " << elec->triggerObjectMatch(0)->p4().Pt() << std::endl;
1659     std::clog << "+++++++++++++++++++++++++++++++++++++++++++++++++" << std::endl;
1660     }
1661     }
1662     }
1663    
1664 tboccali 1.3 if(runOnMC_){
1665 tboccali 1.1 const GenParticle* elecMc = elec->genLepton();
1666     if(elecMc!=0){
1667     ef.mcId=elecMc->pdgId();
1668     ef.mcFourMomentum=GENPTOLORP(elecMc);
1669     if(elecMc->mother()!=0) ef.mcMomId=elecMc->mother()->pdgId();
1670     if(elecMc->mother()!=0 && elecMc->mother()->mother()!=0) ef.mcgMomId=elecMc->mother()->mother()->pdgId();
1671     }}
1672     hbbInfo->eleInfo.push_back(ef);
1673     }
1674    
1675 bortigno 1.25 if(verbose_)
1676     std::cout << " INPUT taus "<<taus.size()<<std::endl;
1677 tboccali 1.1 for(edm::View<pat::Tau>::const_iterator tau = taus.begin(); tau!=taus.end(); ++tau){
1678     VHbbEvent::TauInfo tf;
1679 tboccali 1.13 tf.p4=GENPTOLORP(tau);
1680 tboccali 1.1 tf.charge=tau->charge();
1681     tf.tIso=tau->trackIso();
1682     tf.eIso=tau->ecalIso();
1683     tf.hIso=tau->hcalIso();
1684 arizzi 1.38 Geom::Phi<double> deltaphi(tau->phi()-atan2(hbbInfo->pfmet.p4.Py(),hbbInfo->pfmet.p4.Px()));
1685 tboccali 1.1 double acop = deltaphi.value();
1686     tf.acop=acop;
1687 sethzenz 1.63 if (tau->isTauIDAvailable("againstElectronLoose")) tf.againstElectronLoose=tau->tauID("againstElectronLoose");
1688     if (tau->isTauIDAvailable("againstElectronMedium")) tf.againstElectronMedium=tau->tauID("againstElectronMedium");
1689     if (tau->isTauIDAvailable("againstElectronTight")) tf.againstElectronTight=tau->tauID("againstElectronTight");
1690     if (tau->isTauIDAvailable("againstMuonLoose")) tf.againstMuonLoose=tau->tauID("againstMuonLoose");
1691     if (tau->isTauIDAvailable("againstMuonTight")) tf.againstMuonTight=tau->tauID("againstMuonTight");
1692     if (tau->isTauIDAvailable("byLooseIsolation")) tf.byLooseIsolation=tau->tauID("byLooseIsolation");
1693     if (tau->isTauIDAvailable("byMediumIsolation")) tf.byMediumIsolation=tau->tauID("byMediumIsolation");
1694     if (tau->isTauIDAvailable("byTightIsolation")) tf.byTightIsolation=tau->tauID("byTightIsolation");
1695     if (tau->isTauIDAvailable("byVLooseIsolation")) tf.byVLooseIsolation=tau->tauID("byVLooseIsolation");
1696     if (tau->isTauIDAvailable("decayModeFinding")) tf.decayModeFinding=tau->tauID("decayModeFinding");
1697     if (tau->isTauIDAvailable("byIsolation")) tf.byIsolation=tau->tauID("byIsolation");
1698     if (tau->isTauIDAvailable("trackIsolation")) tf.trackIsolation=tau->tauID("trackIsolation");
1699     if (tau->isTauIDAvailable("byTaNCfrOnePercent")) tf.byTaNCfrOnePercent=tau->tauID("byTaNCfrOnePercent");
1700     if (tau->isTauIDAvailable("byTaNCfrHalfPercent")) tf.byTaNCfrHalfPercent=tau->tauID("byTaNCfrHalfPercent");
1701     if (tau->isTauIDAvailable("byTaNCfrQuarterPercent")) tf.byTaNCfrQuarterPercent=tau->tauID("byTaNCfrQuarterPercent");
1702     if (tau->isTauIDAvailable("byTaNCfrTenthPercent")) tf.byTaNCfrTenthPercent=tau->tauID("byTaNCfrTenthPercent");
1703     if (tau->isTauIDAvailable("byTaNC")) tf.byTaNC=tau->tauID("byTaNC");
1704     if (tau->isTauIDAvailable("byLooseCombinedIsolationDeltaBetaCorr")) tf.byLooseCombinedIsolationDeltaBetaCorr=tau->tauID("byLooseCombinedIsolationDeltaBetaCorr");
1705     if (tau->isTauIDAvailable("againstElectronMVA")) tf.againstElectronMVA=tau->tauID("againstElectronMVA");
1706 dlopes 1.59 if (tau->isPFTau()) {
1707     tf.isolationPFChargedHadrCandsPtSum = tau->isolationPFChargedHadrCandsPtSum();
1708     tf.isolationPFGammaCandsEtSum = tau->isolationPFGammaCandsEtSum();
1709 sethzenz 1.63 if (tau->leadPFChargedHadrCand().isAvailable()) tf.leadPFChargedHadrCandPt = tau->leadPFChargedHadrCand()->pt();
1710 sethzenz 1.60 tf.NsignalPFChargedHadrCands = tau->signalPFChargedHadrCands().size();
1711     tf.NsignalPFGammaCands = tau->signalPFGammaCands().size();
1712 dlopes 1.59 }
1713 tboccali 1.1 hbbInfo->tauInfo.push_back(tf);
1714 dlopes 1.59 if (verbose_) {
1715 sethzenz 1.63 std::cout << "SCZ DEBUG: againstElectronLoose is " << tf.againstElectronLoose << std::endl;
1716     std::cout << "SCZ DEBUG: againstElectronMedium is " << tf.againstElectronMedium << std::endl;
1717     std::cout << "SCZ DEBUG: againstElectronTight is " << tf.againstElectronTight << std::endl;
1718     std::cout << "SCZ DEBUG: againstMuonLoose is " << tf.againstMuonLoose << std::endl;
1719     std::cout << "SCZ DEBUG: againstMuonTight is " << tf.againstMuonTight << std::endl;
1720     std::cout << "SCZ DEBUG: byLooseIsolation is " << tf.byLooseIsolation << std::endl;
1721     std::cout << "SCZ DEBUG: byMediumIsolation is " << tf.byMediumIsolation << std::endl;
1722     std::cout << "SCZ DEBUG: byTightIsolation is " << tf.byTightIsolation << std::endl;
1723     std::cout << "SCZ DEBUG: byVLooseIsolation is " << tf.byVLooseIsolation << std::endl;
1724     std::cout << "SCZ DEBUG: decayModeFinding is " << tf.decayModeFinding << std::endl;
1725     std::cout << "SCZ DEBUG: byIsolation is " << tf.byIsolation<< std::endl;
1726     std::cout << "SCZ DEBUG: trackIsolation is " << tf.trackIsolation << std::endl;
1727     std::cout << "SCZ DEBUG: byTaNCfrOnePercent is " << tf.byTaNCfrOnePercent << std::endl;
1728     std::cout << "SCZ DEBUG: byTaNCfrHalfPercent is " << tf.byTaNCfrHalfPercent << std::endl;
1729     std::cout << "SCZ DEBUG: byTaNCfrQuarterPercent is " << tf.byTaNCfrQuarterPercent << std::endl;
1730     std::cout << "SCZ DEBUG: byTaNCfrTenthPercent is " << tf.byTaNCfrTenthPercent << std::endl;
1731     std::cout << "SCZ DEBUG: byTaNC is " << tf.byTaNC << std::endl;
1732 dlopes 1.59 std::cout << "SCZ DEBUG: isolationPFChargedHadrCandsPtSum is " << tf.isolationPFChargedHadrCandsPtSum << std::endl;
1733     std::cout << "SCZ DEBUG: isolationPFGammaCandsEtSum is " << tf.isolationPFGammaCandsEtSum << std::endl;
1734     std::cout << "SCZ DEBUG: isolationPFGammaCandsEtSum is " << tf.leadPFChargedHadrCandPt << std::endl;
1735 sethzenz 1.60 std::cout << "SCZ DEBUG: NsignalPFChargedHadrCands is " << tf.NsignalPFChargedHadrCands << std::endl;
1736     std::cout << "SCZ DEBUG: NsignalPFGammaCands is " << tf.NsignalPFGammaCands << std::endl;
1737 sethzenz 1.63 std::cout << "SCZ DEBUG: byLooseCombinedIsolationDeltaBetaCorr is " << tf.byLooseCombinedIsolationDeltaBetaCorr << std::endl;
1738     std::cout << "SCZ DEBUG: againstElectronMVA is " << tf.againstElectronMVA << std::endl;
1739 dlopes 1.59 }
1740 tboccali 1.1 }
1741    
1742 tboccali 1.28 CompareJetPtMuons ptComparatorMu;
1743     CompareJetPtElectrons ptComparatorE;
1744     CompareJetPtTaus ptComparatorTau;
1745    
1746     std::sort(hbbInfo->muInfo.begin(), hbbInfo->muInfo.end(), ptComparatorMu);
1747     std::sort(hbbInfo->eleInfo.begin(), hbbInfo->eleInfo.end(), ptComparatorE);
1748     std::sort(hbbInfo->tauInfo.begin(), hbbInfo->tauInfo.end(), ptComparatorTau);
1749    
1750 tboccali 1.1
1751    
1752    
1753 tboccali 1.9 if (verbose_){
1754     std::cout <<" Pushing hbbInfo "<<std::endl;
1755     std::cout <<" SimpleJets1 = "<<hbbInfo->simpleJets.size()<<std::endl<<
1756     " SimpleJets2 = "<<hbbInfo->simpleJets2.size()<<std::endl<<
1757     " SubJets = "<<hbbInfo->subJets.size()<<std::endl<<
1758     " HardJets = "<<hbbInfo->hardJets.size()<<std::endl<<
1759 dlopes 1.59 " FilterJets = "<<hbbInfo->filterJets.size()<<std::endl<<
1760 tboccali 1.9 " Muons = "<<hbbInfo->muInfo.size()<<std::endl<<
1761     " Electrons = "<<hbbInfo->eleInfo.size()<<std::endl<<
1762     " Taus = "<<hbbInfo->tauInfo.size()<<std::endl<<
1763     " Electrons = "<<hbbInfo->eleInfo.size()<<std::endl<<
1764     "--------------------- "<<std::endl;
1765     }
1766    
1767    
1768 tboccali 1.1 iEvent.put(hbbInfo);
1769 tboccali 1.14 iEvent.put(auxInfo);
1770 tboccali 1.1
1771 tboccali 1.9
1772 tboccali 1.53 delete jecUnc;
1773    
1774 tboccali 1.1 }
1775    
1776     void
1777     HbbAnalyzerNew::fillMuBlock(edm::View<pat::Muon>::const_iterator mu, int muInfo[15])
1778     {
1779     if(muon::isGoodMuon(*mu,muon::TMLastStationLoose)) muInfo[0]=1;
1780     if(muon::isGoodMuon(*mu,muon::TMLastStationTight)) muInfo[1]=1;
1781     if(muon::isGoodMuon(*mu,muon::TM2DCompatibilityLoose)) muInfo[2]=1;
1782     if(muon::isGoodMuon(*mu,muon::TM2DCompatibilityTight)) muInfo[3]=1;
1783     if(muon::isGoodMuon(*mu,muon::TMOneStationLoose)) muInfo[4]=1;
1784     if(muon::isGoodMuon(*mu,muon::TMOneStationTight)) muInfo[5]=1;
1785     if(muon::isGoodMuon(*mu,muon::TMLastStationOptimizedLowPtLoose)) muInfo[6]=1;
1786     if(muon::isGoodMuon(*mu,muon::TMLastStationOptimizedLowPtTight))muInfo[7]=1;
1787     if(muon::isGoodMuon(*mu,muon::TMOneStationAngLoose)) muInfo[8]=1;
1788     if(muon::isGoodMuon(*mu,muon::TMOneStationAngTight)) muInfo[9]=1;
1789     if(muon::isGoodMuon(*mu,muon::TMLastStationAngLoose)) muInfo[10]=1;
1790     if(muon::isGoodMuon(*mu,muon::TMLastStationAngTight)) muInfo[11]=1;
1791     if(muon::isGoodMuon(*mu,muon::GMTkChiCompatibility)) muInfo[12]=1;
1792     if(muon::isGoodMuon(*mu,muon::GMStaChiCompatibility)) muInfo[13]=1;
1793     if(muon::isGoodMuon(*mu,muon::GMTkKinkTight)) muInfo[14]=1;
1794     }
1795    
1796     // ------------ method called once each job just before starting event loop ------------
1797     void
1798     HbbAnalyzerNew::beginJob(){
1799     }
1800    
1801    
1802     // ------------ method called once each job just after ending the event loop ------------
1803     void
1804     HbbAnalyzerNew::endJob() {
1805     }
1806    
1807 tboccali 1.5 TVector2 HbbAnalyzerNew::getTvect( const pat::Jet* patJet ){
1808    
1809     TVector2 t_Vect(0,0);
1810     TVector2 null(0,0);
1811     TVector2 ci(0,0);
1812     TLorentzVector pi(0,0,0,0);
1813     TLorentzVector J(0,0,0,0);
1814     TVector2 r(0,0);
1815     double patJetpfcPt = 1e10;
1816     double r_mag = 1e10;
1817     unsigned int nOfconst = 0;
1818    
1819 tboccali 1.6
1820     if (patJet->isPFJet() == false) {
1821     return t_Vect;
1822     }
1823    
1824    
1825     //re-reconstruct the jet direction with the charged tracks
1826 tboccali 1.5 std::vector<reco::PFCandidatePtr>
1827     patJetpfc = patJet->getPFConstituents();
1828     for(size_t idx = 0; idx < patJetpfc.size(); idx++){
1829     if( patJetpfc.at(idx)->charge() != 0 ){
1830     pi.SetPtEtaPhiE( patJetpfc.at(idx)->pt(), patJetpfc.at(idx)->eta(), patJetpfc.at(idx)->phi(), patJetpfc.at(idx)->energy() );
1831     J += pi;
1832     nOfconst++;
1833     }
1834     }
1835     // if there are less than two charged tracks do not calculate the pull (there is not enough info). It returns a null vector
1836    
1837     if( nOfconst < 2 )
1838     return null;
1839 tboccali 1.6
1840    
1841 tboccali 1.5
1842     TVector2 v_J( J.Rapidity(), J.Phi() );
1843     //calculate TVector using only charged tracks
1844     for(size_t idx = 0; idx < patJetpfc.size(); idx++){
1845     if( patJetpfc.at(idx)->charge() != 0 ){
1846     patJetpfcPt = patJetpfc.at(idx)->pt();
1847     pi.SetPtEtaPhiE( patJetpfc.at(idx)->pt(), patJetpfc.at(idx)->eta(), patJetpfc.at(idx)->phi(), patJetpfc.at(idx)->energy() );
1848     r.Set( pi.Rapidity() - J.Rapidity(), Geom::deltaPhi( patJetpfc.at(idx)->phi(), J.Phi() ) );
1849     r_mag = r.Mod();
1850     t_Vect += ( patJetpfcPt / J.Pt() ) * r_mag * r;
1851     }
1852     }
1853    
1854 tboccali 1.6
1855 tboccali 1.5 return t_Vect;
1856    
1857     }
1858    
1859 tboccali 1.6 TLorentzVector HbbAnalyzerNew::getChargedTracksMomentum(const pat::Jet* patJet ){
1860     // return TLorentzVector();
1861     TLorentzVector pi(0,0,0,0);
1862     TLorentzVector v_j1(0,0,0,0);
1863    
1864    
1865     // std::cout <<"fff ECCCCCCOOOOO "<<patJet->isPFJet()<<std::endl;
1866    
1867     if (patJet->isPFJet() == false ){
1868     v_j1 = GENPTOLORP(patJet);
1869     return v_j1;
1870     }
1871     std::vector<reco::PFCandidatePtr>
1872     j1pfc = patJet->getPFConstituents();
1873     for(size_t idx = 0; idx < j1pfc.size(); idx++){
1874     if( j1pfc.at(idx)->charge() != 0 ){
1875     pi.SetPtEtaPhiE( j1pfc.at(idx)->pt(), j1pfc.at(idx)->eta(), j1pfc.at(idx)->phi(), j1pfc.at(idx)->energy() );
1876     v_j1 += pi;
1877     }
1878     }
1879     return v_j1;
1880     //re-
1881     }
1882 tboccali 1.5
1883 bortigno 1.24
1884     //Btagging scale factors
1885 tboccali 1.33 void HbbAnalyzerNew::fillScaleFactors(VHbbEvent::SimpleJet& sj, BTagSFContainer iSF){
1886 bortigno 1.24
1887    
1888     BinningPointByMap measurePoint;
1889     //for a USDG
1890     //for CB jets
1891     //scale factor 1 for CB jets over 240GeV/c
1892     if( TMath::Abs(sj.flavour) == 4 or TMath::Abs(sj.flavour) == 5 ){
1893     measurePoint.insert( BinningVariables::JetEt, sj.p4.Et() );
1894     measurePoint.insert( BinningVariables::JetAbsEta, fabs(sj.p4.Eta()) );
1895     if( iSF.BTAGSF_CSVL->isResultOk(PerformanceResult::BTAGBEFFCORR , measurePoint) ){
1896     sj.SF_CSVL = iSF.BTAGSF_CSVL->getResult(PerformanceResult::BTAGBEFFCORR , measurePoint);
1897     sj.SF_CSVLerr = iSF.BTAGSF_CSVL->getResult(PerformanceResult::BTAGBERRCORR , measurePoint);
1898     if(verbose_){
1899     std::clog << "C/B Jet flavour = " << sj.flavour << std::endl;
1900     std::clog << "C/B Jet Et = " << sj.p4.Et() << std::endl;
1901     std::clog << "C/B Jet eta = " << sj.p4.Eta() << std::endl;
1902     std::clog << "C/B CSVL Scale Factor = " << sj.SF_CSVL << std::endl;
1903     std::clog << "C/B CSVL Scale Factor error = " << sj.SF_CSVLerr << std::endl;
1904     }
1905     }
1906     if( iSF.BTAGSF_CSVM->isResultOk(PerformanceResult::BTAGBEFFCORR , measurePoint) ){
1907     sj.SF_CSVM = iSF.BTAGSF_CSVM->getResult(PerformanceResult::BTAGBEFFCORR , measurePoint);
1908     sj.SF_CSVMerr = iSF.BTAGSF_CSVM->getResult(PerformanceResult::BTAGBERRCORR , measurePoint);
1909     }
1910     if( iSF.BTAGSF_CSVT->isResultOk(PerformanceResult::BTAGBEFFCORR , measurePoint) ){
1911     sj.SF_CSVT = iSF.BTAGSF_CSVT->getResult(PerformanceResult::BTAGBEFFCORR , measurePoint);
1912     sj.SF_CSVTerr = iSF.BTAGSF_CSVT->getResult(PerformanceResult::BTAGBERRCORR , measurePoint);
1913     }
1914     else{
1915     if(verbose_){
1916 bortigno 1.25 std::cerr << "No SF found in the database for this jet" << std::endl;
1917 bortigno 1.24 std::clog << "No SF found: Jet flavour = " << sj.flavour << std::endl;
1918     std::clog << "No SF found: Jet Et = " << sj.p4.Et() << std::endl;
1919     std::clog << "No SF found: Jet eta = " << sj.p4.Eta() << std::endl;
1920     }
1921     }
1922     }
1923     else {
1924     measurePoint.insert( BinningVariables::JetEt, sj.p4.Et() );
1925     measurePoint.insert( BinningVariables::JetAbsEta, fabs(sj.p4.Eta()) );
1926     if( iSF.MISTAGSF_CSVL->isResultOk(PerformanceResult::BTAGLEFFCORR , measurePoint) ){
1927     sj.SF_CSVL = iSF.MISTAGSF_CSVL->getResult(PerformanceResult::BTAGLEFFCORR , measurePoint);
1928     sj.SF_CSVLerr = iSF.MISTAGSF_CSVL->getResult(PerformanceResult::BTAGLERRCORR , measurePoint);
1929     if(verbose_){
1930     std::clog << "Light Jet flavour = " << sj.flavour << std::endl;
1931     std::clog << "Light Jet Et = " << sj.p4.Et() << std::endl;
1932     std::clog << "Light Jet eta = " << sj.p4.Eta() << std::endl;
1933     std::clog << "Light CSVL Scale Factor = " << sj.SF_CSVL << std::endl;
1934     std::clog << "Light CSVL Scale Factor error = " << sj.SF_CSVLerr << std::endl;
1935     }
1936     }
1937     if( iSF.MISTAGSF_CSVM->isResultOk(PerformanceResult::BTAGLEFFCORR , measurePoint) ){
1938     sj.SF_CSVM = iSF.MISTAGSF_CSVM->getResult(PerformanceResult::BTAGLEFFCORR , measurePoint);
1939     sj.SF_CSVMerr = iSF.MISTAGSF_CSVM->getResult(PerformanceResult::BTAGLERRCORR , measurePoint);
1940     }
1941     if( iSF.MISTAGSF_CSVT->isResultOk(PerformanceResult::BTAGLEFFCORR , measurePoint) ){
1942     sj.SF_CSVT = iSF.MISTAGSF_CSVT->getResult(PerformanceResult::BTAGLEFFCORR , measurePoint);
1943     sj.SF_CSVTerr = iSF.MISTAGSF_CSVT->getResult(PerformanceResult::BTAGLERRCORR , measurePoint);
1944     }
1945     else{
1946     if(verbose_){
1947 bortigno 1.25 std::cerr << "No SF found in the database for this jet" << std::endl;
1948 bortigno 1.24 std::clog << "No SF found: Jet flavour = " << sj.flavour << std::endl;
1949     std::clog << "No SF found: Jet Et = " << sj.p4.Et() << std::endl;
1950     std::clog << "No SF found: Jet eta = " << sj.p4.Eta() << std::endl;
1951     }
1952     }
1953     }
1954    
1955     }
1956    
1957 tboccali 1.28 void HbbAnalyzerNew::setJecUnc(VHbbEvent::SimpleJet& sj,JetCorrectionUncertainty* jecunc){
1958 tboccali 1.29 //
1959     // test
1960     //
1961    
1962 tboccali 1.49 // return;
1963 tboccali 1.28 double eta = sj.p4.Eta();
1964     double pt = sj.p4.Pt();
1965    
1966     jecunc->setJetEta(eta);
1967     jecunc->setJetPt(pt); // here you must use the CORRECTED jet pt
1968     double unc = jecunc->getUncertainty(true);
1969     sj.jecunc= unc;
1970     }
1971    
1972    
1973     void HbbAnalyzerNew ::fillSimpleJet (VHbbEvent::SimpleJet& sj, edm::View<pat::Jet>::const_iterator jet_iter){
1974     sj.flavour = jet_iter->partonFlavour();
1975    
1976     sj.tche=jet_iter->bDiscriminator("trackCountingHighEffBJetTags");
1977     sj.tchp=jet_iter->bDiscriminator("trackCountingHighPurBJetTags");
1978     sj.jp=jet_iter->bDiscriminator("jetProbabilityBJetTags");
1979     sj.jpb=jet_iter->bDiscriminator("jetBProbabilityBJetTags");
1980     sj.ssvhe=jet_iter->bDiscriminator("simpleSecondaryVertexHighEffBJetTags");
1981     sj.csv=jet_iter->bDiscriminator("combinedSecondaryVertexBJetTags");
1982 arizzi 1.65 sj.csvmva=jet_iter->bDiscriminator("combinedSecondaryVertexMVABJetTags");
1983     sj.csvivf=jet_iter->bDiscriminator("combinedInclusiveSecondaryVertexBJetTags");
1984     sj.cmva=jet_iter->bDiscriminator("combinedMVABJetTags");
1985 tboccali 1.28 sj.charge=jet_iter->jetCharge();
1986     sj.ntracks=jet_iter->associatedTracks().size();
1987     sj.p4=GENPTOLORP(jet_iter);
1988 tboccali 1.44 // std::cout << " ECCO "<<sj.csv<< " "<< sj.p4.Pt()<<std::endl;
1989 tboccali 1.28 sj.chargedTracksFourMomentum=(getChargedTracksMomentum(&*(jet_iter)));
1990     sj.SF_CSVL=1;
1991     sj.SF_CSVM=1;
1992     sj.SF_CSVT=1;
1993     sj.SF_CSVLerr=0;
1994     sj.SF_CSVMerr=0;
1995     sj.SF_CSVTerr=0;
1996    
1997    
1998 degrutto 1.73
1999    
2000    
2001 tboccali 1.29 if (jet_iter->isPFJet() == true) {
2002 tboccali 1.28
2003 tboccali 1.29 sj.chargedHadronEFraction = jet_iter-> chargedHadronEnergyFraction();
2004     sj.neutralHadronEFraction = jet_iter-> neutralHadronEnergyFraction ();
2005     sj.chargedEmEFraction = jet_iter-> chargedEmEnergyFraction ();
2006     sj.neutralEmEFraction = jet_iter-> neutralEmEnergyFraction ();
2007 tboccali 1.40 sj.nConstituents = jet_iter->getPFConstituents().size();
2008 tboccali 1.29
2009     }
2010 malbouis 1.68 sj.jetArea = jet_iter->jetArea();
2011 tboccali 1.28 //
2012     // addtaginfo for csv
2013     //
2014    
2015     // if (jet_iter->hasTagInfo("SimpleSecondaryVertex")) {
2016    
2017     const reco::SecondaryVertexTagInfo * tf = jet_iter->tagInfoSecondaryVertex();
2018 tboccali 1.31 if (tf){
2019 arizzi 1.66 math::XYZTLorentzVectorD vertexSum;
2020     for(size_t vi=0;vi< tf->nVertices();vi++)
2021     {
2022     vertexSum+=tf->secondaryVertex(vi).p4();
2023     }
2024     sj.vtxP4 = GENPTOLOR(vertexSum);
2025    
2026 tboccali 1.32 if (tf->nVertices() >0){
2027 arizzi 1.66 sj.vtxPosition = TVector3(tf->secondaryVertex(0).position().x(),tf->secondaryVertex(0).position().y(),tf->secondaryVertex(0).position().z());
2028     sj.vtxMass = tf->secondaryVertex(0).p4().mass();
2029 tboccali 1.32 sj.vtxNTracks = tf->secondaryVertex(0).nTracks();
2030     std::vector<reco::TrackBaseRef >::const_iterator tit = tf->secondaryVertex(0).tracks_begin();
2031     for (; tit< tf->secondaryVertex(0).tracks_end(); ++tit){
2032     sj.vtxTrackIds.push_back(tit->key());
2033     }
2034     Measurement1D m = tf->flightDistance(0);
2035     sj.vtx3dL = m.value();
2036     sj.vtx3deL = m.error();
2037     }
2038 tboccali 1.28 }
2039 malbouis 1.68
2040     // CSV track info
2041     const reco::SecondaryVertexTagInfo * svTagInfos = jet_iter->tagInfoSecondaryVertex();
2042     const reco::TrackIPTagInfo * ipTagInfos = jet_iter->tagInfoTrackIP();
2043     for (edm::RefVector<reco::TrackCollection>::const_iterator t = ipTagInfos->selectedTracks().begin(); t != ipTagInfos->selectedTracks().end(); t++){
2044     sj.btagTrackIds.push_back(t->key());
2045     }// all btag IP selected tracks
2046     std::vector<const reco::BaseTagInfo*> tagInfos;
2047     tagInfos.push_back(dynamic_cast<const reco::BaseTagInfo*>(ipTagInfos));
2048     tagInfos.push_back(dynamic_cast<const reco::BaseTagInfo*>(svTagInfos));
2049     JetTagComputer::TagInfoHelper helper(tagInfos);
2050     reco::TaggingVariableList varList = computer->taggingVariables(helper); // computer for getting CSV variables
2051    
2052     for(reco::TaggingVariableList::const_iterator iter = varList.begin(); iter != varList.end(); ++iter)
2053     {
2054     //std::cout << reco::TaggingVariableTokens[iter->first] << " = " << iter->second << std::endl;
2055     for (edm::RefVector<reco::TrackCollection>::const_iterator t = ipTagInfos->selectedTracks().begin(); t != ipTagInfos->selectedTracks().end(); t++){
2056    
2057     if (strcmp(reco::TaggingVariableTokens[iter->first], "trackMomentum") == 0 && (fabs((float)iter->second - (float)(*t)->p()) < 0.0001) ){
2058     sj.csvTrackIds.push_back(t->key());
2059     }// if tagged track
2060     }// loop on IPtracks
2061     }// loop on CSV variables
2062    
2063    
2064     sj.btagNTracks= ipTagInfos->selectedTracks().size();
2065     sj.csvNTracks = sj.csvTrackIds.size();
2066    
2067 tboccali 1.28 //
2068     // add tVector
2069     //
2070     sj.tVector = getTvect(&(*jet_iter));
2071 degrutto 1.58
2072 dlopes 1.67 sj.ptRaw = jet_iter->correctedJet(0).pt();
2073    
2074     sj.ptLeadTrack =-9999.;
2075     if (jet_iter->isPFJet() == true) {
2076     std::vector <reco::PFCandidatePtr> constituents = jet_iter->getPFConstituents ();
2077     for (unsigned ic = 0; ic < constituents.size (); ++ic) {
2078     if ( constituents[ic]->particleId() > 3 ) continue;
2079     reco::TrackRef trackRef = constituents[ic]->trackRef();
2080     if ( trackRef.isNonnull() ) { if(trackRef->pt() > sj.ptLeadTrack) sj.ptLeadTrack=trackRef->pt(); }
2081     }
2082     }
2083    
2084 degrutto 1.58
2085 tboccali 1.28 }
2086    
2087 arizzi 1.56 float HbbAnalyzerNew::metSignificance(const reco::MET * met)
2088     {
2089     double sigmaX2= met->getSignificanceMatrix()(0,0);
2090     double sigmaY2= met->getSignificanceMatrix()(1,1);
2091     double significance = 0;
2092     try {
2093     if(sigmaX2<1.e10 && sigmaY2<1.e10) significance = met->significance();
2094     }
2095     catch(...)
2096     {
2097     std::cout << "PROBLEM WITH MET SIGNIFICANCE sigma X2 and Y2 are: " << sigmaX2 << " " << sigmaY2 << std::endl;
2098     }
2099     return significance;
2100     }
2101    
2102 tboccali 1.28
2103 tboccali 1.1 //define this as a plug-in
2104     DEFINE_FWK_MODULE(HbbAnalyzerNew);