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root/cvsroot/UserCode/HbbAnalysis/plugins/HbbTreeMaker.cc
Revision: 1.12
Committed: Fri Mar 26 17:52:50 2010 UTC (15 years, 1 month ago) by amagnan
Content type: text/plain
Branch: MAIN
CVS Tags: HbbAnaFor35X, v00-04-02, v00-04-01, v00-04-00
Changes since 1.11: +2 -0 lines
Log Message:
add seed variables to electrons

File Contents

# User Rev Content
1 amagnan 1.1 #include "DataFormats/Common/interface/Handle.h"
2     #include "DataFormats/Common/interface/TriggerResults.h"
3     #include "DataFormats/Common/interface/HLTenums.h"
4     #include "DataFormats/Common/interface/ValueMap.h"
5     #include "DataFormats/Candidate/interface/Candidate.h"
6     #include "DataFormats/HepMCCandidate/interface/GenParticle.h"
7     #include "DataFormats/MuonReco/interface/Muon.h"
8     #include "DataFormats/MuonReco/interface/MuonFwd.h"
9 amagnan 1.4 #include "DataFormats/MuonReco/interface/MuonSelectors.h"
10 amagnan 1.1 #include "DataFormats/VertexReco/interface/Vertex.h"
11     #include "DataFormats/HLTReco/interface/TriggerEvent.h"
12     #include "DataFormats/TrackReco/interface/TrackFwd.h"
13    
14     #include "DataFormats/PatCandidates/interface/Lepton.h"
15     #include "DataFormats/PatCandidates/interface/Muon.h"
16     #include "DataFormats/PatCandidates/interface/Electron.h"
17     #include "DataFormats/PatCandidates/interface/Tau.h"
18     #include "DataFormats/PatCandidates/interface/Jet.h"
19     #include "DataFormats/PatCandidates/interface/MET.h"
20    
21     #include "FWCore/ServiceRegistry/interface/Service.h"
22 amagnan 1.11 #include "CommonTools/UtilAlgos/interface/TFileService.h"
23 amagnan 1.1
24    
25     #include "UserCode/HbbAnalysis/interface/Electron.hh"
26     #include "UserCode/HbbAnalysis/interface/Muon.hh"
27     #include "UserCode/HbbAnalysis/interface/Tau.hh"
28     #include "UserCode/HbbAnalysis/interface/Jet.hh"
29     #include "UserCode/HbbAnalysis/interface/Met.hh"
30     #include "UserCode/HbbAnalysis/interface/Trigger.hh"
31 amagnan 1.5 #include "UserCode/HbbAnalysis/interface/Vertex.hh"
32 amagnan 1.1
33     #include "UserCode/HbbAnalysis/plugins/HbbTreeMaker.hh"
34    
35     using namespace HbbAnalysis;
36    
37     HbbTreeMaker::HbbTreeMaker(const edm::ParameterSet & pset):
38     debug_(pset.getParameter<int>("DEBUG")),
39 amagnan 1.5 processData_(false),
40 amagnan 1.1 flavour_(pset.getParameter<unsigned int>("JetFlavour")),
41     doGen_(pset.getParameter<bool>("DOGEN")),
42     genParticleSrc_(pset.getParameter<edm::InputTag>("GenParticles")),
43     electronSrc_(pset.getParameter<edm::InputTag>("Electrons")),
44     muonSrc_(pset.getParameter<edm::InputTag>("Muons")),
45     caloTauSrc_(pset.getParameter<edm::InputTag>("CaloTaus")),
46     pfTauSrc_(pset.getParameter<edm::InputTag>("PFTaus")),
47     caloJetSrc_(pset.getParameter<edm::InputTag>("CaloJets")),
48     jptJetSrc_(pset.getParameter<edm::InputTag>("JPTJets")),
49     pfJetSrc_(pset.getParameter<edm::InputTag>("PFJets")),
50     caloMetSrc_(pset.getParameter<edm::InputTag>("CaloMET")),
51     tcMetSrc_(pset.getParameter<edm::InputTag>("TCMET")),
52     pfMetSrc_(pset.getParameter<edm::InputTag>("PFMET")),
53     //pairSrc_(pset.getParameter<edm::InputTag>("Pair")),
54     //mmPairSrc_(pset.getParameter<edm::InputTag>("MuMuPair")),
55     //etPairSrc_(pset.getParameter<edm::InputTag>("ETauPair")),
56     //mtPairSrc_(pset.getParameter<edm::InputTag>("MuTauPair")),
57     vertexSrc_(pset.getParameter<edm::InputTag>("Vertex")),
58     triggerSrc_(pset.getParameter<edm::InputTag>("Trigger")),
59     hltPaths_(pset.getParameter<std::vector<std::string> >("HLTPaths")),
60     event_(0),
61     tree_(0)
62     //processVec_(pset.getParameter<std::vector<std::string> >("ProcessVec"))
63     {//constructor
64    
65    
66     }//constructor
67    
68     HbbTreeMaker::~HbbTreeMaker(){//destructor
69     }//destructor
70    
71    
72    
73 amagnan 1.5 void HbbTreeMaker::beginJob(){//beginJob
74 amagnan 1.1
75    
76     edm::Service<TFileService> lFileService;
77    
78     TFileDirectory lDir = lFileService->mkdir("HbbAnalysis");
79    
80     tree_ = lDir.make<TTree>("Tree","Tree");
81     tree_->Branch("HbbEvent","HbbAnalysis::HbbEvent",&event_);
82     event_ = new HbbEvent();
83    
84     if (debug_) std::cout << "Initialising JetFlavour : " << std::endl;
85    
86     lDir = lFileService->mkdir("JetFlavours");
87 amagnan 1.5 jetFlav_.Initialise(lDir, debug_, flavour_);
88 amagnan 1.1
89     }//beginJob
90    
91     void HbbTreeMaker::endJob(){//endJob
92 amagnan 1.4 if (!processData_) jetFlav_.printSummary();
93 amagnan 1.1
94     //tree_->Write();
95     //delete tree_;
96     //delete event_;
97    
98     }//endJob
99    
100     void HbbTreeMaker::analyze(const edm::Event& aEvt, const edm::EventSetup& aEvtSetup){//analyze
101    
102     //dumpContent(aEvt,"","MuTauPAT");
103     if (debug_) std::cout << "Processing event #" << aEvt.id().event() << std::endl;
104    
105    
106     static bool firstEvent = true;
107    
108     event_->Clear();
109     event_->event(aEvt.id().event());
110 amagnan 1.5 processData_ = aEvt.isRealData();
111    
112     event_->run(aEvt.run());
113     event_->lumiBlock(aEvt.luminosityBlock());
114 amagnan 1.9 event_->isRealData(aEvt.isRealData());
115 amagnan 1.1
116     edm::Handle<reco::GenParticleCollection> lGenParticles;
117     try {
118     aEvt.getByLabel(genParticleSrc_,lGenParticles);
119     if (debug_) std::cout << "** ngenParticles = " << lGenParticles->size() << std::endl;
120     } catch(cms::Exception& e) {
121 amagnan 1.4 if (!processData_) std::cout << "AMM: Collection genParticles not available! Exception : " << e.what() << ". " << std::endl;
122 amagnan 1.1 }
123    
124 amagnan 1.4 if (doGen_ && !processData_) HbbParticles(lGenParticles,event_->particles());
125 amagnan 1.1
126 amagnan 1.4 unsigned int lNPartons = 0;
127     if (!processData_) lNPartons = jetFlav_.fillPartons(lGenParticles);
128 amagnan 1.1
129 amagnan 1.4 if (debug_ && !processData_) std::cout << "--- Number of partons = " << lNPartons << "." << std::endl;
130 amagnan 1.1
131    
132     edm::Handle<std::vector<reco::Vertex> > lRecoVertices;
133     try {
134     aEvt.getByLabel(vertexSrc_, lRecoVertices);
135     if (!lRecoVertices.isValid()){
136     edm::LogInfo("ERROR")<< "Error! Can't get vertex by label. ";
137     }
138     if (debug_) std::cout << "** vertexcollection = " << lRecoVertices->size() << " elements." << std::endl;
139     } catch(cms::Exception& e) {
140     std::cout << "AMM: Collection " << vertexSrc_ << " not available! Exception : " << e.what() << ". " << std::endl;
141     }
142    
143 amagnan 1.5 HbbVertices(lRecoVertices,event_->vertices());
144    
145 amagnan 1.1 edm::Handle<std::vector<pat::Electron> > lElectronCollection;
146    
147     try {
148     aEvt.getByLabel(electronSrc_,lElectronCollection);
149     if (!lElectronCollection.isValid()){
150     edm::LogInfo("ERROR")<< "Error! Can't get electron by label. ";
151     }
152     if (debug_) std::cout << "** electroncollection = " << lElectronCollection->size() << " elements." << std::endl;
153     } catch(cms::Exception& e) {
154     std::cout << "AMM: Collection " << electronSrc_ << " not available! Exception : " << e.what() << ". " << std::endl;
155     }
156    
157     HbbElectrons(lElectronCollection,event_->electrons());
158    
159    
160     edm::Handle<std::vector<pat::Muon> > lMuonCollection;
161    
162     try {
163     aEvt.getByLabel(muonSrc_,lMuonCollection);
164     if (!lMuonCollection.isValid()){
165     edm::LogInfo("ERROR")<< "Error! Can't get muon by label. ";
166     }
167     if (debug_) std::cout << "** muoncollection = " << lMuonCollection->size() << " elements." << std::endl;
168     } catch(cms::Exception& e) {
169     std::cout << "AMM: Collection " << muonSrc_ << " not available! Exception : " << e.what() << ". " << std::endl;
170     }
171    
172 amagnan 1.3 HbbMuons(lMuonCollection,lRecoVertices,event_->muons());
173 amagnan 1.1
174    
175 amagnan 1.5 if (!( caloTauSrc_.label()=="" && caloTauSrc_.instance()=="" )) {
176     edm::Handle<std::vector<pat::Tau> > lTauCollection;
177 amagnan 1.1
178 amagnan 1.5 try {
179     aEvt.getByLabel(caloTauSrc_,lTauCollection);
180     if (!lTauCollection.isValid()){
181     edm::LogInfo("ERROR")<< "Error! Can't get caloTau by label. ";
182     }
183     if (debug_) std::cout << "** caloTaucollection = " << lTauCollection->size() << " elements." << std::endl;
184     } catch(cms::Exception& e) {
185     std::cout << "AMM: Collection " << caloTauSrc_ << " not available! Exception : " << e.what() << ". " << std::endl;
186     }
187    
188     HbbTaus(lTauCollection,lRecoVertices,event_->caloTaus());
189 amagnan 1.1 }
190    
191     edm::Handle<std::vector<pat::Tau> > lPFTauCollection;
192    
193     try {
194     aEvt.getByLabel(pfTauSrc_,lPFTauCollection);
195     if (!lPFTauCollection.isValid()){
196     edm::LogInfo("ERROR")<< "Error! Can't get pfTau by label. ";
197     }
198     if (debug_) std::cout << "** pfTaucollection = " << lPFTauCollection->size() << " elements." << std::endl;
199     } catch(cms::Exception& e) {
200     std::cout << "AMM: Collection " << pfTauSrc_ << " not available! Exception : " << e.what() << ". " << std::endl;
201     }
202    
203     HbbTaus(lPFTauCollection,lRecoVertices,event_->pfTaus());
204    
205     edm::Handle<std::vector<pat::Jet> > lCaloJetCollection;
206    
207     try {
208     aEvt.getByLabel(caloJetSrc_,lCaloJetCollection);
209     if (!lCaloJetCollection.isValid()){
210     edm::LogInfo("ERROR")<< "Error! Can't get caloJets by label. ";
211     }
212     if (debug_) std::cout << "** caloJetcollection = " << lCaloJetCollection->size() << " elements." << std::endl;
213     } catch(cms::Exception& e) {
214     std::cout << "AMM: Collection " << caloJetSrc_ << " not available! Exception : " << e.what() << ". " << std::endl;
215     }
216    
217 amagnan 1.7 //std::cout << "Processing calo jets:" << std::endl;
218 amagnan 1.1 HbbJets(lCaloJetCollection,jetFlav_,lGenParticles,event_->caloJets());
219    
220     edm::Handle<std::vector<pat::Jet> > lJptJetCollection;
221    
222     try {
223     aEvt.getByLabel(jptJetSrc_,lJptJetCollection);
224     if (!lJptJetCollection.isValid()){
225     edm::LogInfo("ERROR")<< "Error! Can't get jptJets by label. ";
226     }
227     if (debug_) std::cout << "** jptJetcollection = " << lJptJetCollection->size() << " elements." << std::endl;
228     } catch(cms::Exception& e) {
229     std::cout << "AMM: Collection " << jptJetSrc_ << " not available! Exception : " << e.what() << ". " << std::endl;
230     }
231    
232 amagnan 1.7 //std::cout << "Processing JPT jets:" << std::endl;
233 amagnan 1.1 HbbJets(lJptJetCollection,jetFlav_,lGenParticles,event_->jptJets());
234    
235     edm::Handle<std::vector<pat::Jet> > lPfJetCollection;
236    
237     try {
238     aEvt.getByLabel(pfJetSrc_,lPfJetCollection);
239     if (!lPfJetCollection.isValid()){
240     edm::LogInfo("ERROR")<< "Error! Can't get pfJets by label. ";
241     }
242     if (debug_) std::cout << "** pfJetcollection = " << lPfJetCollection->size() << " elements." << std::endl;
243     } catch(cms::Exception& e) {
244     std::cout << "AMM: Collection " << pfJetSrc_ << " not available! Exception : " << e.what() << ". " << std::endl;
245     }
246    
247 amagnan 1.7 //std::cout << "Processing PF jets:" << std::endl;
248 amagnan 1.1 HbbJets(lPfJetCollection,jetFlav_,lGenParticles,event_->pfJets());
249    
250     edm::Handle<std::vector<pat::MET> > lCaloMetCol;
251    
252     try {
253     aEvt.getByLabel(caloMetSrc_,lCaloMetCol);
254     if (!lCaloMetCol.isValid()){
255     edm::LogInfo("ERROR")<< "Error! Can't get caloMet by label. ";
256     }
257     if (debug_) std::cout << "** caloMet = " << lCaloMetCol->size() << " elements." << std::endl;
258     } catch(cms::Exception& e) {
259     std::cout << "AMM: Collection " << caloMetSrc_ << " not available! Exception : " << e.what() << ". " << std::endl;
260     }
261    
262     HbbMet(lCaloMetCol,event_->caloMet());
263    
264     edm::Handle<std::vector<pat::MET> > lTcMetCol;
265    
266     try {
267     aEvt.getByLabel(tcMetSrc_,lTcMetCol);
268     if (!lTcMetCol.isValid()){
269     edm::LogInfo("ERROR")<< "Error! Can't get tcMet by label. ";
270     }
271     if (debug_) std::cout << "** tcMet = " << lTcMetCol->size() << " elements." << std::endl;
272     } catch(cms::Exception& e) {
273     std::cout << "AMM: Collection " << tcMetSrc_ << " not available! Exception : " << e.what() << ". " << std::endl;
274     }
275    
276     HbbMet(lTcMetCol,event_->tcMet());
277    
278     edm::Handle<std::vector<pat::MET> > lPfMetCol;
279    
280     try {
281     aEvt.getByLabel(pfMetSrc_,lPfMetCol);
282     if (!lPfMetCol.isValid()){
283     edm::LogInfo("ERROR")<< "Error! Can't get pfMet by label. ";
284     }
285     if (debug_) std::cout << "** pfMet = " << lPfMetCol->size() << " elements." << std::endl;
286     } catch(cms::Exception& e) {
287     std::cout << "AMM: Collection " << pfMetSrc_ << " not available! Exception : " << e.what() << ". " << std::endl;
288     }
289    
290     HbbMet(lPfMetCol,event_->pfMet());
291    
292    
293    
294     //triggers
295     edm::Handle<edm::TriggerResults> lTrigCol;
296     try {
297     aEvt.getByLabel(triggerSrc_,lTrigCol);
298     if (!lTrigCol.isValid()){
299     edm::LogInfo("ERROR")<< "Error! Can't get triggers by label. ";
300     }
301     if (debug_) std::cout << "** triggers = " << lTrigCol->size() << std::endl;
302     } catch(cms::Exception& e) {
303     std::cout << "AMM: Collection " << triggerSrc_ << " not available! Exception : " << e.what() << ". " << std::endl;
304     }
305    
306     HbbTrigger(lTrigCol,event_->triggers());
307    
308     //event_->order();
309     tree_->Fill();
310     firstEvent = false;
311    
312     }//analyze
313    
314    
315     void HbbTreeMaker::HbbElectrons(const edm::Handle<std::vector<pat::Electron> > & aCol,
316 amagnan 1.2 std::vector<HbbAnalysis::Electron> & aVec)
317 amagnan 1.1 {//HbbElectrons
318    
319     if (aCol.isValid()){
320     if (aCol->size() > 0) {
321    
322     unsigned int iEle = 0;
323     for (std::vector<pat::Electron>::const_iterator iter = aCol->begin();
324     iter != aCol->end();
325     iter++)
326     {
327     //if (debug_ > 1) std::cout << "**** Ele #" << iEle << ", pT,eta,phi = " << (*iter).pt() << " " << (*iter).eta() << " " << (*iter).phi() << std::endl;
328    
329     HbbAnalysis::GenVars lGen;
330 amagnan 1.4 if (!processData_ && (*iter).genLepton()){
331 amagnan 1.1 lGen.valid = true;
332 amagnan 1.2 lGen.E = (*iter).genLepton()->energy();
333 amagnan 1.1 lGen.pT = (*iter).genLepton()->pt();
334     lGen.eta = (*iter).genLepton()->eta();
335     lGen.phi = (*iter).genLepton()->phi();
336     lGen.charge = (*iter).genLepton()->charge();
337     lGen.pdgId = (*iter).genLepton()->pdgId();
338     lGen.status = (*iter).genLepton()->status();
339     lGen.mass = (*iter).genLepton()->mass();
340     lGen.vx = (*iter).genLepton()->vx();
341     lGen.vy = (*iter).genLepton()->vy();
342     lGen.vz = (*iter).genLepton()->vz();
343     }
344     else {
345     lGen.valid = false;
346 amagnan 1.2 lGen.E = 0;
347 amagnan 1.1 lGen.pT = 0;
348     lGen.eta = 0;
349     lGen.phi = 0;
350     lGen.charge = 0;
351     lGen.pdgId = 0;
352     lGen.status = 0;
353     lGen.mass = 0;
354     lGen.vx = 0;
355     lGen.vy = 0;
356     lGen.vz = 0;
357     }
358    
359     HbbAnalysis::BaseVars lReco;
360 amagnan 1.2 lReco.E = (*iter).energy();
361 amagnan 1.1 lReco.pT = (*iter).pt();
362     lReco.eta = (*iter).eta();
363     lReco.phi = (*iter).phi();
364     lReco.charge = (*iter).charge();
365     lReco.vx = (*iter).vx();
366     lReco.vy = (*iter).vy();
367     lReco.vz = (*iter).vz();
368    
369     HbbAnalysis::SCVars lSC;
370     lSC.sigmaEtaEta = (*iter).scSigmaEtaEta();
371     lSC.sigmaIEtaIEta = (*iter).scSigmaIEtaIEta();
372     lSC.e1x5 = (*iter).scE1x5();
373     lSC.e2x5Max = (*iter).scE2x5Max();
374     lSC.e5x5 = (*iter).scE5x5();
375     lSC.eOverP = (*iter).eSuperClusterOverP();
376    
377     HbbAnalysis::EleIsoVars lIso;
378     lIso.calo = (*iter).caloIso();
379     lIso.track = (*iter).trackIso();
380     lIso.ecal = (*iter).ecalIso();
381     lIso.hcal = (*iter).hcalIso();
382    
383     HbbAnalysis::EleIDVars lID;
384     lID.electronIDs = (*iter).electronIDs();
385     lID.hOverE = (*iter).hadronicOverEm();
386     lID.deltaPhiIn = (*iter).deltaPhiSuperClusterTrackAtVtx();
387     lID.deltaEtaIn = (*iter).deltaEtaSuperClusterTrackAtVtx();
388 amagnan 1.12 lID.ecalDrivenSeed = (*iter).ecalDrivenSeed();
389     lID.trackerDrivenSeed = (*iter).trackerDrivenSeed();
390 amagnan 1.1
391     HbbAnalysis::Electron lObj(lGen,lReco,lSC,lIso,lID);
392     aVec.push_back(lObj);
393     iEle++;
394     }
395     }
396     }
397    
398     }//HbbElectrons
399    
400    
401     void HbbTreeMaker::HbbMuons(const edm::Handle<std::vector<pat::Muon> > & aCol,
402 amagnan 1.3 const edm::Handle<std::vector<reco::Vertex> > & aRecoVertices,
403     std::vector<HbbAnalysis::Muon> & aVec)
404 amagnan 1.1 {//HbbMuons
405    
406     if (aCol.isValid()){
407     if (aCol->size() > 0) {
408    
409     unsigned int iEle = 0;
410     for (std::vector<pat::Muon>::const_iterator iter = aCol->begin();
411     iter != aCol->end();
412     iter++)
413     {
414     const reco::Muon* recoMuon = dynamic_cast<const reco::Muon*>((*iter).originalObject());
415    
416     HbbAnalysis::GenVars lGen;
417 amagnan 1.4 if (!processData_ && (*iter).genLepton()){
418 amagnan 1.1 lGen.valid = true;
419 amagnan 1.2 lGen.E = (*iter).genLepton()->energy();
420 amagnan 1.1 lGen.pT = (*iter).genLepton()->pt();
421     lGen.eta = (*iter).genLepton()->eta();
422     lGen.phi = (*iter).genLepton()->phi();
423     lGen.charge = (*iter).genLepton()->charge();
424     lGen.pdgId = (*iter).genLepton()->pdgId();
425     lGen.status = (*iter).genLepton()->status();
426     lGen.mass = (*iter).genLepton()->mass();
427     lGen.vx = (*iter).genLepton()->vx();
428     lGen.vy = (*iter).genLepton()->vy();
429     lGen.vz = (*iter).genLepton()->vz();
430     }
431     else {
432     lGen.valid = false;
433 amagnan 1.2 lGen.E = 0;
434 amagnan 1.1 lGen.pT = 0;
435     lGen.eta = 0;
436     lGen.phi = 0;
437     lGen.charge = 0;
438     lGen.pdgId = 0;
439     lGen.status = 0;
440     lGen.mass = 0;
441     lGen.vx = 0;
442     lGen.vy = 0;
443     lGen.vz = 0;
444     }
445    
446     HbbAnalysis::BaseVars lReco;
447 amagnan 1.2 lReco.E = (*iter).energy();
448 amagnan 1.1 lReco.pT = (*iter).pt();
449     lReco.eta = (*iter).eta();
450     lReco.phi = (*iter).phi();
451     lReco.charge = (*iter).charge();
452     lReco.vx = (*iter).vx();
453     lReco.vy = (*iter).vy();
454     lReco.vz = (*iter).vz();
455    
456 amagnan 1.3 HbbAnalysis::MuTrkVars lTrk;
457    
458     reco::TrackRef lTrackerTrk = (*iter).innerTrack();
459     if ( lTrackerTrk.isAvailable() && lTrackerTrk.isNonnull() ) {
460     if ( aRecoVertices->size() >= 1 ) {
461     const reco::Vertex& thePrimaryEventVertex = (*aRecoVertices->begin());
462     lTrk.IPd0 = -lTrackerTrk->dxy(thePrimaryEventVertex.position());
463     lTrk.IPdz = lTrackerTrk->dz(thePrimaryEventVertex.position());
464     }
465     else {
466     lTrk.IPd0 = 0;
467     lTrk.IPdz = 0;
468     }
469    
470     lTrk.nHits = lTrackerTrk->numberOfValidHits();
471     }
472     else {
473     lTrk.IPd0 = 0;
474     lTrk.IPdz = 0;
475     lTrk.nHits = 0;
476     }
477    
478 amagnan 1.1 HbbAnalysis::MuIsoVars lIsoR03;
479     lIsoR03.sumPt = recoMuon->isolationR03().sumPt;
480     lIsoR03.emEt = recoMuon->isolationR03().emEt;
481     lIsoR03.hadEt = recoMuon->isolationR03().hadEt;
482     lIsoR03.nTracks = recoMuon->isolationR03().nTracks;
483     lIsoR03.nJets = recoMuon->isolationR03().nJets;
484    
485     HbbAnalysis::MuIsoVars lIsoR05;
486     lIsoR05.sumPt = recoMuon->isolationR05().sumPt;
487     lIsoR05.emEt = recoMuon->isolationR05().emEt;
488     lIsoR05.hadEt = recoMuon->isolationR05().hadEt;
489     lIsoR05.nTracks = recoMuon->isolationR05().nTracks;
490     lIsoR05.nJets = recoMuon->isolationR05().nJets;
491    
492     HbbAnalysis::MuIDVars lID;
493     if (recoMuon->isGlobalMuon()) lID.type = 1;
494     else if (recoMuon->isTrackerMuon()) lID.type = 2;
495     else if (recoMuon->isStandAloneMuon()) lID.type = 3;
496     else if (recoMuon->isCaloMuon()) lID.type = 4;
497     else lID.type = 0;
498    
499 amagnan 1.4 if (muon::isGoodMuon(*recoMuon,muon::AllGlobalMuons)) lID.ids.push_back(1);
500     if (muon::isGoodMuon(*recoMuon,muon::AllStandAloneMuons)) lID.ids.push_back(2);
501     if (muon::isGoodMuon(*recoMuon,muon::AllTrackerMuons)) lID.ids.push_back(3);
502     if (muon::isGoodMuon(*recoMuon,muon::TrackerMuonArbitrated)) lID.ids.push_back(4);
503     if (muon::isGoodMuon(*recoMuon,muon::AllArbitrated)) lID.ids.push_back(5);
504     if (muon::isGoodMuon(*recoMuon,muon::GlobalMuonPromptTight)) lID.ids.push_back(6);
505     if (muon::isGoodMuon(*recoMuon,muon::TMLastStationLoose)) lID.ids.push_back(7);
506     if (muon::isGoodMuon(*recoMuon,muon::TMLastStationTight)) lID.ids.push_back(8);
507     if (muon::isGoodMuon(*recoMuon,muon::TM2DCompatibilityLoose)) lID.ids.push_back(9);
508     if (muon::isGoodMuon(*recoMuon,muon::TM2DCompatibilityTight)) lID.ids.push_back(10);
509     if (muon::isGoodMuon(*recoMuon,muon::TMOneStationLoose)) lID.ids.push_back(11);
510     if (muon::isGoodMuon(*recoMuon,muon::TMOneStationTight)) lID.ids.push_back(12);
511     if (muon::isGoodMuon(*recoMuon,muon::TMLastStationOptimizedLowPtLoose)) lID.ids.push_back(13);
512     if (muon::isGoodMuon(*recoMuon,muon::TMLastStationOptimizedLowPtTight)) lID.ids.push_back(14);
513     if (muon::isGoodMuon(*recoMuon,muon::GMTkChiCompatibility)) lID.ids.push_back(15);
514     if (muon::isGoodMuon(*recoMuon,muon::GMStaChiCompatibility)) lID.ids.push_back(16);
515     if (muon::isGoodMuon(*recoMuon,muon::GMTkKinkTight)) lID.ids.push_back(17);
516     if (muon::isGoodMuon(*recoMuon,muon::TMLastStationAngLoose)) lID.ids.push_back(18);
517     if (muon::isGoodMuon(*recoMuon,muon::TMLastStationAngTight)) lID.ids.push_back(19);
518     if (muon::isGoodMuon(*recoMuon,muon::TMOneStationAngLoose)) lID.ids.push_back(20);
519     if (muon::isGoodMuon(*recoMuon,muon::TMOneStationAngTight)) lID.ids.push_back(21);
520     if (muon::isGoodMuon(*recoMuon,muon::TMLastStationOptimizedBarrelLowPtLoose)) lID.ids.push_back(22);
521     if (muon::isGoodMuon(*recoMuon,muon::TMLastStationOptimizedBarrelLowPtTight)) lID.ids.push_back(23);
522 amagnan 1.1
523     lID.caloCompat = recoMuon->caloCompatibility();
524 amagnan 1.4 lID.segCompat = muon::segmentCompatibility(*recoMuon);
525 amagnan 1.1 lID.nChambers = recoMuon->numberOfChambers();
526     lID.nMatchesLoose = recoMuon->numberOfMatches(reco::Muon::NoArbitration);
527     lID.nMatchesMedium = recoMuon->numberOfMatches(reco::Muon::SegmentArbitration);
528     lID.nMatchesTight = recoMuon->numberOfMatches(reco::Muon::SegmentAndTrackArbitration);
529    
530 amagnan 1.3 HbbAnalysis::Muon lObj(lGen,lReco,lTrk,lIsoR03,lIsoR05,lID);
531 amagnan 1.1 aVec.push_back(lObj);
532     iEle++;
533     }
534     }
535     }
536    
537     }//HbbMuons
538    
539     void HbbTreeMaker::HbbTaus(const edm::Handle<std::vector<pat::Tau> > & aCol,
540 amagnan 1.3 const edm::Handle<std::vector<reco::Vertex> > & aRecoVertices,
541     std::vector<HbbAnalysis::Tau> & aVec)
542 amagnan 1.1 {//HbbTaus
543    
544     if (aCol.isValid()){
545     if (aCol->size() > 0) {
546    
547     unsigned int iEle = 0;
548     for (std::vector<pat::Tau>::const_iterator iter = aCol->begin();
549     iter != aCol->end();
550     iter++)
551     {
552     //if (debug_ > 1) std::cout << "**** Ele #" << iEle << ", pT,eta,phi = " << (*iter).pt() << " " << (*iter).eta() << " " << (*iter).phi() << std::endl;
553    
554     HbbAnalysis::GenVars lGen;
555 amagnan 1.4 if (!processData_ && (*iter).genLepton()){
556 amagnan 1.1 lGen.valid = true;
557 amagnan 1.2 lGen.E = (*iter).genLepton()->energy();
558 amagnan 1.1 lGen.pT = (*iter).genLepton()->pt();
559     lGen.eta = (*iter).genLepton()->eta();
560     lGen.phi = (*iter).genLepton()->phi();
561     lGen.charge = (*iter).genLepton()->charge();
562     lGen.pdgId = (*iter).genLepton()->pdgId();
563     lGen.status = (*iter).genLepton()->status();
564     lGen.mass = (*iter).genLepton()->mass();
565     lGen.vx = (*iter).genLepton()->vx();
566     lGen.vy = (*iter).genLepton()->vy();
567     lGen.vz = (*iter).genLepton()->vz();
568     }
569     else {
570     lGen.valid = false;
571 amagnan 1.2 lGen.E = 0;
572 amagnan 1.1 lGen.pT = 0;
573     lGen.eta = 0;
574     lGen.phi = 0;
575     lGen.charge = 0;
576     lGen.pdgId = 0;
577     lGen.status = 0;
578     lGen.mass = 0;
579     lGen.vx = 0;
580     lGen.vy = 0;
581     lGen.vz = 0;
582     }
583    
584    
585     HbbAnalysis::GenVars lGenJet;
586 amagnan 1.4 if (!processData_ && (*iter).genJet()){
587 amagnan 1.1 lGenJet.valid = true;
588 amagnan 1.4 lGenJet.E = (*iter).genJet()->energy();
589 amagnan 1.1 lGenJet.pT = (*iter).genJet()->pt();
590     lGenJet.eta = (*iter).genJet()->eta();
591     lGenJet.phi = (*iter).genJet()->phi();
592     lGenJet.charge = (*iter).genJet()->charge();
593     lGenJet.pdgId = (*iter).genJet()->pdgId();
594     lGenJet.status = (*iter).genJet()->status();
595     lGenJet.mass = (*iter).genJet()->mass();
596     lGenJet.vx = (*iter).genJet()->vx();
597     lGenJet.vy = (*iter).genJet()->vy();
598     lGenJet.vz = (*iter).genJet()->vz();
599     }
600     else {
601     lGenJet.valid = false;
602 amagnan 1.4 lGenJet.E = 0;
603 amagnan 1.1 lGenJet.pT = 0;
604     lGenJet.eta = 0;
605     lGenJet.phi = 0;
606     lGenJet.charge = 0;
607     lGenJet.pdgId = 0;
608     lGenJet.status = 0;
609     lGenJet.mass = 0;
610     lGenJet.vx = 0;
611     lGenJet.vy = 0;
612     lGenJet.vz = 0;
613     }
614    
615     HbbAnalysis::BaseVars lReco;
616 amagnan 1.2 lReco.E = (*iter).energy();
617 amagnan 1.1 lReco.pT = (*iter).pt();
618     lReco.eta = (*iter).eta();
619     lReco.phi = (*iter).phi();
620     lReco.charge = (*iter).charge();
621     lReco.vx = (*iter).vx();
622     lReco.vy = (*iter).vy();
623     lReco.vz = (*iter).vz();
624    
625     bool isCalo = (*iter).isCaloTau();
626     bool isPF = (*iter).isPFTau();
627    
628     assert (isCalo == !isPF);
629    
630     HbbAnalysis::TauLeadTrkVars lLead;
631     if (isCalo) {
632     lLead.signedSipt = (*iter).leadTracksignedSipt();
633    
634     reco::TrackRef lCaloTrk = (*iter).leadTrack();
635    
636     if ( lCaloTrk.isAvailable() && lCaloTrk.isNonnull() ) {
637     lLead.pT = lCaloTrk->pt();
638     lLead.eta = lCaloTrk->eta();
639     lLead.phi = lCaloTrk->phi();
640    
641     lLead.matchDist = reco::deltaR(lCaloTrk->momentum(), (*iter).p4());
642    
643     if ( aRecoVertices->size() >= 1 ) {
644     const reco::Vertex& thePrimaryEventVertex = (*aRecoVertices->begin());
645     lLead.IPxy = lCaloTrk->dxy(thePrimaryEventVertex.position());
646     lLead.IPz = lCaloTrk->dz(thePrimaryEventVertex.position());
647     }
648     else {
649     lLead.IPxy = 0;
650     lLead.IPz = 0;
651     }
652     }
653     else {
654     lLead.pT = 0;
655     lLead.eta = 0;
656     lLead.phi = 0;
657     lLead.matchDist = 0;
658     lLead.IPxy = 0;
659     lLead.IPz = 0;
660     lLead.signedSipt = 0;
661     }
662     }//calo
663     else {
664     lLead.signedSipt = (*iter).leadPFChargedHadrCandsignedSipt();
665    
666     reco::PFCandidateRef lHadrCand = (*iter).leadPFChargedHadrCand();
667    
668     if ( lHadrCand.isAvailable() && lHadrCand.isNonnull() ) {
669     lLead.pT = lHadrCand->pt();
670     lLead.eta = lHadrCand->eta();
671     lLead.phi = lHadrCand->phi();
672    
673     lLead.matchDist = reco::deltaR(lHadrCand->p4(), (*iter).p4());
674    
675     reco::TrackRef lTrk = lHadrCand->trackRef();
676    
677     if ( aRecoVertices->size() >= 1) {
678     const reco::Vertex& thePrimaryEventVertex = (*aRecoVertices->begin());
679     lLead.IPxy = lTrk->dxy(thePrimaryEventVertex.position());
680     lLead.IPz = lTrk->dz(thePrimaryEventVertex.position());
681     }
682     else {
683     lLead.IPxy = 0;
684     lLead.IPz = 0;
685     }
686     }
687     else {
688     lLead.pT = 0;
689     lLead.eta = 0;
690     lLead.phi = 0;
691     lLead.matchDist = 0;
692     lLead.IPxy = 0;
693     lLead.IPz = 0;
694     lLead.signedSipt = 0;
695     }
696    
697     }//pf
698    
699    
700    
701     const std::vector<std::pair<std::string,float> > & lIDs = (*iter).tauIDs();
702     bool lPrint = false;
703     //a few warning if additional discriminants are found:
704 amagnan 1.5 if ((isPF && lIDs.size() != 16) ||
705 amagnan 1.1 (isCalo && lIDs.size() != 3))
706     lPrint = true;
707    
708     if (lPrint) {
709 amagnan 1.5 std::cout << "!!!!!!! Discriminants changed, please update tree !!!!!!!" << std::endl;
710 amagnan 1.1 std::cout << "--- isCaloTau = " << isCalo << ", isPFTau = " << isPF << std::endl;
711     std::cout << "------ ID names = " << std::endl;
712     }
713    
714    
715 amagnan 1.4 HbbAnalysis::CaloTauIDVars lcaloId;
716     lcaloId.byIsolation = 0;
717     lcaloId.byLeadingTrackFinding = 0;
718     lcaloId.byLeadingTrackPtCut = 0;
719    
720 amagnan 1.1 HbbAnalysis::PFTauIDVars lpfId;
721 amagnan 1.4 lpfId.byLeadingTrackFinding = 0;
722     lpfId.byLeadingTrackPtCut = 0;
723     lpfId.byTrackIsolation = 0;
724     lpfId.byECALIsolation = 0;
725     lpfId.byIsolation = 0;
726     lpfId.againstElectron = 0;
727     lpfId.againstMuon = 0;
728 amagnan 1.5 lpfId.byIsolationUsingLeadingPion = 0;
729     lpfId.byTaNC = 0;
730     lpfId.byTaNCfrHalfPercent = 0;
731     lpfId.byTaNCfrOnePercent = 0;
732     lpfId.byTaNCfrQuarterPercent = 0;
733     lpfId.byTaNCfrTenthPercent = 0;
734     lpfId.ecalIsolationUsingLeadingPion = 0;
735     lpfId.leadingPionPtCut = 0;
736     lpfId.trackIsolationUsingLeadingPion = 0;
737 amagnan 1.4
738    
739 amagnan 1.1
740     for (unsigned int id(0); id<lIDs.size(); id++){
741    
742     std::string lName = lIDs.at(id).first;
743     float lDiscri = lIDs.at(id).second;
744    
745     if (lPrint) std::cout << "--------- " << lName << " = " << lDiscri << std::endl;
746     //pf
747    
748     if (isPF) {
749     if (lName.find("leadingTrackFinding") != lName.npos) lpfId.byLeadingTrackFinding = lDiscri;
750     if (lName.find("leadingTrackPtCut") != lName.npos) lpfId.byLeadingTrackPtCut = lDiscri;
751 amagnan 1.5 if (lName.find("trackIsolationUsingLeadingPion") != lName.npos) lpfId.trackIsolationUsingLeadingPion = lDiscri;
752     if (lName.find("trackIsolation") != lName.npos &&
753     lName.find("trackIsolationUsingLeadingPion") == lName.npos) lpfId.byTrackIsolation = lDiscri;
754     if (lName.find("ecalIsolationUsingLeadingPion") != lName.npos) lpfId.ecalIsolationUsingLeadingPion = lDiscri;
755     if (lName.find("ecalIsolation") != lName.npos &&
756     lName.find("ecalIsolationUsingLeadingPion") == lName.npos) lpfId.byECALIsolation = lDiscri;
757     if (lName.find("byIsolationUsingLeadingPion") != lName.npos) lpfId.byIsolationUsingLeadingPion = lDiscri;
758     if (lName.find("byIsolation") != lName.npos &&
759     lName.find("byIsolationUsingLeadingPion") == lName.npos) lpfId.byIsolation = lDiscri;
760 amagnan 1.1 if (lName.find("againstElectron") != lName.npos) lpfId.againstElectron = lDiscri;
761     if (lName.find("againstMuon") != lName.npos) lpfId.againstMuon = lDiscri;
762 amagnan 1.5 if (lName.find("byTaNCfrHalfPercent") != lName.npos) lpfId.byTaNCfrHalfPercent = lDiscri;
763     if (lName.find("byTaNCfrOnePercent") != lName.npos) lpfId.byTaNCfrOnePercent = lDiscri;
764     if (lName.find("byTaNCfrQuarterPercent") != lName.npos) lpfId.byTaNCfrQuarterPercent = lDiscri;
765     if (lName.find("byTaNCfrTenthPercent") != lName.npos) lpfId.byTaNCfrTenthPercent = lDiscri;
766     if (lName.find("byTaNC") != lName.npos &&
767     lName.find("byTaNCfr") == lName.npos) lpfId.byTaNC = lDiscri;
768     if (lName.find("leadingPionPtCut") != lName.npos) lpfId.leadingPionPtCut = lDiscri;
769 amagnan 1.1 }
770     if (isCalo){
771     if (lName.find("byIsolation") != lName.npos) lcaloId.byIsolation = lDiscri;
772     if (lName.find("leadingTrackFinding") != lName.npos) lcaloId.byLeadingTrackFinding = lDiscri;
773     if (lName.find("leadingTrackPtCut") != lName.npos) lcaloId.byLeadingTrackPtCut = lDiscri;
774     }
775    
776    
777     }
778    
779    
780     if (isCalo){
781    
782     HbbAnalysis::CaloTauIsoVars lcaloIso;
783     lcaloIso.nIsoTracks = (*iter).isolationTracks().size();
784     lcaloIso.nSigTracks = (*iter).signalTracks().size();
785     lcaloIso.leadTrackHCAL3x3hitsEtSum = (*iter).leadTrackHCAL3x3hitsEtSum();
786     lcaloIso.leadTrackHCAL3x3hottesthitDEta = (*iter).leadTrackHCAL3x3hottesthitDEta();
787     lcaloIso.signalTracksInvariantMass = (*iter).signalTracksInvariantMass();
788     lcaloIso.tracksInvariantMass = (*iter).TracksInvariantMass();
789     lcaloIso.isolationTracksPtSum = (*iter).isolationTracksPtSum();
790     lcaloIso.isolationECALhitsEtSum = (*iter).isolationECALhitsEtSum();
791     lcaloIso.maximumHCALhitEt = (*iter).maximumHCALhitEt();
792    
793     HbbAnalysis::Tau lObj(lGen,lGenJet,lReco,lLead,lcaloIso,lcaloId);
794     aVec.push_back(lObj);
795     }
796     else {
797    
798     HbbAnalysis::PFTauIsoVars lpfIso;
799     lpfIso.nSigCands = (*iter).signalPFCands().size();
800     lpfIso.nIsoCands = (*iter).isolationPFCands().size();
801     lpfIso.maximumHCALPFClusterEt = (*iter).maximumHCALPFClusterEt();
802     //lpfIso.emFraction = (*iter).emFraction();
803     lpfIso.hcalTotOverPLead = (*iter).hcalTotOverPLead();
804     lpfIso.hcalMaxOverPLead = (*iter).hcalMaxOverPLead();
805     lpfIso.hcal3x3OverPLead = (*iter).hcal3x3OverPLead();
806     lpfIso.ecalStripSumEOverPLead = (*iter).ecalStripSumEOverPLead();
807     lpfIso.bremsRecoveryEOverPLead = (*iter).bremsRecoveryEOverPLead();
808    
809     HbbAnalysis::PFTauCandVars lHadr;
810     lHadr.nSigCands = (*iter).signalPFChargedHadrCands().size();
811     lHadr.nIsoCands = (*iter).isolationPFChargedHadrCands().size();
812     lHadr.isolationPtSum = (*iter).isolationPFChargedHadrCandsPtSum();
813    
814     HbbAnalysis::PFTauCandVars lNeutr;
815     lNeutr.nSigCands = (*iter).signalPFNeutrHadrCands().size();
816     lNeutr.nIsoCands = (*iter).isolationPFNeutrHadrCands().size();
817 amagnan 1.4 lNeutr.isolationPtSum = (*iter).neutralHadronIso();
818 amagnan 1.1
819     HbbAnalysis::PFTauCandVars lGamma;
820     lGamma.nSigCands = (*iter).signalPFGammaCands().size();
821     lGamma.nIsoCands = (*iter).isolationPFGammaCands().size();
822     lGamma.isolationPtSum = (*iter).isolationPFGammaCandsEtSum();
823    
824     HbbAnalysis::PFTauEleIDVars lEleId;
825     if ( (*iter).electronPreIDTrack().isAvailable() && (*iter).electronPreIDTrack().isNonnull() ) {
826     lEleId.pT = (*iter).electronPreIDTrack()->pt();
827     lEleId.eta = (*iter).electronPreIDTrack()->eta();
828     lEleId.phi = (*iter).electronPreIDTrack()->phi();
829     }
830     else {
831     lEleId.pT = 0;
832     lEleId.eta = 0;
833     lEleId.phi = 0;
834     }
835    
836     lEleId.output = (*iter).electronPreIDOutput();
837     lEleId.decision = (*iter).electronPreIDDecision();
838    
839     HbbAnalysis::PFTauMuIDVars lMuId;
840     lMuId.caloCompat = (*iter).caloComp();
841     lMuId.segCompat = (*iter).segComp();
842     lMuId.decision = (*iter).muonDecision();
843    
844     HbbAnalysis::Tau lObj(lGen,lGenJet,lReco,lLead,lpfIso,lHadr,lNeutr,lGamma,lpfId,lEleId,lMuId);
845     aVec.push_back(lObj);
846     }
847     iEle++;
848     }
849     }
850     }
851    
852     }//HbbTaus
853    
854     void HbbTreeMaker::HbbJets(const edm::Handle<std::vector<pat::Jet> > & aCol,
855     const HbbAnalysis::JetFlavour & aJetFlav,
856     const edm::Handle<reco::GenParticleCollection> & aGenParticles,
857     std::vector<HbbAnalysis::Jet> & aVec)
858     {//HbbJets
859    
860     if (aCol.isValid()){//valid
861     if (aCol->size() > 0) {//non empty
862    
863     unsigned int iEle = 0;
864     for (std::vector<pat::Jet>::const_iterator iter = aCol->begin();
865     iter != aCol->end();
866     iter++)
867     {//loop on element
868     //if (debug_ > 1) std::cout << "**** Ele #" << iEle << ", pT,eta,phi = " << (*iter).pt() << " " << (*iter).eta() << " " << (*iter).phi() << std::endl;
869    
870     HbbAnalysis::GenVars lGen;
871 amagnan 1.4 if (!processData_ && (*iter).genParton()){
872 amagnan 1.1 lGen.valid = true;
873 amagnan 1.2 lGen.E = (*iter).genParton()->energy();
874 amagnan 1.1 lGen.pT = (*iter).genParton()->pt();
875     lGen.eta = (*iter).genParton()->eta();
876     lGen.phi = (*iter).genParton()->phi();
877     lGen.charge = (*iter).genParton()->charge();
878     lGen.pdgId = (*iter).genParton()->pdgId();
879     lGen.status = (*iter).genParton()->status();
880     lGen.mass = (*iter).genParton()->mass();
881     lGen.vx = (*iter).genParton()->vx();
882     lGen.vy = (*iter).genParton()->vy();
883     lGen.vz = (*iter).genParton()->vz();
884     }
885     else {
886     lGen.valid = false;
887 amagnan 1.2 lGen.E = 0;
888 amagnan 1.1 lGen.pT = 0;
889     lGen.eta = 0;
890     lGen.phi = 0;
891     lGen.charge = 0;
892     lGen.pdgId = 0;
893     lGen.status = 0;
894     lGen.mass = 0;
895     lGen.vx = 0;
896     lGen.vy = 0;
897     lGen.vz = 0;
898     }
899    
900    
901     HbbAnalysis::GenVars lGenJet;
902 amagnan 1.4 if (!processData_ && (*iter).genJet()){
903 amagnan 1.1 lGenJet.valid = true;
904 amagnan 1.4 lGenJet.E = (*iter).genJet()->energy();
905 amagnan 1.1 lGenJet.pT = (*iter).genJet()->pt();
906     lGenJet.eta = (*iter).genJet()->eta();
907     lGenJet.phi = (*iter).genJet()->phi();
908     lGenJet.charge = (*iter).genJet()->charge();
909     lGenJet.pdgId = (*iter).genJet()->pdgId();
910     lGenJet.status = (*iter).genJet()->status();
911     lGenJet.mass = (*iter).genJet()->mass();
912     lGenJet.vx = (*iter).genJet()->vx();
913     lGenJet.vy = (*iter).genJet()->vy();
914     lGenJet.vz = (*iter).genJet()->vz();
915     }
916     else {
917     lGenJet.valid = false;
918 amagnan 1.4 lGenJet.E = 0;
919 amagnan 1.1 lGenJet.pT = 0;
920     lGenJet.eta = 0;
921     lGenJet.phi = 0;
922     lGenJet.charge = 0;
923     lGenJet.pdgId = 0;
924     lGenJet.status = 0;
925     lGenJet.mass = 0;
926     lGenJet.vx = 0;
927     lGenJet.vy = 0;
928     lGenJet.vz = 0;
929     }
930    
931     HbbAnalysis::BaseVars lReco;
932 amagnan 1.2 lReco.E = (*iter).energy();
933 amagnan 1.1 lReco.pT = (*iter).pt();
934     lReco.eta = (*iter).eta();
935     lReco.phi = (*iter).phi();
936     lReco.charge = (*iter).jetCharge();
937     lReco.vx = (*iter).vx();
938     lReco.vy = (*iter).vy();
939     lReco.vz = (*iter).vz();
940    
941     unsigned int lFlav = 0;
942 amagnan 1.4 if (!processData_ && aJetFlav.nPartons()) {
943 amagnan 1.1 lFlav = aJetFlav.partonMatchingGenJet((*iter),aGenParticles,0.4).second;
944     }
945    
946     HbbAnalysis::JetVars lCommon;
947     lCommon.flavour = lFlav;
948     lCommon.partonFlavour = (*iter).partonFlavour();
949     lCommon.nAssociatedTracks = ((*iter).associatedTracks()).size();
950     lCommon.rawpT = (*iter).pt();
951 amagnan 1.4 if ((*iter).hasCorrFactors())
952     lCommon.rawpT = (*iter).pt()/((*iter).corrFactor((*iter).corrStep()));
953 amagnan 1.10
954     lCommon.etaMean = (*iter).etaPhiStatistics().etaMean;
955     lCommon.phiMean = (*iter).etaPhiStatistics().phiMean;
956     lCommon.etaEtaMoment = (*iter).etaPhiStatistics().etaEtaMoment;
957     lCommon.phiPhiMoment = (*iter).etaPhiStatistics().phiPhiMoment;
958     lCommon.etaPhiMoment = (*iter).etaPhiStatistics().etaPhiMoment;
959    
960 amagnan 1.1 //lCommon.rawEta = (*iter).;
961     //lCommon.rawPhi = (*iter).;
962     // p_hasJetCorrFactors->Fill(aJet.hasJetCorrFactors());
963    
964     HbbAnalysis::JetBtagVars lBtag;
965     lBtag.cSV = (*iter).bDiscriminator("combinedSecondaryVertexBJetTags");
966     lBtag.cSVMVA = (*iter).bDiscriminator("combinedSecondaryVertexMVABJetTags");
967     lBtag.iPMVA = (*iter).bDiscriminator("impactParameterMVABJetTags");
968     lBtag.bProba = (*iter).bDiscriminator("jetBProbabilityBJetTags");
969     lBtag.probability = (*iter).bDiscriminator("jetProbabilityBJetTags");
970     lBtag.sSV = (*iter).bDiscriminator("simpleSecondaryVertexBJetTags");
971 amagnan 1.7 lBtag.softElectronByPt = ((*iter).bDiscriminator("softElectronByPtBJetTags") < -1000) ? -1000 : (*iter).bDiscriminator("softElectronByPtBJetTags");
972     lBtag.softElectronByIP3d = ((*iter).bDiscriminator("softElectronByIP3dBJetTags") < -1000) ? -1000 : (*iter).bDiscriminator("softElectronByIP3dBJetTags");
973     lBtag.softMuon = ((*iter).bDiscriminator("softMuonBJetTags") < -1000) ? -1000 : (*iter).bDiscriminator("softMuonBJetTags");
974     lBtag.softMuonByPt = ((*iter).bDiscriminator("softMuonByPtBJetTags") < -1000) ? -1000 : (*iter).bDiscriminator("softMuonByPtBJetTags");
975     lBtag.softMuonByIP3d = ((*iter).bDiscriminator("softMuonByIP3dBJetTags") < -1000) ? -1000 : (*iter).bDiscriminator("softMuonByIP3dBJetTags");
976    
977     //std::cout << " -- New values of b-discri for jet : " << iEle << std::endl
978     // << " ---- softElecs: " << lBtag.softElectronByPt << " " << lBtag.softElectronByIP3d << std::endl
979     // << " ---- softMus: " << lBtag.softMuon << " " << lBtag.softMuonByPt << " " << lBtag.softMuonByIP3d << std::endl;
980 amagnan 1.6
981    
982 amagnan 1.1 lBtag.tCHE = (*iter).bDiscriminator("trackCountingHighEffBJetTags");
983     lBtag.tCHP = (*iter).bDiscriminator("trackCountingHighPurBJetTags");
984 amagnan 1.5
985    
986 amagnan 1.1 bool isCalo = (*iter).isCaloJet();
987     bool isPF = (*iter).isPFJet();
988    
989     assert (isCalo == !isPF);
990     if (isCalo) {
991 amagnan 1.5 HbbAnalysis::JetIDVars lId;
992     lId.fHPD = (*iter).jetID().fHPD;
993     lId.fRBX = (*iter).jetID().fRBX;
994     lId.n90Hits = (*iter).jetID().n90Hits;
995    
996 amagnan 1.1 HbbAnalysis::CaloJetVars lCalo;
997     lCalo.maxEInEmTowers = (*iter).maxEInEmTowers();
998     lCalo.maxEInHadTowers = (*iter).maxEInHadTowers();
999     lCalo.energyFractionHadronic = (*iter).energyFractionHadronic();
1000     lCalo.emEnergyFraction = (*iter).emEnergyFraction();
1001     lCalo.hadEnergyInHB = (*iter).hadEnergyInHB();
1002     lCalo.hadEnergyInHO = (*iter).hadEnergyInHO();
1003     lCalo.hadEnergyInHE = (*iter).hadEnergyInHE();
1004     lCalo.hadEnergyInHF = (*iter).hadEnergyInHF();
1005     lCalo.emEnergyInEB = (*iter).emEnergyInEB();
1006     lCalo.emEnergyInEE = (*iter).emEnergyInEE();
1007     lCalo.emEnergyInHF = (*iter).emEnergyInHF();
1008     lCalo.towersArea = (*iter).towersArea();
1009     lCalo.n90 = (*iter).n90();
1010     lCalo.n60 = (*iter).n60();
1011    
1012 amagnan 1.5 HbbAnalysis::Jet lObj(lGen,lGenJet,lReco,lCommon,lCalo,lBtag,lId);
1013 amagnan 1.1 aVec.push_back(lObj);
1014    
1015     }
1016    
1017     if (isPF){
1018     HbbAnalysis::PFJetVars lPF;
1019     lPF.chargedHadronEnergy = (*iter).chargedHadronEnergy();
1020     lPF.chargedHadronEnergyFraction = (*iter).chargedHadronEnergyFraction();
1021     lPF.neutralHadronEnergy = (*iter).neutralHadronEnergy();
1022     lPF.neutralHadronEnergyFraction = (*iter).neutralHadronEnergyFraction();
1023     lPF.chargedEmEnergy = (*iter).chargedEmEnergy();
1024     lPF.chargedEmEnergyFraction = (*iter).chargedEmEnergyFraction();
1025     lPF.chargedMuEnergy = (*iter).chargedMuEnergy();
1026     lPF.chargedMuEnergyFraction = (*iter).chargedMuEnergyFraction();
1027     lPF.neutralEmEnergy = (*iter).neutralEmEnergy();
1028     lPF.neutralEmEnergyFraction = (*iter).neutralEmEnergyFraction();
1029     lPF.chargedMultiplicity = (*iter).chargedMultiplicity();
1030     lPF.neutralMultiplicity = (*iter).neutralMultiplicity();
1031     lPF.muonMultiplicity = (*iter).muonMultiplicity();
1032    
1033     HbbAnalysis::Jet lObj(lGen,lGenJet,lReco,lCommon,lPF,lBtag);
1034     aVec.push_back(lObj);
1035    
1036     }
1037    
1038 amagnan 1.5
1039    
1040 amagnan 1.1 iEle++;
1041     }//loop on element
1042     }//non empty
1043     }//valid
1044    
1045     }//HbbJets
1046    
1047     void HbbTreeMaker::HbbMet(const edm::Handle<std::vector<pat::MET> > & aCol,
1048     HbbAnalysis::Met & aMet)
1049     {//HbbMet
1050     HbbAnalysis::MetVars lGen;
1051     HbbAnalysis::MetVars lReco;
1052    
1053     assert(aCol->size() == 1);
1054     const pat::MET & lMet = *(aCol->begin());
1055    
1056     lReco.mET = lMet.pt();
1057     lReco.mEx = lMet.px();
1058     lReco.mEy = lMet.py();
1059     lReco.sumET = lMet.sumEt();
1060     lReco.phi = lMet.phi();
1061     lReco.mEtSig = lMet.mEtSig();
1062    
1063     const reco::GenMET *lGenMET = lMet.genMET();
1064    
1065 amagnan 1.4 if (!processData_ && lGenMET){
1066 amagnan 1.1 lGen.mET = lGenMET->pt();
1067     lGen.mEx = lGenMET->px();
1068     lGen.mEy = lGenMET->py();
1069     lGen.sumET = lGenMET->sumEt();
1070     lGen.phi = lGenMET->phi();
1071     lGen.mEtSig = lGenMET->mEtSig();
1072     }
1073     else {
1074     lGen.mET = 0;
1075     lGen.mEx = 0;
1076     lGen.mEy = 0;
1077     lGen.sumET = 0;
1078     lGen.phi = 0;
1079     lGen.mEtSig = 0;
1080     }
1081    
1082     aMet.genVars(lGen);
1083     aMet.recoVars(lReco);
1084    
1085     }//HbbMet
1086    
1087     void HbbTreeMaker::HbbTrigger(const edm::Handle<edm::TriggerResults> & aCol,
1088     std::vector<HbbAnalysis::Trigger> & aVec)
1089     {//HbbTrigger
1090    
1091     if (aCol.isValid()){
1092     edm::TriggerNames lNames;
1093     lNames.init(*aCol);
1094    
1095     //for (unsigned int j=0; j<hltPaths_.size(); j++) {
1096     //bool valid=false;
1097     for (unsigned int i=0; i<aCol->size(); i++){
1098     std::string trueName = lNames.triggerNames().at(i);
1099    
1100     HbbAnalysis::TriggerVars lTrigVars;
1101     lTrigVars.name = trueName;
1102     lTrigVars.index = i;
1103     lTrigVars.accept = aCol->accept(i);
1104    
1105     HbbAnalysis::Trigger lObj(lTrigVars);
1106    
1107     aVec.push_back(lObj);
1108     }
1109    
1110     }
1111    
1112     }
1113    
1114     void HbbTreeMaker::HbbParticles(const edm::Handle<reco::GenParticleCollection> & aCol,
1115     std::vector<HbbAnalysis::GenParticle> & aVec)
1116     {//genparticles
1117    
1118     //add genParticle inside vector
1119     for (unsigned int mccount = 0;mccount<aCol->size();mccount++)
1120     {//loop on particles
1121     const reco::Candidate & p = (*aCol)[mccount];
1122    
1123     HbbAnalysis::MCVars lMC;
1124     lMC.index = mccount;
1125 amagnan 1.2 lMC.E = p.energy();
1126 amagnan 1.1 lMC.pT = p.pt();
1127     lMC.eta = p.eta();
1128     lMC.phi = p.phi();
1129     lMC.pdgId = p.pdgId();
1130     lMC.status = p.status();
1131     HbbAnalysis::GenParticle lObj(lMC);
1132     aVec.push_back(lObj);
1133    
1134     }//loop on particles
1135    
1136     //now need to get the list of parents....
1137    
1138     for (unsigned int mccount = 0;mccount<aCol->size();mccount++)
1139     {//loop on particles
1140     const reco::Candidate & p = (*aCol)[mccount];
1141    
1142     unsigned int nD = p.numberOfDaughters();
1143     //std::cout << mccount << " has " << nD << " daughter(s) : " ;
1144     for(unsigned int dau=0;dau<nD;dau++){//loop on daughters
1145     const reco::Candidate * pDau = p.daughter(dau);
1146     //std::cout << pDau << " ("<<std::flush;
1147     for (unsigned int mccount2 = 0;mccount2<aCol->size();mccount2++)
1148     {//loop on particles
1149     const reco::Candidate & p2 = (*aCol)[mccount2];
1150     //std::cout<<"DBG: mccount2 = "<<mccount2<<" gen size = "<<data_->gen().size()<<std::endl;
1151    
1152     HbbAnalysis::GenParticle & part2 = aVec.at(mccount2);
1153     if (pDau == &p2) {
1154     part2.setParent(mccount);
1155     //std::cout << &p2 << ", index = " << mccount2 << "), "<<std::flush;
1156     break;
1157     }
1158     //else std::cout << std::endl << "****no match " << mccount2 << " " << &p2 << std::endl;
1159     //if (p2.pdgId() == pDau->pdgId() && fabs(p2.energy()-pDau->energy())<0.000001 && fabs(p2.eta()-pDau->eta())<0.000001 && fabs(p2.phi()-pDau->phi())<0.000001){
1160     //part2.parent(mccount);
1161     //}
1162     }//loop on particles
1163     }//loop on daughters
1164     //std::cout << std::endl;
1165    
1166     }//loop on particles
1167    
1168     if (debug_){
1169     for (unsigned int imc(0); imc < aVec.size(); imc++){
1170     HbbAnalysis::GenParticle & p = aVec.at(imc);
1171     p.print();
1172     }
1173     }
1174    
1175    
1176     }//genparticles
1177 amagnan 1.5
1178    
1179    
1180     void HbbTreeMaker::HbbVertices(const edm::Handle<std::vector<reco::Vertex> > & aCol,
1181     std::vector<HbbAnalysis::Vertex> & aVec)
1182     {
1183    
1184     for (std::vector<reco::Vertex>::const_iterator iter = aCol->begin();
1185     iter != aCol->end();
1186     iter++)
1187     {
1188    
1189     if (!((*iter).isValid()) || (*iter).isFake()) continue;
1190    
1191     HbbAnalysis::VertexVars lVtx;
1192    
1193     if ((*iter).tracksSize() > 0) {
1194     for (std::vector<reco::TrackBaseRef>::const_iterator lTrk = (*iter).tracks_begin();
1195     lTrk != (*iter).tracks_end();
1196     lTrk++) {
1197     lVtx.trackWeights.push_back((*iter).trackWeight(*lTrk));
1198     }
1199     }
1200    
1201     if (lVtx.trackWeights.size() != (*iter).tracksSize()) {
1202     std::cout<< " -- Problem with tracks, size is not as expected ! "
1203     << std::endl
1204     << " --- Size of recoVertex tracks = " << (*iter).tracksSize()
1205     << std::endl
1206     << " --- Size of trackWeights = " << lVtx.trackWeights.size()
1207     << std::endl;
1208     }
1209    
1210     lVtx.chi2 = (*iter).chi2();
1211     lVtx.ndof = (*iter).ndof();
1212     lVtx.x = (*iter).x();
1213     lVtx.y = (*iter).y();
1214     lVtx.z = (*iter).z();
1215     lVtx.xError = (*iter).xError();
1216     lVtx.yError = (*iter).yError();
1217     lVtx.zError = (*iter).zError();
1218     lVtx.cov01 = (*iter).covariance(0,1);
1219     lVtx.cov02 = (*iter).covariance(0,2);
1220     lVtx.cov12 = (*iter).covariance(1,2);
1221    
1222     HbbAnalysis::Vertex lObj(lVtx);
1223     aVec.push_back(lObj);
1224     }
1225    
1226     }
1227 amagnan 1.8
1228     #include "FWCore/Framework/interface/MakerMacros.h"
1229     DEFINE_FWK_MODULE(HbbTreeMaker);
1230    
1231