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Revision: 1.23
Committed: Fri Apr 5 13:23:16 2013 UTC (12 years, 1 month ago) by eusai
Content type: text/plain
Branch: MAIN
Changes since 1.22: +108 -13 lines
Log Message:
add tag info

File Contents

# User Rev Content
1 peiffer 1.1 // -*- C++ -*-
2     //
3     // Package: NtupleWriter
4     // Class: NtupleWriter
5     //
6     /**\class NtupleWriter NtupleWriter.cc NtupleWriter/src/NtupleWriter.cc
7    
8     Description: [one line class summary]
9    
10     Implementation:
11     [Notes on implementation]
12     */
13     //
14     // Original Author: Thomas Peiffer,,,Uni Hamburg
15     // Created: Tue Mar 13 08:43:34 CET 2012
16 eusai 1.23 // $Id: NtupleWriter.cc,v 1.22 2012/07/25 09:56:57 peiffer Exp $
17 peiffer 1.1 //
18     //
19    
20 eusai 1.23 #include "UHHAnalysis/NtupleWriter/interface/NtupleWriter.h"
21     #include "RecoBTau/JetTagComputer/interface/GenericMVAJetTagComputer.h"
22     #include "RecoBTau/JetTagComputer/interface/GenericMVAJetTagComputerWrapper.h"
23     #include "RecoBTau/JetTagComputer/interface/JetTagComputer.h"
24     #include "RecoBTau/JetTagComputer/interface/JetTagComputerRecord.h"
25     #include "RecoBTag/SecondaryVertex/interface/CombinedSVComputer.h"
26 peiffer 1.1
27     //
28     // constants, enums and typedefs
29     //
30    
31     //
32     // static data member definitions
33     //
34    
35     //
36     // constructors and destructor
37     //
38     NtupleWriter::NtupleWriter(const edm::ParameterSet& iConfig)
39    
40     {
41     //now do what ever initialization is needed
42     //edm::Service<TFileService> fs;
43     //tr = fs->make<TTree>("AnalysisTree","AnalysisTree");
44    
45     fileName = iConfig.getParameter<std::string>("fileName");
46     outfile = new TFile(fileName,"RECREATE");
47     outfile->cd();
48     tr = new TTree("AnalysisTree","AnalysisTree");
49    
50     std::string name;
51    
52     doElectrons = iConfig.getParameter<bool>("doElectrons");
53     doMuons = iConfig.getParameter<bool>("doMuons");
54     doTaus = iConfig.getParameter<bool>("doTaus");
55     doJets = iConfig.getParameter<bool>("doJets");
56 peiffer 1.19 doJECUncertainty = iConfig.getParameter<bool>("doJECUncertainty");
57 peiffer 1.14 doGenTopJets = iConfig.getParameter<bool>("doGenTopJets");
58 peiffer 1.1 doPhotons = iConfig.getParameter<bool>("doPhotons");
59     doMET = iConfig.getParameter<bool>("doMET");
60     doGenInfo = iConfig.getParameter<bool>("doGenInfo");
61 peiffer 1.11 doAllGenParticles = iConfig.getParameter<bool>("doAllGenParticles");
62 peiffer 1.10 doLumiInfo = iConfig.getParameter<bool>("doLumiInfo");
63 peiffer 1.1 doPV = iConfig.getParameter<bool>("doPV");
64     doTopJets = iConfig.getParameter<bool>("doTopJets");
65 peiffer 1.6 doTrigger = iConfig.getParameter<bool>("doTrigger");
66 eusai 1.23 SVComputer_ = iConfig.getUntrackedParameter<edm::InputTag>("svComputer",edm::InputTag("combinedSecondaryVertex"));
67     doTagInfos = iConfig.getUntrackedParameter<bool>("doTagInfos",false);
68 peiffer 1.1 // initialization of tree variables
69    
70     tr->Branch("run",&run);
71     tr->Branch("event",&event);
72     tr->Branch("luminosityBlock",&luminosityBlock);
73     tr->Branch("isRealData",&isRealData);
74 peiffer 1.18 tr->Branch("rho",&rho);
75     rho_source = iConfig.getParameter<edm::InputTag>("rho_source");
76    
77 peiffer 1.17 //tr->Branch("HBHENoiseFilterResult",&HBHENoiseFilterResult);
78 peiffer 1.10 if(doLumiInfo){
79     tr->Branch("intgRecLumi",&intgRecLumi);
80     tr->Branch("intgDelLumi",&intgDelLumi);
81     }
82 peiffer 1.8 if(doPV){
83     tr->Branch("beamspot_x0",&beamspot_x0);
84     tr->Branch("beamspot_y0",&beamspot_y0);
85     tr->Branch("beamspot_z0",&beamspot_z0);
86     }
87 peiffer 1.1 if(doElectrons){
88     electron_sources = iConfig.getParameter<std::vector<std::string> >("electron_sources");
89     for(size_t j=0; j< electron_sources.size(); ++j){
90     tr->Branch( electron_sources[j].c_str(), "std::vector<Electron>", &eles[j]);
91     }
92     }
93     if(doMuons){
94     muon_sources = iConfig.getParameter<std::vector<std::string> >("muon_sources");
95     for(size_t j=0; j< muon_sources.size(); ++j){
96     tr->Branch( muon_sources[j].c_str(), "std::vector<Muon>", &mus[j]);
97     }
98     }
99     if(doTaus){
100     tau_sources = iConfig.getParameter<std::vector<std::string> >("tau_sources");
101     tau_ptmin = iConfig.getParameter<double> ("tau_ptmin");
102     tau_etamax = iConfig.getParameter<double> ("tau_etamax");
103     for(size_t j=0; j< tau_sources.size(); ++j){
104     tr->Branch( tau_sources[j].c_str(), "std::vector<Tau>", &taus[j]);
105     }
106     }
107     if(doJets){
108     jet_sources = iConfig.getParameter<std::vector<std::string> >("jet_sources");
109     jet_ptmin = iConfig.getParameter<double> ("jet_ptmin");
110     jet_etamax = iConfig.getParameter<double> ("jet_etamax");
111     for(size_t j=0; j< jet_sources.size(); ++j){
112     tr->Branch( jet_sources[j].c_str(), "std::vector<Jet>", &jets[j]);
113     }
114     }
115     if(doTopJets){
116     topjet_sources = iConfig.getParameter<std::vector<std::string> >("topjet_sources");
117     topjet_ptmin = iConfig.getParameter<double> ("topjet_ptmin");
118     topjet_etamax = iConfig.getParameter<double> ("topjet_etamax");
119     for(size_t j=0; j< topjet_sources.size(); ++j){
120     tr->Branch( topjet_sources[j].c_str(), "std::vector<TopJet>", &topjets[j]);
121     }
122     }
123 peiffer 1.14 if(doGenTopJets){
124     gentopjet_sources = iConfig.getParameter<std::vector<std::string> >("gentopjet_sources");
125     gentopjet_ptmin = iConfig.getParameter<double> ("gentopjet_ptmin");
126     gentopjet_etamax = iConfig.getParameter<double> ("gentopjet_etamax");
127     for(size_t j=0; j< gentopjet_sources.size(); ++j){
128     tr->Branch( gentopjet_sources[j].c_str(), "std::vector<TopJet>", &gentopjets[j]);
129     }
130     }
131 peiffer 1.1 if(doPhotons){
132     photon_sources = iConfig.getParameter<std::vector<std::string> >("photon_sources");
133     for(size_t j=0; j< photon_sources.size(); ++j){
134     tr->Branch( photon_sources[j].c_str(), "std::vector<Photon>", &phs[j]);
135     }
136     }
137     if(doMET){
138     met_sources = iConfig.getParameter<std::vector<std::string> >("met_sources");
139     for(size_t j=0; j< met_sources.size(); ++j){
140     tr->Branch(met_sources[j].c_str(), "MET", &met[j]);
141     }
142     }
143     if(doPV){
144     pv_sources = iConfig.getParameter<std::vector<std::string> >("pv_sources");
145     for(size_t j=0; j< pv_sources.size(); ++j){
146     tr->Branch( pv_sources[j].c_str(), "std::vector<PrimaryVertex>", &pvs[j]);
147     }
148     }
149     if(doGenInfo){
150 peiffer 1.22 genparticle_source= iConfig.getParameter<edm::InputTag>("genparticle_source");
151 peiffer 1.1 tr->Branch("genInfo","GenInfo",&genInfo);
152     tr->Branch("GenParticles","std::vector<GenParticle>", &genps);
153     }
154 peiffer 1.6 if(doTrigger){
155     trigger_prefixes = iConfig.getParameter<std::vector<std::string> >("trigger_prefixes");
156     //tr->Branch("triggerResults","std::map<std::string, bool>",&triggerResults);
157     tr->Branch("triggerNames", "std::vector<std::string>", &triggerNames);
158     tr->Branch("triggerResults", "std::vector<bool>", &triggerResults);
159 peiffer 1.16 //tr->Branch("L1_prescale", "std::vector<int>", &L1_prescale);
160     //tr->Branch("HLT_prescale", "std::vector<int>", &HLT_prescale);
161 peiffer 1.6 }
162 peiffer 1.1 newrun = true;
163     }
164    
165    
166     NtupleWriter::~NtupleWriter()
167     {
168    
169     // do anything here that needs to be done at desctruction time
170     // (e.g. close files, deallocate resources etc.)
171    
172     }
173    
174    
175     //
176     // member functions
177     //
178    
179     // ------------ method called for each event ------------
180     void
181     NtupleWriter::analyze(const edm::Event& iEvent, const edm::EventSetup& iSetup)
182     {
183     // using namespace edm;
184    
185    
186     // ------------- common variables -------------
187    
188     run = iEvent.id().run();
189     event = iEvent.id().event();
190     luminosityBlock = iEvent.luminosityBlock();
191     isRealData = iEvent.isRealData();
192    
193 peiffer 1.18 edm::Handle<double> m_rho;
194     iEvent.getByLabel(rho_source,m_rho);
195     rho=*m_rho;
196    
197 peiffer 1.17 // if(isRealData){
198     // edm::Handle<bool> bool_handle;
199     // iEvent.getByLabel(edm::InputTag("HBHENoiseFilterResultProducer","HBHENoiseFilterResult"),bool_handle);
200     // HBHENoiseFilterResult = *(bool_handle.product());
201     // }
202     // else HBHENoiseFilterResult = false;
203 peiffer 1.1
204 peiffer 1.5 // ------------- primary vertices and beamspot -------------
205    
206     if(doPV){
207     for(size_t j=0; j< pv_sources.size(); ++j){
208     pvs[j].clear();
209    
210     edm::Handle< std::vector<reco::Vertex> > pv_handle;
211     iEvent.getByLabel(pv_sources[j], pv_handle);
212     const std::vector<reco::Vertex>& reco_pvs = *(pv_handle.product());
213    
214     for (unsigned int i = 0; i < reco_pvs.size(); ++i) {
215     reco::Vertex reco_pv = reco_pvs[i];
216    
217     PrimaryVertex pv;
218 peiffer 1.17 pv.set_x( reco_pv.x());
219     pv.set_y( reco_pv.y());
220     pv.set_z( reco_pv.z());
221     pv.set_nTracks( reco_pv.nTracks());
222     //pv.set_isValid( reco_pv.isValid());
223     pv.set_chi2( reco_pv.chi2());
224     pv.set_ndof( reco_pv.ndof());
225 peiffer 1.5
226     pvs[j].push_back(pv);
227     }
228     }
229 peiffer 1.8
230     edm::Handle<reco::BeamSpot> beamSpot;
231     iEvent.getByLabel(edm::InputTag("offlineBeamSpot"), beamSpot);
232     const reco::BeamSpot & bsp = *beamSpot;
233    
234     beamspot_x0 = bsp.x0();
235     beamspot_y0 = bsp.y0();
236     beamspot_z0 = bsp.z0();
237 peiffer 1.5 }
238    
239 peiffer 1.15 // ------------- generator info -------------
240    
241     if(doGenInfo){
242 peiffer 1.17 genInfo.clear_weights();
243     genInfo.clear_binningValues();
244 peiffer 1.15 genps.clear();
245    
246     edm::Handle<GenEventInfoProduct> genEventInfoProduct;
247     iEvent.getByLabel("generator", genEventInfoProduct);
248     const GenEventInfoProduct& genEventInfo = *(genEventInfoProduct.product());
249    
250 peiffer 1.17 for(unsigned int k=0; k<genEventInfo.binningValues().size();++k){
251     genInfo.add_binningValue(genEventInfo.binningValues().at(k));
252     }
253     for(unsigned int k=0; k<genEventInfo.weights().size();++k){
254     genInfo.add_weight(genEventInfo.weights().at(k));
255     }
256     genInfo.set_alphaQCD(genEventInfo.alphaQCD());
257     genInfo.set_alphaQED(genEventInfo.alphaQED());
258     genInfo.set_qScale(genEventInfo.qScale());
259 peiffer 1.15
260     const gen::PdfInfo* pdf = genEventInfo.pdf();
261     if(pdf){
262 peiffer 1.17 genInfo.set_pdf_id1(pdf->id.first);
263     genInfo.set_pdf_id2(pdf->id.second);
264     genInfo.set_pdf_x1(pdf->x.first);
265     genInfo.set_pdf_x2(pdf->x.second);
266     genInfo.set_pdf_scalePDF(pdf->scalePDF);
267     genInfo.set_pdf_xPDF1(pdf->xPDF.first);
268     genInfo.set_pdf_xPDF2(pdf->xPDF.second);
269 peiffer 1.15 }
270     else{
271 peiffer 1.17 genInfo.set_pdf_id1(-999);
272     genInfo.set_pdf_id2(-999);
273     genInfo.set_pdf_x1(-999);
274     genInfo.set_pdf_x2(-999);
275     genInfo.set_pdf_scalePDF(-999);
276     genInfo.set_pdf_xPDF1(-999);
277     genInfo.set_pdf_xPDF2(-999);
278 peiffer 1.15 }
279    
280     edm::Handle<std::vector<PileupSummaryInfo> > pus;
281     iEvent.getByLabel(edm::InputTag("addPileupInfo"), pus);
282 peiffer 1.17 genInfo.set_pileup_NumInteractions_intime(0);
283     genInfo.set_pileup_NumInteractions_ootbefore(0);
284     genInfo.set_pileup_NumInteractions_ootafter(0);
285 peiffer 1.15 if(pus.isValid()){
286 peiffer 1.17 genInfo.set_pileup_TrueNumInteractions ( (float) pus->at(0).getTrueNumInteractions());
287 peiffer 1.15 for(size_t i=0; i<pus->size(); ++i){
288     if(pus->at(i).getBunchCrossing() == 0) // intime pileup
289 peiffer 1.17 genInfo.set_pileup_NumInteractions_intime( genInfo.pileup_NumInteractions_intime() + pus->at(i).getPU_NumInteractions());
290 peiffer 1.15 else if(pus->at(i).getBunchCrossing() == -1){ // oot pileup before
291 peiffer 1.17 genInfo.set_pileup_NumInteractions_ootbefore( genInfo.pileup_NumInteractions_ootbefore() + pus->at(i).getPU_NumInteractions());
292 peiffer 1.15 }
293     else if(pus->at(i).getBunchCrossing() == +1){ // oot pileup before
294 peiffer 1.17 genInfo.set_pileup_NumInteractions_ootafter( genInfo.pileup_NumInteractions_ootafter() + pus->at(i).getPU_NumInteractions());
295 peiffer 1.15 }
296     }
297     }
298    
299     edm::Handle<reco::GenParticleCollection> genPartColl;
300 peiffer 1.22 iEvent.getByLabel(genparticle_source, genPartColl);
301 peiffer 1.15 int index=-1;
302     for(reco::GenParticleCollection::const_iterator iter = genPartColl->begin(); iter != genPartColl->end(); ++ iter){
303     index++;
304    
305     //write out only top quarks and status 3 particles (works fine only for MadGraph)
306     if(abs(iter->pdgId())==6 || iter->status()==3 || doAllGenParticles){
307     GenParticle genp;
308 peiffer 1.17 genp.set_charge(iter->charge());
309     genp.set_pt(iter->p4().pt());
310     genp.set_eta(iter->p4().eta());
311     genp.set_phi(iter->p4().phi());
312     genp.set_energy(iter->p4().E());
313     genp.set_index(index);
314     genp.set_status( iter->status());
315     genp.set_pdgId( iter->pdgId());
316    
317     genp.set_mother1(-1);
318     genp.set_mother2(-1);
319     genp.set_daughter1(-1);
320     genp.set_daughter2(-1);
321 peiffer 1.15
322     int nm=iter->numberOfMothers();
323     int nd=iter->numberOfDaughters();
324    
325    
326 peiffer 1.17 if (nm>0) genp.set_mother1( iter->motherRef(0).key());
327     if (nm>1) genp.set_mother2( iter->motherRef(1).key());
328     if (nd>0) genp.set_daughter1( iter->daughterRef(0).key());
329     if (nd>1) genp.set_daughter2( iter->daughterRef(1).key());
330    
331 peiffer 1.15 genps.push_back(genp);
332     }
333     }
334     }
335    
336 peiffer 1.1 // ------------- electrons -------------
337     if(doElectrons){
338 peiffer 1.10
339 peiffer 1.20 // edm::Handle<reco::ConversionCollection> hConversions;
340     // iEvent.getByLabel("allConversions", hConversions);
341 peiffer 1.10
342 peiffer 1.20 // edm::Handle<reco::BeamSpot> beamSpot;
343     // iEvent.getByLabel(edm::InputTag("offlineBeamSpot"), beamSpot);
344     // const reco::BeamSpot & bsp = *beamSpot;
345 peiffer 1.10
346 peiffer 1.1 for(size_t j=0; j< electron_sources.size(); ++j){
347     eles[j].clear();
348     edm::Handle< std::vector<pat::Electron> > ele_handle;
349     iEvent.getByLabel(electron_sources[j], ele_handle);
350     const std::vector<pat::Electron>& pat_electrons = *(ele_handle.product());
351    
352     for (unsigned int i = 0; i < pat_electrons.size(); ++i) {
353     pat::Electron pat_ele = pat_electrons[i];
354     Electron ele;
355    
356 peiffer 1.17 ele.set_charge( pat_ele.charge());
357     ele.set_pt( pat_ele.pt());
358     ele.set_eta( pat_ele.eta());
359     ele.set_phi( pat_ele.phi());
360     ele.set_energy( pat_ele.energy());
361     ele.set_vertex_x(pat_ele.vertex().x());
362     ele.set_vertex_y(pat_ele.vertex().y());
363     ele.set_vertex_z(pat_ele.vertex().z());
364     ele.set_supercluster_eta(pat_ele.superCluster()->eta());
365     ele.set_supercluster_phi(pat_ele.superCluster()->phi());
366     ele.set_dB(pat_ele.dB());
367     //ele.set_particleIso(pat_ele.particleIso());
368     ele.set_neutralHadronIso(pat_ele.neutralHadronIso());
369     ele.set_chargedHadronIso(pat_ele.chargedHadronIso());
370     ele.set_trackIso(pat_ele.trackIso());
371     ele.set_photonIso(pat_ele.photonIso());
372     ele.set_puChargedHadronIso(pat_ele.puChargedHadronIso());
373     ele.set_gsfTrack_trackerExpectedHitsInner_numberOfLostHits(pat_ele.gsfTrack()->trackerExpectedHitsInner().numberOfLostHits());
374     ele.set_gsfTrack_px( pat_ele.gsfTrack()->px());
375     ele.set_gsfTrack_py( pat_ele.gsfTrack()->py());
376     ele.set_gsfTrack_pz( pat_ele.gsfTrack()->pz());
377     ele.set_gsfTrack_vx( pat_ele.gsfTrack()->vx());
378     ele.set_gsfTrack_vy( pat_ele.gsfTrack()->vy());
379     ele.set_gsfTrack_vz( pat_ele.gsfTrack()->vz());
380 peiffer 1.20 //ele.set_passconversionveto(!ConversionTools::hasMatchedConversion(pat_ele,hConversions,bsp.position()));
381     ele.set_passconversionveto(pat_ele.passConversionVeto());
382 peiffer 1.17 ele.set_dEtaIn(pat_ele.deltaEtaSuperClusterTrackAtVtx());
383     ele.set_dPhiIn(pat_ele.deltaPhiSuperClusterTrackAtVtx());
384     ele.set_sigmaIEtaIEta(pat_ele.sigmaIetaIeta());
385     ele.set_HoverE(pat_ele.hadronicOverEm());
386     ele.set_fbrem(pat_ele.fbrem());
387     ele.set_EoverPIn(pat_ele.eSuperClusterOverP());
388     ele.set_EcalEnergy(pat_ele.ecalEnergy());
389 peiffer 1.19 ele.set_mvaTrigV0(pat_ele.electronID("mvaTrigV0"));
390     ele.set_mvaNonTrigV0(pat_ele.electronID("mvaNonTrigV0"));
391 peiffer 1.22 float AEff03 = 0.00;
392     if(isRealData){
393     AEff03 = ElectronEffectiveArea::GetElectronEffectiveArea(ElectronEffectiveArea::kEleGammaAndNeutralHadronIso03, pat_ele.superCluster()->eta(), ElectronEffectiveArea::kEleEAData2011);
394     }else{
395     AEff03 = ElectronEffectiveArea::GetElectronEffectiveArea(ElectronEffectiveArea::kEleGammaAndNeutralHadronIso03, pat_ele.superCluster()->eta(), ElectronEffectiveArea::kEleEAFall11MC);
396     }
397     ele.set_AEff(AEff03);
398 peiffer 1.11
399 peiffer 1.1 eles[j].push_back(ele);
400     }
401     }
402     }
403    
404     // ------------- muons -------------
405     if(doMuons){
406     for(size_t j=0; j< muon_sources.size(); ++j){
407     mus[j].clear();
408    
409     edm::Handle< std::vector<pat::Muon> > mu_handle;
410     iEvent.getByLabel(muon_sources[j], mu_handle);
411     const std::vector<pat::Muon>& pat_muons = *(mu_handle.product());
412    
413     for (unsigned int i = 0; i <pat_muons.size() ; ++i) {
414     pat::Muon pat_mu = pat_muons[i];
415    
416     Muon mu;
417 peiffer 1.17 mu.set_charge( pat_mu.charge());
418     mu.set_pt( pat_mu.pt());
419     mu.set_eta( pat_mu.eta());
420     mu.set_phi( pat_mu.phi());
421     mu.set_energy( pat_mu.energy());
422     mu.set_vertex_x ( pat_mu.vertex().x());
423     mu.set_vertex_y ( pat_mu.vertex().y());
424     mu.set_vertex_z ( pat_mu.vertex().z());
425     mu.set_dB ( pat_mu.dB());
426     //mu.particleIso ( pat_mu.particleIso());
427     mu.set_neutralHadronIso ( pat_mu.neutralHadronIso());
428     mu.set_chargedHadronIso ( pat_mu.chargedHadronIso());
429     mu.set_trackIso ( pat_mu.trackIso());
430     mu.set_photonIso ( pat_mu.photonIso());
431     mu.set_puChargedHadronIso ( pat_mu.puChargedHadronIso());
432     mu.set_isGlobalMuon ( pat_mu.isGlobalMuon());
433 peiffer 1.21 mu.set_isPFMuon ( pat_mu.isPFMuon());
434 peiffer 1.17 mu.set_isStandAloneMuon ( pat_mu.isStandAloneMuon());
435     mu.set_isTrackerMuon ( pat_mu.isTrackerMuon());
436     mu.set_numberOfMatchedStations ( pat_mu.numberOfMatchedStations());
437 peiffer 1.1 reco::TrackRef globalTrack = pat_mu.globalTrack();
438     if(!globalTrack.isNull()){
439 peiffer 1.17 mu.set_globalTrack_chi2 ( globalTrack->chi2());
440     mu.set_globalTrack_ndof ( globalTrack->ndof());
441     mu.set_globalTrack_d0 ( globalTrack->d0());
442     mu.set_globalTrack_d0Error ( globalTrack->d0Error());
443     mu.set_globalTrack_numberOfValidHits ( globalTrack->numberOfValidHits());
444     mu.set_globalTrack_numberOfLostHits ( globalTrack->numberOfLostHits());
445 peiffer 1.21 mu.set_globalTrack_numberOfValidMuonHits(globalTrack->hitPattern().numberOfValidMuonHits() );
446 peiffer 1.1 }
447     else{
448 peiffer 1.17 mu.set_globalTrack_chi2 ( 0);
449     mu.set_globalTrack_ndof ( 0);
450     mu.set_globalTrack_d0 ( 0);
451     mu.set_globalTrack_d0Error ( 0);
452     mu.set_globalTrack_numberOfValidHits ( 0);
453     mu.set_globalTrack_numberOfLostHits ( 0);
454 peiffer 1.1 }
455     reco::TrackRef innerTrack = pat_mu.innerTrack();
456     if(!innerTrack.isNull()){
457 peiffer 1.17 mu.set_innerTrack_chi2 ( innerTrack->chi2());
458     mu.set_innerTrack_ndof ( innerTrack->ndof());
459     mu.set_innerTrack_d0 ( innerTrack->d0());
460     mu.set_innerTrack_d0Error ( innerTrack->d0Error());
461     mu.set_innerTrack_numberOfValidHits ( innerTrack->numberOfValidHits());
462     mu.set_innerTrack_numberOfLostHits ( innerTrack->numberOfLostHits());
463     mu.set_innerTrack_trackerLayersWithMeasurement ( innerTrack->hitPattern().trackerLayersWithMeasurement());
464     mu.set_innerTrack_numberOfValidPixelHits ( innerTrack->hitPattern().numberOfValidPixelHits());
465 peiffer 1.1 }
466     else{
467 peiffer 1.17 mu.set_innerTrack_chi2 ( 0);
468     mu.set_innerTrack_ndof ( 0);
469     mu.set_innerTrack_d0 ( 0);
470     mu.set_innerTrack_d0Error ( 0);
471     mu.set_innerTrack_numberOfValidHits ( 0);
472     mu.set_innerTrack_numberOfLostHits ( 0);
473     mu.set_innerTrack_trackerLayersWithMeasurement ( 0);
474     mu.set_innerTrack_numberOfValidPixelHits ( 0);
475 peiffer 1.1 }
476     reco::TrackRef outerTrack = pat_mu.outerTrack();
477     if(!outerTrack.isNull()){
478 peiffer 1.17 mu.set_outerTrack_chi2 ( outerTrack->chi2());
479     mu.set_outerTrack_ndof ( outerTrack->ndof());
480     mu.set_outerTrack_d0 ( outerTrack->d0());
481     mu.set_outerTrack_d0Error ( outerTrack->d0Error());
482     mu.set_outerTrack_numberOfValidHits ( outerTrack->numberOfValidHits());
483     mu.set_outerTrack_numberOfLostHits ( outerTrack->numberOfLostHits());
484 peiffer 1.1 }
485     else{
486 peiffer 1.17 mu.set_outerTrack_chi2 ( 0);
487     mu.set_outerTrack_ndof ( 0);
488     mu.set_outerTrack_d0 ( 0);
489     mu.set_outerTrack_d0Error ( 0);
490     mu.set_outerTrack_numberOfValidHits ( 0);
491     mu.set_outerTrack_numberOfLostHits ( 0);
492 peiffer 1.1 }
493    
494     mus[j].push_back(mu);
495     }
496     }
497     }
498     // ------------- taus -------------
499    
500     if(doTaus){
501     for(size_t j=0; j< tau_sources.size(); ++j){
502     taus[j].clear();
503    
504    
505     edm::Handle< std::vector<pat::Tau> > tau_handle;
506     iEvent.getByLabel(tau_sources[j], tau_handle);
507     const std::vector<pat::Tau>& pat_taus = *(tau_handle.product());
508    
509     for (unsigned int i = 0; i < pat_taus.size(); ++i) {
510     pat::Tau pat_tau = pat_taus[i];
511     if(pat_tau.pt() < tau_ptmin) continue;
512     if(fabs(pat_tau.eta()) > tau_etamax) continue;
513    
514     Tau tau;
515 peiffer 1.17 tau.set_charge( pat_tau.charge());
516     tau.set_pt( pat_tau.pt());
517     tau.set_eta( pat_tau.eta());
518     tau.set_phi( pat_tau.phi());
519     tau.set_energy( pat_tau.energy());
520     tau.set_decayModeFinding ( pat_tau.tauID("decayModeFinding")>0.5);
521     tau.set_byVLooseCombinedIsolationDeltaBetaCorr ( pat_tau.tauID("byVLooseCombinedIsolationDeltaBetaCorr")>0.5);
522     tau.set_byLooseCombinedIsolationDeltaBetaCorr ( pat_tau.tauID("byLooseCombinedIsolationDeltaBetaCorr")>0.5);
523     tau.set_byMediumCombinedIsolationDeltaBetaCorr ( pat_tau.tauID("byMediumCombinedIsolationDeltaBetaCorr")>0.5);
524     tau.set_byTightCombinedIsolationDeltaBetaCorr ( pat_tau.tauID("byTightCombinedIsolationDeltaBetaCorr")>0.5);
525     tau.set_againstElectronLoose ( pat_tau.tauID("againstElectronLoose")>0.5);
526     tau.set_againstElectronMedium ( pat_tau.tauID("againstElectronMedium")>0.5);
527     tau.set_againstElectronTight ( pat_tau.tauID("againstElectronTight")>0.5);
528     tau.set_againstElectronMVA ( pat_tau.tauID("againstElectronMVA")>0.5);
529     tau.set_againstMuonLoose ( pat_tau.tauID("againstMuonLoose")>0.5);
530     tau.set_againstMuonMedium ( pat_tau.tauID("againstMuonMedium")>0.5);
531     tau.set_againstMuonTight ( pat_tau.tauID("againstMuonTight")>0.5);
532 peiffer 1.10
533 peiffer 1.19 // reco::PFCandidateRef leadPFCand = pat_tau.leadPFCand();
534     // if(!leadPFCand.isNull()){
535     // tau.set_leadPFCand_px ( leadPFCand->px());
536     // tau.set_leadPFCand_py ( leadPFCand->py());
537     // tau.set_leadPFCand_pz ( leadPFCand->pz());
538     // }
539     // else{
540     // tau.set_leadPFCand_px ( 0);
541     // tau.set_leadPFCand_py ( 0);
542     // tau.set_leadPFCand_pz ( 0);
543     // }
544 peiffer 1.1 taus[j].push_back(tau);
545     }
546     }
547     }
548    
549     // ------------- jets -------------
550     if(doJets){
551     for(size_t j=0; j< jet_sources.size(); ++j){
552    
553     jets[j].clear();
554    
555     edm::Handle< std::vector<pat::Jet> > jet_handle;
556     iEvent.getByLabel(jet_sources[j], jet_handle);
557     const std::vector<pat::Jet>& pat_jets = *(jet_handle.product());
558    
559     for (unsigned int i = 0; i < pat_jets.size(); ++i) {
560     pat::Jet pat_jet = pat_jets[i];
561     if(pat_jet.pt() < jet_ptmin) continue;
562     if(fabs(pat_jet.eta()) > jet_etamax) continue;
563     // std::cout << "available btag discriminators: " << std::endl;
564     // const std::vector<std::pair<std::string, float> > & dis = pat_jets[i].getPairDiscri();
565     // for(size_t k=0; k<dis.size(); ++k){
566     // std::cout << dis[k].first << std::endl;
567     // }
568    
569     Jet jet;
570 peiffer 1.17 jet.set_charge(pat_jet.charge());
571     jet.set_pt(pat_jet.pt());
572     jet.set_eta(pat_jet.eta());
573     jet.set_phi(pat_jet.phi());
574     jet.set_energy(pat_jet.energy());
575     jet.set_numberOfDaughters (pat_jet.numberOfDaughters());
576 peiffer 1.1 const reco::TrackRefVector& jettracks = pat_jet.associatedTracks();
577 peiffer 1.17 jet.set_nTracks ( jettracks.size());
578     jet.set_jetArea(pat_jet.jetArea());
579     jet.set_pileup(pat_jet.pileup());
580 peiffer 1.1 if(pat_jet.isPFJet()){
581 peiffer 1.17 jet.set_neutralEmEnergyFraction (pat_jet.neutralEmEnergyFraction());
582     jet.set_neutralHadronEnergyFraction (pat_jet.neutralHadronEnergyFraction());
583     jet.set_chargedEmEnergyFraction (pat_jet.chargedEmEnergyFraction());
584     jet.set_chargedHadronEnergyFraction (pat_jet.chargedHadronEnergyFraction());
585     jet.set_muonEnergyFraction (pat_jet.muonEnergyFraction());
586     jet.set_photonEnergyFraction (pat_jet.photonEnergyFraction());
587     jet.set_chargedMultiplicity (pat_jet.chargedMultiplicity());
588     jet.set_neutralMultiplicity (pat_jet.neutralMultiplicity());
589     jet.set_muonMultiplicity (pat_jet.muonMultiplicity());
590     jet.set_electronMultiplicity (pat_jet.electronMultiplicity());
591     jet.set_photonMultiplicity (pat_jet.photonMultiplicity());
592 peiffer 1.1 }
593 peiffer 1.19 if(doJECUncertainty){
594     jecUnc->setJetEta(pat_jet.eta());
595     jecUnc->setJetPt(pat_jet.pt());
596     jet.set_JEC_uncertainty(jecUnc->getUncertainty(true));
597     }
598 peiffer 1.17 jet.set_JEC_factor_raw(pat_jet.jecFactor("Uncorrected"));
599 peiffer 1.19
600 peiffer 1.17 jet.set_btag_simpleSecondaryVertexHighEff(pat_jet.bDiscriminator("simpleSecondaryVertexHighEffBJetTags"));
601     jet.set_btag_simpleSecondaryVertexHighPur(pat_jet.bDiscriminator("simpleSecondaryVertexHighPurBJetTags"));
602     jet.set_btag_combinedSecondaryVertex(pat_jet.bDiscriminator("combinedSecondaryVertexBJetTags"));
603     jet.set_btag_combinedSecondaryVertexMVA(pat_jet.bDiscriminator("combinedSecondaryVertexMVABJetTags"));
604     jet.set_btag_jetBProbability(pat_jet.bDiscriminator("jetBProbabilityBJetTags"));
605     jet.set_btag_jetProbability(pat_jet.bDiscriminator("jetProbabilityBJetTags"));
606 peiffer 1.1
607 peiffer 1.22
608 peiffer 1.12 const reco::GenJet *genj = pat_jet.genJet();
609     if(genj){
610 peiffer 1.17 jet.set_genjet_pt(genj->pt());
611     jet.set_genjet_eta(genj->eta());
612     jet.set_genjet_phi(genj->phi());
613     jet.set_genjet_energy(genj->energy());
614 peiffer 1.15 if(doAllGenParticles){
615     std::vector<const reco::GenParticle * > jetgenps = genj->getGenConstituents();
616     for(unsigned int l = 0; l<jetgenps.size(); ++l){
617     for(unsigned int k=0; k< genps.size(); ++k){
618 peiffer 1.17 if(jetgenps[l]->pt() == genps[k].pt() && jetgenps[l]->pdgId() == genps[k].pdgId()){
619     jet.add_genparticles_index(genps[k].index());
620     break;
621 peiffer 1.15 }
622     }
623     }
624 peiffer 1.17 if(jet.genparticles_indices().size()!= jetgenps.size())
625     std::cout << "WARNING: Found only " << jet.genparticles_indices().size() << " from " << jetgenps.size() << " gen particles of this jet"<<std::endl;
626 peiffer 1.15 }
627 peiffer 1.22
628 peiffer 1.12 }
629 peiffer 1.22
630 peiffer 1.1 jets[j].push_back(jet);
631     }
632     }
633     }
634    
635     // ------------- top jets -------------
636     if(doTopJets){
637     for(size_t j=0; j< topjet_sources.size(); ++j){
638    
639     topjets[j].clear();
640    
641     edm::Handle<pat::JetCollection> pat_topjets;
642     //edm::Handle<std::vector<reco::Jet> > pat_topjets;
643     iEvent.getByLabel(topjet_sources[j], pat_topjets);
644    
645     for (unsigned int i = 0; i < pat_topjets->size(); i++) {
646 peiffer 1.14
647 peiffer 1.1 const pat::Jet pat_topjet = * dynamic_cast<pat::Jet const *>(&pat_topjets->at(i));
648     if(pat_topjet.pt() < topjet_ptmin) continue;
649     if(fabs(pat_topjet.eta()) > topjet_etamax) continue;
650    
651     TopJet topjet;
652 peiffer 1.17 topjet.set_charge(pat_topjet.charge());
653     topjet.set_pt(pat_topjet.pt());
654     topjet.set_eta(pat_topjet.eta());
655     topjet.set_phi(pat_topjet.phi());
656     topjet.set_energy(pat_topjet.energy());
657     topjet.set_numberOfDaughters(pat_topjet.numberOfDaughters());
658 peiffer 1.1 const reco::TrackRefVector& topjettracks = pat_topjet.associatedTracks();
659 peiffer 1.17 topjet.set_nTracks( topjettracks.size());
660     topjet.set_jetArea( pat_topjet.jetArea());
661     topjet.set_pileup( pat_topjet.pileup());
662     // topjet.set_neutralEmEnergyFraction(pat_topjet.neutralEmEnergyFraction());
663     // topjet.set_neutralHadronEnergyFraction(pat_topjet.neutralHadronEnergyFraction());
664     // topjet.set_chargedEmEnergyFraction(pat_topjet.chargedEmEnergyFraction());
665     // topjet.set_chargedHadronEnergyFraction(pat_topjet.chargedHadronEnergyFraction());
666     // topjet.set_muonEnergyFraction(pat_topjet.muonEnergyFraction());
667     // topjet.set_photonEnergyFraction(pat_topjet.photonEnergyFraction());
668     // topjet.set_chargedMultiplicity(pat_topjet.chargedMultiplicity());
669     // topjet.set_neutralMultiplicity(pat_topjet.neutralMultiplicity());
670     // topjet.set_muonMultiplicity(pat_topjet.muonMultiplicity());
671     // topjet.set_electronMultiplicity(pat_topjet.electronMultiplicity());
672     // topjet.set_photonMultiplicity(pat_topjet.photonMultiplicity());
673 peiffer 1.19 if(doJECUncertainty){
674     jecUnc->setJetEta(pat_topjet.eta());
675     jecUnc->setJetPt(pat_topjet.pt());
676     topjet.set_JEC_uncertainty( jecUnc->getUncertainty(true));
677     }
678 peiffer 1.17 topjet.set_JEC_factor_raw( pat_topjet.jecFactor("Uncorrected"));
679 peiffer 1.5
680 peiffer 1.17 topjet.set_btag_simpleSecondaryVertexHighEff(pat_topjet.bDiscriminator("simpleSecondaryVertexHighEffBJetTags"));
681     topjet.set_btag_simpleSecondaryVertexHighPur(pat_topjet.bDiscriminator("simpleSecondaryVertexHighPurBJetTags"));
682     topjet.set_btag_combinedSecondaryVertex(pat_topjet.bDiscriminator("combinedSecondaryVertexBJetTags"));
683     topjet.set_btag_combinedSecondaryVertexMVA(pat_topjet.bDiscriminator("combinedSecondaryVertexMVABJetTags"));
684     topjet.set_btag_jetBProbability(pat_topjet.bDiscriminator("jetBProbabilityBJetTags"));
685     topjet.set_btag_jetProbability(pat_topjet.bDiscriminator("jetProbabilityBJetTags"));
686 peiffer 1.1
687 peiffer 1.19 /*
688 peiffer 1.12 const reco::GenJet *genj = pat_topjet.genJet();
689     if(genj){
690 peiffer 1.17 topjet.set_genjet_pt ( genj->pt());
691     topjet.set_genjet_eta ( genj->eta());
692     topjet.set_genjet_phi ( genj->phi());
693     topjet.set_genjet_energy ( genj->energy());
694 peiffer 1.15 if(doAllGenParticles){
695     std::vector<const reco::GenParticle * > jetgenps = genj->getGenConstituents();
696     for(unsigned int l = 0; l<jetgenps.size(); ++l){
697     for(unsigned int k=0; k< genps.size(); ++k){
698 peiffer 1.17 if(jetgenps[l]->pt() == genps[k].pt() && jetgenps[l]->pdgId() == genps[k].pdgId()){
699     topjet.add_genparticles_index(genps[k].index());
700     break;
701 peiffer 1.15 }
702     }
703     }
704 peiffer 1.17 if(topjet.genparticles_indices().size()!= jetgenps.size())
705     std::cout << "WARNING: Found only " << topjet.genparticles_indices().size() << " from " << jetgenps.size() << " gen particles of this topjet"<<std::endl;
706 peiffer 1.15 }
707 peiffer 1.12 }
708 peiffer 1.19 */
709 peiffer 1.12
710 peiffer 1.1 for (unsigned int k = 0; k < pat_topjet.numberOfDaughters(); k++) {
711     Particle subjet_v4;
712 eusai 1.23
713     reco::Candidate const * subjetd = pat_topjet.daughter(k);
714     pat::Jet const * patsubjetd = dynamic_cast<pat::Jet const *>(subjetd);
715     if(patsubjetd)
716     {
717     subjet_v4.set_pt(patsubjetd->correctedP4(0).pt());
718     subjet_v4.set_eta(patsubjetd->correctedP4(0).eta());
719     subjet_v4.set_phi(patsubjetd->correctedP4(0).phi());
720     subjet_v4.set_energy(patsubjetd->correctedP4(0).E());
721     topjet.add_subjet(subjet_v4);
722     //btag info
723     topjet.add_subFlavour(patsubjetd->partonFlavour());
724     topjet.add_subCSV(patsubjetd->bDiscriminator("combinedSecondaryVertexBJetTags"));
725     if (doTagInfos)
726     {
727     //ip tag info
728     reco::TaggingVariableList tvlIP=patsubjetd->tagInfoTrackIP("impactParameter")->taggingVariables();
729     topjet.add_subTrackMomentum(tvlIP.getList(reco::btau::trackMomentum,false));
730     topjet.add_subTrackEta(tvlIP.getList(reco::btau::trackEta,false));
731     topjet.add_subTrackEtaRel(tvlIP.getList(reco::btau::trackEtaRel,false));
732     topjet.add_subTrackDeltaR(tvlIP.getList(reco::btau::trackDeltaR,false));
733     topjet.add_subTrackSip3dVal(tvlIP.getList(reco::btau::trackSip3dVal,false));
734     topjet.add_subTrackSip3dSig(tvlIP.getList(reco::btau::trackSip3dSig,false));
735     topjet.add_subTrackSip2dVal(tvlIP.getList(reco::btau::trackSip2dVal,false));
736     topjet.add_subTrackSip2dSig(tvlIP.getList(reco::btau::trackSip2dSig,false));
737     topjet.add_subTrackDecayLenVal(tvlIP.getList(reco::btau::trackDecayLenVal,false));
738     topjet.add_subTrackChi2(tvlIP.getList(reco::btau::trackChi2,false));
739     topjet.add_subTrackNTotalHits(tvlIP.getList(reco::btau::trackNTotalHits,false));
740     topjet.add_subTrackNPixelHits(tvlIP.getList(reco::btau::trackNPixelHits,false));
741     topjet.add_subTrackPtRel(tvlIP.getList(reco::btau::trackPtRel,false));
742     topjet.add_subTrackPPar(tvlIP.getList(reco::btau::trackPPar,false));
743     topjet.add_subTrackPtRatio(tvlIP.getList(reco::btau::trackPtRatio,false));
744     topjet.add_subTrackPParRatio(tvlIP.getList(reco::btau::trackPParRatio,false));
745     topjet.add_subTrackJetDistVal(tvlIP.getList(reco::btau::trackJetDistVal,false));
746     topjet.add_subTrackJetDistSig(tvlIP.getList(reco::btau::trackJetDistSig,false));
747     topjet.add_subTrackGhostTrackDistVal(tvlIP.getList(reco::btau::trackGhostTrackDistVal,false));
748     topjet.add_subTrackGhostTrackDistSig(tvlIP.getList(reco::btau::trackGhostTrackDistSig,false));
749     topjet.add_subTrackGhostTrackWeight(tvlIP.getList(reco::btau::trackGhostTrackWeight,false));
750     //sv tag info
751     reco::TaggingVariableList tvlSV=patsubjetd->tagInfoSecondaryVertex("secondaryVertex")->taggingVariables();
752     topjet.add_subFlightDistance2dVal(tvlSV.getList(reco::btau::flightDistance2dVal,false));
753     topjet.add_subFlightDistance2dSig(tvlSV.getList(reco::btau::flightDistance2dSig,false));
754     topjet.add_subFlightDistance3dVal(tvlSV.getList(reco::btau::flightDistance3dVal,false));
755     topjet.add_subFlightDistance3dSig(tvlSV.getList(reco::btau::flightDistance3dSig,false));
756     topjet.add_subVertexJetDeltaR(tvlSV.getList(reco::btau::vertexJetDeltaR,false));
757     topjet.add_subJetNSecondaryVertices(tvlSV.get(reco::btau::jetNSecondaryVertices,-9999));
758     topjet.add_subVertexNTracks(tvlSV.get(reco::btau::vertexNTracks,-9999));
759     std::vector<TLorentzVector> vp4; vp4.clear();
760     std::vector<float> vchi2; vchi2.clear();
761     std::vector<float> vndof; vndof.clear();
762     std::vector<float> vchi2ndof; vchi2ndof.clear();
763     std::vector<float> vtrsize; vtrsize.clear();
764     for(unsigned int i=0; i<patsubjetd->tagInfoSecondaryVertex("secondaryVertex")->nVertices(); i++)
765     {
766     ROOT::Math::LorentzVector<ROOT::Math::PxPyPzE4D<double> > p4 = patsubjetd->tagInfoSecondaryVertex("secondaryVertex")->secondaryVertex(i).p4();
767     vp4.push_back(TLorentzVector(p4.px(),p4.py(),p4.pz(),p4.e()));
768     vchi2.push_back(patsubjetd->tagInfoSecondaryVertex("secondaryVertex")->secondaryVertex(i).chi2());
769     vndof.push_back(patsubjetd->tagInfoSecondaryVertex("secondaryVertex")->secondaryVertex(i).ndof());
770     vchi2ndof.push_back(patsubjetd->tagInfoSecondaryVertex("secondaryVertex")->secondaryVertex(i).normalizedChi2());
771     vtrsize.push_back(patsubjetd->tagInfoSecondaryVertex("secondaryVertex")->secondaryVertex(i).tracksSize());
772     }
773     topjet.add_subSecondaryVertex(vp4);
774     topjet.add_subVertexChi2(vchi2);
775     topjet.add_subVertexNdof(vndof);
776     topjet.add_subVertexNormalizedChi2(vchi2ndof);
777     topjet.add_subVertexTracksSize(vtrsize);
778     //try computer
779     edm::ESHandle<JetTagComputer> computerHandle;
780     iSetup.get<JetTagComputerRecord>().get( SVComputer_.label(), computerHandle );
781     const GenericMVAJetTagComputer *computer = dynamic_cast<const GenericMVAJetTagComputer*>( computerHandle.product() );
782     if(computer)
783     {
784     computer->passEventSetup(iSetup);
785     std::vector<const reco::BaseTagInfo*> baseTagInfos;
786     baseTagInfos.push_back(patsubjetd->tagInfoTrackIP("impactParameter") );
787     baseTagInfos.push_back(patsubjetd->tagInfoSecondaryVertex("secondaryVertex") );
788     JetTagComputer::TagInfoHelper helper(baseTagInfos);
789     reco::TaggingVariableList vars = computer->taggingVariables(helper);
790     topjet.add_subVertexMassJTC(vars.get(reco::btau::vertexMass,-9999));
791     topjet.add_subVertexCategoryJTC(vars.get(reco::btau::vertexCategory,-9999));
792     topjet.add_subVertexEnergyRatioJTC(vars.get(reco::btau::vertexEnergyRatio,-9999));
793     topjet.add_subTrackSip3dSigAboveCharmJTC(vars.get(reco::btau::trackSip3dSigAboveCharm,-9999));
794     }
795     }
796     }
797     else
798     {
799     //filling only standard information in case the subjet has not been pat-tified during the pattuples production
800     subjet_v4.set_pt(pat_topjet.daughter(k)->p4().pt());
801     subjet_v4.set_eta(pat_topjet.daughter(k)->p4().eta());
802     subjet_v4.set_phi(pat_topjet.daughter(k)->p4().phi());
803     subjet_v4.set_energy(pat_topjet.daughter(k)->p4().E());
804     topjet.add_subjet(subjet_v4);
805     }
806    
807    
808 peiffer 1.1 }
809     topjets[j].push_back(topjet);
810     }
811     }
812     }
813 eusai 1.23
814    
815 peiffer 1.14 // ------------- generator top jets -------------
816     if(doGenTopJets){
817     for(size_t j=0; j< gentopjet_sources.size(); ++j){
818    
819     gentopjets[j].clear();
820 eusai 1.23
821 peiffer 1.14 edm::Handle<reco::BasicJetCollection> reco_gentopjets;
822     //edm::Handle<std::vector<reco::Jet> > reco_gentopjets;
823     iEvent.getByLabel(gentopjet_sources[j], reco_gentopjets);
824    
825     for (unsigned int i = 0; i < reco_gentopjets->size(); i++) {
826    
827     const reco::BasicJet reco_gentopjet = reco_gentopjets->at(i);
828     if(reco_gentopjet.pt() < gentopjet_ptmin) continue;
829     if(fabs(reco_gentopjet.eta()) > gentopjet_etamax) continue;
830    
831     TopJet gentopjet;
832 peiffer 1.17 gentopjet.set_charge(reco_gentopjet.charge());
833     gentopjet.set_pt(reco_gentopjet.pt());
834     gentopjet.set_eta(reco_gentopjet.eta());
835     gentopjet.set_phi(reco_gentopjet.phi());
836     gentopjet.set_energy(reco_gentopjet.energy());
837     gentopjet.set_numberOfDaughters(reco_gentopjet.numberOfDaughters());
838 peiffer 1.14
839     for (unsigned int k = 0; k < reco_gentopjet.numberOfDaughters(); k++) {
840     Particle subjet_v4;
841 peiffer 1.17 subjet_v4.set_pt(reco_gentopjet.daughter(k)->p4().pt());
842     subjet_v4.set_eta(reco_gentopjet.daughter(k)->p4().eta());
843     subjet_v4.set_phi(reco_gentopjet.daughter(k)->p4().phi());
844     subjet_v4.set_energy(reco_gentopjet.daughter(k)->p4().E());
845     gentopjet.add_subjet(subjet_v4);
846 peiffer 1.14 }
847     gentopjets[j].push_back(gentopjet);
848     }
849     }
850     }
851    
852 peiffer 1.1 // ------------- photons -------------
853     if(doPhotons){
854     for(size_t j=0; j< photon_sources.size(); ++j){
855     phs[j].clear();
856    
857     edm::Handle< std::vector<pat::Photon> > photon_handle;
858     iEvent.getByLabel(photon_sources[j], photon_handle);
859     const std::vector<pat::Photon>& pat_photons = *(photon_handle.product());
860    
861     for (unsigned int i = 0; i < pat_photons.size(); ++i) {
862     pat::Photon pat_photon = pat_photons[i];
863     Photon ph;
864 peiffer 1.17 ph.set_charge(0);
865     ph.set_pt( pat_photon.pt());
866     ph.set_eta( pat_photon.eta());
867     ph.set_phi( pat_photon.phi());
868     ph.set_energy( pat_photon.energy());
869     ph.set_vertex_x(pat_photon.vertex().x());
870     ph.set_vertex_y(pat_photon.vertex().y());
871     ph.set_vertex_z(pat_photon.vertex().z());
872     ph.set_supercluster_eta(pat_photon.superCluster()->eta());
873     ph.set_supercluster_phi(pat_photon.superCluster()->phi());
874     // ph.set_neutralHadronIso(pat_photon.neutralHadronIso());
875     // ph.set_chargedHadronIso(pat_photon.chargedHadronIso());
876     ph.set_trackIso(pat_photon.trackIso());
877 peiffer 1.1 phs[j].push_back(ph);
878     }
879     }
880     }
881    
882     // ------------- MET -------------
883     if(doMET){
884     for(size_t j=0; j< met_sources.size(); ++j){
885    
886     edm::Handle< std::vector<pat::MET> > met_handle;
887     iEvent.getByLabel(met_sources[j], met_handle);
888     const std::vector<pat::MET>& pat_mets = *(met_handle.product());
889    
890     if(pat_mets.size()!=1){
891     std::cout<< "WARNING: number of METs = " << pat_mets.size() <<", should be 1" << std::endl;
892     }
893     else{
894     pat::MET pat_met = pat_mets[0];
895    
896 peiffer 1.17 met[j].set_pt(pat_met.pt());
897     met[j].set_phi(pat_met.phi());
898     met[j].set_mEtSig(pat_met.mEtSig());
899 peiffer 1.1 }
900    
901     }
902     }
903    
904     // ------------- trigger -------------
905 peiffer 1.6 if(doTrigger){
906     edm::InputTag triggerEvent = edm::InputTag("hltTriggerSummaryAOD");
907     edm::Handle< trigger::TriggerEvent > dummy_TriggerEvent;
908     iEvent.getByLabel( edm::InputTag(triggerEvent.label(), triggerEvent.instance()), dummy_TriggerEvent );
909    
910     const edm::Provenance *meta = dummy_TriggerEvent.provenance();
911     std::string nameProcess = meta->processName();
912     edm::InputTag triggerResultTag = edm::InputTag("TriggerResults");
913     triggerResultTag = edm::InputTag( triggerResultTag.label(), triggerResultTag.instance(), nameProcess );
914    
915     edm::Handle<edm::TriggerResults> trigger;
916     iEvent.getByLabel(triggerResultTag, trigger);
917     const edm::TriggerResults& trig = *(trigger.product());
918    
919     triggerResults.clear();
920     triggerNames.clear();
921 peiffer 1.16 // L1_prescale.clear();
922     // HLT_prescale.clear();
923 peiffer 1.6
924     edm::Service<edm::service::TriggerNamesService> tns;
925     std::vector<std::string> triggerNames_all;
926     tns->getTrigPaths(trig,triggerNames_all);
927    
928     if (trig.size()!=triggerNames_all.size()) std::cout <<"ERROR: length of names and paths not the same: "<<triggerNames_all.size()<<","<<trig.size()<< std::endl;
929     for(unsigned int i=0; i<trig.size(); ++i){
930     std::vector<std::string>::const_iterator it = trigger_prefixes.begin();
931     for(; it!=trigger_prefixes.end(); ++it){
932     if(triggerNames_all[i].substr(0, it->size()) == *it)break;
933     }
934     if(it==trigger_prefixes.end()) continue;
935    
936     //triggerResults.insert(std::pair<std::string, bool>(triggerNames[i],trig.accept(i)));
937     triggerResults.push_back(trig.accept(i));
938     if(newrun) triggerNames.push_back(triggerNames_all[i]);
939 peiffer 1.16 // if(isRealData){
940     // std::pair<int, int> pre=hlt_cfg.prescaleValues(iEvent, iSetup, triggerNames_all[i]);
941     // L1_prescale.push_back(pre.first);
942     // HLT_prescale.push_back(pre.second);
943     // //std::cout << triggerNames_all[i] << " " << pre.first << " " <<pre.second << " " << hlt_cfg.prescaleValue(iEvent, iSetup, triggerNames_all[i]) << std::endl;
944     // }
945 peiffer 1.6 }
946     // for(std::map<std::string, bool>::const_iterator iter = triggerResults.begin(); iter!=triggerResults.end(); iter++){
947     // std::cout << (*iter).first << " " << (*iter).second << std::endl;
948     // }
949     newrun=false;
950     }
951 peiffer 1.1
952    
953     tr->Fill();
954 peiffer 1.10 if(doLumiInfo)
955     previouslumiblockwasfilled=true;
956 peiffer 1.1 }
957    
958    
959     // ------------ method called once each job just before starting event loop ------------
960     void
961     NtupleWriter::beginJob()
962     {
963 peiffer 1.10 if(doLumiInfo){
964     totalRecLumi=0;
965     totalDelLumi=0;
966     previouslumiblockwasfilled=false;
967     }
968 peiffer 1.1 }
969    
970     // ------------ method called once each job just after ending the event loop ------------
971     void
972     NtupleWriter::endJob()
973     {
974     outfile->cd();
975     tr->Write();
976     outfile->Close();
977     }
978    
979     // ------------ method called when starting to processes a run ------------
980     void
981     NtupleWriter::beginRun(edm::Run const& iRun, edm::EventSetup const& iSetup)
982     {
983 peiffer 1.7 if(doTrigger){
984 peiffer 1.19 //bool setup_changed = false;
985     //hlt_cfg.init(iRun, iSetup, "HLT", setup_changed);
986 peiffer 1.7 newrun=true;
987     }
988 peiffer 1.5
989 peiffer 1.7 if(doJets || doTopJets){
990 peiffer 1.19 if(doJECUncertainty){
991     edm::ESHandle<JetCorrectorParametersCollection> JetCorParColl;
992     iSetup.get<JetCorrectionsRecord>().get("AK5PF",JetCorParColl);
993     JetCorrectorParameters const & JetCorPar = (*JetCorParColl)["Uncertainty"];
994     jecUnc = new JetCorrectionUncertainty(JetCorPar);
995     }
996 peiffer 1.7 }
997 peiffer 1.1 }
998    
999     // ------------ method called when ending the processing of a run ------------
1000     void
1001     NtupleWriter::endRun(edm::Run const&, edm::EventSetup const&)
1002     {
1003 peiffer 1.10 if(doLumiInfo)
1004     std::cout << "total integ. luminosity: " << totalDelLumi <<"(del) " << totalRecLumi << "(rec)" << std::endl;
1005 peiffer 1.1 }
1006    
1007     // ------------ method called when starting to processes a luminosity block ------------
1008     void
1009 peiffer 1.10 NtupleWriter::beginLuminosityBlock(edm::LuminosityBlock const& lumi, edm::EventSetup const&)
1010 peiffer 1.1 {
1011 peiffer 1.10 if(doLumiInfo){
1012     edm::Handle<LumiSummary> l;
1013     lumi.getByLabel("lumiProducer", l);
1014    
1015     //add lumi of lumi blocks without any event to next lumiblock
1016     if(previouslumiblockwasfilled){
1017     intgRecLumi=0;
1018     intgDelLumi=0;
1019     }
1020     previouslumiblockwasfilled=false;
1021    
1022     if (l.isValid()){;
1023     intgRecLumi+=l->intgRecLumi()*6.37;
1024     intgDelLumi+=l->intgDelLumi()*6.37;
1025     totalRecLumi+=l->intgRecLumi()*6.37;
1026     totalDelLumi+=l->intgDelLumi()*6.37;
1027     }
1028     //std::cout << "this lb: " <<l->intgRecLumi()*6.37 <<" " << l->intgDelLumi()*6.37<<std::endl;
1029     //std::cout << "summed: "<< intgRecLumi << " " << intgDelLumi << std::endl;
1030     }
1031 peiffer 1.1 }
1032    
1033     // ------------ method called when ending the processing of a luminosity block ------------
1034     void
1035     NtupleWriter::endLuminosityBlock(edm::LuminosityBlock const&, edm::EventSetup const&)
1036     {
1037     }
1038    
1039     // ------------ method fills 'descriptions' with the allowed parameters for the module ------------
1040     void
1041     NtupleWriter::fillDescriptions(edm::ConfigurationDescriptions& descriptions) {
1042     //The following says we do not know what parameters are allowed so do no validation
1043     // Please change this to state exactly what you do use, even if it is no parameters
1044     edm::ParameterSetDescription desc;
1045     desc.setUnknown();
1046     descriptions.addDefault(desc);
1047     }
1048    
1049     //define this as a plug-in
1050     DEFINE_FWK_MODULE(NtupleWriter);