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root/cvsroot/UserCode/VHbbAnalysis/VHbbDataFormats/bin/Ntupler.cc
Revision: 1.33
Committed: Wed Sep 28 12:49:56 2011 UTC (13 years, 7 months ago) by arizzi
Content type: text/plain
Branch: MAIN
Changes since 1.32: +36 -35 lines
Log Message:
renaming and restructuring of Higgs candidates

File Contents

# User Rev Content
1 arizzi 1.1 #include <TH1F.h>
2     #include "PhysicsTools/Utilities/interface/LumiReWeighting.h"
3     #include <TH2F.h>
4     #include <TROOT.h>
5     #include <TFile.h>
6     #include <TTree.h>
7     #include <TSystem.h>
8     #include "DataFormats/FWLite/interface/Event.h"
9     #include "DataFormats/FWLite/interface/Handle.h"
10     #include "FWCore/FWLite/interface/AutoLibraryLoader.h"
11     #include "DataFormats/MuonReco/interface/Muon.h"
12     #include "DataFormats/PatCandidates/interface/Muon.h"
13     #include "PhysicsTools/FWLite/interface/TFileService.h"
14     #include "FWCore/ParameterSet/interface/ProcessDesc.h"
15     #include "FWCore/PythonParameterSet/interface/PythonProcessDesc.h"
16     #include "DataFormats/Math/interface/deltaR.h"
17     #include "DataFormats/Math/interface/deltaPhi.h"
18    
19     #include "DataFormats/FWLite/interface/LuminosityBlock.h"
20     #include "DataFormats/FWLite/interface/Run.h"
21     #include "DataFormats/Luminosity/interface/LumiSummary.h"
22    
23 arizzi 1.4 #include "VHbbAnalysis/VHbbDataFormats/interface/HbbCandidateFinderAlgo.h"
24     #include "VHbbAnalysis/VHbbDataFormats/src/HbbCandidateFinderAlgo.cc"
25 arizzi 1.1
26     #include "VHbbAnalysis/VHbbDataFormats/interface/VHbbEvent.h"
27     #include "VHbbAnalysis/VHbbDataFormats/interface/VHbbEventAuxInfo.h"
28     #include "VHbbAnalysis/VHbbDataFormats/interface/VHbbCandidate.h"
29     #include "VHbbAnalysis/VHbbDataFormats/interface/TriggerReader.h"
30 nmohr 1.5 #include "VHbbAnalysis/VHbbDataFormats/interface/TopMassReco.h"
31 arizzi 1.1
32 bortigno 1.30 //for IVF
33     #include "RecoBTag/SecondaryVertex/interface/SecondaryVertex.h"
34     #include "DataFormats/GeometryCommonDetAlgo/interface/Measurement1D.h"
35     #include "DataFormats/GeometryVector/interface/GlobalVector.h"
36     #include "DataFormats/GeometryVector/interface/VectorUtil.h"
37     #include <DataFormats/GeometrySurface/interface/Surface.h>
38     #include "Math/SMatrix.h"
39 arizzi 1.16
40     //Move class definition to Ntupler.h ?
41     //#include "VHbbAnalysis/VHbbDataFormats/interface/Ntupler.h"
42    
43 bortigno 1.30 //for SimBhad: FIXME
44     //#include "VHbbAnalysis/BAnalysis/interface/SimBHadron.h"
45     //btagging
46 arizzi 1.16 #include "VHbbAnalysis/VHbbDataFormats/interface/BTagWeight.h"
47 bortigno 1.30 //trigger
48 arizzi 1.16 #include "VHbbAnalysis/VHbbDataFormats/interface/TriggerWeight.h"
49    
50 arizzi 1.1 #include <sstream>
51     #include <string>
52    
53     #define MAXJ 30
54     #define MAXL 10
55 bortigno 1.30 #define MAXB 10
56 arizzi 1.1
57 arizzi 1.24 struct CompareDeltaR {
58 bortigno 1.30 CompareDeltaR(TLorentzVector p4dir_): p4dir(p4dir_) {}
59     bool operator()( const VHbbEvent::SimpleJet& j1, const VHbbEvent::SimpleJet& j2 ) const {
60     return j1.p4.DeltaR(p4dir) > j2.p4.DeltaR(p4dir);
61     }
62     TLorentzVector p4dir;
63 arizzi 1.24 };
64 arizzi 1.4
65 bortigno 1.30 const GlobalVector flightDirection(const TVector3 pv, const reco::Vertex &sv){
66     GlobalVector fdir(sv.position().X() - pv.X(),
67     sv.position().Y() - pv.Y(),
68     sv.position().Z() - pv.Z());
69     return fdir;
70     }
71    
72 nmohr 1.7 bool jsonContainsEvent (const std::vector< edm::LuminosityBlockRange > &jsonVec,
73     const edm::EventBase &event)
74     {
75 bortigno 1.30 // if the jsonVec is empty, then no JSON file was provided so all
76     // events should pass
77     if (jsonVec.empty())
78     {
79 nmohr 1.7 return true;
80 bortigno 1.30 }
81     bool (* funcPtr) (edm::LuminosityBlockRange const &,
82     edm::LuminosityBlockID const &) = &edm::contains;
83     edm::LuminosityBlockID lumiID (event.id().run(),
84     event.id().luminosityBlock());
85     std::vector< edm::LuminosityBlockRange >::const_iterator iter =
86     std::find_if (jsonVec.begin(), jsonVec.end(),
87     boost::bind(funcPtr, _1, lumiID) );
88     return jsonVec.end() != iter;
89 nmohr 1.7
90     }
91    
92 arizzi 1.1
93 bortigno 1.30 //FIXME : need to update EDM ntuple with SimBhadron infos
94     // typedef struct
95     // {
96     // void set(const SimBHadron & sbhc, int i){
97     // mass[i] = sbhc.mass();
98     // pt[i] = sbhc.pt();
99     // eta[i] = sbhc.eta();
100     // phi[i] = sbhc.phi();
101     // vtx_x[i] = sbhc.decPosition.x();
102     // vtx_y[i] = sbhc.decPosition.y();
103     // vtx_z[i] = sbhc.decPosition.z();
104     // pdgId[i] = sbhc.pdgId();
105     // status[i] = sbhc.status();
106     // };
107     // void reset(){
108     // for(int i=0; i < MAXB; ++i){
109     // mass[i] = -99; pt[i] = -99; eta[i] = -99; phi[i] = -99; vtx_x[i] = -99; vtx_y[i] = -99; vtx_z[i] = -99; pdgId[i] = -99; status[i] = -99;
110     // }
111     // };
112     // float mass[MAXB];
113     // float pt[MAXB];
114     // float eta[MAXB];
115     // float phi[MAXB];
116     // float vtx_x[MAXB];
117     // float vtx_y[MAXB];
118     // float vtx_z[MAXB];
119     // int pdgId[MAXB];
120     // int status[MAXB];
121     // // int quarkStatus[MAXB];
122     // // int brotherStatus[MAXB];
123     // // int otherId[MAXB];
124     // // bool etaOk[MAXB];
125     // // bool simOk[MAXB];
126     // // bool trackOk[MAXB];
127     // // bool cutOk[MAXB];
128     // // bool cutNewOk[MAXB];
129     // // bool mcMatchOk[MAXB];
130     // // bool matchOk[MAXB];
131     // } SimBHadronInfo;
132    
133    
134     typedef struct
135     {
136     void set( const reco::SecondaryVertex & recoSv, const TVector3 recoPv, int isv){
137     pt[isv] = recoSv.p4().Pt();
138     eta[isv] = flightDirection(recoPv,recoSv).eta();
139     phi[isv] = flightDirection(recoPv,recoSv).phi();
140     massBcand[isv] = recoSv.p4().M();
141     massSv[isv] = recoSv.p4().M();
142     dist3D[isv] = recoSv.dist3d().value();
143     distSig3D[isv] = recoSv.dist3d().significance();
144     dist2D[isv] = recoSv.dist2d().value();
145     distSig2D[isv] = recoSv.dist2d().significance();
146     dist3D_norm[isv] = recoSv.dist3d().value()/recoSv.p4().Gamma();
147     };
148     void reset(){
149     for(int i = 0; i < MAXB; ++i){
150     massBcand[i] = -99; massSv[i]= -99; pt[i] = -99; eta[i] = -99; phi[i] = -99; dist3D[i] = -99; distSig3D[i] = -99; dist2D[i] = -99; distSig2D[i] = -99; dist3D_norm[i] = -99;
151     }
152     };
153     float massBcand[MAXB];
154     float massSv[MAXB];
155     float pt[MAXB];
156     float eta[MAXB];
157     float phi[MAXB];
158     float dist3D[MAXB];
159     float distSig3D[MAXB];
160     float dist2D[MAXB];
161     float distSig2D[MAXB];
162     float dist3D_norm[MAXB];
163     } IVFInfo;
164 arizzi 1.1
165 bortigno 1.30
166     typedef struct
167     {
168 arizzi 1.33 float mass;
169     float pt;
170     float eta;
171     float phi;
172     float dR;
173     float dPhi;
174     float dEta;
175     } HiggsInfo;
176    
177     typedef struct
178     {
179 bortigno 1.30 float mass; //MT in case of W
180     float pt;
181     float eta;
182     float phi;
183     } TrackInfo;
184 arizzi 1.1
185    
186 arizzi 1.9 struct LeptonInfo
187 bortigno 1.30 {
188     void reset()
189 arizzi 1.1 {
190     for(int i =0; i < MAXL;i++){ mass[i]=-99; pt[i]=-99; eta[i]=-99; phi[i]=-99; aodCombRelIso[i]=-99; pfCombRelIso[i]=-99; photonIso[i]=-99; neutralHadIso[i]=-99; chargedHadIso[i]=-99; particleIso[i]=-99; dxy[i]=-99; dz[i]=-99; type[i]=-99; }
191 bortigno 1.30 }
192 arizzi 1.1
193 bortigno 1.30 template <class Input> void set(const Input & i, int j,int t)
194     {
195     type[j]=t;
196     pt[j]=i.p4.Pt();
197     mass[j]=i.p4.M();
198     eta[j]=i.p4.Eta();
199     phi[j]=i.p4.Phi();
200     aodCombRelIso[j]=(i.hIso+i.eIso+i.tIso)/i.p4.Pt();
201     pfCombRelIso[j]=(i.pfChaIso+i.pfPhoIso+i.pfNeuIso)/i.p4.Pt();
202     photonIso[j]=i.pfPhoIso;
203     neutralHadIso[j]=i.pfNeuIso;
204     chargedHadIso[j]=i.pfChaIso;
205     setSpecific(i,j);
206     }
207     template <class Input> void setSpecific(const Input & i, int j)
208     {
209     }
210 arizzi 1.4
211    
212    
213 arizzi 1.1
214 bortigno 1.30 float mass[MAXL]; //MT in case of W
215     float pt[MAXL];
216     float eta[MAXL];
217     float phi[MAXL];
218     float aodCombRelIso[MAXL];
219     float pfCombRelIso[MAXL];
220     float photonIso[MAXL];
221     float neutralHadIso[MAXL];
222     float chargedHadIso[MAXL];
223     float particleIso[MAXL];
224     float dxy[MAXL];
225     float dz[MAXL];
226     int type[MAXL];
227     float id80[MAXL];
228     float id95[MAXL];
229     };
230 arizzi 1.1
231 bortigno 1.30 template <> void LeptonInfo::setSpecific<VHbbEvent::ElectronInfo>(const VHbbEvent::ElectronInfo & i, int j){
232     id80[j]=i.id80r;
233     id95[j]=i.id95r;
234     }
235     template <> void LeptonInfo::setSpecific<VHbbEvent::MuonInfo>(const VHbbEvent::MuonInfo & i, int j){
236     dxy[j]=i.ipDb;
237     dz[j]=i.zPVPt;
238     }
239    
240 arizzi 1.4
241 bortigno 1.30 typedef struct
242     {
243     float et;
244     float sumet;
245     float sig;
246     float phi;
247     } METInfo;
248 arizzi 1.1
249 bortigno 1.30 typedef struct
250     {
251     float mht;
252     float ht;
253     float sig;
254     float phi;
255     } MHTInfo;
256 nmohr 1.5
257 bortigno 1.30 typedef struct
258     {
259     float mass;
260     float pt;
261     float wMass;
262     } TopInfo;
263 arizzi 1.1
264 bortigno 1.30 typedef struct
265     {
266     int run;
267     int lumi;
268     int event;
269     int json;
270     } EventInfo;
271 arizzi 1.1
272 bortigno 1.30 typedef struct
273     {
274     void set(const VHbbEvent::SimpleJet & j, int i)
275 arizzi 1.1 {
276 bortigno 1.30 pt[i]=j.p4.Pt();
277     eta[i]=j.p4.Eta();
278     phi[i]=j.p4.Phi();
279     csv[i]=j.csv;
280     numTracksSV[i] = j.vtxMass;
281     vtxMass[i]= j.vtxMass;
282     vtx3dL[i] = j.vtx3dL;
283     vtx3deL[i] = j.vtx3deL;
284     chf[i]=j.chargedHadronEFraction;
285     nhf[i] =j.neutralHadronEFraction;
286     cef[i] =j.chargedEmEFraction;
287     nef[i] =j.neutralEmEFraction;
288     nconstituents[i] =j.nConstituents;
289     nch[i]=j.ntracks;
290    
291     flavour[i]=j.flavour;
292     if(j.bestMCp4.Pt() > 0)
293     {
294     genPt[i]=j.bestMCp4.Pt();
295     genEta[i]=j.bestMCp4.Eta();
296     genPhi[i]=j.bestMCp4.Phi();
297     }
298     JECUnc[i]=j.jecunc;
299 arizzi 1.3
300 bortigno 1.30 }
301     void reset()
302     {
303     for(int i=0;i<MAXJ;i++) {
304     pt[i]=-99; eta[i]=-99; phi[i]=-99; csv[i]=-99; cosTheta[i]=-99; numTracksSV[i]=-99; chf[i]=-99; nhf[i]=-99; cef[i]=-99; nef[i]=-99; nch[i]=-99; nconstituents[i]=-99; flavour[i]=-99; genPt[i]=-99; genEta[i]=-99; genPhi[i]=-99; JECUnc[i]=-99;
305 arizzi 1.1 }
306 bortigno 1.30 }
307     float pt[MAXJ];
308     float eta[MAXJ];
309     float phi[MAXJ];
310     float csv[MAXJ];
311     float cosTheta[MAXJ];
312     int numTracksSV[MAXJ];
313     float chf[MAXJ];
314     float nhf[MAXJ];
315     float cef[MAXJ];
316     float nef[MAXJ];
317     float nch[MAXJ];
318     float nconstituents[MAXJ];
319     float flavour[MAXJ];
320     float genPt[MAXJ];
321     float genEta[MAXJ];
322     float genPhi[MAXJ];
323     float JECUnc[MAXJ];
324     float vtxMass[MAXJ];
325     float vtx3dL [MAXJ];
326     float vtx3deL[MAXJ];
327     } JetInfo;
328 arizzi 1.1
329     int main(int argc, char* argv[])
330     {
331     gROOT->Reset();
332    
333     TTree *_outTree;
334 bortigno 1.30 IVFInfo IVF;
335     //FIXME
336     // SimBHadronInfo SimBs;
337 arizzi 1.9 METInfo MET;
338     MHTInfo MHT;
339     TopInfo top;
340     EventInfo EVENT;
341 bortigno 1.30 // JetInfo jet1,jet2, addJet1, addJet2;
342 arizzi 1.9 // lepton1,lepton2;
343     JetInfo hJets, aJets;
344     LeptonInfo vLeptons, aLeptons;
345 arizzi 1.1 int naJets=0, nhJets=0;
346 arizzi 1.33 HiggsInfo H,SVH; //add here the fatjet higgs
347 arizzi 1.9 TrackInfo V;
348     int nvlep=0,nalep=0;
349 arizzi 1.1
350 arizzi 1.33 float HVdPhi,HMETdPhi,VMt,deltaPullAngle,deltaPullAngleAK7,gendrcc,gendrbb, genZpt, genWpt, weightTrig, weightTrigMET, minDeltaPhijetMET, jetPt_minDeltaPhijetMET , PUweight;
351 bortigno 1.30 float weightEleRecoAndId,weightEleTrigJetMETPart, weightEleTrigElePart;
352 arizzi 1.24
353 bortigno 1.30 //FIXME
354     // float SimBs_dr = -99, SimBs_dEta= -99, SimBs_dPhi = -99, SimBs_Hmass = -99, SimBs_Hpt = -99, SimBs_Heta = -99, SimBs_Hphi = -99;
355    
356     int Vtype,nSvs,nSimBs,numJets,numBJets,eventFlav;
357     // bool isMET80_CJ80, ispfMHT150, isMET80_2CJ20,isMET65_2CJ20, isJETID,isIsoMu17;
358     bool triggerFlags[500],hbhe;
359 arizzi 1.17 float btag1T2CSF=1.,btag2TSF=1.,btag1TSF=1.;
360 arizzi 1.1 // ----------------------------------------------------------------------
361     // First Part:
362     //
363     // * enable the AutoLibraryLoader
364     // * book the histograms of interest
365     // * open the input file
366     // ----------------------------------------------------------------------
367    
368     // load framework libraries
369 bortigno 1.30 gSystem->Load("libFWCoreFWLite");
370 arizzi 1.1 gSystem->Load("libDataFormatsFWLite");
371     AutoLibraryLoader::enable();
372    
373     // parse arguments
374     if ( argc < 2 ) {
375     return 0;
376     }
377    
378 arizzi 1.4 std::vector<VHbbCandidate> * candZlocal = new std::vector<VHbbCandidate>;
379     std::vector<VHbbCandidate> * candWlocal = new std::vector<VHbbCandidate>;
380    
381 arizzi 1.1 // get the python configuration
382     PythonProcessDesc builder(argv[1]);
383     const edm::ParameterSet& in = builder.processDesc()->getProcessPSet()->getParameter<edm::ParameterSet>("fwliteInput" );
384     const edm::ParameterSet& out = builder.processDesc()->getProcessPSet()->getParameter<edm::ParameterSet>("fwliteOutput");
385     const edm::ParameterSet& ana = builder.processDesc()->getProcessPSet()->getParameter<edm::ParameterSet>("Analyzer");
386 bortigno 1.30
387 nmohr 1.7 std::vector<edm::LuminosityBlockRange> jsonVector;
388     if ( in.exists("lumisToProcess") )
389 bortigno 1.30 {
390     std::vector<edm::LuminosityBlockRange> const & lumisTemp =
391     in.getUntrackedParameter<std::vector<edm::LuminosityBlockRange> > ("lumisToProcess");
392 nmohr 1.7 jsonVector.resize( lumisTemp.size() );
393     copy( lumisTemp.begin(), lumisTemp.end(), jsonVector.begin() );
394 bortigno 1.30 }
395 arizzi 1.1
396     // now get each parameter
397     int maxEvents_( in.getParameter<int>("maxEvents") );
398 nmohr 1.29 int skipEvents_( in.getParameter<int>("skipEvents") );
399 arizzi 1.1 unsigned int outputEvery_( in.getParameter<unsigned int>("outputEvery") );
400     std::string outputFile_( out.getParameter<std::string>("fileName" ) );
401     std::vector<std::string> triggers( ana.getParameter<std::vector<std::string> >("triggers") );
402 arizzi 1.6 double btagThr = ana.getParameter<double>("bJetCountThreshold" );
403 arizzi 1.4 bool fromCandidate = ana.getParameter<bool>("readFromCandidates");
404 arizzi 1.17 bool useHighestPtHiggsZ = ana.getParameter<bool>("useHighestPtHiggsZ");
405     bool useHighestPtHiggsW = ana.getParameter<bool>("useHighestPtHiggsW");
406 nmohr 1.31 HbbCandidateFinderAlgo * algoZ = new HbbCandidateFinderAlgo(ana.getParameter<bool>("verbose"), ana.getParameter<double>("jetPtThresholdZ"),useHighestPtHiggsZ);
407     HbbCandidateFinderAlgo * algoW = new HbbCandidateFinderAlgo(ana.getParameter<bool>("verbose"), ana.getParameter<double>("jetPtThresholdW"),useHighestPtHiggsW );
408 arizzi 1.4
409 arizzi 1.16 TriggerWeight triggerWeight(ana);
410 arizzi 1.17 BTagWeight btag(2); // 2 operating points "Custom" = 0.5 and "Tight = 0.898"
411     BTagSampleEfficiency btagEff( ana.getParameter<std::string>("btagEffFileName" ).c_str() );
412 arizzi 1.1
413     std::vector<std::string> inputFiles_( in.getParameter<std::vector<std::string> >("fileNames") );
414 bortigno 1.30 // std::string inputFile( in.getParameter<std::string> ("fileName") );
415 arizzi 1.1
416 arizzi 1.3 std::string PUmcfileName_ = in.getParameter<std::string> ("PUmcfileName") ;
417     std::string PUdatafileName_ = in.getParameter<std::string> ("PUdatafileName") ;
418 arizzi 1.25
419 arizzi 1.1 bool isMC_( ana.getParameter<bool>("isMC") );
420     TriggerReader trigger(isMC_);
421 arizzi 1.18 TriggerReader patFilters(false);
422 arizzi 1.25
423     edm::LumiReWeighting lumiWeights;
424     if(isMC_)
425 bortigno 1.30 {
426     // lumiWeights = edm::LumiReWeighting(PUmcfileName_,PUdatafileName_ , "pileup", "pileup");
427     }
428 arizzi 1.1
429 bortigno 1.30 // TFile *_outPUFile = new TFile((outputFile_+"_PU").c_str(), "recreate");
430     // TH1F * pu = new TH1F("pileup","",-0.5,24.5,25);
431     TFile *_outFile = new TFile(outputFile_.c_str(), "recreate");
432     TH1F * count = new TH1F("Count","Count", 1,0,2 );
433     TH1F * countWithPU = new TH1F("CountWithPU","CountWithPU", 1,0,2 );
434 arizzi 1.1 _outTree = new TTree("tree", "myTree");
435    
436 arizzi 1.33 _outTree->Branch("H" , &H , "mass/F:pt/F:eta:phi/F:dR/F:dPhi/F:dEta/F");
437 arizzi 1.1 _outTree->Branch("V" , &V , "mass/F:pt/F:eta:phi/F");
438     _outTree->Branch("nhJets" , &nhJets , "nhJets/I");
439     _outTree->Branch("naJets" , &naJets , "naJets/I");
440 arizzi 1.2
441     _outTree->Branch("hJet_pt",hJets.pt ,"pt[nhJets]/F");
442     _outTree->Branch("hJet_eta",hJets.eta ,"eta[nhJets]/F");
443     _outTree->Branch("hJet_phi",hJets.phi ,"phi[nhJets]/F");
444     _outTree->Branch("hJet_csv",hJets.csv ,"csv[nhJets]/F");
445     _outTree->Branch("hJet_cosTheta",hJets.cosTheta ,"cosTheta[nhJets]/F");
446     _outTree->Branch("hJet_numTracksSV",hJets.numTracksSV ,"numTracksSV[nhJets]/I");
447     _outTree->Branch("hJet_chf",hJets.chf ,"chf[nhJets]/F");
448     _outTree->Branch("hJet_nhf",hJets.nhf ,"nhf[nhJets]/F");
449     _outTree->Branch("hJet_cef",hJets.cef ,"cef[nhJets]/F");
450     _outTree->Branch("hJet_nef",hJets.nef ,"nef[nhJets]/F");
451     _outTree->Branch("hJet_nch",hJets.nch ,"nch[nhJets]/F");
452     _outTree->Branch("hJet_nconstituents",hJets.nconstituents ,"nconstituents[nhJets]");
453     _outTree->Branch("hJet_flavour",hJets.flavour ,"flavour[nhJets]/F");
454     _outTree->Branch("hJet_genPt",hJets.genPt ,"genPt[nhJets]/F");
455     _outTree->Branch("hJet_genEta",hJets.genEta ,"genEta[nhJets]/F");
456     _outTree->Branch("hJet_genPhi",hJets.genPhi ,"genPhi[nhJets]/F");
457     _outTree->Branch("hJet_JECUnc",hJets.JECUnc ,"JECUnc[nhJets]/F");
458 arizzi 1.24 _outTree->Branch("hJet_vtxMass",hJets.vtxMass ,"vtxMass[naJets]/F");
459     _outTree->Branch("hJet_vtx3dL",hJets.vtx3dL ,"vtx3dL[naJets]/F");
460     _outTree->Branch("hJet_vtx3deL",hJets.vtx3deL ,"vtx3deL[naJets]/F");
461 arizzi 1.2
462     _outTree->Branch("aJet_pt",aJets.pt ,"pt[naJets]/F");
463     _outTree->Branch("aJet_eta",aJets.eta ,"eta[naJets]/F");
464     _outTree->Branch("aJet_phi",aJets.phi ,"phi[naJets]/F");
465     _outTree->Branch("aJet_csv",aJets.csv ,"csv[naJets]/F");
466     _outTree->Branch("aJet_cosTheta",aJets.cosTheta ,"cosTheta[naJets]/F");
467     _outTree->Branch("aJet_numTracksSV",aJets.numTracksSV ,"numTracksSV[naJets]/I");
468     _outTree->Branch("aJet_chf",aJets.chf ,"chf[naJets]/F");
469     _outTree->Branch("aJet_nhf",aJets.nhf ,"nhf[naJets]/F");
470     _outTree->Branch("aJet_cef",aJets.cef ,"cef[naJets]/F");
471     _outTree->Branch("aJet_nef",aJets.nef ,"nef[naJets]/F");
472     _outTree->Branch("aJet_nch",aJets.nch ,"nch[naJets]/F");
473     _outTree->Branch("aJet_nconstituents",aJets.nconstituents ,"nconstituents[naJets]");
474     _outTree->Branch("aJet_flavour",aJets.flavour ,"flavour[naJets]/F");
475     _outTree->Branch("aJet_genPt",aJets.genPt ,"genPt[naJets]/F");
476     _outTree->Branch("aJet_genEta",aJets.genEta ,"genEta[naJets]/F");
477     _outTree->Branch("aJet_genPhi",aJets.genPhi ,"genPhi[naJets]/F");
478     _outTree->Branch("aJet_JECUnc",aJets.JECUnc ,"JECUnc[naJets]/F");
479 arizzi 1.24 _outTree->Branch("aJet_vtxMass",aJets.vtxMass ,"vtxMass[naJets]/F");
480     _outTree->Branch("aJet_vtx3dL",aJets.vtx3dL ,"vtx3dL[naJets]/F");
481     _outTree->Branch("aJet_vtx3deL",aJets.vtx3deL ,"vtx3deL[naJets]/F");
482 arizzi 1.1
483     _outTree->Branch("numJets" , &numJets , "numJets/I" );
484     _outTree->Branch("numBJets" , &numBJets , "numBJets/I" );
485     _outTree->Branch("deltaPullAngle", &deltaPullAngle , "deltaPullAngle/F");
486     _outTree->Branch("gendrcc" , &gendrcc , "gendrcc/F");
487     _outTree->Branch("gendrbb" , &gendrbb , "gendrbb/F");
488     _outTree->Branch("genZpt" , &genZpt , "genZpt/F");
489     _outTree->Branch("genWpt" , &genWpt , "genWpt/F");
490     _outTree->Branch("weightTrig" , &weightTrig , "weightTrig/F");
491 arizzi 1.22 _outTree->Branch("weightTrigMET" , &weightTrigMET , "weightTrigMET/F");
492 arizzi 1.24 _outTree->Branch("weightEleRecoAndId" , &weightEleRecoAndId , "weightEleRecoAndId/F");
493     _outTree->Branch("weightEleTrigJetMETPart" , &weightEleTrigJetMETPart , "weightEleTrigJetMETPart/F");
494     _outTree->Branch("weightEleTrigElePart" , &weightEleTrigElePart , "weightEleTrigElePart/F");
495    
496    
497 arizzi 1.1 _outTree->Branch("deltaPullAngleAK7", &deltaPullAngleAK7 , "deltaPullAngleAK7/F");
498     _outTree->Branch("PUweight", &PUweight , "PUweight/F");
499 arizzi 1.3 _outTree->Branch("eventFlav", &eventFlav , "eventFlav/I");
500 arizzi 1.1
501    
502    
503    
504     _outTree->Branch("Vtype" , &Vtype , "Vtype/I" );
505     _outTree->Branch("HVdPhi" , &HVdPhi , "HVdPhi/F" );
506 arizzi 1.19 _outTree->Branch("HMETdPhi" , &HMETdPhi , "HMETdPhi/F" );
507 arizzi 1.1 _outTree->Branch("VMt" , &VMt , "VMt/F" );
508    
509 arizzi 1.9 _outTree->Branch("nvlep" , &nvlep , "nvlep/I");
510     _outTree->Branch("nalep" , &nalep , "nalep/I");
511 arizzi 1.3
512 arizzi 1.9 _outTree->Branch("vLepton_mass",vLeptons.mass ,"mass[nvlep]/F");
513     _outTree->Branch("vLepton_pt",vLeptons.pt ,"pt[nvlep]/F");
514     _outTree->Branch("vLepton_eta",vLeptons.eta ,"eta[nvlep]");
515     _outTree->Branch("vLepton_phi",vLeptons.phi ,"phi[nvlep]/F");
516     _outTree->Branch("vLepton_aodCombRelIso",vLeptons.aodCombRelIso ,"aodCombRelIso[nvlep]/F");
517     _outTree->Branch("vLepton_pfCombRelIso",vLeptons.pfCombRelIso ,"pfCombRelIso[nvlep]/F");
518     _outTree->Branch("vLepton_photonIso",vLeptons.photonIso ,"photonIso[nvlep]/F");
519     _outTree->Branch("vLepton_neutralHadIso",vLeptons.neutralHadIso ,"neutralHadIso[nvlep]/F");
520     _outTree->Branch("vLepton_chargedHadIso",vLeptons.chargedHadIso ,"chargedHadIso[nvlep]/F");
521     _outTree->Branch("vLepton_particleIso",vLeptons.particleIso ,"particleIso[nvlep]/F");
522     _outTree->Branch("vLepton_dxy",vLeptons.dxy ,"dxy[nvlep]/F");
523     _outTree->Branch("vLepton_dz",vLeptons.dz ,"dz[nvlep]/F");
524     _outTree->Branch("vLepton_type",vLeptons.type ,"type[nvlep]/I");
525 arizzi 1.27 _outTree->Branch("vLepton_id80",vLeptons.id80 ,"id80[nvlep]/F");
526     _outTree->Branch("vLepton_id95",vLeptons.id95 ,"id95[nvlep]/F");
527 arizzi 1.9
528     _outTree->Branch("aLepton_mass",aLeptons.mass ,"mass[nalep]/F");
529     _outTree->Branch("aLepton_pt",aLeptons.pt ,"pt[nalep]/F");
530     _outTree->Branch("aLepton_eta",aLeptons.eta ,"eta[nalep]");
531     _outTree->Branch("aLepton_phi",aLeptons.phi ,"phi[nalep]/F");
532     _outTree->Branch("aLepton_aodCombRelIso",aLeptons.aodCombRelIso ,"aodCombRelIso[nalep]/F");
533     _outTree->Branch("aLepton_pfCombRelIso",aLeptons.pfCombRelIso ,"pfCombRelIso[nalep]/F");
534     _outTree->Branch("aLepton_photonIso",aLeptons.photonIso ,"photonIso[nalep]/F");
535     _outTree->Branch("aLepton_neutralHadIso",aLeptons.neutralHadIso ,"neutralHadIso[nalep]/F");
536     _outTree->Branch("aLepton_chargedHadIso",aLeptons.chargedHadIso ,"chargedHadIso[nalep]/F");
537     _outTree->Branch("aLepton_particleIso",aLeptons.particleIso ,"particleIso[nalep]/F");
538     _outTree->Branch("aLepton_dxy",aLeptons.dxy ,"dxy[nalep]/F");
539     _outTree->Branch("aLepton_dz",aLeptons.dz ,"dz[nalep]/F");
540     _outTree->Branch("aLepton_type",aLeptons.type ,"type[nalep]/I");
541 arizzi 1.27 _outTree->Branch("aLepton_id80",aLeptons.id80 ,"id[nalep]/F");
542     _outTree->Branch("aLepton_id95",aLeptons.id95 ,"id[nalep]/F");
543 arizzi 1.9
544 arizzi 1.8 _outTree->Branch("top" , &top , "mass/F:pt/F:wMass/F");
545 arizzi 1.1
546 bortigno 1.30 //IVF
547     _outTree->Branch("nSvs",&nSvs ,"nSvs/I");
548 arizzi 1.33 _outTree->Branch("Sv_massBCand", &IVF.massBcand,"massBcand[nSvs]/F");
549     _outTree->Branch("Sv_massSv", &IVF.massSv,"massSv[nSvs]/F");
550     _outTree->Branch("Sv_pt", &IVF.pt,"pt[nSvs]/F");
551     _outTree->Branch("Sv_eta", &IVF.eta,"eta[nSvs]/F");
552     _outTree->Branch("Sv_phi", &IVF.phi,"phi[nSvs]/F");
553     _outTree->Branch("Sv_dist3D", &IVF.dist3D,"dist3D[nSvs]/F");
554     _outTree->Branch("Sv_dist2D", &IVF.dist2D,"dist2D[nSvs]/F");
555     _outTree->Branch("Sv_distSim2D", &IVF.distSig2D,"distSig2D[nSvs]/F");
556     _outTree->Branch("Sv_distSig3D", &IVF.distSig3D,"distSig3D[nSvs]/F");
557     _outTree->Branch("Sv_dist3D_norm", &IVF.dist3D_norm,"dist3D_norm[nSvs]/F");
558 bortigno 1.30 //IVF higgs candidate
559 arizzi 1.33 _outTree->Branch("SVH" , &SVH , "mass/F:pt/F:eta:phi/F:dR/F:dPhi/F:dEta/F");
560 bortigno 1.30
561    
562     //FIXME : need to update the EDMNtuple with BHadron infos
563     // //SimBHadron
564     // _outTree->Branch("nSimBs",&nSimBs ,"nSimBs/I");
565     // _outTree->Branch("SimBs_mass", &SimBs.mass,"mass[nSvs]/F");
566     // _outTree->Branch("SimBs_pt", &SimBs.pt,"pt[nSvs]/F");
567     // _outTree->Branch("SimBs_eta", &SimBs.eta,"eta[nSvs]/F");
568     // _outTree->Branch("SimBs_phi", &SimBs.phi,"phi[nSvs]/F");
569     // _outTree->Branch("SimBs_vtx_x", &SimBs.vtx_x,"vtx_x[nSvs]/F");
570     // _outTree->Branch("SimBs_vtx_y", &SimBs.vtx_y,"vtx_y[nSvs]/F");
571     // _outTree->Branch("SimBs_vtx_z", &SimBs.vtx_z,"vtx_z[nSvs]/F");
572     // _outTree->Branch("SimBs_pdgId", &SimBs.pdgId,"pdgId[nSvs]/F");
573     // _outTree->Branch("SimBs_status", &SimBs.status,"status[nSvs]/F");
574     // //SimBHadron Higgs Candidate
575     // _outTree->Branch("SimBs_dr", &SimBs_dr,"SimBs_dr/F");
576     // _outTree->Branch("SimBs_dPhi", &SimBs_dPhi,"SimBs_dPhi/F");
577     // _outTree->Branch("SimBs_dEta", &SimBs_dEta,"SimBs_dEta/F");
578     // _outTree->Branch("SimBs_Hmass", &SimBs_Hmass,"SimBs_Hmass/F");
579     // _outTree->Branch("SimBs_Hpt", &SimBs_Hpt,"SimBs_Hpt/F");
580     // _outTree->Branch("SimBs_Heta", &SimBs_Heta,"SimBs_Heta/F");
581     // _outTree->Branch("SimBs_Hphi", &SimBs_Hphi,"SimBs_Hphi/F");
582    
583    
584 arizzi 1.1 _outTree->Branch("MET" , &MET , "et/F:sumet:sig/F:phi/F");
585     _outTree->Branch("MHT" , &MHT , "mht/F:ht:sig/F:phi/F");
586     _outTree->Branch("minDeltaPhijetMET" , &minDeltaPhijetMET , "minDeltaPhijetMET/F");
587     _outTree->Branch("jetPt_minDeltaPhijetMET" , &jetPt_minDeltaPhijetMET , "jetPt_minDeltaPhijetMET/F");
588    
589 bortigno 1.30 std::stringstream s;
590     s << "triggerFlags[" << triggers.size() << "]/b";
591     _outTree->Branch("triggerFlags", triggerFlags, s.str().c_str());
592 nmohr 1.7
593 arizzi 1.17
594 bortigno 1.30 _outTree->Branch("EVENT" , &EVENT , "run/I:lumi/I:event/I:json/I");
595     _outTree->Branch("hbhe" , &hbhe , "hbhe/b");
596     _outTree->Branch("btag1TSF" , &btag1TSF , "btag1TSF/F");
597     _outTree->Branch("btag2TSF" , &btag2TSF , "btag2TSF/F");
598     _outTree->Branch("btag1T2CSF" , &btag1T2CSF , "btag1T2CSF/F");
599 arizzi 1.1
600 bortigno 1.30 int ievt=0;
601     int totalcount=0;
602 arizzi 1.1
603 bortigno 1.30 // TFile* inFile = new TFile(inputFile.c_str(), "read");
604 arizzi 1.1 for(unsigned int iFile=0; iFile<inputFiles_.size(); ++iFile) {
605     std::cout << iFile << std::endl;
606     TFile* inFile = TFile::Open(inputFiles_[iFile].c_str());
607     if(inFile==0) continue;
608    
609 bortigno 1.30 // loop the events
610 arizzi 1.1
611     fwlite::Event ev(inFile);
612 nmohr 1.29 for(ev.toBegin(); !ev.atEnd() ; ++ev, ++ievt)
613 arizzi 1.1 {
614 nmohr 1.29 if (ievt <= skipEvents_) continue;
615     if (maxEvents_ >= 0){
616     if (ievt > maxEvents_ + skipEvents_) break;
617     };
618 arizzi 1.16 count->Fill(1.);
619 arizzi 1.1
620 arizzi 1.25 fwlite::Handle< VHbbEventAuxInfo > vhbbAuxHandle;
621     vhbbAuxHandle.getByLabel(ev,"HbbAnalyzerNew");
622     const VHbbEventAuxInfo & aux = *vhbbAuxHandle.product();
623     PUweight=1.;
624 arizzi 1.1 if(isMC_){
625 bortigno 1.30
626 arizzi 1.1 // PU weights
627 bortigno 1.30 std::map<int, unsigned int>::const_iterator puit = aux.puInfo.pus.find(0);
628 arizzi 1.33 PUweight = lumiWeights.weight3BX( puit->second /3. );
629 bortigno 1.30 }
630     countWithPU->Fill(PUweight);
631 nmohr 1.7
632 bortigno 1.30 //Write event info
633     EVENT.run = ev.id().run();
634     EVENT.lumi = ev.id().luminosityBlock();
635     EVENT.event = ev.id().event();
636     EVENT.json = jsonContainsEvent (jsonVector, ev);
637    
638     // secondary vtxs
639     fwlite::Handle<std::vector<reco::Vertex> > SVC;
640     SVC.getByLabel(ev,"selectedVertices");
641     const std::vector<reco::Vertex> svc = *(SVC.product());
642    
643     //FIXME : need to update EDM ntuple with BHadron infos
644     // // simBHadrons
645     // fwlite::Handle<SimBHadronCollection> SBHC;
646     // SBHC.getByLabel(ev, "bhadrons");
647     // const SimBHadronCollection sbhc = *(SBHC.product());
648    
649     const std::vector<VHbbCandidate> * candZ ;
650     const std::vector<VHbbCandidate> * candW ;
651     const VHbbEvent * iEvent =0;
652     if(fromCandidate)
653     {
654     fwlite::Handle< std::vector<VHbbCandidate> > vhbbCandHandleZ;
655     vhbbCandHandleZ.getByLabel(ev,"hbbBestCSVPt20Candidates");
656     candZ = vhbbCandHandleZ.product();
657    
658     fwlite::Handle< std::vector<VHbbCandidate> > vhbbCandHandle;
659     vhbbCandHandle.getByLabel(ev,"hbbHighestPtHiggsPt30Candidates");
660     candW = vhbbCandHandle.product();
661     }
662     else
663     {
664     candZlocal->clear();
665     candWlocal->clear();
666     fwlite::Handle< VHbbEvent > vhbbHandle;
667     vhbbHandle.getByLabel(ev,"HbbAnalyzerNew");
668     iEvent = vhbbHandle.product();
669     algoZ->run(vhbbHandle.product(),*candZlocal);
670     algoW->run(vhbbHandle.product(),*candWlocal);
671     candZ= candZlocal;
672     candW= candWlocal;
673    
674     /* for(size_t m=0;m<iEvent->muInfo.size();m++)
675     {
676    
677     if( fabs(iEvent->muInfo[m].p4.Pt()-28.118684) < 0.0001 ||
678     fabs(iEvent->muInfo[m].p4.Pt()-34.853199) < 0.0001 )
679     {
680     std::cout << "FOUND " << iEvent->muInfo[m].p4.Pt() << " " << EVENT.event << " " << candW->size() << " " << candZ->size() << std::endl;
681     }
682     }
683     */
684 arizzi 1.4
685 bortigno 1.30 }
686 arizzi 1.1
687 arizzi 1.3 const std::vector<VHbbCandidate> * cand = candZ;
688 arizzi 1.1
689    
690    
691 bortigno 1.30 /* fwlite::Handle< VHbbEvent > vhbbHandle;
692     vhbbHandle.getByLabel(ev,"HbbAnalyzerNew");
693     const VHbbEvent iEvent = *vhbbHandle.product();
694     */
695 arizzi 1.1
696 bortigno 1.30 // std::clog << "Filling tree "<< std::endl;
697     bool isW=false;
698 arizzi 1.21
699 arizzi 1.17
700 bortigno 1.30 if(cand->size() == 0 or cand->at(0).H.jets.size() < 2) continue;
701     if(cand->size() > 1 )
702 arizzi 1.3 {
703 bortigno 1.30 std::cout << "MULTIPLE CANDIDATES: " << cand->size() << std::endl;
704 arizzi 1.3 }
705 bortigno 1.30 if(cand->at(0).candidateType == VHbbCandidate::Wmun || cand->at(0).candidateType == VHbbCandidate::Wen ) { cand=candW; isW=true; }
706     if(cand->size() == 0)
707 arizzi 1.3 {
708 bortigno 1.30 // std::cout << "W event loss due to tigther cuts" << std::endl;
709 arizzi 1.3 continue;
710     }
711 bortigno 1.30 const VHbbCandidate & vhCand = cand->at(0);
712     patFilters.setEvent(&ev,"VH");
713     hbhe = patFilters.accept("hbhe");
714 arizzi 1.18
715 bortigno 1.30 trigger.setEvent(&ev);
716     for(size_t j=0;j < triggers.size();j++)
717 arizzi 1.4 triggerFlags[j]=trigger.accept(triggers[j]);
718 arizzi 1.3
719 bortigno 1.30 eventFlav=0;
720     if(aux.mcBbar.size() > 0 || aux.mcB.size() > 0) eventFlav=5;
721     else if(aux.mcC.size() > 0) eventFlav=4;
722 arizzi 1.8
723 arizzi 1.3
724 bortigno 1.30 H.mass = vhCand.H.p4.M();
725     H.pt = vhCand.H.p4.Pt();
726     H.eta = vhCand.H.p4.Eta();
727     H.phi = vhCand.H.p4.Phi();
728     V.mass = vhCand.V.p4.M();
729     V.pt = vhCand.V.p4.Pt();
730     V.eta = vhCand.V.p4.Eta();
731     V.phi = vhCand.V.p4.Phi();
732     nhJets=2;
733     hJets.set(vhCand.H.jets[0],0);
734     hJets.set(vhCand.H.jets[1],1);
735     aJets.reset();
736     naJets=vhCand.additionalJets.size();
737     numBJets=0;
738     if(vhCand.H.jets[0].csv> btagThr) numBJets++;
739     if(vhCand.H.jets[1].csv> btagThr) numBJets++;
740     for( int j=0; j < naJets && j < MAXJ; j++ )
741 arizzi 1.6 {
742 bortigno 1.30 aJets.set(vhCand.additionalJets[j],j);
743     if(vhCand.additionalJets[j].csv> btagThr) numBJets++;
744 arizzi 1.6 }
745 bortigno 1.30 numJets = vhCand.additionalJets.size()+2;
746 arizzi 1.33 H.dR = deltaR(vhCand.H.jets[0].p4.Eta(),vhCand.H.jets[0].p4.Phi(),vhCand.H.jets[1].p4.Eta(),vhCand.H.jets[1].p4.Phi());
747     H.dPhi = deltaPhi(vhCand.H.jets[0].p4.Phi(),vhCand.H.jets[1].p4.Phi());
748     H.dEta= TMath::Abs( vhCand.H.jets[0].p4.Eta() - vhCand.H.jets[1].p4.Eta() );
749 bortigno 1.30 HVdPhi = fabs( deltaPhi(vhCand.H.p4.Phi(),vhCand.V.p4.Phi()) ) ;
750     HMETdPhi = fabs( deltaPhi(vhCand.H.p4.Phi(),vhCand.V.mets.at(0).p4.Phi()) ) ;
751     VMt = vhCand.Mt() ;
752     deltaPullAngle = vhCand.H.deltaTheta;
753    
754     hJets.cosTheta[0]= vhCand.H.helicities[0];
755     hJets.cosTheta[1]= vhCand.H.helicities[1];
756 arizzi 1.24
757 bortigno 1.30 MET.et = vhCand.V.mets.at(0).p4.Pt();
758     MET.phi = vhCand.V.mets.at(0).p4.Phi();
759     MET.sumet = vhCand.V.mets.at(0).sumEt;
760     MET.sig = vhCand.V.mets.at(0).metSig;
761 arizzi 1.24
762     if(!fromCandidate) {
763     MHT.mht = iEvent->mht.p4.Pt();
764     MHT.phi = iEvent->mht.p4.Phi();
765     MHT.ht = iEvent->mht.sumEt;
766     MHT.sig = iEvent->mht.metSig;
767 bortigno 1.30 }
768    
769     Vtype = vhCand.candidateType;
770 arizzi 1.24
771    
772 bortigno 1.30 //Secondary Vertices
773     IVF.reset();
774     nSvs = svc.size();
775     const TVector3 recoPv = aux.pvInfo.firstPVInPT2;
776     const math::XYZPoint myPv(recoPv);
777     //look here for Matrix filling info http://project-mathlibs.web.cern.ch/project-mathlibs/sw/html/SMatrixDoc.html
778     std::vector<double> fillMatrix(6);
779     for (int i = 0; i<6; ++i) fillMatrix[i] = 0.;
780     fillMatrix[0] = TMath::Power(0.002,2);
781     fillMatrix[2] = TMath::Power(0.002,2);
782     fillMatrix[5] = TMath::Power(0.002,2);
783     const ROOT::Math::SMatrix<double, 3, 3, ROOT::Math::MatRepSym<double, 3> > myFakeMatrixError(fillMatrix.begin(),fillMatrix.end());
784     const reco::Vertex recoVtxPv(myPv, myFakeMatrixError);
785     for( int j=0; j < nSvs && j < MAXB; ++j ) {
786     const GlobalVector flightDir = flightDirection(recoPv,svc[j]);
787     reco::SecondaryVertex recoSv(recoVtxPv, svc[j], flightDir ,true);
788     IVF.set( recoSv, recoPv ,j);
789     }
790     if(nSvs > 2){
791     TLorentzVector BCands_H1, BCands_H2, BCands_H;
792     BCands_H1.SetPtEtaPhiM(IVF.pt[0], IVF.eta[0], IVF.phi[0], IVF.massBcand[0]);
793     BCands_H2.SetPtEtaPhiM(IVF.pt[1], IVF.eta[1], IVF.phi[1], IVF.massBcand[1]);
794     BCands_H = BCands_H1 + BCands_H2;
795 arizzi 1.33 SVH.dR = deltaR(IVF.eta[0], IVF.phi[0], IVF.eta[1], IVF.phi[1] );
796     SVH.dPhi = deltaPhi(IVF.phi[0], IVF.phi[1] );
797     SVH.dEta = TMath::Abs(IVF.eta[0] - IVF.eta[1] );
798     SVH.mass = BCands_H.M();
799     SVH.pt = BCands_H.Pt();
800     SVH.eta = BCands_H.Eta();
801     SVH.phi = BCands_H.Phi();
802 bortigno 1.30 }
803    
804     //FIXME : need to update EDM ntuple with simBhadron info
805     // //SimBhadron
806     // SimBs.reset();
807     // nSimBs = sbhc.size();
808     // for( int j=0; j < nSimBs && j < MAXB; ++j )
809     // SimBs.set( sbhc.at(j), j);
810     // if(nSimBs > 2){
811     // TLorentzVector SimBs_H1, SimBs_H2, SimBs_H;
812     // SimBs_H1.SetPtEtaPhiM(SimBs.pt[0], SimBs.eta[0], SimBs.phi[0], SimBs.mass[0]);
813     // SimBs_H2.SetPtEtaPhiM(SimBs.pt[1], SimBs.eta[1], SimBs.phi[1], SimBs.mass[1]);
814     // SimBs_H = SimBs_H1 + SimBs_H2;
815     // SimBs_dr = deltaR(SimBs.eta[0], SimBs.phi[0], SimBs.eta[1], SimBs.phi[1] );
816     // SimBs_dPhi = deltaPhi(SimBs.phi[0], SimBs.phi[1] );
817     // SimBs_dEta = TMath::Abs(SimBs.eta[0] - SimBs.eta[1] );
818     // SimBs_Hmass = SimBs_H.M();
819     // SimBs_Hpt = SimBs_H.Pt();
820     // SimBs_Heta = SimBs_H.Eta();
821     // SimBs_Hphi = SimBs_H.Phi();
822     // }
823    
824    
825     //Loop on jets
826     double maxBtag=-99999;
827     minDeltaPhijetMET = 999;
828     TLorentzVector bJet;
829     std::vector<std::vector<BTagWeight::JetInfo> > btagJetInfos;
830     std::vector<float> jet30eta;
831     std::vector<float> jet30pt;
832     if(fromCandidate)
833     {
834     //Loop on Higgs Jets
835     for(unsigned int j=0; j < vhCand.H.jets.size(); j++ ){
836     if (vhCand.H.jets[j].csv > maxBtag) { bJet=vhCand.H.jets[j].p4 ; maxBtag =vhCand.H.jets[j].csv; }
837     if (deltaPhi( vhCand.V.mets.at(0).p4.Phi(), vhCand.H.jets[j].p4.Phi()) < minDeltaPhijetMET)
838     {
839 arizzi 1.24 minDeltaPhijetMET=deltaPhi( vhCand.V.mets.at(0).p4.Phi(), vhCand.H.jets[j].p4.Phi());
840     jetPt_minDeltaPhijetMET=vhCand.H.jets[j].p4.Pt();
841 bortigno 1.30 }
842     btagJetInfos.push_back(btagEff.jetInfo(vhCand.H.jets[j]));
843     }
844     //Loop on Additional Jets
845     for(unsigned int j=0; j < vhCand.additionalJets.size(); j++ ){
846     if (vhCand.additionalJets[j].csv > maxBtag) { bJet=vhCand.additionalJets[j].p4 ; maxBtag =vhCand.additionalJets[j].csv; }
847     if (deltaPhi( vhCand.V.mets.at(0).p4.Phi(), vhCand.additionalJets[j].p4.Phi()) < minDeltaPhijetMET)
848     {
849 arizzi 1.24 minDeltaPhijetMET=deltaPhi( vhCand.V.mets.at(0).p4.Phi(), vhCand.additionalJets[j].p4.Phi());
850     jetPt_minDeltaPhijetMET=vhCand.additionalJets[j].p4.Pt();
851 bortigno 1.30 }
852     if( ( isW && ! useHighestPtHiggsW ) || ( ! isW && ! useHighestPtHiggsZ ) ) // btag SF computed using only H-jets if best-H made with dijetPt rather than best CSV
853     {
854     if(vhCand.additionalJets[j].p4.Pt() > 20)
855     btagJetInfos.push_back(btagEff.jetInfo(vhCand.additionalJets[j]));
856     }
857     }
858     }
859     else
860     {
861     for(unsigned int j=0; j < iEvent->simpleJets2.size(); j++ ){
862     if (iEvent->simpleJets2[j].csv > maxBtag) { bJet=iEvent->simpleJets2[j].p4 ; maxBtag =iEvent->simpleJets2[j].csv; }
863     if (deltaPhi( vhCand.V.mets.at(0).p4.Phi(), iEvent->simpleJets2[j].p4.Phi()) < minDeltaPhijetMET)
864     {
865 arizzi 1.24 minDeltaPhijetMET=deltaPhi( vhCand.V.mets.at(0).p4.Phi(), iEvent->simpleJets2[j].p4.Phi());
866     jetPt_minDeltaPhijetMET=iEvent->simpleJets2[j].p4.Pt();
867 bortigno 1.30 }
868     if(iEvent->simpleJets2[j].p4.Pt() > 30)
869     {
870     jet30eta.push_back(iEvent->simpleJets2[j].p4.Eta());
871     jet30pt.push_back(iEvent->simpleJets2[j].p4.Pt());
872     }
873 arizzi 1.24
874 bortigno 1.30 //For events made with highest CSV, all jets in the event should be taken into account for "tagging" SF (anti tagging is a mess)
875     // because for example a light jet not used for the Higgs can have in reality a higher CSV due to SF > 1 and become a higgs jet
876     if( ( isW && ! useHighestPtHiggsW ) || ( ! isW && ! useHighestPtHiggsZ ) )
877     {
878     if(iEvent->simpleJets2[j].p4.Pt() > 20)
879     btagJetInfos.push_back(btagEff.jetInfo(iEvent->simpleJets2[j]));
880     }
881     }
882    
883     //if we use the highest pt pair, only the two higgs jet should be used to compute the SF because the other jets are excluded
884     // by a criteria (pt of the dijet) that is not btag SF dependent
885     if(!( ( isW && ! useHighestPtHiggsW ) || ( ! isW && ! useHighestPtHiggsZ ) )) {
886     for(unsigned int j=0; j < vhCand.H.jets.size(); j++ ) btagJetInfos.push_back(btagEff.jetInfo(vhCand.H.jets[j]));
887     }
888 arizzi 1.24
889 bortigno 1.30 }
890     vLeptons.reset();
891     weightTrig = 1.; // better to default to 1
892     TLorentzVector leptonForTop;
893     size_t firstAddMu=0;
894     size_t firstAddEle=0;
895     if(Vtype == VHbbCandidate::Zmumu ){
896     vLeptons.set(vhCand.V.muons[0],0,13);
897     vLeptons.set(vhCand.V.muons[1],1,13);
898     float cweightID = triggerWeight.scaleMuID(vLeptons.pt[0],vLeptons.eta[0]) * triggerWeight.scaleMuID(vLeptons.pt[1],vLeptons.eta[1]) ;
899     float weightTrig1 = triggerWeight.scaleMuIsoHLT(vLeptons.pt[0],vLeptons.eta[0]);
900     float weightTrig2 = triggerWeight.scaleMuIsoHLT(vLeptons.pt[1],vLeptons.eta[1]);
901     float cweightTrig = weightTrig1 + weightTrig2 - weightTrig1*weightTrig2;
902     weightTrig = cweightID * cweightTrig;
903     nvlep=2;
904     firstAddMu=2;
905     }
906     if( Vtype == VHbbCandidate::Zee ){
907     vLeptons.set(vhCand.V.electrons[0],0,11);
908     vLeptons.set(vhCand.V.electrons[1],1,11);
909     nvlep=2;
910     firstAddEle=2;
911     std::vector<float> pt,eta;
912     pt.push_back(vLeptons.pt[0]); eta.push_back(vLeptons.eta[0]);
913     pt.push_back(vLeptons.pt[1]); eta.push_back(vLeptons.eta[1]);
914     weightEleRecoAndId=triggerWeight.scaleID95Ele(vLeptons.pt[0],vLeptons.eta[0]) * triggerWeight.scaleRecoEle(vLeptons.pt[0],vLeptons.eta[0]) *
915     triggerWeight.scaleID95Ele(vLeptons.pt[1],vLeptons.eta[1]) * triggerWeight.scaleRecoEle(vLeptons.pt[1],vLeptons.eta[1]);
916     weightEleTrigElePart = triggerWeight.scaleDoubleEle17Ele8(pt,eta);
917     weightTrig = weightEleTrigElePart * weightEleRecoAndId;
918 arizzi 1.24
919    
920    
921 bortigno 1.30 }
922     if(Vtype == VHbbCandidate::Wmun ){
923     leptonForTop=vhCand.V.muons[0].p4;
924     vLeptons.set(vhCand.V.muons[0],0,13);
925     float cweightID = triggerWeight.scaleMuID(vLeptons.pt[0],vLeptons.eta[0]);
926     float weightTrig1 = triggerWeight.scaleMuIsoHLT(vLeptons.pt[0],vLeptons.eta[0]);
927     float cweightTrig = weightTrig1;
928     weightTrig = cweightID * cweightTrig;
929     nvlep=1;
930     firstAddMu=1;
931     }
932     if( Vtype == VHbbCandidate::Wen ){
933     leptonForTop=vhCand.V.electrons[0].p4;
934     vLeptons.set(vhCand.V.electrons[0],0,11);
935     nvlep=1;
936     firstAddEle=1;
937     float weightMay = triggerWeight.scaleSingleEleMay(vLeptons.pt[0],vLeptons.eta[0]);
938     float weightV4 = triggerWeight.scaleSingleEleV4(vLeptons.pt[0],vLeptons.eta[0]);
939     weightEleRecoAndId=triggerWeight.scaleID80Ele(vLeptons.pt[0],vLeptons.eta[0]) * triggerWeight.scaleRecoEle(vLeptons.pt[0],vLeptons.eta[0]);
940     weightEleTrigJetMETPart=triggerWeight.scaleJet30Jet25(jet30eta,jet30pt)*triggerWeight.scalePFMHTEle(MET.et);
941     weightEleTrigElePart= weightV4; //this is for debugging only, checking only the V4 part
942    
943     weightMay*=weightEleRecoAndId;
944     weightV4*=weightEleRecoAndId;
945     weightV4*=weightEleTrigJetMETPart;
946     weightTrig = weightMay * 0.187 + weightV4 * (1.-0.187); //FIXME: use proper lumi if we reload 2.fb
947     }
948     if( Vtype == VHbbCandidate::Znn ){
949     nvlep=0;
950     float weightTrig1 = triggerWeight.scaleMetHLT(vhCand.V.mets.at(0).p4.Pt());
951     weightTrig = weightTrig1;
952     weightTrigMET = weightTrig1;
953     }
954 arizzi 1.9
955 bortigno 1.30 aLeptons.reset();
956     nalep=0;
957     if(fromCandidate)
958 arizzi 1.21 {
959     for(size_t j=firstAddMu;j< vhCand.V.muons.size();j++) aLeptons.set(vhCand.V.muons[j],nalep++,13);
960     for(size_t j=firstAddEle;j< vhCand.V.electrons.size();j++) aLeptons.set(vhCand.V.electrons[j],nalep++,11);
961     }
962 bortigno 1.30 else
963 arizzi 1.21 {
964 bortigno 1.30 for(size_t j=0;j< iEvent->muInfo.size();j++)
965     {
966 arizzi 1.21 if((j!= vhCand.V.firstLepton && j!= vhCand.V.secondLepton) || ((Vtype != VHbbCandidate::Wmun ) && (Vtype != VHbbCandidate::Zmumu )) )
967 bortigno 1.30 aLeptons.set(iEvent->muInfo[j],nalep++,13);
968     }
969     for(size_t j=0;j< iEvent->eleInfo.size();j++)
970     {
971 arizzi 1.21 if((j!= vhCand.V.firstLepton && j!= vhCand.V.secondLepton) || ((Vtype != VHbbCandidate::Wen ) && (Vtype != VHbbCandidate::Zee )))
972 bortigno 1.30 aLeptons.set(iEvent->eleInfo[j],nalep++,11);
973     }
974 arizzi 1.8
975 arizzi 1.21 }
976 arizzi 1.8
977 arizzi 1.24
978 bortigno 1.30 if(isMC_)
979     {
980     //std::cout << "BTAGSF " << btagJetInfos.size() << " " << btag.weight<BTag1Tight2CustomFilter>(btagJetInfos) << std::endl;
981     if ( btagJetInfos.size()< 10)
982     {
983     btag1T2CSF = btag.weight<BTag1Tight2CustomFilter>(btagJetInfos);
984     btag2TSF = btag.weight<BTag2TightFilter>(btagJetInfos);
985     btag1TSF = btag.weight<BTag1TightFilter>(btagJetInfos);
986     }
987     else
988     {
989     std::cout << "WARNING: combinatorics for " << btagJetInfos.size() << " jets is too high (>=10). use SF=1 " << std::endl;
990     //TODO: revert to random throw for this cases
991     btag1T2CSF = 1.;
992     btag2TSF = 1.;
993     btag1TSF = 1.;
994     }
995     }
996 arizzi 1.17
997 bortigno 1.30 if(maxBtag > -99999)
998 arizzi 1.8 {
999 bortigno 1.30 TopHypo topQuark = TopMassReco::topMass(leptonForTop,bJet,vhCand.V.mets.at(0).p4);
1000     top.mass = topQuark.p4.M();
1001     top.pt = topQuark.p4.Pt();
1002     top.wMass = topQuark.p4W.M();
1003 arizzi 1.8 } else {
1004 bortigno 1.30 top.mass = -99;
1005     top.pt = -99;
1006     top.wMass = -99;
1007     }
1008 arizzi 1.8
1009    
1010    
1011 bortigno 1.30 //FIXME: too much warnings... figure out why
1012     // gendrcc=aux.genCCDeltaR();
1013     // gendrbb=aux.genBBDeltaR();
1014     genZpt=aux.mcZ.size() > 0 ? aux.mcZ[0].p4.Pt():-99;
1015     genWpt=aux.mcW.size() > 0 ? aux.mcW[0].p4.Pt():-99;
1016 arizzi 1.24
1017 arizzi 1.25
1018 arizzi 1.32 /// Compute pull angle from AK7
1019 arizzi 1.25 if(!fromCandidate){
1020 arizzi 1.32 std::vector<VHbbEvent::SimpleJet> ak7wrt1(iEvent->simpleJets3);
1021     std::vector<VHbbEvent::SimpleJet> ak7wrt2(iEvent->simpleJets3);
1022     if(ak7wrt1.size() > 1){
1023 arizzi 1.24 CompareDeltaR deltaRComparatorJ1(vhCand.H.jets[0].p4);
1024     CompareDeltaR deltaRComparatorJ2(vhCand.H.jets[1].p4);
1025 arizzi 1.32 std::sort( ak7wrt1.begin(),ak7wrt1.end(),deltaRComparatorJ1 );
1026     std::sort( ak7wrt2.begin(),ak7wrt2.end(),deltaRComparatorJ2 );
1027 arizzi 1.24 std::vector<VHbbEvent::SimpleJet> ak7_matched;
1028 arizzi 1.32 // if the matched are different save them
1029     if(ak7wrt1[0].p4.DeltaR(ak7wrt2[0].p4) > 0.1) {
1030     ak7_matched.push_back(ak7wrt1[0]);
1031     ak7_matched.push_back(ak7wrt2[0]);
1032     }
1033     // else look at the second best
1034     else{
1035     // ak7wrt1 is best
1036     if( ak7wrt1[1].p4.DeltaR(vhCand.H.jets[0].p4) < ak7wrt2[1].p4.DeltaR(vhCand.H.jets[1].p4))
1037     {
1038     ak7_matched.push_back(ak7wrt1[1]);
1039     ak7_matched.push_back(ak7wrt2[0]);
1040     }
1041     else
1042     {
1043     ak7_matched.push_back(ak7wrt1[0]);
1044     ak7_matched.push_back(ak7wrt2[1]);
1045     }
1046     }
1047 arizzi 1.24 CompareJetPt ptComparator;
1048     std::sort( ak7_matched.begin(),ak7_matched.end(),ptComparator );
1049     if(ak7_matched[0].p4.DeltaR(vhCand.H.jets[0].p4) < 0.5
1050 arizzi 1.32 and ak7_matched[1].p4.DeltaR(vhCand.H.jets[1].p4) < 0.5)
1051     {
1052     deltaPullAngleAK7 = VHbbCandidateTools::getDeltaTheta(ak7_matched[0],ak7_matched[1]);
1053     }
1054 arizzi 1.24 }
1055     }
1056 arizzi 1.3
1057 bortigno 1.30 _outTree->Fill();
1058 arizzi 1.4
1059 bortigno 1.30 }// closed event loop
1060 arizzi 1.1
1061 bortigno 1.30 std::cout << "closing the file: " << inputFiles_[iFile] << std::endl;
1062     inFile->Close();
1063     // close input file
1064     } // loop on files
1065 arizzi 1.1
1066    
1067 bortigno 1.30 std::cout << "Events: " << ievt <<std::endl;
1068     std::cout << "TotalCount: " << totalcount <<std::endl;
1069 arizzi 1.1
1070    
1071    
1072 bortigno 1.30 _outFile->cd();
1073 arizzi 1.1
1074 bortigno 1.30 _outTree->Write();
1075     _outFile->Write();
1076     _outFile->Close();
1077     return 0;
1078 arizzi 1.1 }
1079    
1080