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Comparing UserCode/MPIAnalyzer/src/MPIntuple.cc (file contents):
Revision 1.7 by naodell, Sat May 29 05:20:11 2010 UTC vs.
Revision 1.14 by naodell, Tue Oct 5 21:27:59 2010 UTC

# Line 18 | Line 18
18   #include "FWCore/ParameterSet/interface/ParameterSet.h"
19   #include "DataFormats/GeometryVector/interface/GlobalPoint.h"
20   #include "Geometry/Records/interface/CaloGeometryRecord.h"
21 + #include "DataFormats/Math/interface/deltaPhi.h"
22  
23   // Jet and vertex functions
24   #include "DataFormats/JetReco/interface/CaloJet.h"
# Line 30 | Line 31
31   #include "DataFormats/VertexReco/interface/Vertex.h"
32   #include "DataFormats/VertexReco/interface/VertexFwd.h"
33   #include "DataFormats/BTauReco/interface/JetTag.h"
34 + //#include "RecoVertex/PrimaryVertexProducer/interface/VertexHigherPtSquared.h"
35  
36 < #include "DataFormats/Math/interface/deltaPhi.h"
36 > //GenParticles
37 > //#include "DataFormats/HepMCCandidate/interface/GenParticle.h"
38  
39   // Need to get correctors
40   #include "JetMETCorrections/Objects/interface/JetCorrector.h"
# Line 77 | Line 80 | class MPIntuple : public edm::EDAnalyzer
80        virtual void endJob() ;
81  
82    bool triggerDecision(edm::Handle<edm::TriggerResults> &hltR, int iTrigger);
83 +  double sumPtSquared(const Vertex & v);
84  
85        // ----------member data ---------------------------
86  
# Line 84 | Line 88 | class MPIntuple : public edm::EDAnalyzer
88    edm::InputTag GenJetHandle_;
89    edm::InputTag PrimaryVtxHandle_;
90    edm::InputTag triggerResultsTag_;
87
88
91    //  Counting variables   //
92  
93 <  int eventNumber, runNumber, lumiSection;
93 >  int eventNumber, runNumber, lumiSection, bunchCross;
94  
95    TTree* sTree;
96    TFile* ntupleFile;
# Line 100 | Line 102 | class MPIntuple : public edm::EDAnalyzer
102    bool doGenJets_;
103    bool doPFJets_;
104    bool triggerHLT_;
105 <
105 >  bool isRealData;
106    string rootfilename;
107  
108    //Triggers
# Line 125 | Line 127 | MPIntuple::MPIntuple(const edm::Paramete
127    hlTriggerResults_(iConfig.getUntrackedParameter<string>("HLTriggerResults","TriggerResults")),
128    hltName_(iConfig.getUntrackedParameter<string>("hltName","HLT"))
129   {
130 <  //edm::TriggerNames
129 <  // triggerNames(iConfig);
130 >
131  
132   }
133  
# Line 136 | Line 137 | MPIntuple::~MPIntuple()
137  
138   }
139  
140 + double MPIntuple::sumPtSquared(const Vertex & v)
141 + {
142 +  double sum = 0.;
143 +  double pT;
144 +  for (Vertex::trackRef_iterator it = v.tracks_begin(); it != v.tracks_end(); it++) {
145 +    pT = (**it).pt();
146 +    double epT=(**it).ptError(); pT=pT>epT ? pT-epT : 0;
147 +
148 +    sum += pT*pT;
149 +  }
150 +  return sum;
151 + }
152 +
153   //
154   // member functions
155   //
# Line 144 | Line 158 | MPIntuple::~MPIntuple()
158   void MPIntuple::analyze(const edm::Event& iEvent, const edm::EventSetup& iSetup)
159   {
160  
161 +
162    eventNumber  = iEvent.id().event();
163    runNumber    = iEvent.id().run();
164    lumiSection  = (unsigned int)iEvent.getLuminosityBlock().luminosityBlock();
165 <  //  isMC = iEvent.???();
166 <  
167 <  int PFcount  = 0;
168 <  int Gencount = 0;
169 <  int Vtxcount = 0;
165 >  bunchCross   = (unsigned int)iEvent.bunchCrossing();
166 >  isRealData   = iEvent.isRealData();
167 >
168 >  int PFcount   = 0;
169 >  int Gencount  = 0;
170 >  int Vtxcount  = 0;
171  
172    if(doPFJets_){
173  
# Line 165 | Line 181 | void MPIntuple::analyze(const edm::Event
181      const reco::JetTagCollection & bTags2 = *(bTagHandle2.product());
182      reco::JetTagCollection::const_iterator jet_it_2;
183  
184 +
185      const JetCorrector* correctorL2 = JetCorrector::getJetCorrector ("ak5PFL2Relative",iSetup);
186      const JetCorrector* correctorL3 = JetCorrector::getJetCorrector ("ak5PFL3Absolute",iSetup);
187  
# Line 176 | Line 193 | void MPIntuple::analyze(const edm::Event
193      for(PFJetCollection::const_iterator jet_iter = PFJets->begin(); jet_iter!= PFJets->end(); ++jet_iter){
194        
195        reco::PFJet myJet = reco::PFJet(*jet_iter);
179
180 //      float scale2 = correctorL2->correction(myJet);
181 //      float scale3 = correctorL3->correction(myJet);
182
196        if(myJet.et() > 5){
197  
198          for(jet_it_1 = bTags1.begin(); jet_it_1 != bTags1.end(); jet_it_1++) {
# Line 218 | Line 231 | void MPIntuple::analyze(const edm::Event
231          jetCon->SetJetCorr(2, scale2);
232          jetCon->SetJetCorr(3, scale3);
233  
221 //if(( (lumiSection==666690) && (eventNumber==2439)) ||
222 //   ( (lumiSection==666702) && (eventNumber==3629)) ||
223 //   ( (lumiSection==666702) && (eventNumber==3681)) ||
224 //   ( (lumiSection==666709) && (eventNumber==4320)) ||
225 //   ( (lumiSection==666709) && (eventNumber==4328)) ||
226 //   ( (lumiSection==666724) && (eventNumber==5855)) ||
227 //   ( (lumiSection==666742) && (eventNumber==7642)) ||
228 //   ( (lumiSection==666754) && (eventNumber==8869)) ||
229 //   ( (lumiSection==666670) && (eventNumber==466)) ||
230 //   ( (lumiSection==666675) && (eventNumber==919)) ||
231 //   ( (lumiSection==666718) && (eventNumber==5235)))
232 //{
233 //      std::cout << runNumber << " " << lumiSection << "  " << eventNumber << "\n";
234 //      std::cout << "(" << myJet.pt() << "," << myJet.eta() << "," << myJet.phi() << ", [" << scale2 << ", " << scale3 << "]) " << std::endl;
235 //      std::cout << "(" << jetCon->Pt(3) << "," << jetCon->P4(3).Eta() << "," << jetCon->P4(3).Phi() << "," << ", [" << jetCon->JetCorr(2) << ", " <<  jetCon->JetCorr(3)  << "]) " << std::endl;
236 //}
237
238
234          ++PFcount;
235        }      
236      }  
237    }
238    
239 <  if(doGenJets_){
239 >  if(!isRealData){
240      
241 +
242      Handle<reco::GenJetCollection> GenJets;
243      iEvent.getByLabel(GenJetHandle_, GenJets);
244      
# Line 258 | Line 254 | void MPIntuple::analyze(const edm::Event
254          ++Gencount;
255          
256        }
257 <    }
257 >    }    
258    }
259 <
260 <
259 >  
260 >  
261    Handle<reco::VertexCollection> primaryVtcs;
262    iEvent.getByLabel(PrimaryVtxHandle_, primaryVtcs);
263 <
263 >  
264    for(VertexCollection::const_iterator vtx_iter = primaryVtcs->begin(); vtx_iter!= primaryVtcs->end(); ++vtx_iter){
265      
266      reco::Vertex myVtx = reco::Vertex(*vtx_iter);
267 <    
267 >    if(!myVtx.isValid() || myVtx.isFake()) continue;
268      TCPrimaryVtx* vtxCon = new ((*primaryVtx)[Vtxcount]) TCPrimaryVtx;
269        
270      vtxCon->SetPosition(myVtx.x(), myVtx.y(), myVtx.z());
271      vtxCon->SetNDof(myVtx.ndof());
272      vtxCon->SetChi2(myVtx.chi2());
273 <            
273 >    vtxCon->SetNTrks(myVtx.tracksSize());
274 >    vtxCon->SetSumPt2Trks(sumPtSquared(myVtx));
275      ++Vtxcount;
276      
277    }
# Line 291 | Line 288 | void MPIntuple::analyze(const edm::Event
288      const TriggerNames & triggerNames = iEvent.triggerNames(*hltR);
289      hlNames=triggerNames.triggerNames();
290      
291 <    string MPI_TriggerNames[32] = {"HLT_PixelTracks_Multiplicity70", "HLT_MinBiasBSC_NoBPTX", "HLT_PixelTracks_Multiplicity40","HLT_L1Tech_HCAL_HF", "HLT_IsoTrackHB_8E29", "HLT_IsoTrackHE_8E29", "HLT_L1Tech_RPC_TTU_RBst1_collisions", "HLT_L1_BscMinBiasOR_BptxPlusORMinus", "HLT_L1Tech_BSC_halo_forPhysicsBackground", "HLT_L1Tech_BSC_HighMultiplicity", "HLT_MinBiasPixel_DoubleIsoTrack5", "HLT_MinBiasPixel_DoubleTrack", "HLT_MinBiasPixel_SingleTrack", "HLT_ZeroBiasPixel_SingleTrack", "HLT_MinBiasBSC", "HLT_StoppedHSCP_8E29", "HLT_Jet15U_HcalNoiseFiltered", "HLT_QuadJet15U", "HLT_DiJetAve30U_8E29", "HLT_DiJetAve15U_8E29", "HLT_FwdJet20U", "HLT_Jet50U", "HLT_Jet30U", "HLT_Jet15U", "HLT_BTagMu_Jet10U", "HLT_DoubleJet15U_ForwardBackward", "HLT_BTagIP_Jet50U", "HLT_DoubleLooseIsoTau15", "HLT_SingleLooseIsoTau20", "HLT_HT100U", "HLT_MET100", "HLT_MET45"};
291 >    string MPI_TriggerNames[] = {"HLT_PixelTracks_Multiplicity70", "HLT_MinBiasBSC_NoBPTX", "HLT_PixelTracks_Multiplicity40","HLT_L1Tech_HCAL_HF", "HLT_IsoTrackHB_8E29", "HLT_IsoTrackHE_8E29", "HLT_L1Tech_RPC_TTU_RBst1_collisions", "HLT_L1_BscMinBiasOR_BptxPlusORMinus", "HLT_L1Tech_BSC_halo_forPhysicsBackground", "HLT_L1Tech_BSC_HighMultiplicity", "HLT_MinBiasPixel_DoubleIsoTrack5", "HLT_MinBiasPixel_DoubleTrack", "HLT_MinBiasPixel_SingleTrack", "HLT_ZeroBiasPixel_SingleTrack", "HLT_MinBiasBSC", "HLT_StoppedHSCP_8E29", "HLT_Jet15U_HcalNoiseFiltered", "HLT_QuadJet15U", "HLT_DiJetAve30U_8E29", "HLT_DiJetAve15U_8E29", "HLT_FwdJet20U", "HLT_Jet50U", "HLT_Jet30U", "HLT_Jet15U", "HLT_BTagMu_Jet10U", "HLT_DoubleJet15U_ForwardBackward", "HLT_BTagIP_Jet50U", "HLT_DoubleLooseIsoTau15", "HLT_SingleLooseIsoTau20", "HLT_HT100U", "HLT_MET100", "HLT_MET45"};
292      
293      bool triggerPassed = false;
294      triggerStatus = 0x0;
# Line 315 | Line 312 | void MPIntuple::analyze(const edm::Event
312      }
313    }
314    //  cout<< "total status: "<<hex<<triggerStatus<<endl;
315 <  
316 <  if(PFcount > 0 || Gencount > 0 || Vtxcount > 0);  sTree -> Fill();
315 >
316 >
317 >
318 >  if((PFcount > 3 || Gencount > 3) && Vtxcount > 0)  sTree -> Fill();
319    
320    jet_ak5PF->Clear();
321    primaryVtx->Clear();
# Line 344 | Line 343 | void  MPIntuple::beginJob()
343    sTree->Branch("runNumber",&runNumber, "runNumber/I");
344    sTree->Branch("lumiSection",&lumiSection, "lumiSection/I");
345    sTree->Branch("triggerStatus",&triggerStatus, "triggerStatus/i");
346 <  //  sTree->Branch("isMC",&isMC,"isMC/O");
347 <
346 >  sTree->Branch("isRealData",&isRealData, "isRealData/i");
347 >  sTree->Branch("bunchCross",&bunchCross, "bunchCross/i");
348  
349   }
350  

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