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/data/refman/pasoursint/CMSSW_5_3_3/src/DQMOffline/JetMET/src/JPTJetAnalyzer.cc

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00001 #include "DQMOffline/JetMET/interface/JPTJetAnalyzer.h"
00002 #include "DQMServices/Core/interface/MonitorElement.h"
00003 #include "DQMServices/Core/interface/DQMStore.h"
00004 #include "DataFormats/TrackReco/interface/Track.h"
00005 #include "DataFormats/JetReco/interface/CaloJet.h"
00006 #include "FWCore/Framework/interface/Event.h"
00007 #include "FWCore/Framework/interface/EventSetup.h"
00008 #include "FWCore/ParameterSet/interface/ParameterSet.h"
00009 #include "FWCore/MessageLogger/interface/MessageLogger.h"
00010 #include "DataFormats/Common/interface/Handle.h"
00011 #include "FWCore/Framework/interface/ESHandle.h"
00012 #include "DataFormats/Math/interface/deltaR.h"
00013 #include "RecoJets/JetAssociationAlgorithms/interface/JetTracksAssociationDRCalo.h"
00014 #include "DataFormats/Math/interface/Point3D.h"
00015 #include "MagneticField/Records/interface/IdealMagneticFieldRecord.h"
00016 #include "TrackingTools/Records/interface/TrackingComponentsRecord.h"
00017 #include "DataFormats/TrackingRecHit/interface/TrackingRecHit.h"
00018 #include "DataFormats/TrackerRecHit2D/interface/SiStripMatchedRecHit2D.h"
00019 #include "DataFormats/TrackerRecHit2D/interface/ProjectedSiStripRecHit2D.h"
00020 #include "DataFormats/TrackerRecHit2D/interface/SiStripRecHit2D.h"
00021 #include "DataFormats/TrackingRecHit/interface/InvalidTrackingRecHit.h"
00022 #include "DataFormats/SiStripCluster/interface/SiStripCluster.h"
00023 #include "DataFormats/DetId/interface/DetId.h"
00024 #include "DataFormats/SiStripDetId/interface/SiStripDetId.h"
00025 #include "CalibFormats/SiStripObjects/interface/SiStripQuality.h"
00026 #include "CondFormats/SiStripObjects/interface/SiStripNoises.h"
00027 #include "CalibFormats/SiStripObjects/interface/SiStripGain.h"
00028 #include "CalibTracker/Records/interface/SiStripQualityRcd.h"
00029 #include "CondFormats/DataRecord/interface/SiStripNoisesRcd.h"
00030 #include "CalibTracker/Records/interface/SiStripGainRcd.h"
00031 #include "FWCore/ParameterSet/interface/ParameterSet.h"
00032 #include "RecoJets/JetProducers/interface/JetIDHelper.h"
00033 #include <cmath>
00034 #include <string>
00035 #include <memory>
00036 #include <vector>
00037 
00038 namespace jptJetAnalysis {
00039   
00040   // Helpper class to propagate tracks to the calo surface using the same implementation as the JetTrackAssociator
00041   class TrackPropagatorToCalo
00042   {
00043    public:
00044     TrackPropagatorToCalo();
00045     void update(const edm::EventSetup& eventSetup);
00046     math::XYZPoint impactPoint(const reco::Track& track) const;
00047    private:
00048     const MagneticField* magneticField_;
00049     const Propagator* propagator_;
00050     uint32_t magneticFieldCacheId_;
00051     uint32_t propagatorCacheId_;
00052   };
00053   
00054   // Helper class to calculate strip signal to noise and manage the necessary ES objects
00055   class StripSignalOverNoiseCalculator
00056   {
00057    public:
00058     StripSignalOverNoiseCalculator(const std::string& theQualityLabel = std::string(""));
00059     void update(const edm::EventSetup& eventSetup);
00060     double signalOverNoise(const SiStripCluster& cluster,
00061                            const uint32_t& id) const;
00062     double operator () (const SiStripCluster& cluster,
00063                         const uint32_t& id) const
00064     { return signalOverNoise(cluster,id); }
00065    private:
00066     const std::string qualityLabel_;
00067     const SiStripQuality* quality_;
00068     const SiStripNoises* noise_;
00069     const SiStripGain* gain_;
00070     uint32_t qualityCacheId_;
00071     uint32_t noiseCacheId_;
00072     uint32_t gainCacheId_;
00073   };
00074   
00075 }
00076 
00077 const char* JPTJetAnalyzer::messageLoggerCatregory = "JetPlusTrackDQM";
00078 
00079 JPTJetAnalyzer::JPTJetAnalyzer(const edm::ParameterSet& config)
00080   : histogramPath_(config.getParameter<std::string>("HistogramPath")),
00081     verbose_(config.getUntrackedParameter<bool>("PrintDebugMessages",false)),
00082     writeDQMStore_(config.getUntrackedParameter<bool>("WriteDQMStore")),
00083     dqmStoreFileName_(),
00084     n90HitsMin_(config.getParameter<int>("n90HitsMin")),
00085     fHPDMax_(config.getParameter<double>("fHPDMax")),
00086     resEMFMin_(config.getParameter<double>("resEMFMin")),
00087     correctedPtMin_(config.getParameter<double>("correctedPtThreshold")),
00088     trackPropagator_(new jptJetAnalysis::TrackPropagatorToCalo),
00089     sOverNCalculator_(new jptJetAnalysis::StripSignalOverNoiseCalculator),
00090     jetID_(new reco::helper::JetIDHelper(config.getParameter<edm::ParameterSet>("JetIDParams")))
00091 {
00092   //print config to debug log
00093   std::ostringstream debugStream;
00094   if (verbose_) {
00095     debugStream << "Configuration for JPTJetAnalyzer: " << std::endl
00096                 << "\tHistogramPath: " << histogramPath_ << std::endl
00097                 << "\tPrintDebugMessages? " << (verbose_ ? "yes" : "no") << std::endl;
00098   }
00099   if (writeDQMStore_) {
00100     dqmStoreFileName_ = config.getUntrackedParameter<std::string>("DQMStoreFileName");
00101   }
00102   
00103   //don't generate debug mesages if debug is disabled
00104   std::ostringstream* pDebugStream = (verbose_ ? &debugStream : NULL);
00105   
00106   //get histogram configuration
00107   getConfigForHistogram("E",config,pDebugStream);
00108   getConfigForHistogram("Et",config,pDebugStream);
00109   getConfigForHistogram("P",config,pDebugStream);
00110   getConfigForHistogram("Mass",config,pDebugStream);
00111   getConfigForHistogram("Pt",config,pDebugStream);
00112   getConfigForHistogram("Pt1",config,pDebugStream);
00113   getConfigForHistogram("Pt2",config,pDebugStream);
00114   getConfigForHistogram("Pt3",config,pDebugStream);
00115   getConfigForHistogram("Px",config,pDebugStream);
00116   getConfigForHistogram("Py",config,pDebugStream);
00117   getConfigForHistogram("Pz",config,pDebugStream);
00118   getConfigForHistogram("Eta",config,pDebugStream);
00119   getConfigForHistogram("Phi",config,pDebugStream);
00120   getConfigForHistogram("deltaEta",config,pDebugStream);
00121   getConfigForHistogram("deltaPhi",config,pDebugStream);
00122   getConfigForHistogram("PhiVsEta",config,pDebugStream);
00123   getConfigForHistogram("N90Hits",config,pDebugStream);
00124   getConfigForHistogram("fHPD",config,pDebugStream);
00125   getConfigForHistogram("ResEMF",config,pDebugStream);
00126   getConfigForHistogram("fRBX",config,pDebugStream);
00127   getConfigForHistogram("TrackSiStripHitStoN",config,pDebugStream);
00128   getConfigForHistogram("InCaloTrackDirectionJetDR",config,pDebugStream);
00129   getConfigForHistogram("OutCaloTrackDirectionJetDR",config,pDebugStream);
00130   getConfigForHistogram("InVertexTrackImpactPointJetDR",config,pDebugStream);
00131   getConfigForHistogram("OutVertexTrackImpactPointJetDR",config,pDebugStream);
00132   getConfigForHistogram("PtFractionInCone",config,pDebugStream);
00133   getConfigForHistogram("PtFractionInConeVsJetRawEt",config,pDebugStream);
00134   getConfigForHistogram("PtFractionInConeVsJetEta",config,pDebugStream);
00135   getConfigForHistogram("nTracks",config,pDebugStream);
00136   getConfigForHistogram("nTracksVsJetEt",config,pDebugStream);
00137   getConfigForHistogram("nTracksVsJetEta",config,pDebugStream);
00138   getConfigForHistogram("CorrFactor",config,pDebugStream);
00139   getConfigForHistogram("CorrFactorVsJetEt",config,pDebugStream);
00140   getConfigForHistogram("CorrFactorVsJetEta",config,pDebugStream);
00141   getConfigForHistogram("ZSPCorrFactor",config,pDebugStream);
00142   getConfigForHistogram("ZSPCorrFactorVsJetEt",config,pDebugStream);
00143   getConfigForHistogram("ZSPCorrFactorVsJetEta",config,pDebugStream);
00144   getConfigForHistogram("JPTCorrFactor",config,pDebugStream);
00145   getConfigForHistogram("JPTCorrFactorVsJetEt",config,pDebugStream);
00146   getConfigForHistogram("JPTCorrFactorVsJetEta",config,pDebugStream);
00147   getConfigForTrackHistograms("AllPions",config,pDebugStream);
00148   getConfigForTrackHistograms("InCaloInVertexPions",config,pDebugStream);
00149   getConfigForTrackHistograms("InCaloOutVertexPions",config,pDebugStream);
00150   getConfigForTrackHistograms("OutCaloInVertexPions",config,pDebugStream);
00151   getConfigForTrackHistograms("AllMuons",config,pDebugStream);
00152   getConfigForTrackHistograms("InCaloInVertexMuons",config,pDebugStream);
00153   getConfigForTrackHistograms("InCaloOutVertexMuons",config,pDebugStream);
00154   getConfigForTrackHistograms("OutCaloInVertexMuons",config,pDebugStream); 
00155   getConfigForTrackHistograms("AllElectrons",config,pDebugStream);
00156   getConfigForTrackHistograms("InCaloInVertexElectrons",config,pDebugStream);
00157   getConfigForTrackHistograms("InCaloOutVertexElectrons",config,pDebugStream);
00158   getConfigForTrackHistograms("OutCaloInVertexElectrons",config,pDebugStream);
00159   
00160   if (verbose_) LogTrace(messageLoggerCatregory) << debugStream.str();
00161 }
00162 
00163 JPTJetAnalyzer::~JPTJetAnalyzer()
00164 {}
00165 
00166 void JPTJetAnalyzer::beginJob(DQMStore* dqmStore)
00167 {
00168   dqm_ = dqmStore;
00169   //book histograms
00170   dqmStore->setCurrentFolder(histogramPath_);
00171   bookHistograms(dqmStore);
00172 }
00173 
00174 
00175 void JPTJetAnalyzer::analyze(const edm::Event&             event,
00176                              const edm::EventSetup&        eventSetup,
00177                              const reco::JPTJetCollection& jptJets,
00178                              const int                     numPV)
00179 {
00180   double pt1 = 0;
00181   double pt2 = 0;
00182   double pt3 = 0;
00183 
00184   for (reco::JPTJetCollection::const_iterator iJet = jptJets.begin(); iJet != jptJets.end(); ++iJet) {
00185     analyze(event, eventSetup, *iJet, pt1, pt2, pt3, numPV);
00186   }
00187   if (pt1) fillHistogram(JetPt1_,pt1);
00188   if (pt2) fillHistogram(JetPt2_,pt2);
00189   if (pt3) fillHistogram(JetPt3_,pt3);
00190 }
00191 
00192 void JPTJetAnalyzer::analyze(const edm::Event&      event,
00193                              const edm::EventSetup& eventSetup,
00194                              const reco::JPTJet&    jptJet,
00195                              double&                pt1,
00196                              double&                pt2,
00197                              double&                pt3,
00198                              const int              numPV)
00199 {
00200   //update the track propagator and strip noise calculator
00201   trackPropagator_->update(eventSetup);
00202   sOverNCalculator_->update(eventSetup);
00203   
00204   //make corrected jets
00205   const double factorZSP = jptJet.getZSPCor();
00206   const reco::Jet& rawJet = *jptJet.getCaloJetRef();
00207   const double factorZSPJPT = jptJet.energy()/rawJet.energy();
00208   
00209   //check jet is correctable by JPT
00210   if ( fabs(rawJet.eta()) > 2.1) return;
00211   
00212   //get consitiuents of jet
00213   const reco::TrackRefVector& pionsInVertexInCalo = jptJet.getPionsInVertexInCalo();
00214   const reco::TrackRefVector& pionsInVertexOutCalo = jptJet.getPionsInVertexOutCalo();
00215   const reco::TrackRefVector& pionsOutVertexInCalo = jptJet.getPionsOutVertexInCalo();
00216   const reco::TrackRefVector& muonsInVertexInCalo = jptJet.getMuonsInVertexInCalo();
00217   const reco::TrackRefVector& muonsInVertexOutCalo = jptJet.getMuonsInVertexOutCalo();
00218   const reco::TrackRefVector& muonsOutVertexInCalo = jptJet.getMuonsOutVertexInCalo();
00219   const reco::TrackRefVector& electronsInVertexInCalo = jptJet.getElecsInVertexInCalo();
00220   const reco::TrackRefVector& electronsInVertexOutCalo = jptJet.getElecsInVertexOutCalo();
00221   const reco::TrackRefVector& electronsOutVertexInCalo = jptJet.getElecsOutVertexInCalo();
00222   
00223   //check pt against highest values
00224   const double pt = jptJet.pt();
00225   if (pt > pt1) {
00226     pt3 = pt2;
00227     pt2 = pt1;
00228     pt1 = pt;
00229   } else if (pt > pt2) {
00230     pt3 = pt2;
00231     pt2 = pt;
00232   } else if (pt > pt3) {
00233     pt3 = pt;
00234   }
00235   
00236   //fill histograms
00237   try {
00238     const reco::CaloJet& rawCaloJet = dynamic_cast<const reco::CaloJet&>(rawJet);
00239     jetID_->calculate(event,rawCaloJet);
00240   } catch (const std::bad_cast&) {
00241     edm::LogError(messageLoggerCatregory) << "Failed to cast raw jet to CaloJet. JPT Jet does not appear to have been built from a CaloJet. "
00242                                           << "Histograms not filled. ";
00243     return;
00244   }
00245   const bool idPassed = ( (jetID_->n90Hits() >= n90HitsMin_) && (jetID_->fHPD() < fHPDMax_) && (jetID_->restrictedEMF() >= resEMFMin_) );
00246   fillHistogram(JetN90Hits_,jetID_->n90Hits());
00247   fillHistogram(JetfHPD_,jetID_->fHPD());
00248   fillHistogram(JetResEMF_,jetID_->restrictedEMF());
00249   fillHistogram(JetfRBX_,jetID_->fRBX());
00250   if (idPassed) {
00251     const double deltaEta = jptJet.eta() - rawJet.eta();
00252     const double deltaPhi = jptJet.phi() - rawJet.phi();
00253     if (jptJet.pt() > correctedPtMin_) {
00254       fillHistogram(JetE_,jptJet.energy());
00255       fillHistogram(JetEt_,jptJet.et());
00256       fillHistogram(JetP_,jptJet.p());
00257       fillHistogram(JetMass_,jptJet.mass());
00258       fillHistogram(JetPt_,jptJet.pt());
00259       fillHistogram(JetPx_,jptJet.px());
00260       fillHistogram(JetPy_,jptJet.py());
00261       fillHistogram(JetPz_,jptJet.pz());
00262 
00263       fillHistogram(JetEta_,jptJet.eta());
00264       fillHistogram(JetPhi_,jptJet.phi());
00265       fillHistogram(JetDeltaEta_,deltaEta);
00266       fillHistogram(JetDeltaPhi_,deltaPhi);
00267       fillHistogram(JetPhiVsEta_,jptJet.phi(),jptJet.eta());
00268 
00269 
00270       const uint16_t totalTracks = jptJet.chargedMultiplicity();
00271       fillHistogram(NTracksPerJetHisto_,totalTracks);
00272       fillHistogram(NTracksPerJetVsJetEtHisto_,rawJet.et(),totalTracks);
00273       fillHistogram(NTracksPerJetVsJetEtaHisto_,rawJet.eta(),totalTracks);
00274       fillHistogram(CorrFactorHisto_,factorZSPJPT);
00275       fillHistogram(CorrFactorVsJetEtHisto_,rawJet.et(),factorZSPJPT);
00276       fillHistogram(CorrFactorVsJetEtaHisto_,rawJet.eta(),factorZSPJPT);
00277       fillHistogram(ZSPCorrFactorHisto_,factorZSP);
00278       fillHistogram(ZSPCorrFactorVsJetEtHisto_,rawJet.et(),factorZSP);
00279       fillHistogram(ZSPCorrFactorVsJetEtaHisto_,rawJet.eta(),factorZSP);
00280       const double factorJPT = factorZSPJPT / factorZSP;
00281       fillHistogram(JPTCorrFactorHisto_,factorJPT);
00282       fillHistogram(JPTCorrFactorVsJetEtHisto_,rawJet.et(),factorJPT);
00283       fillHistogram(JPTCorrFactorVsJetEtaHisto_,rawJet.eta(),factorJPT);
00284       const double ptFractionInCone = findPtFractionInCone(pionsInVertexInCalo,pionsInVertexOutCalo);
00285       fillHistogram(PtFractionInConeHisto_,ptFractionInCone);
00286       fillHistogram(PtFractionInConeVsJetRawEtHisto_,rawJet.et(),ptFractionInCone);
00287       fillHistogram(PtFractionInConeVsJetEtaHisto_,rawJet.eta(),ptFractionInCone);
00288       //fill track level histograms
00289       fillTrackHistograms(allPionHistograms_,inCaloInVertexPionHistograms_,inCaloOutVertexPionHistograms_,outCaloInVertexPionHistograms_,
00290                           pionsInVertexInCalo,pionsOutVertexInCalo,pionsInVertexOutCalo,rawJet);
00291       fillTrackHistograms(allMuonHistograms_,inCaloInVertexMuonHistograms_,inCaloOutVertexMuonHistograms_,outCaloInVertexMuonHistograms_,
00292                           muonsInVertexInCalo,muonsOutVertexInCalo,muonsInVertexOutCalo,rawJet);
00293       fillTrackHistograms(allElectronHistograms_,inCaloInVertexElectronHistograms_,inCaloOutVertexElectronHistograms_,outCaloInVertexElectronHistograms_,
00294                           electronsInVertexInCalo,electronsOutVertexInCalo,electronsInVertexOutCalo,rawJet);
00295     }
00296   }
00297 }
00298 
00299 void JPTJetAnalyzer::endJob()
00300 {
00301   if(writeDQMStore_) dqm_->save(dqmStoreFileName_);
00302 }
00303 
00304 void JPTJetAnalyzer::getConfigForHistogram(const std::string& configName, const edm::ParameterSet& psetContainingConfigPSet,
00305                                            std::ostringstream* pDebugStream)
00306 {
00307   const std::string psetName = configName+std::string("HistogramConfig");
00308   if (!psetContainingConfigPSet.exists(psetName)) {
00309     edm::LogWarning(messageLoggerCatregory) << "Histogram " << configName << " config not found" << std::endl;
00310     histogramConfig_[configName] = HistogramConfig();
00311   } else {
00312     if (pDebugStream) {
00313       (*pDebugStream) << "Histogram " << configName << " config found and loaded" << std::endl;
00314     }
00315     const edm::ParameterSet& pset = psetContainingConfigPSet.getParameter<edm::ParameterSet>(psetName);
00316     const bool enabled = (pset.exists("Enabled") ? pset.getParameter<bool>("Enabled") : true);
00317     if (!enabled) {
00318       histogramConfig_[configName] = HistogramConfig();
00319       if (pDebugStream) {
00320         (*pDebugStream) << "\tHistogram: " << configName << " Disabled" << std::endl;
00321       }
00322     } else {
00323       const unsigned int nBins = (pset.exists("NBins") ? pset.getParameter<unsigned int>("NBins") : 0);
00324       const double min = (pset.exists("Min") ? pset.getParameter<double>("Min") : 0);
00325       const double max = (pset.exists("Max") ? pset.getParameter<double>("Max") : 0);
00326       const unsigned int nBinsY = (pset.exists("NBinsY") ? pset.getParameter<unsigned int>("NBinsY") : 0);
00327       const double minY = (pset.exists("MinY") ? pset.getParameter<double>("MinY") : 0);
00328       const double maxY = (pset.exists("MaxY") ? pset.getParameter<double>("MaxY") : 0);
00329       if (nBins) {
00330         if (pDebugStream) {
00331           (*pDebugStream) << "\tHistogram: " << configName << "\tEnabled"
00332                           << "\tNBins: " << nBins << "\tMin: " << min << "\tMax: " << max;
00333           if (nBinsY) (*pDebugStream) << "\tNBinsY: " << nBinsY << "\tMinY: " << minY << "\tMaxY: " << maxY;
00334           (*pDebugStream) << std::endl;
00335         }
00336         if (nBinsY) {
00337           histogramConfig_[configName] = HistogramConfig(nBins,min,max,nBinsY,minY,maxY);
00338         } else {
00339           histogramConfig_[configName] = HistogramConfig(nBins,min,max);
00340         }
00341       }
00342     }
00343   }
00344 }
00345 
00346 void JPTJetAnalyzer::getConfigForTrackHistograms(const std::string& tag, const edm::ParameterSet& psetContainingConfigPSet,
00347                                                   std::ostringstream* pDebugStream)
00348 {
00349   getConfigForHistogram("n"+tag+"TracksPerJet",psetContainingConfigPSet,pDebugStream);
00350   getConfigForHistogram(tag+"TrackPt",psetContainingConfigPSet,pDebugStream);
00351   getConfigForHistogram(tag+"TrackPhi",psetContainingConfigPSet,pDebugStream);
00352   getConfigForHistogram(tag+"TrackEta",psetContainingConfigPSet,pDebugStream);
00353   getConfigForHistogram(tag+"TrackNHits",psetContainingConfigPSet,pDebugStream);
00354   getConfigForHistogram(tag+"TrackNLayers",psetContainingConfigPSet,pDebugStream);
00355   getConfigForHistogram(tag+"TrackNLayers",psetContainingConfigPSet,pDebugStream);
00356   getConfigForHistogram(tag+"TrackPtVsEta",psetContainingConfigPSet,pDebugStream);
00357   getConfigForHistogram(tag+"TrackDz",psetContainingConfigPSet,pDebugStream);
00358   getConfigForHistogram(tag+"TrackDxy",psetContainingConfigPSet,pDebugStream);
00359 }
00360 
00361 MonitorElement* JPTJetAnalyzer::bookHistogram(const std::string& name, const std::string& title, const std::string& xAxisTitle, DQMStore* dqm)
00362 {
00363   std::map<std::string,HistogramConfig>::const_iterator configIterator = histogramConfig_.find(name);
00364   if (configIterator == histogramConfig_.end()) {
00365     edm::LogWarning(messageLoggerCatregory) << "Trying to book histogram with name " << name << " when no config was not retrieved from ParameterSet";
00366     return NULL;
00367   }
00368   const HistogramConfig& histoConfig = (*configIterator).second;
00369   if (histoConfig.enabled) {
00370     MonitorElement* histo = dqm->book1D(name,title,histoConfig.nBins,histoConfig.min,histoConfig.max);
00371     histo->setAxisTitle(xAxisTitle,1);
00372     return histo;
00373   } else {
00374     return NULL;
00375   }
00376 }
00377 
00378 MonitorElement* JPTJetAnalyzer::book2DHistogram(const std::string& name, const std::string& title,
00379                                                 const std::string& xAxisTitle, const std::string& yAxisTitle, DQMStore* dqm)
00380 {
00381   std::map<std::string,HistogramConfig>::const_iterator configIterator = histogramConfig_.find(name);
00382   if (configIterator == histogramConfig_.end()) {
00383     edm::LogWarning(messageLoggerCatregory) << "Trying to book histogram with name " << name << " when no config was not retrieved from ParameterSet";
00384     return NULL;
00385   }
00386   const HistogramConfig& histoConfig = (*configIterator).second;
00387   if (histoConfig.enabled) {
00388     MonitorElement* histo = dqm->book2D(name,title,histoConfig.nBins,histoConfig.min,histoConfig.max,histoConfig.nBinsY,histoConfig.minY,histoConfig.maxY);
00389     histo->setAxisTitle(xAxisTitle,1);
00390     histo->setAxisTitle(yAxisTitle,2);
00391     return histo;
00392   } else {
00393     return NULL;
00394   }
00395 }
00396 
00397 MonitorElement* JPTJetAnalyzer::bookProfile(const std::string& name, const std::string& title,
00398                                             const std::string& xAxisTitle, const std::string& yAxisTitle, DQMStore* dqm)
00399 {
00400   std::map<std::string,HistogramConfig>::const_iterator configIterator = histogramConfig_.find(name);
00401   if (configIterator == histogramConfig_.end()) {
00402     edm::LogWarning(messageLoggerCatregory) << "Trying to book histogram with name " << name << " when no config was not retrieved from ParameterSet";
00403     return NULL;
00404   }
00405   const HistogramConfig& histoConfig = (*configIterator).second;
00406   if (histoConfig.enabled) {
00407     TProfile* underlyingRootObject = new TProfile(name.c_str(),title.c_str(),histoConfig.nBins,histoConfig.min,histoConfig.max);
00408     MonitorElement* histo = dqm->bookProfile(name,underlyingRootObject);
00409     histo->setAxisTitle(xAxisTitle,1);
00410     histo->setAxisTitle(yAxisTitle,2);
00411     return histo;
00412   } else {
00413     return NULL;
00414   }
00415 }
00416 
00417 void JPTJetAnalyzer::bookHistograms(DQMStore* dqm)
00418 {
00419   JetE_        = bookHistogram("E","Corrected Jet Energy","E /GeV",dqm);
00420   JetEt_       = bookHistogram("Et","Corrected Jet E_{T}","E_{T} /GeV",dqm);
00421   JetP_        = bookHistogram("P","Corrected Jet Momentum","p /GeV/c",dqm);
00422   JetMass_     = bookHistogram("Mass","Jet mass","Mass /GeV/c^{2}",dqm);
00423   JetPt_       = bookHistogram("Pt","Jet p_{T}","p_{T} /GeV/c",dqm);
00424   JetPt1_      = bookHistogram("Pt1","1st Jet p_{T}","p_{T} /GeV/c",dqm);
00425   JetPt2_      = bookHistogram("Pt2","2nd Jet p_{T}","p_{T} /GeV/c",dqm);
00426   JetPt3_      = bookHistogram("Pt3","3rd Jet p_{T}","p_{T} /GeV/c",dqm);
00427   JetPx_       = bookHistogram("Px","Jet p_{X}","p_{X} /GeV/c",dqm);
00428   JetPy_       = bookHistogram("Py","Jet p_{Y}","p_{Y} /GeV/c",dqm);
00429   JetPz_       = bookHistogram("Pz","Jet p_{Z}","p_{Z} /GeV/c",dqm);
00430   JetEta_      = bookHistogram("Eta","Jet #eta","#eta",dqm);
00431   JetPhi_      = bookHistogram("Phi","Jet #phi","#phi",dqm);
00432   JetDeltaEta_ = bookHistogram("deltaEta","Change in #eta","#Delta #eta",dqm);
00433   JetDeltaPhi_ = bookHistogram("deltaPhi","Change in #phi","#Delta #phi",dqm);
00434   JetPhiVsEta_ = book2DHistogram("PhiVsEta","Corrected jet #phi vs #eta","jet #phi","jet #eta",dqm);
00435   JetN90Hits_  = bookHistogram("N90Hits","Jet N90Hits","N90 Hits",dqm);
00436   JetfHPD_     = bookHistogram("fHPD","Jet fHPD","fHPD",dqm);
00437   JetResEMF_   = bookHistogram("ResEMF","Jet restricted EM fraction","restricted EMF",dqm);
00438   JetfRBX_     = bookHistogram("fRBX","Jet fRBX","fRBX",dqm);
00439 
00440 
00441   TrackSiStripHitStoNHisto_            = bookHistogram("TrackSiStripHitStoN","Signal to noise of track SiStrip hits","S/N",dqm);
00442   InCaloTrackDirectionJetDRHisto_      = bookHistogram("InCaloTrackDirectionJetDR",
00443                                                        "#Delta R between track direrction at vertex and jet axis (track in cone at calo)","#Delta R",dqm);
00444   OutCaloTrackDirectionJetDRHisto_     = bookHistogram("OutCaloTrackDirectionJetDR",
00445                                                        "#Delta R between track direrction at vertex and jet axis (track out of cone at calo)","#Delta R",dqm);
00446   InVertexTrackImpactPointJetDRHisto_  = bookHistogram("InVertexTrackImpactPointJetDR",
00447                                                        "#Delta R between track impact point on calo and jet axis (track in cone at vertex)","#Delta R",dqm);
00448   OutVertexTrackImpactPointJetDRHisto_ = bookHistogram("OutVertexTrackImpactPointJetDR",
00449                                                        "#Delta R between track impact point on calo and jet axis (track out of cone at vertex)","#Delta R",dqm);
00450   
00451   NTracksPerJetHisto_         = bookHistogram("nTracks","Number of tracks for correction per jet","n tracks",dqm);
00452   NTracksPerJetVsJetEtHisto_  = bookProfile("nTracksVsJetEt","Number of tracks for correction per jet vs jet raw E_{T}","Jet raw E_{T} /GeV","n Tracks",dqm);
00453   NTracksPerJetVsJetEtaHisto_ = bookProfile("nTracksVsJetEta","Number of tracks for correction per jet vs jet #eta","Jet #eta","n Tracks",dqm);
00454   
00455   PtFractionInConeHisto_           = bookHistogram("PtFractionInCone","#frac{p_{T}^{in-cone}}{p_{T}^{in-cone}+p_{T}^{out-of-cone}}",
00456                                                  "#frac{p_{T}^{in-cone}}{p_{T}^{in-cone}+p_{T}^{out-of-cone}}",dqm);
00457   PtFractionInConeVsJetRawEtHisto_ = bookProfile("PtFractionInConeVsJetRawEt","#frac{p_{T}^{in-cone}}{p_{T}^{in-cone}+p_{T}^{out-of-cone}} vs jet raw E_{T}",
00458                                                  "Jet raw E_{T} / GeV","#frac{p_{T}^{in-cone}}{p_{T}^{in-cone}+p_{T}^{out-of-cone}}",dqm);
00459   PtFractionInConeVsJetEtaHisto_   = bookProfile("PtFractionInConeVsJetEta","#frac{p_{T}^{in-cone}}{p_{T}^{in-cone}+p_{T}^{out-of-cone}} vs jet #eta",
00460                                                  "Jet #eta","#frac{p_{T}^{in-cone}}{p_{T}^{in-cone}+p_{T}^{out-of-cone}}",dqm);
00461   
00462   CorrFactorHisto_            = bookHistogram("CorrFactor","Correction factor","Correction factor",dqm);
00463   CorrFactorVsJetEtHisto_     = bookProfile("CorrFactorVsJetEt","Correction factor vs jet raw E_{T}","Jet raw E_{T}","#frac{E_{T}^{corr}}{E_{T}^{raw}}",dqm);
00464   CorrFactorVsJetEtaHisto_    = bookProfile("CorrFactorVsJetEta","Correction factor vs jet #eta","Jet #eta","#frac{E_{T}^{corr}}{E_{T}^{raw}}",dqm);
00465   ZSPCorrFactorHisto_         = bookHistogram("ZSPCorrFactor","Correction factor from ZSP step","Correction factor",dqm);
00466   ZSPCorrFactorVsJetEtHisto_  = bookProfile("ZSPCorrFactorVsJetEt","Correction factor from ZSP step vs jet raw E_{T}",
00467                                             "Jet raw E_{T}","#frac{E_{T}^{corr}}{E_{T}^{raw}}",dqm);
00468   ZSPCorrFactorVsJetEtaHisto_ = bookProfile("ZSPCorrFactorVsJetEta","Correction factor from ZSP step vs jet #eta",
00469                                             "Jet #eta","#frac{E_{T}^{corr}}{E_{T}^{raw}}",dqm);
00470   JPTCorrFactorHisto_         = bookHistogram("JPTCorrFactor","Correction factor from JPT step","Correction factor",dqm);
00471   JPTCorrFactorVsJetEtHisto_  = bookProfile("JPTCorrFactorVsJetEt","Correction factor from JPT step vs jet raw E_{T}",
00472                                             "Jet raw E_{T}","#frac{E_{T}^{corr}}{E_{T}^{raw}}",dqm);
00473   JPTCorrFactorVsJetEtaHisto_ = bookProfile("JPTCorrFactorVsJetEta","Correction factor from JPT step vs jet #eta",
00474                                             "Jet #eta","#frac{E_{T}^{corr}}{E_{T}^{raw}}",dqm);
00475 
00476 
00477   
00478   bookTrackHistograms(&allPionHistograms_,"AllPions","pion",NULL,NULL,dqm);
00479   bookTrackHistograms(&inCaloInVertexPionHistograms_,"InCaloInVertexPions","pions in cone at calo and vertex",
00480                       InCaloTrackDirectionJetDRHisto_,InVertexTrackImpactPointJetDRHisto_,dqm);
00481   bookTrackHistograms(&inCaloOutVertexPionHistograms_,"InCaloOutVertexPions","pions in cone at calo but out at vertex",
00482                       InCaloTrackDirectionJetDRHisto_,OutVertexTrackImpactPointJetDRHisto_,dqm);
00483   bookTrackHistograms(&outCaloInVertexPionHistograms_,"OutCaloInVertexPions","pions out of cone at calo but in at vertex",
00484                       OutCaloTrackDirectionJetDRHisto_,InVertexTrackImpactPointJetDRHisto_,dqm);
00485   
00486   bookTrackHistograms(&allMuonHistograms_,"AllMuons","muon",NULL,NULL,dqm);
00487   bookTrackHistograms(&inCaloInVertexMuonHistograms_,"InCaloInVertexMuons","muons in cone at calo and vertex",
00488                       InCaloTrackDirectionJetDRHisto_,InVertexTrackImpactPointJetDRHisto_,dqm);
00489   bookTrackHistograms(&inCaloOutVertexMuonHistograms_,"InCaloOutVertexMuons","muons in cone at calo but out at vertex",
00490                       InCaloTrackDirectionJetDRHisto_,OutVertexTrackImpactPointJetDRHisto_,dqm);
00491   bookTrackHistograms(&outCaloInVertexMuonHistograms_,"OutCaloInVertexMuons","muons out of cone at calo but in at vertex",
00492                       OutCaloTrackDirectionJetDRHisto_,InVertexTrackImpactPointJetDRHisto_,dqm);
00493   
00494   bookTrackHistograms(&allElectronHistograms_,"AllElectrons","electron",NULL,NULL,dqm);
00495   bookTrackHistograms(&inCaloInVertexElectronHistograms_,"InCaloInVertexElectrons","electrons in cone at calo and vertex",
00496                       InCaloTrackDirectionJetDRHisto_,InVertexTrackImpactPointJetDRHisto_,dqm);
00497   bookTrackHistograms(&inCaloOutVertexElectronHistograms_,"InCaloOutVertexElectrons","electrons in cone at calo but out at vertex",
00498                       InCaloTrackDirectionJetDRHisto_,OutVertexTrackImpactPointJetDRHisto_,dqm);
00499   bookTrackHistograms(&outCaloInVertexElectronHistograms_,"OutCaloInVertexElectrons","electrons out of cone at calo but in at vertex",
00500                       OutCaloTrackDirectionJetDRHisto_,InVertexTrackImpactPointJetDRHisto_,dqm);
00501 }
00502 
00503 void JPTJetAnalyzer::bookTrackHistograms(TrackHistograms* histos, const std::string& tag, const std::string& titleTag,
00504                                          MonitorElement* trackDirectionJetDRHisto, MonitorElement* trackImpactPointJetDRHisto, DQMStore* dqm)
00505 {
00506   histos->nTracksHisto = bookHistogram("n"+tag+"TracksPerJet","Number of "+titleTag+" tracks per jet","n Tracks",dqm);
00507   histos->ptHisto = bookHistogram(tag+"TrackPt",titleTag+" p_{T}","p_{T} /GeV/c",dqm);
00508   histos->phiHisto = bookHistogram(tag+"TrackPhi",titleTag+" track #phi","#phi",dqm);
00509   histos->etaHisto = bookHistogram(tag+"TrackEta",titleTag+" track #eta","#eta",dqm);
00510   histos->nHitsHisto = bookHistogram(tag+"TrackNHits",titleTag+" track N hits","N hits",dqm);
00511   histos->nLayersHisto = bookHistogram(tag+"TrackNLayers",titleTag+" track N layers with hits","N layers",dqm);
00512   histos->ptVsEtaHisto = bookProfile(tag+"TrackPtVsEta",titleTag+" track p_{T} vs #eta","#eta","p_{T} /GeV/c",dqm);
00513   histos->dzHisto = bookHistogram(tag+"TrackDz",titleTag+" track dz","dz /cm",dqm);
00514   histos->dxyHisto = bookHistogram(tag+"TrackDxy",titleTag+" track dxy","dxy /cm",dqm);
00515   histos->trackDirectionJetDRHisto = trackDirectionJetDRHisto;
00516   histos->trackImpactPointJetDRHisto = trackImpactPointJetDRHisto;
00517 }
00518 
00519 void JPTJetAnalyzer::fillTrackHistograms(TrackHistograms& allTracksHistos, TrackHistograms& inCaloInVertexHistos,
00520                                          TrackHistograms& inCaloOutVertexHistos, TrackHistograms& outCaloInVertexHistos,
00521                                          const reco::TrackRefVector& inVertexInCalo,
00522                                          const reco::TrackRefVector& outVertexInCalo,
00523                                          const reco::TrackRefVector& inVertexOutCalo,
00524                                          const reco::Jet& rawJet)
00525 {
00526   fillTrackHistograms(allTracksHistos,inVertexInCalo,rawJet);
00527   fillTrackHistograms(allTracksHistos,outVertexInCalo,rawJet);
00528   fillTrackHistograms(allTracksHistos,inVertexOutCalo,rawJet);
00529   fillHistogram(allTracksHistos.nTracksHisto,inVertexInCalo.size()+outVertexInCalo.size()+inVertexOutCalo.size());
00530   fillSiStripSoNForTracks(inVertexInCalo);
00531   fillSiStripSoNForTracks(outVertexInCalo);
00532   fillSiStripSoNForTracks(inVertexOutCalo);
00533   fillTrackHistograms(inCaloInVertexHistos,inVertexInCalo,rawJet);
00534   fillHistogram(inCaloInVertexHistos.nTracksHisto,inVertexInCalo.size());
00535   fillTrackHistograms(inCaloOutVertexHistos,outVertexInCalo,rawJet);
00536   fillHistogram(inCaloOutVertexHistos.nTracksHisto,outVertexInCalo.size());
00537   fillTrackHistograms(outCaloInVertexHistos,inVertexOutCalo,rawJet);
00538   fillHistogram(outCaloInVertexHistos.nTracksHisto,inVertexOutCalo.size());
00539 }
00540 
00541 void JPTJetAnalyzer::fillTrackHistograms(TrackHistograms& histos, const reco::TrackRefVector& tracks, const reco::Jet& rawJet)
00542 {
00543   const reco::TrackRefVector::const_iterator tracksEnd = tracks.end();
00544   for (reco::TrackRefVector::const_iterator iTrack = tracks.begin(); iTrack != tracksEnd; ++iTrack) {
00545     const reco::Track& track = **iTrack;
00546     const double pt = track.pt();
00547     const double phi = track.phi();
00548     const double eta = track.eta();
00549     const unsigned int nHits = track.found();
00550     const unsigned int nLayers = track.hitPattern().trackerLayersWithMeasurement();
00551     const double dz = track.dz();
00552     const double dxy = track.dxy();
00553     fillHistogram(histos.ptHisto,pt);
00554     fillHistogram(histos.phiHisto,phi);
00555     fillHistogram(histos.etaHisto,eta);
00556     fillHistogram(histos.nHitsHisto,nHits);
00557     fillHistogram(histos.nLayersHisto,nLayers);
00558     fillHistogram(histos.ptVsEtaHisto,eta,pt);
00559     fillHistogram(histos.dzHisto,dz);
00560     fillHistogram(histos.dxyHisto,dxy);
00561     const double trackDirectionJetDR = deltaR(rawJet,track);
00562     fillHistogram(histos.trackDirectionJetDRHisto,trackDirectionJetDR);
00563     const double impactPointJetDR = deltaR(rawJet,trackPropagator_->impactPoint(track));
00564     fillHistogram(histos.trackImpactPointJetDRHisto,impactPointJetDR);
00565   }
00566 }
00567 
00568 void JPTJetAnalyzer::fillSiStripSoNForTracks(const reco::TrackRefVector& tracks)
00569 {
00570   const reco::TrackRefVector::const_iterator tracksEnd = tracks.end();
00571   for (reco::TrackRefVector::const_iterator iTrack = tracks.begin(); iTrack != tracksEnd; ++iTrack) {
00572     const trackingRecHit_iterator trackRecHitsEnd = (*iTrack)->recHitsEnd();
00573     for (trackingRecHit_iterator iHit = (*iTrack)->recHitsBegin(); iHit != trackRecHitsEnd; ++iHit) {
00574       fillSiStripHitSoN(**iHit);
00575     }
00576   }
00577 }
00578 
00579 void JPTJetAnalyzer::fillSiStripHitSoN(const TrackingRecHit& hit)
00580 {
00581   //check it is an SiStrip hit
00582   DetId detId(hit.geographicalId());
00583   if (!( (detId.det() == DetId::Tracker) &&
00584         ( (detId.subdetId() == SiStripDetId::TIB) ||
00585           (detId.subdetId() == SiStripDetId::TID) ||
00586           (detId.subdetId() == SiStripDetId::TOB) ||
00587           (detId.subdetId() == SiStripDetId::TEC)
00588         )
00589      )) return;
00590   //try to determine the type of the hit
00591   const TrackingRecHit* pHit = &hit;
00592   const SiStripRecHit2D* pRecHit2D = dynamic_cast<const SiStripRecHit2D*>(pHit);
00593   const SiStripMatchedRecHit2D* pMatchedRecHit2D = dynamic_cast<const SiStripMatchedRecHit2D*>(pHit);
00594   const ProjectedSiStripRecHit2D* pProjctedRecHit2D = dynamic_cast<const ProjectedSiStripRecHit2D*>(pHit);
00595   const InvalidTrackingRecHit* pInvalidHit = dynamic_cast<const InvalidTrackingRecHit*>(pHit);
00596   //fill signal to noise for appropriate hit
00597   if (pMatchedRecHit2D) {
00598     fillSiStripHitSoNForSingleHit(pMatchedRecHit2D->monoHit());
00599     fillSiStripHitSoNForSingleHit(pMatchedRecHit2D->stereoHit());
00600   } else if (pProjctedRecHit2D) {
00601     fillSiStripHitSoNForSingleHit(pProjctedRecHit2D->originalHit());
00602   } else if (pRecHit2D) {
00603     fillSiStripHitSoNForSingleHit(*pRecHit2D);
00604   } else if (pInvalidHit) {
00605     return;
00606   } else {
00607     edm::LogInfo(messageLoggerCatregory) << "Hit on det ID " << hit.geographicalId().rawId() << " cannot be converted to a strip hit";
00608   }
00609 }
00610 
00611 void JPTJetAnalyzer::fillSiStripHitSoNForSingleHit(const SiStripRecHit2D& hit)
00612 {
00613   //get the cluster
00614   const SiStripCluster* cluster = NULL;
00615   const SiStripRecHit2D::ClusterRegionalRef& regionalClusterRef = hit.cluster_regional();
00616   const SiStripRecHit2D::ClusterRef& normalClusterRef = hit.cluster();
00617   if (regionalClusterRef.isNonnull()) {
00618     cluster = &*regionalClusterRef;
00619   } else if (normalClusterRef.isNonnull()) {
00620     cluster = &*normalClusterRef;
00621   } else {
00622     edm::LogError(messageLoggerCatregory) << "Unable to get cluster from SiStripRecHit2D with det ID " << hit.geographicalId().rawId();
00623     return;
00624   }
00625   //calculate signal to noise for cluster
00626   const double sOverN = (*sOverNCalculator_)(*cluster,hit.geographicalId());
00627   //fill histogram
00628   fillHistogram(TrackSiStripHitStoNHisto_,sOverN);
00629 }
00630 
00631 double JPTJetAnalyzer::findPtFractionInCone(const reco::TrackRefVector& inConeTracks, const reco::TrackRefVector& outOfConeTracks)
00632 {
00633   double totalPt = 0;
00634   double inConePt = 0;
00635   const reco::TrackRefVector::const_iterator inConeTracksEnd = inConeTracks.end();
00636   for (reco::TrackRefVector::const_iterator iInConeTrack = inConeTracks.begin(); iInConeTrack != inConeTracksEnd; ++iInConeTrack) {
00637     const double pt = (*iInConeTrack)->pt();
00638     totalPt += pt;
00639     inConePt += pt;
00640   }
00641   const reco::TrackRefVector::const_iterator outOfConeTracksEnd = outOfConeTracks.end();
00642   for (reco::TrackRefVector::const_iterator iOutOfConeTrack = outOfConeTracks.begin(); iOutOfConeTrack != outOfConeTracksEnd; ++iOutOfConeTrack) {
00643     const double pt = (*iOutOfConeTrack)->pt();
00644     totalPt += pt;
00645   }
00646   if (totalPt) return inConePt/totalPt;
00647   //return 0 if there are no tracks at all
00648   else return 0;
00649 }
00650 
00651 
00652 
00653 JPTJetAnalyzer::HistogramConfig::HistogramConfig()
00654   : enabled(false),
00655     nBins(0),
00656     min(0),
00657     max(0),
00658     nBinsY(0),
00659     minY(0),
00660     maxY(0)
00661 {}
00662 
00663 JPTJetAnalyzer::HistogramConfig::HistogramConfig(const unsigned int theNBins, const double theMin, const double theMax)
00664   : enabled(true),
00665     nBins(theNBins),
00666     min(theMin),
00667     max(theMax),
00668     nBinsY(0),
00669     minY(0),
00670     maxY(0)
00671 {}
00672 
00673 JPTJetAnalyzer::HistogramConfig::HistogramConfig(const unsigned int theNBinsX, const double theMinX, const double theMaxX,
00674                                                  const unsigned int theNBinsY, const double theMinY, const double theMaxY)
00675   : enabled(true),
00676     nBins(theNBinsX),
00677     min(theMinX),
00678     max(theMaxX),
00679     nBinsY(theNBinsY),
00680     minY(theMinY),
00681     maxY(theMaxY)
00682 {}
00683 
00684 JPTJetAnalyzer::TrackHistograms::TrackHistograms()
00685   : ptHisto(NULL),
00686     phiHisto(NULL),
00687     etaHisto(NULL),
00688     nHitsHisto(NULL),
00689     nLayersHisto(NULL),
00690     ptVsEtaHisto(NULL),
00691     dzHisto(NULL),
00692     dxyHisto(NULL),
00693     trackDirectionJetDRHisto(NULL),
00694     trackImpactPointJetDRHisto(NULL)
00695 {}
00696 
00697 JPTJetAnalyzer::TrackHistograms::TrackHistograms(MonitorElement* theNTracksHisto,
00698                                                  MonitorElement* thePtHisto, MonitorElement* thePhiHisto, MonitorElement* theEtaHisto,
00699                                                  MonitorElement* theNHitsHisto, MonitorElement* theNLayersHisto, MonitorElement* thePtVsEtaHisto,
00700                                                  MonitorElement* theDzHisto, MonitorElement* theDxyHisto,
00701                                                  MonitorElement* theTrackDirectionJetDRHisto, MonitorElement* theTrackImpactPointJetDRHisto)
00702   : nTracksHisto(theNTracksHisto),
00703     ptHisto(thePtHisto),
00704     phiHisto(thePhiHisto),
00705     etaHisto(theEtaHisto),
00706     nHitsHisto(theNHitsHisto),
00707     nLayersHisto(theNLayersHisto),
00708     ptVsEtaHisto(thePtVsEtaHisto),
00709     dzHisto(theDzHisto),
00710     dxyHisto(theDxyHisto),
00711     trackDirectionJetDRHisto(theTrackDirectionJetDRHisto),
00712     trackImpactPointJetDRHisto(theTrackImpactPointJetDRHisto)
00713 {}
00714 
00715 namespace jptJetAnalysis {
00716   
00717   TrackPropagatorToCalo::TrackPropagatorToCalo()
00718     : magneticField_(NULL),
00719       propagator_(NULL),
00720       magneticFieldCacheId_(0),
00721       propagatorCacheId_(0)
00722     {}
00723   
00724   void TrackPropagatorToCalo::update(const edm::EventSetup& eventSetup)
00725   {
00726     //update magnetic filed if necessary
00727     const IdealMagneticFieldRecord& magneticFieldRecord = eventSetup.get<IdealMagneticFieldRecord>();
00728     const uint32_t newMagneticFieldCacheId = magneticFieldRecord.cacheIdentifier();
00729     if ((newMagneticFieldCacheId != magneticFieldCacheId_) || !magneticField_) {
00730       edm::ESHandle<MagneticField> magneticFieldHandle;
00731       magneticFieldRecord.get(magneticFieldHandle);
00732       magneticField_ = magneticFieldHandle.product();
00733       magneticFieldCacheId_ = newMagneticFieldCacheId;
00734     }
00735     //update propagator if necessary
00736     const TrackingComponentsRecord& trackingComponentsRecord = eventSetup.get<TrackingComponentsRecord>();
00737     const uint32_t newPropagatorCacheId = trackingComponentsRecord.cacheIdentifier();
00738     if ((propagatorCacheId_ != newPropagatorCacheId) || !propagator_) {
00739       edm::ESHandle<Propagator> propagatorHandle;
00740       trackingComponentsRecord.get("SteppingHelixPropagatorAlong",propagatorHandle);
00741       propagator_ = propagatorHandle.product();
00742       propagatorCacheId_ = newPropagatorCacheId;
00743     }
00744   }
00745   
00746   inline math::XYZPoint TrackPropagatorToCalo::impactPoint(const reco::Track& track) const
00747   {
00748     return JetTracksAssociationDRCalo::propagateTrackToCalorimeter(track,*magneticField_,*propagator_);
00749   }
00750   
00751   StripSignalOverNoiseCalculator::StripSignalOverNoiseCalculator(const std::string& theQualityLabel)
00752     : qualityLabel_(theQualityLabel),
00753       quality_(NULL),
00754       noise_(NULL),
00755       gain_(NULL),
00756       qualityCacheId_(0),
00757       noiseCacheId_(0),
00758       gainCacheId_(0)
00759     {}
00760   
00761   void StripSignalOverNoiseCalculator::update(const edm::EventSetup& eventSetup)
00762   {
00763     //update the quality if necessary
00764     const SiStripQualityRcd& qualityRecord = eventSetup.get<SiStripQualityRcd>();
00765     const uint32_t newQualityCacheId = qualityRecord.cacheIdentifier();
00766     if ((newQualityCacheId != qualityCacheId_) || !quality_) {
00767       edm::ESHandle<SiStripQuality> qualityHandle;
00768       qualityRecord.get(qualityLabel_,qualityHandle);
00769       quality_ = qualityHandle.product();
00770       qualityCacheId_ = newQualityCacheId;
00771     }
00772     //update the noise if necessary
00773     const SiStripNoisesRcd& noiseRecord = eventSetup.get<SiStripNoisesRcd>();
00774     const uint32_t newNoiseCacheId = noiseRecord.cacheIdentifier();
00775     if ((newNoiseCacheId != noiseCacheId_) || !noise_) {
00776       edm::ESHandle<SiStripNoises> noiseHandle;
00777       noiseRecord.get(noiseHandle);
00778       noise_ = noiseHandle.product();
00779       noiseCacheId_ = newNoiseCacheId;
00780     }
00781     //update the gain if necessary
00782     const SiStripGainRcd& gainRecord = eventSetup.get<SiStripGainRcd>();
00783     const uint32_t newGainCacheId = gainRecord.cacheIdentifier();
00784     if ((newGainCacheId != gainCacheId_) || !gain_) {
00785       edm::ESHandle<SiStripGain> gainHandle;
00786       gainRecord.get(gainHandle);
00787       gain_ = gainHandle.product();
00788       gainCacheId_ = newGainCacheId;
00789     }
00790   }
00791   
00792   double StripSignalOverNoiseCalculator::signalOverNoise(const SiStripCluster& cluster,
00793                                                          const uint32_t& detId) const
00794   {
00795     //const uint32_t detId = cluster.geographicalId();
00796     
00797     const uint16_t firstStrip = cluster.firstStrip();
00798     const SiStripQuality::Range& qualityRange = quality_->getRange(detId);
00799     const SiStripNoises::Range& noiseRange = noise_->getRange(detId);
00800     const SiStripApvGain::Range& gainRange = gain_->getRange(detId);
00801     double signal = 0;
00802     double noise2 = 0;
00803     unsigned int nNonZeroStrips = 0;
00804     const std::vector<uint8_t>& clusterAmplitudes = cluster.amplitudes();
00805     const std::vector<uint8_t>::const_iterator clusterAmplitudesEnd = clusterAmplitudes.end();
00806     const std::vector<uint8_t>::const_iterator clusterAmplitudesBegin = clusterAmplitudes.begin();
00807     for (std::vector<uint8_t>::const_iterator iAmp = clusterAmplitudesBegin; iAmp != clusterAmplitudesEnd; ++iAmp) {
00808       const uint8_t adc = *iAmp;
00809       const uint16_t strip = iAmp-clusterAmplitudesBegin+firstStrip;
00810       const bool stripBad = quality_->IsStripBad(qualityRange,strip);
00811       const double noise = noise_->getNoise(strip,noiseRange);
00812       const double gain = gain_->getStripGain(strip,gainRange);
00813       signal += adc;
00814       if (adc) ++nNonZeroStrips;
00815       const double noiseContrib = (stripBad ? 0 : noise/gain);
00816       noise2 += noiseContrib*noiseContrib;
00817     }
00818     const double noise = sqrt(noise2/nNonZeroStrips);
00819     if (noise) return signal/noise;
00820     else return 0;
00821   }
00822   
00823 }