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ValidationMisalignedTracker.cc

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00001 // -*- C++ -*-
00002 //
00003 // Package:    ValidationMisalignedTracker
00004 // Class:      ValidationMisalignedTracker
00005 // 
00013 //
00014 // Original Author:  Nicola De Filippis
00015 //         Created:  Thu Dec 14 13:13:32 CET 2006
00016 // $Id: ValidationMisalignedTracker.cc,v 1.1 2008/02/27 17:36:46 ebutz Exp $
00017 //
00018 //
00019 
00020 
00021 #include "Alignment/OfflineValidation/plugins/ValidationMisalignedTracker.h"
00022 
00023 
00024 // user include files
00025 
00026 #include "DataFormats/TrackReco/interface/Track.h"
00027 #include "SimDataFormats/Track/interface/SimTrackContainer.h"
00028 #include "SimTracker/Records/interface/TrackAssociatorRecord.h"
00029 #include "SimDataFormats/TrackingAnalysis/interface/TrackingParticle.h"
00030 
00031 #include "FWCore/MessageLogger/interface/MessageLogger.h"
00032 #include "FWCore/Framework/interface/MakerMacros.h"
00033 #include "TrackingTools/TrajectoryState/interface/FreeTrajectoryState.h"
00034 #include "TrackingTools/PatternTools/interface/TSCPBuilderNoMaterial.h"
00035 #include "Geometry/TrackerGeometryBuilder/interface/TrackerGeometry.h"
00036 #include "Geometry/CommonDetUnit/interface/GeomDet.h"
00037 
00038 using namespace edm;
00039 using namespace std;
00040 using namespace reco;
00041 
00042 //
00043 // constructors and destructor
00044 //
00045 ValidationMisalignedTracker::ValidationMisalignedTracker(const edm::ParameterSet& iConfig)
00046 {
00047 
00048   //now do what ever initialization is needed
00049   mzmu=0.,recmzmu=0.,ptzmu=0.,recptzmu=0.,etazmu=0.,recetazmu=0., thetazmu=0.,recthetazmu=0.,phizmu=0.,recphizmu=0.;
00050   recenezmu=0., enezmu=0., pLzmu=0., recpLzmu=0.,yzmu=0.,recyzmu=0.,mxptmu=0.,recmxptmu=0., minptmu=0.,recminptmu=0.;
00051   // mzele=0.,recmzele=0.
00052   
00053   flag=0,flagrec=0,count=0,countrec=0;
00054   nAssoc=0;
00055 
00056   for (int i=0;i<2;i++){
00057     countpart[i]=0;
00058     countpartrec[i]=0; 
00059     for (int j=0;j<2;j++){
00060       ene[i][j]=0.;
00061       p[i][j]=0.;
00062       px[i][j]=0.;
00063       py[i][j]=0.; 
00064       pz[i][j]=0.;
00065       ptmu[i][j]=0.; 
00066       recene[i][j]=0.;
00067       recp[i][j]=0.;
00068       recpx[i][j]=0.;
00069       recpy[i][j]=0.; 
00070       recpz[i][j]=0.;       
00071       recptmu[i][j]=0.;
00072     }
00073   }
00074 
00075 
00076   eventCount_ = 0; 
00077 
00078   selection_eff    = iConfig.getUntrackedParameter<bool>("selection_eff","false");
00079   selection_fake   = iConfig.getUntrackedParameter<bool>("selection_fake","true");
00080   ZmassSelection_  = iConfig.getUntrackedParameter<bool>("ZmassSelection","false");
00081   simobject        = iConfig.getUntrackedParameter<string>("simobject","g4SimHits");
00082   trackassociator  = iConfig.getUntrackedParameter<string>("TrackAssociator","ByHits");
00083   associators      = iConfig.getParameter< std::vector<std::string> >("associators");
00084   label            = iConfig.getParameter< std::vector<edm::InputTag> >("label");
00085   label_tp_effic   = iConfig.getParameter< edm::InputTag >("label_tp_effic");
00086   label_tp_fake    = iConfig.getParameter< edm::InputTag >("label_tp_fake");
00087 
00088   rootfile_   = iConfig.getUntrackedParameter<string>("rootfile","myroot.root");
00089   file_ = new TFile(rootfile_.c_str(),"RECREATE");
00090   
00091   // initialize the tree
00092   tree_eff = new TTree("EffTracks","Efficiency Tracks Tree");
00093 
00094   tree_eff->Branch("Run",&irun,"irun/i");
00095   tree_eff->Branch("Event",&ievt,"ievt/i");
00096 
00097   // SimTrack
00098   tree_eff->Branch("TrackID",&trackType,"trackType/i");
00099   tree_eff->Branch("pt",&pt,"pt/F");
00100   tree_eff->Branch("eta",&eta,"eta/F");
00101   tree_eff->Branch("CotTheta",&cottheta,"cottheta/F");
00102   tree_eff->Branch("phi",&phi,"phi/F");
00103   tree_eff->Branch("d0",&d0,"d0/F");
00104   tree_eff->Branch("z0",&z0,"z0/F"); 
00105   tree_eff->Branch("nhit",&nhit,"nhit/i");
00106     
00107   // RecTrack
00108   tree_eff->Branch("recpt",&recpt,"recpt/F");
00109   tree_eff->Branch("receta",&receta,"receta/F");
00110   tree_eff->Branch("CotRecTheta",&reccottheta,"reccottheta/F");
00111   tree_eff->Branch("recphi",&recphi,"recphi/F");
00112   tree_eff->Branch("recd0",& recd0,"recd0/F");
00113   tree_eff->Branch("recz0",& recz0,"recz0/F");
00114   tree_eff->Branch("nAssoc",&nAssoc,"nAssoc/i");
00115   tree_eff->Branch("recnhit",&recnhit,"recnhit/i");
00116   tree_eff->Branch("CHISQ",&recchiq,"recchiq/F");
00117 
00118   tree_eff->Branch("reseta",&reseta,"reseta/F");
00119   tree_eff->Branch("respt",&respt,"respt/F");
00120   tree_eff->Branch("resd0",&resd0,"resd0/F");
00121   tree_eff->Branch("resz0",&resz0,"resz0/F");
00122   tree_eff->Branch("resphi",&resphi,"resphi/F");
00123   tree_eff->Branch("rescottheta",&rescottheta,"rescottheta/F");
00124   tree_eff->Branch("eff",&eff,"eff/F");
00125 
00126   // Invariant masses, pt of Z
00127   tree_eff->Branch("mzmu",&mzmu,"mzmu/F");
00128   tree_eff->Branch("ptzmu",&ptzmu,"ptzmu/F");
00129   tree_eff->Branch("pLzmu",&pLzmu,"pLzmu/F");
00130   tree_eff->Branch("enezmu",&enezmu,"enezmu/F");
00131   tree_eff->Branch("etazmu",&etazmu,"etazmu/F");
00132   tree_eff->Branch("thetazmu",&thetazmu,"thetazmu/F");
00133   tree_eff->Branch("phizmu",&phizmu,"phizmu/F");
00134   tree_eff->Branch("yzmu",&yzmu,"yzmu/F");
00135   tree_eff->Branch("mxptmu",&mxptmu,"mxptmu/F");
00136   tree_eff->Branch("minptmu",&minptmu,"minptmu/F");
00137 
00138   tree_eff->Branch("recmzmu",&recmzmu,"recmzmu/F");
00139   tree_eff->Branch("recptzmu",&recptzmu,"recptzmu/F");
00140   tree_eff->Branch("recpLzmu",&recpLzmu,"recpLzmu/F");  
00141   tree_eff->Branch("recenezmu",&recenezmu,"recenezmu/F");
00142   tree_eff->Branch("recetazmu",&recetazmu,"recetazmu/F");
00143   tree_eff->Branch("recthetazmu",&recthetazmu,"recthetazmu/F");
00144   tree_eff->Branch("recphizmu",&recphizmu,"recphizmu/F");
00145   tree_eff->Branch("recyzmu",&recyzmu,"recyzmu/F");
00146   tree_eff->Branch("recmxptmu",&recmxptmu,"recmxptmu/F");   
00147   tree_eff->Branch("recminptmu",&recminptmu,"recminptmu/F");       
00148 
00149 
00150   //tree->Branch("mzele",&ntmzele,"ntmzele/F");
00151   //tree->Branch("recmzele",&ntmzeleRec,"ntmzeleRec/F");
00152   tree_eff->Branch("chi2Associator",&recchiq,"recchiq/F");
00153 
00154   // Fake
00155 
00156   tree_fake = new TTree("FakeTracks","Fake Rate Tracks Tree");
00157 
00158   tree_fake->Branch("Run",&irun,"irun/i");
00159   tree_fake->Branch("Event",&ievt,"ievt/i");
00160 
00161   // SimTrack
00162   tree_fake->Branch("fakeTrackID",&faketrackType,"faketrackType/i");
00163   tree_fake->Branch("fakept",&fakept,"fakept/F");
00164   tree_fake->Branch("fakeeta",&fakeeta,"fakeeta/F");
00165   tree_fake->Branch("fakeCotTheta",&fakecottheta,"fakecottheta/F");
00166   tree_fake->Branch("fakephi",&fakephi,"fakephi/F");
00167   tree_fake->Branch("faked0",&faked0,"faked0/F");
00168   tree_fake->Branch("fakez0",&fakez0,"fakez0/F"); 
00169   tree_fake->Branch("fakenhit",&fakenhit,"fakenhit/i");
00170     
00171   // RecTrack
00172   tree_fake->Branch("fakerecpt",&fakerecpt,"fakerecpt/F");
00173   tree_fake->Branch("fakereceta",&fakereceta,"fakereceta/F");
00174   tree_fake->Branch("fakeCotRecTheta",&fakereccottheta,"fakereccottheta/F");
00175   tree_fake->Branch("fakerecphi",&fakerecphi,"fakerecphi/F");
00176   tree_fake->Branch("fakerecd0",& fakerecd0,"fakerecd0/F");
00177   tree_fake->Branch("fakerecz0",& fakerecz0,"fakerecz0/F");
00178   tree_fake->Branch("fakenAssoc",&fakenAssoc,"fakenAssoc/i");
00179   tree_fake->Branch("fakerecnhit",&fakerecnhit,"fakerecnhit/i");
00180   tree_fake->Branch("fakeCHISQ",&fakerecchiq,"fakerecchiq/F");
00181 
00182   tree_fake->Branch("fakereseta",&fakereseta,"fakereseta/F");
00183   tree_fake->Branch("fakerespt",&fakerespt,"fakerespt/F");
00184   tree_fake->Branch("fakeresd0",&fakeresd0,"fakeresd0/F");
00185   tree_fake->Branch("fakeresz0",&fakeresz0,"fakeresz0/F");
00186   tree_fake->Branch("fakeresphi",&fakeresphi,"fakeresphi/F");
00187   tree_fake->Branch("fakerescottheta",&fakerescottheta,"fakerescottheta/F");
00188   tree_fake->Branch("fake",&fake,"fake/F");
00189 
00190   // Invariant masses, pt of Z
00191   tree_fake->Branch("fakemzmu",&fakemzmu,"fakemzmu/F");
00192   tree_fake->Branch("fakeptzmu",&fakeptzmu,"fakeptzmu/F");
00193   tree_fake->Branch("fakepLzmu",&fakepLzmu,"fakepLzmu/F");
00194   tree_fake->Branch("fakeenezmu",&fakeenezmu,"fakeenezmu/F");
00195   tree_fake->Branch("fakeetazmu",&fakeetazmu,"fakeetazmu/F");
00196   tree_fake->Branch("fakethetazmu",&fakethetazmu,"fakethetazmu/F");
00197   tree_fake->Branch("fakephizmu",&fakephizmu,"fakephizmu/F");
00198   tree_fake->Branch("fakeyzmu",&fakeyzmu,"fakeyzmu/F");
00199   tree_fake->Branch("fakemxptmu",&fakemxptmu,"fakemxptmu/F");
00200   tree_fake->Branch("fakeminptmu",&fakeminptmu,"fakeminptmu/F");
00201 
00202   tree_fake->Branch("fakerecmzmu",&fakerecmzmu,"fakerecmzmu/F");
00203   tree_fake->Branch("fakerecptzmu",&fakerecptzmu,"fakerecptzmu/F");
00204   tree_fake->Branch("fakerecpLzmu",&fakerecpLzmu,"fakerecpLzmu/F");  
00205   tree_fake->Branch("fakerecenezmu",&fakerecenezmu,"fakerecenezmu/F");
00206   tree_fake->Branch("fakerecetazmu",&fakerecetazmu,"fakerecetazmu/F");
00207   tree_fake->Branch("fakerecthetazmu",&fakerecthetazmu,"fakerecthetazmu/F");
00208   tree_fake->Branch("fakerecphizmu",&fakerecphizmu,"fakerecphizmu/F");
00209   tree_fake->Branch("fakerecyzmu",&fakerecyzmu,"fakerecyzmu/F");
00210   tree_fake->Branch("fakerecmxptmu",&fakerecmxptmu,"fakerecmxptmu/F");   
00211   tree_fake->Branch("fakerecminptmu",&fakerecminptmu,"fakerecminptmu/F");       
00212 
00213   tree_fake->Branch("fakechi2Associator",&fakerecchiq,"fakerecchiq/F");
00214 
00215 }
00216 
00217 
00218 ValidationMisalignedTracker::~ValidationMisalignedTracker()
00219 {
00220  
00221  
00222   std::cout << "ValidationMisalignedTracker::endJob Processed " << eventCount_
00223             << " events" << std::endl;
00224                                                                                                                    
00225   // store the tree in the output file
00226   file_->Write();
00227                                                                                                                    
00228   
00229   // Closing the file deletes the tree.
00230   file_->Close();
00231   tree_eff=0;
00232   tree_fake=0;
00233 }
00234 
00235 
00236 //
00237 // member functions
00238 //
00239 
00240 // ------------ method called once each job just before starting event loop  ------------
00241 void 
00242 ValidationMisalignedTracker::beginJob(const edm::EventSetup & iSetup)
00243 {
00244  
00245   edm::ESHandle<TrackAssociatorBase> theAssociator;
00246   for (unsigned int w=0;w<associators.size();w++) {
00247     iSetup.get<TrackAssociatorRecord>().get(associators[w],theAssociator);
00248     associatore.push_back( (const TrackAssociatorBase *) theAssociator.product() );
00249   }
00250   
00251 
00252 }
00253 
00254 // ------------ method called to for each event  ------------
00255 void
00256 ValidationMisalignedTracker::analyze(const edm::Event& iEvent, const edm::EventSetup& iSetup)
00257 {
00258    using namespace edm;
00259   
00260    edm::LogInfo("Tracker Misalignment Validation") << "\n Starting!";
00261 
00262    // Monte Carlo Z selection
00263    skip=false;
00264    vector<int> indmu;
00265    
00266    if ( selection_eff && ZmassSelection_){ 
00267      Handle<HepMCProduct> evt;
00268      iEvent.getByLabel("source", evt);
00269      bool accepted = false;
00270      bool skip=false;
00271      bool foundmuons=false;
00272      HepMC::GenEvent * myGenEvent = new  HepMC::GenEvent(*(evt->GetEvent()));
00273      
00274      for ( HepMC::GenEvent::particle_iterator p = myGenEvent->particles_begin(); p != myGenEvent->particles_end(); ++p ) { 
00275        if ( !accepted && ( (*p)->pdg_id() == 23 ) && (*p)->status() == 3 ) { 
00276          accepted=true;
00277          for( HepMC::GenVertex::particle_iterator aDaughter=(*p)->end_vertex()->particles_begin(HepMC::descendants); aDaughter !=(*p)->end_vertex()->particles_end(HepMC::descendants);aDaughter++){
00278            if ( abs((*aDaughter)->pdg_id())==13) {
00279              foundmuons=true;
00280              if ((*aDaughter)->status()!=1 ) {
00281                for( HepMC::GenVertex::particle_iterator byaDaughter=(*aDaughter)->end_vertex()->particles_begin(HepMC::descendants); byaDaughter !=(*aDaughter)->end_vertex()->particles_end(HepMC::descendants);byaDaughter++){
00282                  if ((*byaDaughter)->status()==1 && abs((*byaDaughter)->pdg_id())==13) {                   
00283                    indmu.push_back((*byaDaughter)->barcode());
00284                    cout << "Stable muon from Z with charge " <<  (*byaDaughter)->pdg_id()  << " and index "<< (*byaDaughter)->barcode() << endl;
00285                  }
00286                }
00287              }
00288              else {            
00289                indmu.push_back((*aDaughter)->barcode());
00290                cout << "Stable muon from Z with charge " <<  (*aDaughter)->pdg_id() << " and index "<< (*aDaughter)->barcode() << endl; 
00291              }       
00292            }               
00293          }
00294          if (!foundmuons){
00295            cout << "No muons from Z ...skip event" << endl;
00296            skip=true;
00297          } 
00298        }
00299      }     
00300      if ( !accepted) {
00301        cout << "No Z particles in the event ...skip event" << endl;
00302        skip=true;
00303      }   
00304    }
00305    else {
00306      skip=false;
00307    }
00308    
00309    //
00310    // Retrieve tracker geometry from event setup
00311    //
00312    edm::ESHandle<TrackerGeometry> trackerGeometry;
00313    iSetup.get<TrackerDigiGeometryRecord>().get( trackerGeometry );
00314    GeomDet* testGeomDet = trackerGeometry->detsTOB().front();
00315    std::cout << testGeomDet->position() << std::endl;
00316    
00317    
00318    //Dump Run and Event
00319    irun=iEvent.id().run();
00320    ievt=iEvent.id().event();
00321 
00322    // Reset tree variables
00323    int countpart[2]={0,0},countpartrec[2]={0,0},flag=0,flagrec=0,count=0,countrec=0;
00324    //int countsim=0;
00325    float ene[2][2],p[2][2],px[2][2],py[2][2],pz[2][2],ptmu[2][2];
00326    float recene[2][2],recp[2][2],recpx[2][2],recpy[2][2],recpz[2][2],recptmu[2][2];
00327    
00328    for (int i=0;i<2;i++){
00329      for (int j=0;j<2;j++){
00330        ene[i][j]=0.;
00331        p[i][j]=0.;
00332        px[i][j]=0.;
00333        py[i][j]=0.; 
00334        pz[i][j]=0.; 
00335        ptmu[i][j]=0.;
00336        recene[i][j]=0.;
00337        recp[i][j]=0.;
00338        recpx[i][j]=0.;
00339        recpy[i][j]=0.; 
00340        recpz[i][j]=0.;       
00341        recptmu[i][j]=0.;
00342      }
00343    }
00344    
00345    
00346    edm::Handle<TrackingParticleCollection>  TPCollectionHeff ;
00347    iEvent.getByLabel(label_tp_effic,TPCollectionHeff);
00348    const TrackingParticleCollection tPCeff = *(TPCollectionHeff.product());
00349    
00350    edm::Handle<TrackingParticleCollection>  TPCollectionHfake ;
00351    iEvent.getByLabel(label_tp_fake,TPCollectionHfake);
00352    const TrackingParticleCollection tPCfake = *(TPCollectionHfake.product());
00353    
00354                
00355    int w=0;
00356    for (unsigned int ww=0;ww<associators.size();ww++){
00357       //
00358       //get collections from the event
00359       //
00360 
00361       InputTag algo = label[0];
00362      
00363       edm::Handle<edm::View<reco::Track> > trackCollection;
00364       iEvent.getByLabel(algo, trackCollection);
00365       const edm::View<reco::Track> tC = *(trackCollection.product());
00366             
00367            
00368       //associate tracks
00369       LogTrace("TrackValidator") << "Calling associateRecoToSim method" << "\n";
00370            reco::RecoToSimCollection recSimColl=associatore[ww]->associateRecoToSim(trackCollection,
00371                                                               TPCollectionHfake,
00372                                                                       &iEvent);
00373       
00374       LogTrace("TrackValidator") << "Calling associateSimToReco method" << "\n";
00375       reco::SimToRecoCollection simRecColl=associatore[ww]->associateSimToReco(trackCollection,
00376                                                                       TPCollectionHeff, 
00377                                                                       &iEvent);
00378 
00379    
00380 
00381       //
00382       //compute number of tracks per eta interval
00383       //
00384 
00385       if (selection_eff && !skip ) {
00386         cout << "Computing Efficiency" << endl;
00387 
00388         edm::LogVerbatim("TrackValidator") << "\n# of TrackingParticles (before cuts): " << tPCeff.size() << "\n";
00389         int ats = 0;
00390         int st=0;
00391         for (TrackingParticleCollection::size_type i=0; i<tPCeff.size(); i++){
00392           
00393           // Initialize variables
00394           eta = 0.,theta=0.,phi=0.,pt=0.,cottheta=0.,costheta=0.;
00395           d0=0.,z0=0.;
00396           nhit=0;
00397           receta = 0.,rectheta = 0.,recphi = 0.,recpt = 0.,reccottheta=0.,recd0=0.,recz0=0.;
00398           respt = 0.,resd0 = 0.,resz0 = 0.,reseta = 0.,resphi=0.,rescottheta=0.;
00399           recchiq = 0.;
00400           recnhit = 0;
00401           trackType = 0;
00402           eff=0;        
00403           
00404           // typedef edm::Ref<TrackingParticleCollection> TrackingParticleRef;
00405           TrackingParticleRef tp(TPCollectionHeff, i);
00406           if (tp->charge()==0) continue;
00407           st++;
00408           //pt=sqrt(tp->momentum().perp2());
00409           //eta=tp->momentum().eta();
00410           //vpos=tp->vertex().perp2()));
00411           
00412           const SimTrack * simulatedTrack = &(*tp->g4Track_begin());
00413         
00414           edm::ESHandle<MagneticField> theMF;
00415           iSetup.get<IdealMagneticFieldRecord>().get(theMF);
00416           FreeTrajectoryState 
00417             ftsAtProduction(GlobalPoint(tp->vertex().x(),tp->vertex().y(),tp->vertex().z()),
00418                             GlobalVector(simulatedTrack->momentum().x(),simulatedTrack->momentum().y(),simulatedTrack->momentum().z()),
00419                             TrackCharge(tp->charge()),
00420                             theMF.product());
00421           TSCPBuilderNoMaterial tscpBuilder;
00422           TrajectoryStateClosestToPoint tsAtClosestApproach 
00423             = tscpBuilder(ftsAtProduction,GlobalPoint(0,0,0));//as in TrackProducerAlgorithm
00424           GlobalPoint v = tsAtClosestApproach.theState().position();
00425           GlobalVector p = tsAtClosestApproach.theState().momentum();
00426 
00427           //  double qoverpSim = tsAtClosestApproach.charge()/p.mag();
00428           //  double lambdaSim = M_PI/2-p.theta();
00429           //  double phiSim    = p.phi();
00430           double dxySim    = (-v.x()*sin(p.phi())+v.y()*cos(p.phi()));
00431           double dszSim    = v.z()*p.perp()/p.mag() - (v.x()*p.x()+v.y()*p.y())/p.perp() * p.z()/p.mag();
00432           d0     = float(-dxySim);
00433           z0     = float(dszSim*p.mag()/p.perp());
00434 
00435   
00436           if (abs(simulatedTrack->type())==13 && simulatedTrack->genpartIndex() != -1 ) {
00437             cout << " TRACCIA SIM DI MUONI " << endl;  
00438             cout << "Gen part " << simulatedTrack->genpartIndex()<< endl;
00439             trackType=simulatedTrack->type();
00440             theta=simulatedTrack->momentum().theta();
00441             costheta=cos(theta);
00442             cottheta=1./tan(theta);
00443             
00444             eta=simulatedTrack->momentum().eta();
00445             phi=simulatedTrack->momentum().phi();
00446             pt=simulatedTrack->momentum().pt();
00447             nhit=tp->matchedHit();
00448             
00449 
00450              cout << "3) Before assoc: SimTrack of type = " << simulatedTrack->type() 
00451                     << " ,at eta = " << eta 
00452                     << " ,with pt at vertex = " << simulatedTrack->momentum().pt() << " GeV/c"
00453                     << " ,d0 =" << d0 
00454                     << " ,z0 =" << z0 
00455                     << " ,nhit=" << nhit
00456                     << endl;
00457 
00458             if ( ZmassSelection_ ){
00459               if (abs(trackType)==13 && (simulatedTrack->genpartIndex()==indmu[0] || simulatedTrack->genpartIndex()==indmu[1] )) { 
00460                 cout << " TRACK sim of muons from Z " << endl;  
00461                 flag=0;
00462                 count=countpart[0];
00463                 countpart[0]++;
00464               }
00465               else if (abs(trackType)==11) {
00466                 //cout << " TRACCIA SIM DI ELETTRONI " << endl;  
00467                 flag=1;
00468                 count=countpart[1];
00469                 countpart[1]++;
00470               }
00471               
00472               
00473               px[flag][count]=simulatedTrack->momentum().x();   
00474               py[flag][count]=simulatedTrack->momentum().y();
00475               pz[flag][count]=simulatedTrack->momentum().z();
00476               ptmu[flag][count]=simulatedTrack->momentum().pt(); 
00477               ene[flag][count]=simulatedTrack->momentum().e();
00478             }
00479             
00480             
00481             std::vector<std::pair<edm::RefToBase<reco::Track>, double> > rt;
00482             if(simRecColl.find(tp) != simRecColl.end()){
00483               
00484               rt = simRecColl[tp];
00485               if (rt.size()!=0) {
00486                 
00487                 edm::RefToBase<reco::Track> t = rt.begin()->first;
00488                 ats++;
00489 
00490                 bool flagptused=false;
00491                 for (unsigned int j=0;j<ptused.size();j++){
00492                   if (abs(t->pt()-ptused[j])<0.001) {
00493                     flagptused=true;
00494                   }
00495                 }
00496 
00497                 edm::LogVerbatim("TrackValidator") << "TrackingParticle #" << st << " with pt=" << t->pt() 
00498                                                    << " associated with quality:" << rt.begin()->second <<"\n";
00499                 std::cout << "Reconstructed Track:" << t->pt()<< endl;
00500                 std::cout << "\tpT: " << t->pt()<< endl;
00501                 std::cout << "\timpact parameter:d0: " << t->d0()<< endl;
00502                 std::cout << "\timpact parameter:z0: " << t->dz()<< endl;
00503                 std::cout << "\tAzimuthal angle of point of closest approach:" << t->phi()<< endl;
00504                 std::cout << "\tcharge: " << t->charge()<< endl;
00505                 std::cout << "\teta: " << t->eta()<< endl;
00506                 std::cout << "\tnormalizedChi2: " << t->normalizedChi2()<< endl;
00507 
00508                 recnhit=t->numberOfValidHits();
00509                 recchiq=t->normalizedChi2();
00510                 rectheta=t->theta();
00511                 reccottheta=1./tan(rectheta);
00512                 //receta=-log(tan(rectheta/2.));
00513                 receta=t->momentum().eta();
00514                 //         reccostheta=cos(matchedrectrack->momentum().theta());
00515                 recphi=t->phi(); 
00516                 recpt=t->pt();
00517                 ptused.push_back(recpt);
00518                 recd0=t->d0();
00519                 recz0=t->dz();
00520 
00521                 cout << "5) After call to associator: the best match has " 
00522                      << recnhit << " hits, Chi2 = " 
00523                      << recchiq << ", pt at vertex = " 
00524                      << recpt << " GeV/c, " 
00525                      << ", recd0 = " << recd0 
00526                      << ", recz0= " << recz0
00527                      << endl;
00528 
00529 
00530                 respt=recpt - pt;
00531                 resd0=recd0-d0;
00532                 resz0=recz0-z0;
00533                 reseta=receta-eta;
00534                 resphi=recphi-phi;
00535                 rescottheta=reccottheta-cottheta;
00536                 eff=1;
00537 
00538                 cout << "6) Transverse momentum residual=" << respt 
00539                      << " ,d0 residual=" << resd0 
00540                      << " ,z0 residual=" << resz0 
00541                      << " with eff=" << eff << endl;
00542                 
00543                 if ( ZmassSelection_ ){
00544                   
00545                   if (abs(trackType)==13) { 
00546                     cout << " TRACCIA RECO DI MUONI " << endl;  
00547                     flagrec=0;
00548                     countrec=countpartrec[0];
00549                     countpartrec[0]++;
00550                   }
00551                   else if (abs(trackType)==11) {
00552                     cout << " TRACCIA RECO DI ELETTRONI " << endl;  
00553                     flagrec=1;
00554                     countrec=countpartrec[1];
00555                     countpartrec[1]++;
00556                   }
00557                   
00558                   recp[flagrec][countrec]=sqrt(t->momentum().mag2());
00559                   recpx[flagrec][countrec]=t->momentum().x();   
00560                   recpy[flagrec][countrec]=t->momentum().y();
00561                   recpz[flagrec][countrec]=t->momentum().z();
00562                   recptmu[flagrec][countrec]=sqrt( (t->momentum().x()*t->momentum().x()) + (t->momentum().y()*t->momentum().y()) );
00563                   if (abs(trackType)==13) recene[flagrec][countrec]=sqrt(recp[flagrec][countrec]*recp[flagrec][countrec]+0.105*0.105);
00564                   if (abs(trackType)==11) recene[flagrec][countrec]=sqrt(recp[flagrec][countrec]*recp[flagrec][countrec]+0.0005*0.0005);
00565                 }
00566                 
00567                 cout << "7) Transverse momentum reconstructed =" << recpt 
00568                      << " at  eta= " << receta 
00569                      << " and phi= " << recphi 
00570                      << endl;
00571                 
00572               }
00573             }
00574             else{
00575               edm::LogVerbatim("TrackValidator") << "TrackingParticle #" << st
00576                                                  << " with pt=" << sqrt(tp->momentum().perp2())
00577                                                  << " NOT associated to any reco::Track" << "\n";
00578               receta =-100.;
00579               recphi =-100.;
00580               recpt  =-100.;
00581               recd0  =-100.;
00582               recz0  =-100;
00583               respt  =-100.;
00584               resd0  =-100.;
00585               resz0  =-100.;
00586               resphi =-100.;
00587               reseta =-100.;
00588               rescottheta=-100.;
00589               recnhit=100;
00590               recchiq=-100;
00591               eff=0;
00592               flagrec=100;            
00593             }
00594             
00595             cout << "Eff=" << eff << endl;
00596                
00597                // simulated muons
00598                
00599                cout <<"Flag is" << flag << endl;
00600                cout <<"RecFlag is" << flagrec << endl;
00601                
00602                if (countpart[0]==2 && flag==0) {
00603                  mzmu=sqrt(
00604                            (ene[0][0]+ene[0][1])*(ene[0][0]+ene[0][1])-
00605                            (px[0][0]+px[0][1])*(px[0][0]+px[0][1])-
00606                            (py[0][0]+py[0][1])*(py[0][0]+py[0][1])-
00607                            (pz[0][0]+pz[0][1])*(pz[0][0]+pz[0][1])
00608                            );
00609                  cout << "Mzmu " << mzmu << endl;
00610                  ptzmu=sqrt(
00611                            (px[0][0]+px[0][1])*(px[0][0]+px[0][1])+
00612                            (py[0][0]+py[0][1])*(py[0][0]+py[0][1])
00613                            );
00614                  
00615                  pLzmu=pz[0][0]+pz[0][1];
00616                  enezmu=ene[0][0]+ene[0][1];
00617                  phizmu=atan2((py[0][0]+py[0][1]),(px[0][0]+px[0][1]));
00618                  thetazmu=atan2(ptzmu,(pz[0][0]+pz[0][1]));
00619                  etazmu=-log(tan(thetazmu*3.14/360.));
00620                  yzmu=0.5*log((enezmu+pLzmu)/(enezmu-pLzmu));
00621                  mxptmu=max( ptmu[0][0], ptmu[0][1]);
00622                  minptmu=min( ptmu[0][0], ptmu[0][1]);
00623                }
00624                else {
00625                  mzmu=-100.;
00626                  ptzmu=-100.;
00627                  pLzmu=-100.;
00628                  enezmu=-100.;
00629                  etazmu=-100.;
00630                  phizmu=-100.;
00631                  thetazmu=-100.;
00632                  yzmu=-100.;
00633                  mxptmu=-100.;
00634                  minptmu=-100.;
00635                }      
00636 
00637                // reconstructed muons
00638                if (countpartrec[0]==2 && flagrec==0 ){
00639                  recmzmu=sqrt(
00640                               (recene[0][0]+recene[0][1])*(recene[0][0]+recene[0][1])-
00641                               (recpx[0][0]+recpx[0][1])*(recpx[0][0]+recpx[0][1])-
00642                               (recpy[0][0]+recpy[0][1])*(recpy[0][0]+recpy[0][1])-
00643                               (recpz[0][0]+recpz[0][1])*(recpz[0][0]+recpz[0][1])
00644                               );
00645                  cout << "RecMzmu " << recmzmu << endl;
00646                  recptzmu=sqrt(
00647                                (recpx[0][0]+recpx[0][1])*(recpx[0][0]+recpx[0][1])+
00648                                (recpy[0][0]+recpy[0][1])*(recpy[0][0]+recpy[0][1])
00649                                );
00650                  
00651                  recpLzmu=recpz[0][0]+recpz[0][1];      
00652                  recenezmu=recene[0][0]+recene[0][1];
00653                  recphizmu=atan2((recpy[0][0]+recpy[0][1]),(recpx[0][0]+recpx[0][1]));
00654                  recthetazmu=atan2(recptzmu,(recpz[0][0]+recpz[0][1]));
00655                  recetazmu=-log(tan(recthetazmu*3.14/360.));
00656                  recyzmu=0.5*log((recenezmu+recpLzmu)/(recenezmu-recpLzmu));
00657                  recmxptmu=max(recptmu[0][0], recptmu[0][1]);
00658                  recminptmu=min( recptmu[0][0], recptmu[0][1]);
00659                }
00660                else {
00661                  recmzmu=-100.;
00662                  recptzmu=-100.; 
00663                  recpLzmu=-100.;                 
00664                  recenezmu=-100.;       
00665                  recetazmu=-100.;
00666                  recphizmu=-100.;
00667                  recthetazmu=-100.;
00668                  recyzmu=-100.;
00669                  recmxptmu=-100;
00670                  recminptmu=-100.;
00671                }               
00672                
00673                tree_eff->Fill();
00674 
00675           } // end of loop on muons
00676         } // end of loop for tracking particle
00677       } // end of loop for efficiency
00678 
00679       //
00680       // Fake Rate
00681       // 
00682       if (selection_fake ) {
00683         cout << "Computing Fake Rate" << endl;
00684 
00685         fakeeta = 0.,faketheta=0.,fakephi=0.,fakept=0.,fakecottheta=0.,fakecostheta=0.;
00686         faked0=0.,fakez0=0.;
00687         fakenhit=0;
00688         fakereceta = 0.,fakerectheta = 0.,fakerecphi = 0.,fakerecpt = 0.,fakereccottheta=0.,fakerecd0=0.,fakerecz0=0.;
00689         fakerespt = 0.,fakeresd0 = 0.,fakeresz0 = 0.,fakereseta = 0.,fakeresphi=0.,fakerescottheta=0.;
00690         fakerecchiq = 0.;
00691         fakerecnhit = 0;
00692         faketrackType = 0;
00693         fake=0;
00694 
00695         
00696         //      int at=0;
00697         int rT=0;
00698         for(reco::TrackCollection::size_type i=0; i<tC.size(); ++i){
00699           edm::RefToBase<reco::Track> track(trackCollection, i);
00700           rT++;
00701 
00702           fakeeta = 0.,faketheta=0.,fakephi=0.,fakept=0.,fakecottheta=0.,fakecostheta=0.;
00703           faked0=0.,fakez0=0.;
00704           fakenhit=0;
00705           fakereceta = 0.,fakerectheta = 0.,fakerecphi = 0.,fakerecpt = 0.,fakereccottheta=0.,fakerecd0=0.,fakerecz0=0.;
00706           fakerespt = 0.,fakeresd0 = 0.,fakeresz0 = 0.,fakereseta = 0.,fakeresphi=0.,fakerescottheta=0.;
00707           fakerecchiq = 0.;
00708           fakerecnhit = 0;
00709           faketrackType = 0;
00710           fake=0;
00711           
00712           fakerecnhit=track->numberOfValidHits();
00713           fakerecchiq=track->normalizedChi2();
00714           fakerectheta=track->theta();
00715           fakereccottheta=1./tan(rectheta);
00716           //fakereceta=-log(tan(rectheta/2.));
00717           fakereceta=track->momentum().eta();
00718           //       fakereccostheta=cos(track->momentum().theta());
00719           fakerecphi=track->phi(); 
00720           fakerecpt=track->pt();
00721           fakerecd0=track->d0();
00722           fakerecz0=track->dz();
00723                   
00724           cout << "1) Before assoc: TkRecTrack at eta = " << fakereceta << std::endl;
00725           std::cout << "Track number "<< i << std::endl ;
00726           std::cout << "\tPT: " << track->pt()<< std::endl;
00727           std::cout << "\timpact parameter:d0: " << track->d0()<< std::endl;
00728           std::cout << "\timpact parameter:z0: " << track->dz()<< std::endl;
00729           std::cout << "\tAzimuthal angle of point of closest approach:" << track->phi()<< std::endl;
00730           std::cout << "\tcharge: " << track->charge()<< std::endl;
00731           std::cout << "\teta: " << track->eta()<< std::endl;
00732           std::cout << "\tnormalizedChi2: " << track->normalizedChi2()<< std::endl;
00733            
00734            
00735           std::vector<std::pair<TrackingParticleRef, double> > tp;
00736           
00737           //Compute fake rate vs eta
00738           if(recSimColl.find(track) != recSimColl.end()){
00739             tp = recSimColl[track];
00740             if (tp.size()!=0) {
00741               edm::LogVerbatim("TrackValidator") << "reco::Track #" << rT << " with pt=" << track->pt() 
00742                                                  << " associated with quality:" << tp.begin()->second <<"\n";
00743               
00744               
00745               TrackingParticleRef tpr = tp.begin()->first;
00746               const SimTrack * fakeassocTrack = &(*tpr->g4Track_begin());
00747 
00748               edm::ESHandle<MagneticField> theMF;
00749               iSetup.get<IdealMagneticFieldRecord>().get(theMF);
00750               FreeTrajectoryState 
00751                 ftsAtProduction(GlobalPoint(tpr->vertex().x(),tpr->vertex().y(),tpr->vertex().z()),
00752                                 GlobalVector(fakeassocTrack->momentum().x(),fakeassocTrack->momentum().y(),fakeassocTrack->momentum().z()),
00753                                 TrackCharge(tpr->charge()),
00754                                 theMF.product());
00755               TSCPBuilderNoMaterial tscpBuilder;
00756               TrajectoryStateClosestToPoint tsAtClosestApproach 
00757                 = tscpBuilder(ftsAtProduction,GlobalPoint(0,0,0));//as in TrackProducerAlgorithm
00758               GlobalPoint v = tsAtClosestApproach.theState().position();
00759               GlobalVector p = tsAtClosestApproach.theState().momentum();
00760               
00761               //  double qoverpSim = tsAtClosestApproach.charge()/p.mag();
00762               //  double lambdaSim = M_PI/2-p.theta();
00763               //  double phiSim    = p.phi();
00764               double dxySim    = (-v.x()*sin(p.phi())+v.y()*cos(p.phi()));
00765               double dszSim    = v.z()*p.perp()/p.mag() - (v.x()*p.x()+v.y()*p.y())/p.perp() * p.z()/p.mag();
00766               faked0     = float(-dxySim);
00767               fakez0     = float(dszSim*p.mag()/p.perp());
00768 
00769 
00770               faketrackType=fakeassocTrack->type();
00771               faketheta=fakeassocTrack->momentum().theta();
00772               fakecottheta=1./tan(faketheta);
00773               fakeeta=fakeassocTrack->momentum().eta();
00774               fakephi=fakeassocTrack->momentum().phi();
00775               fakept=fakeassocTrack->momentum().pt();
00776               fakenhit=tpr->matchedHit();
00777 
00778               cout << "4) After call to associator: the best SimTrack match is of type" << fakeassocTrack->type() 
00779                    << " ,at eta = " << fakeeta 
00780                    << " and phi = " << fakephi  
00781                    << " ,with pt at vertex = " << fakept << " GeV/c" 
00782                    << " ,d0 global = " << faked0 
00783                    << " ,z0 = " << fakez0
00784                    << endl;
00785               fake=1;
00786 
00787               fakerespt=fakerecpt-fakept;
00788               fakeresd0=fakerecd0-faked0;
00789               fakeresz0=fakerecz0-fakez0;
00790               fakereseta=-log(tan(fakerectheta/2.))-(-log(tan(faketheta/2.)));
00791               fakeresphi=fakerecphi-fakephi;
00792               fakerescottheta=fakereccottheta-fakecottheta;
00793               
00794             }
00795           }
00796           else{
00797             edm::LogVerbatim("TrackValidator") << "reco::Track #" << rT << " with pt=" << track->pt()
00798                                                << " NOT associated to any TrackingParticle" << "\n";
00799             
00800             fakeeta =-100.;
00801             faketheta=-100;
00802             fakephi =-100.;
00803             fakept  =-100.;
00804             faked0  =-100.;
00805             fakez0  =-100;
00806             fakerespt  =-100.;
00807             fakeresd0  =-100.;
00808             fakeresz0  =-100.;
00809             fakeresphi =-100.;
00810             fakereseta =-100.;
00811             fakerescottheta=-100.;
00812             fakenhit=100;
00813             fake=0;
00814           }
00815           
00816           tree_fake->Fill();
00817         }       
00818         
00819       } // End of loop on fakerate       
00820       
00821       w++;
00822       
00823    } // End of loop on associators
00824 }
00825 
00826 // ------------ method called once each job just after ending the event loop  ------------
00827 void ValidationMisalignedTracker::endJob() {
00828 
00829   cout << "\t Misalignment analysis completed \n" << endl;  
00830 
00831 }
00832 
00833 DEFINE_FWK_MODULE(ValidationMisalignedTracker);

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