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TrackParameterAnalyzer.cc
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2 
3 //system includes
4 #include <memory>
5 #include <vector>
6 
7 // core framework
12 
13 // Hep MC stuff from CLHEP
14 #include "CLHEP/Vector/LorentzVector.h"
15 
16 // track
18 
19 // Root
20 #include <TH1.h>
21 #include <TH2.h>
22 #include <TFile.h>
23 
24 //
25 //
26 // constants, enums and typedefs
27 //
28 
29 //
30 // static data member definitions
31 //
32 
33 //
34 // constructors and destructor
35 //
37  : edmSimVertexContainerToken_( consumes<edm::SimVertexContainer>( iConfig.getParameter<edm::InputTag>( "simG4" ) ) )
38  , edmSimTrackContainerToken_( consumes<edm::SimTrackContainer>( iConfig.getParameter<edm::InputTag>( "simG4" ) ) )
39  , recoTrackCollectionToken_( consumes<reco::TrackCollection>( edm::InputTag( iConfig.getUntrackedParameter<std::string>( "recoTrackProducer" ) ) ) )
40  , outputFile_( iConfig.getUntrackedParameter<std::string>( "outputFile" ) )
41  , simUnit_( 1.0 ) // starting from CMSSW_1_2_x, I think
42  , verbose_( iConfig.getUntrackedParameter<bool>( "verbose", false ) ) {
43  //now do whatever initialization is needed
44  // open output file to store histograms}
45  TString tversion(edm::getReleaseVersion());
46  tversion = tversion.Remove(0,1);
47  tversion = tversion.Remove(tversion.Length()-1,tversion.Length());
48  outputFile_ = std::string(tversion)+"_"+outputFile_;
49  rootFile_ = TFile::Open(outputFile_.c_str(),"RECREATE");
50  if ( (edm::getReleaseVersion()).find("CMSSW_1_1_",0)!=std::string::npos){
51  simUnit_=0.1; // for use in CMSSW_1_1_1 tutorial
52  }
53 }
54 
55 
57 {
58 
59  // do anything here that needs to be done at destruction time
60  // (e.g. close files, deallocate resources etc.)
61  delete rootFile_;
62 }
63 
64 
65 
66 //
67 // member functions
68 //
70  std::cout << " TrackParameterAnalyzer::beginJob conversion from sim units to rec units is " << simUnit_ << std::endl;
71 
72  rootFile_->cd();
73  h1_pull0_ = new TH1F("pull0","pull q/p",100,-25.,25.);
74  h1_pull1_ = new TH1F("pull1","pull lambda",100,-25.,25.);
75  h1_pull2_ = new TH1F("pull2","pull phi ",100,-25.,25.);
76  h1_pull3_ = new TH1F("pull3","pull dca ",100,-25.,25.);
77  h1_pull4_ = new TH1F("pull4","pull zdca ",100,-25.,25.);
78 
79  h1_res0_ = new TH1F("res0","res q/p",100,-0.1,0.1);
80  h1_res1_ = new TH1F("res1","res lambda",100,-0.1,0.1);
81  h1_res2_ = new TH1F("res2","res phi ",100,-0.1,0.1);
82  h1_res3_ = new TH1F("res3","res dca ",100,-0.1,0.1);
83  h1_res4_ = new TH1F("res4","res zdca ",100,-0.1,0.1);
84 
85  h1_Beff_ = new TH1F("Beff", "Beff",2000,-10.,10.);
86  h2_dvsphi_ = new TH2F("dvsphi","dvsphi",360,-M_PI,M_PI,100,-0.1,0.1);
87  h1_par0_ = new TH1F("par0","q/p",100,-0.1,0.1);
88  h1_par1_ = new TH1F("par1","lambda",100, -M_PI/2.,M_PI/2.);
89  h1_par2_ = new TH1F("par2","phi ",100,-M_PI,M_PI);
90  h1_par3_ = new TH1F("par3","dca ",100,-0.1,0.1);
91  h1_par4_ = new TH1F("par4","zdca ",1000,-10.,10.);
92 }
93 
94 
96  rootFile_->cd();
97  h1_pull0_->Write();
98  h1_pull1_->Write();
99  h1_pull2_->Write();
100  h1_pull3_->Write();
101  h1_pull4_->Write();
102 
103  h1_res0_->Write();
104  h1_res1_->Write();
105  h1_res2_->Write();
106  h1_res3_->Write();
107  h1_res4_->Write();
108 
109  h1_Beff_->Write();
110  h2_dvsphi_->Write();
111  h1_par0_->Write();
112  h1_par1_->Write();
113  h1_par2_->Write();
114  h1_par3_->Write();
115  h1_par4_->Write();
116 }
117 
118 // helper function
120  const ParameterVector &b){
121  double dtheta=a(1)-b(1);
122  double dphi =a(2)-b(2);
123  if (dphi>M_PI){ dphi-=M_2_PI; }else if(dphi<-M_PI){dphi+=M_2_PI;}
124  return ( (fabs(dtheta)<0.02) && (fabs(dphi)<0.04) );
125 }
126 
127 // ------------ method called to produce the data ------------
128 void
130 {
131  using CLHEP::HepLorentzVector;
132 
133  //edm::ESHandle<TransientTrackBuilder> theB;
134  //iSetup.get<TransientTrackRecord>().get("TransientTrackBuilder",theB);
135  //double fBfield=((*theB).field()->inTesla(GlobalPoint(0.,0.,0.))).z();
136  const double fBfield=3.8;
137 
139  iEvent.getByToken( edmSimVertexContainerToken_, simVtcs );
140  if(verbose_){
141  std::cout << "SimVertex " << simVtcs->size() << std::endl;
142  for(edm::SimVertexContainer::const_iterator v=simVtcs->begin();
143  v!=simVtcs->end(); ++v){
144  std::cout << "simvtx "
145  << std::setw(10) << std::setprecision(4)
146  << v->position().x() << " "
147  << v->position().y() << " "
148  << v->position().z() << " "
149  << v->parentIndex() << " "
150  << v->noParent() << " "
151  << std::endl;
152  }
153  }
154 
155  // get the simulated tracks, extract perigee parameters
157  iEvent.getByToken( edmSimTrackContainerToken_, simTrks );
158 
159  if(verbose_){std::cout << "simtrks " << simTrks->size() << std::endl;}
160  std::vector<ParameterVector > tsim;
161  for(edm::SimTrackContainer::const_iterator t=simTrks->begin();
162  t!=simTrks->end(); ++t){
163  if (t->noVertex()){
164  std::cout << "simtrk has no vertex" << std::endl;
165  return;
166  }else{
167  // get the vertex position
168  HepLorentzVector v((*simVtcs)[t->vertIndex()].position().x(),
169  (*simVtcs)[t->vertIndex()].position().y(),
170  (*simVtcs)[t->vertIndex()].position().z(),
171  (*simVtcs)[t->vertIndex()].position().e());
172  int pdgCode=t->type();
173 
174  if( pdgCode==-99 ){
175  // such entries cause crashes, no idea what they are
176  std::cout << "funny particle skipped , code=" << pdgCode << std::endl;
177  }else{
178  double Q=0; //double Q=HepPDT::theTable().getParticleData(pdgCode)->charge();
179  if ((pdgCode==11)||(pdgCode==13)||(pdgCode==15)||(pdgCode==-211)||(pdgCode==-2212)||(pdgCode==321)){Q=-1;}
180  else if((pdgCode==-11)||(pdgCode==-13)||(pdgCode==-15)||(pdgCode==211)||(pdgCode==2212)||(pdgCode==321)){Q=1;}
181  else {
182  std::cout << pdgCode << " " <<std::endl;
183  }
184  HepLorentzVector p(t->momentum().x(),t->momentum().y(),t->momentum().z(),t->momentum().e());
185  if(verbose_){
186  std::cout << "simtrk "
187  << " gen=" << std::setw( 4) << t->genpartIndex()
188  << " vtx=" << std::setw( 4) << t->vertIndex()
189  << " pdg=" << std::setw( 5) << t->type()
190  << " Q=" << std::setw( 3) << Q
191  << " pt=" << std::setw(6) << p.perp()
192  << " vx=" << std::setw(6) << v.x()
193  << " vy=" << std::setw(6) << v.y()
194  << " vz=" << std::setw(6) << v.z()
195  << std::endl;
196  }
197  if ( (Q != 0) && (p.perp()>0.1) ){
198  double x0=v.x()*simUnit_;
199  double y0=v.y()*simUnit_;
200  double z0=v.z()*simUnit_;
201  double kappa=-Q*0.002998*fBfield/p.perp();
202  double D0=x0*sin(p.phi())-y0*cos(p.phi())-0.5*kappa*(x0*x0+y0*y0);
203  double q=sqrt(1.-2.*kappa*D0);
204  double s0=(x0*cos(p.phi())+y0*sin(p.phi()))/q;
205  double s1;
206  if (fabs(kappa*s0)>0.001){
207  s1=asin(kappa*s0)/kappa;
208  }else{
209  double ks02=(kappa*s0)*(kappa*s0);
210  s1=s0*(1.+ks02/6.+3./40.*ks02*ks02+5./112.*pow(ks02,3));
211  }
212  ParameterVector par;
213  par[reco::TrackBase::i_qoverp] = Q/sqrt(p.perp2()+p.pz()*p.pz());
214  par[reco::TrackBase::i_lambda] = M_PI/2.-p.theta();
215  par[reco::TrackBase::i_phi] = p.phi()-asin(kappa*s0);
216  par[reco::TrackBase::i_dxy] = 2.*D0/(1.+q);
217  par[reco::TrackBase::i_dsz] = z0*sin(p.theta())-s1*cos(p.theta());
218  tsim.push_back(par);
219  }
220  }
221  }// has vertex
222  }//for loop
223 
224  // simtrack parameters are in now tsim
225  // loop over tracks and try to match them to simulated tracks
226 
227 
229  iEvent.getByToken( recoTrackCollectionToken_, recTracks );
230 
231  for(reco::TrackCollection::const_iterator t=recTracks->begin();
232  t!=recTracks->end(); ++t){
233  reco::TrackBase::ParameterVector p = t->parameters();
234  reco::TrackBase::CovarianceMatrix c = t->covariance();
235  if(verbose_){
236  std::cout << "reco pars= " << p << std::endl;
237  //std::cout << "z0=" << p(4) << std::endl;
238  }
239  for(std::vector<ParameterVector>::const_iterator s=tsim.begin();
240  s!=tsim.end(); ++s){
241  if (match(*s,p)){
242  //if(verbose_){ std::cout << "match found" << std::endl;}
243  h1_pull0_->Fill((p(0)-(*s)(0))/sqrt(c(0,0)));
244  h1_pull1_->Fill((p(1)-(*s)(1))/sqrt(c(1,1)));
245  h1_pull2_->Fill((p(2)-(*s)(2))/sqrt(c(2,2)));
246  h1_pull3_->Fill((p(3)-(*s)(3))/sqrt(c(3,3)));
247  h1_pull4_->Fill((p(4)-(*s)(4))/sqrt(c(4,4)));
248 
249  h1_res0_->Fill(p(0)-(*s)(0));
250  h1_res1_->Fill(p(1)-(*s)(1));
251  h1_res2_->Fill(p(2)-(*s)(2));
252  h1_res3_->Fill(p(3)-(*s)(3));
253  h1_res4_->Fill(p(4)-(*s)(4));
254 
255  h1_Beff_->Fill(p(0)/(*s)(0)*fBfield);
256  h2_dvsphi_->Fill(p(2),p(3));
257  h1_par0_->Fill(p(0));
258  h1_par1_->Fill(p(1));
259  h1_par2_->Fill(p(2));
260  h1_par3_->Fill(p(3));
261  h1_par4_->Fill(p(4));
262  }
263  }
264  }
265 
266 
267 
268 
269 }
270 
bool getByToken(EDGetToken token, Handle< PROD > &result) const
Definition: Event.h:434
Divides< arg, void > D0
Definition: Factorize.h:143
Sin< T >::type sin(const T &t)
Definition: Sin.h:22
std::vector< Track > TrackCollection
collection of Tracks
Definition: TrackFwd.h:10
TrackParameterAnalyzer(const edm::ParameterSet &)
math::Vector< dimension >::type ParameterVector
parameter vector
Definition: TrackBase.h:68
bool match(const ParameterVector &a, const ParameterVector &b)
int iEvent
Definition: GenABIO.cc:243
edm::EDGetTokenT< edm::SimTrackContainer > edmSimTrackContainerToken_
T sqrt(T t)
Definition: SSEVec.h:48
Cos< T >::type cos(const T &t)
Definition: Cos.h:22
edm::EDGetTokenT< reco::TrackCollection > recoTrackCollectionToken_
virtual void analyze(const edm::Event &, const edm::EventSetup &)
std::string getReleaseVersion()
#define M_PI
Definition: BFit3D.cc:3
edm::EDGetTokenT< edm::SimVertexContainer > edmSimVertexContainerToken_
std::vector< SimVertex > SimVertexContainer
double b
Definition: hdecay.h:120
reco::TrackBase::ParameterVector ParameterVector
double a
Definition: hdecay.h:121
tuple cout
Definition: gather_cfg.py:121
volatile std::atomic< bool > shutdown_flag false
std::vector< SimTrack > SimTrackContainer
Power< A, B >::type pow(const A &a, const B &b)
Definition: Power.h:40
math::Error< dimension >::type CovarianceMatrix
5 parameter covariance matrix
Definition: TrackBase.h:70