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root/cvsroot/UserCode/Jeng/PVStudy/plugins/PVStudy.cc
Revision: 1.23
Committed: Mon May 31 14:19:45 2010 UTC (14 years, 11 months ago) by yygao
Content type: text/plain
Branch: MAIN
CVS Tags: CMSSW_3_6_1_patch3_May27thReReco, CMSSW_3_5_8_patch3_May6thReReco, HEAD
Changes since 1.22: +24 -41 lines
Log Message:
add option to select the vertex with avgTrackPtInPV cut

File Contents

# User Rev Content
1 jengbou 1.1 // -*- C++ -*-
2     //
3     // Package: PVStudy
4     // Class: PVStudy
5     //
6     /**\class PVStudy PVStudy.cc UserCode/PVStudy/plugins/PVStudy.cc
7    
8     Description: <one line class summary>
9    
10     Implementation:
11     <Notes on implementation>
12     */
13     //
14     // Original Author: "Geng-yuan Jeng/UC Riverside"
15 yygao 1.17 // "Yanyan Gao/Fermilab ygao@fnal.gov"
16 jengbou 1.1 // Created: Thu Aug 20 11:55:40 CDT 2009
17 yygao 1.23 // $Id: PVStudy.cc,v 1.22 2010/03/29 15:27:24 yygao Exp $
18 jengbou 1.1 //
19     //
20    
21    
22     // system include files
23     #include <memory>
24     #include <string>
25     #include <vector>
26     #include <iostream>
27     #include <sstream>
28    
29     // user include files
30     #include "FWCore/Framework/interface/Frameworkfwd.h"
31     #include "FWCore/Framework/interface/EDAnalyzer.h"
32    
33     #include "FWCore/Framework/interface/Event.h"
34     #include "FWCore/Framework/interface/MakerMacros.h"
35    
36     #include "FWCore/ParameterSet/interface/ParameterSet.h"
37     #include "FWCore/Utilities/interface/InputTag.h"
38     #include "DataFormats/TrackReco/interface/Track.h"
39     #include "DataFormats/TrackReco/interface/TrackFwd.h"
40     #include "FWCore/ServiceRegistry/interface/Service.h"
41 yygao 1.22 #include "CommonTools/UtilAlgos/interface/TFileService.h"
42 jengbou 1.1 #include "UserCode/PVStudy/interface/PVStudy.h"
43     //
44     #include "DataFormats/VertexReco/interface/Vertex.h"
45     #include "RecoVertex/VertexPrimitives/interface/TransientVertex.h"
46    
47     // simulated vertices,..., add <use name=SimDataFormats/Vertex> and <../Track>
48     #include <SimDataFormats/Vertex/interface/SimVertex.h>
49     #include <SimDataFormats/Vertex/interface/SimVertexContainer.h>
50     #include <SimDataFormats/Track/interface/SimTrack.h>
51     #include <SimDataFormats/Track/interface/SimTrackContainer.h>
52 yygao 1.17 // BeamSpot
53     #include "DataFormats/BeamSpot/interface/BeamSpot.h"
54    
55 jengbou 1.1 //root
56 jengbou 1.4 #include <TROOT.h>
57     #include <TF1.h>
58     #include <TString.h>
59     #include <TStyle.h>
60     #include <TPaveStats.h>
61     #include <TPad.h>
62 jengbou 1.1
63     using namespace std;
64 yygao 1.17 typedef math::XYZTLorentzVectorF LorentzVector;
65     typedef math::XYZPoint Point;
66 jengbou 1.1
67 yygao 1.7 PVStudy::PVStudy(const edm::ParameterSet& iConfig)
68 jengbou 1.1 {
69 yygao 1.7 //=======================================================================
70     // Get configuration for TrackTupleMaker
71     //=======================================================================
72 jengbou 1.13 simG4_ = iConfig.getParameter<edm::InputTag>( "simG4" );
73     trackCollectionTag_ = iConfig.getUntrackedParameter<edm::InputTag>("trackCollection");
74     splitTrackCollection1Tag_ = iConfig.getUntrackedParameter<edm::InputTag>("splitTrackCollection1");
75     splitTrackCollection2Tag_ = iConfig.getUntrackedParameter<edm::InputTag>("splitTrackCollection2");
76 yygao 1.7 vertexCollectionTag_ = iConfig.getUntrackedParameter<edm::InputTag>("vertexCollection");
77 jengbou 1.13 splitVertexCollection1Tag_ = iConfig.getUntrackedParameter<edm::InputTag>("splitVertexCollection1");
78 yygao 1.17 splitVertexCollection2Tag_ = iConfig.getUntrackedParameter<edm::InputTag>("splitVertexCollection2");
79 jengbou 1.13 verbose_ = iConfig.getUntrackedParameter<bool>("verbose",false);
80     realData_ = iConfig.getUntrackedParameter<bool>("realData",false);
81     analyze_ = iConfig.getUntrackedParameter<bool>("analyzeOnTheFly",false);
82     saventuple_ = iConfig.getUntrackedParameter<bool>("saventuple",false);
83 yygao 1.19 outputfilename_ = iConfig.getUntrackedParameter<string>("OutputFileName");
84     histoFileName_ = iConfig.getUntrackedParameter<std::string> ("histoFileName");
85 jengbou 1.13 ntrkdiffcut_ = iConfig.getUntrackedParameter<double>("ntrkdiffcut");
86     nTrkMin_ = iConfig.getUntrackedParameter<int>("nTrkMin");
87     nTrkMax_ = iConfig.getUntrackedParameter<int>("nTrkMax");
88 yygao 1.17 zsigncut_ = iConfig.getUntrackedParameter<int>("zsigncut");
89 yygao 1.21 useHWTrk_ = iConfig.getUntrackedParameter<bool>("useHWTrk",false);
90 yygao 1.23 avgTrkPtInPVMin_ = iConfig.getUntrackedParameter<double>("avgTrkPtInPVMin");
91     avgTrkPtInPVMax_ = iConfig.getUntrackedParameter<double>("avgTrkPtInPVMax");
92 yygao 1.17 bsSrc = iConfig.getParameter< edm::InputTag >("beamSpot");
93    
94 jengbou 1.1 //now do what ever initialization is needed
95 jengbou 1.3 pvinfo.clear();
96 jengbou 1.1
97 yygao 1.7 // Specify the data mode vector
98     if(realData_) datamode.push_back(0);
99     else {
100     datamode.push_back(0);
101     datamode.push_back(1);
102     datamode.push_back(2);
103     datamode.push_back(3);
104     }
105 yygao 1.17 // Create ntuple files if needed
106 yygao 1.7 if(saventuple_) {
107     file_ = TFile::Open(outputfilename_.c_str(),"RECREATE");
108     ftree_ = new TTree("mytree","mytree");
109     ftree_->AutoSave();
110     ftree_->Branch("residual",&fres_,"fres_[3]/D");
111     ftree_->Branch("error",&ferror_,"ferror_[3]/D");
112     ftree_->Branch("nTrkPV",&fntrk_,"fntrk_/I");
113 yygao 1.9
114     // pvtxtree_ analyzing the pvtxs ootb
115     pvtxtree_ = new TTree("pvtxtree","pvtxtree");
116 yygao 1.19
117     // Event information for the data
118     pvtxtree_->Branch("glob_runno",&glob_runno_,"glob_runno/I");
119     pvtxtree_->Branch("glob_evtno",&glob_evtno_,"glob_evtno/I");
120     pvtxtree_->Branch("glob_ls",&glob_ls_,"glob_ls/I");
121     pvtxtree_->Branch("glob_bx",&glob_bx_,"glob_bx/I");
122    
123    
124 yygao 1.9 pvtxtree_->Branch("nrecPV",&nrecPV_,"nrecPV/I");
125 yygao 1.19 pvtxtree_->Branch("nrecPV1_spl",&nrecPV1_spl_,"nrecPV1_spl/I");
126     pvtxtree_->Branch("nrecPV2_spl",&nrecPV2_spl_,"nrecPV2_spl/I");
127     // Event level information
128 yygao 1.10 pvtxtree_->Branch("min_zsep",&min_zsep_,"min_zsep/D");
129     pvtxtree_->Branch("min_ntrksep",&min_ntrksep_,"min_ntrksep/D");
130     pvtxtree_->Branch("min_sumpt2sep",&min_sumpt2sep_,"min_sumpt2sep/D");
131    
132 yygao 1.19 //Fill the variables in the twovtx pair (recvtx1, recvtx2)
133     // Information related to the analyzing the two-vertex method
134    
135 yygao 1.9 pvtxtree_->Branch("nrecPV_twovtx",&nrecPV_twovtx_,"nrecPV_twovtx/I");
136     pvtxtree_->Branch("nTrkPV_twovtx",&nTrkPV_twovtx_,"nTrkPV_twovtx[nrecPV_twovtx]/I");
137     pvtxtree_->Branch("deltax_twovtx",&deltax_twovtx_,"deltax_twovtx[nrecPV_twovtx]/D");
138     pvtxtree_->Branch("deltay_twovtx",&deltay_twovtx_,"deltay_twovtx[nrecPV_twovtx]/D");
139     pvtxtree_->Branch("deltaz_twovtx",&deltaz_twovtx_,"deltaz_twovtx[nrecPV_twovtx]/D");
140     pvtxtree_->Branch("errx_twovtx",&errx_twovtx_,"errx_twovtx[nrecPV_twovtx]/D");
141     pvtxtree_->Branch("erry_twovtx",&erry_twovtx_,"erry_twovtx[nrecPV_twovtx]/D");
142     pvtxtree_->Branch("errz_twovtx",&errz_twovtx_,"errz_twovtx[nrecPV_twovtx]/D");
143     pvtxtree_->Branch("pullx_twovtx",&pullx_twovtx_,"pullx_twovtx[nrecPV_twovtx]/D");
144     pvtxtree_->Branch("pully_twovtx",&pully_twovtx_,"pully_twovtx[nrecPV_twovtx]/D");
145     pvtxtree_->Branch("pullz_twovtx",&pullz_twovtx_,"pullz_twovtx[nrecPV_twovtx]/D");
146 yygao 1.19
147     // Information for the splitVertexColl1
148     pvtxtree_->Branch("nTrkPV1_spl_twovtx",&nTrkPV1_spl_twovtx_,"nTrkPV1_spl_twovtx[nrecPV_twovtx]/I");
149     pvtxtree_->Branch("ndofPV1_spl_twovtx",&ndofPV1_spl_twovtx_,"ndofPV1_spl_twovtx[nrecPV_twovtx]/D");
150     pvtxtree_->Branch("normchi2PV1_spl_twovtx",&normchi2PV1_spl_twovtx_,"normchi2PV1_spl_twovtx[nrecPV_twovtx]/D");
151     pvtxtree_->Branch("avgPtPV1_spl_twovtx",&avgPtPV1_spl_twovtx_,"avgPtPV1_spl_twovtx[nrecPV_twovtx]/D");
152     pvtxtree_->Branch("errx1_spl_twovtx",&errx1_spl_twovtx_,"errx1_spl_twovtx[nrecPV_twovtx]/D");
153     pvtxtree_->Branch("erry1_spl_twovtx",&erry1_spl_twovtx_,"erry1_spl_twovtx[nrecPV_twovtx]/D");
154     pvtxtree_->Branch("errz1_spl_twovtx",&errz1_spl_twovtx_,"errz1_spl_twovtx[nrecPV_twovtx]/D");
155    
156    
157     // Information for the splitVertexColl2
158     pvtxtree_->Branch("nTrkPV2_spl_twovtx",&nTrkPV2_spl_twovtx_,"nTrkPV2_spl_twovtx[nrecPV_twovtx]/I");
159     pvtxtree_->Branch("ndofPV2_spl_twovtx",&ndofPV2_spl_twovtx_,"ndofPV2_spl_twovtx[nrecPV_twovtx]/D");
160     pvtxtree_->Branch("normchi2PV2_spl_twovtx",&normchi2PV2_spl_twovtx_,"normchi2PV2_spl_twovtx[nrecPV_twovtx]/D");
161     pvtxtree_->Branch("avgPtPV2_spl_twovtx",&avgPtPV2_spl_twovtx_,"avgPtPV2_spl_twovtx[nrecPV_twovtx]/D");
162     pvtxtree_->Branch("errx2_spl_twovtx",&errx2_spl_twovtx_,"errx2_spl_twovtx[nrecPV_twovtx]/D");
163     pvtxtree_->Branch("erry2_spl_twovtx",&erry2_spl_twovtx_,"erry2_spl_twovtx[nrecPV_twovtx]/D");
164     pvtxtree_->Branch("errz2_spl_twovtx",&errz2_spl_twovtx_,"errz2_spl_twovtx[nrecPV_twovtx]/D");
165    
166 yygao 1.9
167     // MC variables
168     if(!realData_) {
169     pvtxtree_->Branch("nsimPV",&nsimPV_,"nsimPV/I");
170     pvtxtree_->Branch("nsimTrkPV",&nsimTrkPV_,"nsimTrkPV[nsimPV]/I");
171     pvtxtree_->Branch("simx",&simx_,"simx[nsimPV]/D");
172     pvtxtree_->Branch("simy",&simy_,"simy[nsimPV]/D");
173     pvtxtree_->Branch("simz",&simz_,"simz[nsimPV]/D");
174     pvtxtree_->Branch("simptsq",&simptsq_,"simptsq[nsimPV]/D");
175    
176     // For pvtxs with all the tracks
177     pvtxtree_->Branch("nrecPV_mct",&nrecPV_mct_,"nrecPV_mct/I");
178     pvtxtree_->Branch("deltax_mct",&deltax_mct_,"deltax_mct[nrecPV_mct]/D");
179     pvtxtree_->Branch("deltay_mct",&deltay_mct_,"deltay_mct[nrecPV_mct]/D");
180     pvtxtree_->Branch("deltaz_mct",&deltaz_mct_,"deltaz_mct[nrecPV_mct]/D");
181     pvtxtree_->Branch("pullx_mct",&pullx_mct_,"pullx_mct[nrecPV_mct]/D");
182     pvtxtree_->Branch("pully_mct",&pully_mct_,"pully_mct[nrecPV_mct]/D");
183 yygao 1.19 pvtxtree_->Branch("pullz_mct",&pullz_mct_,"pullz_mct[nrecPV_mct]/D");
184     pvtxtree_->Branch("errx_mct",&errx_mct_,"errx_mct[nrecPV_mct]/D");
185     pvtxtree_->Branch("erry_mct",&erry_mct_,"erry_mct[nrecPV_mct]/D");
186     pvtxtree_->Branch("errz_mct",&errz_mct_,"errz_mct[nrecPV_mct]/D");
187     pvtxtree_->Branch("nTrkPV_mct",&nTrkPV_mct_,"nTrkPV_mct[nrecPV_mct]/I");
188     pvtxtree_->Branch("ndofPV_mct",&ndofPV_mct_,"ndofPV_mct[nrecPV_mct]/D");
189     pvtxtree_->Branch("normchi2PV_mct",&normchi2PV_mct_,"normchi2PV_mct[nrecPV_mct]/D");
190     pvtxtree_->Branch("avgPtPV_mct",&avgPtPV_mct_,"avgPtPV_mct[nrecPV_mct]/D");
191    
192 yygao 1.9 // For pvtxs with splittracks1
193     pvtxtree_->Branch("nrecPV_spl1_mct",&nrecPV_spl1_mct_,"nrecPV_spl1_mct/I");
194     pvtxtree_->Branch("deltax_spl1_mct",&deltax_spl1_mct_,"deltax_spl1_mct[nrecPV_spl1_mct]/D");
195     pvtxtree_->Branch("deltay_spl1_mct",&deltay_spl1_mct_,"deltay_spl1_mct[nrecPV_spl1_mct]/D");
196     pvtxtree_->Branch("deltaz_spl1_mct",&deltaz_spl1_mct_,"deltaz_spl1_mct[nrecPV_spl1_mct]/D");
197     pvtxtree_->Branch("pullx_spl1_mct",&pullx_spl1_mct_,"pullx_spl1_mct[nrecPV_spl1_mct]/D");
198     pvtxtree_->Branch("pully_spl1_mct",&pully_spl1_mct_,"pully_spl1_mct[nrecPV_spl1_mct]/D");
199     pvtxtree_->Branch("pullz_spl1_mct",&pullz_spl1_mct_,"pullz_spl1_mct[nrecPV_spl1_mct]/D");
200 yygao 1.19 pvtxtree_->Branch("errx_spl1_mct",&errx_spl1_mct_,"errx_spl1_mct[nrecPV_spl1_mct]/D");
201     pvtxtree_->Branch("erry_spl1_mct",&erry_spl1_mct_,"erry_spl1_mct[nrecPV_spl1_mct]/D");
202     pvtxtree_->Branch("errz_spl1_mct",&errz_spl1_mct_,"errz_spl1_mct[nrecPV_spl1_mct]/D");
203     pvtxtree_->Branch("nTrkPV_spl1_mct",&nTrkPV_spl1_mct_,"nTrkPV_spl1_mct[nrecPV_spl1_mct]/I");
204     pvtxtree_->Branch("ndofPV_spl1_mct",&ndofPV_spl1_mct_,"ndofPV_spl1_mct[nrecPV_spl1_mct]/D");
205     pvtxtree_->Branch("normchi2PV_spl1_mct",&normchi2PV_spl1_mct_,"normchi2PV_spl1_mct[nrecPV_spl1_mct]/D");
206     pvtxtree_->Branch("avgPtPV_spl1_mct",&avgPtPV_spl1_mct_,"avgPtPV_spl1_mct[nrecPV_spl1_mct]/D");
207    
208 yygao 1.9 // For pvtxs with splittracks1
209     pvtxtree_->Branch("nrecPV_spl2_mct",&nrecPV_spl2_mct_,"nrecPV_spl2_mct/I");
210     pvtxtree_->Branch("deltax_spl2_mct",&deltax_spl2_mct_,"deltax_spl2_mct[nrecPV_spl2_mct]/D");
211     pvtxtree_->Branch("deltay_spl2_mct",&deltay_spl2_mct_,"deltay_spl2_mct[nrecPV_spl2_mct]/D");
212     pvtxtree_->Branch("deltaz_spl2_mct",&deltaz_spl2_mct_,"deltaz_spl2_mct[nrecPV_spl2_mct]/D");
213     pvtxtree_->Branch("pullx_spl2_mct",&pullx_spl2_mct_,"pullx_spl2_mct[nrecPV_spl2_mct]/D");
214     pvtxtree_->Branch("pully_spl2_mct",&pully_spl2_mct_,"pully_spl2_mct[nrecPV_spl2_mct]/D");
215 yygao 1.19 pvtxtree_->Branch("pullz_spl2_mct",&pullz_spl2_mct_,"pullz_spl2_mct[nrecPV_spl2_mct]/D");
216     pvtxtree_->Branch("errx_spl2_mct",&errx_spl2_mct_,"errx_spl2_mct[nrecPV_spl2_mct]/D");
217     pvtxtree_->Branch("erry_spl2_mct",&erry_spl2_mct_,"erry_spl2_mct[nrecPV_spl2_mct]/D");
218     pvtxtree_->Branch("errz_spl2_mct",&errz_spl2_mct_,"errz_spl2_mct[nrecPV_spl2_mct]/D");
219     pvtxtree_->Branch("nTrkPV_spl2_mct",&nTrkPV_spl2_mct_,"nTrkPV_spl2_mct[nrecPV_spl2_mct]/I");
220     pvtxtree_->Branch("ndofPV_spl2_mct",&ndofPV_spl2_mct_,"ndofPV_spl2_mct[nrecPV_spl2_mct]/D");
221     pvtxtree_->Branch("normchi2PV_spl2_mct",&normchi2PV_spl2_mct_,"normchi2PV_spl2_mct[nrecPV_spl2_mct]/D");
222     pvtxtree_->Branch("avgPtPV_spl2_mct",&avgPtPV_spl2_mct_,"avgPtPV_spl2_mct[nrecPV_spl2_mct]/D");
223 yygao 1.7 }
224     }
225 yygao 1.17
226 jengbou 1.4 setRootStyle();
227 yygao 1.10
228 yygao 1.17 //========================================
229     // Booking histograms
230     //========================================
231    
232 jengbou 1.13 // Create a root file for histograms
233     theFile = new TFile(histoFileName_.c_str(), "RECREATE");
234     // make diretories
235     theFile->mkdir("Summary");
236     theFile->cd();
237     theFile->mkdir("Others");
238     theFile->cd();
239 jengbou 1.15 if (analyze_) {
240     theFile->mkdir("Results");
241     theFile->cd();
242     }
243 jengbou 1.13
244     // Book Histograms:
245     h_pvtrk = new PVHistograms();
246     h_misc = new PVHistograms();
247     h_summary = new PVHistograms();
248     h_others = new PVHistograms();
249    
250     for(int i=0;i<3;i++) {
251     if(i == 0) h_pvtrk->Init("pvTrk");
252     else {
253     stringstream ss;
254     ss << i;
255 yygao 1.17 h_pvtrk->Init("pvTrk", ss.str(),"spl");
256 yygao 1.7 }
257 jengbou 1.13 }
258     h_misc->Init("misc");
259    
260     // Book MC only plots
261     if (!realData_) {
262     h_gen = new PVHistograms();
263     h_gen->Init("generator");
264     }
265 jengbou 1.14 if (analyze_) h_ana = new PVHistograms();
266 yygao 1.10
267 yygao 1.7 //Book histograms sensitive to data/mc
268     for (vector<int>::const_iterator it= datamode.begin(); it != datamode.end() ; ++it) {
269     string suffix;
270 jengbou 1.14 edm::LogInfo("Debug")<<"datamode = "<< *it<<endl;
271 yygao 1.7 switch(*it) {
272     case 0: suffix = "";
273     break;
274     case 1: suffix = "_spl1_mct";
275     break;
276     case 2: suffix = "_spl2_mct";
277     break;
278     case 3: suffix = "_mct";
279     break;
280 jengbou 1.2 }
281 jengbou 1.13 h_summary->Init("summary",suffix);
282 yygao 1.7
283     // Book residual, error and pull histograms for each nTrk bin
284 jengbou 1.1 for (int ntrk=nTrkMin_;ntrk<=nTrkMax_;++ntrk) {
285     stringstream ss;
286     ss << ntrk;
287 jengbou 1.13 h_others->Init("others",suffix,ss.str());
288     }
289    
290 yygao 1.7 // Book residual and pull histograms only when analyzeOntheFly is enabled
291 jengbou 1.14 if(analyze_) h_ana->InitA("analysis",suffix,"nTrk",nTrkMin_,nTrkMax_);
292 yygao 1.7 suffix.clear();
293 yygao 1.10 } // End of Book histograms sensitive to data/mc
294 yygao 1.17
295 yygao 1.11
296 jengbou 1.1 }
297    
298     PVStudy::~PVStudy()
299     {
300 yygao 1.17
301     // do anything here that needs to be done at desctruction time
302     // (e.g. close files, deallocate resources etc.)
303 jengbou 1.13 theFile->cd();
304     theFile->cd("Summary");
305     h_pvtrk->Save();
306     h_misc->Save();
307     h_summary->Save();
308 jengbou 1.15 if (!realData_)
309     h_gen->Save();
310     if (analyze_) {
311     theFile->cd();
312     theFile->cd("Results");
313 jengbou 1.13 h_ana->Save();
314 jengbou 1.15 }
315 jengbou 1.13 theFile->cd();
316     theFile->cd("Others");
317     h_others->Save();
318 jengbou 1.1
319 jengbou 1.13 theFile->Close();
320 jengbou 1.1 }
321    
322 jengbou 1.4 void PVStudy::setRootStyle() {
323     //
324     gROOT->SetStyle("Plain");
325     gStyle->SetFillColor(1);
326     gStyle->SetOptDate();
327     // gStyle->SetOptStat(1111110);
328     // gStyle->SetOptFit(0111);
329     // gStyle->SetPadTickX(1);
330     // gStyle->SetPadTickY(1);
331     gStyle->SetMarkerSize(0.5);
332     gStyle->SetMarkerStyle(8);
333     gStyle->SetGridStyle(3);
334     //gStyle->SetPadGridX(1);
335     //gStyle->SetPadGridY(1);
336     gStyle->SetPaperSize(TStyle::kA4);
337     gStyle->SetStatW(0.25); // width of statistics box; default is 0.19
338     // gStyle->SetStatH(0.10); // height of statistics box; default is 0.1
339     gStyle->SetStatFormat("6.4g"); // leave default format for now
340     gStyle->SetTitleSize(0.055, ""); // size for pad title; default is 0.02
341     gStyle->SetLabelSize(0.03, "XYZ"); // size for axis labels; default is 0.04
342     gStyle->SetStatFontSize(0.08); // size for stat. box
343 yygao 1.19 gStyle->SetTitleFont(42, "XYZ"); // times-bold-italic font (p. 153) for axes
344     gStyle->SetTitleFont(42, ""); // same for pad title
345     gStyle->SetLabelFont(42, "XYZ"); // same for axis labels
346     gStyle->SetStatFont(42); // same for stat. box
347 jengbou 1.4 gStyle->SetLabelOffset(0.006, "Y"); // default is 0.005
348     //
349     return;
350     }
351 jengbou 1.1 //
352     // member functions
353     //
354     std::vector<PVStudy::simPrimaryVertex> PVStudy::getSimPVs(const Handle<HepMCProduct> evtMC, std::string suffix="")
355     {
356 yygao 1.17 std::vector<PVStudy::simPrimaryVertex> simpv;
357 jengbou 1.1 const HepMC::GenEvent* evt=evtMC->GetEvent();
358     if (evt) {
359 jengbou 1.14 edm::LogInfo("SimPVs") << "[getSimPVs] process id " << evt->signal_process_id()<<endl;
360     edm::LogInfo("SimPVs") << "[getSimPVs] signal process vertex " << ( evt->signal_process_vertex() ?
361     evt->signal_process_vertex()->barcode() : 0 ) <<endl;
362     edm::LogInfo("SimPVs") << "[getSimPVs] number of vertices " << evt->vertices_size() << endl;
363 jengbou 1.1
364 jengbou 1.6 int idx=0; int npv=0;
365 jengbou 1.1 for(HepMC::GenEvent::vertex_const_iterator vitr= evt->vertices_begin();
366 jengbou 1.6 vitr != evt->vertices_end(); ++vitr ) { // loop for vertex ...
367     HepMC::FourVector pos = (*vitr)->position();
368     //HepLorentzVector pos = (*vitr)->position();
369    
370     // t component of PV:
371     for ( HepMC::GenVertex::particle_iterator mother = (*vitr)->particles_begin(HepMC::parents);
372     mother != (*vitr)->particles_end(HepMC::parents); ++mother ) {
373 jengbou 1.14 // edm::LogInfo("SimPVs") << "Status = " << (*mother)->status() << endl;
374 jengbou 1.6 HepMC::GenVertex * mv=(*mother)->production_vertex();
375     if( ((*mother)->status() == 3) && (!mv)) {
376 jengbou 1.14 // edm::LogInfo("SimPVs") << "npv= " << npv << endl;
377 jengbou 1.6 if (npv == 0) {
378 jengbou 1.13 h_gen->Fill1d("genPart_cT", pos.t()); // mm
379     h_gen->Fill1d("genPart_T", pos.t()/299.792458); // ns
380 jengbou 1.6 }
381     npv++;
382     }
383     }
384     // if (pos.t()>0) { continue;} // for 22X when t of PV was not smeared
385 jengbou 1.1
386 jengbou 1.6 bool hasMotherVertex=false;
387 jengbou 1.14 if (verbose_) cout << "[getSimPVs] mothers of vertex[" << ++idx << "]: " << endl;
388 jengbou 1.6 for ( HepMC::GenVertex::particle_iterator mother = (*vitr)->particles_begin(HepMC::parents);
389     mother != (*vitr)->particles_end(HepMC::parents); ++mother ) {
390     HepMC::GenVertex * mv=(*mother)->production_vertex();
391 jengbou 1.14 // if (verbose_) cout << "Status = " << (*mother)->status() << endl;
392 jengbou 1.6 if (mv) {
393     hasMotherVertex=true;
394     if(!verbose_) break; //if verbose_, print all particles of gen vertices
395     }
396     if(verbose_) {
397     cout << "\t";
398     (*mother)->print();
399     }
400     }
401    
402     if(hasMotherVertex) continue;
403    
404     // could be a new vertex, check all primaries found so far to avoid multiple entries
405     const double mm2cm=0.1;
406     simPrimaryVertex sv(pos.x()*mm2cm,pos.y()*mm2cm,pos.z()*mm2cm); // sim unit mm, rec unit cm
407     simPrimaryVertex *vp=NULL; // will become non-NULL if a vertex is found and then point to it
408     for(vector<simPrimaryVertex>::iterator v0=simpv.begin();
409     v0!=simpv.end(); v0++){
410     if( (fabs(sv.x-v0->x)<1e-5) && (fabs(sv.y-v0->y)<1e-5) && (fabs(sv.z-v0->z)<1e-5)){
411     vp=&(*v0);
412     break;
413 jengbou 1.1 }
414 jengbou 1.6 }
415 jengbou 1.1
416 jengbou 1.6 if(!vp){
417     // this is a new vertex
418 jengbou 1.14 edm::LogInfo("SimPVs") << "[getSimPVs] this is a new vertex " << sv.x << " " << sv.y << " " << sv.z << endl;
419 jengbou 1.6 simpv.push_back(sv);
420     vp=&simpv.back();
421     }else{
422 jengbou 1.14 edm::LogInfo("SimPVs") << "[getSimPVs] this is not a new vertex " << sv.x << " " << sv.y << " " << sv.z << endl;
423 jengbou 1.6 }
424     vp->genVertex.push_back((*vitr)->barcode());
425     // collect final state descendants
426     for ( HepMC::GenVertex::particle_iterator daughter = (*vitr)->particles_begin(HepMC::descendants);
427     daughter != (*vitr)->particles_end(HepMC::descendants);
428     ++daughter ) {
429     if (isFinalstateParticle(*daughter)){
430     if ( find(vp->finalstateParticles.begin(), vp->finalstateParticles.end(),(*daughter)->barcode())
431     == vp->finalstateParticles.end()){
432     vp->finalstateParticles.push_back((*daughter)->barcode());
433     HepMC::FourVector m=(*daughter)->momentum();
434     // the next four lines used to be "vp->ptot+=m;" in the days of CLHEP::HepLorentzVector
435     // but adding FourVectors seems not to be foreseen
436     vp->ptot.setPx(vp->ptot.px()+m.px());
437     vp->ptot.setPy(vp->ptot.py()+m.py());
438     vp->ptot.setPz(vp->ptot.pz()+m.pz());
439     vp->ptot.setE(vp->ptot.e()+m.e());
440     vp->ptsq+=(m.perp())*(m.perp());
441     if ( (m.perp()>0.8) && (fabs(m.pseudoRapidity())<2.5) && isCharged( *daughter ) ){
442     vp->nGenTrk++;
443 jengbou 1.1 }
444     }
445     }
446 jengbou 1.13 }//loop MC vertices daughters
447     }//loop MC vertices
448 jengbou 1.1 }
449     return simpv;
450     }
451    
452     std::vector<PVStudy::simPrimaryVertex> PVStudy::getSimPVs(const Handle<HepMCProduct> evtMC,
453     const Handle<SimVertexContainer> simVtxs,
454     const Handle<SimTrackContainer> simTrks)
455     {
456     // simvertices don't have enough information to decide,
457     // genVertices don't have the simulated coordinates ( with VtxSmeared they might)
458     // go through simtracks to get the link between simulated and generated vertices
459     std::vector<PVStudy::simPrimaryVertex> simpv;
460     int idx=0;
461     for(SimTrackContainer::const_iterator t=simTrks->begin();
462     t!=simTrks->end(); ++t){
463     if ( !(t->noVertex()) && !(t->type()==-99) ){
464     double ptsq=0;
465     bool primary=false; // something coming directly from the primary vertex
466     bool resonance=false; // resonance
467     bool track=false; // undecayed, charged particle
468     HepMC::GenParticle* gp=evtMC->GetEvent()->barcode_to_particle( (*t).genpartIndex() );
469     if (gp) {
470     HepMC::GenVertex * gv=gp->production_vertex();
471     if (gv) {
472     for ( HepMC::GenVertex::particle_iterator
473     daughter = gv->particles_begin(HepMC::descendants);
474     daughter != gv->particles_end(HepMC::descendants);
475     ++daughter ) {
476     if (isFinalstateParticle(*daughter)){
477     ptsq+=(*daughter)->momentum().perp()*(*daughter)->momentum().perp();
478     }
479     }
480 jengbou 1.13 //primary = ( gv->position().t()==0 );
481     primary = true;
482     h_gen->Fill1d("genPart_cT", gv->position().t()); // mm
483     h_gen->Fill1d("genPart_T", gv->position().t()/299.792458); // ns
484    
485 jengbou 1.1 //resonance= ( gp->mother() && isResonance(gp->mother())); // in CLHEP/HepMC days
486     // no more mother pointer in the improved HepMC GenParticle
487     resonance= ( isResonance(*(gp->production_vertex()->particles_in_const_begin())));
488     if (gp->status()==1){
489     //track=((pdt->particle(gp->pdg_id()))->charge() != 0);
490     track=not isCharged(gp);
491     }
492     }
493     }
494    
495     const HepMC::FourVector & v=(*simVtxs)[t->vertIndex()].position();
496     //const HepLorentzVector & v=(*simVtxs)[t->vertIndex()].position();
497     if(primary or resonance){
498     {
499     // check all primaries found so far to avoid multiple entries
500     bool newVertex=true;
501     for(std::vector<PVStudy::simPrimaryVertex>::iterator v0=simpv.begin();
502     v0!=simpv.end(); v0++){
503     if( (fabs(v0->x-v.x())<0.001) && (fabs(v0->y-v.y())<0.001) && (fabs(v0->z-v.z())<0.001) ){
504     if (track) {
505     v0->simTrackIndex.push_back(idx);
506     if (ptsq>(*v0).ptsq){(*v0).ptsq=ptsq;}
507     }
508     newVertex=false;
509     }
510     }
511     if(newVertex && !resonance){
512     PVStudy::simPrimaryVertex anotherVertex(v.x(),v.y(),v.z());
513     if (track) anotherVertex.simTrackIndex.push_back(idx);
514     anotherVertex.ptsq=ptsq;
515     simpv.push_back(anotherVertex);
516     }
517     }//
518     }
519    
520     }// simtrack has vertex and valid type
521     idx++;
522     }//simTrack loop
523     return simpv;
524     }
525    
526     // ------------ method called to for each event ------------
527     void
528     PVStudy::analyze(const edm::Event& iEvent, const edm::EventSetup& iSetup)
529     {
530     using namespace edm;
531 yygao 1.7 using namespace reco;
532    
533 yygao 1.19 //========================================================================
534     // Step 0: Prepare root variables and get information from the Event
535     //========================================================================
536    
537 jengbou 1.14 edm::LogInfo("Debug")<<"[PVStudy]"<<endl;
538 yygao 1.7 // Initialize Root-tuple variables if needed
539 yygao 1.19 SetVarToZero();
540    
541     // ====== TrackCollection
542 yygao 1.7 static const reco::TrackCollection s_empty_trackColl;
543     const reco::TrackCollection *trackColl = &s_empty_trackColl;
544     edm::Handle<reco::TrackCollection> trackCollectionHandle;
545     iEvent.getByLabel(trackCollectionTag_, trackCollectionHandle);
546     if( iEvent.getByLabel(trackCollectionTag_, trackCollectionHandle)) {
547     trackColl = trackCollectionHandle.product();
548     } else {
549 jengbou 1.14 edm::LogInfo("Debug") << "[PVStudy] trackCollection cannot be found -> using empty collection of same type." <<endl;
550 yygao 1.7 }
551 yygao 1.19 // ====== splitTrackCollection1
552 yygao 1.7 static const reco::TrackCollection s_empty_splitTrackColl1;
553     const reco::TrackCollection *splitTrackColl1 = &s_empty_splitTrackColl1;
554     edm::Handle<reco::TrackCollection> splitTrackCollection1Handle;
555     iEvent.getByLabel(splitTrackCollection1Tag_, splitTrackCollection1Handle);
556     if( iEvent.getByLabel(splitTrackCollection1Tag_, splitTrackCollection1Handle)) {
557     splitTrackColl1 = splitTrackCollection1Handle.product();
558     } else {
559 jengbou 1.14 edm::LogInfo("Debug") << "[PVStudy] splitTrackCollection1 cannot be found -> using empty collection of same type." <<endl;
560 yygao 1.7 }
561 yygao 1.19 // ====== splitTrackCollection2
562 yygao 1.7 static const reco::TrackCollection s_empty_splitTrackColl2;
563     const reco::TrackCollection *splitTrackColl2 = &s_empty_splitTrackColl2;
564     edm::Handle<reco::TrackCollection> splitTrackCollection2Handle;
565     iEvent.getByLabel(splitTrackCollection2Tag_, splitTrackCollection2Handle);
566     if( iEvent.getByLabel(splitTrackCollection2Tag_, splitTrackCollection2Handle)) {
567     splitTrackColl2 = splitTrackCollection2Handle.product();
568     } else {
569 yygao 1.17 edm::LogInfo("Debug") << "[PVStudy] splitTrackCollection2 cannot be found -> using empty collection of same type." <<endl;
570 yygao 1.7 }
571 yygao 1.17
572 yygao 1.19 // ======= PrimaryVertexCollection
573 yygao 1.7 static const reco::VertexCollection s_empty_vertexColl;
574     const reco::VertexCollection *vertexColl = &s_empty_vertexColl;
575     edm::Handle<reco::VertexCollection> vertexCollectionHandle;
576     iEvent.getByLabel(vertexCollectionTag_, vertexCollectionHandle);
577     if( iEvent.getByLabel(vertexCollectionTag_, vertexCollectionHandle)) {
578     vertexColl = vertexCollectionHandle.product();
579     } else {
580 yygao 1.17 edm::LogInfo("Debug") << "[PVStudy] vertexCollection cannot be found -> using empty collection of same type." <<endl;
581 yygao 1.7 }
582 yygao 1.19 // ====== splitVertexCollection1
583 yygao 1.7 static const reco::VertexCollection s_empty_splitVertexColl1;
584     const reco::VertexCollection *splitVertexColl1 = &s_empty_splitVertexColl1;
585     edm::Handle<reco::VertexCollection> splitVertexCollection1Handle;
586     iEvent.getByLabel(splitVertexCollection1Tag_, splitVertexCollection1Handle);
587     if( iEvent.getByLabel(splitVertexCollection1Tag_, splitVertexCollection1Handle)) {
588     splitVertexColl1 = splitVertexCollection1Handle.product();
589     } else {
590 jengbou 1.14 edm::LogInfo("Debug") << "[PVStudy] splitVertexCollection1 cannot be found -> using empty collection of same type." <<endl;
591 yygao 1.17 }
592 yygao 1.19 // ====== splitVertexCollection2
593 yygao 1.7 static const reco::VertexCollection s_empty_splitVertexColl2;
594     const reco::VertexCollection *splitVertexColl2 = &s_empty_splitVertexColl2;
595     edm::Handle<reco::VertexCollection> splitVertexCollection2Handle;
596     iEvent.getByLabel(splitVertexCollection2Tag_, splitVertexCollection2Handle);
597     if( iEvent.getByLabel(splitVertexCollection2Tag_, splitVertexCollection2Handle)) {
598     splitVertexColl2 = splitVertexCollection2Handle.product();
599     } else {
600 jengbou 1.14 edm::LogInfo("Debug") << "[PVStudy] splitVertexCollection2 cannot be found -> using empty collection of same type." <<endl;
601 yygao 1.7 }
602 yygao 1.17
603 yygao 1.10
604 yygao 1.19 // ======== BeamSpot accessors
605 yygao 1.17 edm::Handle<reco::BeamSpot> recoBeamSpotHandle;
606     iEvent.getByLabel(bsSrc,recoBeamSpotHandle);
607     reco::BeamSpot bs = *recoBeamSpotHandle;
608     const Point beamSpot = recoBeamSpotHandle.isValid() ? Point(recoBeamSpotHandle->x0(), recoBeamSpotHandle->y0(), recoBeamSpotHandle->z0()) : Point(0, 0, 0);
609    
610 yygao 1.19 edm::LogInfo("Debug")<<"[PVStudy] End accessing the track, beamSpot, primary vertex collections"<<endl;
611 yygao 1.7
612 yygao 1.19 // ========== MC simvtx accessor
613 jengbou 1.1 if (!realData_) {
614 yygao 1.7 edm::Handle<SimVertexContainer> simVtxs;
615 jengbou 1.1 iEvent.getByLabel( simG4_, simVtxs);
616    
617 yygao 1.7 edm::Handle<SimTrackContainer> simTrks;
618 jengbou 1.1 iEvent.getByLabel( simG4_, simTrks);
619     }
620    
621 yygao 1.19 // ========== GET PDT
622 jengbou 1.1 try{
623     iSetup.getData(pdt);
624     }catch(const Exception&){
625 jengbou 1.14 edm::LogInfo("Debug") << "[PVStudy] Some problem occurred with the particle data table. This may not work !." <<endl;
626 jengbou 1.1 }
627 yygao 1.19
628     // ======= Get MC information if needed
629     bool MC=false;
630     Handle<HepMCProduct> evtMC;
631     if (!realData_) {
632     iEvent.getByLabel("generator",evtMC);
633     if (!evtMC.isValid()) {
634     MC=false;
635     edm::LogInfo("Debug") << "[PVStudy] no HepMCProduct found"<< endl;
636     } else {
637     edm::LogInfo("Debug") << "[PVStudy] generator HepMCProduct found"<< endl;
638     MC=true;
639     }
640     }
641 yygao 1.17
642 yygao 1.19 //========================================================================
643     // Step 1: Apply event cleaning for data and MC
644     // WARNING: event selection cut are hard coded!!
645     //========================================================================
646 yygao 1.23
647 yygao 1.20 glob_runno_ = iEvent.id().run();
648     glob_evtno_ = iEvent.id().event();
649     glob_ls_ = iEvent.luminosityBlock();
650     glob_bx_ = iEvent.bunchCrossing();
651    
652 yygao 1.19 //========================================================================
653     // Step 2: Fill histograms for the splitting consistency checks
654     //========================================================================
655    
656     // === Fill trackparameters of the input tracks to pvtx fitter
657 yygao 1.17 edm::LogInfo("Debug")<<"[PVStudy] Start filling track parameters of the input tracks to pvtx fitter."<<endl;
658     //fillTrackHisto(const reco::TrackCollection *trackColl, int datatype, const Point & bs)
659     // datatype: unsplittracks (0); splittracks1 (1); splittracks2 (2);
660     fillTrackHisto(trackColl, 0, beamSpot);
661     fillTrackHisto(splitTrackColl1, 1, beamSpot);
662     fillTrackHisto(splitTrackColl2, 2, beamSpot);
663     edm::LogInfo("Debug")<<"[PVStudy] End filling track parameters of the input tracks to pvtx fitter."<<endl;
664 yygao 1.19
665    
666     // ==== Fill number of reconstructed vertices
667 jengbou 1.14 edm::LogInfo("Debug")<<"[PVStudy] Printing vertexCollection: "<<endl;
668     edm::LogInfo("Debug")<<"[PVStudy] Printing splitVertexCollection1: "<<endl;
669     edm::LogInfo("Debug")<<"[PVStudy] Printing splitVertexCollection2: "<<endl;
670     edm::LogInfo("Debug")<<"[PVStudy] Start filling pvtx parameters."<<endl;
671     if (verbose_) {
672 yygao 1.7 printRecVtxs(vertexCollectionHandle);
673     printRecVtxs(splitVertexCollection1Handle);
674     printRecVtxs(splitVertexCollection2Handle);
675     }
676 yygao 1.19
677 yygao 1.9 nrecPV_ = int (vertexColl->size());
678     nrecPV1_spl_ = int (splitVertexColl1->size());
679     nrecPV2_spl_ = int (splitVertexColl2->size());
680 jengbou 1.8
681 jengbou 1.13 h_pvtrk->Fill1d("nrecPV", nrecPV_);
682     h_pvtrk->Fill1d("nrecPV1_spl", nrecPV1_spl_);
683     h_pvtrk->Fill1d("nrecPV2_spl", nrecPV2_spl_);
684     h_misc->Fill1d("nrecPVDiff", double(nrecPV1_spl_)-double(nrecPV2_spl_));
685 yygao 1.11
686 yygao 1.17
687 yygao 1.19 // ======= Fill track parameter ntuple/hist for tracks used in recoVertices
688     //fillTrackHistoInPV(const reco::VertexCollection *vertexColl, int datatype, const Point & bs) {
689 yygao 1.10 if(vertexColl->size() > 0 && vertexColl->begin()->isValid() && !(vertexColl->begin()->isFake()))
690 yygao 1.19 fillTrackHistoInPV(vertexColl, 0, beamSpot);
691 yygao 1.10
692 yygao 1.19 // ======= Fill secondary/primary min separations for multi-vertices
693 yygao 1.10 if(vertexColl->size()>1 && vertexColl->begin()->isValid() && !(vertexColl->begin()->isFake()) ) {
694     double min_xsep = 9999.0;
695     double min_ysep = 9999.0;
696     double min_zsep = 9999.0;
697     double min_xsep_sign = 9999.0;
698     double min_ysep_sign = 9999.0;
699     double min_zsep_sign = 9999.0;
700     double min_ntrksep = 9999.0;
701     double min_sumpt2sep = 9999999.0;
702 yygao 1.9
703 jengbou 1.14 edm::LogInfo("Debug")<<"[PVStudy] leading pvtx z = "<< vertexColl->begin()->z() <<endl;
704 yygao 1.10
705     // Looping through the secondary vertices to find the mininum separation to the primary
706     for(reco::VertexCollection::const_iterator v=vertexColl->begin() + 1 ;
707     v!=vertexColl->end(); ++v) {
708     if(v->isValid() && ! v->isFake()) {
709     if(fabs(v->x()- vertexColl->begin()->x())<min_xsep)
710     min_xsep = fabs(v->x()- vertexColl->begin()->x());
711     if(fabs(v->y()- vertexColl->begin()->y())<min_ysep)
712     min_ysep = fabs(v->y()- vertexColl->begin()->y());
713     if(fabs(v->z()- vertexColl->begin()->z())<min_zsep)
714     min_zsep = fabs(v->z()- vertexColl->begin()->z());
715     double xsep_sign = fabs(v->x()- vertexColl->begin()->x())/max(v->xError(), vertexColl->begin()->xError());
716     if(xsep_sign < min_xsep_sign)
717     min_xsep_sign = xsep_sign;
718     double ysep_sign = fabs(v->y()- vertexColl->begin()->y())/max(v->yError(), vertexColl->begin()->yError());
719     if(ysep_sign < min_ysep_sign)
720     min_ysep_sign = ysep_sign;
721     double zsep_sign = fabs(v->z()- vertexColl->begin()->z())/max(v->zError(), vertexColl->begin()->zError());
722     if(zsep_sign < min_zsep_sign)
723     min_zsep_sign = zsep_sign;
724     if( (double(vertexColl->begin()->tracksSize()) - double(v->tracksSize())) < min_ntrksep)
725     min_ntrksep = double(vertexColl->begin()->tracksSize()) - double(v->tracksSize());
726     if(fabs(sumPtSquared(*v) - sumPtSquared(*(vertexColl->begin()))) < min_sumpt2sep)
727     min_sumpt2sep = fabs(sumPtSquared(*v) - sumPtSquared(*(vertexColl->begin())));
728     }
729     }
730 jengbou 1.13 h_misc->Fill1d("min_xsep", min_xsep);
731     h_misc->Fill1d("min_ysep", min_ysep);
732     h_misc->Fill1d("min_zsep", min_zsep);
733     h_misc->Fill1d("min_xsep_sign", min_xsep_sign);
734     h_misc->Fill1d("min_ysep_sign", min_ysep_sign);
735     h_misc->Fill1d("min_zsep_sign", min_zsep_sign);
736     h_misc->Fill1d("min_ntrksep", min_ntrksep);
737     h_misc->Fill1d("min_sumpt2sep", min_sumpt2sep);
738 yygao 1.10
739     min_zsep_ = min_zsep;
740     min_ntrksep_ = min_ntrksep;
741     min_sumpt2sep_ = min_sumpt2sep;
742     } // End of if(vertexColl->size()>1) {
743    
744 jengbou 1.14 edm::LogInfo("Debug")<<"[PVStudy] End filling pvtx parameters."<<endl;
745 yygao 1.17
746 yygao 1.19 //========================================================================
747     // Step 3: PrimaryVertex Matching
748     // 1. In z |z1-z2|< zsigncut * max(sigmaz1, sigmaz2)
749     // 2. |(nTrkPV1 - nTrkPV2)/(nTrkPV1+nTrkPV2)|<ntrkdiffcut_
750     // 3. The first match is the primary vertex, which has largest sum(pT^2)
751     //========================================================================
752 yygao 1.17
753 jengbou 1.14 edm::LogInfo("Debug")<<"[PVStudy] matching pvtxs "<<endl;
754 yygao 1.9 reco::VertexCollection s_empty_matchedVertexColl1;
755     reco::VertexCollection *matchedVertexColl1 = &s_empty_matchedVertexColl1;
756     matchedVertexColl1->reserve(splitVertexColl1->size());
757     reco::VertexCollection s_empty_matchedVertexColl2;
758     reco::VertexCollection *matchedVertexColl2 = &s_empty_matchedVertexColl2;
759     matchedVertexColl2->reserve(splitVertexColl2->size());
760 yygao 1.7
761 yygao 1.10 bool stopmatching = false;
762     for (size_t ivtx = 0; ivtx<splitVertexCollection1Handle->size() && !stopmatching; ++ivtx) {
763 yygao 1.9 reco::VertexRef recvtx1(splitVertexCollection1Handle, ivtx);
764 yygao 1.10 if( !(recvtx1->isValid()) || recvtx1->isFake()) break;
765     for (size_t jvtx = ivtx; jvtx < splitVertexCollection2Handle->size(); ++jvtx) {
766     //------------------------------------------------------------------------
767     //== If only considering matching the first vertex of the splitVertexColl
768     //------------------------------------------------------------------------
769     if (ivtx!=0 || jvtx!=0) { stopmatching = true; break; }
770 yygao 1.9 reco::VertexRef recvtx2(splitVertexCollection2Handle, jvtx);
771 yygao 1.10 if( !(recvtx2->isValid()) || recvtx2->isFake()) break;
772 jengbou 1.14 edm::LogInfo("Debug")<<"[PVStudy] Matching splitVertexColl1: # "<< ivtx<< " and splitVertexColl1: # "<<jvtx<<endl;
773     edm::LogInfo("Debug")<<"[PVStudy] recvtx1->z() = " << recvtx1->z() << "+/- "<< recvtx1->zError() << "." << endl;
774     edm::LogInfo("Debug")<<"[PVStudy] recvtx2->z() = " << recvtx2->z() << "+/- "<< recvtx2->zError() << "." << endl;
775 yygao 1.17
776     double twovtxsig = (recvtx1->z()-recvtx2->z())/max(recvtx1->zError(), recvtx2->zError());
777     h_misc->Fill1d("twovtxzsign", twovtxsig);
778 yygao 1.9 if(matchVertex(recvtx1, recvtx2, zsigncut_)) {
779 jengbou 1.14 edm::LogInfo("Debug")<<"[PVStudy] The two splitted vertices match in Z. "<<endl;
780    
781 yygao 1.21 int nTrkPV1, nTrkPV2;
782     if(useHWTrk_) {
783     nTrkPV1 = nHWTrkRecVtx(*recvtx1);
784     nTrkPV2 = nHWTrkRecVtx(*recvtx2);
785     }
786     else {
787     nTrkPV1 = recvtx1->tracksSize();
788     nTrkPV2 = recvtx2->tracksSize();
789     }
790 yygao 1.9 double ntrkreldiff = double(nTrkPV1-nTrkPV2)/double(nTrkPV1+nTrkPV2);
791 jengbou 1.13 h_misc->Fill1d("nTrkPVDiff", nTrkPV1-nTrkPV2);
792     h_misc->Fill1d("nTrkPVRelDiff", ntrkreldiff);
793 yygao 1.9 if(fabs(ntrkreldiff)<ntrkdiffcut_) {
794 jengbou 1.14 edm::LogInfo("Debug")<<"[PVStudy] (nTrkPV1-nTrkPV2)/(nTrkPV1+nTrkPV2) = " << ntrkreldiff<<endl;
795    
796 yygao 1.9 matchedVertexColl1->push_back(*recvtx1);
797     matchedVertexColl2->push_back(*recvtx2);
798 yygao 1.10 stopmatching = true; // stop the matching when the first match is found!
799     break;
800 yygao 1.7 }
801 yygao 1.9 else
802 jengbou 1.14 edm::LogInfo("Debug")<<"WARNING: (nTrkPV1-nTrkPV2)/(nTrkPV1+nTrkPV2) = " << ntrkreldiff<<", exceeding cut "<<ntrkdiffcut_<<endl;
803 yygao 1.7 }
804 yygao 1.9 else {
805 jengbou 1.14 edm::LogInfo("Debug")<<"WARNING: The two reconstructed vertices do not match in z: "<<endl;
806     edm::LogInfo("Debug")<<"recvtx1->z() = " << recvtx1->z() << "+/- "<< recvtx1->zError() << "." << endl;
807     edm::LogInfo("Debug")<<"recvtx2->z() = " << recvtx2->z() << "+/- "<< recvtx2->zError() << "." << endl;
808 yygao 1.7 }
809     }
810 yygao 1.9 }
811 jengbou 1.14 edm::LogInfo("Debug")<<"[PVStudy] End matching pvtxs"<<endl;
812 yygao 1.19
813     //========================================================================
814     // Step 4: Analyze matchedVertexColls
815     //========================================================================
816     edm::LogInfo("Debug")<<"[PVStudy] Begin analyzing the matchedVertexColl with size = "<< matchedVertexColl1->size()<< endl;
817 yygao 1.9
818 yygao 1.19 // ==== If it is MC, analyze the res/pull of the unsplit vertexColl first
819     if(MC){
820     // make a list of primary vertices:
821     std::vector<simPrimaryVertex> simpv;
822     simpv=getSimPVs(evtMC,"");
823     // simpv=getSimPVs(evtMC, simVtxs, simTrks);
824     h_gen->Fill1d("nsimPV", simpv.size());
825     nsimPV_ = simpv.size();
826     int isimpv = 0;
827     for(std::vector<simPrimaryVertex>::iterator vsim=simpv.begin();
828     vsim!=simpv.end(); vsim++, isimpv++){
829     nsimTrkPV_[isimpv] =vsim->nGenTrk;
830     simx_[isimpv] = vsim->x;
831     simy_[isimpv] = vsim->y;
832     simz_[isimpv] = vsim->y;
833     simptsq_[isimpv] = vsim->ptsq;
834 yygao 1.23 fillMCHisto(vsim, isimpv, vertexColl, 3, avgTrkPtInPVMin_, avgTrkPtInPVMax_);
835 yygao 1.19 }
836     }
837 yygao 1.9
838     // Compare the reconstructed vertex position and calculate resolution/pulls
839     if(matchedVertexColl1->size() != 0 && matchedVertexColl2->size() != 0) {
840 yygao 1.19 // ==== Analyze the splitted vtx using MC method
841     if(MC){
842     // make a list of primary vertices:
843     std::vector<simPrimaryVertex> simpv;
844     simpv=getSimPVs(evtMC,"");
845     // simpv=getSimPVs(evtMC, simVtxs, simTrks);
846     int isimpv = 0;
847     for(std::vector<simPrimaryVertex>::iterator vsim=simpv.begin();
848     vsim!=simpv.end(); vsim++, isimpv++){
849 yygao 1.23 fillMCHisto(vsim, isimpv, matchedVertexColl1, 1, avgTrkPtInPVMin_, avgTrkPtInPVMax_);
850     fillMCHisto(vsim, isimpv, matchedVertexColl2, 2, avgTrkPtInPVMin_, avgTrkPtInPVMax_);
851 yygao 1.19 }
852     }
853    
854     // ==== Analyze res/pull two-vertex method
855     //fillPvtxHisto(const reco::VertexCollection *vertexColl, int datatype)
856     fillTrackHistoInPV(matchedVertexColl1, 1, beamSpot);
857     fillTrackHistoInPV(matchedVertexColl2, 2, beamSpot);
858 yygao 1.9
859     reco::VertexCollection::const_iterator v1;
860     reco::VertexCollection::const_iterator v2;
861 yygao 1.19
862 yygao 1.9 nrecPV_twovtx_ = 0;
863     for(v1 = matchedVertexColl1->begin(), v2 = matchedVertexColl2->begin();
864     v1!=matchedVertexColl1->end(), v2 != matchedVertexColl2->end();
865 yygao 1.23 ++v1, ++v2) {
866    
867     // ==================================================================
868     // With the option to fill the histograms at a given average pT range
869     // ==================================================================
870     if (avgPtRecVtx(*v1) < avgTrkPtInPVMin_ || avgPtRecVtx(*v1) > avgTrkPtInPVMax_ ) continue;
871     if (avgPtRecVtx(*v2) < avgTrkPtInPVMin_ || avgPtRecVtx(*v2) > avgTrkPtInPVMax_ ) continue;
872    
873 yygao 1.17 h_misc->Fill1d("ndofPVDiff", v1->ndof() - v2->ndof());
874     h_misc->Fill1d("ndofPVRelDiff", (v1->ndof()-v2->ndof())/(v1->ndof()+v2->ndof()));
875 yygao 1.9 fres_[0] = (v1->x()-v2->x())/sqrt(2.0);
876     fres_[1] = (v1->y()-v2->y())/sqrt(2.0);
877     fres_[2] = (v1->z()-v2->z())/sqrt(2.0);
878     ferror_[0] = sqrt(pow(v1->xError(),2)+pow(v2->xError(),2))/sqrt(2);
879     ferror_[1] = sqrt(pow(v1->yError(),2)+pow(v2->yError(),2))/sqrt(2);
880     ferror_[2] = sqrt(pow(v1->zError(),2)+pow(v2->zError(),2))/sqrt(2);
881    
882 yygao 1.21 int nTrkPV1, nTrkPV2;
883     if(useHWTrk_) {
884     nTrkPV1 = nHWTrkRecVtx(*v1);
885     nTrkPV2 = nHWTrkRecVtx(*v2);
886     }
887     else {
888     nTrkPV1 = v1->tracksSize();
889     nTrkPV2 = v2->tracksSize();
890     }
891    
892     fntrk_ = (nTrkPV1 + nTrkPV2)/2;
893 yygao 1.23
894 jengbou 1.13 h_summary->Fill1d("deltax", fres_[0] );
895     h_summary->Fill1d("deltay", fres_[1] );
896     h_summary->Fill1d("deltaz", fres_[2] );
897     h_summary->Fill1d("pullx", fres_[0]/ferror_[0]);
898     h_summary->Fill1d("pully", fres_[1]/ferror_[1]);
899     h_summary->Fill1d("pullz", fres_[2]/ferror_[2]);
900     h_summary->Fill1d("errPVx", ferror_[0] );
901     h_summary->Fill1d("errPVy", ferror_[1] );
902     h_summary->Fill1d("errPVz", ferror_[2] );
903 yygao 1.9 pvinfo.push_back(PVStudy::PVInfo(res(fres_[0], fres_[1], fres_[2]),
904     error(ferror_[0], ferror_[1], ferror_[2]),
905     fntrk_));
906     // Fill histo according to its track multiplicity, set datamode = 0 for pvtx using all tracks
907 yygao 1.23
908 yygao 1.9 fillHisto(res(fres_[0], fres_[1], fres_[2]),
909     error(ferror_[0], ferror_[1], ferror_[2]),
910     fntrk_,0);
911 yygao 1.19
912 yygao 1.9 // Fill the ntuple variables
913     nTrkPV_twovtx_[nrecPV_twovtx_] = fntrk_;
914     deltax_twovtx_[nrecPV_twovtx_] = fres_[0];
915     deltay_twovtx_[nrecPV_twovtx_] = fres_[1];
916     deltaz_twovtx_[nrecPV_twovtx_] = fres_[2];
917     errx_twovtx_[nrecPV_twovtx_] = ferror_[0];
918     erry_twovtx_[nrecPV_twovtx_] = ferror_[1];
919     errz_twovtx_[nrecPV_twovtx_] = ferror_[2];
920     pullx_twovtx_[nrecPV_twovtx_] = fres_[0]/ferror_[0];
921     pully_twovtx_[nrecPV_twovtx_] = fres_[1]/ferror_[1];
922     pullz_twovtx_[nrecPV_twovtx_] = fres_[2]/ferror_[2];
923 yygao 1.19
924    
925     //SplittedVertex
926 yygao 1.21 nTrkPV1_spl_twovtx_[nrecPV_twovtx_] = nTrkPV1;
927 yygao 1.19 ndofPV1_spl_twovtx_[nrecPV_twovtx_] = v1->ndof();
928     normchi2PV1_spl_twovtx_[nrecPV_twovtx_] = v1->normalizedChi2();
929     avgPtPV1_spl_twovtx_[nrecPV_twovtx_] = avgPtRecVtx(*v1);
930     errx1_spl_twovtx_[nrecPV_twovtx_] = v1->xError();
931     erry1_spl_twovtx_[nrecPV_twovtx_] = v1->yError();
932     errz1_spl_twovtx_[nrecPV_twovtx_] = v1->zError();
933 yygao 1.21
934     nTrkPV2_spl_twovtx_[nrecPV_twovtx_] = nTrkPV2;
935 yygao 1.19 ndofPV2_spl_twovtx_[nrecPV_twovtx_] = v2->ndof();
936     normchi2PV2_spl_twovtx_[nrecPV_twovtx_] = v2->normalizedChi2();
937     avgPtPV2_spl_twovtx_[nrecPV_twovtx_] = avgPtRecVtx(*v2);
938     errx2_spl_twovtx_[nrecPV_twovtx_] = v2->xError();
939     erry2_spl_twovtx_[nrecPV_twovtx_] = v2->yError();
940     errz2_spl_twovtx_[nrecPV_twovtx_] = v2->zError();
941    
942 yygao 1.9 nrecPV_twovtx_++;
943 yygao 1.19
944     // Print some information of the two tracks events
945     if(verbose_ && fntrk_ < 4) {
946     cout<<"Printing matchedVertexColl1 for low ntrack bins"<<endl;
947     printRecVtx(*v1);
948     cout<<"Printing matchedVertexColl1 for low ntrack bins"<<endl;
949     printRecVtx(*v2);
950 yygao 1.17 }
951 yygao 1.19 } // End of analyzing res/pull
952 yygao 1.9 } // End of if(matchedVertexColl1->size() == 1 && matchedVertexColl2->size() == 1 ) {
953     else
954 jengbou 1.14 edm::LogInfo("Debug")<<"[PVStudy] WARNING: Cannot find matching pvtxs"<<endl;
955 yygao 1.9
956 jengbou 1.14 edm::LogInfo("Debug")<<"[PVStudy] End analyzing the matchedVertexColl"<<endl;
957 yygao 1.7
958 yygao 1.17
959 yygao 1.19 //========================================================================
960     // Step 5: Fill ntuple if saventuple_ is on
961     //========================================================================
962 yygao 1.9 if(saventuple_) {
963     ftree_->Fill();
964     pvtxtree_->Fill();
965     }
966 yygao 1.17
967 jengbou 1.1 }
968    
969 yygao 1.17
970    
971 jengbou 1.1 // ------------ method called once each job just before starting event loop ------------
972     void
973     PVStudy::beginJob()
974     {
975     }
976    
977     // ------------ method called once each job just after ending the event loop ------------
978     void
979     PVStudy::endJob() {
980 jengbou 1.14 edm::LogInfo("Analysis") << "[endJob] Analyzing PV info" << endl;
981 yygao 1.7 // Looping through the datamodes available
982     for (vector<int>::const_iterator it= datamode.begin(); it != datamode.end() ; ++it) {
983     string suffix;
984 jengbou 1.14 edm::LogInfo("Analysis")<<"[endJob] datamode = "<< *it<<endl;
985 yygao 1.7 switch(*it) {
986     case 0: suffix = "";
987     break;
988     case 1: suffix = "_spl1_mct";
989     break;
990     case 2: suffix = "_spl2_mct";
991     break;
992     case 3: suffix = "_mct";
993     break;
994     }
995 jengbou 1.14 suffix += "_nTrk";
996 yygao 1.9 if(analyze_) {
997 jengbou 1.8 for (int ntrk=nTrkMin_;ntrk<=nTrkMax_;++ntrk) {
998 jengbou 1.14 edm::LogInfo("Analysis") << "[endJob] ntrk = " << ntrk << endl;
999 jengbou 1.8 PVStudy::PVAnaInfo ipv = GetPVAnaInfo(ntrk,*it);
1000 jengbou 1.14 if ( ipv.res_.x() > 0 ) h_ana->Fill2d("resx"+suffix, ntrk,ipv.res_.x());
1001     if ( ipv.res_.y() > 0 ) h_ana->Fill2d("resy"+suffix, ntrk,ipv.res_.y());
1002     if ( ipv.res_.z() > 0 ) h_ana->Fill2d("resz"+suffix, ntrk,ipv.res_.z());
1003     if ( ipv.pull_.x() > 0 ) h_ana->Fill2d("pullx"+suffix, ntrk,ipv.pull_.x());
1004     if ( ipv.pull_.y() > 0 ) h_ana->Fill2d("pully"+suffix, ntrk,ipv.pull_.y());
1005     if ( ipv.pull_.z() > 0 ) h_ana->Fill2d("pullz"+suffix, ntrk,ipv.pull_.z());
1006 jengbou 1.2 }
1007 jengbou 1.14 }
1008 yygao 1.7 suffix.clear();
1009 jengbou 1.1 }
1010 jengbou 1.8 if(saventuple_) {
1011     file_->cd();
1012     ftree_->Write();
1013 yygao 1.9 pvtxtree_->Write();
1014 jengbou 1.8 file_->Close();
1015     }
1016 yygao 1.17
1017    
1018 jengbou 1.1 }
1019    
1020 yygao 1.7 // Match a recovertex with a simvertex
1021     // ? Should the cut be parameter dependent?
1022     // cut can be within n sigma of the vertex.zerror()
1023 jengbou 1.1 bool PVStudy::matchVertex(const PVStudy::simPrimaryVertex & vsim,
1024     const reco::Vertex & vrec)
1025     {
1026 yygao 1.17 if(vrec.isFake() || !vrec.isValid()) return false;
1027     else
1028 yygao 1.19 return true;
1029     //return (fabs(vsim.z-vrec.z())<0.0500); // =500um // remove this hard cut
1030 jengbou 1.1 }
1031    
1032 yygao 1.7 // Match two reconstructed vertices
1033 yygao 1.9 bool PVStudy::matchVertex( const reco::VertexRef & vrec1,
1034     const reco::VertexRef & vrec2,
1035     int zsigncut)
1036 yygao 1.7 {
1037 yygao 1.9 double cut = zsigncut*max(vrec1->zError(), vrec2->zError());
1038 jengbou 1.14 edm::LogInfo("Debug")<<"[matchVertex] The matching criteria in z is "<<cut<<endl;
1039 yygao 1.9 return (fabs(vrec1->z()-vrec2->z())<cut);
1040 yygao 1.7 }
1041    
1042    
1043 jengbou 1.1 bool PVStudy::isResonance(const HepMC::GenParticle * p){
1044     double ctau=(pdt->particle( abs(p->pdg_id()) ))->lifetime();
1045 jengbou 1.14 edm::LogInfo("Debug") << "[isResonance] isResonance " << p->pdg_id() << " " << ctau << endl;
1046 jengbou 1.1 return ctau >0 && ctau <1e-6;
1047     }
1048    
1049     bool PVStudy::isFinalstateParticle(const HepMC::GenParticle * p){
1050     return ( !p->end_vertex() && p->status()==1 );
1051     }
1052    
1053     bool PVStudy::isCharged(const HepMC::GenParticle * p){
1054     const ParticleData * part = pdt->particle( p->pdg_id() );
1055     if (part){
1056     return part->charge()!=0;
1057     }else{
1058     // the new/improved particle table doesn't know anti-particles
1059     return pdt->particle( -p->pdg_id() )!=0;
1060     }
1061     }
1062    
1063     void PVStudy::printSimVtxs(const Handle<SimVertexContainer> simVtxs){
1064     int i=0;
1065     for(SimVertexContainer::const_iterator vsim=simVtxs->begin();
1066     vsim!=simVtxs->end(); ++vsim){
1067     cout << i++ << ")" << scientific
1068     << " evtid=" << vsim->eventId().event()
1069     << " sim x=" << vsim->position().x()
1070     << " sim y=" << vsim->position().y()
1071     << " sim z=" << vsim->position().z()
1072     << " sim t=" << vsim->position().t()
1073     << " parent=" << vsim->parentIndex()
1074     << endl;
1075     }
1076     }
1077    
1078     void PVStudy::printRecVtxs(const Handle<reco::VertexCollection> recVtxs){
1079     int ivtx=0;
1080     for(reco::VertexCollection::const_iterator v=recVtxs->begin();
1081     v!=recVtxs->end(); ++v){
1082     cout << "Recvtx "<< std::setw(3) << std::setfill(' ')<<ivtx++
1083     << "#trk " << std::setw(3) << v->tracksSize()
1084     << " chi2 " << std::setw(4) << v->chi2()
1085     << " ndof " << std::setw(3) << v->ndof() << endl
1086     << " x " << std::setw(8) <<std::fixed << std::setprecision(4) << v->x()
1087     << " dx " << std::setw(8) << v->xError()<< endl
1088     << " y " << std::setw(8) << v->y()
1089     << " dy " << std::setw(8) << v->yError()<< endl
1090     << " z " << std::setw(8) << v->z()
1091     << " dz " << std::setw(8) << v->zError()
1092     << endl;
1093     }
1094     }
1095    
1096 yygao 1.19 void PVStudy::printRecVtx(const reco::Vertex & v){
1097    
1098     cout << "#trk " << std::setw(3) << v.tracksSize()
1099     << " chi2 " << std::setw(4) << v.chi2()
1100     << " ndof " << std::setw(3) << v.ndof() << endl
1101     << " x " << std::setw(8) <<std::fixed << std::setprecision(4) << v.x()
1102     << " dx " << std::setw(8) << v.xError()<< endl
1103     << " y " << std::setw(8) << v.y()
1104     << " dy " << std::setw(8) << v.yError()<< endl
1105     << " z " << std::setw(8) << v.z()
1106     << " dz " << std::setw(8) << v.zError()
1107     << endl;
1108     }
1109    
1110 jengbou 1.1 void PVStudy::printSimTrks(const Handle<SimTrackContainer> simTrks){
1111     cout << " simTrks type, (momentum), vertIndex, genpartIndex" << endl;
1112     int i=1;
1113     for(SimTrackContainer::const_iterator t=simTrks->begin();
1114     t!=simTrks->end(); ++t){
1115     //HepMC::GenParticle* gp=evtMC->GetEvent()->particle( (*t).genpartIndex() );
1116     cout << i++ << ")"
1117     << (*t)
1118     << " index="
1119     << (*t).genpartIndex();
1120     //if (gp) {
1121     // HepMC::GenVertex *gv=gp->production_vertex();
1122     // cout << " genvertex =" << (*gv);
1123     //}
1124     cout << endl;
1125     }
1126     }
1127    
1128 yygao 1.23 void PVStudy::fillHisto(res r, error er, int ntk, int datamode) {
1129 jengbou 1.3 stringstream ss;
1130     ss << ntk;
1131 jengbou 1.14 string suffix;
1132     if(datamode == 0 ) suffix = "_" + ss.str();
1133     if(datamode == 1 ) suffix = "_spl1_mct_" + ss.str();
1134     if(datamode == 2 ) suffix = "_spl2_mct_" + ss.str();
1135     if(datamode == 3 ) suffix = "_mct_" + ss.str();
1136 yygao 1.7
1137 jengbou 1.3 if (ntk < nTrkMin_ || ntk > nTrkMax_ ) return;
1138     // Fill histograms of res and pull of ntk
1139 jengbou 1.13 h_others->Fill1d("deltax"+suffix, r.x());
1140     h_others->Fill1d("deltay"+suffix, r.y());
1141     h_others->Fill1d("deltaz"+suffix, r.z());
1142     h_others->Fill1d("pullx"+suffix, r.x()/er.x());
1143     h_others->Fill1d("pully"+suffix, r.y()/er.y());
1144     h_others->Fill1d("pullz"+suffix, r.z()/er.z());
1145     h_others->Fill1d("errPVx"+suffix, er.x());
1146     h_others->Fill1d("errPVy"+suffix, er.y());
1147     h_others->Fill1d("errPVz"+suffix, er.z());
1148 jengbou 1.3 }
1149    
1150 yygao 1.17
1151 yygao 1.7 PVStudy::PVAnaInfo PVStudy::GetPVAnaInfo(int ntk, int datamode) {
1152 jengbou 1.1 map<int,double> data;
1153 jengbou 1.2 data.clear();
1154 jengbou 1.4 double fpar[2] = {-999,-999};
1155 jengbou 1.1 double cm2um = 10000;
1156     stringstream ss;
1157     ss << ntk;
1158 yygao 1.7 string suffix = ss.str();
1159     if(datamode == 0 ) suffix = "_" + suffix;
1160     if(datamode == 1 ) suffix = "_spl1_mct_" + suffix;
1161     if(datamode == 2 ) suffix = "_spl2_mct_" + suffix;
1162     if(datamode == 3 ) suffix = "_mct_" + suffix;
1163    
1164 jengbou 1.3 if(analyze_) {
1165     for ( int i = 0; i < 6; ++i) {
1166     switch (i) {
1167     case 0:
1168 jengbou 1.13 if (!h_others->ReadHisto1D("deltax"+suffix)) break;
1169     fit(h_others->ReadHisto1D("deltax"+suffix), fpar);
1170 jengbou 1.3 data[i] = fpar[0]*cm2um;
1171     break;
1172     case 1:
1173 jengbou 1.13 if (!h_others->ReadHisto1D("deltay"+suffix)) break;
1174     fit(h_others->ReadHisto1D("deltay"+suffix), fpar);
1175 jengbou 1.3 data[i] = fpar[0]*cm2um;
1176     break;
1177     case 2:
1178 jengbou 1.13 if (!h_others->ReadHisto1D("deltaz"+suffix)) break;
1179     fit(h_others->ReadHisto1D("deltaz"+suffix), fpar);
1180 jengbou 1.3 data[i] = fpar[0]*cm2um;
1181     break;
1182     case 3:
1183 jengbou 1.13 if (!h_others->ReadHisto1D("pullx"+suffix)) break;
1184     fit(h_others->ReadHisto1D("pullx"+suffix), fpar);
1185 jengbou 1.3 data[i] = fpar[0];
1186     break;
1187     case 4:
1188 jengbou 1.13 if (!h_others->ReadHisto1D("pully"+suffix)) break;
1189     fit(h_others->ReadHisto1D("pully"+suffix), fpar);
1190 jengbou 1.3 data[i] = fpar[0];
1191     break;
1192     case 5:
1193 jengbou 1.13 if (!h_others->ReadHisto1D("pullz"+suffix)) break;
1194     fit(h_others->ReadHisto1D("pullz"+suffix), fpar);
1195 jengbou 1.3 data[i] = fpar[0];
1196     break;
1197 jengbou 1.1 }
1198 jengbou 1.14 if (data[i] > 0) edm::LogInfo("Analysis") << "[Analysis] data[" << i << "] = " << data[i] << (i<3?" micro m":" ") << endl;
1199 jengbou 1.1 }
1200 jengbou 1.3 }
1201     else
1202     for ( int i = 0; i < 6; ++i) {
1203     data[i] = -999;
1204 jengbou 1.1 }
1205    
1206 jengbou 1.3 return PVStudy::PVAnaInfo(res(data[0], data[1], data[2]),
1207     error(0.,0.,0.),
1208     pull(data[3], data[4], data[5]),
1209     error(0.,0.,0.),
1210 jengbou 1.1 ntk);
1211     }
1212    
1213 yygao 1.17
1214 jengbou 1.13 void PVStudy::fit(TH1 *hdist, double fitPars[]){
1215 jengbou 1.3 TAxis *axis0 = hdist->GetXaxis();
1216     int nbin = axis0->GetLast();
1217     double nOF = hdist->GetBinContent(nbin+1);
1218     double nUF = hdist->GetBinContent(0);
1219 jengbou 1.4 // double fitRange = axis0->GetBinUpEdge(nbin);
1220 yygao 1.17 // double fitRange = axis0->GetXmax();
1221     double fitRange = 2*hdist->GetRMS();
1222 jengbou 1.5 double sigMax[2] = {0.,0.};
1223 jengbou 1.4
1224 jengbou 1.14 edm::LogInfo("Analysis") << "[Fit] Last bin = " << nbin
1225     << "; hdist: Overflow Entries = " << nOF
1226     << "; Underflow Entries = " << nUF
1227     << "; hdist->GetEntries() = " << hdist->GetEntries()
1228     << "; fitting range = " << -fitRange << " to " << fitRange << endl;
1229    
1230 jengbou 1.4 if (hdist->GetEntries() - nOF - nUF >= 10) { // FIXME: for reasonable Gaussian fit
1231     for (int bi = 0; bi < nbin; bi++) {
1232     if ( (axis0->GetBinLowEdge(bi) < 0) && (hdist->GetBinContent(bi) > 0) ) {
1233     sigMax[0] = axis0->GetBinLowEdge(bi);
1234 jengbou 1.5 if ( abs(sigMax[0]) > abs(sigMax[1]) ) sigMax[1] = abs(sigMax[0]);
1235 jengbou 1.4 }
1236     if ( (axis0->GetBinLowEdge(bi) >= 0) && (hdist->GetBinContent(bi) > 0) ) {
1237 jengbou 1.5 sigMax[0] = axis0->GetBinUpEdge(bi);
1238     if ( abs(sigMax[0]) > abs(sigMax[1]) ) sigMax[1] = abs(sigMax[0]);
1239 jengbou 1.4 }
1240     }
1241 jengbou 1.14 //edm::LogInfo("Analysis") << "[Fit] Fit sigMax = " << sqrt(2.)*sigMax[1] << endl;
1242 jengbou 1.4
1243     TF1 *fgaus = new TF1("fgaus","gaus",-fitRange, fitRange);
1244     fgaus->SetParameter(1, 0.);
1245 yygao 1.17 fgaus->SetParLimits(1, -fitRange/10., fitRange/10.);
1246 jengbou 1.5 fgaus->SetParLimits(2, 0., sqrt(2.)*sigMax[1]);
1247 jengbou 1.4 fgaus->SetLineColor(4);
1248 jengbou 1.16 hdist->Fit(fgaus,"QLRM");
1249 jengbou 1.4 gPad->Update();
1250     TPaveStats *s = (TPaveStats*) hdist->GetListOfFunctions()->FindObject("stats");
1251     s->SetOptStat(1111111);
1252     s->SetOptFit(0111);
1253     gPad->Update();
1254 jengbou 1.14 //edm::LogInfo("Analysis") << "[Fit] got function" << endl;
1255 jengbou 1.4 fitPars[0] = ((fgaus->GetParameter(2))?fgaus->GetParameter(2):-999);
1256 jengbou 1.3 }
1257 jengbou 1.4 else
1258     fitPars[0] = -999;
1259 jengbou 1.3 }
1260    
1261 yygao 1.17
1262     void PVStudy::fillTrackHisto(const reco::TrackCollection *trackColl, int datatype, const Point & bs) {
1263 yygao 1.9 string suffix;
1264     suffix = ""; // for unsplit tracks
1265     if(datatype == 1) suffix = "1_spl"; // for splittracks 1
1266     if(datatype == 2) suffix = "2_spl"; // for splittracks 2
1267    
1268 jengbou 1.13 h_pvtrk->Fill1d("nTrk"+suffix, trackColl->size());
1269 yygao 1.9 for(reco::TrackCollection::const_iterator itTrack = trackColl->begin();
1270     itTrack != trackColl->end();
1271     ++itTrack) {
1272 jengbou 1.13 h_pvtrk->Fill1d("trkPt"+suffix, itTrack->pt());
1273     h_pvtrk->Fill1d("trkDxy"+suffix, itTrack->dxy());
1274 yygao 1.17 h_pvtrk->Fill1d("trkDxyCorr"+suffix, itTrack->dxy(bs));
1275 jengbou 1.13 h_pvtrk->Fill1d("trkDz"+suffix, itTrack->dz());
1276     h_pvtrk->Fill1d("trkEta"+suffix, itTrack->eta());
1277     h_pvtrk->Fill1d("trkPhi"+suffix, itTrack->phi());
1278 yygao 1.9 }
1279     }
1280    
1281 yygao 1.19 void PVStudy::fillTrackHistoInPV(const reco::VertexCollection *vertexColl, int datatype, const Point & bs) {
1282 yygao 1.9 string suffix;
1283     suffix = ""; // for unsplit tracks
1284     if(datatype == 1) suffix = "1_spl"; // for splittracks 1
1285     if(datatype == 2) suffix = "2_spl"; // for splittracks 2
1286     int ivtx = 0;
1287     for(reco::VertexCollection::const_iterator v=vertexColl->begin();
1288     v!=vertexColl->end(); ++v, ++ivtx) {
1289 yygao 1.19 if(!v->isFake()) {
1290     h_pvtrk->Fill1d("nTrkPV"+suffix, vertexColl->begin()->tracksSize());
1291 yygao 1.21 h_pvtrk->Fill1d("ndofPV"+suffix, vertexColl->begin()->ndof());
1292     h_pvtrk->Fill1d("nHWTrkPV"+suffix, nHWTrkRecVtx(*v));
1293 yygao 1.19 try {
1294     for(reco::Vertex::trackRef_iterator t = vertexColl->begin()->tracks_begin();
1295     t!=vertexColl->begin()->tracks_end(); t++) {
1296     // illegal charge
1297     if ( (**t).charge() < -1 || (**t).charge() > 1 ) {
1298     // h_pvtrk->Fill1d("trkPtPV", 0.);
1299     }
1300     else {
1301     h_pvtrk->Fill1d("trkPtPV"+suffix, (**t).pt());
1302     h_pvtrk->Fill1d("trkDxyPV"+suffix, (**t).dxy());
1303     h_pvtrk->Fill1d("trkDxyCorrPV"+suffix, (**t).dxy(bs));
1304     h_pvtrk->Fill1d("trkDzPV"+suffix, (**t).dz());
1305     h_pvtrk->Fill1d("trkEtaPV"+suffix, (**t).eta());
1306     h_pvtrk->Fill1d("trkPhiPV"+suffix, (**t).phi());
1307     }
1308     }
1309 yygao 1.9 }
1310 yygao 1.19 catch (...) {
1311     // exception thrown when trying to use linked track
1312     // h_pvtrk->Fill1d("trkPtPV", 0.);
1313 yygao 1.11 }
1314 yygao 1.9 }
1315 yygao 1.10 }
1316 yygao 1.9 }
1317    
1318 yygao 1.23 void PVStudy::fillMCHisto(std::vector<simPrimaryVertex>::iterator vsim, int isimpv, const reco::VertexCollection *vtxColl,
1319     int datatype, double avgTrkPtInPVMin_, double avgTrkPtInPVMax_)
1320 yygao 1.9 {
1321     std::string suffix;
1322     // Set the vertexColl and histogram suffix according to datamode
1323     if (datatype == 1) {
1324     suffix = "_spl1_mct";
1325     nrecPV_spl1_mct_ = 0;
1326     }
1327     if (datatype == 2) {
1328     suffix = "_spl2_mct";
1329     nrecPV_spl2_mct_ = 0;
1330     }
1331     if (datatype == 3) {
1332     suffix = "_mct";
1333     nrecPV_mct_ = 0;
1334     }
1335 yygao 1.21
1336 yygao 1.9 //========================================================
1337 yygao 1.21 // For each simulated vertex, look for a match in the vertexColl
1338     // If more than 1 recVtx is found, use the one with closest in Z
1339     //========================================================
1340    
1341     // === look for a matching reconstructed vertex in vertexColl
1342 yygao 1.9 for(reco::VertexCollection::const_iterator vrec=vtxColl->begin();
1343     vrec!=vtxColl->end(); ++vrec){
1344     vsim->recVtx=NULL;
1345 jengbou 1.14 edm::LogInfo("Debug") << "[fillMCHisto] sim primary vertex x = " << vsim->x << "; y = " << vsim->y << "; z = " << vsim->z << endl;
1346     edm::LogInfo("Debug") << "[fillMCHisto] Is matched? " << (matchVertex(*vsim,*vrec)?"Yes":"No") << endl;
1347 yygao 1.21
1348 yygao 1.17 if ( matchVertex(*vsim,*vrec) ) {
1349 yygao 1.9 vsim->recVtx=&(*vrec);
1350 yygao 1.21 //if the matching critera are fulfilled, accept the rec-vertex that is closest in z
1351 yygao 1.9 //if( ((vsim->recVtx) && (fabs(vsim->recVtx->position().z()-vsim->z)>fabs(vrec->z()-vsim->z)))
1352     //|| (!vsim->recVtx) )
1353     //vsim->recVtx=&(*vrec);
1354     }
1355     }
1356 yygao 1.21
1357     // === If match found fill the residual and pulls
1358     if(vsim->recVtx) {
1359     edm::LogInfo("Debug") <<"[fillMCHisto] primary matched in vertexColl" << vsim->x << " " << vsim->y << " " << vsim->z << endl;
1360 yygao 1.23 double avgPtPV = avgPtRecVtx(*(vsim->recVtx));
1361     if(avgPtPV>avgTrkPtInPVMax_ || avgPtPV<avgTrkPtInPVMin_) return;
1362    
1363 yygao 1.21 // if study the resolution/pull for all tracks in the PVtx
1364     int nrectrk;
1365     if(useHWTrk_)
1366     nrectrk=nHWTrkRecVtx(*(vsim->recVtx));
1367     else
1368     nrectrk = int(vsim->recVtx->tracksSize());
1369    
1370     double fres_mct[3];
1371     double ferror_mct[3];
1372    
1373     double ndofPV = vsim->recVtx->ndof();
1374     double normchi2PV = vsim->recVtx->normalizedChi2();
1375 yygao 1.23
1376 yygao 1.21 fres_mct[0] = vsim->recVtx->x()-vsim->x;
1377     fres_mct[1] = vsim->recVtx->y()-vsim->y;
1378     fres_mct[2] = vsim->recVtx->z()-vsim->z;
1379     ferror_mct[0] = vsim->recVtx->xError();
1380     ferror_mct[1] = vsim->recVtx->yError();
1381     ferror_mct[2] = vsim->recVtx->zError();
1382    
1383     h_summary->Fill1d("deltax"+suffix, fres_mct[0] );
1384     h_summary->Fill1d("deltay"+suffix, fres_mct[1] );
1385     h_summary->Fill1d("deltaz"+suffix, fres_mct[2] );
1386     h_summary->Fill1d("pullx"+suffix, fres_mct[0]/ferror_mct[0] );
1387     h_summary->Fill1d("pully"+suffix, fres_mct[1]/ferror_mct[1] );
1388     h_summary->Fill1d("pullz"+suffix, fres_mct[2]/ferror_mct[2] );
1389     h_summary->Fill1d("errPVx"+suffix, ferror_mct[0] );
1390     h_summary->Fill1d("errPVy"+suffix, ferror_mct[1] );
1391     h_summary->Fill1d("errPVz"+suffix, ferror_mct[2] );
1392     pvinfo.push_back(PVStudy::PVInfo(res(fres_mct[0], fres_mct[1], fres_mct[2]),
1393     error(ferror_mct[0], ferror_mct[1], ferror_mct[2]),
1394     nrectrk));
1395     // Fill histo according to its track multiplicity
1396     fillHisto(res(fres_mct[0], fres_mct[1], fres_mct[2]),
1397     error(ferror_mct[0], ferror_mct[1], ferror_mct[2]),
1398     nrectrk, datatype);
1399    
1400     if(saventuple_) {
1401     //Fill the values for variables in pvtxtree_
1402     if(datatype == 1) {
1403     nTrkPV_spl1_mct_[nrecPV_spl1_mct_] = nrectrk;
1404     ndofPV_spl1_mct_[nrecPV_spl1_mct_] = ndofPV;
1405     normchi2PV_spl1_mct_[nrecPV_spl1_mct_] = normchi2PV;
1406     avgPtPV_spl1_mct_[nrecPV_spl1_mct_] = avgPtPV;
1407     deltax_spl1_mct_[nrecPV_spl1_mct_] = fres_mct[0];
1408     deltay_spl1_mct_[nrecPV_spl1_mct_] = fres_mct[1];
1409     deltaz_spl1_mct_[nrecPV_spl1_mct_] = fres_mct[2];
1410     pullx_spl1_mct_[nrecPV_spl1_mct_] = fres_mct[0]/ferror_mct[0];
1411     pully_spl1_mct_[nrecPV_spl1_mct_] = fres_mct[1]/ferror_mct[1];
1412     pullz_spl1_mct_[nrecPV_spl1_mct_] = fres_mct[2]/ferror_mct[2];
1413     errx_spl1_mct_[nrecPV_spl1_mct_] = ferror_mct[0];
1414     erry_spl1_mct_[nrecPV_spl1_mct_] = ferror_mct[1];
1415     errz_spl1_mct_[nrecPV_spl1_mct_] = ferror_mct[2];
1416     nrecPV_spl1_mct_++;
1417     }
1418     if(datatype == 2) {
1419     nTrkPV_spl2_mct_[nrecPV_spl2_mct_] = nrectrk;
1420     ndofPV_spl2_mct_[nrecPV_spl2_mct_] = ndofPV;
1421     normchi2PV_spl2_mct_[nrecPV_spl2_mct_] = normchi2PV;
1422     avgPtPV_spl2_mct_[nrecPV_spl2_mct_] = avgPtPV;
1423     deltax_spl2_mct_[nrecPV_spl2_mct_] = fres_mct[0];
1424     deltay_spl2_mct_[nrecPV_spl2_mct_] = fres_mct[1];
1425     deltaz_spl2_mct_[nrecPV_spl2_mct_] = fres_mct[2];
1426     pullx_spl2_mct_[nrecPV_spl2_mct_] = fres_mct[0]/ferror_mct[0];
1427     pully_spl2_mct_[nrecPV_spl2_mct_] = fres_mct[1]/ferror_mct[1];
1428     pullz_spl2_mct_[nrecPV_spl2_mct_] = fres_mct[2]/ferror_mct[2];
1429     errx_spl2_mct_[nrecPV_spl2_mct_] = ferror_mct[0];
1430     erry_spl2_mct_[nrecPV_spl2_mct_] = ferror_mct[1];
1431     errz_spl2_mct_[nrecPV_spl2_mct_] = ferror_mct[2];
1432     nrecPV_spl2_mct_++;
1433     }
1434     if(datatype == 3) {
1435     nTrkPV_mct_[nrecPV_mct_] = nrectrk;
1436     ndofPV_mct_[nrecPV_mct_] = ndofPV;
1437     normchi2PV_mct_[nrecPV_mct_] = normchi2PV;
1438     avgPtPV_mct_[nrecPV_mct_] = avgPtPV;
1439     deltax_mct_[nrecPV_mct_] = fres_mct[0];
1440     deltay_mct_[nrecPV_mct_] = fres_mct[0];
1441     deltaz_mct_[nrecPV_mct_] = fres_mct[0];
1442     pullx_mct_[nrecPV_mct_] = fres_mct[0]/ferror_mct[0];
1443     pully_mct_[nrecPV_mct_] = fres_mct[1]/ferror_mct[1];
1444     pullz_mct_[nrecPV_mct_] = fres_mct[2]/ferror_mct[2];
1445     errx_mct_[nrecPV_mct_] = ferror_mct[0];
1446     erry_mct_[nrecPV_mct_] = ferror_mct[1];
1447     errz_mct_[nrecPV_mct_] = ferror_mct[2];
1448     nrecPV_mct_++;
1449     }
1450     } // End of if(saventuple_) {
1451     } // if ( matchVertex(*vsim,*vrec) ) {
1452     else { // no rec vertex found for this simvertex
1453     edm::LogInfo("Debug") <<"[fillMCHisto] primary not found " << vsim->x << " " << vsim->y << " " << vsim->z << " nGenTrk=" << vsim->nGenTrk << endl;
1454     }
1455 yygao 1.9 }
1456    
1457 yygao 1.21
1458 yygao 1.7 void PVStudy::SetVarToZero() {
1459     fntrk_ = 0;
1460     //pvtx position (x,y,z) residual and error
1461 yygao 1.9 for(int i = 0; i<3;i++) {
1462 jengbou 1.13 fres_[i] = 0;
1463     ferror_[i] = 0;
1464 yygao 1.9 }
1465    
1466 yygao 1.19 // Event level information
1467     glob_runno_ = 0;
1468     glob_evtno_ = 0;
1469     glob_ls_ = 0;
1470     glob_bx_ = 0;
1471 yygao 1.9 nrecPV_ = 0;
1472     nrecPV1_spl_ = 0;
1473     nrecPV2_spl_ = 0;
1474     nrecPV_twovtx_ = 0;
1475     nsimPV_ = 0;
1476 yygao 1.10
1477 yygao 1.9 nrecPV_mct_ = 0;
1478     nrecPV_spl1_mct_ = 0;
1479     nrecPV_spl2_mct_ = 0;
1480    
1481 yygao 1.10 // Mininum separation between the secondary pvtxes and leading pvtx
1482     min_zsep_ = 9999.0;
1483     min_ntrksep_ = 9999.0;
1484     min_sumpt2sep_ = -9999.0;
1485    
1486 yygao 1.19 // Variables filled per Vertex
1487 yygao 1.9 for (int i = 0; i < nMaxPVs_; i++) {
1488 yygao 1.10 // matched two-vertices
1489 yygao 1.9 nTrkPV1_spl_twovtx_[i] = 0;
1490 yygao 1.19 ndofPV1_spl_twovtx_[i] = 0;
1491     normchi2PV1_spl_twovtx_[i] = 0;
1492     avgPtPV1_spl_twovtx_[i] = 0;
1493     errx1_spl_twovtx_[i] = 0;
1494     erry1_spl_twovtx_[i] = 0;
1495     errz1_spl_twovtx_[i] = 0;
1496    
1497 yygao 1.9 nTrkPV2_spl_twovtx_[i] = 0;
1498 yygao 1.19 ndofPV2_spl_twovtx_[i] = 0;
1499     normchi2PV2_spl_twovtx_[i] = 0;
1500     avgPtPV2_spl_twovtx_[i] = 0;
1501     errx2_spl_twovtx_[i] = 0;
1502     erry2_spl_twovtx_[i] = 0;
1503     errz2_spl_twovtx_[i] = 0;
1504    
1505 yygao 1.9 deltax_twovtx_[i] = 0;
1506     deltay_twovtx_[i] = 0;
1507     deltaz_twovtx_[i] = 0;
1508     errx_twovtx_[i] = 0;
1509     erry_twovtx_[i] = 0;
1510     errz_twovtx_[i] = 0;
1511     pullx_twovtx_[i] = 0;
1512     pully_twovtx_[i] = 0;
1513     pullz_twovtx_[i] = 0;
1514    
1515 yygao 1.10 //simpv
1516 yygao 1.9 nsimTrkPV_[i] = 0;
1517     simx_[i] = 0;
1518     simy_[i] = 0;
1519     simz_[i] = 0;
1520     simptsq_[i] = 0;
1521    
1522 yygao 1.10 // residual and pulls with mc truth required
1523 yygao 1.9 deltax_mct_[i] = 0;
1524     deltay_mct_[i] = 0;
1525     deltaz_mct_[i] = 0;
1526     pullx_mct_[i] = 0;
1527     pully_mct_[i] = 0;
1528     pullz_mct_[i] = 0;
1529 yygao 1.19 nTrkPV_mct_[i] = 0;
1530     ndofPV_mct_[i] = 0;
1531     normchi2PV_mct_[i] = 0;
1532     avgPtPV_mct_[i] = 0;
1533     errx_mct_[i] = 0;
1534     erry_mct_[i] = 0;
1535     errz_mct_[i] = 0;
1536    
1537 yygao 1.9 deltax_spl1_mct_[i] = 0;
1538     deltay_spl1_mct_[i] = 0;
1539     deltaz_spl1_mct_[i] = 0;
1540     pullx_spl1_mct_[i] = 0;
1541     pully_spl1_mct_[i] = 0;
1542     pullz_spl1_mct_[i] = 0;
1543 yygao 1.19 nTrkPV_spl1_mct_[i] = 0;
1544     ndofPV_spl1_mct_[i] = 0;
1545     normchi2PV_spl1_mct_[i] = 0;
1546     avgPtPV_spl1_mct_[i] = 0;
1547     errx_spl1_mct_[i] = 0;
1548     erry_spl1_mct_[i] = 0;
1549     errz_spl1_mct_[i] = 0;
1550    
1551 yygao 1.9 deltax_spl2_mct_[i] = 0;
1552     deltay_spl2_mct_[i] = 0;
1553     deltaz_spl2_mct_[i] = 0;
1554     pullx_spl2_mct_[i] = 0;
1555     pully_spl2_mct_[i] = 0;
1556     pullz_spl2_mct_[i] = 0;
1557 yygao 1.19 nTrkPV_spl2_mct_[i] = 0;
1558     ndofPV_spl2_mct_[i] = 0;
1559     normchi2PV_spl2_mct_[i] = 0;
1560     avgPtPV_spl2_mct_[i] = 0;
1561     errx_spl2_mct_[i] = 0;
1562     erry_spl2_mct_[i] = 0;
1563     errz_spl2_mct_[i] = 0;
1564    
1565 yygao 1.9 }
1566 yygao 1.7 }
1567    
1568 yygao 1.9 double PVStudy::sumPtSquared(const reco::Vertex & v) {
1569 yygao 1.19 if(v.isFake() || (!v.isValid()) || v.tracksSize() == 0) return 0.0;
1570     else {
1571     double sum = 0.;
1572     double pT;
1573     for (reco::Vertex::trackRef_iterator it = v.tracks_begin(); it != v.tracks_end(); it++) {
1574     pT = (**it).pt();
1575     sum += pT*pT;
1576     }
1577     return sum;
1578     }
1579     }
1580    
1581    
1582    
1583     double PVStudy::avgPtRecVtx(const reco::Vertex & v) {
1584    
1585     if(v.isFake() || !v.isValid() || v.tracksSize()==0 ) return 0;
1586     else {
1587 yygao 1.21 int nHWTrk = 0;
1588 yygao 1.19 double sumpT = 0.;
1589     for (reco::Vertex::trackRef_iterator it = v.tracks_begin(); it != v.tracks_end(); it++) {
1590 yygao 1.21 if(v.trackWeight(*it) > 0.5 ) {
1591     sumpT += (**it).pt();
1592     nHWTrk++;
1593     }
1594 yygao 1.19 }
1595 yygao 1.21 if(nHWTrk > 0)
1596     return sumpT/double(nHWTrk);
1597     else
1598     return 0;
1599 yygao 1.9 }
1600     }
1601 yygao 1.10
1602 yygao 1.21 int PVStudy::nHWTrkRecVtx(const reco::Vertex & v) {
1603     int nHWTrkPV = 0;
1604     for (reco::Vertex::trackRef_iterator it = v.tracks_begin(); it != v.tracks_end(); it++) {
1605     if(v.trackWeight(*it) > 0.5)
1606     nHWTrkPV++;
1607     }
1608     return nHWTrkPV;
1609     }