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root/cvsroot/UserCode/kiesel/TreeWriter/treeWriter.cc
Revision: 1.11
Committed: Mon Apr 15 16:01:40 2013 UTC (12 years ago) by kiesel
Content type: text/plain
Branch: MAIN
Changes since 1.10: +4 -0 lines
Log Message:
added conversionSafeInfo for photon and put met info in tree

File Contents

# Content
1 #include<iostream>
2 #include<math.h>
3 #include<string>
4
5 #include "TSystem.h"
6
7 #include "treeWriter.h"
8
9 using namespace std;
10
11 TreeWriter::TreeWriter( TString inputName, TString outputName, int loggingVerbosity_ ) {
12 // read the input file
13 inputTree = new TChain("susyTree");
14 if (loggingVerbosity_ > 0)
15 std::cout << "Add files to chain" << std::endl;
16 inputTree->Add( inputName );
17 Init( outputName, loggingVerbosity_ );
18 }
19
20 TreeWriter::TreeWriter( TChain* inputTree_, TString outputName, int loggingVerbosity_ ) {
21 inputTree = inputTree_;
22 Init( outputName, loggingVerbosity_ );
23 }
24
25
26 void TreeWriter::Init( TString outputName, int loggingVerbosity_ ) {
27
28 if (loggingVerbosity_ > 0)
29 std::cout << "Set Branch Address of susy::Event" << std::endl;
30 event = new susy::Event;
31 inputTree->SetBranchAddress("susyEvent", &event);
32
33 // open the output file
34 if (loggingVerbosity_>0)
35 std::cout << "Open file " << outputName << " for writing." << std::endl;
36 outFile = new TFile( outputName, "recreate" );
37 tree = new TTree("susyTree","Tree for single photon analysis");
38
39 // set default parameter
40 processNEvents = -1;
41 reportEvery = 1000;
42 loggingVerbosity = loggingVerbosity_;
43 skim = true;
44 pileupHisto = 0;
45 }
46
47 void TreeWriter::PileUpWeightFile( string pileupFileName ) {
48 TFile *puFile = new TFile( pileupFileName.c_str() );
49 pileupHisto = (TH1F*) puFile->Get("pileup");
50 }
51
52 TreeWriter::~TreeWriter() {
53 if (pileupHisto != 0 )
54 delete pileupHisto;
55 inputTree->GetCurrentFile()->Close();
56 }
57
58 // useful functions
59 float TreeWriter::deltaR( TLorentzVector v1, TLorentzVector v2 ) {
60 return sqrt(pow(v1.Eta() - v2.Eta(), 2) + pow(v1.Phi() - v2.Phi(), 2) );
61 }
62
63 // correct iso, see https://twiki.cern.ch/twiki/bin/view/CMS/CutBasedPhotonID2012
64 float chargedHadronIso_corrected(susy::Photon gamma, float rho) {
65 float eta = fabs(gamma.caloPosition.Eta());
66 float ea;
67
68 if(eta < 1.0) ea = 0.012;
69 else if(eta < 1.479) ea = 0.010;
70 else if(eta < 2.0) ea = 0.014;
71 else if(eta < 2.2) ea = 0.012;
72 else if(eta < 2.3) ea = 0.016;
73 else if(eta < 2.4) ea = 0.020;
74 else ea = 0.012;
75
76 float iso = gamma.chargedHadronIso;
77 iso = max(iso - rho*ea, (float)0.);
78
79 return iso;
80 }
81
82 float neutralHadronIso_corrected(susy::Photon gamma, float rho) {
83 float eta = fabs(gamma.caloPosition.Eta());
84 float ea;
85
86 if(eta < 1.0) ea = 0.030;
87 else if(eta < 1.479) ea = 0.057;
88 else if(eta < 2.0) ea = 0.039;
89 else if(eta < 2.2) ea = 0.015;
90 else if(eta < 2.3) ea = 0.024;
91 else if(eta < 2.4) ea = 0.039;
92 else ea = 0.072;
93
94 float iso = gamma.neutralHadronIso;
95 iso = max(iso - rho*ea, (float)0.);
96
97 return iso;
98 }
99
100 float photonIso_corrected(susy::Photon gamma, float rho) {
101 float eta = fabs(gamma.caloPosition.Eta());
102 float ea;
103
104 if(eta < 1.0) ea = 0.148;
105 else if(eta < 1.479) ea = 0.130;
106 else if(eta < 2.0) ea = 0.112;
107 else if(eta < 2.2) ea = 0.216;
108 else if(eta < 2.3) ea = 0.262;
109 else if(eta < 2.4) ea = 0.260;
110 else ea = 0.266;
111
112 float iso = gamma.photonIso;
113 iso = max(iso - rho*ea, (float)0.);
114
115 return iso;
116 }
117
118 float TreeWriter::getPtFromMatchedJet( susy::Photon myPhoton, susy::Event myEvent ) {
119 /**
120 * \brief Takes jet p_T as photon p_T
121 *
122 * At first all jets with DeltaR < 0.3 (isolation cone) are searched.
123 * If several jets are found, take the one with the minimal pt difference
124 * compared to the photon. If no such jets are found, keep the photon_pt
125 * TODO: remove photon matched jet from jet-selection?
126 */
127 std::vector<susy::PFJet> nearJets;
128 nearJets.clear();
129
130 std::map<TString,susy::PFJetCollection>::iterator pfJets_it = myEvent.pfJets.find("ak5");
131 if(pfJets_it == myEvent.pfJets.end()){
132 if(myEvent.pfJets.size() > 0) std::cout << "JetCollection is not available!!!" << std::endl;
133 } else {
134 susy::PFJetCollection& jetColl = pfJets_it->second;
135 for(std::vector<susy::PFJet>::iterator it = jetColl.begin();
136 it != jetColl.end(); ++it) {
137 std::map<TString,Float_t>::iterator s_it = it->jecScaleFactors.find("L2L3");
138 if (s_it == it->jecScaleFactors.end()) {
139 std::cout << "JEC is not available for this jet!!!" << std::endl;
140 continue;
141 }
142 float scale = s_it->second;
143 TLorentzVector corrP4 = scale * it->momentum;
144 float deltaR_ = deltaR(myPhoton.momentum, corrP4 );
145 if (deltaR_ > 0.3) continue;
146 if( loggingVerbosity > 0 )
147 std::cout << "gamma pt jet matching factor = " << it->momentum.Et() / myPhoton.momentum.Et() << std::endl;
148 nearJets.push_back( *it );
149 }// for jet
150 }// if, else
151
152 if ( nearJets.size() == 0 ) {
153 //std::cout << "No jet with deltaR < .3 found, do not change photon_pt" << std::endl;
154 return myPhoton.momentum.Et();
155 }
156
157 float pt = 0;
158 float minPtDifferenz = 1E20; // should be very high
159 for( std::vector<susy::PFJet>::iterator it = nearJets.begin(), jetEnd = nearJets.end();
160 it != jetEnd; ++it ) {
161 float ptDiff = fabs(myPhoton.momentum.Et() - it->momentum.Et());
162 if ( ptDiff < minPtDifferenz ) {
163 minPtDifferenz = ptDiff;
164 pt = it->momentum.Et();
165 }
166 }
167
168 // testing
169 if( nearJets.size() > 1 && loggingVerbosity > 0 )
170 std::cout << "There are several jets matching to this photon. "
171 << "Please check if jet-matching is correct." << std::endl;
172 return pt;
173 }
174
175
176 void TreeWriter::Loop() {
177
178 // here the event loop is implemented and the tree is filled
179 if (inputTree == 0) return;
180
181 // get number of events to be proceeded
182 Long64_t nentries = inputTree->GetEntries();
183 if(processNEvents <= 0 || processNEvents > nentries) processNEvents = nentries;
184
185 if( loggingVerbosity > 0 )
186 std::cout << "Processing " << processNEvents << " ouf of "
187 << nentries << " events. " << std::endl;
188
189 tree::Photon *thisphoton = new tree::Photon();
190 tree::Jet *thisjet = new tree::Jet();
191
192 tree->Branch("photon", &photon);
193 tree->Branch("jet", &jet);
194 //tree->Branch("electron", &electron);
195 tree->Branch("muon", &muon);
196 tree->Branch("met", &met, "met/F");
197 tree->Branch("metPhi", &met_phi, "metPhi/F");
198 tree->Branch("type1met", &type1met, "type1met/F");
199 tree->Branch("type1metPhi", &type1met_phi, "type1metPhi/F");
200 tree->Branch("ht", &ht, "ht/F");
201 tree->Branch("nVertex", &nVertex, "nVertex/I");
202 tree->Branch("pu_weight", &pu_weight, "pu_weight/F");
203
204
205 for (long jentry=0; jentry < processNEvents; ++jentry) {
206 if ( loggingVerbosity>0 && jentry%reportEvery==0 )
207 std::cout << jentry << " / " << processNEvents << std :: endl;
208 inputTree->GetEntry(jentry);
209
210 photon.clear();
211 jet.clear();
212 electron.clear();
213 muon.clear();
214 ht = 0;
215
216 // weights
217 if (pileupHisto == 0) {
218 pu_weight = 1.;
219 } else {
220 float trueNumInteractions = -1;
221 for( susy::PUSummaryInfoCollection::const_iterator iBX = event->pu.begin();
222 iBX != event->pu.end() && trueNumInteractions < 0; ++iBX) {
223 if (iBX->BX == 0)
224 trueNumInteractions = iBX->trueNumInteractions;
225 }
226 pu_weight = pileupHisto->GetBinContent( pileupHisto->FindBin( trueNumInteractions ) );
227 }
228
229
230 // photons
231 if( loggingVerbosity > 1 )
232 std::cout << "Process photons" << std::endl;
233 std::map<TString, std::vector<susy::Photon> >::iterator phoMap = event->photons.find("photons");
234 for(std::vector<susy::Photon>::iterator it = phoMap->second.begin();
235 it != phoMap->second.end() && phoMap != event->photons.end(); ++it ) {
236 if( ! it->isEB() && skim )
237 continue;
238 thisphoton->pt = getPtFromMatchedJet( *it, *event );
239 if( thisphoton->pt < 80 && skim )
240 continue;
241 thisphoton->eta = it->momentum.Eta();
242 thisphoton->phi = it->momentum.Phi();
243 thisphoton->chargedIso = chargedHadronIso_corrected(*it, event->rho25);
244 thisphoton->neutralIso = neutralHadronIso_corrected(*it, event->rho25);
245 thisphoton->photonIso = photonIso_corrected(*it, event->rho25);
246 thisphoton->r9 = it->r9;
247 thisphoton->sigmaIetaIeta = it->sigmaIetaIeta;
248 thisphoton->hadTowOverEm = it->hadTowOverEm;
249 thisphoton->pixelseed = it->nPixelSeeds;
250 thisphoton->conversionSafeVeto = it->passelectronveto;
251 photon.push_back( *thisphoton );
252 if( loggingVerbosity > 2 )
253 std::cout << " p_T, gamma = " << thisphoton->pt << std::endl;
254 }
255
256 if( photon.size() == 0 && skim )
257 continue;
258 std::sort( photon.begin(), photon.end(), tree::EtGreater);
259 if( loggingVerbosity > 1 )
260 std::cout << "Found " << photon.size() << " photons" << std::endl;
261
262 // jets
263 std::map<TString,susy::PFJetCollection>::iterator pfJets_it = event->pfJets.find("ak5");
264 if(pfJets_it == event->pfJets.end()){
265 if(event->pfJets.size() > 0) std::cout << "JetCollection is not available!!!" << std::endl;
266 } else {
267
268 susy::PFJetCollection& jetColl = pfJets_it->second;
269
270 for(std::vector<susy::PFJet>::iterator it = jetColl.begin();
271 it != jetColl.end(); ++it) {
272 std::map<TString,Float_t>::iterator s_it = it->jecScaleFactors.find("L2L3");
273 if (s_it == it->jecScaleFactors.end()) {
274 std::cout << "JEC is not available for this jet!!!" << std::endl;
275 continue;
276 }
277 float scale = s_it->second;
278 TLorentzVector corrP4 = scale * it->momentum;
279
280 if(std::abs(corrP4.Eta()) > 3.0 && skim ) continue;
281 if(corrP4.Et() < 30 && skim ) continue;
282 thisjet->pt = corrP4.Et();
283 thisjet->eta = corrP4.Eta();
284 thisjet->phi = corrP4.Phi();
285 thisjet->bCSV = it->bTagDiscriminators[susy::kCSV];
286 if( loggingVerbosity > 2 )
287 std::cout << " p_T, jet = " << thisjet->pt << std::endl;
288
289 jet.push_back( *thisjet );
290 ht += thisjet->pt;
291 }// for jet
292 }// if, else
293 if( jet.size() < 2 && skim )
294 continue;
295 std::sort( jet.begin(), jet.end(), tree::EtGreater);
296 if( loggingVerbosity > 1 )
297 std::cout << "Found " << jet.size() << " jets" << std::endl;
298
299
300 // met
301 std::map<TString, susy::MET>::iterator met_it = event->metMap.find("pfMet");
302 susy::MET* metobj = &(met_it->second);
303 met = metobj->met();
304 met_phi = metobj->mEt.Phi();
305 if( loggingVerbosity > 2 )
306 std::cout << " met = " << met << std::endl;
307
308 std::map<TString, susy::MET>::iterator type1met_it = event->metMap.find("pfType1CorrectedMet");
309 susy::MET* type1metobj = &(type1met_it->second);
310 type1met = type1metobj->met();
311 type1met_phi = type1metobj->mEt.Phi();
312 if( loggingVerbosity > 2 )
313 std::cout << " type1met = " << type1met << std::endl;
314
315 // electrons
316 /*
317 tree::Particle* thiselectron = new tree::Particle();
318 map<TString, vector<susy::Electron> >::iterator eleMap = event->electrons.find("gsfElectrons");
319 if(eleMap == event->electrons.end() && loggingVerbosity > 0) {
320 cout << "gsfElectrons not found!" << endl;
321 } else {
322 for(vector<susy::Electron>::iterator it = eleMap->second.begin(); it < eleMap->second.end(); ++it) {
323 thiselectron->pt = it->momentum.Et();
324 if( thiselectron->pt < 20 )
325 continue;
326 if( loggingVerbosity > 2 )
327 std::cout << " p_T, electron = " << it->momentum.Et() << std::endl;
328 thiselectron->eta = it->momentum.Eta();
329 thiselectron->phi = it->momentum.Phi();
330 electron.push_back( *thiselectron );
331 }
332 }
333 if( loggingVerbosity > 1 )
334 std::cout << "Found " << electron.size() << " electrons" << std::endl;
335 */
336
337 // this seems not to work yet, where is the bug?
338 /*
339 std::vector<susy::Electron> eVector = event->electrons["gsfElectronsx"];
340 for( std::vector<susy::Electron>::iterator it = eVector.begin(); it != eVector.end(); ++it) {
341 thiselectron->pt = it->momentum.Et();
342 if( thiselectron->pt < 20 )
343 continue;
344 if( loggingVerbosity > 2 )
345 std::cout << " p_T, electron = " << it->momentum.Et() << std::endl;
346 thiselectron->eta = it->momentum.Eta();
347 thiselectron->phi = it->momentum.Phi();
348 electron.push_back( *thiselectron );
349 }
350 */
351
352 // muons
353 std::vector<susy::Muon> mVector = event->muons["muons"];
354 tree::Particle* thismuon = new tree::Particle();
355 for( std::vector<susy::Muon>::iterator it = mVector.begin(); it != mVector.end(); ++it) {
356 if( !( it->isPFMuon() && ( it->isGlobalMuon() || it->isTrackerMuon() ) ) )
357 continue; // see https://twiki.cern.ch/twiki/bin/view/CMSPublic/SWGuideMuonId#Loose_Muon
358 thismuon->pt = it->momentum.Et();
359 if( thismuon->pt < 20 )
360 continue;
361 thismuon->eta = it->momentum.Eta();
362 thismuon->phi = it->momentum.Phi();
363 muon.push_back( *thismuon );
364 }
365 if( loggingVerbosity > 1 )
366 std::cout << "Found " << muon.size() << " muons" << std::endl;
367
368
369 // vertices
370 nVertex = event->vertices.size();
371
372 if( ht < 450 && skim)
373 continue;
374
375 tree->Fill();
376 } // for jentry
377
378
379 outFile->cd();
380 tree->Write();
381 outFile->Write();
382 outFile->Close();
383 }
384