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root/cvsroot/UserCode/MitHzz4l/Selection/src/Selection.cc
Revision: 1.13
Committed: Sun Oct 30 15:12:30 2011 UTC (13 years, 6 months ago) by khahn
Content type: text/plain
Branch: MAIN
Changes since 1.12: +157 -42 lines
Log Message:
*** empty log message ***

File Contents

# Content
1 #include "Selection.h"
2 #include "PassHLT.h"
3
4 #include "SiMVAElectronSelection.h"
5
6 #include "HZZCiCElectronSelection.h"
7 #include "HZZLikelihoodElectronSelection.h"
8 #include "HZZBDTElectronSelection.h"
9 #include "RunLumiRangeMap.h"
10 #include "EfficiencyWeightsInterface.h"
11
12 RunLumiRangeMap rlrm;
13
14 // #include "TH2D.h"
15 // extern TH2D * h_mu_eff_idiso_2011a;
16 // extern TH2D * h_mu_eff_idiso_s11;
17 // extern TH2D * h_mu_effdata_trigger_doublemu7_2011a;
18 // extern TH2D * h_mu_effdata_trigger_doublemu13_8_leading_2011a;
19 // extern TH2D * h_mu_effdata_trigger_doublemu13_8_trailing_2011a;
20
21 // unsigned getGenChannel(mithep::TGenInfo * ginfo) {
22 // int gchannel=-1;
23 // if( abs(ginfo->id_1_a) == EGenType::kElectron && abs(ginfo->id_1_b) == EGenType::kElectron ) gchannel=0;
24 // else if( abs(ginfo->id_1_a) == EGenType::kMuon && abs(ginfo->id_1_b) == EGenType::kMuon ) gchannel=1;
25 // else if( (abs(ginfo->id_1_a) == EGenType::kElectron && abs(ginfo->id_1_b) == EGenType::kMuon) ||
26 // (abs(ginfo->id_1_a) == EGenType::kMuon && abs(ginfo->id_1_b) == EGenType::kElectron) ) gchannel=2;
27
28 // return gchannel;
29 // };
30
31 void initRunLumiRangeMap() {
32 rlrm.AddJSONFile(std::string("./data/Cert_136033-149442_7TeV_Apr21ReReco_Collisions10_JSON.txt"));
33 // rlrm.AddJSONFile(std::string("./data/Cert_160404-173244_7TeV_PromptReco_Collisions11_JSON_v2.txt"));
34 rlrm.AddJSONFile(std::string("./data/Cert_160404-178078_7TeV_PromptReco_Collisions11_JSON.txt"));
35 rlrm.AddJSONFile(std::string("./data/Cert_160404-163869_7TeV_May10ReReco_Collisions11_JSON_v3.txt"));
36 rlrm.AddJSONFile(std::string("./data/Cert_170249-172619_7TeV_ReReco5Aug_Collisions11_JSON.txt"));
37 };
38
39 void initRunLumiRangeMap(RunLumiRangeMap &rlrm) {
40 cout << "adding JSONS ... " << endl;
41 rlrm.AddJSONFile(std::string("./data/Cert_136033-149442_7TeV_Apr21ReReco_Collisions10_JSON.txt"));
42 // rlrm.AddJSONFile(std::string("./data/Cert_160404-173244_7TeV_PromptReco_Collisions11_JSON_v2.txt"));
43 rlrm.AddJSONFile(std::string("./data/Cert_160404-178078_7TeV_PromptReco_Collisions11_JSON.txt"));
44 rlrm.AddJSONFile(std::string("./data/Cert_160404-163869_7TeV_May10ReReco_Collisions11_JSON_v3.txt"));
45 rlrm.AddJSONFile(std::string("./data/Cert_170249-172619_7TeV_ReReco5Aug_Collisions11_JSON.txt"));
46 };
47
48 // unsigned fails_HZZ4L_selection(ControlFlags &ctrl, // input control
49 // mithep::TEventInfo *info, // input event inof
50 // TClonesArray *electronArr, // input electrons
51 // TClonesArray *muonArr, // input muons
52 // double eventweight, // weight
53 // TTree * passtuple ) {
54
55 // fails_HZZ4L_selection( ctrl, info, electronArr, muonArr, eventweight, passtuple, NULL );
56
57 // };
58
59
60
61 // unsigned fails_HZZ4L_selection(ControlFlags &ctrl, // input control
62 // mithep::TEventInfo *info, // input event inof
63 // TClonesArray *electronArr, // input electrons
64 // TClonesArray *muonArr, // input muons
65 // double eventweight, // weight
66 // LabVectors *l ) {
67
68 // fails_HZZ4L_selection( ctrl, info, electronArr, muonArr, eventweight, NULL, l );
69
70 // };
71
72
73 unsigned fails_HZZ4L_selection(ControlFlags &ctrl, // input control
74 mithep::TGenInfo *ginfo , // input gen info
75 mithep::TEventInfo *info, // input event info
76 TClonesArray *electronArr, // input electrons
77 TClonesArray *muonArr, // input muons
78 double eventweight, // weight
79 TTree * passtuple ) {
80
81 fails_HZZ4L_selection( ctrl, info, electronArr, muonArr, eventweight, passtuple, NULL, NULL );
82
83 };
84
85 unsigned fails_HZZ4L_selection(ControlFlags &ctrl, // input control
86 mithep::TEventInfo *info, // input event info
87 TClonesArray *electronArr, // input electrons
88 TClonesArray *muonArr, // input muons
89 double eventweight, // weight
90 TTree * passtuple,
91 LabVectors * l ) {
92 fails_HZZ4L_selection( ctrl, info, electronArr, muonArr, eventweight, passtuple, l, NULL );
93 }
94
95
96 unsigned fails_HZZ4L_selection(ControlFlags &ctrl, // input control
97 mithep::TEventInfo *info, // input event info
98 TClonesArray *electronArr, // input electrons
99 TClonesArray *muonArr, // input muons
100 double eventweight, // weight
101 TTree * passtuple,
102 LabVectors * l=NULL,
103 TClonesArray *jetArr=NULL ) { // output ntuple
104
105 unsigned evtfail = 0x0;
106 unsigned gchannel=0xdeaddead;
107
108 // if( ctrl.mc && ginfo != NULL ) {
109 // gchannel = getGenChannel(ginfo);
110 // }
111
112
113 if( ctrl.debug ) {
114 cout << "Run: " << info->runNum
115 << "\tEvt: " << info->evtNum
116 << "\tLumi: " << info->lumiSec
117 << endl;
118 }
119
120 if( !ctrl.mc ) {
121 // not accounting for overlap atm
122 RunLumiRangeMap::RunLumiPairType rl(info->runNum, info->lumiSec);
123 if( !(rlrm.HasRunLumi(rl)) ) {
124 if( ctrl.debug ) cout << "\tfails JSON" << endl;
125 evtfail |= (1<<EVTFAIL_JSON);
126 return evtfail;
127 }
128 }
129
130
131
132
133
134 //********************************************************
135 // Trigger
136 //********************************************************
137 if( !ctrl.mc ) {
138 // if( !(passHLT(info->triggerBits, info->runNum, channel) ) ) {
139 // if( !(passHLT(info->triggerBits, info->runNum, 999) ) ) {
140 // evtfail |= (1<<EVTFAIL_TRIGGER);
141 // return evtfail;
142 // }
143 } else {
144 if( !(passHLTMC(info->triggerBits)) ) {
145 evtfail |= (1<<EVTFAIL_TRIGGER);
146 return evtfail;
147 }
148 // cout << "MC trigger bits: " << hex << info->triggerBits << dec << endl;
149 }
150
151 if( ctrl.debug ) {
152 cout << "presel nlep: " << muonArr->GetEntries() + electronArr->GetEntries()
153 << "\tnmuon: " << muonArr->GetEntries()
154 << "\tnelectron: " << electronArr->GetEntries()
155 << endl;
156 }
157
158 //********************************************************
159 // Lepton Selection
160 //********************************************************
161 vector<SimpleLepton> lepvec;
162
163 //
164 if( ctrl.debug ) cout << "\tnMuons: " << muonArr->GetEntries() << endl;
165 //----------------------------------------------------
166 for(Int_t i=0; i<muonArr->GetEntries(); i++) {
167 const mithep::TMuon *mu = (mithep::TMuon*)((*muonArr)[i]);
168 unsigned muonfail;
169 if( ctrl.muSele == "ksWW" )
170 muonfail = passMuonSelection(mu);
171 else
172 muonfail = passMuonSelectionZZ(mu);
173 if( ctrl.debug ) {
174 cout << "muon:: pt: " << mu->pt
175 << "\teta: " << mu->eta
176 << "\tmask: 0x" << hex << muonfail << dec
177 << endl;
178 }
179 if ( !muonfail ) {
180 SimpleLepton tmplep;
181 tmplep.vec.SetPtEtaPhiM(mu->pt,
182 mu->eta,
183 mu->phi,
184 105.658369e-3);
185 tmplep.type = 13;
186 tmplep.index = i;
187 tmplep.charge = mu->q;
188 tmplep.isoTrk = mu->trkIso03;
189 tmplep.isoEcal = mu->emIso03;
190 tmplep.isoHcal = mu->hadIso03;
191 tmplep.isoPF03 = mu->pfIso03;
192 tmplep.isoPF04 = mu->pfIso04;
193 tmplep.ip3dSig = mu->ip3dSig;
194 tmplep.is4l = false;
195 tmplep.isEB = (fabs(mu->eta) < 1.479 ? 1 : 0 );
196 lepvec.push_back(tmplep);
197 if( ctrl.debug ) { cout << "muon passes ... " << endl;}
198 }
199 }
200
201 if( ctrl.debug ) { cout << "\tnElectron: " << electronArr->GetEntries() << endl; }
202
203 //----------------------------------------------------
204 for(Int_t i=0; i<electronArr->GetEntries(); i++) {
205 const mithep::TElectron *ele = (mithep::TElectron*)((*electronArr)[i]);
206
207 if( !(isEleFO(ctrl,ele) ) ) continue;
208 if( ele->pt < 7 ) continue; //move this to ID
209
210 Bool_t isMuonOverlap = kFALSE;
211 for (int k=0; k<lepvec.size(); ++k) {
212 TVector3 tmplep;
213 tmplep.SetPtEtaPhi(ele->pt, ele->eta, ele->phi);
214 if ( lepvec[k].type == 13 && lepvec[k].vec.Vect().DrEtaPhi(tmplep) < 0.1 ) {
215 if( ctrl.debug ) cout << "-----> isMuonOverlap! " << endl;
216 isMuonOverlap = kTRUE;
217 break;
218 }
219 }
220
221 unsigned FAIL=0, isEleTight=0;
222
223 unsigned failsCIC=0;
224 CICStruct ciccuts_tight, ciccuts_medium, ciccuts_loose;
225 if(ctrl.eleSele=="cic") {
226 if( ctrl.eleSeleScheme == "mediumloose" ) {
227 ciccuts_medium = getCiCCuts("medium");
228 unsigned failsCICMedium = failsCicSelection(ctrl, ele, ciccuts_medium, ctrl.kinematics);
229 ciccuts_loose = getCiCCuts("loose");
230 unsigned failsCICLoose = failsCicSelection(ctrl, ele, ciccuts_loose, ctrl.kinematics);
231 failsCIC = ( failsCICLoose > 0 && failsCICMedium > 0 );
232 if( !failsCICMedium ) isEleTight=1;
233 }
234 else {
235 ciccuts_tight = getCiCCuts(ctrl.eleSeleScheme);
236 failsCIC = failsCicSelection(ctrl, ele, ciccuts_tight, ctrl.kinematics);
237 if( !failsCIC ) isEleTight=1;
238 }
239 FAIL = failsCIC;
240 }
241
242 LikStruct likcuts;
243 unsigned failsLike=0;
244 if(ctrl.eleSele=="lik") {
245 likcuts = getLikCuts(ctrl.eleSeleScheme);
246 failsLike = failsLikelihoodSelection(ele, likcuts, ctrl.kinematics);
247 FAIL = failsLike;
248 }
249 unsigned failsBDT=0;
250 if(ctrl.eleSele=="bdt") {
251 if( ctrl.eleSeleScheme == "mediumloose" ) {
252 unsigned failsBDTMedium = failsBDTSelection(ctrl,"medium",ele);
253 unsigned failsBDTLoose = failsBDTSelection(ctrl,"loose",ele);
254 failsBDT = ( failsBDTLoose > 0 && failsBDTMedium > 0 );
255 if( !failsBDTMedium ) isEleTight=1;
256 } else {
257 failsBDT = failsBDTSelection(ctrl,"tight",ele);
258 if( !failsBDT ) isEleTight=1;
259 }
260 FAIL = failsBDT;
261 }
262
263
264 if( ctrl.debug ){
265 cout << "CIC category: " << cicCategory(ele)
266 << "\tlikelihood: " << ele->likelihood
267 << "\tFAIL: 0x" << hex << FAIL << dec
268 << "\tfailsCIC: 0x" << hex << failsCIC << dec
269 << "\tfailsLike: 0x" << hex << failsLike << dec
270 << "\tfailsBDT: 0x" << hex << failsBDT << dec
271 << "\tscEt: " << ele->scEt
272 << "\tscEta: " << ele->scEta
273 << "\tncluster: " << ele->ncluster
274 << endl;
275 }
276 if ( !FAIL && !isMuonOverlap ) {
277 SimpleLepton tmplep;
278 tmplep.vec.SetPtEtaPhiM( ele->pt,
279 ele->eta,
280 ele->phi,
281 0.51099892e-3 );
282 tmplep.type = 11;
283 tmplep.index = i;
284 tmplep.charge = ele->q;
285 tmplep.isoTrk = ele->trkIso03;
286 tmplep.isoEcal = ele->emIso03;
287 tmplep.isoHcal = ele->hadIso03;
288 tmplep.isoPF03 = ele->pfIso03;
289 tmplep.isoPF04 = ele->pfIso04;
290 tmplep.ip3dSig = ele->ip3dSig;
291 tmplep.is4l = false;
292 tmplep.isTight = isEleTight;
293 tmplep.isEB = ele->isEB;
294 lepvec.push_back(tmplep);
295 if( ctrl.debug ) { cout << "\telectron passes ... " << endl; }
296 }
297 }
298
299 sort( lepvec.begin(), lepvec.end(), SimpleLepton::lep_pt_sort );
300
301 for( int i=0; i<lepvec.size(); i++ ) {
302 //
303 // check for a matched btagged jet
304 //
305 lepvec[i].tche = -1;
306 lepvec[i].tchp = -1;
307 lepvec[i].csv = -1;
308 lepvec[i].csvMva = -1;
309
310 if( jetArr != NULL ) {
311 for(int k=0; k<jetArr->GetEntries(); k++) {
312 const mithep::TJet *jet = (mithep::TJet*)((*jetArr)[k]);
313 TVector3 jvec;
314 jvec.SetPtEtaPhi(jet->pt, jet->eta, jet->phi);
315 if( jvec.DrEtaPhi( lepvec[i].vec.Vect()) < 0.2 ) {
316 lepvec[i].tche = jet->tche;
317 lepvec[i].tchp = jet->tchp;
318 lepvec[i].csv = jet->csv;
319 lepvec[i].csvMva = jet->csvMva;
320 }
321 }
322 }
323 }
324
325 int nmu=0, nele=0;
326 for( int i=0; i<lepvec.size(); i++ ) {
327 if( abs(lepvec[i].type) == 11 ) nele++;
328 else nmu++;
329 }
330 if( ctrl.debug ) {
331 cout << "postsel nlep: " << lepvec.size()
332 << "\tnmuon: " << nmu
333 << "\tnelectron: " << nele
334 << endl;
335 }
336
337 //******************************************************************************
338 //Z1 Selection
339 //******************************************************************************
340 int Z1LeptonPlusIndex = -1;
341 int Z1LeptonMinusIndex = -1;
342 double BestZ1Mass = -999;
343 if( ctrl.debug ) { cout << "looking for a Z1 ..." << endl; }
344 for(int i = 0; i < lepvec.size(); ++i) {
345 for(int j = i+1; j < lepvec.size(); ++j) {
346 if( ctrl.debug ) { cout << "\tconsidering leptons " << i << " & " << j << endl; }
347 if (!(lepvec[i].vec.Pt() > 20.0 || lepvec[j].vec.Pt() > 20.0)) continue;
348 if( ctrl.debug ) { cout << "\tat least one is > 20 GeV" << endl; }
349 if (!(lepvec[i].vec.Pt() > 10.0 && lepvec[j].vec.Pt() > 10.0)) continue;
350 if( ctrl.debug ) { cout << "\tthe other is > 10 GeV" << endl; }
351 if (lepvec[i].charge == lepvec[j].charge) continue;
352 if( ctrl.debug ) { cout << "\tthey're opposite charge" << endl; }
353 if (fabs(lepvec[i].type) != fabs(lepvec[j].type)) continue;
354 if( ctrl.debug ) { cout << "\tthey're same flavor" << endl; }
355
356 //Make Z1 hypothesis
357 TLorentzVector leptonPlus, leptonMinus;
358 if ( lepvec[i].charge > 0 ) {
359 leptonPlus = lepvec[i].vec;
360 leptonMinus = lepvec[j].vec;
361 } else {
362 leptonPlus = lepvec[j].vec;
363 leptonMinus = lepvec[i].vec;
364 }
365
366 float tmpZ1Mass = (leptonPlus+leptonMinus).M();
367 if( ctrl.debug ) cout << "Z1 selection, tmpZ1Mass: " << tmpZ1Mass << endl;
368 if( tmpZ1Mass > 60 ) {
369 if (fabs(tmpZ1Mass - 91.1876) < fabs(BestZ1Mass - 91.1876)) {
370 BestZ1Mass = tmpZ1Mass;
371 if( ctrl.debug ) cout << "Z1 selection, new BestZ1Mass: " << BestZ1Mass
372 << "\tdM: " << fabs(BestZ1Mass - 91.1876)
373 << endl;
374 if (lepvec[i].charge > 0) {
375 Z1LeptonPlusIndex = i;
376 Z1LeptonMinusIndex = j;
377 } else {
378 Z1LeptonPlusIndex = j;
379 Z1LeptonMinusIndex = i;
380 }
381 }
382 }
383 }
384 }
385 // stop if no Z1 candidate is found
386 if( BestZ1Mass < 0 ) {
387 evtfail |= (1<<EVTFAIL_Z1);
388 return evtfail;
389 }
390 if( ctrl.debug ) cout << "\tgot a Z1 ... run: " << info->runNum << "\tevt: " << info->evtNum << endl;
391 if( ctrl.debug ) cout << "\tZ1 plusindex: " << Z1LeptonPlusIndex << "\tminusindex: " << Z1LeptonMinusIndex << endl;
392 TLorentzVector Z1LeptonPlus = lepvec[Z1LeptonPlusIndex].vec;
393 TLorentzVector Z1LeptonMinus = lepvec[Z1LeptonMinusIndex].vec;
394 TLorentzVector Z1Candidate = Z1LeptonPlus + Z1LeptonMinus;
395 if( l != NULL ) {
396 l->vecz1 = Z1Candidate;
397 l->vecl1p = Z1LeptonPlus;
398 l->vecl1m = Z1LeptonMinus;
399 }
400
401 //******************************************************************************
402 // Z1 + l
403 //******************************************************************************
404 if( lepvec.size() < 3 ) {
405 evtfail |= (1<<EVTFAIL_Z1_PLUSL);
406 return evtfail;
407 }
408
409 //******************************************************************************
410 // 4l/Z2 Selection
411 //******************************************************************************
412 Int_t Z2LeptonPlusIndex = -1;
413 Int_t Z2LeptonMinusIndex = -1;
414 Double_t BestZ2Mass = -1;
415 if( ctrl.debug ) cout << "looking for a Z2 ... out of " << lepvec.size() << " leptons" <<endl;
416 for(int i = 0; i < lepvec.size(); ++i) {
417 if( abs(lepvec[i].type) == 11 &&
418 ctrl.eleSeleScheme == "mediumloose" &&
419 !(lepvec[i].isTight) ) continue;
420
421 for(int j = i+1; j < lepvec.size(); ++j) {
422 if( abs(lepvec[j].type) == 11 &&
423 ctrl.eleSeleScheme == "mediumloose" &&
424 !(lepvec[j].isTight) ) continue;
425
426 // cout << "i: " << i << "\tj: " << j << endl;
427 if (i == Z1LeptonPlusIndex || i == Z1LeptonMinusIndex) {
428 // cout << "\ti matches a Z1 index, skipping ..." << endl;
429 continue; //skip Z1 leptons
430 }
431 if (j == Z1LeptonPlusIndex || j == Z1LeptonMinusIndex) {
432 // cout << "\tj matches a Z1 index, skipping ..." << endl;
433 continue; //skip Z1 leptons
434 }
435 if (lepvec[i].charge == lepvec[j].charge) {
436 // cout << "\ti and j are same sign, skipping ..." << endl;
437 continue; //require opp sign
438 }
439 if (fabs(lepvec[i].type) != fabs(lepvec[j].type)) {
440 // cout << "\ti and j are not same flavor, skipping ..." << endl;
441 continue; //require same flavor
442 }
443
444
445 //Make Z2 hypothesis
446 TLorentzVector leptonPlus, leptonMinus;
447
448 if (lepvec[i].charge > 0 ) {
449 leptonPlus = lepvec[i].vec;
450 leptonMinus = lepvec[j].vec;
451 } else {
452 leptonPlus = lepvec[j].vec;
453 leptonMinus = lepvec[i].vec;
454 }
455
456 TLorentzVector dilepton = leptonPlus+leptonMinus;
457 TLorentzVector fourLepton = Z1Candidate + dilepton;
458
459 if( ctrl.debug ) cout << "dilepton.M() : " << dilepton.M() << endl;
460 if( ctrl.debug ) cout << "fourLepton.M() : " << fourLepton.M() << endl;
461
462 if (!(dilepton.M() > 12.0)) continue;
463 if (!(fourLepton.M() > 100.0)) continue;
464
465 /*
466 //for 4e and 4mu, require at least 1 of the other opp sign lepton pairs have mass > 12
467 if (fabs(lepvec[i].type) == fabs(lepvec[Z1LeptonPlusIndex].type)) {
468 TLorentzVector pair1 = Z1LeptonPlus+leptonMinus;
469 TLorentzVector pair2 = Z1LeptonMinus+leptonPlus;
470 if( ctrl.debug ) cout << "pair1: " << pair1.M() << "\tpair2: "<< pair2.M() << endl;
471 if (!(pair1.M() > 12 || pair2.M() > 12)) continue;
472 }
473 */
474
475 //Disambiguiation is done by choosing the pair with the largest ptMax and largest ptMin
476 if (Z2LeptonPlusIndex < 0) {
477 if (lepvec[i].charge > 0) {
478 Z2LeptonPlusIndex = i;
479 Z2LeptonMinusIndex = j;
480 } else {
481 Z2LeptonPlusIndex = j;
482 Z2LeptonMinusIndex = i;
483 }
484 } else {
485 Double_t BestPairPtMax = lepvec[Z2LeptonPlusIndex].vec.Pt();
486 Double_t BestPairPtMin = lepvec[Z2LeptonMinusIndex].vec.Pt();
487 if (lepvec[Z2LeptonMinusIndex].vec.Pt() > BestPairPtMax) {
488 BestPairPtMax = lepvec[Z2LeptonMinusIndex].vec.Pt();
489 BestPairPtMin = lepvec[Z2LeptonPlusIndex].vec.Pt();
490 }
491
492 Double_t CurrentPairPtMax = lepvec[i].vec.Pt();
493 Double_t CurrentPairPtMin = lepvec[j].vec.Pt();
494 if (lepvec[j].vec.Pt() > CurrentPairPtMax) {
495 CurrentPairPtMax = lepvec[j].vec.Pt();
496 CurrentPairPtMin = lepvec[i].vec.Pt();
497 }
498
499 if (CurrentPairPtMax > BestPairPtMax) {
500 if (lepvec[i].charge > 0) {
501 Z2LeptonPlusIndex = i;
502 Z2LeptonMinusIndex = j;
503 } else {
504 Z2LeptonPlusIndex = j;
505 Z2LeptonMinusIndex = i;
506 }
507 } else if (CurrentPairPtMax == BestPairPtMax) {
508 if (CurrentPairPtMin > BestPairPtMin) {
509 if (lepvec[i].charge > 0) {
510 Z2LeptonPlusIndex = i;
511 Z2LeptonMinusIndex = j;
512 } else {
513 Z2LeptonPlusIndex = j;
514 Z2LeptonMinusIndex = i;
515 }
516 }
517 }
518 }
519 }
520 }
521
522 // stop if no Z2 candidate is found
523 if (Z2LeptonPlusIndex == -1) {
524 evtfail |= ( 1<<EVTFAIL_4L );
525 return evtfail;
526 // h_evtfail->Fill( evtfail );
527 // cout << "evtfail: " << hex << evtfail << dec << endl;
528 // continue;
529 }
530 if( ctrl.debug ) cout << "\tgot a Z2 ..." << endl;
531 if( ctrl.debug ) cout << "\tZ2 plusindex: " << Z2LeptonPlusIndex
532 << "\tminusindex: " << Z2LeptonMinusIndex << endl;
533 TLorentzVector Z2LeptonPlus = lepvec[Z2LeptonPlusIndex].vec;
534 TLorentzVector Z2LeptonMinus = lepvec[Z2LeptonMinusIndex].vec;
535 TLorentzVector Z2Candidate = Z2LeptonPlus+Z2LeptonMinus;
536 TLorentzVector ZZSystem = Z1Candidate + Z2Candidate;
537 if( l != NULL ) {
538 l->vecz2 = Z2Candidate;
539 l->vecl2p = Z2LeptonPlus;
540 l->vecl2m = Z2LeptonMinus;
541 l->vec4l = ZZSystem;
542 }
543 lepvec[Z1LeptonPlusIndex].is4l = true;
544 lepvec[Z1LeptonMinusIndex].is4l = true;
545 lepvec[Z2LeptonPlusIndex].is4l = true;
546 lepvec[Z2LeptonMinusIndex].is4l = true;
547
548 //***************************************************************
549 // Isolation
550 //***************************************************************
551 bool failiso=false;
552
553 if( ctrl.isoScheme == "pf" ) {
554
555 for( int i=0; i<lepvec.size(); i++ ) {
556
557 if( !(lepvec[i].is4l) ) continue;
558
559 if( abs(lepvec[i].type) == 11 ) {
560 float reliso = lepvec[i].isoPF04/lepvec[i].vec.Pt();
561 if( lepvec[i].isEB && lepvec[i].vec.Pt() > 20 && reliso > PFISO_ELE_LOOSE_EB_HIGHPT ) {
562 failiso = true;
563 break;
564 }
565 if( lepvec[i].isEB && lepvec[i].vec.Pt() < 20 && reliso > PFISO_ELE_LOOSE_EB_LOWPT ) {
566 failiso = true;
567 break;
568 }
569 if( !(lepvec[i].isEB) && lepvec[i].vec.Pt() > 20 && reliso > PFISO_ELE_LOOSE_EE_HIGHPT ) {
570 failiso = true;
571 break;
572 }
573 if( !(lepvec[i].isEB) && lepvec[i].vec.Pt() < 20 && reliso > PFISO_ELE_LOOSE_EE_LOWPT ) {
574 failiso = true;
575 break;
576 }
577 }
578
579 if( abs(lepvec[i].type) == 13 ) {
580
581 float reliso = lepvec[i].isoPF03/lepvec[i].vec.Pt();
582 if( lepvec[i].isEB && lepvec[i].vec.Pt() > 20 && reliso > PFISO_MU_LOOSE_EB_HIGHPT ) { //0.13
583 failiso = true;
584 break;
585 }
586 if( lepvec[i].isEB && lepvec[i].vec.Pt() < 20 && reliso > PFISO_MU_LOOSE_EB_LOWPT ) { //0.06
587 failiso = true;
588 break;
589 }
590 if( !(lepvec[i].isEB) && lepvec[i].vec.Pt() > 20 && reliso > PFISO_MU_LOOSE_EE_HIGHPT ) { //0.09
591 failiso = true;
592 break;
593 }
594 if( !(lepvec[i].isEB) && lepvec[i].vec.Pt() < 20 && reliso > PFISO_MU_LOOSE_EE_LOWPT ) { //0.05
595 failiso = true;
596 break;
597 }
598 }
599 }
600 } else if ( ctrl.isoScheme == "pairwise" ) {
601 float rho = info->rho;
602 for( int i=0; i<lepvec.size(); i++ ) {
603 if( !(lepvec[i].is4l) ) continue;
604 float effArea_ecal_i, effArea_hcal_i;
605 if( lepvec[i].isEB ) {
606 if( lepvec[i].type == 11 ) {
607 effArea_ecal_i = 0.101;
608 effArea_hcal_i = 0.021;
609 } else {
610 effArea_ecal_i = 0.074;
611 effArea_hcal_i = 0.022;
612 }
613 } else {
614 if( lepvec[i].type == 11 ) {
615 effArea_ecal_i = 0.046;
616 effArea_hcal_i = 0.040;
617 } else {
618 effArea_ecal_i = 0.045;
619 effArea_hcal_i = 0.030;
620 }
621 }
622 float isoEcal_corr_i = lepvec[i].isoEcal - (effArea_ecal_i*rho);
623 float isoHcal_corr_i = lepvec[i].isoHcal - (effArea_hcal_i*rho);
624 for( int j=i+1; j<lepvec.size(); j++ ) {
625 if( !(lepvec[j].is4l) ) continue;
626 float effArea_ecal_j, effArea_hcal_j;
627 if( lepvec[j].isEB ) {
628 if( lepvec[j].type == 11 ) {
629 effArea_ecal_j = 0.101;
630 effArea_hcal_j = 0.021;
631 } else {
632 effArea_ecal_j = 0.074;
633 effArea_hcal_j = 0.022;
634 }
635 } else {
636 if( lepvec[j].type == 11 ) {
637 effArea_ecal_j = 0.046;
638 effArea_hcal_j = 0.040;
639 } else {
640 effArea_ecal_j = 0.045;
641 effArea_hcal_j = 0.030;
642 }
643 }
644 float isoEcal_corr_j = lepvec[j].isoEcal - (effArea_ecal_j*rho);
645 float isoHcal_corr_j = lepvec[j].isoHcal - (effArea_hcal_j*rho);
646 float RIso_i = (lepvec[i].isoTrk+isoEcal_corr_i+isoHcal_corr_i)/lepvec[i].vec.Pt();
647 float RIso_j = (lepvec[j].isoTrk+isoEcal_corr_j+isoHcal_corr_j)/lepvec[j].vec.Pt();
648 float comboIso = RIso_i + RIso_j;
649 if( info->evtNum == 1038911933 ) {
650 float tmpdR = lepvec[i].vec.DrEtaPhi(lepvec[j].vec);
651 cout << "i: " << i
652 << "\tdR: " << tmpdR
653 << "\trho: " << rho
654 << "\tRIso_i: " << RIso_i
655 << "\ttkrel: " << lepvec[i].isoTrk/lepvec[i].vec.Pt()
656 << "\tecalrel: " << lepvec[i].isoEcal/lepvec[i].vec.Pt()
657 << "\tecalrelcor: " << isoEcal_corr_i/lepvec[i].vec.Pt()
658 << "\thcalrel: " << lepvec[i].isoHcal/lepvec[i].vec.Pt()
659 << "\thcalrelcor: " << isoHcal_corr_i/lepvec[i].vec.Pt()
660 << "\tpt_i: " << lepvec[i].vec.Pt()
661 << "\tj: " << j
662 << "\tRIso_j: " << RIso_j
663 << "\ttkrel: " << lepvec[j].isoTrk/lepvec[j].vec.Pt()
664 << "\tecalrel: " << lepvec[j].isoEcal/lepvec[j].vec.Pt()
665 << "\tecalrelcor: " << isoEcal_corr_j/lepvec[j].vec.Pt()
666 << "\thcalrel: " << lepvec[j].isoHcal/lepvec[j].vec.Pt()
667 << "\thcalrelcor: " << isoHcal_corr_j/lepvec[j].vec.Pt()
668 << "\tpt_j: " << lepvec[j].vec.Pt()
669 << "\tcombo: " << comboIso
670 << endl;
671 cout.flush();
672 }
673 if( comboIso > 0.35 ) {
674 if( ctrl.debug ) cout << "combo failing for indices: " << i << "," << j << endl;
675 failiso = true;
676 // break;
677 }
678 }
679 }
680 }
681
682
683 if( failiso ) {
684 evtfail |= ( 1<<EVTFAIL_ISOLATION );
685 return evtfail;
686 //h_evtfail->Fill( evtfail, eventweight );
687 // h_evtfail->Fill( evtfail );
688 // cout << "evtfail: " << hex << evtfail << dec << endl;
689 // continue;
690 }
691
692 //***************************************************************
693 // IP significance
694 //***************************************************************
695 bool failip = false;
696 for( int i=0; i<lepvec.size(); i++ ) {
697 if( !(lepvec[i].is4l) ) continue;
698 if( lepvec[i].ip3dSig > 4 ) {
699 failip=true;
700 break;
701 }
702 }
703 if( failip ) {
704 evtfail |= (1<<EVTFAIL_IP );
705 return evtfail;
706 //h_evtfail->Fill( evtfail, eventweight );
707 // h_evtfail->Fill( evtfail );
708 // cout << "evtfail: " << hex << evtfail << dec << endl;
709 // continue;
710 }
711
712 //***************************************************************
713 // remaining kinematic cuts
714 //***************************************************************
715 double Z2massCut=0;
716 if ( ctrl.kinematics == "loose" ) Z2massCut = 12;
717 else if ( ctrl.kinematics == "tight" ) Z2massCut = 20;
718 else { cout << "error! kinematic tightness not defined!" << endl; assert(0); }
719
720 if ( Z1Candidate.M() > 120 ||
721 Z2Candidate.M() < Z2massCut ||
722 Z2Candidate.M() > 120 ||
723 !(lepvec[Z1LeptonPlusIndex].vec.Pt() > 20.0 || lepvec[Z1LeptonMinusIndex].vec.Pt() > 20.0) ||
724 !(lepvec[Z1LeptonPlusIndex].vec.Pt() > 10.0 && lepvec[Z1LeptonMinusIndex].vec.Pt() > 10.0)
725 ) {
726 evtfail |= (1<<EVTFAIL_KINEMATICS );
727 return evtfail;
728 //h_evtfail->Fill( evtfail, eventweight );
729 // h_evtfail->Fill( evtfail );
730 // cout << "evtfail: " << hex << evtfail << dec << endl;
731 // continue;
732 }
733
734 unsigned channel;
735 if( lepvec[Z1LeptonMinusIndex].type == 11 && lepvec[Z2LeptonMinusIndex].type == 11 ) channel=0;
736 if( lepvec[Z1LeptonMinusIndex].type == 13 && lepvec[Z2LeptonMinusIndex].type == 13 ) channel=1;
737 if( (lepvec[Z1LeptonMinusIndex].type == 11 && lepvec[Z2LeptonMinusIndex].type == 13) ||
738 (lepvec[Z1LeptonMinusIndex].type == 13 && lepvec[Z2LeptonMinusIndex].type == 11)) channel=2;
739
740
741 double w_offline=-1, werr_offline=0;
742 double w_online=-1, werr_online=0;
743
744 if( ctrl.mc ) {
745
746 vector< pair <double,double> > wlegs; // pair here is eff & err
747 vector< pair <float,float> > mvec; // pair here is eta & pt
748 vector< pair <float,float> > evec; // pair here is eta & pt
749
750 for( int k=0; k<lepvec.size(); k++ ) {
751 if( !(lepvec[k].is4l) ) continue;
752 if( abs(lepvec[k].type) == 13 ) {
753 mvec.push_back( std::pair<float,float> (fabs(lepvec[k].vec.Eta()), lepvec[k].vec.Pt()) );
754 wlegs.push_back( muonPerLegOfflineEfficiencyWeight( fabs(lepvec[k].vec.Eta()),
755 lepvec[k].vec.Pt() ) );
756 } else {
757 evec.push_back( std::pair<float,float> (fabs(lepvec[k].vec.Eta()), lepvec[k].vec.Pt()) );
758 wlegs.push_back( elePerLegOfflineEfficiencyWeight( fabs(lepvec[k].vec.Eta()),
759 lepvec[k].vec.Pt() ) );
760 // wlegs.push_back( pair<double,double> (1.,0.) );
761 }
762 }
763
764 pair<double,double> offpair = getOfflineEfficiencyWeight( wlegs );
765 w_offline = offpair.first;
766 werr_offline = offpair.second;
767
768 pair<double,double> onpair = getOnlineEfficiencyWeight( mvec, evec );
769 w_online = onpair.first;
770 werr_online = onpair.second;
771 } // if mc
772
773
774 if( l != NULL ) {
775 l->vec4l = ZZSystem;
776 l->vecz1 = Z1Candidate;
777 l->vecz2 = Z2Candidate;
778 l->vecl1p = lepvec[Z1LeptonPlusIndex].vec;
779 l->vecl1m = lepvec[Z1LeptonMinusIndex].vec;
780 l->vecl2p = lepvec[Z2LeptonPlusIndex].vec;
781 l->vecl2m = lepvec[Z2LeptonMinusIndex].vec;
782 }
783 if( passtuple != NULL ) {
784 unsigned run = info->runNum;
785 unsigned evt = info->evtNum;
786 unsigned lumi = info->lumiSec;
787 unsigned chan = channel;
788 double w = eventweight;
789 float mZ1 = Z1Candidate.M() ;
790 float mZ2 = Z2Candidate.M() ;
791 float m4l = ZZSystem.M() ;
792 float pt4l = ZZSystem.Pt() ;
793 unsigned tZ1 = abs(lepvec[Z1LeptonMinusIndex].type);
794 unsigned tZ2 = abs(lepvec[Z2LeptonMinusIndex].type);
795 float l3tche = lepvec[Z2LeptonMinusIndex].tche;
796 float l4tche = lepvec[Z2LeptonPlusIndex].tche;
797 float l3tchp = lepvec[Z2LeptonMinusIndex].tchp;
798 float l4tchp = lepvec[Z2LeptonPlusIndex].tchp;
799 float l3csv = lepvec[Z2LeptonMinusIndex].csv;
800 float l4csv = lepvec[Z2LeptonPlusIndex].csv;
801 float l3csvMva = lepvec[Z2LeptonMinusIndex].csvMva;
802 float l4csvMva = lepvec[Z2LeptonPlusIndex].csvMva;
803
804
805 passtuple->SetBranchAddress("channel", &channel);
806 passtuple->SetBranchAddress("run", &run);
807 passtuple->SetBranchAddress("evt", &evt);
808 passtuple->SetBranchAddress("lumi", &lumi);
809 passtuple->SetBranchAddress("mZ1", &mZ1);
810 passtuple->SetBranchAddress("mZ2", &mZ2);
811 passtuple->SetBranchAddress("tZ1", &tZ1);
812 passtuple->SetBranchAddress("tZ2", &tZ2);
813 passtuple->SetBranchAddress("m4l", &m4l);
814 passtuple->SetBranchAddress("pt4l", &pt4l);
815 passtuple->SetBranchAddress("w", &w);
816 if( ctrl.mc ) {
817 passtuple->SetBranchAddress("woff", &w_offline );
818 passtuple->SetBranchAddress("werroff", &werr_offline );
819 passtuple->SetBranchAddress("won", &w_online );
820 passtuple->SetBranchAddress("werron", &werr_online );
821 }
822 if( ctrl.btag ) {
823 passtuple->SetBranchAddress("l3tche", &l3tche);
824 passtuple->SetBranchAddress("l4tche", &l4tche);
825 passtuple->SetBranchAddress("l3tchp", &l3tchp);
826 passtuple->SetBranchAddress("l4tchp", &l4tchp);
827 passtuple->SetBranchAddress("l3csv", &l3csv);
828 passtuple->SetBranchAddress("l4csv", &l4csv);
829 passtuple->SetBranchAddress("l3csvMva", &l3csvMva);
830 passtuple->SetBranchAddress("l4csvMva", &l4csvMva);
831 }
832
833 if( ctrl.mc ) passtuple->SetBranchAddress("gchannel", &gchannel);
834 passtuple->Fill( );
835
836 }
837
838 if( ctrl.debug ) cout << "run: " << info->runNum
839 << "\tevt: " << info->evtNum
840 << "\tZ1channel: " << lepvec[Z1LeptonMinusIndex].type
841 << "\tZ2channel: " << lepvec[Z2LeptonMinusIndex].type
842 << "\tmZ1: " << Z1Candidate.M()
843 << "\tmZ2: " << Z2Candidate.M()
844 << "\tm4l: " << ZZSystem.M()
845 << "\tevtfail: " << hex << evtfail << dec
846 << "\ttrigbits: " << hex << info->triggerBits << dec
847 // << "\ttree: " << inputFiles[q][f]
848 << endl;
849
850 return evtfail;
851
852 }
853
854
855
856
857