ViewVC Help
View File | Revision Log | Show Annotations | Root Listing
root/cvsroot/UserCode/MitHzz4l/Selection/src/applySelection.cc
(Generate patch)

Comparing UserCode/MitHzz4l/Selection/src/applySelection.cc (file contents):
Revision 1.13 by khahn, Sat May 5 11:04:01 2012 UTC vs.
Revision 1.27 by anlevin, Wed May 23 22:06:40 2012 UTC

# Line 5 | Line 5
5   #include <iostream>                 // standard I/O
6   #include <iomanip>                  // functions to format standard I/O
7   #include <bitset>  
8 + #include <map>  
9   using namespace std;
10  
11   //
# Line 34 | Line 35 | using namespace std;
35   #include "Vertex.h"
36   #include "PFCandidate.h"
37   #include "PFCandidateCol.h"
38 + #include "PileupInfoCol.h"
39 + #include "PileupEnergyDensity.h"
40 + #include "MCParticle.h"
41   #include "TriggerMask.h"
42   #include "TriggerTable.h"
43   #include "Names.h"
# Line 46 | Line 50 | using namespace std;
50   #include "MuonSelection.h"
51   #include "ElectronSelection.h"
52   #include "IsolationSelection.h"
53 < #include "Selection.h"
53 >
54 > //#include "Selection.h"
55 > //#include "ReferenceSelection.h"
56 > #include "ReferenceSelection2.h"
57 >
58   #include "TriggerUtils.h"
59   #include "PassHLT.h"
60   #include "Angles.h"
# Line 54 | Line 62 | using namespace std;
62   #include "InfoStruct.h"
63   //#include "GenInfoStruct.h"
64   #include "WeightStruct.h"
65 < #include "GlobalDataAndFuncs.h"
65 > //#include "GlobalDataAndFuncs.h"
66 > #include "RunLumiRangeMap.h"
67 >
68   #include "AngleTuple.h"
69 + #include "FOTuple.h"
70  
71   #include "SampleWeight.h"
72   #include "EfficiencyWeightsInterface.h"
73  
74 + #include "SimpleLepton.h"
75 +
76   #ifndef CMSSW_BASE
77   #define CMSSW_BASE "../"
78   #endif
79  
80   using namespace mithep;
81  
82 + //
83 + // globals
84 + //----------------------------------------------------------------------------
85 + TH1D * hpu;
86 + RunLumiRangeMap rlrm;
87 + vector<SimpleLepton> failingLeptons ; // for fake estimation
88 + vector<SimpleLepton> passingLeptons;      // for fake estimation
89 + vector<unsigned> cutvec;
90 + vector<vector<unsigned> > zcutvec;
91 + vector<vector<unsigned> > zzcutvec;
92 + map<unsigned,float>       evtrhoMap;
93 + vector<string> cutstrs;
94 + bool passes_HLT_MC;
95 + vector<bool>   PFnoPUflag;;
96  
97 + //
98 + // prototypes
99   //----------------------------------------------------------------------------
100 < bool setPV(ControlFlags,const mithep::Array<mithep::Vertex>*, mithep::Vertex& );
100 > void initPUWeights();
101 > double getPUWeight(unsigned npu);
102 > void setEffiencyWeights(EventData&, WeightStruct& );
103 > void initRunLumiRangeMap();
104 > void initEvtRhoMap(map<unsigned,float> &);
105 > unsigned makePFnoPUArray(mithep::Array<PFCandidate> * fPFCandidates,
106 >                         vector<bool> &pfNoPileUpFlag,
107 >                         const mithep::VertexCol     * vtxArr );
108   //----------------------------------------------------------------------------
109  
110 < //=== MAIN =================================================================================================
110 >
111 > //
112 > // MAIN
113 > //----------------------------------------------------------------------------
114   int main(int argc, char** argv)
115 + //----------------------------------------------------------------------------
116   {
117 +  cutstrs.push_back(string("skim0"));              //0
118 +  cutstrs.push_back(string("skim1"));              //1
119 +  cutstrs.push_back(string("skim2"));              //1
120 +  cutstrs.push_back(string("trigger"));            //2
121 +  // -------------------------------------------------
122 +  cutstrs.push_back(string("Z candidate"));        //3
123 +  cutstrs.push_back(string("good Z1"));            //4
124 +  // -------------------------------------------------
125 +  cutstrs.push_back(string("4l"));                 //5  
126 +  cutstrs.push_back(string("ZZ candidate"));       //6
127 +  cutstrs.push_back(string("good Z2"));            //7
128 +  cutstrs.push_back(string("ZZ 20/10"));           //8
129 +  cutstrs.push_back(string("resonance"));          //9
130 +  cutstrs.push_back(string("m4l>70"));             //10
131 +  cutstrs.push_back(string("m4l>100, mZ2 > 12"));                  //11
132 +
133 +
134 +
135 +
136    string cmsswpath(CMSSW_BASE);
137    cmsswpath.append("/src");
138    std::bitset<1024> triggerBits;
139    vector<vector<string> > inputFiles;
140    inputFiles.push_back(vector<string>());
141 <  map<string,double> entrymap; // number of unskimmed entries in each file
141 >  map<string,unsigned> entrymap; // number of unskimmed entries in each file
142 >  for( int i=0; i<cutstrs.size(); i++ ) cutvec.push_back(0);
143 >  for( int i=0; i<2; i++ )  {
144 >    zcutvec.push_back(vector<unsigned>());
145 >    for( int j=0; j<cutstrs.size(); j++ ) zcutvec[i].push_back(0);
146 >  }
147 >  for( int i=0; i<3; i++ )  {
148 >    zzcutvec.push_back(vector<unsigned>());
149 >    for( int j=0; j<cutstrs.size(); j++ ) zzcutvec[i].push_back(0);
150 >  }
151 >
152  
153    //
154    // args
# Line 96 | Line 165 | int main(int argc, char** argv)
165        return 1;
166      }
167    ctrl.dump();
99  assert( ctrl.mH != 0 );
168  
169  
170  
# Line 113 | Line 181 | int main(int argc, char** argv)
181        if( !(strncmp( fname.c_str(), "#", 1 ) ) ) continue; // skip commented lines
182        cout << "adding inputfile : " << fname.c_str() << endl;
183        entrymap[string(fname.c_str())] = unskimmedEntries(fname.c_str());
184 +      cout << "unskimmed entries: " << entrymap[string(fname.c_str())] << endl;
185        chain->AddFile(fname.c_str());
186        hltchain->AddFile(fname.c_str());
187      }
188    } else {
189      cout << "adding inputfile : " << ctrl.inputfile.c_str() << endl;
190 +    unsigned tmpent = unskimmedEntries(ctrl.inputfile.c_str());
191 +    cout << "tmpent: " << tmpent << endl;
192      entrymap[string(ctrl.inputfile.c_str())] = unskimmedEntries(ctrl.inputfile.c_str());
193 +    cout << "unskimmed entries: " << entrymap[string(ctrl.inputfile.c_str())] << endl;
194      chain->AddFile(ctrl.inputfile.c_str());
195      hltchain->AddFile(ctrl.inputfile.c_str());
196    }
# Line 149 | Line 221 | int main(int argc, char** argv)
221    nt.makeKinematicsBranch(kinematics);
222    nt.makeInfoBranch(evtinfo);
223  
224 +  FOTuple foTree( nt.getFile(), (const char*)"FOtree");
225 +  foTree.makeFailedLeptonBranch(failingLeptons);
226 +  foTree.makeZLeptonBranch(passingLeptons);
227 +
228    TH1F * h_w_hpt;
229    if(ctrl.mc) {
230      nt.makeWeightBranch(weights);
231      //    nt.makeGenInfoBranch(geninfo);
232      initEfficiencyWeights();
233 +    initPUWeights();
234      /*
235      // Higgs only, pt reweighting
236      if( ctrl.mH <= 140 ) {
# Line 170 | Line 247 | int main(int argc, char** argv)
247      initRunLumiRangeMap();
248    }
249  
250 <  initMuonIDMVA();
250 >  //  initMuonIDMVA();
251    initMuonIsoMVA();
252    initElectronIDMVA();
253    initElectronIsoMVA();
254    initTrigger();
255 <  
256 <  
257 <  //##########################################################################
258 <  // Setup tree I/O
182 <  //##########################################################################
255 >
256 >  // hack
257 >  initEvtRhoMap(evtrhoMap);
258 >
259    
260    //
261 <  // Access samples and fill histograms
261 >  // Setup tree I/O
262 >  //--------------------------------------------------------------------------------------------------------------
263    TFile *inputFile=0;
264    TTree *eventTree=0;  
265    string currentFile("");
266  
190  // Data structures to store info from TTrees
267    mithep::EventHeader *info    = new mithep::EventHeader();
268    //  mithep::TGenInfo    *ginfo  = new mithep::TGenInfo();
269    mithep::Array<mithep::Electron>             *electronArr   = new mithep::Array<mithep::Electron>();
270    mithep::Array<mithep::Muon>                 *muonArr       = new mithep::Array<mithep::Muon>();
271 <  mithep::Array<mithep::Vertex>               *vtxArr        = new mithep::Array<mithep::Vertex>();
271 >  const mithep::VertexCol              *vtxArr        = 0;//new mithep::Array<mithep::Vertex>();
272    mithep::Array<mithep::PFCandidate>          *pfArr         = new mithep::Array<mithep::PFCandidate>();
273 <  mithep::Array<mithep::PileupEnergyDensity>  *puArr         = new mithep::Array<mithep::PileupEnergyDensity>();
273 >  mithep::Array<mithep::PileupInfo>           *puArr         = new mithep::Array<mithep::PileupInfo>();
274 >  mithep::Array<mithep::PileupEnergyDensity>  *puDArr        = new mithep::Array<mithep::PileupEnergyDensity>();
275    mithep::Array<mithep::Track>                *trkArr        = new mithep::Array<mithep::Track>();
276 +  mithep::Array<mithep::MCParticle>           *mcArr         = new mithep::Array<mithep::MCParticle>();
277    mithep::TriggerMask                         *trigMask      = new mithep::TriggerMask();
278    mithep::TriggerTable                        *hltTable      = new mithep::TriggerTable();
279    vector<string>                              *hltTableStrings  = new vector<string>();
# Line 205 | Line 283 | int main(int argc, char** argv)
283    TString fInfoName(Names::gkEvtHeaderBrn);
284    TString fPrimVtxName(Names::gkPVBrn);
285    TString fPFCandidateName(Names::gkPFCandidatesBrn);
286 +  TString fPileupInfoName(Names::gkPileupInfoBrn);
287    TString fPileupEnergyDensityName(Names::gkPileupEnergyDensityBrn);
288    TString fTrackName(Names::gkTrackBrn);
289 +  TString fMCParticleName(Names::gkMCPartBrn);
290    TString fTriggerMaskName(Names::gkHltBitBrn);
291    TString fTriggerTableName(Names::gkHltTableBrn);
292    
# Line 215 | Line 295 | int main(int argc, char** argv)
295    chain->SetBranchAddress(fMuonName,        &muonArr);
296    chain->SetBranchAddress(fPrimVtxName,     &vtxArr);
297    chain->SetBranchAddress(fPFCandidateName, &pfArr);
298 <  chain->SetBranchAddress(fPileupEnergyDensityName, &puArr);
298 >  if( ctrl.mc ) {
299 >    chain->SetBranchAddress(fPileupInfoName,  &puArr);
300 >    chain->SetBranchAddress(fMCParticleName,  &mcArr);
301 >  }
302 >  chain->SetBranchAddress(fPileupEnergyDensityName, &puDArr);
303    chain->SetBranchAddress(fTrackName, &trkArr);
304    chain->SetBranchAddress(fTriggerMaskName, &trigMask);
305    cout << "hlttable: " << fTriggerTableName << endl;
# Line 240 | Line 324 | int main(int argc, char** argv)
324    cout << "nEntries: " << imax << endl;
325  
326  
327 <  //##########################################################################
328 <  // Loop !!!!!!!!! should alternate events here and +1 in the training ...
329 <  //##########################################################################
327 >  //
328 >  // Loop !!!!!!!!!
329 >  //--------------------------------------------------------------------------------------------------------------
330    for(UInt_t ientry=0; ientry<imax; ientry++)
331      {
332        chain->GetEntry(ientry);
333 +
334 +      /*
335 +      bool found_tau=false;
336 +      if( ctrl.mc) {  // && ctrl.debug
337 +        cout << "nparticles: " << mcArr->GetEntries() << endl;
338 +        cout << "-----------------------------------" << endl;
339 +        for( int i=0; i<mcArr->GetEntries(); i++ ) {
340 +          const mithep::MCParticle *mc = mcArr->At(i);
341 +          cout << "i: " << i << "\t"
342 +               << "id: " << mc->AbsPdgId()
343 +               << endl;
344 +          if( mc->Is(MCParticle::kTau) ) {
345 +            found_tau=true;
346 +          }
347 +        }
348 +      }
349 +      cout << "-----------------------------------" << endl;
350 +      cout << "found tau: " << found_tau << endl;
351 +      */
352 +
353 +      // events that fail bc ele overlaps w/ reco mu
354 +      /*
355 +      if( info->EvtNum() != 67315 &&
356 +          info->EvtNum() != 288693 ) continue;
357 +      */
358 +
359 +      // events where they apparently don't veto electrons ...
360 +      /*
361 +      if( info->EvtNum() != 141713 &&
362 +          info->EvtNum() != 178019 &&
363 +          info->EvtNum() != 60823 &&
364 +          info->EvtNum() != 192795 ) continue;
365 +      */
366 +
367        if(!(ientry%1000)) cerr << "entry: " << ientry << endl;
368 +      //if (!(setPV( ctrl, vtxArr, vtx)) ) continue;
369 +
370 +      float rho = evtrhoMap[info->EvtNum()];
371  
372 <      setPV( ctrl, vtxArr, vtx);
372 >      //
373 >      // pfNoPU
374 >      //
375 >      //mithep::Array<PFCandidate> pfNoPileUp;
376 >      PFnoPUflag.clear();
377 >      int pfnopu_size = makePFnoPUArray( pfArr, PFnoPUflag, vtxArr );
378 >      assert(pfnopu_size == pfArr->GetEntries());
379  
380 +      //
381 +      // data/MC
382 +      //
383        if(ctrl.mc) {
384 <        weights.w = getWeight(xstab,entrymap,chain);
384 >        //
385 >        // xsec & PU weights
386 >        //
387 >        weights.w = 1;//getWeight(xstab,entrymap,chain)/ctrl.totalMC;
388 >        cout << "xsec weight: " << weights.w << endl;
389 >        int npu = -1;
390 >        for(int i=0;i<puArr->GetEntries();i++) {
391 >          if(puArr->At(i)->GetBunchCrossing() == 0)
392 >            npu = puArr->At(i)->GetPU_NumInteractions();
393 >        }
394 >        assert(npu>=0);
395 >        evtinfo.npu;
396 >        weights.npuw = getPUWeight(evtinfo.npu);
397 >        //      cout << "weight: " << weights.w << endl;
398 >        //
399 >        // trigger
400 >        //
401 >        if( string(chain->GetFile()->GetEndpointUrl()->GetFile()) != currentFile ) {
402 >          currentFile = string(chain->GetFile()->GetEndpointUrl()->GetFile());
403 >          hltchain->SetBranchAddress(fTriggerTableName, &hltTableStrings);
404 >          hltchain->GetEntry(0);
405 >          hltTable->Clear();
406 >          fillTriggerBits(hltTable, hltTableStrings );
407 >        }
408 >        if( ctrl.debug ) cout << "file is : " << currentFile  << endl;
409 >        fillTriggerBits( hltTable, trigMask, triggerBits );
410 >        passes_HLT_MC = true; // passed to apply as extern global, just for sync
411 >        if( !passHLTMC(triggerBits, info->RunNum(), info->EvtNum(), k2012_MC ) ) {
412 >          passes_HLT_MC = false;
413 >        }
414        } else {
415 +        //
416 +        // JSON
417 +        //
418 +        /*
419 +        RunLumiRangeMap::RunLumiPairType rl(info->RunNum(), info->LumiSec());      
420 +        if( !(rlrm.HasRunLumi(rl)) )  {
421 +          if( ctrl.debug ) cout << "\tfails JSON" << endl;
422 +          continue;
423 +        }
424 +        */
425 +        //
426 +        // trigger
427 +        //
428          if( string(chain->GetFile()->GetEndpointUrl()->GetFile()) != currentFile ) {
429            currentFile = string(chain->GetFile()->GetEndpointUrl()->GetFile());
430            hltchain->SetBranchAddress(fTriggerTableName, &hltTableStrings);
# Line 261 | Line 433 | int main(int argc, char** argv)
433            fillTriggerBits(hltTable, hltTableStrings );
434          }
435          if( ctrl.debug ) cout << "file is : " << currentFile  << endl;
436 +        /*
437          fillTriggerBits( hltTable, trigMask, triggerBits );
265      }
266      
267      
268      //
269      // trigger
270      //
271      if( !ctrl.mc ) {
438          if( !passHLT(triggerBits, info->RunNum(), info->EvtNum() ) ) {
439            if( ctrl.debug ) cout << "\tfails trigger ... " << endl;
440            continue;
441          }
442 +        */
443        }
444 <      
444 >
445        //
446        // lepton/kinematic selection ...
447        //
448 +      failingLeptons.clear();
449 +      passingLeptons.clear();
450        EventData ret4l =
451 <        apply_HZZ4L_selection(ctrl, info,
452 <                              vtx,
453 <                              pfArr,
454 <                              puArr,
455 <                              electronArr,
456 <                              &electronPreSelection,
457 <                              //                              &electronBDTSelection,
458 <                              &electronIDMVASelection,
459 <                              //                              &electronIsoSelection,
460 <                              &electronIsoMVASelection,
461 <                              muonArr,
462 <                              &muonPreSelection,
463 <                              &muonIDPFSelection,
464 <                              //                              &muonIDMVASelection,
465 <                              //                              &passMuonSelection,
466 <                              &muonIsoMVASelection);
451 >
452 >
453 >        // reference
454 >        apply_HZZ4L_reference2_selection(ctrl, info,
455 >                                         vtxArr,
456 >                                         pfArr,
457 > #ifdef HACKED_RHOS
458 >                                         rho,
459 > #else
460 >                                         puDArr,
461 > #endif
462 >                                         electronArr,
463 >                                         &electronReferencePreSelection,
464 >                                         &electronReferenceIDMVASelectionV1,
465 >                                         &electronReferenceIsoSelection,
466 >                                         muonArr,
467 >                                         &muonReferencePreSelection,
468 >                                         &muonIDPFSelection,
469 >                                         &muonReferenceIsoSelection);
470 >
471 >      /*
472 >        // evolved
473 >        apply_HZZ4L_reference2_selection(ctrl, info,
474 >                                         vtx,
475 >                                         pfArr,
476 >                                         //rho,
477 >                                         puDArr,
478 >                                         electronArr,
479 >                                         &electronReferencePreSelection,
480 >                                         //&electronPreSelection,
481 >                                         &electronReferenceIDMVASelection,
482 >                                         &electronIsoMVASelection,
483 >                                         muonArr,
484 >                                         &muonReferencePreSelection,
485 >                                         //&muonPreSelection,
486 >                                         &muonIDPFSelection,
487 >                                         &muonIsoMVASelection);
488 >      */
489 >
490        if( ctrl.debug ) cout << endl;
491 +
492 +
493 +      int Z1type=0, Z2type=0;
494 +      if( ret4l.status.selectionBits.to_ulong() >= PASS_ZCANDIDATE ) {
495 +        if( abs(ret4l.Z1leptons[0].type) == 11  ) Z1type = 11;
496 +        if( abs(ret4l.Z1leptons[0].type) == 13  ) Z1type = 13;
497 +      }  
498 +      if( ret4l.status.selectionBits.to_ulong() >= PASS_ZZCANDIDATE ) {
499 +        if( abs(ret4l.Z2leptons[0].type) == 11  ) Z2type = 11;
500 +        if( abs(ret4l.Z2leptons[0].type) == 13  ) Z2type = 13;
501 +      }  
502 +      
503 + #ifdef SYNC
504 +      cout  << "bits: " << ret4l.status.selectionBits  << "\t"
505 +            << "Z1: " << Z1type << "\t"
506 +            << "Z2: " << Z2type << endl;
507 +      cout << endl;
508 + #endif      
509        
510        if( ret4l.status.pass() ) {
301        
511          fillAngles(ret4l,angles);
512          fillKinematics(ret4l,kinematics);
513          fillEventInfo(info,evtinfo);
514 <        //if(ctrl.mc) fillGenInfo(ginfo,geninfo);
514 >        if( ctrl.mc) {
515 >        // fillGenInfo(ginfo,geninfo);
516 >          setEffiencyWeights(ret4l, weights);
517 >           if(ctrl.debug)
518 >             cout << "w: " << weights.w << "\t"
519 >                  << "won: " << weights.won << "\t"
520 >                  << "woff: " << weights.woff << endl;
521 >        }
522          
523          /*
524          // only for Higgs < 140
# Line 323 | Line 539 | int main(int argc, char** argv)
539          pass++;
540          //      if( pass > 3 ) break;
541  
542 <      }
542 >      } else if( ret4l.status.selectionBits.test(PASS_GOODZ1) ) { // save for fakes ...
543 >        //      if(ctrl.debug) {
544 >          cout << "failingLeptons : " << failingLeptons.size() << endl;
545 >          for( int f=0; f<failingLeptons.size(); f++ ) {
546 >            SimpleLepton  l = failingLeptons[f];
547 >            cout << "f: " << f << "\t"
548 >                 << "type: " << l.type << "\t"
549 >                 << "pT: " << l.vec.Pt()  << "\t"
550 >                 << "eta: " << l.vec.Eta()
551 >                 << endl;
552 >            //    }
553 >        }
554 >        foTree.Fill();
555 >      }
556      }  
557  
558 +  
559 +  foTree.getFile()->cd();
560 +  foTree.getTree()->Write();
561    nt.WriteClose();
562 +
563 +  cout << endl;
564 +  cout << endl;
565 +  for( int i=0; i<cutvec.size(); i++ ) {
566 +    cout << "cut: " << i << "\t"
567 +         << "pass: " << cutvec[i];
568 +
569 +    if( i>PASS_TRIGGER&&i<=PASS_GOODZ1 )
570 +      cout << "\t2e: " << zcutvec[0][i]
571 +           << "\t2m: " << zcutvec[1][i];
572 +
573 +    if( i>PASS_ZCANDIDATE )
574 +      cout << "\t4e: " << zzcutvec[0][i]
575 +           << "\t4m: " << zzcutvec[1][i]
576 +           << "\t2e2m: " << zzcutvec[2][i];
577 +
578 +    cout << "\t" << cutstrs[i] << endl;
579 +
580 +    cout << endl;
581 +  }
582 +
583   }
584  
585 +
586 +
587   //----------------------------------------------------------------------------
588 < //
589 < // Get primary vertices
590 < // Assumes primary vertices are ordered by sum-pT^2 (as should be in CMSSW)
591 < // NOTE: if no PV is found from fitting tracks, the beamspot is used
592 < //
593 < //----------------------------------------------------------------------------
594 < bool setPV(ControlFlags ctrl,
340 <           const mithep::Array<mithep::Vertex> * vtxArr,
341 <           mithep::Vertex & vtx)
342 < //----------------------------------------------------------------------------
343 < {
344 <  const Vertex *bestPV = 0;
345 <  float best_sumpt=-1;
346 <
347 <  // good PV requirements
348 <  const UInt_t   fMinNTracksFit = 0;
349 <  const Double_t fMinNdof       = 4;
350 <  const Double_t fMaxAbsZ       = 24;
351 <  const Double_t fMaxRho        = 2;
588 > void setEffiencyWeights(EventData & evtdat, WeightStruct & weights )
589 > //----------------------------------------------------------------------------
590 > {
591 >  vector<SimpleLepton> lepvec = evtdat.Z1leptons;
592 >  lepvec.insert(lepvec.end(), evtdat.Z2leptons.begin(), evtdat.Z2leptons.end());
593 >  double w_offline=-1, werr_offline=0;
594 >  double w_online=-1, werr_online=0;
595    
596 <  for(int i=0; i<vtxArr->GetEntries(); ++i) {
597 <    const Vertex *pv = (Vertex*)(vtxArr->At(i));
598 <    if( ctrl.debug ) cout << "vertex :: " << i << "\tntrks: " << pv->NTracks() << endl;
599 <    
600 <    // Select best PV for corrected d0; if no PV passing cuts, the first PV in the collection will be used
601 <    //  if(!pv->IsValid()) continue;
602 <    if(pv->NTracksFit()       < fMinNTracksFit)       continue;
603 <    if(pv->Ndof()                 < fMinNdof)         continue;
604 <    if(fabs(pv->Z()) > fMaxAbsZ)                      continue;
605 <    if(pv->Position().Rho()   > fMaxRho)              continue;    
606 <    
607 <    // take the first ...
608 <    bestPV = pv;
609 <    break;
610 <
611 <    // this never reached ...    
612 <    float tmp_sumpt=0;
613 <    for( int t=0; t<pv->NTracks(); t++ )
614 <      tmp_sumpt += pv->Trk(t)->Pt();
615 <    
616 <    if( tmp_sumpt > best_sumpt  ) {
617 <      bestPV = pv;
618 <      best_sumpt = tmp_sumpt;
619 <      if( ctrl.debug) cout << "new PV set, pt : " << best_sumpt << endl;
596 >  vector< pair <double,double> > wlegs; // pair here is eff & err
597 >  vector< pair <float,float> > mvec;  // pair here is eta & pt
598 >
599 >  //      vector< pair <float,float> > evec;  // pair here is eta & pt
600 >  // now deal with medium vs loose
601 >  vector< pair< bool, pair <float,float> > > evec;  // pair here is eta & pt
602 >  
603 >  for( int k=0; k<lepvec.size(); k++ ) {
604 >    if( abs(lepvec[k].type) == 13 ) {
605 >      mvec.push_back( std::pair<float,float> (fabs(lepvec[k].vec.Eta()), lepvec[k].vec.Pt()) );
606 >      wlegs.push_back( muonPerLegOfflineEfficiencyWeight( fabs(lepvec[k].vec.Eta()),
607 >                                                          lepvec[k].vec.Pt() ) );
608 >    } else {
609 >      
610 >      // now deal with medium vs loose
611 >      //              evec.push_back( std::pair<float,float> (fabs(lepvec[k].vec.Eta()), lepvec[k].vec.Pt()) );
612 >      
613 >      std::pair<float,float> tmppair(fabs(lepvec[k].vec.Eta()), lepvec[k].vec.Pt());
614 >      evec.push_back( std::pair<bool, std::pair<float,float> > (lepvec[k].isTight, tmppair) );
615 >      
616 >      //              wlegs.push_back( elePerLegOfflineEfficiencyWeight(  fabs(lepvec[k].vec.Eta()),
617 >      //                                                                 lepvec[k].vec.Pt() ) );
618 >      
619 >      wlegs.push_back( elePerLegOfflineEfficiencyWeight(  fabs(lepvec[k].vec.Eta()),
620 >                                                          lepvec[k].vec.Pt(),
621 >                                                          lepvec[k].isTight ) );
622 >      
623      }
624    }
625    
626 <  if(!bestPV) bestPV = vtxArr->At(0);
627 <  vtx.SetPosition(bestPV->X(),bestPV->Y(),bestPV->Z());
628 <  vtx.SetErrors(bestPV->XErr(),bestPV->YErr(),bestPV->ZErr());
629 <  return true;
626 >  pair<double,double> offpair = getOfflineEfficiencyWeight( wlegs );
627 >  weights.woff    = offpair.first;
628 >  weights.werroff = offpair.second;
629 >  
630 >  pair<double,double> onpair  = getOnlineEfficiencyWeight( mvec, evec );
631 >  weights.won    = onpair.first;
632 >  weights.werron = onpair.second;
633 > }
634 >
635 >
636 > //----------------------------------------------------------------------------
637 > void initRunLumiRangeMap()
638 > //----------------------------------------------------------------------------
639 > {
640 >  /*
641 >  rlrm.AddJSONFile(std::string("./data/Cert_136033-149442_7TeV_Apr21ReReco_Collisions10_JSON.txt"));
642 >  //  rlrm.AddJSONFile(std::string("./data/Cert_160404-173244_7TeV_PromptReco_Collisions11_JSON_v2.txt"));
643 >  rlrm.AddJSONFile(std::string("./data/Cert_160404-178078_7TeV_PromptReco_Collisions11_JSON.txt"));
644 >  rlrm.AddJSONFile(std::string("./data/Cert_160404-163869_7TeV_May10ReReco_Collisions11_JSON_v3.txt"));  
645 >  rlrm.AddJSONFile(std::string("./data/Cert_170249-172619_7TeV_ReReco5Aug_Collisions11_JSON.txt"));  
646 >  // r11b
647 >  rlrm.AddJSONFile(std::string("./data/Cert_160404-180252_7TeV_PromptReco_Collisions11_JSON.txt"));  
648 >  */
649   };
650 +
651 +
652 + //----------------------------------------------------------------------------
653 + void initPUWeights()
654 + //----------------------------------------------------------------------------
655 + {
656 +  TFile * puf = new TFile("data/PileupReweighting.Summer11DYmm_To_Full2011.root");
657 +  hpu = (TH1D*)(puf->Get("puWeights"));
658 + }
659 +
660 + //----------------------------------------------------------------------------
661 + double getPUWeight(unsigned npu)
662 + //----------------------------------------------------------------------------
663 + {
664 +  return hpu->GetBinContent(hpu->FindBin(npu));
665 + }
666 +
667 + //----------------------------------------------------------------------------
668 + void initEvtRhoMap( map<unsigned, float> & evtrhoMap )
669 + //----------------------------------------------------------------------------
670 + {
671 +  unsigned evt;
672 +  float rho;
673 +
674 +  cout << "initialzing EvtRhoMap ";
675 +  //FILE * f = fopen("evtrho.dat", "r");
676 +  //  FILE * f = fopen("allrho.cali.uniq.dat", "r");
677 +  FILE * f = fopen("/data/blue/khahn/CMSSW_4_4_2/src/MitHzz4l/allrhoAA.cali.uniq.dat", "r");
678 +  int lcount=0;
679 +  while( fscanf( f, "%u:%f", &evt, &rho ) ) {
680 +    if( feof(f) ) break;
681 +    evtrhoMap[evt] = rho;
682 +    lcount++;
683 +    if( !(lcount%1000) ) cout << "."; flush(cout);
684 +  }
685 +  cout << " done" << endl;
686 + }
687 +
688 + //----------------------------------------------------------------------------
689 + unsigned makePFnoPUArray(mithep::Array<PFCandidate> * fPFCandidates,
690 +                     vector<bool> &pfNoPileUpflag,
691 +                     const mithep::VertexCol      * vtxArr )
692 + //----------------------------------------------------------------------------
693 + {
694 +  for(UInt_t i = 0; i < fPFCandidates->GetEntries(); i++) {
695 +    const PFCandidate *pf = fPFCandidates->At(i);
696 +    assert(pf);
697 +
698 +    if(pf->PFType() == PFCandidate::eHadron) {
699 +      if(pf->HasTrackerTrk() &&
700 +         vtxArr->At(0)->HasTrack(pf->TrackerTrk()) &&
701 +         vtxArr->At(0)->TrackWeight(pf->TrackerTrk()) > 0) {
702 +
703 +        pfNoPileUpflag.push_back(1);
704 +
705 +      } else {
706 +
707 +        Bool_t vertexFound = kFALSE;
708 +        const Vertex *closestVtx = 0;
709 +        Double_t dzmin = 10000;
710 +        
711 +        // loop over vertices
712 +        for(UInt_t j = 0; j < vtxArr->GetEntries(); j++) {
713 +          const Vertex *vtx = vtxArr->At(j);
714 +          assert(vtx);
715 +          
716 +          if(pf->HasTrackerTrk() &&
717 +             vtx->HasTrack(pf->TrackerTrk()) &&
718 +             vtx->TrackWeight(pf->TrackerTrk()) > 0) {
719 +            vertexFound = kTRUE;
720 +            closestVtx = vtx;
721 +            break;
722 +          }
723 +          Double_t dz = fabs(pf->SourceVertex().Z() - vtx->Z());
724 +          if(dz < dzmin) {
725 +            closestVtx = vtx;
726 +            dzmin = dz;
727 +          }
728 +        }
729 +
730 +        //      if(fCheckClosestZVertex) {
731 +        if(1) {
732 +          // Fallback: if track is not associated with any vertex,
733 +          // associate it with the vertex closest in z
734 +          if(vertexFound || closestVtx != vtxArr->At(0)) {
735 +            //      pfPileUp->Add(pf);
736 +            pfNoPileUpflag.push_back(0);
737 +          } else {
738 +            pfNoPileUpflag.push_back(1);
739 +          }
740 +        } else {
741 +          if(vertexFound && closestVtx != vtxArr->At(0)) {
742 +            //      pfPileUp->Add(pf);
743 +            pfNoPileUpflag.push_back(0);
744 +          } else {
745 +            //      PFCandidate * pfNoPileUp->AddNew(); // Ridiculous but that's how it is
746 +            pfNoPileUpflag.push_back(1);
747 +          }
748 +        }
749 +      } //hadron & trk stuff
750 +    } else { // hadron
751 +      //      PFCandidate * ptr = pfNoPileUp->AddNew();
752 +      pfNoPileUpflag.push_back(1);
753 +    }
754 +  } // Loop over PF candidates
755 +
756 +  return pfNoPileUpflag.size();
757 + }
758 +

Diff Legend

Removed lines
+ Added lines
< Changed lines
> Changed lines