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Comparing UserCode/MitHzz4l/Selection/src/applySelection.cc (file contents):
Revision 1.7 by khahn, Thu Oct 13 14:27:53 2011 UTC vs.
Revision 1.68 by anlevin, Wed Jan 16 16:11:29 2013 UTC

# Line 4 | Line 4
4   #include <vector>                   // STL vector class
5   #include <iostream>                 // standard I/O
6   #include <iomanip>                  // functions to format standard I/O
7 < #include <fstream>                  // functions for file I/O
8 < #include <string>                   // C++ string class
9 < #include <sstream>                  // class for parsing strings
10 < #include <assert.h>
11 < #include <stdlib.h>  
12 < #include <getopt.h>
7 > #include <bitset>  
8 > #include <map>  
9   using namespace std;
10  
11   //
12 < // ROOT headers
12 > // root headers
13   //
14 < #include <TROOT.h>                  // access to gROOT, entry point to ROOT system
15 < #include <TSystem.h>                // interface to OS
16 < #include <TFile.h>                  // file handle class
17 < #include <TNtuple.h>
18 < #include <TTree.h>                  // class to access ntuples
19 < #include <TChain.h>                 //
20 < #include <TBranch.h>                // class to access branches in TTree
21 < #include <TClonesArray.h>           // ROOT array class
22 < #include <TCanvas.h>                // class for drawing
23 < #include <TH1F.h>                   // 1D histograms
24 < #include <TBenchmark.h>             // class to track macro running statistics
25 < #include <TLorentzVector.h>         // 4-vector class
26 < #include <TVector3.h>               // 3D vector class
14 > #include <TFile.h>
15 > #include <TRegexp.h>
16 > #include <TTree.h>                  
17 > #include <TChain.h>                
18 > #include <TBranch.h>                
19 > #include <TClonesArray.h>          
20 >
21 >
22 > //
23 > // TMVA
24 > //
25 > #include "TMVA/Reader.h"
26 > #include "TMVA/Tools.h"
27 > #include "TMVA/Config.h"
28 > #include "TMVA/MethodBDT.h"
29 >
30 > #include "FactorizedJetCorrector.h"
31 > #include "JetCorrectorParameters.h"
32  
33   //
34   // ntuple format headers
35   //
36 < #include "HiggsAnaDefs.hh"
37 < #include "TEventInfo.hh"
38 < #include "TElectron.hh"
39 < #include "TMuon.hh"
40 < #include "TJet.hh"
41 < #include "RunLumiRangeMap.h"
36 > #include "EventHeader.h"
37 > #include "Electron.h"
38 > #include "Muon.h"
39 > #include "Vertex.h"
40 > #include "PFMet.h"
41 > #include "PFJetCol.h"
42 > #include "PFCandidate.h"
43 > #include "PFCandidateCol.h"
44 > #include "PileupInfoCol.h"
45 > #include "PileupEnergyDensity.h"
46 > #include "MCParticle.h"
47 > #include "TriggerMask.h"
48 > #include "TriggerTable.h"
49 > #include "TriggerObject.h"
50 > #include "TriggerObjectRel.h"
51 > #include "Names.h"
52 > #include "BaseMod.h"
53 > #include "TriggerObjectsTable.h"
54 > #include "JetIDMVA.h"
55  
56   //
57 < // utility headers
57 > // our headers
58   //
59   #include "ParseArgs.h"
60 + #include "MuonSelection.h"
61 + #include "ElectronSelection.h"
62 + #include "ElectronMomentumCorrection.h"
63 + #include "JetSelection.h"
64 + #include "IsolationSelection.h"
65 + #include "ReferenceSelection.h"
66 + #include "MuonMomentumCorrection.h"
67 +
68 + #include "TriggerUtils.h"
69 + #include "PassHLT.h"
70 + #include "KinematicsStruct.h"
71 + #include "InfoStruct.h"
72 + #include "GenInfoStruct.h"
73 + #include "WeightStruct.h"
74 + #include "AngleTuple.h"
75 + #include "FOTuple.h"
76 +
77 + #include "RunLumiRangeMap.h"
78   #include "SampleWeight.h"
79 < #include "Selection.h"
80 < #include "HZZCiCElectronSelection.h"
81 < #include "HZZLikelihoodElectronSelection.h"
82 < #include "HZZBDTElectronSelection.h"
83 < #include "SampleWeight.h"
79 > #include "EfficiencyWeightsInterface.h"
80 > #include "SelectionFuncs.h"
81 >
82 > #include "SimpleLepton.h"
83 >
84 > #ifndef CMSSW_BASE
85 > #define CMSSW_BASE "../"
86 > #endif
87 >
88 > using namespace mithep;
89 >
90 > //
91 > // globals
92 > //----------------------------------------------------------------------------
93 > TH1D *hpu_2011, *hpu_2012;
94 > RunLumiRangeMap rlrm;
95 > vector<SimpleLepton> failingLeptons ; // for fake estimation
96 > vector<SimpleLepton> passingLeptons;      // for fake estimation
97 > vector<unsigned> cutvec;
98 > vector<vector<unsigned> > zcutvec;
99 > vector<vector<unsigned> > zzcutvec;
100 > map<unsigned,float>       evtrhoMap;
101 > TrigInfo ti;
102 > vector<string> cutstrs;
103 > bool passes_HLT;
104 > vector<bool>   PFnoPUflag;;
105 > map<TString, map<TString,int>* > counts;
106 > ElectronMomentumCorrection electron_momentum_correction;
107 > MuCorr *muCorr;
108 > void addDummyZ2Lepotons(EventData &ret4l);
109 > void setNtupleVals(ControlFlags &ctrl, EventData &ret4l, InfoStruct &evtinfo, Angles &angles, KinematicsStruct &kine,
110 >                   JetInfoStruct &ji, WeightStruct &weights, EventHeader *info, Array<PFJet> *jetArr, Array<PFMet> *metArr,
111 >                   vector<SimpleLepton> &simpleLeptonJets, FactorizedJetCorrector *fJetCorrector, Array<PileupInfo> *puArr,
112 >                   Array<PileupEnergyDensity> *puDArr, JetIDMVA *fJetIDMVA, Array<Vertex> *vtxArr, bitset<1024> &triggerBits,
113 >                   TriggerTable *hltTable, Array<TriggerObject> *hltObjArr, TriggerObjectsTable *fTrigObjs, AngleTuple *nt);
114 > //----------------------------------------------------------------------------
115 > void initRunLumiRangeMap(ControlFlags &ctrl)
116 > //----------------------------------------------------------------------------
117 > {
118 >  if(ctrl.jsonFile==""){
119 >    cout << "WARNING: running with empty jsonFile, so setting noJSON to true" << endl;
120 >    ctrl.noJSON = true;
121 >  }
122 >  rlrm.AddJSONFile(string(ctrl.jsonFile));  
123 > }
124  
125 < //#define THEIR_EVENTS
125 > //
126 > // prototypes
127 > //----------------------------------------------------------------------------
128  
129 < //=== MAIN =================================================================================================
129 > //
130 > // MAIN
131 > //----------------------------------------------------------------------------
132   int main(int argc, char** argv)
133 + //----------------------------------------------------------------------------
134   {
135 +  vector<TString> cuts;
136 +  cuts.push_back("start"); // NOTE: is incremented in ReferenceSelection, so if you turn on JSONS be careful
137 +  cuts.push_back("trigger");
138 +  cuts.push_back("sfOsHiPt");
139 +  cuts.push_back("4<mZ2<120");
140 +  cuts.push_back("pt>20,10");
141 +  cuts.push_back("mll>4");
142 +  cuts.push_back("m4l>70");
143 +  cuts.push_back("mZ2>12");
144 +  cuts.push_back("m4l>100");
145 +  cuts.push_back("m4l > 100 && >= 1 jets");
146 +  cuts.push_back("m4l > 100 && 2 jets");
147 +  cuts.push_back("m4l > 100 && fisher > 0.4");
148 +
149 +  for(unsigned icut=0; icut<cuts.size(); icut++)
150 +    counts[cuts[icut]] = new map<TString,int>;
151 +
152 +  map<TString,map<TString,int>* >::iterator cit;
153 +  for(cit=counts.begin(); cit!=counts.end(); cit++) {
154 +    map<TString,int> *cts = (*cit).second;
155 +    (*cts)["all"]  = int(0);
156 +    (*cts)["4e"]   = int(0);
157 +    (*cts)["4m"]   = int(0);
158 +    (*cts)["2e2m"] = int(0);
159 +  }
160    
161 +  string cmsswpath(CMSSW_BASE);
162 +  cmsswpath.append("/src");
163 +  bitset<1024> triggerBits;
164    vector<vector<string> > inputFiles;
165    inputFiles.push_back(vector<string>());
166 +  map<string,unsigned> entrymap; // number of unskimmed entries in each file
167  
168    //
169    // args
170    //--------------------------------------------------------------------------------------------------------------
171    ControlFlags ctrl;
172    parse_args( argc, argv, ctrl );
67  if( ctrl.inputfile.empty() ||
68      ctrl.inputfile.empty() ) {
69    cerr << "usage: applySelection.exe <flags> " << endl;
70    cerr << "\tmandoatory flags : " << endl;
71    cerr << "\t--inputfile |  file containing a list of ntuples to run over" << endl;
72    cerr << "\t--outputfile | file to store  selected evet" << endl;
73    return 1;
74  }
173    ctrl.dump();
174 <
175 <  map<string,double> entrymap; // number of unskimmed entries in each file
174 >  cout << "\n\nNOTE: now setting era with arguments... double check this doesnt mess something else up\n\n" << endl;
175 >  assert(ctrl.doFSR);
176  
177    //
178    // File I/O
179    //--------------------------------------------------------------------------------------------------------------
180    TChain * chain = new TChain("Events");
181 <  ifstream f(ctrl.inputfile.c_str());
181 >  TChain * hltchain = new TChain("HLT");
182 >  TChain * runchain = new TChain(Names::gkRunTreeName);
183 >
184    string fname;
185 <  while (f >> fname) {
186 <    if( !(strncmp( fname.c_str(), "#", 1 ) ) ) continue; // skip commented lines
187 <    cout << "adding inputfile : " << fname.c_str() << endl;
188 <    entrymap[string(fname.c_str())] = unskimmedEntries(fname.c_str());
189 <    chain->AddFile(fname.c_str());
185 >  unsigned total_unskimmed=0;
186 >  if( !ctrl.inputfiles.empty() ) {
187 >    ifstream f(ctrl.inputfiles.c_str());
188 >    while (f >> fname) {
189 >      if( !(strncmp( fname.c_str(), "#", 1 ) ) ) continue; // skip commented lines
190 >      if(fname.find("/store/") != string::npos) fname = "root://eoscms//"+fname;
191 >      cout << "adding inputfile : " << fname.c_str() << endl;
192 >      entrymap[string(fname.c_str())] = unskimmedEntries(fname.c_str());
193 >      cerr << "unskimmed entries: " << entrymap[string(fname.c_str())] << endl;
194 >      total_unskimmed += entrymap[string(fname.c_str())];
195 >      chain->AddFile(fname.c_str());
196 >      hltchain->AddFile(fname.c_str());
197 >      runchain->AddFile(fname.c_str());
198 >    }
199 >  } else {
200 >    if(ctrl.inputfile.find("/store/") != string::npos) ctrl.inputfile = "root://eoscms//"+ctrl.inputfile;
201 >    cout << "adding inputfile : " << ctrl.inputfile.c_str() << endl;
202 >    unsigned unsk_ents = unskimmedEntries(ctrl.inputfile.c_str());
203 >    entrymap[string(ctrl.inputfile.c_str())] = unsk_ents;
204 >    cerr << "unskimmed entries: " << unsk_ents << endl;
205 >    total_unskimmed += unsk_ents;
206 >    chain->AddFile(ctrl.inputfile.c_str());
207 >    hltchain->AddFile(ctrl.inputfile.c_str());
208 >    runchain->AddFile(ctrl.inputfile.c_str());
209    }
210 +  // write the total number of unskimmed events that went into making this output file to a text file
211 +  writeEntries(ctrl,total_unskimmed);
212 +  ctrl.totalMC = total_unskimmed;
213  
214 +  const char * ofname;
215 +  if( strcmp( ctrl.outputfile.c_str(), "") ) {
216 +    ofname = ctrl.outputfile.c_str();
217 +  } else {
218 +    ofname = "tmp.root";
219 +  }
220    // table of cross section values  
221 <  SimpleTable xstab("./data/xs.dat");
221 >  string xspath = (cmsswpath+string("/MitPhysics/data/xs.dat"));
222 >  cout << "xspath: " << xspath.c_str() << endl;
223 >  SimpleTable xstab(xspath.c_str());
224 >  if(ctrl.mc) {
225 >    if(ctrl.use_xs_weights) getWeight(xstab,entrymap,chain); // test *now* whether we've got the xs in here, so it fails before it creates the output
226 >  }
227  
228    //
229    // Setup
230    //--------------------------------------------------------------------------------------------------------------
231 <  TH1F * h_evt = new TH1F("hevt", "hevt", 2, 0, 2 );
232 <  TH1F * h_evtfail = new TH1F("hevtfail", "hevtfail", 1024, 0, 1024 );
233 <  //  TNtuple * passtuple = new TNtuple( "passtuple", "passtuple", "run:evt:lumi:channel:mZ1:mZ2:m4l:pt4l:w" );
234 <  TTree * passtuple = new TTree("passtuple", "passtuple" );
235 <  unsigned run, evt, lumi, channel;
236 <  float mZ1, mZ2, m4l, pt4l;
237 <  double w;
238 <  passtuple->Branch("run", &run);
239 <  passtuple->Branch("evt", &evt);
240 <  passtuple->Branch("lumi", &lumi);
241 <  passtuple->Branch("mZ1", &mZ1);
242 <  passtuple->Branch("mZ2", &mZ2);
243 <  passtuple->Branch("m4l", &m4l);
244 <  passtuple->Branch("pt4l", &pt4l);
245 <  passtuple->Branch("w", &w);
246 <  initCiCSelection();
247 <  if(ctrl.eleSele=="lik") initLikSelection();
248 <  if(ctrl.eleSele=="bdt") initBDTSelection();
249 <  initRunLumiRangeMap();
231 >  Angles angles;
232 >  KinematicsStruct kine;
233 >  InfoStruct evtinfo;
234 >  WeightStruct weights;
235 >  GenInfoStruct geninfo;
236 >  JetInfoStruct ji;
237 >  vector<SimpleLepton> simpleLeptonJets;
238 >
239 >  AngleTuple nt( (const char*)ofname, (const char*)"zznt");
240 >  nt.makeAngleBranch(angles);
241 >  nt.makeKinematicsBranch(kine);
242 >  nt.makeInfoBranch(evtinfo);
243 >  nt.makeJetInfoBranch(ji);
244 >  //nt.makeJetAngleBranches("DataStruct/data/jetAngleVars.txt");
245 >
246 >  FOTuple *foTree=0;
247 >  if(ctrl.fakeScheme != "none") {
248 >    foTree = new FOTuple( nt.getFile(), (const char*)"FOtree");
249 >    foTree->makeInfoBranch(evtinfo);
250 >    foTree->makeFailedLeptonBranch(failingLeptons);
251 >    foTree->makePassedLeptonBranch(passingLeptons);
252 >  }
253 >
254 >  int genSampleType(0);
255 >  if(ctrl.mc) {
256 >    nt.makeWeightBranch(weights);
257 >    if(ctrl.fillGen) {
258 >      genSampleType = getGenSampleType(ofname);
259 >      if(genSampleType == -1) {
260 >        cout << "\ngenSampleType returned as -1, setting fillGen to false" << endl;
261 >        ctrl.fillGen = false;
262 >      } else
263 >        nt.makeGenInfoBranch(geninfo);
264 >    }
265 >    if(ctrl.use_eff_weights) initEfficiencyWeights();
266 >  } else {
267 >    if(!(ctrl.noJSON) )
268 >      initRunLumiRangeMap(ctrl);
269 >  }
270 >
271 >  initElectronIDMVAV1();
272 >  initTrigger();
273 >  initAnalysisTriggers(ti);
274 >  ti.dump();
275 >
276 >  if(ctrl.do_escale) {
277 >    string regPath("EGamma/EGammaAnalysisTools/data/eleEnergyRegWeights_V1.root");
278 >    // if(TString(getenv("HOSTNAME")).Contains(TRegexp("t3[bd][te][cs][hk]")))
279 >      regPath = cmsswpath + "/" + regPath;
280 >    electron_momentum_correction.initialize_regression(regPath);
281 >    if(ctrl.mc) {
282 >      if(ctrl.era == 2011) ctrl.smearing_scaling_dataset = "Fall11";
283 >      else                 ctrl.smearing_scaling_dataset = "Summer12_DR53X_HCP2012";
284 >    } else {
285 >      if(ctrl.era == 2011) ctrl.smearing_scaling_dataset = "Jan16ReReco";
286 >      else                 ctrl.smearing_scaling_dataset = "2012Jul13ReReco";
287 >    }
288 >  }
289 >  if(ctrl.correct_muon_momentum) {
290 >    muCorr = new MuCorr;
291 >    muCorr->corr2011 = new rochcor;
292 >    muCorr->corr2012 = new rochcor2012;
293 >  }
294 >
295 >  vector<TString> fJetCorrParsv;
296 >  vector<JetCorrectorParameters> correctionParameters;
297 >  FactorizedJetCorrector *fJetCorrector;
298 >  JetIDMVA *fJetIDMVA;
299 >  initJets(ctrl, cmsswpath, fJetCorrParsv, correctionParameters, fJetCorrector, fJetIDMVA);
300  
301    //
302 <  // Loop
302 >  // Setup tree I/O
303    //--------------------------------------------------------------------------------------------------------------
121  
122  //
123  // Access samples and fill histograms
304    TFile *inputFile=0;
305    TTree *eventTree=0;  
306 <  
127 <  // Data structures to store info from TTrees
128 <  mithep::TEventInfo *info    = new mithep::TEventInfo();
129 <  TClonesArray *electronArr   = new TClonesArray("mithep::TElectron");
130 <  TClonesArray *muonArr       = new TClonesArray("mithep::TMuon");
131 <  
306 >  string currentFile("");
307  
308 <  TBranch *infoBr;
309 <  TBranch *electronBr;
310 <  TBranch *muonBr;
308 >  UInt_t fNMaxTriggers = TRIGGER_BIG_NUMBER;
309 >  EventHeader                   *info                    = new EventHeader();
310 >  Array<PFMet>                  *metArr                  = new Array<PFMet>();
311 >  Array<Electron>               *electronArr             = new Array<Electron>();
312 >  Array<Muon>                   *muonArr                 = new Array<Muon>();
313 >  Array<Vertex>                 *vtxArr                  = new Array<Vertex>();
314 >  Array<PFCandidate>            *pfArr                   = new Array<PFCandidate>();
315 >  Array<PFJet>                  *jetArr                  = new Array<PFJet>();
316 >  Array<PileupInfo>             *puArr                   = new Array<PileupInfo>();
317 >  Array<PileupEnergyDensity>    *puDArr                  = new Array<PileupEnergyDensity>();
318 >  Array<Track>                  *trkArr                  = new Array<Track>();
319 >  Array<MCParticle>             *mcArr                   = new Array<MCParticle>();
320 >  MCEventInfo                   *mcEvtInfo               = new MCEventInfo();
321 >  TriggerMask                   *trigMask                = new TriggerMask();
322 >  TriggerTable                  *hltTable                = new TriggerTable(fNMaxTriggers);
323 >  vector<string>                *hltTableStrings         = new vector<string>();
324 >  vector<string>                *hltLabelStrings         = new vector<string>();
325 >  Array<TriggerObject>          *hltObjArr               = new Array<TriggerObject>();
326 >  Array<TriggerObjectRel>       *hltRelsArr              = new Array<TriggerObjectRel>();
327 >  TriggerObjectsTable           *fTrigObjs               = new TriggerObjectsTable(hltTable,fNMaxTriggers);
328 >  RunInfo                       *runInfo                 = new RunInfo();
329 >  
330 >  chain->SetBranchAddress(Names::gkEvtHeaderBrn,                &info);
331 >  chain->SetBranchAddress("PFMet",                              &metArr);
332 >  chain->SetBranchAddress(Names::gkElectronBrn,                 &electronArr);
333 >  chain->SetBranchAddress(Names::gkMuonBrn,                     &muonArr);
334 >  chain->SetBranchAddress(Names::gkPVBrn,                       &vtxArr);
335 >  chain->SetBranchAddress(Names::gkPFCandidatesBrn,             &pfArr);
336 >  chain->SetBranchAddress(Names::gkPFJetBrn,                    &jetArr);
337 >  if( ctrl.mc ) {
338 >    chain->SetBranchAddress(Names::gkPileupInfoBrn,             &puArr);
339 >    chain->SetBranchAddress(Names::gkMCPartBrn,                 &mcArr);
340 >    chain->SetBranchAddress(Names::gkMCEvtInfoBrn,              &mcEvtInfo);
341 >  }
342 >  chain->SetBranchAddress(Names::gkPileupEnergyDensityBrn,      &puDArr);
343 >  chain->SetBranchAddress(Names::gkTrackBrn,                    &trkArr);
344 >  chain->SetBranchAddress(Names::gkHltBitBrn,                   &trigMask);
345 >  chain->SetBranchAddress(Names::gkHltObjBrn,                   &hltObjArr);
346 >  chain->SetBranchAddress("HLTObjectsRelation",                 &hltRelsArr);
347 >  hltchain->SetBranchAddress(Names::gkHltTableBrn,              &hltTableStrings);
348 >  hltchain->SetBranchAddress(Names::gkHltLabelBrn,              &hltLabelStrings);
349  
350 < //   chain->SetBranchStatus("*",0); //disable all branches
138 < //   chain->SetBranchStatus("Info", 1);
139 < //   chain->SetBranchStatus("Muon", 1);
140 < //   chain->SetBranchStatus("Electron", 1);
350 >  runchain->SetBranchAddress(Names::gkRunInfoBrn, &runInfo);
351  
352 <  chain->SetBranchAddress("Info",       &info);
143 <  chain->SetBranchAddress("Electron", &electronArr);
144 <  chain->SetBranchAddress("Muon", &muonArr);
352 >  Vertex              vtx;          // best primary vertex in the event
353  
354 +  hltchain->GetEntry(0);
355  
356 +  int imax = (ctrl.n_events_to_process < 0) ? chain->GetEntries() : ctrl.n_events_to_process;
357 +  cerr << "processing: " << imax << " ( / " << chain->GetEntries() << " )" << endl;
358  
359 <  cout << "nEntries: " << chain->GetEntries() << endl;
360 <  for(UInt_t ientry=0; ientry<chain->GetEntries(); ientry++) {
359 >  if(ctrl.mc && ctrl.debugOffMc) // necessary for batch mode -- we need debug output for, data but size is too large to store MC output
360 >    ctrl.debug = false;
361  
362 +  int lastHltEntry=-2;
363 +  for(UInt_t ientry=0; ientry<imax; ientry++) {
364      chain->GetEntry(ientry);
365 <    if(!(ientry%100000)) cout << "entry: " << ientry << endl;
153 <
154 <    // get event weight for this file                                                    
155 <    double eventweight=1;
156 <    if(ctrl.mc) eventweight = getWeight(xstab,entrymap,chain);
157 <
158 < #ifdef THEIR_EVENTS
159 <    if( !( info->evtNum == 504867308  ||
160 <           info->evtNum == 368148849  ||
161 <           info->evtNum == 129514273  ||
162 <           info->evtNum == 286336207  ||
163 <           info->evtNum == 344708580  ||
164 <           info->evtNum == 30998576   ||
165 <           info->evtNum == 155679852  ||
166 <           info->evtNum == 394010457  ||
167 <           info->evtNum == 917379387  ||
168 <           info->evtNum == 78213037   ||
169 <           info->evtNum == 337493970  ||
170 <           info->evtNum == 1491724484 ||
171 <           info->evtNum == 480301165  ||
172 <           info->evtNum == 1038911933 ||
173 <           info->evtNum == 876658967  ||
174 <           info->evtNum == 966824024  ||
175 <           info->evtNum == 141954801  ||
176 <           info->evtNum == 160966858  ||
177 <           info->evtNum == 191231387  ||
178 <           info->evtNum == 66033190   ||
179 <           info->evtNum == 10347106   ||
180 <           info->evtNum == 107360878  ) ) continue;
181 < #endif
182 <
183 <    unsigned evtfail = fails_HZZ4L_selection(ctrl, info, electronArr, muonArr, eventweight, passtuple);    
184 <    h_evtfail->Fill( evtfail, eventweight );
185 <    if( ctrl.debug ) cout << endl << endl;  
186 <          
187 <  } //end loop over data    
188 <
189 <
190 <
191 <  delete info;
192 <  delete electronArr;
193 <  delete muonArr;
365 >    if(!(ientry%1000)) cerr << "entry: " << ientry << " ( / " << imax << " )" << endl;
366  
367 +    increment(counts,"start");
368 +    if( ctrl.debug ) {
369 +      cout << "-----------------------------------------------------------------" << endl;
370 +      cout << "-----------------------------------------------------------------" << endl;
371 +      cout << "Run: " << info->RunNum()
372 +           << "\tEvt: " << info->EvtNum()
373 +           << "\tLumi: " << info->LumiSec()
374 +           << endl;
375 +      cerr << "Run: " << info->RunNum()
376 +           << "\tEvt: " << info->EvtNum()
377 +           << "\tLumi: " << info->LumiSec()
378 +           << endl;
379 +      cout << "-----------------------------------------------------------------" << endl;
380 +    }
381 +
382 +    //if( 24206  != info->EvtNum()) continue;
383 +
384 +    runchain->GetEvent(info->RunEntry());
385 +    hltchain->GetEntry(runInfo->HltEntry());
386 +    hltTable->Clear();
387 +    fillTriggerNames(hltTable, hltTableStrings );
388 +    // if(ctrl.debug && (lastHltEntry != runInfo->HltEntry())) hltTable->Print();
389 +    lastHltEntry = runInfo->HltEntry();
390 +    fillTriggerBits( hltTable, trigMask, triggerBits );
391 +    setHLTObjectRelations( hltObjArr, hltRelsArr, hltTableStrings, hltLabelStrings, fTrigObjs );
392 +    // printTriggerObjs( hltTable, fTrigObjs);
393 +      
394 +    string fname = string(chain->GetFile()->GetEndpointUrl()->GetFile());
395 +    if(ctrl.debug) cout << "era is " << ctrl.era << endl;
396 +    if( ctrl.era == 0  ) {
397 +      setEra( fname, ctrl );
398 +      if(ctrl.debug) cout << "era is now " << ctrl.era << endl;
399 +    }
400 +
401 +    // pfNoPU
402 +    PFnoPUflag.clear();
403 +    int pfnopu_size = makePFnoPUArray( pfArr, PFnoPUflag, vtxArr );
404 +    assert(pfnopu_size == pfArr->GetEntries());
405 +
406 +    // trigger
407 +    if( string(chain->GetFile()->GetEndpointUrl()->GetFile()) != currentFile ) {
408 +      currentFile = string(chain->GetFile()->GetEndpointUrl()->GetFile());
409 +    }
410 +    if( ctrl.debug ) cout << "file is : " << currentFile  << endl;
411 +    passes_HLT = passHLT(ctrl, triggerBits, ti, info->RunNum(), hltTable, fTrigObjs); // NOTE: run value is not used if it's MC
412 +
413 +    // data/MC
414 +    if(ctrl.mc) {
415 +      if(ctrl.fillGen) fillGenInfo( mcArr, mcEvtInfo, geninfo, genSampleType, ctrl);
416 +      // NOTE: xs weight and npuw are reset in merge.cc
417 +      if(ctrl.use_xs_weights)
418 +        weights.w = getWeight(xstab,entrymap,chain)/ctrl.totalMC;
419 +      else
420 +        weights.w = 1;
421 +      weights.npu = getNPU(puArr, 0);
422 +      weights.npuw = getPUWeight(ctrl.era, fname, weights.npu);
423 +    } else {
424 +      // JSON
425 +      if(!(ctrl.noJSON) ) {
426 +        RunLumiRangeMap::RunLumiPairType rl(info->RunNum(), info->LumiSec());      
427 +        if( !(rlrm.HasRunLumi(rl)) )  {
428 +          if( ctrl.debug ) cout << "fails JSON" << endl;
429 +          continue;
430 +        }
431 +      }
432 +    }
433 +
434 +    //
435 +    // lepton/kinematic selection ...
436 +    //
437 +    failingLeptons.clear();
438 +    passingLeptons.clear();
439 +    EventData ret4l = apply_HZZ4L_reference_selection(ctrl, info,
440 +                                                      vtxArr,
441 +                                                      pfArr,
442 +                                                      puDArr,
443 +                                                      electronArr,
444 +                                                      &electronReferencePreSelection,
445 +                                                      &electronReferenceIDMVASelectionV1, // not used anymore! (Blame the damn regression implementation, not me!)
446 +                                                      &electronReferenceIsoSelection,
447 +                                                      muonArr,
448 +                                                      &muonReferencePreSelection,
449 +                                                      &muonIDPFSelection,
450 +                                                      &muonReferenceIsoSelection);
451 +      
452 +    if( ctrl.debug ) cout << endl;
453 +    //fillJets(ctrl, jetArr, simpleLeptonJets, fJetCorrector, puDArr, fJetIDMVA, vtxArr, ret4l);
454 +
455 +    if(ctrl.fakeScheme == "none") { // fill angletuple if event passes full selection
456 +      if( ret4l.status.pass() ) {
457 +        setNtupleVals(ctrl, ret4l, evtinfo, angles, kine, ji, weights, info, jetArr, metArr, simpleLeptonJets, fJetCorrector, puArr, puDArr, fJetIDMVA, vtxArr, triggerBits, hltTable, hltObjArr, fTrigObjs, &nt);
458 +        nt.Fill();
459 +    
460 +        int theZ1type = kine.l1type;
461 +        int theZ2type = kine.l3type;
462 +
463 +        if(ctrl.debug) cout << "simpleLeptonJets.size() = " << simpleLeptonJets.size() << endl;
464 +
465 +        if(kine.m4l > 100){
466 +          if(simpleLeptonJets.size() >= 1) {
467 +            increment(counts,"m4l > 100 && >= 1 jets",theZ1type,theZ2type);
468 +            if(simpleLeptonJets.size() == 2) {
469 +              increment(counts,"m4l > 100 && 2 jets",theZ1type,theZ2type);
470 +              SimpleLepton j1 = simpleLeptonJets[0];
471 +              SimpleLepton j2 = simpleLeptonJets[1];
472 +              double deta = abs(j1.vec.Eta()-j2.vec.Eta());
473 +              double mjj = (j1.vec + j2.vec).M();
474 +              double fisher = 0.09407 * deta  +0.00041581*mjj;
475 +              if(fisher > 0.4) increment(counts, "m4l > 100 && fisher > 0.4",theZ1type,theZ2type);
476 +            }
477 +          }
478 +        }
479 +        
480 +
481 +      } else {
482 +        if(ctrl.debug) cout << "failing with code : " << ret4l.status.selectionBits << endl;
483 +      }
484 +    } else { // fill FOtuple and angletuple if event has a good Z and one or two extra leptons
485 +      assert(ctrl.fakeScheme=="ZPlusF" || ctrl.fakeScheme=="ZPlusFF");
486 +      if(ret4l.status.selectionBits.test(PASS_GOODZ1) ) {
487 +        unsigned nleps = passingLeptons.size() + failingLeptons.size();
488 +        if( (nleps>=3 && ctrl.fakeScheme=="ZPlusF" ) || (nleps>=4 && ctrl.fakeScheme=="ZPlusFF" ) ) {
489 +          addDummyZ2Lepotons(ret4l);
490 +          setNtupleVals(ctrl, ret4l, evtinfo, angles, kine, ji, weights, info, jetArr, metArr, simpleLeptonJets, fJetCorrector, puArr, puDArr, fJetIDMVA, vtxArr, triggerBits, hltTable, hltObjArr, fTrigObjs, &nt);
491 +          nt.Fill();
492 +          foTree->Fill();
493 +        }
494 +      } else {
495 +        if(ctrl.debug) cout << "failing PASS_GOODZ1" << endl;
496 +      }
497 +    }
498 +  }
499  
500 +  if(ctrl.fakeScheme != "none") {
501 +    foTree->getFile()->cd();
502 +    foTree->getTree()->Write();
503 +  }
504 +  nt.WriteClose();
505  
506 <  //--------------------------------------------------------------------------------------------------------------
507 <  // Save Histograms;
508 <  //==============================================================================================================
509 <  const char * ofname;
510 <  if( strcmp( ctrl.outputfile.c_str(), "") ) {
511 <    ofname = ctrl.outputfile.c_str();
506 >  for(unsigned icut=0; icut<cuts.size(); icut++) {
507 >    map<TString,int> thisCount(*(counts[cuts[icut]]));
508 >    cerr << setw(25) << cuts[icut] << "\t" << setw(9) << thisCount["all"] << "  ("
509 >         << setw(9) << thisCount["4e"] << setw(9) << thisCount["4m"] << setw(9) << thisCount["2e2m"] << ")" << endl;
510 >  }
511 > }
512 > //----------------------------------------------------------------------------------------
513 > void addDummyZ2Lepotons(EventData &ret4l)
514 > // for fake ntuples, we don't know which are the Z2 leptons yet, but need to fill something so we don't seg fault
515 > {
516 >  SimpleLepton dum1,dum2;
517 >  dum1.vec.SetPtEtaPhiM(1,2,3,4);
518 >  dum2.vec.SetPtEtaPhiM(5,6,7,8);
519 >  ret4l.Z2leptons.push_back(dum1);
520 >  ret4l.Z2leptons.push_back(dum2);
521 > }
522 > //----------------------------------------------------------------------------------------
523 > void setNtupleVals(ControlFlags &ctrl, EventData &ret4l, InfoStruct &evtinfo, Angles &angles, KinematicsStruct &kine,
524 >                   JetInfoStruct &ji, WeightStruct &weights, EventHeader *info, Array<PFJet> *jetArr, Array<PFMet> *metArr,
525 >                   vector<SimpleLepton> &simpleLeptonJets, FactorizedJetCorrector *fJetCorrector, Array<PileupInfo> *puArr,
526 >                   Array<PileupEnergyDensity> *puDArr, JetIDMVA *fJetIDMVA, Array<Vertex> *vtxArr, bitset<1024> &triggerBits,
527 >                   TriggerTable *hltTable, Array<TriggerObject> *hltObjArr, TriggerObjectsTable *fTrigObjs, AngleTuple *nt)
528 > {
529 >  fillKinematics(ret4l,kine);
530 >  // fillMassErrors(ret4l,muonArr,electronArr,kine);
531 >  TLorentzVector pfmet; pfmet.SetPxPyPzE(metArr->At(0)->Mex(),metArr->At(0)->Mey(),0,0);
532 >  fillEventInfo( info, pfmet, evtinfo, ctrl.mc ? getNPU(puArr) : 0, vtxArr->GetEntries());
533 >  fillJets(ctrl, jetArr, simpleLeptonJets, fJetCorrector, puDArr, fJetIDMVA, vtxArr, ret4l);
534 >  fillJetInfo(simpleLeptonJets, ji, ctrl);
535 >  //fillJetAngleBranches(ji, ret4l, nt, ctrl);
536 >  evtinfo.status = 0;
537 >  evtinfo.status = setHltBits(ti, triggerBits);
538 >
539 >  if(ctrl.fakeScheme == "none") {
540 >    fillAngles(ret4l,angles);
541 >
542 >    if( ctrl.mc) {
543 >      if(ctrl.use_eff_weights) setEfficiencyWeights(ctrl, ctrl.era, ret4l, triggerBits, hltTable, hltObjArr, fTrigObjs, weights);
544 >      if(ctrl.debug)
545 >        cout << "w: " << weights.w << "\t" << "npuw: " << weights.npuw << "\t" << "won: " << weights.won << "\t" << "woff: " << weights.woff << endl;
546 >    }
547 >
548 >    if(ctrl.debug) {
549 >      stringstream ss;
550 >      ss << "PASS:: " << "\trun: " << evtinfo.run << "\tevt: " << evtinfo.evt << "\tlumi: " << evtinfo.lumi << "\tchannel: "
551 >         << kine.channel << "\tm4l: " << kine.m4l << "\tmZ1: " << kine.mZ1 << "\tmZ2: " << kine.mZ2 << endl;
552 >      cerr << ss.str();
553 >      cout << ss.str();
554 >    }
555    } else {
556 <    ofname = "tmp.root";
556 >    // fillAngles(ret4l,angles); // at this point we don't know which four leptons will constitute the ZZ system, so doesn't make sense to fill the angles
557    }
558 <
207 <  TFile *file = new TFile(ofname, "RECREATE");
208 <  h_evt->Write();
209 <  h_evtfail->Write();
210 <  passtuple->Write();
211 <  file->Close();
212 <  delete file;
213 <
214 <  // map<TString,TMVA::Reader*>::iterator it;
215 <  // for(it=readers.begin(); it!=readers.end(); it++) delete (*it).second;
216 <
217 <  cerr << "done!" << endl;
218 < }
219 <
220 <
221 <
558 > }

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