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//
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// System headers
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//
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#include <vector> // STL vector class
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5 |
#include <iostream> // standard I/O
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#include <iomanip> // functions to format standard I/O
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#include <bitset>
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#include <map>
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using namespace std;
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//
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// root headers
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//
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#include <TFile.h>
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#include <TRegexp.h>
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16 |
#include <TTree.h>
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#include <TChain.h>
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#include <TBranch.h>
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#include <TClonesArray.h>
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//
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// TMVA
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//
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#include "TMVA/Reader.h"
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#include "TMVA/Tools.h"
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#include "TMVA/Config.h"
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#include "TMVA/MethodBDT.h"
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#include "FactorizedJetCorrector.h"
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#include "JetCorrectorParameters.h"
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//
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// ntuple format headers
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//
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#include "EventHeader.h"
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#include "Electron.h"
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#include "Muon.h"
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#include "Vertex.h"
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#include "PFMet.h"
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#include "PFJetCol.h"
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#include "PFCandidate.h"
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#include "PFCandidateCol.h"
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#include "PileupInfoCol.h"
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#include "PileupEnergyDensity.h"
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#include "MCParticle.h"
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#include "TriggerMask.h"
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#include "TriggerTable.h"
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#include "TriggerObject.h"
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#include "TriggerObjectRel.h"
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#include "Names.h"
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#include "BaseMod.h"
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#include "TriggerObjectsTable.h"
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#include "JetIDMVA.h"
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//
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// our headers
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//
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#include "ParseArgs.h"
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#include "MuonSelection.h"
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#include "ElectronSelection.h"
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#include "ElectronMomentumCorrection.h"
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#include "JetSelection.h"
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#include "IsolationSelection.h"
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#include "ReferenceSelection.h"
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#include "MuonMomentumCorrection.h"
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#include "TriggerUtils.h"
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#include "PassHLT.h"
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#include "Angles.h"
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#include "KinematicsStruct.h"
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#include "InfoStruct.h"
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#include "GenInfoStruct.h"
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#include "WeightStruct.h"
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#include "AngleTuple.h"
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#include "JetInfoStruct.h"
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#include "FOTuple.h"
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#include "RunLumiRangeMap.h"
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#include "SampleWeight.h"
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#include "EfficiencyWeightsInterface.h"
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#include "SelectionFuncs.h"
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#include "SimpleLepton.h"
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#ifndef CMSSW_BASE
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#define CMSSW_BASE "../"
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#endif
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using namespace mithep;
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//
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// globals
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//----------------------------------------------------------------------------
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TH1D *hpu_2011, *hpu_2012;
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RunLumiRangeMap rlrm;
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vector<SimpleLepton> failingLeptons ; // for fake estimation
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98 |
vector<SimpleLepton> passingLeptons; // for fake estimation
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vector<unsigned> cutvec;
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vector<vector<unsigned> > zcutvec;
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vector<vector<unsigned> > zzcutvec;
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map<unsigned,float> evtrhoMap;
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TrigInfo ti;
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vector<string> cutstrs;
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bool passes_HLT;
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vector<bool> PFnoPUflag;;
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map<TString, map<TString,int>* > counts;
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ElectronMomentumCorrection electron_momentum_correction;
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MuCorr *muCorr;
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110 |
void addDummyZ2Lepotons(EventData &ret4l);
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void setNtupleVals(ControlFlags &ctrl, EventData &ret4l, InfoStruct &evtinfo, Angles &angles, KinematicsStruct &kine,
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JetInfoStruct &ji, WeightStruct &weights, EventHeader *info, Array<PFJet> *jetArr, Array<PFMet> *metArr,
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vector<SimpleLepton> &simpleLeptonJets, FactorizedJetCorrector *fJetCorrector, Array<PileupInfo> *puArr,
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Array<PileupEnergyDensity> *puDArr, JetIDMVA *fJetIDMVA, Array<Vertex> *vtxArr, bitset<1024> &triggerBits,
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TriggerTable *hltTable, Array<TriggerObject> *hltObjArr, TriggerObjectsTable *fTrigObjs, AngleTuple *nt);
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//----------------------------------------------------------------------------
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void initRunLumiRangeMap(ControlFlags &ctrl)
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//----------------------------------------------------------------------------
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{
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120 |
if(ctrl.jsonFile==""){
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121 |
cout << "WARNING: running with empty jsonFile, so setting noJSON to true" << endl;
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ctrl.noJSON = true;
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}
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rlrm.AddJSONFile(string(ctrl.jsonFile));
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}
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//
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// prototypes
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//----------------------------------------------------------------------------
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//
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// MAIN
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//----------------------------------------------------------------------------
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int main(int argc, char** argv)
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//----------------------------------------------------------------------------
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{
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vector<TString> cuts;
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cuts.push_back("start"); // NOTE: is incremented in ReferenceSelection, so if you turn on JSONS be careful
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cuts.push_back("trigger");
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cuts.push_back("sfOsHiPt");
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cuts.push_back("4<mZ2<120");
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cuts.push_back("pt>20,10");
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cuts.push_back("mll>4");
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cuts.push_back("m4l>70");
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cuts.push_back("mZ2>12");
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cuts.push_back("m4l>100");
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for(unsigned icut=0; icut<cuts.size(); icut++)
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counts[cuts[icut]] = new map<TString,int>;
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map<TString,map<TString,int>* >::iterator cit;
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for(cit=counts.begin(); cit!=counts.end(); cit++) {
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map<TString,int> *cts = (*cit).second;
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(*cts)["all"] = int(0);
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(*cts)["4e"] = int(0);
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(*cts)["4m"] = int(0);
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(*cts)["2e2m"] = int(0);
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}
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string cmsswpath(CMSSW_BASE);
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cmsswpath.append("/src");
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bitset<1024> triggerBits;
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vector<vector<string> > inputFiles;
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inputFiles.push_back(vector<string>());
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map<string,unsigned> entrymap; // number of unskimmed entries in each file
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//
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// args
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//--------------------------------------------------------------------------------------------------------------
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ControlFlags ctrl;
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parse_args( argc, argv, ctrl );
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172 |
ctrl.dump();
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cout << "\n\nNOTE: now setting era with arguments... double check this doesnt mess something else up\n\n" << endl;
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assert(ctrl.doFSR);
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175 |
|
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//
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// File I/O
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//--------------------------------------------------------------------------------------------------------------
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179 |
TChain * chain = new TChain("Events");
|
180 |
TChain * hltchain = new TChain("HLT");
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181 |
TChain * runchain = new TChain(Names::gkRunTreeName);
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182 |
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string fname;
|
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unsigned total_unskimmed=0;
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if( !ctrl.inputfiles.empty() ) {
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ifstream f(ctrl.inputfiles.c_str());
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187 |
while (f >> fname) {
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188 |
if( !(strncmp( fname.c_str(), "#", 1 ) ) ) continue; // skip commented lines
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if(fname.find("/store/") != string::npos) fname = "root://eoscms//"+fname;
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cout << "adding inputfile : " << fname.c_str() << endl;
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entrymap[string(fname.c_str())] = unskimmedEntries(fname.c_str());
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192 |
cerr << "unskimmed entries: " << entrymap[string(fname.c_str())] << endl;
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total_unskimmed += entrymap[string(fname.c_str())];
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chain->AddFile(fname.c_str());
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hltchain->AddFile(fname.c_str());
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runchain->AddFile(fname.c_str());
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}
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} else {
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if(ctrl.inputfile.find("/store/") != string::npos) ctrl.inputfile = "root://eoscms//"+ctrl.inputfile;
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cout << "adding inputfile : " << ctrl.inputfile.c_str() << endl;
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unsigned unsk_ents = unskimmedEntries(ctrl.inputfile.c_str());
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entrymap[string(ctrl.inputfile.c_str())] = unsk_ents;
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cerr << "unskimmed entries: " << unsk_ents << endl;
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total_unskimmed += unsk_ents;
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chain->AddFile(ctrl.inputfile.c_str());
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hltchain->AddFile(ctrl.inputfile.c_str());
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runchain->AddFile(ctrl.inputfile.c_str());
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}
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// write the total number of unskimmed events that went into making this output file to a text file
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writeEntries(ctrl,total_unskimmed);
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ctrl.totalMC = total_unskimmed;
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const char * ofname;
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if( strcmp( ctrl.outputfile.c_str(), "") ) {
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ofname = ctrl.outputfile.c_str();
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} else {
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ofname = "tmp.root";
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}
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// table of cross section values
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string xspath = (cmsswpath+string("/MitPhysics/data/xs.dat"));
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cout << "xspath: " << xspath.c_str() << endl;
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SimpleTable xstab(xspath.c_str());
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if(ctrl.mc) {
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224 |
getWeight(xstab,entrymap,chain); // test *now* whether we've got the xs in here, so it fails before it creates the output
|
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}
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227 |
//
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// Setup
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//--------------------------------------------------------------------------------------------------------------
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Angles angles;
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231 |
KinematicsStruct kine;
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InfoStruct evtinfo;
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WeightStruct weights;
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GenInfoStruct geninfo;
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JetInfoStruct ji;
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236 |
vector<SimpleLepton> simpleLeptonJets;
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237 |
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238 |
AngleTuple nt( (const char*)ofname, (const char*)"zznt");
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nt.makeAngleBranch(angles);
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nt.makeKinematicsBranch(kine);
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241 |
nt.makeInfoBranch(evtinfo);
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242 |
nt.makeJetInfoBranch(ji);
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243 |
nt.makeJetAngleBranches("DataStruct/data/jetAngleVars.txt");
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244 |
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245 |
FOTuple *foTree=0;
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246 |
if(ctrl.fakeScheme != "none") {
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247 |
foTree = new FOTuple( nt.getFile(), (const char*)"FOtree");
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248 |
foTree->makeInfoBranch(evtinfo);
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249 |
foTree->makeFailedLeptonBranch(failingLeptons);
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250 |
foTree->makePassedLeptonBranch(passingLeptons);
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}
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252 |
|
253 |
int genSampleType(0);
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254 |
if(ctrl.mc) {
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255 |
nt.makeWeightBranch(weights);
|
256 |
if(ctrl.fillGen) {
|
257 |
genSampleType = getGenSampleType(ofname);
|
258 |
if(genSampleType == -1) {
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259 |
cout << "\ngenSampleType returned as -1, setting fillGen to false" << endl;
|
260 |
ctrl.fillGen = false;
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261 |
} else
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262 |
nt.makeGenInfoBranch(geninfo);
|
263 |
}
|
264 |
initEfficiencyWeights();
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265 |
// initPUWeights();
|
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 |
// Setup tree I/O
|
303 |
//--------------------------------------------------------------------------------------------------------------
|
304 |
TFile *inputFile=0;
|
305 |
TTree *eventTree=0;
|
306 |
string currentFile("");
|
307 |
|
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 |
runchain->SetBranchAddress(Names::gkRunInfoBrn, &runInfo);
|
351 |
|
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 |
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%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 |
runchain->GetEvent(info->RunEntry());
|
383 |
hltchain->GetEntry(runInfo->HltEntry());
|
384 |
hltTable->Clear();
|
385 |
fillTriggerNames(hltTable, hltTableStrings );
|
386 |
// if(ctrl.debug && (lastHltEntry != runInfo->HltEntry())) hltTable->Print();
|
387 |
lastHltEntry = runInfo->HltEntry();
|
388 |
fillTriggerBits( hltTable, trigMask, triggerBits );
|
389 |
setHLTObjectRelations( hltObjArr, hltRelsArr, hltTableStrings, hltLabelStrings, fTrigObjs );
|
390 |
// printTriggerObjs( hltTable, fTrigObjs);
|
391 |
|
392 |
string fname = string(chain->GetFile()->GetEndpointUrl()->GetFile());
|
393 |
if(ctrl.debug) cout << "era is " << ctrl.era << endl;
|
394 |
if( ctrl.era == 0 ) {
|
395 |
setEra( fname, ctrl );
|
396 |
if(ctrl.debug) cout << "era is now " << ctrl.era << endl;
|
397 |
}
|
398 |
|
399 |
// pfNoPU
|
400 |
PFnoPUflag.clear();
|
401 |
int pfnopu_size = makePFnoPUArray( pfArr, PFnoPUflag, vtxArr );
|
402 |
assert(pfnopu_size == pfArr->GetEntries());
|
403 |
|
404 |
// trigger
|
405 |
if( string(chain->GetFile()->GetEndpointUrl()->GetFile()) != currentFile ) {
|
406 |
currentFile = string(chain->GetFile()->GetEndpointUrl()->GetFile());
|
407 |
}
|
408 |
if( ctrl.debug ) cout << "file is : " << currentFile << endl;
|
409 |
passes_HLT = passHLT(ctrl, triggerBits, ti, info->RunNum(), hltTable, fTrigObjs); // NOTE: run value is not used if it's MC
|
410 |
|
411 |
// data/MC
|
412 |
if(ctrl.mc) {
|
413 |
if(ctrl.fillGen) fillGenInfo( mcArr, mcEvtInfo, geninfo, genSampleType, ctrl);
|
414 |
// NOTE: xs weight and npuw are reset in merge.cc
|
415 |
weights.w = getWeight(xstab,entrymap,chain)/ctrl.totalMC;
|
416 |
if(ctrl.debug) cout ;
|
417 |
weights.npu = getNPU(puArr, 0);
|
418 |
weights.npuw = getPUWeight(ctrl.era, fname, weights.npu);
|
419 |
} else {
|
420 |
// JSON
|
421 |
if(!(ctrl.noJSON) ) {
|
422 |
RunLumiRangeMap::RunLumiPairType rl(info->RunNum(), info->LumiSec());
|
423 |
if( !(rlrm.HasRunLumi(rl)) ) {
|
424 |
if( ctrl.debug ) cout << "fails JSON" << endl;
|
425 |
continue;
|
426 |
}
|
427 |
}
|
428 |
}
|
429 |
|
430 |
//
|
431 |
// lepton/kinematic selection ...
|
432 |
//
|
433 |
failingLeptons.clear();
|
434 |
passingLeptons.clear();
|
435 |
EventData ret4l = apply_HZZ4L_reference_selection(ctrl, info,
|
436 |
vtxArr,
|
437 |
pfArr,
|
438 |
puDArr,
|
439 |
electronArr,
|
440 |
&electronReferencePreSelection,
|
441 |
&electronReferenceIDMVASelectionV1, // not used anymore! (Blame the damn regression implementation, not me!)
|
442 |
&electronReferenceIsoSelection,
|
443 |
muonArr,
|
444 |
&muonReferencePreSelection,
|
445 |
&muonIDPFSelection,
|
446 |
&muonReferenceIsoSelection);
|
447 |
|
448 |
if( ctrl.debug ) cout << endl;
|
449 |
|
450 |
if(ctrl.fakeScheme == "none") { // fill angletuple if event passes full selection
|
451 |
if( ret4l.status.pass() ) {
|
452 |
setNtupleVals(ctrl, ret4l, evtinfo, angles, kine, ji, weights, info, jetArr, metArr, simpleLeptonJets, fJetCorrector, puArr, puDArr, fJetIDMVA, vtxArr, triggerBits, hltTable, hltObjArr, fTrigObjs, &nt);
|
453 |
nt.Fill();
|
454 |
} else {
|
455 |
if(ctrl.debug) cout << "failing with code : " << ret4l.status.selectionBits << endl;
|
456 |
}
|
457 |
} else { // fill FOtuple and angletuple if event has a good Z and one or two extra leptons
|
458 |
assert(ctrl.fakeScheme=="ZPlusF" || ctrl.fakeScheme=="ZPlusFF");
|
459 |
if(ret4l.status.selectionBits.test(PASS_GOODZ1) ) {
|
460 |
unsigned nleps = passingLeptons.size() + failingLeptons.size();
|
461 |
if( (nleps>=3 && ctrl.fakeScheme=="ZPlusF" ) || (nleps>=4 && ctrl.fakeScheme=="ZPlusFF" ) ) {
|
462 |
addDummyZ2Lepotons(ret4l);
|
463 |
setNtupleVals(ctrl, ret4l, evtinfo, angles, kine, ji, weights, info, jetArr, metArr, simpleLeptonJets, fJetCorrector, puArr, puDArr, fJetIDMVA, vtxArr, triggerBits, hltTable, hltObjArr, fTrigObjs, &nt);
|
464 |
nt.Fill();
|
465 |
foTree->Fill();
|
466 |
}
|
467 |
} else {
|
468 |
if(ctrl.debug) cout << "failing PASS_GOODZ1" << endl;
|
469 |
}
|
470 |
}
|
471 |
}
|
472 |
|
473 |
if(ctrl.fakeScheme != "none") {
|
474 |
foTree->getFile()->cd();
|
475 |
foTree->getTree()->Write();
|
476 |
}
|
477 |
nt.WriteClose();
|
478 |
|
479 |
for(unsigned icut=0; icut<cuts.size(); icut++) {
|
480 |
map<TString,int> thisCount(*(counts[cuts[icut]]));
|
481 |
cerr << setw(20) << cuts[icut] << "\t" << setw(9) << thisCount["all"] << " ("
|
482 |
<< setw(9) << thisCount["4e"] << setw(9) << thisCount["4m"] << setw(9) << thisCount["2e2m"] << ")" << endl;
|
483 |
}
|
484 |
}
|
485 |
//----------------------------------------------------------------------------------------
|
486 |
void addDummyZ2Lepotons(EventData &ret4l)
|
487 |
// for fake ntuples, we don't know which are the Z2 leptons yet, but need to fill something so we don't seg fault
|
488 |
{
|
489 |
SimpleLepton dum1,dum2;
|
490 |
dum1.vec.SetPtEtaPhiM(1,2,3,4);
|
491 |
dum2.vec.SetPtEtaPhiM(5,6,7,8);
|
492 |
ret4l.Z2leptons.push_back(dum1);
|
493 |
ret4l.Z2leptons.push_back(dum2);
|
494 |
}
|
495 |
//----------------------------------------------------------------------------------------
|
496 |
void setNtupleVals(ControlFlags &ctrl, EventData &ret4l, InfoStruct &evtinfo, Angles &angles, KinematicsStruct &kine,
|
497 |
JetInfoStruct &ji, WeightStruct &weights, EventHeader *info, Array<PFJet> *jetArr, Array<PFMet> *metArr,
|
498 |
vector<SimpleLepton> &simpleLeptonJets, FactorizedJetCorrector *fJetCorrector, Array<PileupInfo> *puArr,
|
499 |
Array<PileupEnergyDensity> *puDArr, JetIDMVA *fJetIDMVA, Array<Vertex> *vtxArr, bitset<1024> &triggerBits,
|
500 |
TriggerTable *hltTable, Array<TriggerObject> *hltObjArr, TriggerObjectsTable *fTrigObjs, AngleTuple *nt)
|
501 |
{
|
502 |
fillKinematics(ret4l,kine);
|
503 |
// fillMassErrors(ret4l,muonArr,electronArr,kine);
|
504 |
TLorentzVector pfmet; pfmet.SetPxPyPzE(metArr->At(0)->Mex(),metArr->At(0)->Mey(),0,0);
|
505 |
fillEventInfo( info, pfmet, evtinfo, ctrl.mc ? getNPU(puArr) : 0, vtxArr->GetEntries());
|
506 |
fillJets(ctrl, jetArr, simpleLeptonJets, fJetCorrector, puDArr, fJetIDMVA, vtxArr, ret4l);
|
507 |
fillJetInfo(simpleLeptonJets, ji, ctrl);
|
508 |
fillJetAngleBranches(ji, ret4l, nt, ctrl);
|
509 |
evtinfo.status = 0;
|
510 |
evtinfo.status = setHltBits(ti, triggerBits);
|
511 |
|
512 |
if(ctrl.fakeScheme == "none") {
|
513 |
fillAngles(ret4l,angles);
|
514 |
|
515 |
if( ctrl.mc) {
|
516 |
setEfficiencyWeights(ctrl, ctrl.era, ret4l, triggerBits, hltTable, hltObjArr, fTrigObjs, weights);
|
517 |
if(ctrl.debug)
|
518 |
cout << "w: " << weights.w << "\t" << "npuw: " << weights.npuw << "\t" << "won: " << weights.won << "\t" << "woff: " << weights.woff << endl;
|
519 |
}
|
520 |
|
521 |
if(ctrl.debug) {
|
522 |
stringstream ss;
|
523 |
ss << "PASS:: " << "\trun: " << evtinfo.run << "\tevt: " << evtinfo.evt << "\tlumi: " << evtinfo.lumi << "\tchannel: "
|
524 |
<< kine.channel << "\tm4l: " << kine.m4l << "\tmZ1: " << kine.mZ1 << "\tmZ2: " << kine.mZ2 << endl;
|
525 |
cerr << ss.str();
|
526 |
cout << ss.str();
|
527 |
}
|
528 |
} else {
|
529 |
// 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
|
530 |
}
|
531 |
}
|