[2] | 1 | /*
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| 2 | ---- Delphes ----
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| 3 | A Fast Simulator for general purpose LHC detector
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| 4 | S. Ovyn ~~~~ severine.ovyn@uclouvain.be
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| 5 |
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| 6 | Center for Particle Physics and Phenomenology (CP3)
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| 7 | Universite Catholique de Louvain (UCL)
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| 8 | Louvain-la-Neuve, Belgium
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| 9 | */
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| 10 |
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| 11 | /// \file Delphes.cpp
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| 12 | /// \brief executable for the Delphes
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| 13 |
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| 14 | #include "TChain.h"
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| 15 | #include "TApplication.h"
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| 16 |
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| 17 | #include "Utilities/ExRootAnalysis/interface/ExRootTreeReader.h"
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| 18 | #include "Utilities/ExRootAnalysis/interface/ExRootTreeWriter.h"
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| 19 | #include "Utilities/ExRootAnalysis/interface/ExRootTreeBranch.h"
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| 20 |
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| 21 | #include "interface/DataConverter.h"
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| 22 | #include "interface/HEPEVTConverter.h"
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| 23 | #include "interface/LHEFConverter.h"
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| 24 | #include "interface/STDHEPConverter.h"
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| 25 |
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| 26 | #include "interface/SmearUtil.h"
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[55] | 27 | #include "interface/BFieldProp.h"
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| 28 | #include "interface/TriggerUtil.h"
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| 29 | #include "interface/VeryForward.h"
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| 30 | #include "interface/JetUtils.h"
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[94] | 31 | #include "interface/FrogUtil.h"
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[2] | 32 |
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[55] | 33 | #include <vector>
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| 34 | #include <iostream>
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[11] | 35 |
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[2] | 36 | using namespace std;
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| 37 |
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| 38 | //------------------------------------------------------------------------------
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| 39 | void todo(string filename) {
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| 40 | ifstream infile(filename.c_str());
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| 41 | cout << "** TODO list ..." << endl;
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| 42 | while(infile.good()) {
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[94] | 43 | string temp;
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| 44 | getline(infile,temp);
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| 45 | cout << "*" << temp << endl;
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[2] | 46 | }
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| 47 | cout << "** done...\n";
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| 48 | }
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| 49 |
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| 50 | //------------------------------------------------------------------------------
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| 51 |
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| 52 | int main(int argc, char *argv[])
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| 53 | {
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| 54 | int appargc = 2;
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[55] | 55 | char *appName = "Delphes";
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[2] | 56 | char *appargv[] = {appName, "-b"};
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| 57 | TApplication app(appName, &appargc, appargv);
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[94] | 58 |
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[71] | 59 | if(argc != 4 && argc != 3 && argc != 5) {
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[94] | 60 | cout << " Usage: " << argv[0] << " input_file output_file [detector_card] [trigger_card] " << endl;
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| 61 | cout << " input_list - list of files in Ntpl, StdHep of LHEF format," << endl;
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| 62 | cout << " output_file - output file." << endl;
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| 63 | cout << " detector_card - Datacard containing resolution variables for the detector simulation (optional) "<<endl;
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| 64 | cout << " trigger_card - Datacard containing the trigger algorithms (optional) "<<endl;
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| 65 | exit(1);
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[2] | 66 | }
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[94] | 67 |
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[2] | 68 | srand (time (NULL)); /* Initialisation du générateur */
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| 69 |
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| 70 | //read the input TROOT file
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| 71 | string inputFileList(argv[1]), outputfilename(argv[2]);
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| 72 | if(outputfilename.find(".root") > outputfilename.length() ) {
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[94] | 73 | cout << "output_file should be a .root file!\n";
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| 74 | exit(1);
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[2] | 75 | }
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[44] | 76 | //create output log-file name
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[45] | 77 | string forLog = outputfilename;
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| 78 | string LogName = forLog.erase(forLog.find(".root"));
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[44] | 79 | LogName = LogName+"_run.log";
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[94] | 80 |
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[2] | 81 | TFile *outputFile = TFile::Open(outputfilename.c_str(), "RECREATE"); // Creates the file, but should be closed just after
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| 82 | outputFile->Close();
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[94] | 83 |
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[2] | 84 | string line;
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| 85 | ifstream infile(inputFileList.c_str());
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| 86 | infile >> line; // the first line determines the type of input files
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[94] | 87 |
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[44] | 88 | //read the datacard input file
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| 89 | string DetDatacard("");
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[94] | 90 | if(argc>=4) DetDatacard =argv[3];
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| 91 |
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[55] | 92 | //Smearing information
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[44] | 93 | RESOLution *DET = new RESOLution();
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| 94 | DET->ReadDataCard(DetDatacard);
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| 95 | DET->Logfile(LogName);
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[94] | 96 |
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[79] | 97 | //read the trigger input file
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[80] | 98 | string TrigDatacard("data/trigger.dat");
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[79] | 99 | if(argc==5) TrigDatacard =argv[4];
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[94] | 100 |
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[55] | 101 | //Trigger information
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[72] | 102 | TriggerTable *TRIGT = new TriggerTable();
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[80] | 103 | TRIGT->TriggerCardReader(TrigDatacard.c_str());
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[72] | 104 | TRIGT->PrintTriggerTable(LogName);
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[94] | 105 |
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[55] | 106 | //Propagation of tracks in the B field
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[100] | 107 | TrackPropagation *TRACP = new TrackPropagation(DetDatacard);
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[94] | 108 |
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[55] | 109 | //Jet information
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[100] | 110 | JetsUtil *JETRUN = new JetsUtil(DetDatacard);
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[94] | 111 |
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[55] | 112 | //VFD information
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[100] | 113 | VeryForward * VFD = new VeryForward(DetDatacard);
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[94] | 114 |
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[55] | 115 | //todo(LogName.c_str());
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[94] | 116 |
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[2] | 117 | DataConverter *converter=0;
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[94] | 118 |
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[2] | 119 | if(strstr(line.c_str(),".hep"))
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| 120 | {
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[44] | 121 | cout<<"#**********************************************************************"<<endl;
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| 122 | cout<<"#********** StdHEP file format detected *************"<<endl;
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| 123 | cout<<"#*********** Starting convertion to TRoot format **************"<<endl;
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| 124 | cout<<"#**********************************************************************"<<endl;
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[2] | 125 | converter = new STDHEPConverter(inputFileList,outputfilename);//case ntpl file in input list
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| 126 | }
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| 127 | else if(strstr(line.c_str(),".lhe"))
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| 128 | {
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[44] | 129 | cout<<"#**********************************************************************"<<endl;
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| 130 | cout<<"#*********** LHEF file format detected ************"<<endl;
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| 131 | cout<<"#*********** Starting convertion to TRoot format ************"<<endl;
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| 132 | cout<<"#**********************************************************************"<<endl;
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[2] | 133 | converter = new LHEFConverter(inputFileList,outputfilename);//case ntpl file in input list
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| 134 | }
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| 135 | else if(strstr(line.c_str(),".root"))
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| 136 | {
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[44] | 137 | cout<<"#**********************************************************************"<<endl;
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| 138 | cout<<"#********** h2root file format detected *************"<<endl;
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| 139 | cout<<"#********** Starting convertion to TRoot format *************"<<endl;
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| 140 | cout<<"#**********************************************************************"<<endl;
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[2] | 141 | converter = new HEPEVTConverter(inputFileList,outputfilename);//case ntpl file in input list
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| 142 | }
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| 143 | else { cout << "*** " << line.c_str() << "\n*** file format not identified\n*** Exiting\n"; return -1;};
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[30] | 144 |
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[2] | 145 | TChain chain("GEN");
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| 146 | chain.Add(outputfilename.c_str());
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| 147 | ExRootTreeReader *treeReader = new ExRootTreeReader(&chain);
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| 148 | const TClonesArray *branchGen = treeReader->UseBranch("Particle");
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| 149 | TIter itGen((TCollection*)branchGen);
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| 150 |
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| 151 | //write the output root file
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| 152 | ExRootTreeWriter *treeWriter = new ExRootTreeWriter(outputfilename, "Analysis");
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| 153 | ExRootTreeBranch *branchJet = treeWriter->NewBranch("Jet", TRootJet::Class());
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| 154 | ExRootTreeBranch *branchTauJet = treeWriter->NewBranch("TauJet", TRootTauJet::Class());
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| 155 | ExRootTreeBranch *branchElectron = treeWriter->NewBranch("Electron", TRootElectron::Class());
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| 156 | ExRootTreeBranch *branchMuon = treeWriter->NewBranch("Muon", TRootMuon::Class());
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| 157 | ExRootTreeBranch *branchPhoton = treeWriter->NewBranch("Photon", TRootPhoton::Class());
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| 158 | ExRootTreeBranch *branchTracks = treeWriter->NewBranch("Tracks", TRootTracks::Class());
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| 159 | ExRootTreeBranch *branchETmis = treeWriter->NewBranch("ETmis", TRootETmis::Class());
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| 160 | ExRootTreeBranch *branchCalo = treeWriter->NewBranch("CaloTower", TRootCalo::Class());
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| 161 | ExRootTreeBranch *branchZDC = treeWriter->NewBranch("ZDChits", TRootZdcHits::Class());
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| 162 | ExRootTreeBranch *branchRP220 = treeWriter->NewBranch("RP220hits", TRootRomanPotHits::Class());
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| 163 | ExRootTreeBranch *branchFP420 = treeWriter->NewBranch("FP420hits", TRootRomanPotHits::Class());
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[30] | 164 |
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| 165 |
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[2] | 166 | TRootGenParticle *particle;
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| 167 | TRootETmis *elementEtmis;
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| 168 | TRootElectron *elementElec;
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| 169 | TRootMuon *elementMu;
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| 170 | TRootPhoton *elementPhoton;
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| 171 | TRootTracks *elementTracks;
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| 172 | TRootCalo *elementCalo;
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| 173 |
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| 174 | TLorentzVector genMomentum(0,0,0,0);
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[38] | 175 | TLorentzVector genMomentumCalo(0,0,0,0);
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[2] | 176 | LorentzVector jetMomentum;
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[94] | 177 |
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[55] | 178 | vector<fastjet::PseudoJet> input_particles;//for FastJet algorithm
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| 179 | vector<fastjet::PseudoJet> sorted_jets;
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[94] | 180 |
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[2] | 181 | vector<TLorentzVector> TrackCentral;
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| 182 | vector<PhysicsTower> towers;
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[11] | 183 |
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[73] | 184 | vector<ParticleUtil> electron;
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| 185 | vector<ParticleUtil> muon;
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[74] | 186 | vector<ParticleUtil> gamma;
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[98] | 187 |
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[30] | 188 | TSimpleArray<TRootGenParticle> NFCentralQ;
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| 189 |
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[94] | 190 |
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[100] | 191 | float iPhi=0,iEta=0;
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| 192 |
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[30] | 193 | // Loop over all events
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[2] | 194 | Long64_t entry, allEntries = treeReader->GetEntries();
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| 195 | cout << "** Chain contains " << allEntries << " events" << endl;
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[107] | 196 | for(entry = 0; entry < 200; ++entry)
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[2] | 197 | {
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| 198 | TLorentzVector PTmis(0,0,0,0);
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| 199 | treeReader->ReadEntry(entry);
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| 200 | treeWriter->Clear();
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| 201 | if((entry % 100) == 0 && entry > 0 ) cout << "** Processing element # " << entry << endl;
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| 202 |
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[30] | 203 | electron.clear();
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| 204 | muon.clear();
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[74] | 205 | gamma.clear();
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[30] | 206 | NFCentralQ.Clear();
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| 207 |
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[2] | 208 | TrackCentral.clear();
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| 209 | towers.clear();
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[11] | 210 | input_particles.clear();
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[30] | 211 |
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[2] | 212 | // Loop over all particles in event
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[74] | 213 | itGen.Reset();
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[2] | 214 | while( (particle = (TRootGenParticle*) itGen.Next()) )
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| 215 | {
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[55] | 216 | int pid = abs(particle->PID);
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[94] | 217 | //// This subarray is needed for the B-jet algorithm
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[2] | 218 | // optimization for speed : put first PID condition, then ETA condition, then either pt or status
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| 219 | if( (pid <= pB || pid == pGLUON) &&// is it a light quark or a gluon, i.e. is it one of these : u,d,c,s,b,g ?
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[94] | 220 | fabs(particle->Eta) < DET->CEN_max_tracker &&
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[2] | 221 | particle->Status != 1 &&
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| 222 | particle->PT > DET->PT_QUARKS_MIN ) {
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| 223 | NFCentralQ.Add(particle);
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| 224 | }
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[94] | 225 |
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[2] | 226 | // keeps only final particles, visible by the central detector, including the fiducial volume
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| 227 | // the ordering of conditions have been optimised for speed : put first the STATUS condition
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[55] | 228 | //
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| 229 | //
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[2] | 230 | if( (particle->Status == 1) &&
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[59] | 231 | ((pid != pNU1) && (pid != pNU2) && (pid != pNU3)) &&
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[94] | 232 | (fabs(particle->Eta) < DET->CEN_max_calo_fwd)
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| 233 | )
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[59] | 234 | {
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[94] | 235 | genMomentum.SetPxPyPzE(particle->Px, particle->Py, particle->Pz, particle->E);
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| 236 | if(DET->FLAG_bfield==1)TRACP->Propagation(particle,genMomentum);
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| 237 | float eta=fabs(genMomentum.Eta());
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[30] | 238 |
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[94] | 239 | switch(pid) {
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[74] | 240 |
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[94] | 241 | case pE: // all electrons with eta < DET->MAX_CALO_FWD
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| 242 | DET->SmearElectron(genMomentum);
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| 243 | if(genMomentum.E()!=0 && eta < DET->CEN_max_tracker && genMomentum.Pt() > DET->PTCUT_elec){
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| 244 | electron.push_back(ParticleUtil(genMomentum,particle->PID));
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| 245 | }
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| 246 | break; // case pE
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| 247 | case pGAMMA: // all photons with eta < DET->MAX_CALO_FWD
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| 248 | DET->SmearElectron(genMomentum);
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| 249 | if(genMomentum.E()!=0 && eta < DET->CEN_max_tracker && genMomentum.Pt() > DET->PTCUT_gamma) {
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| 250 | gamma.push_back(ParticleUtil(genMomentum,particle->PID));
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| 251 | }
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| 252 | break; // case pGAMMA
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| 253 | case pMU: // all muons with eta < DET->MAX_MU
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| 254 | DET->SmearMu(genMomentum);
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| 255 | if(genMomentum.E()!=0 && eta < DET->CEN_max_mu && genMomentum.Pt() > DET->PTCUT_muon){
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| 256 | muon.push_back(ParticleUtil(genMomentum,particle->PID));
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| 257 | }
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| 258 | break; // case pMU
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| 259 | case pLAMBDA: // all lambdas with eta < DET->MAX_CALO_FWD
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| 260 | case pK0S: // all K0s with eta < DET->MAX_CALO_FWD
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| 261 | DET->SmearHadron(genMomentum, 0.7);
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| 262 | break; // case hadron
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| 263 | default: // all other final particles with eta < DET->MAX_CALO_FWD
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| 264 | DET->SmearHadron(genMomentum, 1.0);
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| 265 | break;
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| 266 | } // switch (pid)
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| 267 |
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| 268 | // all final particles but muons and neutrinos
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[100] | 269 | // for calorimetric towers and missing PT
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[94] | 270 | int charge=Charge(pid);
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| 271 | if(genMomentum.E() !=0 && pid != pMU) {
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| 272 | if(charge == 0 || (charge !=0 && genMomentum.Pt() >= DET->TRACK_ptmin)){
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[100] | 273 | DET->BinEtaPhi(genMomentum.Phi(), genMomentum.Eta(), iPhi, iEta);
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| 274 | if(iEta != -100 && iPhi != -100)
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| 275 | {
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| 276 | genMomentumCalo.SetPtEtaPhiE(genMomentum.Pt(),iEta,iPhi,genMomentum.E());
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| 277 | elementCalo = (TRootCalo*) branchCalo->NewEntry();
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| 278 | elementCalo->Set(genMomentumCalo);
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| 279 |
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| 280 | // CalTower myCaloTower(genMomentumCalo.Et,genMomentumCalo.Eta,genMomentumCalo.Phi,iEta,iPhi);
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| 281 | // PhysicsTower Tower(LorentzVector(genMomentumCalo.Px(),genMomentumCalo.Py(),genMomentumCalo.Pz(), genMomentumCalo.E()),myCaloTower);
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| 282 | PhysicsTower Tower(LorentzVector(genMomentumCalo.Px(),genMomentumCalo.Py(),genMomentumCalo.Pz(), genMomentumCalo.E()));
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| 283 | towers.push_back(Tower);
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| 284 | }
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[94] | 285 | }
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[30] | 286 | }
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[94] | 287 |
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| 288 | // all final charged particles
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| 289 | if(
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| 290 | (genMomentum.E()!=0) &&
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| 291 | (fabs(genMomentum.Eta()) < DET->CEN_max_tracker) &&
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| 292 | (genMomentum.Pt() > DET->TRACK_ptmin ) && // pt too small to be taken into account
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| 293 | ((rand()%100) < DET->TRACK_eff) &&
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| 294 | (charge!=0)
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| 295 | )
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| 296 | {
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| 297 | elementTracks = (TRootTracks*) branchTracks->NewEntry();
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| 298 | elementTracks->Set(genMomentum);
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| 299 | TrackCentral.push_back(genMomentum);
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| 300 | }
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| 301 |
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[74] | 302 | } // switch
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[30] | 303 |
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[94] | 304 | if(DET->FLAG_vfd==1)
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| 305 | {
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[100] | 306 | VFD->ZDC(treeWriter,branchZDC,particle);
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| 307 | VFD->RomanPots(treeWriter,branchRP220,branchFP420,particle);
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[94] | 308 | }
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[11] | 309 |
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[2] | 310 | } // while
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[71] | 311 |
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[74] | 312 | DET->SortedVector(electron);
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| 313 | for(unsigned int i=0; i < electron.size(); i++) {
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| 314 | elementElec = (TRootElectron*) branchElectron->NewEntry();
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| 315 | elementElec->Set(electron[i].Px(),electron[i].Py(),electron[i].Pz(),electron[i].E());
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| 316 | elementElec->Charge = sign(electron[i].PID());
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| 317 | elementElec->IsolFlag = DET->Isolation(electron[i].Phi(),electron[i].Eta(),TrackCentral,2.0);
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[30] | 318 | }
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[74] | 319 | DET->SortedVector(muon);
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[30] | 320 | for(unsigned int i=0; i < muon.size(); i++) {
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[74] | 321 | elementMu = (TRootMuon*) branchMuon->NewEntry();
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| 322 | elementMu->Charge = sign(muon[i].PID());
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| 323 | elementMu->Set(muon[i].Px(),muon[i].Py(),muon[i].Pz(),muon[i].E());
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| 324 | elementMu->IsolFlag = DET->Isolation(muon[i].Phi(),muon[i].Eta(),TrackCentral,2.0);
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[30] | 325 | }
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[74] | 326 | DET->SortedVector(gamma);
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| 327 | for(unsigned int i=0; i < gamma.size(); i++) {
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| 328 | elementPhoton = (TRootPhoton*) branchPhoton->NewEntry();
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| 329 | elementPhoton->Set(gamma[i].Px(),gamma[i].Py(),gamma[i].Pz(),gamma[i].E());
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| 330 | }
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[30] | 331 |
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[71] | 332 | // computes the Missing Transverse Momentum
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| 333 | TLorentzVector Att(0.,0.,0.,0.);
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| 334 | for(unsigned int i=0; i < towers.size(); i++)
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| 335 | {
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[107] | 336 | Att.SetPxPyPzE(towers[i].fourVector.px, towers[i].fourVector.py, towers[i].fourVector.pz, towers[i].fourVector.E);
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| 337 | if(fabs(Att.Eta()) < DET->CEN_max_calo_fwd)
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| 338 | {
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| 339 | PTmis = PTmis + Att;
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| 340 | // create a fastjet::PseudoJet with these components and put it onto
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| 341 | // back of the input_particles vector
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| 342 | input_particles.push_back(fastjet::PseudoJet(towers[i].fourVector.px,towers[i].fourVector.py,towers[i].fourVector.pz,towers[i].fourVector.E));
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| 343 | }
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[71] | 344 | }
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| 345 | elementEtmis = (TRootETmis*) branchETmis->NewEntry();
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| 346 | elementEtmis->ET = (PTmis).Pt();
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| 347 | elementEtmis->Phi = (-PTmis).Phi();
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| 348 | elementEtmis->Px = (-PTmis).Px();
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| 349 | elementEtmis->Py = (-PTmis).Py();
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[74] | 350 |
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[71] | 351 | //*****************************
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| 352 |
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[55] | 353 | sorted_jets=JETRUN->RunJets(input_particles);
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| 354 | JETRUN->RunJetBtagging(treeWriter, branchJet,sorted_jets,NFCentralQ);
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| 355 | JETRUN->RunTauJets(treeWriter,branchTauJet,sorted_jets,towers, TrackCentral);
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[74] | 356 |
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[2] | 357 | // Add here the trigger
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| 358 | // Should test all the trigger table on the event, based on reconstructed objects
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[72] | 359 | treeWriter->Fill();
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[74] | 360 |
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[2] | 361 | } // Loop over all events
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[74] | 362 |
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[2] | 363 | treeWriter->Write();
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[77] | 364 | delete treeWriter;
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[94] | 365 |
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[74] | 366 | //running the trigger in case the FLAG trigger is put to 1 in the datacard
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[94] | 367 |
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| 368 | if(DET->FLAG_trigger == 1)
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[72] | 369 | {
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| 370 | TChain chainT("Analysis");
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| 371 | chainT.Add(outputfilename.c_str());
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| 372 | ExRootTreeReader *treeReaderT = new ExRootTreeReader(&chainT);
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[74] | 373 |
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[72] | 374 | TClonesArray *branchElecTrig = treeReaderT->UseBranch("Electron");
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| 375 | TClonesArray *branchMuonTrig = treeReaderT->UseBranch("Muon");
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| 376 | TClonesArray *branchJetTrig = treeReaderT->UseBranch("Jet");
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| 377 | TClonesArray *branchTauJetTrig = treeReaderT->UseBranch("TauJet");
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| 378 | TClonesArray *branchPhotonTrig = treeReaderT->UseBranch("Photon");
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| 379 | TClonesArray *branchETmisTrig = treeReaderT->UseBranch("ETmis");
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[74] | 380 |
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[72] | 381 | ExRootTreeWriter *treeWriterT = new ExRootTreeWriter(outputfilename, "Trigger");
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| 382 | ExRootTreeBranch *branchTrigger = treeWriterT->NewBranch("TrigResult", TRootTrigger::Class());
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[74] | 383 |
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[72] | 384 | Long64_t entryT, allEntriesT = treeReaderT->GetEntries();
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| 385 | cout << "** Chain contains " << allEntriesT << " events" << endl;
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| 386 | for(entryT = 0; entryT < allEntriesT; ++entryT)
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| 387 | {
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| 388 | treeWriterT->Clear();
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| 389 | treeReaderT->ReadEntry(entryT);
|
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| 390 | TRIGT->GetGlobalResult(branchElecTrig, branchMuonTrig,branchJetTrig, branchTauJetTrig,branchPhotonTrig, branchETmisTrig,branchTrigger);
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| 391 | treeWriterT->Fill();
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| 392 | }
|
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[94] | 393 |
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[72] | 394 | treeWriterT->Write();
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| 395 | delete treeWriterT;
|
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| 396 | }
|
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[94] | 397 |
|
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| 398 | //FROG display
|
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| 399 | if(DET->FLAG_frog == 1)
|
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| 400 | {
|
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| 401 | FrogDisplay *FROG = new FrogDisplay();
|
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| 402 | FROG->BuidEvents(outputfilename,DET->NEvents_Frog);
|
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[98] | 403 | FROG->BuildGeom(DetDatacard);
|
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[94] | 404 | }
|
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| 405 |
|
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[2] | 406 | cout << "** Exiting..." << endl;
|
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| 407 |
|
---|
| 408 | delete treeReader;
|
---|
| 409 | delete DET;
|
---|
[74] | 410 | delete TRIGT;
|
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| 411 | delete TRACP;
|
---|
| 412 | delete JETRUN;
|
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| 413 | delete VFD;
|
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[94] | 414 |
|
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[2] | 415 | if(converter) delete converter;
|
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[94] | 416 |
|
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[2] | 417 | todo("TODO");
|
---|
| 418 | }
|
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| 419 |
|
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