1 | /** \class VertexSorter
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2 | *
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3 | *
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4 | * Sorts vertices according to different criteria
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5 | *
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6 | * \authors A. Hart, M. Selvaggi
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7 | *
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8 | *
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9 | */
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10 |
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11 | #include "modules/VertexSorter.h"
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12 |
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13 | #include "classes/DelphesClasses.h"
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14 | #include "classes/DelphesFactory.h"
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15 | #include "classes/DelphesFormula.h"
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16 | #include "classes/DelphesPileUpReader.h"
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17 |
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18 | #include "ExRootAnalysis/ExRootResult.h"
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19 | #include "ExRootAnalysis/ExRootFilter.h"
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20 | #include "ExRootAnalysis/ExRootClassifier.h"
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21 |
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22 | #include "TMath.h"
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23 | #include "TString.h"
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24 | #include "TFormula.h"
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25 | #include "TRandom3.h"
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26 | #include "TObjArray.h"
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27 | #include "TDatabasePDG.h"
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28 | #include "TLorentzVector.h"
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29 | #include "TMatrixT.h"
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30 | #include "TVector3.h"
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31 |
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32 | static const Double_t mm = 1.;
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33 | static const Double_t m = 1000.*mm;
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34 | static const Double_t ns = 1.;
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35 | static const Double_t s = 1.e+9 *ns;
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36 | static const Double_t c_light = 2.99792458e+8 * m/s;
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37 |
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38 | //------------------------------------------------------------------------------
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39 |
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40 | VertexSorter::VertexSorter() :
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41 | fInputArray(NULL), fTrackInputArray(NULL), fItTrackInputArray(NULL), fJetInputArray(NULL), fItJetInputArray(NULL), fOutputArray(NULL)
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42 | {
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43 | }
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44 |
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45 | //------------------------------------------------------------------------------
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46 |
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47 | VertexSorter::~VertexSorter()
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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 |
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53 | void VertexSorter::Init()
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54 | {
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55 | fInputArray = ImportArray(GetString("InputArray", "VertexFinder/clusters"));
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56 |
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57 | fTrackInputArray = ImportArray(GetString("TrackInputArray", "VertexFinder/tracks"));
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58 | fItTrackInputArray = fTrackInputArray->MakeIterator();
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59 |
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60 | if (string (GetString("JetInputArray", "")) != "")
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61 | {
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62 | fJetInputArray = ImportArray(GetString("JetInputArray", ""));
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63 | fItJetInputArray = fJetInputArray->MakeIterator();
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64 | }
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65 |
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66 | // import beamspot
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67 | try
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68 | {
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69 | fBeamSpotInputArray = ImportArray(GetString("BeamSpotInputArray", "BeamSpotFilter/beamSpotParticle"));
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70 | }
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71 | catch(runtime_error &e)
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72 | {
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73 | fBeamSpotInputArray = 0;
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74 | }
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75 |
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76 | fOutputArray = ExportArray(GetString("OutputArray", "clusters"));
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77 |
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78 | fMethod = GetString ("Method", "BTV");
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79 | }
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80 |
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81 | //------------------------------------------------------------------------------
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82 |
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83 | void VertexSorter::Finish()
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84 | {
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85 | if(fItTrackInputArray) delete fItTrackInputArray;
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86 | if(fItJetInputArray) delete fItJetInputArray;
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87 | }
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88 |
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89 | //------------------------------------------------------------------------------
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90 | //
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91 | Bool_t VertexSorter::secondDescending (pair<UInt_t, Double_t> pair0, pair<UInt_t, Double_t> pair1)
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92 | {
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93 | return (pair0.second > pair1.second);
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94 | }
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95 | Bool_t VertexSorter::secondAscending (pair<UInt_t, Double_t> pair0, pair<UInt_t, Double_t> pair1)
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96 | {
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97 | return (pair0.second < pair1.second);
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98 | }
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99 |
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100 | void VertexSorter::Process()
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101 | {
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102 | Candidate *candidate, *jetCandidate, *beamSpotCandidate;
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103 | unordered_map<Int_t, UInt_t> clusterIDToIndex;
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104 | unordered_map<Int_t, Double_t> clusterIDToSumPT2;
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105 | vector<pair<Int_t, Double_t> > sortedClusterIDs;
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106 |
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107 | for (Int_t iCluster = 0; iCluster < fInputArray->GetEntries (); iCluster++)
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108 | {
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109 | const Candidate &cluster = *((Candidate *) fInputArray->At (iCluster));
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110 | clusterIDToIndex[cluster.ClusterIndex] = iCluster;
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111 | clusterIDToSumPT2[cluster.ClusterIndex] = 0.0;
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112 | }
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113 |
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114 | if (fMethod == "BTV")
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115 | {
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116 | if (!fJetInputArray)
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117 | {
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118 | cout << "BTV PV sorting selected, but no jet collection given!" << endl;
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119 | throw 0;
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120 | }
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121 |
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122 | fItTrackInputArray->Reset();
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123 | while((candidate = static_cast<Candidate*>(fItTrackInputArray->Next())))
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124 | {
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125 | if (candidate->Momentum.Pt () < 1.0)
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126 | continue;
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127 | if (candidate->ClusterIndex < 0)
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128 | continue;
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129 | TLorentzVector p (candidate->Momentum.Px (), candidate->Momentum.Py (), candidate->Momentum.Pz (), candidate->Momentum.E ());
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130 | Bool_t isInJet = false;
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131 |
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132 | fItJetInputArray->Reset();
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133 | while((jetCandidate = static_cast<Candidate*>(fItJetInputArray->Next())))
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134 | {
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135 | if (jetCandidate->Momentum.Pt () < 30.0)
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136 | continue;
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137 | TLorentzVector q (jetCandidate->Momentum.Px (), jetCandidate->Momentum.Py (), jetCandidate->Momentum.Pz (), jetCandidate->Momentum.E ());
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138 |
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139 | if (p.DeltaR (q) > 0.4)
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140 | continue;
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141 | isInJet = true;
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142 | break;
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143 | }
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144 | if (!isInJet)
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145 | continue;
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146 |
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147 | clusterIDToSumPT2.at (candidate->ClusterIndex) += candidate->Momentum.Pt () * candidate->Momentum.Pt ();
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148 | }
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149 |
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150 | for (const auto &clusterID : clusterIDToSumPT2)
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151 | sortedClusterIDs.push_back (make_pair (clusterID.first, clusterID.second));
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152 | sort (sortedClusterIDs.begin (), sortedClusterIDs.end (), secondDescending);
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153 | }
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154 | else if (fMethod == "GenClosest")
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155 | {
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156 | if (!fBeamSpotInputArray)
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157 | {
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158 | cout << "GenClosest PV sorting selected, but no beamspot collection given!" << endl;
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159 | throw 0;
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160 | }
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161 | if (!fBeamSpotInputArray->GetSize ())
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162 | {
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163 | cout << "Beamspot collection is empty!" << endl;
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164 | throw 0;
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165 | }
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166 |
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167 | beamSpotCandidate = (Candidate *) fBeamSpotInputArray->At (0);
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168 | for (Int_t iCluster = 0; iCluster < fInputArray->GetEntries (); iCluster++)
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169 | {
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170 | const Candidate &cluster = *((Candidate *) fInputArray->At (iCluster));
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171 | sortedClusterIDs.push_back (make_pair (cluster.ClusterIndex, fabs (cluster.Position.Z () - beamSpotCandidate->Position.Z ())));
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172 | }
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173 | sort (sortedClusterIDs.begin (), sortedClusterIDs.end (), secondAscending);
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174 | }
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175 | else if (fMethod == "GenBest")
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176 | {
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177 | fItTrackInputArray->Reset();
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178 | while((candidate = static_cast<Candidate*>(fItTrackInputArray->Next())))
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179 | {
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180 | if (candidate->IsPU)
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181 | continue;
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182 | for (const auto &clusterID : clusterIDToIndex)
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183 | {
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184 | if (candidate->ClusterIndex != clusterID.first)
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185 | continue;
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186 | clusterIDToSumPT2.at (clusterID.first) += candidate->Momentum.Pt () * candidate->Momentum.Pt ();
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187 | }
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188 | }
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189 |
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190 | for (const auto &clusterID : clusterIDToSumPT2)
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191 | sortedClusterIDs.push_back (make_pair (clusterID.first, clusterID.second));
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192 | sort (sortedClusterIDs.begin (), sortedClusterIDs.end (), secondDescending);
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193 | }
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194 | else
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195 | {
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196 | cout << "\"" << fMethod << "\" is not a valid sorting method!" << endl;
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197 | cout << "Valid methods are:" << endl;
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198 | cout << " BTV" << endl;
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199 | cout << " GenClosest" << endl;
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200 | cout << " GenBest" << endl;
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201 | throw 0;
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202 | }
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203 |
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204 | for (const auto &clusterID : sortedClusterIDs)
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205 | {
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206 | Candidate *cluster = (Candidate *) fInputArray->At (clusterIDToIndex.at (clusterID.first));
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207 | if (fMethod == "BTV")
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208 | cluster->BTVSumPT2 = clusterID.second;
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209 | else if (fMethod == "GenClosest")
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210 | cluster->GenDeltaZ = clusterID.second;
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211 | else if (fMethod == "GenBest")
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212 | cluster->GenSumPT2 = clusterID.second;
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213 | fOutputArray->Add (cluster);
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214 | }
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215 | }
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216 |
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217 | //------------------------------------------------------------------------------
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