1 | /***********************************************************************
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2 | ** **
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3 | ** /----------------------------------------------\ **
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4 | ** | Delphes, a framework for the fast simulation | **
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5 | ** | of a generic collider experiment | **
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6 | ** \------------- arXiv:0903.2225v1 ------------/ **
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7 | ** **
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8 | ** **
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9 | ** This package uses: **
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10 | ** ------------------ **
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11 | ** ROOT: Nucl. Inst. & Meth. in Phys. Res. A389 (1997) 81-86 **
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12 | ** FastJet algorithm: Phys. Lett. B641 (2006) [hep-ph/0512210] **
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13 | ** Hector: JINST 2:P09005 (2007) [physics.acc-ph:0707.1198v2] **
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14 | ** FROG: [hep-ex/0901.2718v1] **
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15 | ** HepMC: Comput. Phys. Commun.134 (2001) 41 **
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16 | ** **
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17 | ** ------------------------------------------------------------------ **
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18 | ** **
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19 | ** Main authors: **
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20 | ** ------------- **
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21 | ** **
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22 | ** Severine Ovyn Xavier Rouby **
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23 | ** severine.ovyn@uclouvain.be xavier.rouby@cern **
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24 | ** **
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25 | ** Center for Particle Physics and Phenomenology (CP3) **
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26 | ** Universite catholique de Louvain (UCL) **
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27 | ** Louvain-la-Neuve, Belgium **
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28 | ** **
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29 | ** Copyright (C) 2008-2009, **
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30 | ** All rights reserved. **
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31 | ** **
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32 | ***********************************************************************/
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33 |
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34 | /// \file D_CaloUtil.cc
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35 | /// \brief Implementation of D_CaloElement, D_CaloResolution and D_CaloList classes
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36 |
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37 | #include "CaloUtil.h"
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38 | #include <cmath>
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39 | #include <algorithm>
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40 | #include <iostream>
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41 | #include "TRandom.h"
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42 |
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43 | D_CaloElement& D_CaloElement::operator=(const D_CaloElement& calo) {
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44 | if(this == &calo) return *this;
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45 | _name = calo._name;
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46 | _etamin = calo._etamin;
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47 | _etamax = calo._etamax;
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48 | _resol_em = calo._resol_em;
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49 | _resol_had= calo._resol_had;
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50 | return *this;
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51 | }
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52 |
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53 | D_CaloResolution& D_CaloResolution::operator=(const D_CaloResolution& resolution) {
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54 | if(this == &resolution) return *this;
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55 | _c = resolution._c;
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56 | _n = resolution._n;
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57 | _s = resolution._s;
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58 | return *this;
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59 | }
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60 |
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61 | void D_CaloResolution::print() const {
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62 | std::cout << "C: " << _c << " N:" << _n << " S:" << _s << std::endl;
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63 | }
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64 |
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65 | const D_CaloElement& D_CaloList::getElement(const float eta) const {
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66 | for (unsigned int i=0; i<_calorimeters.size(); i++) {
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67 | if(_calorimeters[i].getEtamin() < eta && eta < _calorimeters[i].getEtamax()) return _calorimeters[i];
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68 | }
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69 | // if not found
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70 | return dummyCalo;
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71 | }
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72 |
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73 | void D_CaloList::addElement(const D_CaloElement & calo) {
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74 | _sorted = false;
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75 | _calorimeters.push_back(calo);
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76 | }
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77 |
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78 | void D_CaloList::sortElements() {
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79 | // here: it sorts the elements with respect to their eta
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80 | sort(_calorimeters.begin(),_calorimeters.end(),ordering());
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81 |
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82 | for (unsigned int i=0; i<_calorimeters.size()-1; i++) {
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83 | if(_calorimeters[i].getEtamax() > _calorimeters[i+1].getEtamin() ) {
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84 | _etamin = UNDEFINED;
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85 | _etamax = UNDEFINED;
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86 | cerr << "** Error: the calorimeter list should never contain overlapping **"<< endl;
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87 | cerr << "** calorimeters. **"<< endl;
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88 | return;
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89 | }
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90 | }
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91 | _etamin = _calorimeters[0].getEtamin();
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92 | _etamax = _calorimeters[_calorimeters.size()-1].getEtamax();
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93 | _sorted = true;
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94 | }
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95 |
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96 | D_CaloList& D_CaloList::operator=(const D_CaloList& list) {
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97 | if(this == &list) return *this;
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98 | _calorimeters = list._calorimeters;
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99 | _etamin = list._etamin;
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100 | _etamax = list._etamax;
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101 | _sorted = list._sorted;
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102 | return *this;
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103 | }
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104 |
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105 | void D_CaloList::print() const {
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106 | if(_sorted) cout << "The list has been sorted\n";
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107 | else cout << "The list has not been sorted\n";
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108 |
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109 | for (unsigned int i=0; i<_calorimeters.size(); i++) {
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110 | std::cout << _calorimeters[i].getName() << " " << _calorimeters[i].getEtamin() <<
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111 | " " << _calorimeters[i].getEtamax() << std::endl;
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112 | _calorimeters[i].getElectromagneticResolution().print();
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113 | _calorimeters[i].getHadronicResolution().print();
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114 | }
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115 |
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116 | }
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117 |
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118 |
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119 |
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120 |
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121 |
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122 |
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123 |
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124 |
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125 | D_CaloTower::D_CaloTower(const float iEta, const float iPhi) :
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126 | _eta(iEta), _phi(iPhi), _Eem(UNDEFINED), _Ehad(UNDEFINED), _E(UNDEFINED), _ET(UNDEFINED) {}
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127 |
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128 | D_CaloTower::D_CaloTower(const D_CaloTower& tower) :
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129 | _eta(tower._eta), _phi(tower._phi), _Eem(tower._Eem),
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130 | _Ehad(tower._Ehad), _E(tower._E), _ET(tower._ET) {}
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131 |
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132 | D_CaloTower& D_CaloTower::operator=(const D_CaloTower& tower) {
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133 | if(this==&tower) return *this;
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134 | _eta = tower._eta; _phi = tower._phi;
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135 | _Eem = tower._Eem; _Ehad = tower._Ehad;
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136 | _E = tower._E; _ET = tower._ET;
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137 | return *this;
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138 | }
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139 |
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140 |
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141 | const float D_CaloResolution::Smear(const float energy) const {
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142 | float sE = gRandom->Gaus(energy,
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143 | sqrt( pow(_n,2) +
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144 | pow(_c*energy,2) +
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145 | pow(_s*sqrt(energy),2) ));
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146 | return (sE>0)? sE : 0;
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147 | }
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148 |
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149 | const bool D_CaloTower::operator==(const D_CaloTower& el) const { if (this == &el) return true; return this->_eta==el._eta && this->_phi == el._phi;}
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150 |
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151 | void D_CaloTowerList::addTower(const D_CaloTower& tower) {
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152 | _calotowers.push_back(tower);
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153 | _sorted = false;
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154 | _merged = false;
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155 | }
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156 |
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157 | D_CaloTowerList& D_CaloTowerList::operator=(const D_CaloTowerList& list) {
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158 | if(this==&list) return *this;
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159 | _calotowers = list._calotowers;
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160 | _sorted = list._sorted;
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161 | _merged = list._merged;
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162 | return *this;
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163 | }
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164 |
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165 | void D_CaloTowerList::sortElements() {
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166 | _sorted = true;
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167 | if(_calotowers.size()==0) return;
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168 | sort(_calotowers.begin(),_calotowers.end(),ordering());
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169 | }
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170 |
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171 | void D_CaloTowerList::mergeDuplicates() {
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172 | if(!_sorted) sortElements();
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173 | _merged = true;
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174 | if (_calotowers.size() ==0) { return;}
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175 |
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176 | vector<D_CaloTower> temp;
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177 | temp.push_back(_calotowers[0]);
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178 | for (unsigned int i=1; i<_calotowers.size(); i++) {
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179 |
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180 | if(temp[temp.size()-1] == _calotowers[i]) {
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181 | //i.e. if towers have the same eta/phi
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182 | float em = temp[temp.size()-1].getEem() + _calotowers[i].getEem();
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183 | float had= temp[temp.size()-1].getEhad()+ _calotowers[i].getEhad();
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184 | temp[temp.size()-1].Set_Eem_Ehad_E_ET(em,had);
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185 | }
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186 | else temp.push_back(_calotowers[i]);
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187 |
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188 | }
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189 | _calotowers = temp;
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190 | }
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191 |
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192 | void D_CaloTowerList::print() const {
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193 | for (unsigned int i=0; i<_calotowers.size(); i++) {
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194 | std::cout << _calotowers[i].getEta() << " " <<
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195 | _calotowers[i].getPhi() << " " <<
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196 | _calotowers[i].getEem() << " " <<
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197 | _calotowers[i].getEhad() << std::endl;
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198 | }
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199 | }
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200 |
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201 | void D_CaloTowerList::smearTowers(const D_CaloList& list_of_calorimeters) {
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202 | for (unsigned int i=0; i<_calotowers.size(); i++) {
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203 | // first, finds in which calo the tower is, in order to have its resolution em /had
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204 | D_CaloElement currentCalo = list_of_calorimeters.getElement(_calotowers[i].getEta() );
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205 | // then, smears separately the em and had parts
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206 | float sEem = currentCalo.getElectromagneticResolution().Smear( _calotowers[i].getEem() );
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207 | float sEhad = currentCalo.getHadronicResolution().Smear( _calotowers[i].getEhad() );
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208 | // finally, sets the tower smeared energy
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209 | _calotowers[i].Set_Eem_Ehad_E_ET(sEem,sEhad);
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210 | }
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211 | }
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212 |
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213 |
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214 | const bool D_CaloTower::operator>(const D_CaloTower& tocomp) const {
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215 | if(_eta == tocomp._eta) {
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216 | if(_phi > tocomp._phi) return true;
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217 | else return false;
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218 | }
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219 | else if(_eta > tocomp._eta) return true;
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220 | else return false;
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221 | };
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222 |
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223 | const bool D_CaloTower::operator<(const D_CaloTower& tocomp) const {
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224 | if(_eta == tocomp._eta) {
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225 | if(_phi < tocomp._phi) return true;
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226 | else return false;
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227 | }
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228 | else if(_eta < tocomp._eta) return true;
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229 | else return false;
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230 | };
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231 |
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232 | const D_CaloTower& D_CaloTowerList::getElement(const float eta, const float phi) {
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233 | if(!_sorted) sortElements();
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234 | for (unsigned int i=0; i< _calotowers.size(); i++) {
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235 | if(_calotowers[i].getEta() == eta &&
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236 | _calotowers[i].getPhi() == phi )
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237 | return _calotowers[i];
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238 | }
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239 | return dummyTower; // if not found
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240 | }
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241 |
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242 | const D_CaloTower& D_CaloTowerList::getElement(const float eta, const float phi) const {
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243 | if(!_sorted) cout << "Warning: unsorted list!";
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244 | for (unsigned int i=0; i< _calotowers.size(); i++) {
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245 | if(_calotowers[i].getEta() == eta &&
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246 | _calotowers[i].getPhi() == phi )
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247 | return _calotowers[i];
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248 | }
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249 | return dummyTower; // if not found
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250 | }
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251 |
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