1 | #ifndef __FASTJET_LAZYTILING9_HH__
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2 | #define __FASTJET_LAZYTILING9_HH__
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3 |
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4 | //#define INSTRUMENT2 1
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5 |
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6 | //FJSTARTHEADER
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7 | // $Id: LazyTiling9.hh 4442 2020-05-05 07:50:11Z soyez $
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8 | //
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9 | // Copyright (c) 2005-2020, Matteo Cacciari, Gavin P. Salam and Gregory Soyez
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10 | //
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11 | //----------------------------------------------------------------------
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12 | // This file is part of FastJet.
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13 | //
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14 | // FastJet is free software; you can redistribute it and/or modify
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15 | // it under the terms of the GNU General Public License as published by
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16 | // the Free Software Foundation; either version 2 of the License, or
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17 | // (at your option) any later version.
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18 | //
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19 | // The algorithms that underlie FastJet have required considerable
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20 | // development. They are described in the original FastJet paper,
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21 | // hep-ph/0512210 and in the manual, arXiv:1111.6097. If you use
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22 | // FastJet as part of work towards a scientific publication, please
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23 | // quote the version you use and include a citation to the manual and
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24 | // optionally also to hep-ph/0512210.
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25 | //
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26 | // FastJet is distributed in the hope that it will be useful,
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27 | // but WITHOUT ANY WARRANTY; without even the implied warranty of
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28 | // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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29 | // GNU General Public License for more details.
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30 | //
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31 | // You should have received a copy of the GNU General Public License
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32 | // along with FastJet. If not, see <http://www.gnu.org/licenses/>.
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33 | //----------------------------------------------------------------------
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34 | //FJENDHEADER
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35 |
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36 | //#include "fastjet/PseudoJet.hh"
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37 | #include "fastjet/internal/MinHeap.hh"
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38 | #include "fastjet/ClusterSequence.hh"
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39 | #include "fastjet/internal/LazyTiling9Alt.hh"
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40 |
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41 |
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42 | FASTJET_BEGIN_NAMESPACE // defined in fastjet/internal/base.hh
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43 | template<int NN>
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44 | class Tile2Base {
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45 | public:
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46 | /// pointers to neighbouring tiles, including self
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47 | Tile2Base * begin_tiles[NN];
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48 | /// neighbouring tiles, excluding self
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49 | Tile2Base ** surrounding_tiles;
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50 | /// half of neighbouring tiles, no self
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51 | Tile2Base ** RH_tiles;
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52 | /// just beyond end of tiles
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53 | Tile2Base ** end_tiles;
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54 | /// start of list of BriefJets contained in this tile
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55 | TiledJet * head;
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56 | /// sometimes useful to be able to tag a tile
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57 | bool tagged;
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58 | /// true for tiles where the delta phi calculation needs
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59 | /// potentially to account for periodicity in phi
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60 | bool use_periodic_delta_phi;
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61 | /// for all particles in the tile, this stores the largest of the
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62 | /// (squared) nearest-neighbour distances.
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63 | double max_NN_dist;
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64 | double eta_centre, phi_centre;
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65 |
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66 | /// returns the number of jets in the tile; useful principally for
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67 | /// diagnostics
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68 | int jet_count() const {
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69 | int count = 0;
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70 | const TiledJet * jet = head;
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71 | while (jet != 0) {
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72 | count++;
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73 | jet = jet->next;
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74 | }
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75 | return count;
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76 | }
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77 | };
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78 |
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79 |
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80 | typedef Tile2Base<9> Tile2;
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81 |
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82 | // class Tile2 : public Tile2Base {
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83 | // public:
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84 | // /// pointers to neighbouring tiles, including self
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85 | // Tile2 * begin_tiles[n_tile_neighbours];
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86 | // bool is_near_zero_phi(double tile_size_phi) const {
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87 | // return phi_centre < tile_size_phi || (twopi-phi_centre) < tile_size_phi;
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88 | // }
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89 | // };
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90 |
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91 | // class Tile2 {
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92 | // public:
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93 | // /// pointers to neighbouring tiles, including self
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94 | // Tile2 * begin_tiles[n_tile_neighbours];
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95 | // /// neighbouring tiles, excluding self
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96 | // Tile2 ** surrounding_tiles;
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97 | // /// half of neighbouring tiles, no self
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98 | // Tile2 ** RH_tiles;
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99 | // /// just beyond end of tiles
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100 | // Tile2 ** end_tiles;
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101 | // /// start of list of BriefJets contained in this tile
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102 | // TiledJet * head;
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103 | // /// sometimes useful to be able to tag a tile
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104 | // bool tagged;
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105 | // /// for all particles in the tile, this stores the largest of the
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106 | // /// (squared) nearest-neighbour distances.
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107 | // double max_NN_dist;
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108 | // double eta_centre, phi_centre;
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109 | // bool is_near_zero_phi(double tile_size_phi) const {
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110 | // return phi_centre < tile_size_phi || (twopi-phi_centre) < tile_size_phi;
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111 | // }
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112 | // };
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113 |
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114 |
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115 |
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116 | //----------------------------------------------------------------------
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117 | class LazyTiling9 {
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118 | public:
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119 | LazyTiling9(ClusterSequence & cs);
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120 |
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121 | void run();
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122 |
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123 | //void get_next_clustering(int & jetA_index, int & jetB_index, double & dij);
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124 |
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125 |
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126 | protected:
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127 | ClusterSequence & _cs;
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128 | const std::vector<PseudoJet> & _jets;
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129 | std::vector<Tile2> _tiles;
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130 |
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131 | #ifdef INSTRUMENT2
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132 | int _ncall; // GPS tmp
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133 | int _ncall_dtt; // GPS tmp
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134 | #endif // INSTRUMENT2
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135 |
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136 | double _Rparam, _R2, _invR2;
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137 | double _tiles_eta_min, _tiles_eta_max;
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138 | double _tile_size_eta, _tile_size_phi;
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139 | double _tile_half_size_eta, _tile_half_size_phi;
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140 | int _n_tiles_phi,_tiles_ieta_min,_tiles_ieta_max;
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141 |
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142 | std::vector<TiledJet *> _jets_for_minheap;
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143 |
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144 | //MinHeap _minheap;
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145 |
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146 | void _initialise_tiles();
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147 |
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148 | // reasonably robust return of tile index given ieta and iphi, in particular
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149 | // it works even if iphi is negative
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150 | inline int _tile_index (int ieta, int iphi) const {
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151 | // note that (-1)%n = -1 so that we have to add _n_tiles_phi
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152 | // before performing modulo operation
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153 | return (ieta-_tiles_ieta_min)*_n_tiles_phi
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154 | + (iphi+_n_tiles_phi) % _n_tiles_phi;
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155 | }
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156 |
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157 | void _bj_remove_from_tiles(TiledJet * const jet);
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158 |
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159 | /// returns the tile index given the eta and phi values of a jet
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160 | int _tile_index(const double eta, const double phi) const;
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161 |
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162 | // sets up information regarding the tiling of the given jet
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163 | void _tj_set_jetinfo(TiledJet * const jet, const int _jets_index);
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164 |
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165 | void _print_tiles(TiledJet * briefjets ) const;
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166 | void _add_neighbours_to_tile_union(const int tile_index,
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167 | std::vector<int> & tile_union, int & n_near_tiles) const;
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168 | void _add_untagged_neighbours_to_tile_union(const int tile_index,
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169 | std::vector<int> & tile_union, int & n_near_tiles);
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170 | void _add_untagged_neighbours_to_tile_union_using_max_info(const TiledJet * const jet,
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171 | std::vector<int> & tile_union, int & n_near_tiles);
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172 | double _distance_to_tile(const TiledJet * bj, const Tile2 *)
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173 | #ifdef INSTRUMENT2
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174 | ;
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175 | #else
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176 | const;
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177 | #endif
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178 | void _update_jetX_jetI_NN(TiledJet * jetX, TiledJet * jetI, std::vector<TiledJet *> & jets_for_minheap);
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179 |
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180 | void _set_NN(TiledJet * jetI, std::vector<TiledJet *> & jets_for_minheap);
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181 |
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182 | // return the diJ (multiplied by _R2) for this jet assuming its NN
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183 | // info is correct
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184 | template <class J> double _bj_diJ(const J * const jet) const {
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185 | double kt2 = jet->kt2;
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186 | if (jet->NN != NULL) {if (jet->NN->kt2 < kt2) {kt2 = jet->NN->kt2;}}
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187 | return jet->NN_dist * kt2;
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188 | }
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189 |
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190 |
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191 | //----------------------------------------------------------------------
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192 | template <class J> inline void _bj_set_jetinfo(
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193 | J * const jetA, const int _jets_index) const {
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194 | jetA->eta = _jets[_jets_index].rap();
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195 | jetA->phi = _jets[_jets_index].phi_02pi();
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196 | jetA->kt2 = _cs.jet_scale_for_algorithm(_jets[_jets_index]);
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197 | jetA->_jets_index = _jets_index;
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198 | // initialise NN info as well
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199 | jetA->NN_dist = _R2;
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200 | jetA->NN = NULL;
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201 | }
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202 |
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203 |
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204 | //----------------------------------------------------------------------
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205 | template <class J> inline double _bj_dist(
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206 | const J * const jetA, const J * const jetB)
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207 | #ifdef INSTRUMENT2
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208 | {
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209 | _ncall++; // GPS tmp
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210 | #else
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211 | const {
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212 | #endif
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213 | double dphi = std::abs(jetA->phi - jetB->phi);
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214 | double deta = (jetA->eta - jetB->eta);
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215 | if (dphi > pi) {dphi = twopi - dphi;}
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216 | return dphi*dphi + deta*deta;
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217 | }
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218 |
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219 |
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220 | //----------------------------------------------------------------------
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221 | template <class J> inline double _bj_dist_not_periodic(
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222 | const J * const jetA, const J * const jetB)
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223 | #ifdef INSTRUMENT2
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224 | {
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225 | _ncall++; // GPS tmp
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226 | #else
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227 | const {
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228 | #endif
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229 | //_ncall++; // GPS tmp
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230 | double dphi = jetA->phi - jetB->phi;
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231 | double deta = (jetA->eta - jetB->eta);
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232 | return dphi*dphi + deta*deta;
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233 | }
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234 |
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235 | };
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236 |
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237 |
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238 | FASTJET_END_NAMESPACE
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239 |
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240 | #endif // __FASTJET_LAZYTILING9_HH__
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