[859] | 1 | //STARTHEADER
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| 2 | // $Id: ClusterSequence_Delaunay.cc 1332 2013-11-20 20:52:59Z pavel $
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| 3 | //
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| 4 | // Copyright (c) 2005-2011, Matteo Cacciari, Gavin P. Salam and Gregory Soyez
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| 5 | //
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| 6 | //----------------------------------------------------------------------
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| 7 | // This file is part of FastJet.
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| 8 | //
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| 9 | // FastJet is free software; you can redistribute it and/or modify
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| 10 | // it under the terms of the GNU General Public License as published by
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| 11 | // the Free Software Foundation; either version 2 of the License, or
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| 12 | // (at your option) any later version.
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| 13 | //
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| 14 | // The algorithms that underlie FastJet have required considerable
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| 15 | // development and are described in hep-ph/0512210. If you use
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| 16 | // FastJet as part of work towards a scientific publication, please
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| 17 | // include a citation to the FastJet paper.
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| 18 | //
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| 19 | // FastJet is distributed in the hope that it will be useful,
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| 20 | // but WITHOUT ANY WARRANTY; without even the implied warranty of
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| 21 | // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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| 22 | // GNU General Public License for more details.
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| 23 | //
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| 24 | // You should have received a copy of the GNU General Public License
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| 25 | // along with FastJet. If not, see <http://www.gnu.org/licenses/>.
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| 26 | //----------------------------------------------------------------------
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| 27 | //ENDHEADER
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| 28 |
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| 29 |
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| 30 | #include "fastjet/Error.hh"
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| 31 | #include "fastjet/PseudoJet.hh"
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| 32 | #include "fastjet/ClusterSequence.hh"
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[1332] | 33 | #include "fastjet/internal/DynamicNearestNeighbours.hh"
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[859] | 34 | #include<iostream>
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| 35 | #include<sstream>
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| 36 | #include<cmath>
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| 37 | #include <cstdlib>
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| 38 | #include<cassert>
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| 39 | #include<memory>
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| 40 | //
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| 41 | #ifndef DROP_CGAL // in case we do not have the code for CGAL
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| 42 | #include "fastjet/internal/Dnn4piCylinder.hh"
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| 43 | #include "fastjet/internal/Dnn3piCylinder.hh"
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| 44 | #include "fastjet/internal/Dnn2piCylinder.hh"
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| 45 | #endif // DROP_CGAL
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| 46 |
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| 47 | FASTJET_BEGIN_NAMESPACE // defined in fastjet/internal/base.hh
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| 48 |
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| 49 | using namespace std;
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| 50 |
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| 51 |
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| 52 | //----------------------------------------------------------------------
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| 53 | /// Run the clustering using a Hierarchical Delaunay triangulation and
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| 54 | /// STL maps to achieve O(N*ln N) behaviour.
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| 55 | ///
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| 56 | /// There may be internally asserted assumptions about absence of
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| 57 | /// points with coincident eta-phi coordinates.
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| 58 | void ClusterSequence::_delaunay_cluster () {
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| 59 |
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| 60 | int n = _jets.size();
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| 61 |
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| 62 | vector<EtaPhi> points(n); // recall EtaPhi is just a typedef'd pair<double>
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| 63 | for (int i = 0; i < n; i++) {
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| 64 | points[i] = EtaPhi(_jets[i].rap(),_jets[i].phi_02pi());
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| 65 | points[i].sanitize(); // make sure things are in the right range
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| 66 | }
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| 67 |
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| 68 | // initialise our DNN structure with the set of points
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| 69 | auto_ptr<DynamicNearestNeighbours> DNN;
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| 70 | #ifndef DROP_CGAL // strategy = NlnN* are not supported if we drop CGAL...
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| 71 | bool verbose = false;
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| 72 | bool ignore_nearest_is_mirror = (_Rparam < twopi);
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| 73 | if (_strategy == NlnN4pi) {
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| 74 | DNN.reset(new Dnn4piCylinder(points,verbose));
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| 75 | } else if (_strategy == NlnN3pi) {
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| 76 | DNN.reset(new Dnn3piCylinder(points,ignore_nearest_is_mirror,verbose));
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| 77 | } else if (_strategy == NlnN) {
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| 78 | DNN.reset(new Dnn2piCylinder(points,ignore_nearest_is_mirror,verbose));
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| 79 | } else
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| 80 | #else
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| 81 | if (_strategy == NlnN4pi || _strategy == NlnN3pi || _strategy == NlnN) {
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| 82 | ostringstream err;
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| 83 | err << "ERROR: Requested strategy "<<strategy_string()<<" but it is not"<<endl;
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| 84 | err << " supported because FastJet was compiled without CGAL"<<endl;
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| 85 | throw Error(err.str());
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| 86 | //assert(false);
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| 87 | }
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| 88 | #endif // DROP_CGAL
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| 89 | {
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| 90 | ostringstream err;
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| 91 | err << "ERROR: Unrecognized value for strategy: "<<_strategy<<endl;
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| 92 | assert(false);
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| 93 | throw Error(err.str());
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| 94 | }
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| 95 |
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| 96 | // We will find nearest neighbour for each vertex, and include
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| 97 | // distance in map (NB DistMap is a typedef given in the .h file)
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| 98 | DistMap DijMap;
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| 99 |
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| 100 | // fill the map with the minimal (as far as we know) subset of Dij
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| 101 | // distances (i.e. nearest neighbour ones).
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| 102 | for (int ii = 0; ii < n; ii++) {
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| 103 | _add_ktdistance_to_map(ii, DijMap, DNN.get());
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| 104 | }
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| 105 |
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| 106 | // run the clustering (go up to i=n-1, but then will stop half-way down,
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| 107 | // when we reach that point -- it will be the final beam jet and there
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| 108 | // will be no nearest neighbours to find).
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| 109 | for (int i=0;i<n;i++) {
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| 110 | // find nearest vertices
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| 111 | // NB: skip cases where the point is not there anymore!
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| 112 | TwoVertices SmallestDijPair;
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| 113 | int jet_i, jet_j;
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| 114 | double SmallestDij;
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| 115 | bool Valid2;
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| 116 | bool recombine_with_beam;
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| 117 | do {
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| 118 | SmallestDij = DijMap.begin()->first;
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| 119 | SmallestDijPair = DijMap.begin()->second;
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| 120 | jet_i = SmallestDijPair.first;
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| 121 | jet_j = SmallestDijPair.second;
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| 122 | // distance is immediately removed regardless of whether or not
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| 123 | // it is used.
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| 124 | // Some temporary testing code relating to problems with the gcc-3.2 compiler
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| 125 | //cout << "got here and size is "<< DijMap.size()<< " and it is "<<SmallestDij <<"\n";
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| 126 | //cout << jet_i << " "<< jet_j<<"\n";
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| 127 | DijMap.erase(DijMap.begin());
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| 128 | //cout << "got beyond here\n";
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| 129 |
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| 130 | // need to "prime" the validity of jet_j in such a way that
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| 131 | // if it corresponds to the beam then it is automatically valid.
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| 132 | recombine_with_beam = (jet_j == BeamJet);
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| 133 | if (!recombine_with_beam) {Valid2 = DNN->Valid(jet_j);}
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| 134 | else {Valid2 = true;}
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| 135 |
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| 136 | } while ( !DNN->Valid(jet_i) || !Valid2);
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| 137 |
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| 138 |
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| 139 | // The following part acts just on jet momenta and on the history.
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| 140 | // The action on the nearest-neighbour structures takes place
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| 141 | // later (only if at least 2 jets are around).
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| 142 | if (! recombine_with_beam) {
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| 143 | int nn; // will be index of new jet
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| 144 | _do_ij_recombination_step(jet_i, jet_j, SmallestDij, nn);
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| 145 | //OBS // merge the two jets, add new jet, remove old ones
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| 146 | //OBS _jets.push_back(_jets[jet_i] + _jets[jet_j]);
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| 147 | //OBS
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| 148 | //OBS int nn = _jets.size()-1;
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| 149 | //OBS _jets[nn].set_cluster_hist_index(n+i);
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| 150 | //OBS
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| 151 | //OBS // get corresponding indices in history structure
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| 152 | //OBS int hist_i = _jets[jet_i].cluster_hist_index();
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| 153 | //OBS int hist_j = _jets[jet_j].cluster_hist_index();
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| 154 | //OBS
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| 155 | //OBS
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| 156 | //OBS _add_step_to_history(n+i,min(hist_i,hist_j), max(hist_i,hist_j),
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| 157 | //OBS _jets.size()-1, SmallestDij);
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| 158 |
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| 159 | // add new point to points vector
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| 160 | EtaPhi newpoint(_jets[nn].rap(), _jets[nn].phi_02pi());
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| 161 | newpoint.sanitize(); // make sure it is in correct range
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| 162 | points.push_back(newpoint);
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| 163 | } else {
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| 164 | // recombine the jet with the beam
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| 165 | _do_iB_recombination_step(jet_i, SmallestDij);
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| 166 | //OBS _add_step_to_history(n+i,_jets[jet_i].cluster_hist_index(),BeamJet,
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| 167 | //OBS Invalid, SmallestDij);
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| 168 | }
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| 169 |
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| 170 | // exit the loop because we do not want to look for nearest neighbours
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| 171 | // etc. of zero partons
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| 172 | if (i == n-1) {break;}
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| 173 |
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| 174 | vector<int> updated_neighbours;
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| 175 | if (! recombine_with_beam) {
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| 176 | // update DNN
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| 177 | int point3;
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| 178 | DNN->RemoveCombinedAddCombination(jet_i, jet_j,
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| 179 | points[points.size()-1], point3,
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| 180 | updated_neighbours);
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| 181 | // C++ beginners' comment: static_cast to unsigned int is necessary
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| 182 | // to do away with warnings about type mismatch between point3 (int)
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| 183 | // and points.size (unsigned int)
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| 184 | if (static_cast<unsigned int> (point3) != points.size()-1) {
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| 185 | throw Error("INTERNAL ERROR: point3 != points.size()-1");}
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| 186 | } else {
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| 187 | // update DNN
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| 188 | DNN->RemovePoint(jet_i, updated_neighbours);
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| 189 | }
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| 190 |
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| 191 | // update map
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| 192 | vector<int>::iterator it = updated_neighbours.begin();
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| 193 | for (; it != updated_neighbours.end(); ++it) {
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| 194 | int ii = *it;
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| 195 | _add_ktdistance_to_map(ii, DijMap, DNN.get());
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| 196 | }
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| 197 |
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| 198 | } // end clustering loop
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| 199 |
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| 200 | }
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| 201 |
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| 202 |
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| 203 | //----------------------------------------------------------------------
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| 204 | /// Add the current kt distance for particle ii to the map (DijMap)
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| 205 | /// using information from the DNN object. Work as follows:
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| 206 | ///
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| 207 | /// . if the kt is zero then it's nearest neighbour is taken to be the
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| 208 | /// the beam jet and the distance is zero.
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| 209 | ///
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| 210 | /// . if cylinder distance to nearest neighbour > _Rparam then it is
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| 211 | /// yiB that is smallest and this is added to map.
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| 212 | ///
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| 213 | /// . otherwise if the nearest neighbour jj has a larger kt then add
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| 214 | /// dij to the map.
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| 215 | ///
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| 216 | /// . otherwise do nothing
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| 217 | ///
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| 218 | void ClusterSequence::_add_ktdistance_to_map(
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| 219 | const int & ii,
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| 220 | DistMap & DijMap,
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| 221 | const DynamicNearestNeighbours * DNN) {
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| 222 |
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| 223 | double yiB = jet_scale_for_algorithm(_jets[ii]);
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| 224 | if (yiB == 0.0) {
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| 225 | // in this case convention is that we do not worry about distances
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| 226 | // but directly state that nearest neighbour is beam
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| 227 | DijMap.insert(DijEntry(yiB, TwoVertices(ii,-1)));
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| 228 | } else {
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| 229 | double DeltaR2 = DNN->NearestNeighbourDistance(ii) * _invR2;
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| 230 | // Logic of following bit is: only add point to map if it has
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| 231 | // smaller kt2 than nearest neighbour j (if it has larger kt,
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| 232 | // then: either it is j's nearest neighbour and then we will
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| 233 | // include dij when we come to j; or it is not j's nearest
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| 234 | // neighbour and j will recombine with someone else).
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| 235 |
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| 236 | // If DeltaR2 > 1.0 then in any case it will recombine with beam rather
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| 237 | // than with any neighbours.
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| 238 | // (put general normalisation here at some point)
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| 239 | if (DeltaR2 > 1.0) {
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| 240 | DijMap.insert(DijEntry(yiB, TwoVertices(ii,-1)));
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| 241 | } else {
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| 242 | double kt2i = jet_scale_for_algorithm(_jets[ii]);
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| 243 | int jj = DNN->NearestNeighbourIndex(ii);
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| 244 | if (kt2i <= jet_scale_for_algorithm(_jets[jj])) {
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| 245 | double dij = DeltaR2 * kt2i;
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| 246 | DijMap.insert(DijEntry(dij, TwoVertices(ii,jj)));
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| 247 | }
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| 248 | }
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| 249 | }
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| 250 | }
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| 251 |
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| 252 |
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| 253 | FASTJET_END_NAMESPACE
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| 254 |
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