[d69dfe4] | 1 | #ifndef __FASTJET_NNH_HH__
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| 2 | #define __FASTJET_NNH_HH__
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[d7d2da3] | 3 |
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[35cdc46] | 4 | //FJSTARTHEADER
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[cb80e6f] | 5 | // $Id: NNH.hh 4442 2020-05-05 07:50:11Z soyez $
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[d7d2da3] | 6 | //
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[cb80e6f] | 7 | // Copyright (c) 2005-2020, Matteo Cacciari, Gavin P. Salam and Gregory Soyez
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[d7d2da3] | 8 | //
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| 9 | //----------------------------------------------------------------------
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| 10 | // This file is part of FastJet.
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| 11 | //
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| 12 | // FastJet is free software; you can redistribute it and/or modify
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| 13 | // it under the terms of the GNU General Public License as published by
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| 14 | // the Free Software Foundation; either version 2 of the License, or
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| 15 | // (at your option) any later version.
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| 16 | //
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| 17 | // The algorithms that underlie FastJet have required considerable
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[35cdc46] | 18 | // development. They are described in the original FastJet paper,
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| 19 | // hep-ph/0512210 and in the manual, arXiv:1111.6097. If you use
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[d7d2da3] | 20 | // FastJet as part of work towards a scientific publication, please
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[35cdc46] | 21 | // quote the version you use and include a citation to the manual and
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| 22 | // optionally also to hep-ph/0512210.
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[d7d2da3] | 23 | //
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| 24 | // FastJet is distributed in the hope that it will be useful,
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| 25 | // but WITHOUT ANY WARRANTY; without even the implied warranty of
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| 26 | // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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| 27 | // GNU General Public License for more details.
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| 28 | //
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| 29 | // You should have received a copy of the GNU General Public License
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| 30 | // along with FastJet. If not, see <http://www.gnu.org/licenses/>.
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| 31 | //----------------------------------------------------------------------
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[35cdc46] | 32 | //FJENDHEADER
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[d7d2da3] | 33 |
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[1d208a2] | 34 | #include <fastjet/NNBase.hh>
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[d7d2da3] | 35 |
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| 36 | FASTJET_BEGIN_NAMESPACE // defined in fastjet/internal/base.hh
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| 37 |
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| 38 | //----------------------------------------------------------------------
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| 39 | /// @ingroup advanced_usage
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| 40 | /// \class NNH
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| 41 | /// Help solve closest pair problems with generic interparticle and
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[1d208a2] | 42 | /// beam distance (generic case)
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[d7d2da3] | 43 | ///
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[1d208a2] | 44 | /// (see NNBase.hh for an introductory description)
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[d7d2da3] | 45 | ///
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[1d208a2] | 46 | /// This variant provides an implementation for any distance measure.
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| 47 | /// It is templated with a BJ (brief jet) classand can be used with or
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| 48 | /// without an extra "Information" template, i.e. NNH<BJ> or NNH<BJ,I>
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[d7d2da3] | 49 | ///
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| 50 | /// For the NNH<BJ> version of the class to function, BJ must provide
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| 51 | /// three member functions
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| 52 | ///
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| 53 | /// - void BJ::init(const PseudoJet & jet); // initialise with a PseudoJet
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| 54 | /// - double BJ::distance(const BJ * other_bj_jet); // distance between this and other_bj_jet
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| 55 | /// - double BJ::beam_distance() ; // distance to the beam
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[1d208a2] | 56 | ///
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[d7d2da3] | 57 | /// For the NNH<BJ,I> version to function, the BJ::init(...) member
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| 58 | /// must accept an extra argument
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| 59 | ///
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| 60 | /// - void BJ::init(const PseudoJet & jet, I * info); // initialise with a PseudoJet + info
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| 61 | ///
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[1d208a2] | 62 | /// NOTE: THE DISTANCE MUST BE SYMMETRIC I.E. SATISFY
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| 63 | /// a.distance(b) == b.distance(a)
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[d7d2da3] | 64 | ///
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| 65 | /// For an example of how the NNH<BJ> class is used, see the Jade (and
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| 66 | /// EECambridge) plugins
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| 67 | ///
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| 68 | /// NB: the NNH algorithm is expected N^2, but has a worst case of
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| 69 | /// N^3. Many QCD problems tend to place one closer to the N^3 end of
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| 70 | /// the spectrum than one would like. There is scope for further
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| 71 | /// progress (cf Eppstein, Cardinal & Eppstein), nevertheless the
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| 72 | /// current class is already significantly faster than standard N^3
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| 73 | /// implementations.
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| 74 | ///
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[1d208a2] | 75 | template<class BJ, class I = _NoInfo> class NNH : public NNBase<I> {
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[d7d2da3] | 76 | public:
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| 77 |
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| 78 | /// constructor with an initial set of jets (which will be assigned indices
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| 79 | /// 0 ... jets.size()-1
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[1d208a2] | 80 | NNH(const std::vector<PseudoJet> & jets) : NNBase<I>() {start(jets);}
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| 81 | NNH(const std::vector<PseudoJet> & jets, I * info) : NNBase<I>(info) {start(jets);}
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| 82 |
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| 83 | // initialisation from a given list of particles
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[d7d2da3] | 84 | void start(const std::vector<PseudoJet> & jets);
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| 85 |
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| 86 | /// return the dij_min and indices iA, iB, for the corresponding jets.
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| 87 | /// If iB < 0 then iA recombines with the beam
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| 88 | double dij_min(int & iA, int & iB);
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| 89 |
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| 90 | /// remove the jet pointed to by index iA
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| 91 | void remove_jet(int iA);
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| 92 |
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| 93 | /// merge the jets pointed to by indices A and B and replace them with
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| 94 | /// jet, assigning it an index jet_index.
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| 95 | void merge_jets(int iA, int iB, const PseudoJet & jet, int jet_index);
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| 96 |
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| 97 | /// a destructor
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| 98 | ~NNH() {
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| 99 | delete[] briefjets;
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| 100 | }
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| 101 |
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| 102 | private:
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| 103 | class NNBJ; // forward declaration
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| 104 |
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[35cdc46] | 105 | /// establish the nearest neighbour for jet, and cross check consistency
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[d7d2da3] | 106 | /// of distances for the other jets that are encountered. Assumes
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| 107 | /// jet not contained within begin...end
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| 108 | void set_NN_crosscheck(NNBJ * jet, NNBJ * begin, NNBJ * end);
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| 109 |
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| 110 | /// establish the nearest neighbour for jet; don't cross check other jets'
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| 111 | /// distances and allow jet to be contained within begin...end
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| 112 | void set_NN_nocross (NNBJ * jet, NNBJ * begin, NNBJ * end);
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| 113 |
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| 114 | /// contains the briefjets
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| 115 | NNBJ * briefjets;
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| 116 |
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| 117 | /// semaphores for the current extent of our structure
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| 118 | NNBJ * head, * tail;
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| 119 |
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| 120 | /// currently active number of jets
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| 121 | int n;
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| 122 |
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| 123 | /// where_is[i] contains a pointer to the jet with index i
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| 124 | std::vector<NNBJ *> where_is;
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| 125 |
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| 126 | /// a class that wraps around the BJ, supplementing it with extra information
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| 127 | /// such as pointers to neighbours, etc.
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| 128 | class NNBJ : public BJ {
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| 129 | public:
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| 130 | void init(const PseudoJet & jet, int index_in) {
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| 131 | BJ::init(jet);
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| 132 | other_init(index_in);
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| 133 | }
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| 134 | void init(const PseudoJet & jet, int index_in, I * info) {
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| 135 | BJ::init(jet, info);
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| 136 | other_init(index_in);
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| 137 | }
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| 138 | void other_init(int index_in) {
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| 139 | _index = index_in;
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| 140 | NN_dist = BJ::beam_distance();
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| 141 | NN = NULL;
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| 142 | }
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| 143 | int index() const {return _index;}
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| 144 |
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| 145 | double NN_dist;
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| 146 | NNBJ * NN;
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| 147 |
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| 148 | private:
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| 149 | int _index;
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| 150 | };
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| 151 |
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| 152 | };
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| 153 |
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| 154 |
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| 155 |
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| 156 | //----------------------------------------------------------------------
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| 157 | template<class BJ, class I> void NNH<BJ,I>::start(const std::vector<PseudoJet> & jets) {
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| 158 | n = jets.size();
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| 159 | briefjets = new NNBJ[n];
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| 160 | where_is.resize(2*n);
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| 161 |
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| 162 | NNBJ * jetA = briefjets;
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| 163 |
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| 164 | // initialise the basic jet info
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| 165 | for (int i = 0; i< n; i++) {
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| 166 | //jetA->init(jets[i], i);
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| 167 | this->init_jet(jetA, jets[i], i);
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| 168 | where_is[i] = jetA;
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| 169 | jetA++; // move on to next entry of briefjets
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| 170 | }
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| 171 | tail = jetA; // a semaphore for the end of briefjets
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| 172 | head = briefjets; // a nicer way of naming start
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| 173 |
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| 174 | // now initialise the NN distances: jetA will run from 1..n-1; and
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| 175 | // jetB from 0..jetA-1
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| 176 | for (jetA = head + 1; jetA != tail; jetA++) {
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| 177 | // set NN info for jetA based on jets running from head..jetA-1,
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| 178 | // checking in the process whether jetA itself is an undiscovered
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| 179 | // NN of one of those jets.
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| 180 | set_NN_crosscheck(jetA, head, jetA);
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| 181 | }
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| 182 | //std::cout << "OOOO " << briefjets[1].NN_dist << " " << briefjets[1].NN - briefjets << std::endl;
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| 183 | }
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| 184 |
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| 185 |
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| 186 | //----------------------------------------------------------------------
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| 187 | template<class BJ, class I> double NNH<BJ,I>::dij_min(int & iA, int & iB) {
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| 188 | // find the minimum of the diJ on this round
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| 189 | double diJ_min = briefjets[0].NN_dist;
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| 190 | int diJ_min_jet = 0;
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| 191 | for (int i = 1; i < n; i++) {
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| 192 | if (briefjets[i].NN_dist < diJ_min) {
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| 193 | diJ_min_jet = i;
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| 194 | diJ_min = briefjets[i].NN_dist;
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| 195 | }
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| 196 | }
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| 197 |
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| 198 | // return information to user about recombination
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| 199 | NNBJ * jetA = & briefjets[diJ_min_jet];
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| 200 | //std::cout << jetA - briefjets << std::endl;
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| 201 | iA = jetA->index();
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| 202 | iB = jetA->NN ? jetA->NN->index() : -1;
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| 203 | return diJ_min;
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| 204 | }
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| 205 |
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| 206 |
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| 207 | //----------------------------------------------------------------------
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| 208 | // remove jetA from the list
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| 209 | template<class BJ, class I> void NNH<BJ,I>::remove_jet(int iA) {
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| 210 | NNBJ * jetA = where_is[iA];
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| 211 | // now update our nearest neighbour info and diJ table
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| 212 | // first reduce size of table
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| 213 | tail--; n--;
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| 214 | // Copy last jet contents and diJ info into position of jetA
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| 215 | *jetA = *tail;
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| 216 | // update the info on where the given index is stored
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| 217 | where_is[jetA->index()] = jetA;
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| 218 |
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| 219 | for (NNBJ * jetI = head; jetI != tail; jetI++) {
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| 220 | // see if jetI had jetA or jetB as a NN -- if so recalculate the NN
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| 221 | if (jetI->NN == jetA) set_NN_nocross(jetI, head, tail);
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| 222 |
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| 223 | // if jetI's NN is the new tail then relabel it so that it becomes jetA
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| 224 | if (jetI->NN == tail) {jetI->NN = jetA;}
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| 225 | }
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| 226 | }
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| 227 |
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| 228 |
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| 229 | //----------------------------------------------------------------------
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| 230 | template<class BJ, class I> void NNH<BJ,I>::merge_jets(int iA, int iB,
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| 231 | const PseudoJet & jet, int index) {
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| 232 |
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| 233 | NNBJ * jetA = where_is[iA];
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| 234 | NNBJ * jetB = where_is[iB];
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| 235 |
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| 236 | // If necessary relabel A & B to ensure jetB < jetA, that way if
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| 237 | // the larger of them == newtail then that ends up being jetA and
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| 238 | // the new jet that is added as jetB is inserted in a position that
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| 239 | // has a future!
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| 240 | if (jetA < jetB) std::swap(jetA,jetB);
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| 241 |
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| 242 | // initialise jetB based on the new jet
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| 243 | //jetB->init(jet, index);
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| 244 | this->init_jet(jetB, jet, index);
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| 245 | // and record its position (making sure we have the space)
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| 246 | if (index >= int(where_is.size())) where_is.resize(2*index);
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| 247 | where_is[jetB->index()] = jetB;
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| 248 |
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| 249 | // now update our nearest neighbour info
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| 250 | // first reduce size of table
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| 251 | tail--; n--;
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| 252 | // Copy last jet contents into position of jetA
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| 253 | *jetA = *tail;
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| 254 | // update the info on where the tail's index is stored
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| 255 | where_is[jetA->index()] = jetA;
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| 256 |
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| 257 | for (NNBJ * jetI = head; jetI != tail; jetI++) {
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| 258 | // see if jetI had jetA or jetB as a NN -- if so recalculate the NN
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| 259 | if (jetI->NN == jetA || jetI->NN == jetB) {
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| 260 | set_NN_nocross(jetI, head, tail);
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| 261 | }
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| 262 |
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| 263 | // check whether new jetB is closer than jetI's current NN and
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| 264 | // if need be update things
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| 265 | double dist = jetI->distance(jetB);
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| 266 | if (dist < jetI->NN_dist) {
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| 267 | if (jetI != jetB) {
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| 268 | jetI->NN_dist = dist;
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| 269 | jetI->NN = jetB;
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| 270 | }
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| 271 | }
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| 272 | if (dist < jetB->NN_dist) {
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| 273 | if (jetI != jetB) {
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| 274 | jetB->NN_dist = dist;
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| 275 | jetB->NN = jetI;
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| 276 | }
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| 277 | }
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| 278 |
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| 279 | // if jetI's NN is the new tail then relabel it so that it becomes jetA
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| 280 | if (jetI->NN == tail) {jetI->NN = jetA;}
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| 281 | }
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| 282 | }
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| 283 |
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| 284 |
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| 285 | //----------------------------------------------------------------------
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| 286 | // this function assumes that jet is not contained within begin...end
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| 287 | template <class BJ, class I> void NNH<BJ,I>::set_NN_crosscheck(NNBJ * jet,
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| 288 | NNBJ * begin, NNBJ * end) {
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| 289 | double NN_dist = jet->beam_distance();
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| 290 | NNBJ * NN = NULL;
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| 291 | for (NNBJ * jetB = begin; jetB != end; jetB++) {
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| 292 | double dist = jet->distance(jetB);
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| 293 | if (dist < NN_dist) {
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| 294 | NN_dist = dist;
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| 295 | NN = jetB;
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| 296 | }
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| 297 | if (dist < jetB->NN_dist) {
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| 298 | jetB->NN_dist = dist;
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| 299 | jetB->NN = jet;
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| 300 | }
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| 301 | }
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| 302 | jet->NN = NN;
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| 303 | jet->NN_dist = NN_dist;
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| 304 | }
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| 305 |
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| 306 |
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| 307 | //----------------------------------------------------------------------
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| 308 | // set the NN for jet without checking whether in the process you might
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| 309 | // have discovered a new nearest neighbour for another jet
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| 310 | template <class BJ, class I> void NNH<BJ,I>::set_NN_nocross(
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| 311 | NNBJ * jet, NNBJ * begin, NNBJ * end) {
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| 312 | double NN_dist = jet->beam_distance();
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| 313 | NNBJ * NN = NULL;
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| 314 | // if (head < jet) {
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| 315 | // for (NNBJ * jetB = head; jetB != jet; jetB++) {
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| 316 | if (begin < jet) {
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| 317 | for (NNBJ * jetB = begin; jetB != jet; jetB++) {
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| 318 | double dist = jet->distance(jetB);
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| 319 | if (dist < NN_dist) {
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| 320 | NN_dist = dist;
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| 321 | NN = jetB;
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| 322 | }
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| 323 | }
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| 324 | }
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| 325 | // if (tail > jet) {
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| 326 | // for (NNBJ * jetB = jet+1; jetB != tail; jetB++) {
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| 327 | if (end > jet) {
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| 328 | for (NNBJ * jetB = jet+1; jetB != end; jetB++) {
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| 329 | double dist = jet->distance (jetB);
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| 330 | if (dist < NN_dist) {
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| 331 | NN_dist = dist;
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| 332 | NN = jetB;
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| 333 | }
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| 334 | }
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| 335 | }
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| 336 | jet->NN = NN;
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| 337 | jet->NN_dist = NN_dist;
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| 338 | }
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| 339 |
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| 340 |
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| 341 |
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| 342 |
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| 343 | FASTJET_END_NAMESPACE // defined in fastjet/internal/base.hh
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| 344 |
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| 345 |
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[d69dfe4] | 346 | #endif // __FASTJET_NNH_HH__
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