[d7d2da3] | 1 | //STARTHEADER
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| 2 | // $Id: JetDefinition.hh 2687 2011-11-14 11:17:51Z soyez $
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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 | #ifndef __FASTJET_JETDEFINITION_HH__
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| 30 | #define __FASTJET_JETDEFINITION_HH__
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| 31 |
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| 32 | #include<cassert>
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| 33 | #include "fastjet/internal/numconsts.hh"
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| 34 | #include "fastjet/PseudoJet.hh"
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| 35 | #include<string>
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| 36 | #include<memory>
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| 37 |
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| 38 | FASTJET_BEGIN_NAMESPACE // defined in fastjet/internal/base.hh
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| 39 |
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| 40 | /// return a string containing information about the release
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| 41 | // NB: (implemented in ClusterSequence.cc but defined here because
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| 42 | // this is a visible location)
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| 43 | std::string fastjet_version_string();
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| 44 |
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| 45 | //======================================================================
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| 46 | /// the various options for the algorithmic strategy to adopt in
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| 47 | /// clustering events with kt and cambridge style algorithms.
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| 48 | enum Strategy {
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| 49 | /// fastest form about 500..10^4
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| 50 | N2MinHeapTiled = -4,
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| 51 | /// fastest from about 50..500
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| 52 | N2Tiled = -3,
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| 53 | /// legacy
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| 54 | N2PoorTiled = -2,
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| 55 | /// fastest below 50
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| 56 | N2Plain = -1,
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| 57 | /// worse even than the usual N^3 algorithms
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| 58 | N3Dumb = 0,
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| 59 | /// automatic selection of the best (based on N)
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| 60 | Best = 1,
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| 61 | /// best of the NlnN variants -- best overall for N>10^4.
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| 62 | /// (Does not work for R>=2pi)
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| 63 | NlnN = 2,
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| 64 | /// legacy N ln N using 3pi coverage of cylinder.
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| 65 | /// (Does not work for R>=2pi)
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| 66 | NlnN3pi = 3,
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| 67 | /// legacy N ln N using 4pi coverage of cylinder
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| 68 | NlnN4pi = 4,
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| 69 | /// Chan's closest pair method (in a variant with 4pi coverage),
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| 70 | /// for use exclusively with the Cambridge algorithm.
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| 71 | /// (Does not work for R>=2pi)
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| 72 | NlnNCam4pi = 14,
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| 73 | /// Chan's closest pair method (in a variant with 2pi+2R coverage),
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| 74 | /// for use exclusively with the Cambridge algorithm.
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| 75 | /// (Does not work for R>=2pi)
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| 76 | NlnNCam2pi2R = 13,
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| 77 | /// Chan's closest pair method (in a variant with 2pi+minimal extra
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| 78 | /// variant), for use exclusively with the Cambridge algorithm.
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| 79 | /// (Does not work for R>=2pi)
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| 80 | NlnNCam = 12, // 2piMultD
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| 81 | /// the plugin has been used...
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| 82 | plugin_strategy = 999
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| 83 | };
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| 84 |
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| 85 |
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| 86 | //======================================================================
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| 87 | /// \enum JetAlgorithm
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| 88 | /// the various families of jet-clustering algorithm
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| 89 | enum JetAlgorithm {
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| 90 | /// the longitudinally invariant kt algorithm
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| 91 | kt_algorithm=0,
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| 92 | /// the longitudinally invariant variant of the cambridge algorithm
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| 93 | /// (aka Aachen algoithm).
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| 94 | cambridge_algorithm=1,
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| 95 | /// like the k_t but with distance measures
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| 96 | /// dij = min(1/kti^2,1/ktj^2) Delta R_{ij}^2 / R^2
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| 97 | /// diB = 1/kti^2
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| 98 | antikt_algorithm=2,
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| 99 | /// like the k_t but with distance measures
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| 100 | /// dij = min(kti^{2p},ktj^{2p}) Delta R_{ij}^2 / R^2
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| 101 | /// diB = 1/kti^{2p}
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| 102 | /// where p = extra_param()
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| 103 | genkt_algorithm=3,
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| 104 | /// a version of cambridge with a special distance measure for particles
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| 105 | /// whose pt is < extra_param()
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| 106 | cambridge_for_passive_algorithm=11,
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| 107 | /// a version of genkt with a special distance measure for particles
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| 108 | /// whose pt is < extra_param() [relevant for passive areas when p<=0]
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| 109 | genkt_for_passive_algorithm=13,
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| 110 | //.................................................................
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| 111 | /// the e+e- kt algorithm
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| 112 | ee_kt_algorithm=50,
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| 113 | /// the e+e- genkt algorithm (R > 2 and p=1 gives ee_kt)
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| 114 | ee_genkt_algorithm=53,
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| 115 | //.................................................................
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| 116 | /// any plugin algorithm supplied by the user
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| 117 | plugin_algorithm = 99,
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| 118 | //.................................................................
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| 119 | /// the value for the jet algorithm in a JetDefinition for which
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| 120 | /// no algorithm has yet been defined
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| 121 | undefined_jet_algorithm = 999
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| 122 | };
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| 123 |
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| 124 | /// make standard Les Houches nomenclature JetAlgorithm (algorithm is general
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| 125 | /// recipe without the parameters) backward-compatible with old JetFinder
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| 126 | typedef JetAlgorithm JetFinder;
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| 127 |
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| 128 | /// provide other possible names for the Cambridge/Aachen algorithm
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| 129 | const JetAlgorithm aachen_algorithm = cambridge_algorithm;
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| 130 | const JetAlgorithm cambridge_aachen_algorithm = cambridge_algorithm;
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| 131 |
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| 132 | //======================================================================
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| 133 | /// the various recombination schemes
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| 134 | enum RecombinationScheme {
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| 135 | /// summing the 4-momenta
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| 136 | E_scheme=0,
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| 137 | /// pt weighted recombination of y,phi (and summing of pt's)
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| 138 | /// with preprocessing to make things massless by rescaling E=|\vec p|
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| 139 | pt_scheme=1,
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| 140 | /// pt^2 weighted recombination of y,phi (and summing of pt's)
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| 141 | /// with preprocessing to make things massless by rescaling E=|\vec p|
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| 142 | pt2_scheme=2,
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| 143 | /// pt weighted recombination of y,phi (and summing of pt's)
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| 144 | /// with preprocessing to make things massless by rescaling |\vec p|->=E
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| 145 | Et_scheme=3,
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| 146 | /// pt^2 weighted recombination of y,phi (and summing of pt's)
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| 147 | /// with preprocessing to make things massless by rescaling |\vec p|->=E
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| 148 | Et2_scheme=4,
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| 149 | /// pt weighted recombination of y,phi (and summing of pt's), with
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| 150 | /// no preprocessing
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| 151 | BIpt_scheme=5,
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| 152 | /// pt^2 weighted recombination of y,phi (and summing of pt's)
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| 153 | /// no preprocessing
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| 154 | BIpt2_scheme=6,
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| 155 | /// for the user's external scheme
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| 156 | external_scheme = 99
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| 157 | };
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| 158 |
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| 159 |
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| 160 |
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| 161 | // forward declaration, needed in order to specify interface for the
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| 162 | // plugin.
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| 163 | class ClusterSequence;
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| 164 |
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| 165 |
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| 166 |
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| 167 |
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| 168 | //======================================================================
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| 169 | /// @ingroup basic_classes
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| 170 | /// \class JetDefinition
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| 171 | /// class that is intended to hold a full definition of the jet
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| 172 | /// clusterer
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| 173 | class JetDefinition {
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| 174 |
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| 175 | public:
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| 176 |
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| 177 | /// forward declaration of a class that allows the user to introduce
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| 178 | /// their own plugin
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| 179 | class Plugin;
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| 180 |
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| 181 | // forward declaration of a class that will provide the
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| 182 | // recombination scheme facilities and/or allow a user to
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| 183 | // extend these facilities
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| 184 | class Recombiner;
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| 185 |
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| 186 |
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| 187 | /// constructor with alternative ordering or arguments -- note that
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| 188 | /// we have not provided a default jet finder, to avoid ambiguous
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| 189 | /// JetDefinition() constructor.
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| 190 | JetDefinition(JetAlgorithm jet_algorithm_in,
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| 191 | double R_in,
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| 192 | RecombinationScheme recomb_scheme_in = E_scheme,
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| 193 | Strategy strategy_in = Best) {
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| 194 | *this = JetDefinition(jet_algorithm_in, R_in, strategy_in, recomb_scheme_in, 1);
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| 195 | }
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| 196 |
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| 197 | /// constructor for algorithms that have no free parameters
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| 198 | /// (e.g. ee_kt_algorithm)
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| 199 | JetDefinition(JetAlgorithm jet_algorithm_in,
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| 200 | RecombinationScheme recomb_scheme_in = E_scheme,
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| 201 | Strategy strategy_in = Best) {
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| 202 | double dummyR = 0.0;
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| 203 | *this = JetDefinition(jet_algorithm_in, dummyR, strategy_in, recomb_scheme_in, 0);
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| 204 | }
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| 205 |
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| 206 | /// constructor for algorithms that require R + one extra parameter to be set
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| 207 | /// (the gen-kt series for example)
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| 208 | JetDefinition(JetAlgorithm jet_algorithm_in,
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| 209 | double R_in,
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| 210 | double xtra_param_in,
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| 211 | RecombinationScheme recomb_scheme_in = E_scheme,
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| 212 | Strategy strategy_in = Best) {
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| 213 | *this = JetDefinition(jet_algorithm_in, R_in, strategy_in, recomb_scheme_in, 2);
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| 214 | set_extra_param(xtra_param_in);
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| 215 | }
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| 216 |
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| 217 |
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| 218 | /// constructor in a form that allows the user to provide a pointer
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| 219 | /// to an external recombiner class (which must remain valid for the
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| 220 | /// life of the JetDefinition object).
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| 221 | JetDefinition(JetAlgorithm jet_algorithm_in,
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| 222 | double R_in,
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| 223 | const Recombiner * recombiner_in,
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| 224 | Strategy strategy_in = Best) {
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| 225 | *this = JetDefinition(jet_algorithm_in, R_in, external_scheme, strategy_in);
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| 226 | _recombiner = recombiner_in;
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| 227 | }
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| 228 |
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| 229 |
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| 230 | /// constructor for case with 0 parameters (ee_kt_algorithm) and
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| 231 | /// and external recombiner
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| 232 | JetDefinition(JetAlgorithm jet_algorithm_in,
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| 233 | const Recombiner * recombiner_in,
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| 234 | Strategy strategy_in = Best) {
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| 235 | *this = JetDefinition(jet_algorithm_in, external_scheme, strategy_in);
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| 236 | _recombiner = recombiner_in;
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| 237 | }
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| 238 |
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| 239 | /// constructor allowing the extra parameter to be set and a pointer to
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| 240 | /// a recombiner
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| 241 | JetDefinition(JetAlgorithm jet_algorithm_in,
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| 242 | double R_in,
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| 243 | double xtra_param_in,
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| 244 | const Recombiner * recombiner_in,
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| 245 | Strategy strategy_in = Best) {
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| 246 | *this = JetDefinition(jet_algorithm_in, R_in, external_scheme, strategy_in);
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| 247 | _recombiner = recombiner_in;
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| 248 | set_extra_param(xtra_param_in);
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| 249 | }
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| 250 |
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| 251 | /// a default constructor which creates a jet definition that is in
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| 252 | /// a well-defined internal state, but not actually usable for jet
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| 253 | /// clustering.
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| 254 | JetDefinition() {
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| 255 | *this = JetDefinition(undefined_jet_algorithm, 1.0);
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| 256 | }
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| 257 |
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| 258 |
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| 259 | // /// a default constructor
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| 260 | // JetDefinition() {
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| 261 | // *this = JetDefinition(kt_algorithm, 1.0);
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| 262 | // }
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| 263 |
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| 264 | /// constructor based on a pointer to a user's plugin; the object
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| 265 | /// pointed to must remain valid for the whole duration of existence
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| 266 | /// of the JetDefinition and any related ClusterSequences
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| 267 | JetDefinition(const Plugin * plugin_in) {
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| 268 | _plugin = plugin_in;
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| 269 | _strategy = plugin_strategy;
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| 270 | _Rparam = _plugin->R();
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| 271 | _jet_algorithm = plugin_algorithm;
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| 272 | set_recombination_scheme(E_scheme);
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| 273 | }
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| 274 |
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| 275 |
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| 276 | /// constructor to fully specify a jet-definition (together with
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| 277 | /// information about how algorithically to run it).
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| 278 | ///
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| 279 | /// the ordering of arguments here is old and deprecated (except
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| 280 | /// as the common constructor for internal use)
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| 281 | JetDefinition(JetAlgorithm jet_algorithm_in,
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| 282 | double R_in,
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| 283 | Strategy strategy_in,
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| 284 | RecombinationScheme recomb_scheme_in = E_scheme,
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| 285 | int nparameters_in = 1);
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| 286 |
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| 287 | /// R values larger than max_allowable_R are not allowed.
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| 288 | ///
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| 289 | /// We use a value of 1000, substantially smaller than
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| 290 | /// numeric_limits<double>::max(), to leave room for the convention
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| 291 | /// within PseudoJet of setting unphysical (infinite) rapidities to
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| 292 | /// +-(MaxRap + abs(pz())), where MaxRap is 10^5.
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| 293 | static const double max_allowable_R; //= 1000.0;
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| 294 |
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| 295 | /// set the recombination scheme to the one provided
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| 296 | void set_recombination_scheme(RecombinationScheme);
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| 297 |
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| 298 | /// set the recombiner class to the one provided
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| 299 | void set_recombiner(const Recombiner * recomb) {
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| 300 | if (_recombiner_shared()) _recombiner_shared.reset(recomb);
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| 301 | _recombiner = recomb;
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| 302 | _default_recombiner = DefaultRecombiner(external_scheme);
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| 303 | }
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| 304 |
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| 305 | /// calling this tells the JetDefinition to handle the deletion of
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| 306 | /// the recombiner when it is no longer used
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| 307 | void delete_recombiner_when_unused();
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| 308 |
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| 309 | /// return a pointer to the plugin
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| 310 | const Plugin * plugin() const {return _plugin;};
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| 311 |
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| 312 | /// allows to let the JetDefinition handle the deletion of the
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| 313 | /// plugin when it is no longer used
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| 314 | void delete_plugin_when_unused();
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| 315 |
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| 316 | /// return information about the definition...
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| 317 | JetAlgorithm jet_algorithm () const {return _jet_algorithm ;}
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| 318 | /// same as above for backward compatibility
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| 319 | JetAlgorithm jet_finder () const {return _jet_algorithm ;}
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| 320 | double R () const {return _Rparam ;}
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| 321 | // a general purpose extra parameter, whose meaning depends on
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| 322 | // the algorithm, and may often be unused.
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| 323 | double extra_param () const {return _extra_param ;}
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| 324 | Strategy strategy () const {return _strategy ;}
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| 325 | RecombinationScheme recombination_scheme() const {
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| 326 | return _default_recombiner.scheme();}
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| 327 |
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| 328 | /// (re)set the jet finder
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| 329 | void set_jet_algorithm(JetAlgorithm njf) {_jet_algorithm = njf;}
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| 330 | /// same as above for backward compatibility
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| 331 | void set_jet_finder(JetAlgorithm njf) {_jet_algorithm = njf;}
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| 332 | /// (re)set the general purpose extra parameter
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| 333 | void set_extra_param(double xtra_param) {_extra_param = xtra_param;}
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| 334 |
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| 335 | /// return a pointer to the currently defined recombiner.
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| 336 | ///
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| 337 | /// Warning: the pointer may be to an internal recombiner (for
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| 338 | /// default recombination schemes), in which case if the
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| 339 | /// JetDefinition becomes invalid (e.g. is deleted), the pointer
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| 340 | /// will then point to an object that no longer exists.
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| 341 | ///
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| 342 | /// Note also that if you copy a JetDefinition with a default
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| 343 | /// recombination scheme, then the two copies will have distinct
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| 344 | /// recombiners, and return different recombiner() pointers.
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| 345 | const Recombiner * recombiner() const {
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| 346 | return _recombiner == 0 ? & _default_recombiner : _recombiner;}
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| 347 |
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| 348 | /// returns true if the current jet definitions shares the same
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| 349 | /// recombiner as teh one passed as an argument
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| 350 | bool has_same_recombiner(const JetDefinition &other_jd) const;
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| 351 |
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| 352 | /// return a textual description of the current jet definition
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| 353 | std::string description() const;
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| 354 |
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| 355 |
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| 356 | public:
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| 357 | //======================================================================
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| 358 | /// @ingroup advanced_usage
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| 359 | /// \class Recombiner
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| 360 | /// An abstract base class that will provide the recombination scheme
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| 361 | /// facilities and/or allow a user to extend these facilities
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| 362 | class Recombiner {
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| 363 | public:
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| 364 | /// return a textual description of the recombination scheme
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| 365 | /// implemented here
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| 366 | virtual std::string description() const = 0;
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| 367 |
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| 368 | /// recombine pa and pb and put result into pab
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| 369 | virtual void recombine(const PseudoJet & pa, const PseudoJet & pb,
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| 370 | PseudoJet & pab) const = 0;
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| 371 |
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| 372 | /// routine called to preprocess each input jet (to make all input
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| 373 | /// jets compatible with the scheme requirements (e.g. massless).
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| 374 | virtual void preprocess(PseudoJet & ) const {};
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| 375 |
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| 376 | /// a destructor to be replaced if necessary in derived classes...
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| 377 | virtual ~Recombiner() {};
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| 378 |
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| 379 | /// pa += pb in the given recombination scheme. Not virtual -- the
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| 380 | /// user should have no reason to want to redefine this!
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| 381 | inline void plus_equal(PseudoJet & pa, const PseudoJet & pb) const {
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| 382 | // put result in a temporary location in case the recombiner
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| 383 | // does something funny (ours doesn't, but who knows about the
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| 384 | // user's)
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| 385 | PseudoJet pres;
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| 386 | recombine(pa,pb,pres);
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| 387 | pa = pres;
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| 388 | }
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| 389 |
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| 390 | };
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| 391 |
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| 392 |
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| 393 | //======================================================================
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| 394 | /// @ingroup advanced_usage
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| 395 | /// \class DefaultRecombiner
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| 396 | /// A class that will provide the recombination scheme facilities and/or
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| 397 | /// allow a user to extend these facilities
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| 398 | ///
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| 399 | /// This class is derived from the (abstract) class Recombiner. It
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| 400 | /// simply "sums" PseudoJets using a specified recombination scheme
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| 401 | /// (E-scheme by default)
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| 402 | class DefaultRecombiner : public Recombiner {
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| 403 | public:
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| 404 | DefaultRecombiner(RecombinationScheme recomb_scheme = E_scheme) :
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| 405 | _recomb_scheme(recomb_scheme) {}
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| 406 |
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| 407 | virtual std::string description() const;
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| 408 |
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| 409 | /// recombine pa and pb and put result into pab
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| 410 | virtual void recombine(const PseudoJet & pa, const PseudoJet & pb,
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| 411 | PseudoJet & pab) const;
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| 412 |
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| 413 | virtual void preprocess(PseudoJet & p) const;
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| 414 |
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| 415 | /// return the index of the recombination scheme
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| 416 | RecombinationScheme scheme() const {return _recomb_scheme;}
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| 417 |
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| 418 | private:
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| 419 | RecombinationScheme _recomb_scheme;
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| 420 | };
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| 421 |
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| 422 |
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| 423 | //======================================================================
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| 424 | /// @ingroup advanced_usage
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| 425 | /// \class Plugin
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| 426 | /// a class that allows a user to introduce their own "plugin" jet
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| 427 | /// finder
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| 428 | ///
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| 429 | /// Note that all the plugins provided with FastJet are derived from
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| 430 | /// this class
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| 431 | class Plugin{
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| 432 | public:
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| 433 | /// return a textual description of the jet-definition implemented
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| 434 | /// in this plugin
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| 435 | virtual std::string description() const = 0;
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| 436 |
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| 437 | /// given a ClusterSequence that has been filled up with initial
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| 438 | /// particles, the following function should fill up the rest of the
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| 439 | /// ClusterSequence, using the following member functions of
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| 440 | /// ClusterSequence:
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| 441 | /// - plugin_do_ij_recombination(...)
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| 442 | /// - plugin_do_iB_recombination(...)
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| 443 | virtual void run_clustering(ClusterSequence &) const = 0;
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| 444 |
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| 445 | virtual double R() const = 0;
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| 446 |
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| 447 | /// return true if there is specific support for the measurement
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| 448 | /// of passive areas, in the sense that areas determined from all
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| 449 | /// particles below the ghost separation scale will be a passive
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| 450 | /// area. [If you don't understand this, ignore it!]
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| 451 | virtual bool supports_ghosted_passive_areas() const {return false;}
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| 452 |
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| 453 | /// set the ghost separation scale for passive area determinations
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| 454 | /// in future runs (strictly speaking that makes the routine
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| 455 | /// a non const, so related internal info must be stored as a mutable)
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| 456 | virtual void set_ghost_separation_scale(double scale) const;
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| 457 | virtual double ghost_separation_scale() const {return 0.0;}
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| 458 |
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| 459 | /// if this returns false then a warning will be given
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| 460 | /// whenever the user requests "exclusive" jets from the
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| 461 | /// cluster sequence
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| 462 | virtual bool exclusive_sequence_meaningful() const {return false;}
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| 463 |
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| 464 | /// a destructor to be replaced if necessary in derived classes...
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| 465 | virtual ~Plugin() {};
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| 466 | };
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| 467 |
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| 468 | private:
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| 469 |
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| 470 |
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| 471 | JetAlgorithm _jet_algorithm;
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| 472 | double _Rparam;
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| 473 | double _extra_param ; ///< parameter whose meaning varies according to context
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| 474 | Strategy _strategy ;
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| 475 |
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| 476 | const Plugin * _plugin;
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| 477 | SharedPtr<const Plugin> _plugin_shared;
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| 478 |
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| 479 | // when we use our own recombiner it's useful to point to it here
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| 480 | // so that we don't have to worry about deleting it etc...
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| 481 | DefaultRecombiner _default_recombiner;
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| 482 | const Recombiner * _recombiner;
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| 483 | SharedPtr<const Recombiner> _recombiner_shared;
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| 484 |
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| 485 | };
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| 486 |
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| 487 |
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| 488 | //-------------------------------------------------------------------------------
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| 489 | // helper functions to build a jet made of pieces
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| 490 | //
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| 491 | // These functions include an options recombiner used to compute the
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| 492 | // total composite jet momentum
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| 493 | // -------------------------------------------------------------------------------
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| 494 |
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| 495 | /// build a "CompositeJet" from the vector of its pieces
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| 496 | ///
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| 497 | /// In this case, E-scheme recombination is assumed to compute the
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| 498 | /// total momentum
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| 499 | PseudoJet join(const std::vector<PseudoJet> & pieces, const JetDefinition::Recombiner & recombiner);
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| 500 |
|
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| 501 | /// build a MergedJet from a single PseudoJet
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| 502 | PseudoJet join(const PseudoJet & j1,
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| 503 | const JetDefinition::Recombiner & recombiner);
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| 504 |
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| 505 | /// build a MergedJet from 2 PseudoJet
|
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| 506 | PseudoJet join(const PseudoJet & j1, const PseudoJet & j2,
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| 507 | const JetDefinition::Recombiner & recombiner);
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| 508 |
|
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| 509 | /// build a MergedJet from 3 PseudoJet
|
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| 510 | PseudoJet join(const PseudoJet & j1, const PseudoJet & j2, const PseudoJet & j3,
|
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| 511 | const JetDefinition::Recombiner & recombiner);
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| 512 |
|
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| 513 | /// build a MergedJet from 4 PseudoJet
|
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| 514 | PseudoJet join(const PseudoJet & j1, const PseudoJet & j2, const PseudoJet & j3, const PseudoJet & j4,
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| 515 | const JetDefinition::Recombiner & recombiner);
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| 516 |
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| 517 |
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| 518 |
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| 519 |
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| 520 |
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| 521 | FASTJET_END_NAMESPACE
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| 522 |
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| 523 | #endif // __FASTJET_JETDEFINITION_HH__
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