FastJet 3.0.4
PseudoJetStructureBase.cc
00001 //STARTHEADER
00002 // $Id: PseudoJetStructureBase.cc 3071 2013-04-01 12:52:46Z cacciari $
00003 //
00004 // Copyright (c) 2005-2011, Matteo Cacciari, Gavin P. Salam and Gregory Soyez
00005 //
00006 //----------------------------------------------------------------------
00007 // This file is part of FastJet.
00008 //
00009 //  FastJet is free software; you can redistribute it and/or modify
00010 //  it under the terms of the GNU General Public License as published by
00011 //  the Free Software Foundation; either version 2 of the License, or
00012 //  (at your option) any later version.
00013 //
00014 //  The algorithms that underlie FastJet have required considerable
00015 //  development and are described in hep-ph/0512210. If you use
00016 //  FastJet as part of work towards a scientific publication, please
00017 //  include a citation to the FastJet paper.
00018 //
00019 //  FastJet is distributed in the hope that it will be useful,
00020 //  but WITHOUT ANY WARRANTY; without even the implied warranty of
00021 //  MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
00022 //  GNU General Public License for more details.
00023 //
00024 //  You should have received a copy of the GNU General Public License
00025 //  along with FastJet. If not, see <http://www.gnu.org/licenses/>.
00026 //----------------------------------------------------------------------
00027 //ENDHEADER
00028 
00029 
00030 #include "fastjet/PseudoJetStructureBase.hh"
00031 #include "fastjet/Error.hh"
00032 #include "fastjet/PseudoJet.hh"
00033 #include "fastjet/ClusterSequence.hh"
00034 #ifndef __FJCORE__
00035 #include "fastjet/ClusterSequenceAreaBase.hh"
00036 #endif  // __FJCORE__
00037 
00038 using namespace std;
00039 
00040 FASTJET_BEGIN_NAMESPACE      // defined in fastjet/internal/base.hh
00041 
00042 // PseudoJetStructureBase implementation
00043 //
00044 // Contains any information related to the clustering that should be
00045 // directly accessible to PseudoJet.
00046 //
00047 // By default, this class implements basic access to the
00048 // ClusterSequence related to a PseudoJet (like its constituents or
00049 // its area). But it can be overloaded in order e.g. to give access
00050 // to the jet substructure.
00051 //
00052 // Note that it accesses the underlying ClusterSequence through a
00053 // ClusterSequenceWrapper object so it can check when the former goes
00054 // out of scope.
00055 //
00056 
00057 
00058 //-------------------------------------------------------------
00059 // Direct access to the associated ClusterSequence object.
00060 //
00061 // Get access to the associated ClusterSequence (if any)
00062 //-------------------------------------------------------------
00063 
00064 // get a (const) pointer to the parent ClusterSequence (NULL if
00065 // inexistent)
00066 const ClusterSequence* PseudoJetStructureBase::associated_cluster_sequence() const{
00067   return NULL;
00068 }
00069   
00070 // if the jet has a valid associated cluster sequence then return a
00071 // pointer to it; otherwise throw an error
00072 //
00073 // by default, an Error is thrown
00074 const ClusterSequence * PseudoJetStructureBase::validated_cs() const{
00075   throw Error("This PseudoJet structure is not associated with a valid ClusterSequence");
00076 }
00077 
00078 #ifndef __FJCORE__
00079 // if the jet has valid area information then return a pointer to
00080 // the associated ClusterSequenceAreaBase object; otherwise throw an error
00081 //
00082 // by default, an Error is thrown
00083 const ClusterSequenceAreaBase * PseudoJetStructureBase::validated_csab() const{
00084   throw Error("This PseudoJet structure is not associated with a valid cluster sequence with area");
00085 }
00086 #endif
00087 
00088 
00089 //-------------------------------------------------------------
00090 // Methods for access to information about jet structure
00091 //
00092 // These allow access to jet constituents, and other jet
00093 // subtructure information. They only work if the jet is associated
00094 // with a ClusterSequence.
00095 //-------------------------------------------------------------
00096 
00097 // check if it has been recombined with another PseudoJet in which
00098 // case, return its partner through the argument. Otherwise,
00099 // 'partner' is set to 0.
00100 //
00101 // by default, an Error is thrown
00102 bool PseudoJetStructureBase::has_partner(const PseudoJet & /*reference */, PseudoJet & /*partner*/) const{
00103   throw Error("This PseudoJet structure has no implementation for has_partner");
00104 }
00105 
00106 // check if it has been recombined with another PseudoJet in which
00107 // case, return its child through the argument. Otherwise, 'child'
00108 // is set to 0.
00109 // 
00110 // by default, an Error is thrown
00111 bool PseudoJetStructureBase::has_child(const PseudoJet & /*reference*/, PseudoJet & /*child*/) const{
00112   throw Error("This PseudoJet structure has no implementation for has_child");
00113 }
00114 
00115 // check if it is the product of a recombination, in which case
00116 // return the 2 parents through the 'parent1' and 'parent2'
00117 // arguments. Otherwise, set these to 0.
00118 //
00119 // by default, an Error is thrown
00120 bool PseudoJetStructureBase::has_parents(const PseudoJet & /*reference*/, PseudoJet &/*parent1*/, PseudoJet &/*parent2*/) const{
00121   throw Error("This PseudoJet structure has no implementation for has_parents");
00122 }
00123 
00124 // check if the reference PseudoJet is contained in the second one
00125 // passed as argument.
00126 //
00127 // by default, an Error is thrown
00128 bool PseudoJetStructureBase::object_in_jet(const PseudoJet & /*reference*/, const PseudoJet & /*jet*/) const{
00129   throw Error("This PseudoJet structure has no implementation for is_inside");
00130 }
00131 
00132 // retrieve the constituents. 
00133 //
00134 // by default, an Error is thrown
00135 vector<PseudoJet> PseudoJetStructureBase::constituents(const PseudoJet &/*reference*/) const{
00136   throw Error("This PseudoJet structure has no implementation for constituents");
00137 }
00138 
00139 // return a vector of all subjets of the current jet (in the sense
00140 // of the exclusive algorithm) that would be obtained when running
00141 // the algorithm with the given dcut. 
00142 //
00143 // Time taken is O(m ln m), where m is the number of subjets that
00144 // are found. If m gets to be of order of the total number of
00145 // constituents in the jet, this could be substantially slower than
00146 // just getting that list of constituents.
00147 //
00148 // by default, an Error is thrown
00149 vector<PseudoJet> PseudoJetStructureBase::exclusive_subjets (const PseudoJet & /*reference*/, const double & /*dcut*/) const{
00150   throw Error("This PseudoJet structure has no implementation for exclusive_subjets");
00151 }
00152 
00153 // return the size of exclusive_subjets(...); still n ln n with same
00154 // coefficient, but marginally more efficient than manually taking
00155 // exclusive_subjets.size()
00156 //
00157 // by default, an Error is thrown
00158 int PseudoJetStructureBase::n_exclusive_subjets(const PseudoJet & /*reference*/, const double & /*dcut*/) const{
00159   throw Error("This PseudoJet structure has no implementation for n_exclusive_subjets");
00160 }
00161 
00162 // return the list of subjets obtained by unclustering the supplied
00163 // jet down to n subjets (or all constituents if there are fewer
00164 // than n).
00165 //
00166 // by default, an Error is thrown
00167 vector<PseudoJet> PseudoJetStructureBase::exclusive_subjets_up_to (const PseudoJet & /*reference*/, int /*nsub*/) const{
00168   throw Error("This PseudoJet structure has no implementation for exclusive_subjets");
00169 }
00170 
00171 // return the dij that was present in the merging nsub+1 -> nsub 
00172 // subjets inside this jet.
00173 //
00174 // by default, an Error is thrown
00175 double PseudoJetStructureBase::exclusive_subdmerge(const PseudoJet & /*reference*/, int /*nsub*/) const{
00176   throw Error("This PseudoJet structure has no implementation for exclusive_submerge");
00177 }
00178 
00179 // return the maximum dij that occurred in the whole event at the
00180 // stage that the nsub+1 -> nsub merge of subjets occurred inside 
00181 // this jet.
00182 //
00183 // by default, an Error is thrown
00184 double PseudoJetStructureBase::exclusive_subdmerge_max(const PseudoJet & /*reference*/, int /*nsub*/) const{
00185   throw Error("This PseudoJet structure has no implementation for exclusive_submerge_max");
00186 }
00187 
00188 
00189 // retrieve the pieces building the jet. 
00190 //
00191 // by default, an Error is thrown
00192 std::vector<PseudoJet> PseudoJetStructureBase::pieces(const PseudoJet & /*reference*/) const{
00193   throw Error("This PseudoJet structure has no implementation for pieces");  
00194 }
00195 
00196 // the following ones require a computation of the area in the
00197 // parent ClusterSequence (See ClusterSequenceAreaBase for details)
00198 //------------------------------------------------------------------
00199 #ifndef __FJCORE__
00200 
00201 // return the jet (scalar) area.
00202 //
00203 // by default, an Error is thrown
00204 double PseudoJetStructureBase::area(const PseudoJet & /*reference*/) const{
00205   throw Error("This PseudoJet structure has no implementation for area");
00206 }
00207 
00208 // return the error (uncertainty) associated with the determination
00209 // of the area of this jet.
00210 //
00211 // by default, an Error is thrown
00212 double PseudoJetStructureBase::area_error(const PseudoJet & /*reference*/) const{
00213   throw Error("This PseudoJet structure has no implementation for area_error");
00214 }
00215 
00216 // return the jet 4-vector area.
00217 //
00218 // by default, an Error is thrown
00219 PseudoJet PseudoJetStructureBase::area_4vector(const PseudoJet & /*reference*/) const{
00220   throw Error("This PseudoJet structure has no implementation for area_4vector");
00221 }
00222 
00223 // true if this jet is made exclusively of ghosts.
00224 //
00225 // by default, an Error is thrown
00226 bool PseudoJetStructureBase::is_pure_ghost(const PseudoJet & /*reference*/) const{
00227   throw Error("This PseudoJet structure has no implementation for is_pure_ghost");
00228 }
00229 #endif  // __FJCORE__
00230 
00231 FASTJET_END_NAMESPACE
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