FastJet  3.4.0
PxConePlugin.cc
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30 
31 #include "fastjet/PxConePlugin.hh"
32 
33 #include "fastjet/ClusterSequence.hh"
34 #include <sstream>
35 
36 // pxcone stuff
37 #include "pxcone.h"
38 
39 
40 FASTJET_BEGIN_NAMESPACE // defined in fastjet/internal/base.hh
41 
42 using namespace std;
43 
44 thread_safety_helpers::FirstTimeTrue PxConePlugin::_first_time;
45 
46 string PxConePlugin::description () const {
47  ostringstream desc;
48 
49  desc << "PxCone jet algorithm with "
50  << "cone_radius = " << cone_radius () << ", "
51  << "min_jet_energy = " << min_jet_energy () << ", "
52  << "overlap_threshold = " << overlap_threshold () << ", "
53  << "E_scheme_jets = " << E_scheme_jets () << ", "
54  << "mode (1=e+e-, 2=hh) = " << _mode
55  << " (NB: non-standard version of PxCone, containing small bug fixes by Gavin Salam)";
56 
57  return desc.str();
58 }
59 
60 
61 void PxConePlugin::run_clustering(ClusterSequence & clust_seq) const {
62  // print a banner if we run this for the first time
63  //_print_banner(clust_seq.fastjet_banner_stream());
64 
65  // only have hh mode
66  //int mode = 2;
67 
68  int ntrak = clust_seq.jets().size(), itkdm = 4;
69  double *ptrak = new double[ntrak*4+1];
70  for (int i = 0; i < ntrak; i++) {
71  ptrak[4*i+0] = clust_seq.jets()[i].px();
72  ptrak[4*i+1] = clust_seq.jets()[i].py();
73  ptrak[4*i+2] = clust_seq.jets()[i].pz();
74  ptrak[4*i+3] = clust_seq.jets()[i].E();
75  }
76 
77  // max number of allowed jets
78  int mxjet = ntrak;
79  int njet;
80  double *pjet = new double[mxjet*5+1];
81  int *ipass = new int[ntrak+1];
82  int *ijmul = new int[mxjet+1];
83  int ierr;
84 
85  // run pxcone
86  pxcone(
87  _mode , // 1=>e+e-, 2=>hadron-hadron
88  ntrak , // Number of particles
89  itkdm , // First dimension of PTRAK array:
90  ptrak , // Array of particle 4-momenta (Px,Py,Pz,E)
91  cone_radius() , // Cone size (half angle) in radians
92  min_jet_energy() , // Minimum Jet energy (GeV)
93  overlap_threshold() , // Maximum fraction of overlap energy in a jet
94  mxjet , // Maximum possible number of jets
95  njet , // Number of jets found
96  pjet , // 5-vectors of jets
97  ipass, // Particle k belongs to jet number IPASS(k)-1
98  // IPASS = -1 if not assosciated to a jet
99  ijmul, // Jet i contains IJMUL[i] particles
100  ierr // = 0 if all is OK ; = -1 otherwise
101  );
102 
103  if (ierr != 0) throw Error("An error occurred while running PXCONE");
104 
105  // now transfer information back
106  valarray<int> last_index_created(njet);
107 
108  vector<vector<int> > jet_particle_content(njet);
109 
110  // get a list of particles in each jet
111  for (int itrak = 0; itrak < ntrak; itrak++) {
112  int jet_i = ipass[itrak] - 1;
113  if (jet_i >= 0) jet_particle_content[jet_i].push_back(itrak);
114  }
115 
116  // now transfer the jets back into our own structure -- we will
117  // mimic the cone code with a sequential recombination sequence in
118  // which the jets are built up by adding one particle at a time
119  for(int ipxjet = njet-1; ipxjet >= 0; ipxjet--) {
120  const vector<int> & jet_trak_list = jet_particle_content[ipxjet];
121  int jet_k = jet_trak_list[0];
122 
123  for (unsigned ilist = 1; ilist < jet_trak_list.size(); ilist++) {
124  int jet_i = jet_k;
125  // retrieve our misappropriated index for the jet
126  int jet_j = jet_trak_list[ilist];
127  // do a fake recombination step with dij=0
128  double dij = 0.0;
129  //clust_seq.plugin_record_ij_recombination(jet_i, jet_j, dij, jet_k);
130  if (ilist != jet_trak_list.size()-1 || E_scheme_jets()) {
131  // our E-scheme recombination in cases where it doesn't matter
132  clust_seq.plugin_record_ij_recombination(jet_i, jet_j, dij, jet_k);
133  } else {
134  // put in pxcone's momentum for the last recombination so that the
135  // final inclusive jet corresponds exactly to PXCONE's
136  clust_seq.plugin_record_ij_recombination(jet_i, jet_j, dij,
137  PseudoJet(pjet[5*ipxjet+0],pjet[5*ipxjet+1],
138  pjet[5*ipxjet+2],pjet[5*ipxjet+3]),
139  jet_k);
140  }
141  }
142 
143  // NB: put a sensible looking d_iB just to be nice...
144  double d_iB = clust_seq.jets()[jet_k].perp2();
145  clust_seq.plugin_record_iB_recombination(jet_k, d_iB);
146  }
147 
148 
149  //// following code is for testing only
150  //cout << endl;
151  //for (int ijet = 0; ijet < njet; ijet++) {
152  // PseudoJet jet(pjet[ijet][0],pjet[ijet][1],pjet[ijet][2],pjet[ijet][3]);
153  // cout << jet.perp() << " " << jet.rap() << endl;
154  //}
155  //cout << "-----------------------------------------------------\n";
156  //vector<PseudoJet> ourjets(clust_seq.inclusive_jets());
157  //for (vector<PseudoJet>::const_iterator ourjet = ourjets.begin();
158  // ourjet != ourjets.end(); ourjet++) {
159  // cout << ourjet->perp() << " " << ourjet->rap() << endl;
160  //}
161  ////cout << endl;
162 
163  delete[] ptrak;
164  delete[] ipass;
165  delete[] ijmul;
166  delete[] pjet;
167 }
168 
169 // print a banner for reference to the 3rd-party code
170 void PxConePlugin::_print_banner(ostream *ostr) const{
171  if (! _first_time()) return;
172 
173  // make sure the user has not set the banner stream to NULL
174  if (!ostr) return;
175 
176  (*ostr) << "#-------------------------------------------------------------------------" << endl;
177  (*ostr) << "# You are running the PxCone plugin for FastJet " << endl;
178  (*ostr) << "# Original code by the Luis Del Pozo, David Ward and Michael H. Seymour " << endl;
179  (*ostr) << "# If you use this plugin, please cite " << endl;
180  (*ostr) << "# M. H. Seymour and C. Tevlin, JHEP 0611 (2006) 052 [hep-ph/0609100]. " << endl;
181  (*ostr) << "# in addition to the usual FastJet reference. " << endl;
182  (*ostr) << "#-------------------------------------------------------------------------" << endl;
183 
184  // make sure we really have the output done.
185  ostr->flush();
186 }
187 
188 FASTJET_END_NAMESPACE // defined in fastjet/internal/base.hh
deals with clustering
void plugin_record_iB_recombination(int jet_i, double diB)
record the fact that there has been a recombination between jets()[jet_i] and the beam,...
const std::vector< PseudoJet > & jets() const
allow the user to access the internally stored _jets() array, which contains both the initial particl...
void plugin_record_ij_recombination(int jet_i, int jet_j, double dij, int &newjet_k)
record the fact that there has been a recombination between jets()[jet_i] and jets()[jet_k],...
base class corresponding to errors that can be thrown by FastJet
Definition: Error.hh:52
Class to contain pseudojets, including minimal information of use to jet-clustering routines.
Definition: PseudoJet.hh:68