File indexing completed on 2025-01-18 10:17:17
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0005 #include "HepMC3/GenEvent.h"
0006 #include "HepMC3/ReaderAscii.h"
0007 #include "HepMC3/WriterAscii.h"
0008 #include "HepMC3/Print.h"
0009
0010 #include <iostream>
0011 #include <random>
0012 #include <cmath>
0013 #include <math.h>
0014 #include <TMath.h>
0015
0016 using namespace HepMC3;
0017
0018
0019 void drich_hepmc_pdg_writer(const char* out_fname, int n_events)
0020 {
0021 auto *DatabasePDG = new TDatabasePDG();
0022
0023 auto *pion = DatabasePDG->GetParticle(211), *kaon = DatabasePDG->GetParticle(321);
0024
0025 WriterAscii hepmc_output(out_fname);
0026 int events_parsed = 0;
0027 GenEvent evt(Units::GEV, Units::MM);
0028
0029
0030 unsigned int seed = 0x12345678;
0031 std::cout << "init seed for random generator is " << seed << std::endl;
0032
0033 TRandom *rdmn_gen = new TRandom(seed);
0034
0035 for (events_parsed = 0; events_parsed < n_events; events_parsed++) {
0036
0037
0038
0039 GenParticlePtr p1 =
0040 std::make_shared<GenParticle>(FourVector(0.0, 0.0, 12.0, 12.0), 11, 4);
0041 GenParticlePtr p2 = std::make_shared<GenParticle>(
0042 FourVector(0.0, 0.0, 100.0, 100.004), 2212, 4);
0043
0044 GenVertexPtr v1 = std::make_shared<GenVertex>();
0045 v1->add_particle_in(p1);
0046 v1->add_particle_in(p2);
0047
0048 {
0049 Double_t eta = rdmn_gen->Uniform(2.40, 2.41);
0050 Double_t th = 2*std::atan(exp(-eta));
0051 Double_t p = rdmn_gen->Uniform(50.0, 50.1);
0052 Double_t phi = rdmn_gen->Uniform(0.0, 2*M_PI);
0053
0054 Double_t px = p * std::cos(phi) * std::sin(th);
0055 Double_t py = p * std::sin(phi) * std::sin(th);
0056 Double_t pz = p * std::cos(th);
0057
0058 auto particle = events_parsed%2 ? pion : kaon;
0059 GenParticlePtr pq = std::make_shared<GenParticle>(FourVector(
0060 px, py, pz,
0061 sqrt(p*p + pow(particle->Mass(), 2))),
0062 particle->PdgCode(), 1);
0063 v1->add_particle_out(pq);
0064 }
0065
0066 evt.add_vertex(v1);
0067
0068 if (events_parsed == 0) {
0069 std::cout << "First event: " << std::endl;
0070 Print::listing(evt);
0071 }
0072
0073 hepmc_output.write_event(evt);
0074 if (events_parsed % 10000 == 0) {
0075 std::cout << "Event: " << events_parsed << std::endl;
0076 }
0077 evt.clear();
0078 }
0079 hepmc_output.close();
0080 std::cout << "Events parsed and written: " << events_parsed << std::endl;
0081 exit(0);
0082 }