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Copy pathGeneratorEPOS4NeNe536TeV.C
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78 lines (67 loc) · 1.95 KB
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int External()
{
std::string path{"o2sim_Kine.root"};
// Check that file exists, can be opened and has the correct tree
TFile file(path.c_str(), "READ");
if (file.IsZombie())
{
std::cerr << "Cannot open ROOT file " << path << "\n";
return 1;
}
auto tree = (TTree*)file.Get("o2sim");
if (!tree)
{
std::cerr << "Cannot find tree o2sim in file " << path << "\n";
return 1;
}
std::vector<o2::MCTrack>* tracks{};
tree->SetBranchAddress("MCTrack", &tracks);
// Check if all events are filled
auto nEvents = tree->GetEntries();
for (Long64_t i = 0; i < nEvents; ++i)
{
tree->GetEntry(i);
if (tracks->empty())
{
std::cerr << "Empty entry found at event " << i << "\n";
return 1;
}
}
// Check if there is 1 event, as customarily set in the ini file
// Heavy-ion collisions with hydro and hadronic cascade are very slow to simulate
if (nEvents != 10)
{
std::cerr << "Expected 10 events, got " << nEvents << "\n";
return 1;
}
// ---- Neon-Neon parameters ----
constexpr int kNeonPDG = 1000100200; // Ne-20 ion
constexpr double kEnucleon = 5360.; // GeV per nucleon
constexpr int kA = 20; // Neon mass number
constexpr double kNeonEnergy = kA * kEnucleon / 2.0; // beam energy in GeV
// Check if each event has two neon ions at expected energy
for (int i = 0; i < nEvents; i++)
{
tree->GetEntry(i);
int count = 0;
for (int idxMCTrack = 0; idxMCTrack < tracks->size(); ++idxMCTrack)
{
auto track = tracks->at(idxMCTrack);
double energy = track.GetEnergy();
// 50 MeV tolerance (floating point safety)
if (std::abs(energy - kNeonEnergy) < 5e-2 &&
track.GetPdgCode() == kNeonPDG)
{
count++;
}
}
if (count < 2)
{
std::cerr << "Event " << i
<< " has less than 2 neon ions at "
<< kNeonEnergy << " GeV\n";
return 1;
}
}
return 0;
}