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File indexing completed on 2025-08-06 08:15:33

0001 #ifndef MACRO_G4SETUPSPHENIX_C
0002 #define MACRO_G4SETUPSPHENIX_C
0003 
0004 #include <GlobalVariables.C>
0005 
0006 #include <G4_Bbc.C>
0007 #include <G4_BlackHole.C>
0008 #include <G4_CEmc_Albedo.C>
0009 #include <G4_CEmc_Spacal.C>
0010 #include <G4_EPD.C>
0011 #include <G4_HcalIn_ref.C>
0012 #include <G4_HcalOut_ref.C>
0013 #include <G4_BeamLine.C>
0014 #include <G4_Intt.C>
0015 #include <G4_Magnet.C>
0016 #include <G4_Micromegas.C>
0017 #include <G4_Mvtx.C>
0018 #include <G4_PSTOF.C>
0019 #include <G4_Pipe.C>
0020 #include <G4_PlugDoor.C>
0021 #include <G4_TPC.C>
0022 #include <G4_TrackingService.C>
0023 #include <G4_User.C>
0024 #include <G4_World.C>
0025 #include <G4_ZDC.C>
0026 
0027 #include <g4detectors/PHG4CylinderSubsystem.h>
0028 
0029 #include <g4eval/PHG4DstCompressReco.h>
0030 
0031 #include <g4main/PHG4Reco.h>
0032 #include <g4main/PHG4TruthSubsystem.h>
0033 
0034 #include <phfield/PHFieldConfig.h>
0035 
0036 #include <g4decayer/EDecayType.hh>
0037 
0038 #include <fun4all/Fun4AllDstOutputManager.h>
0039 #include <fun4all/Fun4AllServer.h>
0040 
0041 R__LOAD_LIBRARY(libg4decayer.so)
0042 R__LOAD_LIBRARY(libg4detectors.so)
0043 
0044 void G4Init()
0045 {
0046   // Check on invalid combinations
0047   if (Enable::CEMC && Enable::CEMCALBEDO)
0048   {
0049       cout << "Enable::CEMCALBEDO and Enable::CEMC cannot be set simultanously" << endl;
0050       gSystem->Exit(1);
0051   }
0052   // load detector/material macros and execute Init() function
0053 
0054   if (Enable::PIPE) PipeInit();
0055   if (Enable::TrackingService) TrackingServiceInit();
0056   if (Enable::MVTX) MvtxInit();
0057   if (Enable::INTT) InttInit();
0058   if (Enable::TPC) TPCInit();
0059   if (Enable::MICROMEGAS) MicromegasInit();
0060   if (Enable::BBC) BbcInit();
0061   if (Enable::CEMCALBEDO) CEmcAlbedoInit();
0062   if (Enable::CEMC) CEmcInit();
0063   if (Enable::HCALIN) HCalInnerInit();
0064   if (Enable::MAGNET) MagnetInit();
0065   MagnetFieldInit(); // We want the field - even if the magnet volume is disabled
0066   if (Enable::HCALOUT) HCalOuterInit();
0067   if (Enable::PLUGDOOR) PlugDoorInit();
0068   if (Enable::EPD) EPDInit();
0069   if (Enable::BEAMLINE)
0070   {
0071     BeamLineInit();
0072     if (Enable::ZDC)
0073     {
0074       ZDCInit();
0075     }
0076   }
0077   if (Enable::USER) UserInit();
0078   if (Enable::BLACKHOLE) BlackHoleInit();
0079 }
0080 
0081 int G4Setup()
0082 {
0083   //---------------
0084   // Fun4All server
0085   //---------------
0086 
0087   Fun4AllServer *se = Fun4AllServer::instance();
0088 
0089   PHG4Reco *g4Reco = new PHG4Reco();
0090   g4Reco->set_rapidity_coverage(1.1);  // according to drawings
0091   WorldInit(g4Reco);
0092   if (G4P6DECAYER::decayType != EDecayType::kAll)
0093   {
0094     g4Reco->set_force_decay(G4P6DECAYER::decayType);
0095   }
0096 
0097   double fieldstrength;
0098   istringstream stringline(G4MAGNET::magfield);
0099   stringline >> fieldstrength;
0100   if (stringline.fail())
0101   {  // conversion to double fails -> we have a string
0102 
0103     if (G4MAGNET::magfield.find("sphenix3dbigmapxyz") != string::npos)
0104     {
0105       g4Reco->set_field_map(G4MAGNET::magfield, PHFieldConfig::Field3DCartesian);
0106     }
0107     else
0108     {
0109       g4Reco->set_field_map(G4MAGNET::magfield, PHFieldConfig::kField2D);
0110     }
0111   }
0112   else
0113   {
0114     g4Reco->set_field(fieldstrength);  // use const soleniodal field
0115   }
0116   g4Reco->set_field_rescale(G4MAGNET::magfield_rescale);
0117 
0118 // the radius is an older protection against overlaps, it is not
0119 // clear how well this works nowadays but it doesn't hurt either
0120   double radius = 0.;
0121 
0122   if (Enable::PIPE) radius = Pipe(g4Reco, radius);
0123   if (Enable::TrackingService) TrackingService(g4Reco, radius);
0124   if (Enable::MVTX) radius = Mvtx(g4Reco, radius);
0125   if (Enable::INTT) radius = Intt(g4Reco, radius);
0126   if (Enable::TPC) radius = TPC(g4Reco, radius);
0127   if (Enable::MICROMEGAS) Micromegas(g4Reco);
0128   if (Enable::BBC) Bbc(g4Reco);
0129   if (Enable::CEMCALBEDO) CEmcAlbedo(g4Reco);
0130   if (Enable::CEMC) radius = CEmc(g4Reco, radius, 8);
0131   if (Enable::HCALIN) radius = HCalInner(g4Reco, radius, 4);
0132   if (Enable::MAGNET) radius = Magnet(g4Reco, radius);
0133   if (Enable::HCALOUT) radius = HCalOuter(g4Reco, radius, 4);
0134   if (Enable::PLUGDOOR) PlugDoor(g4Reco);
0135   if (Enable::EPD) EPD(g4Reco);
0136   if (Enable::BEAMLINE)
0137   {
0138     BeamLineDefineMagnets(g4Reco);
0139     BeamLineDefineBeamPipe(g4Reco);
0140     if (Enable::ZDC)
0141     {
0142       ZDCSetup(g4Reco);
0143     }
0144   }
0145   if (Enable::USER) UserDetector(g4Reco);
0146 
0147 
0148   //----------------------------------------
0149   // BLACKHOLE
0150 
0151   if (Enable::BLACKHOLE) BlackHole(g4Reco, radius);
0152 
0153   PHG4TruthSubsystem *truth = new PHG4TruthSubsystem();
0154   g4Reco->registerSubsystem(truth);
0155 
0156   // finally adjust the world size in case the default is too small
0157   WorldSize(g4Reco, radius);
0158 
0159   se->registerSubsystem(g4Reco);
0160   return 0;
0161 }
0162 
0163 void ShowerCompress(int verbosity = 0)
0164 {
0165   Fun4AllServer *se = Fun4AllServer::instance();
0166 
0167   PHG4DstCompressReco *compress = new PHG4DstCompressReco("PHG4DstCompressReco");
0168   compress->AddHitContainer("G4HIT_PIPE");
0169   compress->AddHitContainer("G4HIT_SVTXSUPPORT");
0170   compress->AddHitContainer("G4HIT_CEMC_ELECTRONICS");
0171   compress->AddHitContainer("G4HIT_CEMC");
0172   compress->AddHitContainer("G4HIT_ABSORBER_CEMC");
0173   compress->AddHitContainer("G4HIT_CEMC_SPT");
0174   compress->AddHitContainer("G4HIT_ABSORBER_HCALIN");
0175   compress->AddHitContainer("G4HIT_HCALIN");
0176   compress->AddHitContainer("G4HIT_HCALIN_SPT");
0177   compress->AddHitContainer("G4HIT_MAGNET");
0178   compress->AddHitContainer("G4HIT_ABSORBER_HCALOUT");
0179   compress->AddHitContainer("G4HIT_HCALOUT");
0180   compress->AddHitContainer("G4HIT_BH_1");
0181   compress->AddHitContainer("G4HIT_BH_FORWARD_PLUS");
0182   compress->AddHitContainer("G4HIT_BH_FORWARD_NEG");
0183   compress->AddHitContainer("G4HIT_BBC");
0184   compress->AddCellContainer("G4CELL_CEMC");
0185   compress->AddCellContainer("G4CELL_HCALIN");
0186   compress->AddCellContainer("G4CELL_HCALOUT");
0187   compress->AddTowerContainer("TOWER_SIM_CEMC");
0188   compress->AddTowerContainer("TOWER_RAW_CEMC");
0189   compress->AddTowerContainer("TOWER_CALIB_CEMC");
0190   compress->AddTowerContainer("TOWER_SIM_HCALIN");
0191   compress->AddTowerContainer("TOWER_RAW_HCALIN");
0192   compress->AddTowerContainer("TOWER_CALIB_HCALIN");
0193   compress->AddTowerContainer("TOWER_SIM_HCALOUT");
0194   compress->AddTowerContainer("TOWER_RAW_HCALOUT");
0195   compress->AddTowerContainer("TOWER_CALIB_HCALOUT");
0196   se->registerSubsystem(compress);
0197 
0198   return;
0199 }
0200 
0201 void DstCompress(Fun4AllDstOutputManager *out)
0202 {
0203   if (out)
0204   {
0205     out->StripNode("G4HIT_PIPE");
0206     out->StripNode("G4HIT_SVTXSUPPORT");
0207     out->StripNode("G4HIT_CEMC_ELECTRONICS");
0208     out->StripNode("G4HIT_CEMC");
0209     out->StripNode("G4HIT_ABSORBER_CEMC");
0210     out->StripNode("G4HIT_CEMC_SPT");
0211     out->StripNode("G4HIT_ABSORBER_HCALIN");
0212     out->StripNode("G4HIT_HCALIN");
0213     out->StripNode("G4HIT_HCALIN_SPT");
0214     out->StripNode("G4HIT_MAGNET");
0215     out->StripNode("G4HIT_ABSORBER_HCALOUT");
0216     out->StripNode("G4HIT_HCALOUT");
0217     out->StripNode("G4HIT_BH_1");
0218     out->StripNode("G4HIT_BH_FORWARD_PLUS");
0219     out->StripNode("G4HIT_BH_FORWARD_NEG");
0220     out->StripNode("G4HIT_BBC");
0221     out->StripNode("G4CELL_CEMC");
0222     out->StripNode("G4CELL_HCALIN");
0223     out->StripNode("G4CELL_HCALOUT");
0224   }
0225 }
0226 #endif