{ TStopwatch timer; timer.Start(); gDebug=0; // If it does not work, please check the path of the libs and put it by hands gROOT->LoadMacro("$VMCWORKDIR/gconfig/rootlogon.C"); rootlogon(); // Load basic libraries gROOT->LoadMacro("$VMCWORKDIR/gconfig/basiclibs.C"); basiclibs(); TString digiFile = "all.par"; TString parFile = "params_testrun1.root"; FairRunSim *fRun = new FairRunSim(); // set the MC version used // ------------------------ //fRun->SetName("TGeant3"); fRun->SetName("TGeant4"); fRun->SetOutputFile("testrun1.root"); // Set the parameters //------------------------------- TString allDigiFile = gSystem->Getenv("VMCWORKDIR"); allDigiFile += "/macro/params/"; allDigiFile += digiFile; FairRuntimeDb* rtdb = fRun->GetRuntimeDb(); FairParAsciiFileIo* parIo1 = new FairParAsciiFileIo(); parIo1->open(allDigiFile.Data(),"in"); rtdb->setFirstInput(parIo1); Bool_t kParameterMerged=kTRUE; FairParRootFileIo* output=new FairParRootFileIo(kParameterMerged); output->open(parFile); rtdb->setOutput(output); // Set Material file Name //----------------------- fRun->SetMaterials("media_pnd.geo"); // Create and add detectors //------------------------- FairModule *Cave= new PndCave("CAVE"); Cave->SetGeometryFileName("pndcave.geo"); fRun->AddModule(Cave); //FairModule *Magnet= new PndMagnet("MAGNET"); ////Magnet->SetGeometryFileName("FullSolenoid_V842.root"); //Magnet->SetGeometryFileName("FullSuperconductingSolenoid_v831.root"); //fRun->AddModule(Magnet); //FairModule *Dipole= new PndMagnet("MAGNET"); //Dipole->SetGeometryFileName("dipole.geo"); //fRun->AddModule(Dipole); FairModule *Pipe= new PndPipe("PIPE"); fRun->AddModule(Pipe); //FairDetector *Tpc = new PndTpcDetector("TPC", kTRUE); //Tpc->SetGeometryFileName("tpc.geo"); //fRun->AddModule(Tpc); //FairDetector *Mvd = new PndMvdDetector("MVD", kTRUE); //Mvd->SetGeometryFileName("MVD_v1.0_woPassiveTraps.root"); //fRun->AddModule(Mvd); //PndEmc *Emc = new PndEmc("EMC",kTRUE); //Emc->SetGeometryVersion(15); //Emc->SetStorageOfData(kFALSE); //fRun->AddModule(Emc); //FairDetector *Tof = new PndTof("TOF",kTRUE); //Tof->SetGeometryFileName("tofbarrel.geo"); //fRun->AddModule(Tof); //PndMdt *Muo = new PndMdt("MDT",kTRUE); //Muo->SetBarrel("torino"); //Muo->SetEndcap("torino"); //Muo->SetMuonFilter("torino"); //Muo->SetMdtMagnet(kTRUE); //Muo->SetMdtMFIron(kTRUE); //fRun->AddModule(Muo); //FairDetector *Gem = new PndGemDetector("GEM", kTRUE); //Gem->SetGeometryFileName("gem_3Stations.root"); //fRun->AddModule(Gem); PndDrc *Drc = new PndDrc("DIRC", kTRUE); Drc->SetRunCherenkov(kTRUE); // for fast sim Cherenkov -> kFALSE // set reflectivity for the mirror at the bar end, in case of kFALSE reflectivity = 1 = const. Drc->SetMirrorReal(kTRUE); Drc->SetDetEffAtProduction(kTRUE); //Drc->SetStopTime(200.); Drc->SetVerboseLevel(0); Drc->SetOnlyDirectPho(kFALSE); // put the geometry file you want into the next line: //Drc->SetGeometryFileName("dirc_l0_p0.root"); Drc->SetGeometryFileName("dirc_l0_p0_Mcp2a.root"); fRun->AddModule(Drc); // Create and Set Event Generator //------------------------------- FairPrimaryGenerator* primGen = new FairPrimaryGenerator(); fRun->SetGenerator(primGen); // Box Generator FairBoxGenerator* boxGen = new FairBoxGenerator(321, 1); // 321 = kaon; 1 = multipl. boxGen->SetPRange(3.,3.); // GeV/c boxGen->SetPhiRange(10.8, 10.8); // Azimuth angle range [degree] boxGen->SetThetaRange(70., 70.); // Polar angle in lab system range [degree] //boxGen->SetXYZ(0., 0., 0.); // mm o cm ?? boxGen->SetXYZ(53., 10.1, -40.); primGen->AddGenerator(boxGen); fRun->SetStoreTraj(kTRUE); // to store particle trajectories // Create and Set Magnetic Field //------------------------------- fRun->SetBeamMom(15); //PndMultiField *fField= new PndMultiField("FULL"); //fRun->SetField(fField); // EMC Hit producer //------------------------------- //PndEmcHitProducer* emcHitProd = new PndEmcHitProducer(); //fRun->AddTask(emcHitProd); /**Initialize the session*/ fRun->Init(); // Only if Geant4 if ( gMC->GetName() == TString("TGeant4") ) { gROOT->LoadMacro("$VMCWORKDIR/gconfig/g4Config2.C"); Config2(); } rtdb->setOutput(output); rtdb->saveOutput(); rtdb->print(); Int_t nEvents=10; // Transport nEvents // ----------------- fRun->Run(nEvents); timer.Stop(); Double_t rtime = timer.RealTime(); Double_t ctime = timer.CpuTime(); printf("RealTime=%f seconds, CpuTime=%f seconds\n",rtime,ctime); }