// -------------------------------------------------------------------------- // // Macro to create a geometry file for the TRD // This file is needed to create the digi parameters as // next step // // F. Uhlig 07.05.2010 // // D. Emschermann - 26.05.2010 - fix TRD geo input file // -------------------------------------------------------------------------- //void create_geometry_file(TString geomFile="trd_squared_modules.geo") void create_geometry_file(TString geomFile="trd_standard.geo") { // ======================================================================== // Adjust this part according to your requirements //Extract Filename without extension and path //TODO: Do this in a better way. TString fileName = geomFile; fileName.ReplaceAll(".geo",""); if (fileName.Contains("/")){ fileName=fileName("/.*$"); //extract substring with filename fileName.ReplaceAll("/",""); } // cout<<"fileName: "<Getenv("VMCWORKDIR"); TString inFile = inDir + "/input/urqmd.ftn14"; TString outDir = "data"; TString outFile = outDir + "/test.mc."+ fileName + ".root"; TString parFile = outDir + "/params.root"; // ----- Geometries ----------------------------------------------------- TString caveGeom = "cave.geo"; TString trdGeom = "../macro/trd/" + geomFile; // TString trdGeom = geomFile; TString trdGeomOut = "geofile_" + fileName + ".root"; // In general, the following parts need not be touched // ======================================================================== // ---- Debug option ------------------------------------------------- gDebug = 0; // ------------------------------------------------------------------------ // ----- Timer -------------------------------------------------------- TStopwatch timer; timer.Start(); // ------------------------------------------------------------------------ // ---- Load libraries ------------------------------------------------- gROOT->LoadMacro("$VMCWORKDIR/gconfig/basiclibs.C"); basiclibs(); gSystem->Load("libGeoBase"); gSystem->Load("libParBase"); gSystem->Load("libBase"); gSystem->Load("libCbmBase"); gSystem->Load("libCbmData"); gSystem->Load("libField"); gSystem->Load("libGen"); gSystem->Load("libPassive"); gSystem->Load("libTrd"); // ----------------------------------------------------------------------- // ----- Create simulation run ---------------------------------------- FairRunSim* fRun = new FairRunSim(); fRun->SetName("TGeant3"); // Transport engine fRun->SetOutputFile(outFile); // Output file FairRuntimeDb* rtdb = fRun->GetRuntimeDb(); // ------------------------------------------------------------------------ // ----- Create media ------------------------------------------------- fRun->SetMaterials("media.geo"); // Materials // ------------------------------------------------------------------------ // ----- Create detectors and passive volumes ------------------------- if ( caveGeom != "" ) { FairModule* cave = new CbmCave("CAVE"); cave->SetGeometryFileName(caveGeom); fRun->AddModule(cave); } if ( trdGeom != "" ) { FairDetector* trd = new CbmTrd("TRD",kTRUE ); trd->SetGeometryFileName(trdGeom); fRun->AddModule(trd); } // ------------------------------------------------------------------------ FairPrimaryGenerator* primGen = new FairPrimaryGenerator(); fRun->SetGenerator(primGen); FairBoxGenerator* boxGen1 = new FairBoxGenerator(11, 20); boxGen1->SetPRange(2.,2.); boxGen1->SetPhiRange(0.,0.); boxGen1->SetThetaRange(0.,0.); boxGen1->SetCosTheta(); boxGen1->Init(); primGen->AddGenerator(boxGen1); // Constant Field CbmFieldConst *fMagField1=new CbmFieldConst(); fMagField1->SetField(0, 14 ,0 ); // values are in kG fMagField1->SetFieldRegion(-74, -39 ,-22 , 74, 39 , 160 ); fRun->SetField(fMagField1); // ----- Run initialisation ------------------------------------------- fRun->Init(); // ------------------------------------------------------------------------ fRun->Run(1); // Create separate file with the geomanager only // This version will work only with new versions of // the base classes fRun->CreateGeometryFile(trdGeomOut); // ----- Finish ------------------------------------------------------- timer.Stop(); Double_t rtime = timer.RealTime(); Double_t ctime = timer.CpuTime(); cout << endl << endl; cout << "Macro finished succesfully." << endl; cout << "Output file is " << outFile << endl; cout << "Parameter file is " << parFile << endl; cout << "Real time " << rtime << " s, CPU time " << ctime << "s" << endl << endl; // ------------------------------------------------------------------------ cout << " Test passed" << endl; cout << " All ok " << endl; // fix segfault - 11.05.2012 // exit(0); }