void runLumi1Digi(const int nEvents=10, const int startEvent=0, TString storePath="tmpOutput", const int verboseLevel=3, const int pitch=1, const int lowSmear=1) { // ----- Timer -------------------------------------------------------- TStopwatch timer; timer.Start(); gROOT->Macro("$VMCWORKDIR/gconfig/rootlogon.C"); gSystem->Load("libSsd"); gSystem->Load("libSsdReco"); gSystem->Load("libDmlTrk"); // Input file (MC events) TString inFile=storePath+"/Lumi_MC_"; inFile += startEvent; inFile += ".root"; // Parameter file TString parFile=storePath+"/Lumi_Params_"; parFile += startEvent; parFile += ".root"; // Parameter file TString digiparFile = "digipar/lumi"; switch(pitch){ case 0:{ digiparFile += "10"; break;} case 1:{ digiparFile += "50"; break;} case 2:{ digiparFile += "100"; break;} case 3:{ digiparFile += "200"; break;} case 4:{ digiparFile += "500"; break;} case 5:{ digiparFile += "1000"; break;} } if(lowSmear==0) digiparFile += "low"; else if(lowSmear==2) digiparFile += "hi"; digiparFile += ".digi.par"; // In general, the following parts need not be touched // ======================================================================== // Output file TString outFile = storePath+"/Lumi_digi_"; outFile += startEvent; outFile += ".root"; std::cout << "DigiFileName: " << outFile.Data() << std::endl; // ----- Reconstruction run ------------------------------------------- FairRunAna *fRun= new FairRunAna(); fRun->SetInputFile(inFile); fRun->SetOutputFile(outFile); // ----- Parameter database -------------------------------------------- FairRuntimeDb* rtdb = fRun->GetRuntimeDb(); FairParRootFileIo* parInput1 = new FairParRootFileIo(kTRUE); parInput1->open(parFile.Data(),"UPDATE"); rtdb->setFirstInput(parInput1); // Bool_t kParameterMerged=kTRUE; // FairParRootFileIo* output=new FairParRootFileIo(kParameterMerged); // output->open(parOutFile); // rtdb->setOutput(output); FairParAsciiFileIo* parInput2 = new FairParAsciiFileIo(); parInput2->open(digiparFile.Data(),"in"); rtdb->setSecondInput(parInput2); fRun->LoadGeometry(); // ----- Digitization --------------------------------------- // PndMvdDigiTask* mvddigi = new PndMvdDigiTask(); // mvddigi->SetVerbose(verboseLevel); // fRun->AddTask(mvddigi); // ========================================================================= // ====== Hit Producers ====== // ========================================================================= // ----- MVD Strip hit producer --------------------------------------- // double topPitch=0.015, // botPitch=0.015, // orient=TMath::Pi()*(0.5), // skew=TMath::Pi()*(0.5); // TVector2 topAnchor(0.,0.); // TVector2 botAnchor(0.,0.); // int topFE = 10, // botFE = 4, // nrFEChannels = 128; // double threshold=3000., noise=1000.; // PndMvdStripHitProducer* mvdStripProd // = new PndMvdStripHitProducer(topPitch, botPitch, // orient, skew, // topAnchor,botAnchor, // topFE, botFE, nrFEChannels, // threshold, noise); // PndSsdStripHitProducer* ssdStripProd = new PndSsdStripHitProducer(); PndSsdStripHitProducerDif* ssdStripProd = new PndSsdStripHitProducerDif(); ssdStripProd->SetVerbose(verboseLevel); fRun->AddTask(ssdStripProd); // ----- MVD Pixel hit producer --------------------------------------- // Double_t lx=0.01, ly=0.01, threshold=600, noise=200; // PndMvdHybridHitProducer* mvdPixProd = new PndMvdHybridHitProducer(lx,ly,threshold,noise); // PndSsdHybridHitProducer* ssdPixProd = new PndSsdHybridHitProducer(); // ssdPixProd->SetVerbose(verboseLevel); // fRun->AddTask(ssdPixProd); PndSsdNoiseProducer* ssdNoiseMaker = new PndSsdNoiseProducer(); ssdNoiseMaker->SetVerbose(verboseLevel); fRun->AddTask(ssdNoiseMaker); // FairParRootFileIo* output=new FairParRootFileIo(kTRUE); // output->open(parOutFile.Data()); // rtdb->setOutput(output); rtdb->setOutput(parInput1); rtdb->print(); // ===== End of HitProducers ===== // ========================================================================= PndSsdGeoPar* geoPar = (PndSsdGeoPar*)(rtdb->getContainer("PndSsdGeoPar")); // ----- Intialise and run -------------------------------------------- fRun->Init(); fRun->Run(0,nEvents); rtdb->saveOutput(); rtdb->print(); // ----- 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\a\a" << endl; cout << endl; }