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geant4/examples/advanced/hadrontherapy/hadrontherapy.cc
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2024-12-06 11:11:40 +01:00

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//
// ********************************************************************
// * License and Disclaimer *
// * *
// * The Geant4 software is copyright of the Copyright Holders of *
// * the Geant4 Collaboration. It is provided under the terms and *
// * conditions of the Geant4 Software License, included in the file *
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// * include a list of copyright holders. *
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// * Neither the authors of this software system, nor their employing *
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// * work make any representation or warranty, express or implied, *
// * regarding this software system or assume any liability for its *
// * use. Please see the license in the file LICENSE and URL above *
// * for the full disclaimer and the limitation of liability. *
// * *
// * This code implementation is the result of the scientific and *
// * technical work of the GEANT4 collaboration. *
// * By using, copying, modifying or distributing the software (or *
// * any work based on the software) you agree to acknowledge its *
// * use in resulting scientific publications, and indicate your *
// * acceptance of all terms of the Geant4 Software license. *
// ********************************************************************
//
// ----------------------------------------------------------------------------
// GEANT 4 - Hadrontherapy example
// ----------------------------------------------------------------------------
//
// MAIN AUTHORS
// ====================
// G.A.P. Cirrone(a)*, L. Pandola(a), G. Petringa(a), S.Fattori(a), A.Sciuto(a)
// *Corresponding author, email to pablo.cirrone@lns.infn.it
//
//
// ==========> PAST CONTRIBUTORS <==========
//
// R.Calcagno(a), G.Danielsen (b), F.Di Rosa(a),
// S.Guatelli(c), A.Heikkinen(b), P.Kaitaniemi(b),
// A.Lechner(d), S.E.Mazzaglia(a), Z. Mei(h), G.Milluzzo(a),
// M.G.Pia(e), F.Romano(a), G.Russo(a,g),
// M.Russo(a), A.Tramontana (a), A.Varisano(a)
//
// (a) Laboratori Nazionali del Sud of INFN, Catania, Italy
// (b) Helsinki Institute of Physics, Helsinki, Finland
// (c) University of Wallongong, Australia
// (d) CERN, Geneve, Switzwerland
// (e) INFN Section of Genova, Genova, Italy
// (f) Physics and Astronomy Department, Univ. of Catania, Catania, Italy
// (g) CNR-IBFM, Italy
// (h) Institute of Applied Electromagnetic Engineering(IAEE)
// Huazhong University of Science and Technology(HUST), Wuhan, China
//
//
// WEB
// ===========
// https://twiki.cern.ch/twiki/bin/view/Geant4/AdvancedExamplesHadrontherapy
//
// ----------------------------------------------------------------------------
#include "G4RunManager.hh"
#include "G4UImanager.hh"
#include "G4PhysListFactory.hh"
#include "G4VModularPhysicsList.hh"
#include "HadrontherapyEventAction.hh"
#include "HadrontherapyPhysicsList.hh"
#include "HadrontherapyDetectorSD.hh"
#include "HadrontherapyPrimaryGeneratorAction.hh"
#include "HadrontherapyRunAction.hh"
#include "HadrontherapyMatrix.hh"
#include "Randomize.hh"
#include "G4UImessenger.hh"
#include "globals.hh"
#include "HadrontherapySteppingAction.hh"
#include "HadrontherapyGeometryController.hh"
#include "HadrontherapyGeometryMessenger.hh"
#include "HadrontherapyInteractionParameters.hh"
#include "HadrontherapyLet.hh"
#include "G4ScoringManager.hh"
#include "G4ParallelWorldPhysics.hh"
#include <time.h>
#include "G4Timer.hh"
#include "G4RunManagerFactory.hh"
#include "HadrontherapyActionInitialization.hh"
#include "G4VisExecutive.hh"
#include "G4UIExecutive.hh"
#include "QBBC.hh"
//////////////////////////////////////////////////////////////////////////////////////////////
int main(int argc ,char ** argv)
{
// Detect interactive mode (if no arguments) and define UI session
//
G4UIExecutive* ui = nullptr;
if ( argc == 1 ) { ui = new G4UIExecutive(argc, argv); }
//Instantiate the G4Timer object, to monitor the CPU time spent for
//the entire execution
G4Timer* theTimer = new G4Timer();
//Start the benchmark
theTimer->Start();
// Set the Random engine
// The following guarantees random generation also for different runs
// in multithread
CLHEP::RanluxEngine defaultEngine( 1234567, 4 );
G4Random::setTheEngine( &defaultEngine );
G4int seed = (G4int) time( NULL );
G4Random::setTheSeed( seed );
// Construct the default run manager
//
auto* runManager = G4RunManagerFactory::CreateRunManager(G4RunManagerType::Default);
// Define the number of threads for the simulation runs
G4int nThreads = 4;
runManager->SetNumberOfThreads(nThreads);
// Geometry controller is responsible for instantiating the geometries.
//
HadrontherapyGeometryController *geometryController = new HadrontherapyGeometryController();
// Connect the geometry controller to the G4 user interface
//
HadrontherapyGeometryMessenger *geometryMessenger = new HadrontherapyGeometryMessenger(geometryController);
G4ScoringManager *scoringManager = G4ScoringManager::GetScoringManager();
scoringManager->SetVerboseLevel(1);
// Initialize the default Hadrontherapy geometry
geometryController->SetGeometry("default");
// Initialize the physics
G4PhysListFactory factory;
G4VModularPhysicsList* physicsList = 0;
physicsList = new HadrontherapyPhysicsList();
if (physicsList)
{
G4cout << "Going to register G4ParallelWorldPhysics" << G4endl;
physicsList -> RegisterPhysics(new G4ParallelWorldPhysics("DetectorROGeometry"));
}
// Initialisations of physics
runManager->SetUserInitialization(physicsList);
// Initialisation of the Actions
runManager->SetUserInitialization(new HadrontherapyActionInitialization);
// Initialize command based scoring
G4ScoringManager::GetScoringManager();
// Interaction data: stopping powers
//
HadrontherapyInteractionParameters* pInteraction = new HadrontherapyInteractionParameters(true);
// Initialize analysis
//
HadrontherapyAnalysis* analysis = HadrontherapyAnalysis::GetInstance();
// Initialise the Visualisation
//
auto visManager = new G4VisExecutive(argc, argv);
visManager -> Initialize();
//** Get the pointer to the User Interface manager
//
auto UImanager = G4UImanager::GetUIpointer();
if ( !ui ) {
// batch mode
G4String command = "/control/execute ";
G4String fileName = argv[1];
UImanager->ApplyCommand(command+fileName);
}
else {
UImanager -> ApplyCommand("/control/macroPath macro");
UImanager -> ApplyCommand("/control/execute macro/defaultMacro.mac");
ui -> SessionStart();
delete ui;
}
delete visManager;
//Stop the benchmark here
theTimer->Stop();
G4cout << "The simulation took: " << theTimer->GetRealElapsed() << " s to run (real time)"
<< G4endl;
// Job termination
// Free the store: user actions, physics_list and detector_description are
// owned and deleted by the run manager, so they should not be deleted
// in the main() program !
if ( HadrontherapyMatrix * pMatrix = HadrontherapyMatrix::GetInstance() )
{
// pMatrix -> TotalEnergyDeposit();
pMatrix -> StoreDoseFluenceAscii();
}
if (HadrontherapyLet *let = HadrontherapyLet::GetInstance())
if(let -> doCalculation)
{
let -> LetOutput(); // Calculate let
let -> StoreLetAscii(); // Store it
}
delete geometryMessenger;
delete geometryController;
delete pInteraction;
delete runManager;
delete analysis;
return 0;
}