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exampleRMC01.cc
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30 // $Id: exampleRMC01.cc 110378 2018-05-22 07:43:50Z gcosmo $
31 //
32 //
33 // --------------------------------------------------------------
34 // GEANT 4 - exampleRMC01
35 //
36 // --------------------------------------------------------------
37 // Comments
38 //
39 // This example intends to show how to use the adjoint/reverse simulation mode.
40 //
41 // --------------------------------------------------------------
42 
43 //....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
44 //....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
45 
46 #include "G4Types.hh"
47 
48 #include "G4RunManager.hh"
49 #include "G4UImanager.hh"
50 
51 #include "Randomize.hh"
52 
53 #include "G4VisExecutive.hh"
54 #include "G4UIExecutive.hh"
55 
56 #include "G4AdjointSimManager.hh"
59 #include "RMC01EventAction.hh"
60 #include "RMC01RunAction.hh"
61 #include "G4AdjointPhysicsList.hh"
62 
63 #include "G4AdjointSimManager.hh"
65 
66 //....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
67 
68 int main(int argc,char** argv) {
69 
70  // Instantiate G4UIExecutive if interactive mode
71  G4UIExecutive* ui = nullptr;
72  if ( argc == 1 ) {
73  ui = new G4UIExecutive(argc, argv);
74  }
75 
76  // Construct the default run manager
77  G4RunManager * theRunManager = new G4RunManager;
78 
79 
81 
82  //Physics and geometry are declared as in a normal G4 application
83  //--------------------------------------------
84  theRunManager->SetUserInitialization(detector);
85  theRunManager->SetUserInitialization(new G4AdjointPhysicsList);
86 
87  theRunManager->SetUserAction(new RMC01PrimaryGeneratorAction);
88  theRunManager->SetUserAction(new RMC01EventAction);
89  RMC01RunAction* theRunAction = new RMC01RunAction;
90  theRunManager->SetUserAction(theRunAction);
91 
92  //The adjoint simulation manager will control the Reverse MC mode
93  //---------------------------------------------------------------
94 
95  G4AdjointSimManager* theAdjointSimManager
97 
98  //It is possible to define action that will be used during
99  // the adjoint tracking phase
100 
101  theAdjointSimManager->SetAdjointRunAction(theRunAction);
102  //theAdjointSimManager->SetAdjointEventAction(new RMC01AdjointEventAction);
103  theAdjointSimManager->SetAdjointEventAction(new RMC01EventAction);
104 
105  // visualization manager
106  G4VisManager* visManager = new G4VisExecutive;
107  visManager->Initialize();
108 
109  // get the pointer to the User Interface manager
110  G4UImanager* UImanager = G4UImanager::GetUIpointer();
111 
112  if (!ui) // batch mode
113  {
114  G4String command = "/control/execute ";
115  G4String fileName = argv[1];
116  UImanager->ApplyCommand(command+fileName);
117  }
118  else
119  { // interactive mode : define UI session
120  ui->SessionStart();
121  delete ui;
122  }
123 
124  // job termination
125  delete visManager;
126  delete theRunManager;
127 
128  return 0;
129 }
130 
131 //....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
void SetAdjointRunAction(G4UserRunAction *anAction)
Definition of the RMC01EventAction class.
void SetAdjointEventAction(G4UserEventAction *anAction)
G4int ApplyCommand(const char *aCommand)
Definition: G4UImanager.cc:466
virtual void SetUserAction(G4UserRunAction *userAction)
static G4UImanager * GetUIpointer()
Definition: G4UImanager.cc:73
virtual void SetUserInitialization(G4VUserDetectorConstruction *userInit)
Definition of the RMC01DetectorConstruction class.
Definition of the RMC01RunAction class.
Definition of the RMC01AdjointEventAction class.
int main(int argc, char **argv)
Definition: genwindef.cc:359
Definition of the RMC01PrimaryGeneratorAction class.
Definition of the G4AdjointPhysicsList class.
void Initialize()
static G4AdjointSimManager * GetInstance()