Import Geant4 11.0.0.beta source tree

This commit is contained in:
Gabriele Cosmo
2021-06-25 16:12:29 +02:00
parent c968e26a39
commit 6399a014b6
4200 changed files with 207479 additions and 237366 deletions
@@ -64,23 +64,23 @@ B3DetectorConstruction::~B3DetectorConstruction()
void B3DetectorConstruction::DefineMaterials()
{
G4NistManager* man = G4NistManager::Instance();
G4bool isotopes = false;
G4Element* O = man->FindOrBuildElement("O" , isotopes);
G4Element* O = man->FindOrBuildElement("O" , isotopes);
G4Element* Si = man->FindOrBuildElement("Si", isotopes);
G4Element* Lu = man->FindOrBuildElement("Lu", isotopes);
G4Element* Lu = man->FindOrBuildElement("Lu", isotopes);
G4Material* LSO = new G4Material("Lu2SiO5", 7.4*g/cm3, 3);
LSO->AddElement(Lu, 2);
LSO->AddElement(Si, 1);
LSO->AddElement(O , 5);
LSO->AddElement(O , 5);
}
//....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
G4VPhysicalVolume* B3DetectorConstruction::Construct()
{
{
// Gamma detector Parameters
//
G4double cryst_dX = 6*cm, cryst_dY = 6*cm, cryst_dZ = 3*cm;
@@ -90,7 +90,7 @@ G4VPhysicalVolume* B3DetectorConstruction::Construct()
G4double dPhi = twopi/nb_cryst, half_dPhi = 0.5*dPhi;
G4double cosdPhi = std::cos(half_dPhi);
G4double tandPhi = std::tan(half_dPhi);
//
//
G4double ring_R1 = 0.5*cryst_dY/tandPhi;
G4double ring_R2 = (ring_R1+cryst_dZ)/cosdPhi;
//
@@ -99,23 +99,23 @@ G4VPhysicalVolume* B3DetectorConstruction::Construct()
G4NistManager* nist = G4NistManager::Instance();
G4Material* default_mat = nist->FindOrBuildMaterial("G4_AIR");
G4Material* cryst_mat = nist->FindOrBuildMaterial("Lu2SiO5");
//
//
// World
//
G4double world_sizeXY = 2.4*ring_R2;
G4double world_sizeZ = 1.2*detector_dZ;
G4Box* solidWorld =
G4Box* solidWorld =
new G4Box("World", //its name
0.5*world_sizeXY, 0.5*world_sizeXY, 0.5*world_sizeZ); //its size
G4LogicalVolume* logicWorld =
G4LogicalVolume* logicWorld =
new G4LogicalVolume(solidWorld, //its solid
default_mat, //its material
"World"); //its name
G4VPhysicalVolume* physWorld =
G4VPhysicalVolume* physWorld =
new G4PVPlacement(0, //no rotation
G4ThreeVector(), //at (0,0,0)
logicWorld, //its logical volume
@@ -123,64 +123,64 @@ G4VPhysicalVolume* B3DetectorConstruction::Construct()
0, //its mother volume
false, //no boolean operation
0, //copy number
fCheckOverlaps); // checking overlaps
fCheckOverlaps); // checking overlaps
//
// ring
//
G4Tubs* solidRing =
new G4Tubs("Ring", ring_R1, ring_R2, 0.5*cryst_dX, 0., twopi);
G4LogicalVolume* logicRing =
G4LogicalVolume* logicRing =
new G4LogicalVolume(solidRing, //its solid
default_mat, //its material
"Ring"); //its name
//
//
// define crystal
//
G4double gap = 0.5*mm; //a gap for wrapping
G4double dX = cryst_dX - gap, dY = cryst_dY - gap;
G4Box* solidCryst = new G4Box("crystal", dX/2, dY/2, cryst_dZ/2);
G4LogicalVolume* logicCryst =
G4LogicalVolume* logicCryst =
new G4LogicalVolume(solidCryst, //its solid
cryst_mat, //its material
"CrystalLV"); //its name
// place crystals within a ring
// place crystals within a ring
//
for (G4int icrys = 0; icrys < nb_cryst ; icrys++) {
G4double phi = icrys*dPhi;
G4RotationMatrix rotm = G4RotationMatrix();
rotm.rotateY(90*deg);
rotm.rotateY(90*deg);
rotm.rotateZ(phi);
G4ThreeVector uz = G4ThreeVector(std::cos(phi), std::sin(phi),0.);
G4ThreeVector uz = G4ThreeVector(std::cos(phi), std::sin(phi),0.);
G4ThreeVector position = (ring_R1+0.5*cryst_dZ)*uz;
G4Transform3D transform = G4Transform3D(rotm,position);
new G4PVPlacement(transform, //rotation,position
logicCryst, //its logical volume
"crystal", //its name
logicRing, //its mother volume
false, //no boolean operation
icrys, //copy number
fCheckOverlaps); // checking overlaps
fCheckOverlaps); // checking overlaps
}
//
// full detector
//
G4Tubs* solidDetector =
new G4Tubs("Detector", ring_R1, ring_R2, 0.5*detector_dZ, 0., twopi);
G4LogicalVolume* logicDetector =
G4LogicalVolume* logicDetector =
new G4LogicalVolume(solidDetector, //its solid
default_mat, //its material
"Detector"); //its name
//
// place rings within detector
//
// place rings within detector
//
G4double OG = -0.5*(detector_dZ + cryst_dX);
for (G4int iring = 0; iring < nb_rings ; iring++) {
@@ -192,12 +192,12 @@ G4VPhysicalVolume* B3DetectorConstruction::Construct()
logicDetector, //its mother volume
false, //no boolean operation
iring, //copy number
fCheckOverlaps); // checking overlaps
fCheckOverlaps); // checking overlaps
}
//
// place detector in world
//
//
new G4PVPlacement(0, //no rotation
G4ThreeVector(), //at (0,0,0)
logicDetector, //its logical volume
@@ -205,26 +205,26 @@ G4VPhysicalVolume* B3DetectorConstruction::Construct()
logicWorld, //its mother volume
false, //no boolean operation
0, //copy number
fCheckOverlaps); // checking overlaps
fCheckOverlaps); // checking overlaps
//
// patient
//
G4double patient_radius = 8*cm;
G4double patient_dZ = 10*cm;
G4double patient_dZ = 10*cm;
G4Material* patient_mat = nist->FindOrBuildMaterial("G4_BRAIN_ICRP");
G4Tubs* solidPatient =
new G4Tubs("Patient", 0., patient_radius, 0.5*patient_dZ, 0., twopi);
G4LogicalVolume* logicPatient =
G4LogicalVolume* logicPatient =
new G4LogicalVolume(solidPatient, //its solid
patient_mat, //its material
"PatientLV"); //its name
//
// place patient in world
//
//
new G4PVPlacement(0, //no rotation
G4ThreeVector(), //at (0,0,0)
logicPatient, //its logical volume
@@ -232,15 +232,15 @@ G4VPhysicalVolume* B3DetectorConstruction::Construct()
logicWorld, //its mother volume
false, //no boolean operation
0, //copy number
fCheckOverlaps); // checking overlaps
fCheckOverlaps); // checking overlaps
// Visualization attributes
//
logicRing->SetVisAttributes (G4VisAttributes::GetInvisible());
logicDetector->SetVisAttributes (G4VisAttributes::GetInvisible());
logicDetector->SetVisAttributes (G4VisAttributes::GetInvisible());
// Print materials
G4cout << *(G4Material::GetMaterialTable()) << G4endl;
G4cout << *(G4Material::GetMaterialTable()) << G4endl;
//always return the physical World
//
@@ -252,17 +252,17 @@ G4VPhysicalVolume* B3DetectorConstruction::Construct()
void B3DetectorConstruction::ConstructSDandField()
{
G4SDManager::GetSDMpointer()->SetVerboseLevel(1);
// declare crystal as a MultiFunctionalDetector scorer
//
//
G4MultiFunctionalDetector* cryst = new G4MultiFunctionalDetector("crystal");
G4SDManager::GetSDMpointer()->AddNewDetector(cryst);
G4VPrimitiveScorer* primitiv1 = new G4PSEnergyDeposit("edep");
cryst->RegisterPrimitive(primitiv1);
SetSensitiveDetector("CrystalLV",cryst);
// declare patient as a MultiFunctionalDetector scorer
//
//
G4MultiFunctionalDetector* patient = new G4MultiFunctionalDetector("patient");
G4SDManager::GetSDMpointer()->AddNewDetector(patient);
G4VPrimitiveScorer* primitiv2 = new G4PSDoseDeposit("dose");
+3 -3
View File
@@ -35,7 +35,7 @@
//....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
B3PhysicsList::B3PhysicsList()
B3PhysicsList::B3PhysicsList()
: G4VModularPhysicsList(){
SetVerboseLevel(1);
@@ -52,7 +52,7 @@ B3PhysicsList::B3PhysicsList()
//....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
B3PhysicsList::~B3PhysicsList()
{
{
}
//....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
@@ -60,4 +60,4 @@ B3PhysicsList::~B3PhysicsList()
void B3PhysicsList::SetCuts()
{
G4VUserPhysicsList::SetCuts();
}
}
@@ -43,7 +43,7 @@
B3PrimaryGeneratorAction::B3PrimaryGeneratorAction()
: G4VUserPrimaryGeneratorAction(),
fParticleGun(0)
fParticleGun(nullptr)
{
G4int n_particle = 1;
fParticleGun = new G4ParticleGun(n_particle);
@@ -55,7 +55,7 @@ B3PrimaryGeneratorAction::B3PrimaryGeneratorAction()
= particleTable->FindParticle("chargedgeantino");
fParticleGun->SetParticleDefinition(particle);
fParticleGun->SetParticlePosition(G4ThreeVector(0.,0.,0.));
fParticleGun->SetParticleEnergy(1*eV);
fParticleGun->SetParticleEnergy(1*eV);
fParticleGun->SetParticleMomentumDirection(G4ThreeVector(1.,0.,0.));
}
@@ -72,11 +72,11 @@ void B3PrimaryGeneratorAction::GeneratePrimaries(G4Event* anEvent)
{
G4ParticleDefinition* particle = fParticleGun->GetParticleDefinition();
if (particle == G4ChargedGeantino::ChargedGeantino()) {
//fluorine
//fluorine
G4int Z = 9, A = 18;
G4double ionCharge = 0.*eplus;
G4double excitEnergy = 0.*keV;
G4ParticleDefinition* ion
= G4IonTable::GetIonTable()->GetIon(Z,A,excitEnergy);
fParticleGun->SetParticleDefinition(ion);
@@ -86,14 +86,14 @@ void B3PrimaryGeneratorAction::GeneratePrimaries(G4Event* anEvent)
// randomized position
//
///G4double x0 = 0*cm, y0 = 0*cm, z0 = 0*cm;
///G4double dx0 = 0*cm, dy0 = 0*cm, dz0 = 0*cm;
///G4double dx0 = 0*cm, dy0 = 0*cm, dz0 = 0*cm;
G4double x0 = 4*cm, y0 = 4*cm, z0 = 4*cm;
G4double dx0 = 1*cm, dy0 = 1*cm, dz0 = 1*cm;
G4double dx0 = 1*cm, dy0 = 1*cm, dz0 = 1*cm;
x0 += dx0*(G4UniformRand()-0.5);
y0 += dy0*(G4UniformRand()-0.5);
z0 += dz0*(G4UniformRand()-0.5);
fParticleGun->SetParticlePosition(G4ThreeVector(x0,y0,z0));
//create vertex
//
fParticleGun->GeneratePrimaryVertex(anEvent);
@@ -23,7 +23,7 @@
// * acceptance of all terms of the Geant4 Software license. *
// ********************************************************************
//
//
//
/// \file B3StackingAction.cc
/// \brief Implementation of the B3StackingAction class
@@ -57,6 +57,6 @@ void B3bActionInitialization::Build() const
SetUserAction(new B3bRunAction);
SetUserAction(new B3PrimaryGeneratorAction);
SetUserAction(new B3StackingAction);
}
}
//....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
+23 -23
View File
@@ -40,7 +40,7 @@
//....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
B3bRun::B3bRun()
: G4Run(),
: G4Run(),
fCollID_cryst(-1),
fCollID_patient(-1),
fPrintModulo(10000),
@@ -59,60 +59,60 @@ B3bRun::~B3bRun()
void B3bRun::RecordEvent(const G4Event* event)
{
if ( fCollID_cryst < 0 ) {
fCollID_cryst
fCollID_cryst
= G4SDManager::GetSDMpointer()->GetCollectionID("crystal/edep");
//G4cout << " fCollID_cryst: " << fCollID_cryst << G4endl;
//G4cout << " fCollID_cryst: " << fCollID_cryst << G4endl;
}
if ( fCollID_patient < 0 ) {
fCollID_patient
fCollID_patient
= G4SDManager::GetSDMpointer()->GetCollectionID("patient/dose");
//G4cout << " fCollID_patient: " << fCollID_patient << G4endl;
//G4cout << " fCollID_patient: " << fCollID_patient << G4endl;
}
G4int evtNb = event->GetEventID();
if (evtNb%fPrintModulo == 0) {
if (evtNb%fPrintModulo == 0) {
G4cout << G4endl << "---> end of event: " << evtNb << G4endl;
}
}
//Hits collections
//
//
G4HCofThisEvent* HCE = event->GetHCofThisEvent();
if(!HCE) return;
//Energy in crystals : identify 'good events'
//
const G4double eThreshold = 500*keV;
G4int nbOfFired = 0;
G4THitsMap<G4double>* evtMap =
G4THitsMap<G4double>* evtMap =
static_cast<G4THitsMap<G4double>*>(HCE->GetHC(fCollID_cryst));
std::map<G4int,G4double*>::iterator itr;
for (itr = evtMap->GetMap()->begin(); itr != evtMap->GetMap()->end(); itr++) {
G4double edep = *(itr->second);
if (edep > eThreshold) nbOfFired++;
///G4int copyNb = (itr->first);
///G4cout << G4endl << " cryst" << copyNb << ": " << edep/keV << " keV ";
}
}
if (nbOfFired == 2) fGoodEvents++;
//Dose deposit in patient
//
G4double dose = 0.;
evtMap = static_cast<G4THitsMap<G4double>*>(HCE->GetHC(fCollID_patient));
for (itr = evtMap->GetMap()->begin(); itr != evtMap->GetMap()->end(); itr++) {
///G4int copyNb = (itr->first);
dose = *(itr->second);
}
fSumDose += dose;
fStatDose += dose;
G4Run::RecordEvent(event);
}
G4Run::RecordEvent(event);
}
//....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
@@ -122,7 +122,7 @@ void B3bRun::Merge(const G4Run* aRun)
fGoodEvents += localRun->fGoodEvents;
fSumDose += localRun->fSumDose;
fStatDose += localRun->fStatDose;
G4Run::Merge(aRun);
}
G4Run::Merge(aRun);
}
//....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
+15 -15
View File
@@ -40,18 +40,18 @@
B3bRunAction::B3bRunAction()
: G4UserRunAction()
{
{
//add new units for dose
//
//
const G4double milligray = 1.e-3*gray;
const G4double microgray = 1.e-6*gray;
const G4double nanogray = 1.e-9*gray;
const G4double nanogray = 1.e-9*gray;
const G4double picogray = 1.e-12*gray;
new G4UnitDefinition("milligray", "milliGy" , "Dose", milligray);
new G4UnitDefinition("microgray", "microGy" , "Dose", microgray);
new G4UnitDefinition("nanogray" , "nanoGy" , "Dose", nanogray);
new G4UnitDefinition("picogray" , "picoGy" , "Dose", picogray);
new G4UnitDefinition("picogray" , "picoGy" , "Dose", picogray);
}
//....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
@@ -67,9 +67,9 @@ G4Run* B3bRunAction::GenerateRun()
//....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
void B3bRunAction::BeginOfRunAction(const G4Run* run)
{
{
G4cout << "### Run " << run->GetRunID() << " start." << G4endl;
//inform the runManager to save random number seed
G4RunManager::GetRunManager()->SetRandomNumberStore(false);
}
@@ -80,7 +80,7 @@ void B3bRunAction::EndOfRunAction(const G4Run* run)
{
G4int nofEvents = run->GetNumberOfEvent();
if (nofEvents == 0) return;
// Run conditions
// note: There is no primary generator action object for "master"
// run manager for multi-threaded mode.
@@ -88,20 +88,20 @@ void B3bRunAction::EndOfRunAction(const G4Run* run)
= static_cast<const B3PrimaryGeneratorAction*>(
G4RunManager::GetRunManager()->GetUserPrimaryGeneratorAction());
G4String partName;
if (generatorAction)
if (generatorAction)
{
G4ParticleDefinition* particle
G4ParticleDefinition* particle
= generatorAction->GetParticleGun()->GetParticleDefinition();
partName = particle->GetParticleName();
}
}
//results
//
const B3bRun* b3Run = static_cast<const B3bRun*>(run);
G4int nbGoodEvents = b3Run->GetNbGoodEvents();
G4double sumDose = b3Run->GetSumDose();
G4StatAnalysis statDose = b3Run->GetStatDose();
//print
//
if (IsMaster())
@@ -119,13 +119,13 @@ void B3bRunAction::EndOfRunAction(const G4Run* run)
<< "--------------------End of Local Run------------------------"
<< G4endl
<< " The run was " << nofEvents << " "<< partName;
}
}
statDose /= gray;
G4cout
<< "; Nb of 'good' e+ annihilations: " << nbGoodEvents << G4endl
<< " Total dose in patient : " << G4BestUnit(sumDose, "Dose") << G4endl
<< " Total dose in patient : " << statDose << " Gy" << G4endl
<< "------------------------------------------------------------" << G4endl
<< "------------------------------------------------------------" << G4endl
<< G4endl;
}