272 lines
10 KiB
C++
272 lines
10 KiB
C++
//
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// ********************************************************************
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// * License and Disclaimer *
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// * *
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// * The Geant4 software is copyright of the Copyright Holders of *
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// * the Geant4 Collaboration. It is provided under the terms and *
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// * conditions of the Geant4 Software License, included in the file *
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// * LICENSE and available at http://cern.ch/geant4/license . These *
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// * include a list of copyright holders. *
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// * *
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// * Neither the authors of this software system, nor their employing *
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// * institutes,nor the agencies providing financial support for this *
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// * work make any representation or warranty, express or implied, *
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// * regarding this software system or assume any liability for its *
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// * use. Please see the license in the file LICENSE and URL above *
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// * for the full disclaimer and the limitation of liability. *
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// * *
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// * This code implementation is the result of the scientific and *
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// * technical work of the GEANT4 collaboration. *
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// * By using, copying, modifying or distributing the software (or *
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// * any work based on the software) you agree to acknowledge its *
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// * use in resulting scientific publications, and indicate your *
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// * acceptance of all terms of the Geant4 Software license. *
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// ********************************************************************
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//
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// ------------------------------------------------------------
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//
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// This class is for adjoint process equivalent to direct process
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//
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// ------------------------------------------------------------
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// Created by L.Desorgher 25 Sept. 2009
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// ------------------------------------------------------------
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#include "G4AdjointProcessEquivalentToDirectProcess.hh"
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#include "G4DynamicParticle.hh"
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#include "G4ParticleDefinition.hh"
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#include "G4VProcess.hh"
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G4AdjointProcessEquivalentToDirectProcess::
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G4AdjointProcessEquivalentToDirectProcess(
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const G4String& aName, G4VProcess* aProcess,
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G4ParticleDefinition* fwd_particle_def)
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: G4VProcess(aName)
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{
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fDirectProcess = aProcess;
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theProcessType = fDirectProcess->GetProcessType();
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fFwdParticleDef = fwd_particle_def;
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}
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G4AdjointProcessEquivalentToDirectProcess::
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~G4AdjointProcessEquivalentToDirectProcess()
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{
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if(fDirectProcess != nullptr)
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delete fDirectProcess;
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}
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void G4AdjointProcessEquivalentToDirectProcess::
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ResetNumberOfInteractionLengthLeft()
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{
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fDirectProcess->ResetNumberOfInteractionLengthLeft();
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}
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G4double G4AdjointProcessEquivalentToDirectProcess::
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AlongStepGetPhysicalInteractionLength(const G4Track& track,
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G4double previousStepSize,
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G4double currentMinimumStep,
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G4double& proposedSafety,
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G4GPILSelection* selection)
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{
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// Change the particle definition to the direct one
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G4DynamicParticle* theDynPart =
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const_cast<G4DynamicParticle*>(track.GetDynamicParticle());
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G4ParticleDefinition* adjPartDef = theDynPart->GetDefinition();
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G4DecayProducts* decayProducts =
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const_cast<G4DecayProducts*>(theDynPart->GetPreAssignedDecayProducts());
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theDynPart->SetPreAssignedDecayProducts((G4DecayProducts*) (0));
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theDynPart->SetDefinition(fFwdParticleDef);
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// Call the direct process
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G4double GPIL = fDirectProcess->AlongStepGetPhysicalInteractionLength(
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track, previousStepSize, currentMinimumStep, proposedSafety, selection);
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// Restore the adjoint particle definition to the direct one
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theDynPart->SetDefinition(adjPartDef);
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theDynPart->SetPreAssignedDecayProducts(decayProducts);
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return GPIL;
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}
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G4double
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G4AdjointProcessEquivalentToDirectProcess::AtRestGetPhysicalInteractionLength(
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const G4Track& track, G4ForceCondition* condition)
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{
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// Change the particle definition to the direct one
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G4DynamicParticle* theDynPart =
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const_cast<G4DynamicParticle*>(track.GetDynamicParticle());
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G4ParticleDefinition* adjPartDef = theDynPart->GetDefinition();
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G4DecayProducts* decayProducts =
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const_cast<G4DecayProducts*>(theDynPart->GetPreAssignedDecayProducts());
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theDynPart->SetPreAssignedDecayProducts((G4DecayProducts*) (0));
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theDynPart->SetDefinition(fFwdParticleDef);
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// Call the direct process
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G4double GPIL =
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fDirectProcess->AtRestGetPhysicalInteractionLength(track, condition);
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// Restore the adjoint particle definition to the direct one
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theDynPart->SetDefinition(adjPartDef);
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theDynPart->SetPreAssignedDecayProducts(decayProducts);
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return GPIL;
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}
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G4double
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G4AdjointProcessEquivalentToDirectProcess::PostStepGetPhysicalInteractionLength(
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const G4Track& track, G4double previousStepSize, G4ForceCondition* condition)
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{
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// Change the particle definition to the direct one
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G4DynamicParticle* theDynPart =
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const_cast<G4DynamicParticle*>(track.GetDynamicParticle());
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G4ParticleDefinition* adjPartDef = theDynPart->GetDefinition();
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G4DecayProducts* decayProducts =
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const_cast<G4DecayProducts*>(theDynPart->GetPreAssignedDecayProducts());
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theDynPart->SetPreAssignedDecayProducts((G4DecayProducts*) (0));
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theDynPart->SetDefinition(fFwdParticleDef);
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// Call the direct process
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G4double GPIL = fDirectProcess->PostStepGetPhysicalInteractionLength(
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track, previousStepSize, condition);
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// Restore the adjoint particle definition to the direct one
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theDynPart->SetDefinition(adjPartDef);
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theDynPart->SetPreAssignedDecayProducts(decayProducts);
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return GPIL;
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}
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G4VParticleChange* G4AdjointProcessEquivalentToDirectProcess::PostStepDoIt(
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const G4Track& track, const G4Step& stepData)
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{
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// Change the particle definition to the direct one
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G4DynamicParticle* theDynPart =
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const_cast<G4DynamicParticle*>(track.GetDynamicParticle());
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G4ParticleDefinition* adjPartDef = theDynPart->GetDefinition();
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G4DecayProducts* decayProducts =
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const_cast<G4DecayProducts*>(theDynPart->GetPreAssignedDecayProducts());
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theDynPart->SetPreAssignedDecayProducts((G4DecayProducts*) (0));
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theDynPart->SetDefinition(fFwdParticleDef);
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// Call the direct process
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G4VParticleChange* partChange = fDirectProcess->PostStepDoIt(track, stepData);
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// Restore the adjoint particle definition to the direct one
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theDynPart->SetDefinition(adjPartDef);
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theDynPart->SetPreAssignedDecayProducts(decayProducts);
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return partChange;
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}
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G4VParticleChange* G4AdjointProcessEquivalentToDirectProcess::AlongStepDoIt(
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const G4Track& track, const G4Step& stepData)
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{
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// Change the particle definition to the direct one
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G4DynamicParticle* theDynPart =
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const_cast<G4DynamicParticle*>(track.GetDynamicParticle());
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G4ParticleDefinition* adjPartDef = theDynPart->GetDefinition();
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G4DecayProducts* decayProducts =
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const_cast<G4DecayProducts*>(theDynPart->GetPreAssignedDecayProducts());
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theDynPart->SetPreAssignedDecayProducts((G4DecayProducts*) (0));
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theDynPart->SetDefinition(fFwdParticleDef);
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// Call the direct process
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G4VParticleChange* partChange =
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fDirectProcess->AlongStepDoIt(track, stepData);
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// Restore the adjoint particle definition to the direct one
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theDynPart->SetDefinition(adjPartDef);
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theDynPart->SetPreAssignedDecayProducts(decayProducts);
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return partChange;
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}
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G4VParticleChange* G4AdjointProcessEquivalentToDirectProcess::AtRestDoIt(
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const G4Track& track, const G4Step& stepData)
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{
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// Change the particle definition to the direct one
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G4DynamicParticle* theDynPart =
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const_cast<G4DynamicParticle*>(track.GetDynamicParticle());
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G4ParticleDefinition* adjPartDef = theDynPart->GetDefinition();
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G4DecayProducts* decayProducts =
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const_cast<G4DecayProducts*>(theDynPart->GetPreAssignedDecayProducts());
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theDynPart->SetPreAssignedDecayProducts((G4DecayProducts*) (0));
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theDynPart->SetDefinition(fFwdParticleDef);
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// Call the direct process
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G4VParticleChange* partChange = fDirectProcess->AtRestDoIt(track, stepData);
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// Restore the adjoint particle definition to the direct one
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theDynPart->SetDefinition(adjPartDef);
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theDynPart->SetPreAssignedDecayProducts(decayProducts);
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return partChange;
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}
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G4bool G4AdjointProcessEquivalentToDirectProcess::IsApplicable(
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const G4ParticleDefinition&)
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{
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return fDirectProcess->IsApplicable(*fFwdParticleDef);
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}
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void G4AdjointProcessEquivalentToDirectProcess::BuildPhysicsTable(
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const G4ParticleDefinition&)
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{
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return fDirectProcess->BuildPhysicsTable(*fFwdParticleDef);
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}
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void G4AdjointProcessEquivalentToDirectProcess::PreparePhysicsTable(
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const G4ParticleDefinition&)
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{
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return fDirectProcess->PreparePhysicsTable(*fFwdParticleDef);
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}
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G4bool G4AdjointProcessEquivalentToDirectProcess::StorePhysicsTable(
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const G4ParticleDefinition*, const G4String& directory, G4bool ascii)
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{
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return fDirectProcess->StorePhysicsTable(fFwdParticleDef, directory, ascii);
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}
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G4bool G4AdjointProcessEquivalentToDirectProcess::RetrievePhysicsTable(
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const G4ParticleDefinition*, const G4String& directory, G4bool ascii)
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{
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return fDirectProcess->RetrievePhysicsTable(fFwdParticleDef, directory,
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ascii);
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}
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void G4AdjointProcessEquivalentToDirectProcess::StartTracking(G4Track* track)
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{
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// Change the particle definition to the direct one
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G4DynamicParticle* theDynPart =
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const_cast<G4DynamicParticle*>(track->GetDynamicParticle());
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G4ParticleDefinition* adjPartDef = theDynPart->GetDefinition();
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G4DecayProducts* decayProducts =
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const_cast<G4DecayProducts*>(theDynPart->GetPreAssignedDecayProducts());
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theDynPart->SetPreAssignedDecayProducts((G4DecayProducts*) (0));
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theDynPart->SetDefinition(fFwdParticleDef);
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fDirectProcess->StartTracking(track);
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// Restore the adjoint particle definition to the direct one
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theDynPart->SetDefinition(adjPartDef);
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theDynPart->SetPreAssignedDecayProducts(decayProducts);
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return;
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}
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void G4AdjointProcessEquivalentToDirectProcess::EndTracking()
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{
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fDirectProcess->EndTracking();
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}
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