365 lines
12 KiB
Plaintext
365 lines
12 KiB
Plaintext
//
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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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//-----------------------------------------------------------------
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// Definitions of inline functions
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//-----------------------------------------------------------------
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// change GetMaterial 16 Feb. 2000 H.Kurashige
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extern G4TRACK_DLL G4Allocator<G4Track>*& aTrackAllocator();
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//-------------------------------------------------------------
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// To implement bi-directional association between G4Step and
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// and G4Track, a combined usage of 'forward declaration' and
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// 'include' is necessary.
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//-------------------------------------------------------------
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#include "G4Step.hh"
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// Operators
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inline void* G4Track::operator new(size_t)
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{
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if (!aTrackAllocator()) aTrackAllocator() = new G4Allocator<G4Track>;
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return (void *) aTrackAllocator()->MallocSingle();
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}
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// Override "new" for "G4Allocator".
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inline void G4Track::operator delete(void *aTrack)
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{ aTrackAllocator()->FreeSingle((G4Track *) aTrack); }
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// Override "delete" for "G4Allocator".
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inline G4bool G4Track::operator==( const G4Track& trk)
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{ return (this==&trk); }
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// Define "==" operator because "G4TrackVector" uses
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// "RWPtrOrderdVector" which requires this.
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// Get/Set functions
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// dynamic particle
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inline const G4DynamicParticle* G4Track::GetDynamicParticle() const
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{ return fpDynamicParticle; }
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// particle definition
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inline G4ParticleDefinition* G4Track::GetDefinition() const
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{ return fpDynamicParticle->GetDefinition(); }
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// particle definition
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inline const G4ParticleDefinition* G4Track::GetParticleDefinition() const
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{ return fpDynamicParticle->GetParticleDefinition(); }
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// parent track ID
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inline G4int G4Track::GetParentID() const
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{ return fParentID; }
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inline void G4Track::SetParentID(const G4int aValue)
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{ fParentID = aValue; }
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// current track ID
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inline G4int G4Track::GetTrackID() const
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{ return fTrackID; }
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inline void G4Track::SetTrackID(const G4int aValue)
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{ fTrackID = aValue; }
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// position
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inline const G4ThreeVector& G4Track::GetPosition() const
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{ return fPosition; }
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inline void G4Track::SetPosition(const G4ThreeVector& aValue)
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{ fPosition = aValue; }
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// global time
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inline G4double G4Track::GetGlobalTime() const
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{ return fGlobalTime; }
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inline void G4Track::SetGlobalTime(const G4double aValue)
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{ fGlobalTime = aValue; }
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// Time since the event in which the track belongs is created.
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// local time
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inline G4double G4Track::GetLocalTime() const
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{ return fLocalTime; }
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inline void G4Track::SetLocalTime(const G4double aValue)
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{ fLocalTime = aValue; }
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// Time since the current track is created.
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// proper time
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inline G4double G4Track::GetProperTime() const
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{
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if (fpDynamicParticle != nullptr) {return fpDynamicParticle->GetProperTime();}
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else {return 0.0;}
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}
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inline void G4Track::SetProperTime(const G4double aValue)
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{ if (fpDynamicParticle != nullptr) fpDynamicParticle->SetProperTime(aValue); }
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// Proper time of the current track
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// velocity
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inline G4double G4Track::GetVelocity() const
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{ return fVelocity; }
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inline void G4Track::SetVelocity(G4double val)
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{ fVelocity = val; }
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inline G4bool G4Track::UseGivenVelocity() const
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{ return useGivenVelocity;}
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inline void G4Track::UseGivenVelocity(G4bool val)
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{ useGivenVelocity = val;}
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// volume
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inline G4VPhysicalVolume* G4Track::GetVolume() const
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{
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if ( fpTouchable == 0 ) {return nullptr;}
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else {return fpTouchable->GetVolume(); }
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}
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inline G4VPhysicalVolume* G4Track::GetNextVolume() const
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{
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if ( fpNextTouchable == 0 ) {return nullptr;}
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else { return fpNextTouchable->GetVolume(); }
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}
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// material
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inline
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const G4MaterialCutsCouple* G4Track::GetMaterialCutsCouple() const
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{
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if ( fpStep==nullptr ) {return nullptr;}
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else {return fpStep->GetPreStepPoint()->GetMaterialCutsCouple(); }
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}
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inline
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const G4MaterialCutsCouple* G4Track::GetNextMaterialCutsCouple() const
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{
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if ( fpStep==nullptr ) {return nullptr;}
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else {return fpStep->GetPostStepPoint()->GetMaterialCutsCouple(); }
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}
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// material
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inline G4Material* G4Track::GetMaterial() const
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{
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if ( fpStep==nullptr ) {return nullptr;}
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else { return fpStep->GetPreStepPoint()->GetMaterial(); }
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}
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inline G4Material* G4Track::GetNextMaterial() const
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{
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if ( fpStep==nullptr ) {return nullptr;}
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else { return fpStep->GetPostStepPoint()->GetMaterial(); }
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}
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// touchable
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inline const G4VTouchable* G4Track::GetTouchable() const
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{ return fpTouchable(); }
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inline const G4TouchableHandle& G4Track::GetTouchableHandle() const
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{ return fpTouchable; }
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inline void G4Track::SetTouchableHandle( const G4TouchableHandle& apValue)
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{ fpTouchable = apValue; }
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inline const G4VTouchable* G4Track::GetNextTouchable() const
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{ return fpNextTouchable(); }
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inline const G4TouchableHandle& G4Track::GetNextTouchableHandle() const
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{ return fpNextTouchable; }
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inline void G4Track::SetNextTouchableHandle( const G4TouchableHandle& apValue)
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{ fpNextTouchable = apValue; }
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inline const G4VTouchable* G4Track::GetOriginTouchable() const
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{ return fpOriginTouchable(); }
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inline const G4TouchableHandle& G4Track::GetOriginTouchableHandle() const
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{ return fpOriginTouchable; }
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inline void G4Track::SetOriginTouchableHandle( const G4TouchableHandle& apValue)
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{ fpOriginTouchable = apValue; }
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// kinetic energy
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inline G4double G4Track::GetKineticEnergy() const
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{
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if (fpDynamicParticle != nullptr) {return fpDynamicParticle->GetKineticEnergy();}
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else { return 0.0; }
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}
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inline void G4Track::SetKineticEnergy(const G4double aValue)
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{
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if (fpDynamicParticle != nullptr) { fpDynamicParticle->SetKineticEnergy(aValue); }
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}
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// total energy
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inline G4double G4Track::GetTotalEnergy() const
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{
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if (fpDynamicParticle != nullptr) {return fpDynamicParticle->GetTotalEnergy();}
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else { return 0.0; }
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}
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// momentum
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inline G4ThreeVector G4Track::GetMomentum() const
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{
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if (fpDynamicParticle != nullptr) {return fpDynamicParticle->GetMomentum();}
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const G4ThreeVector zerovector;
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return zerovector;
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}
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// momentum (direction)
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inline const G4ThreeVector& G4Track::GetMomentumDirection() const
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{
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if (fpDynamicParticle != nullptr) {return fpDynamicParticle->GetMomentumDirection();}
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static const G4ThreeVector zerovector;
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return zerovector;
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}
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inline void G4Track::SetMomentumDirection(const G4ThreeVector& aValue)
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{
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if (fpDynamicParticle != nullptr) {fpDynamicParticle->SetMomentumDirection(aValue);}
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}
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// polarization
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inline const G4ThreeVector& G4Track::GetPolarization() const
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{
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if (fpDynamicParticle != nullptr) {return fpDynamicParticle->GetPolarization();}
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static const G4ThreeVector zerovector;
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return zerovector;
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}
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inline void G4Track::SetPolarization(const G4ThreeVector& aValue)
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{
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if (fpDynamicParticle != nullptr) {
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fpDynamicParticle->SetPolarization(aValue.x(),
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aValue.y(),
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aValue.z());
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}
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}
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// track status
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inline G4TrackStatus G4Track::GetTrackStatus() const
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{ return fTrackStatus; }
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inline void G4Track::SetTrackStatus(const G4TrackStatus aTrackStatus)
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{ fTrackStatus = aTrackStatus; }
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// track length
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inline G4double G4Track::GetTrackLength() const
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{ return fTrackLength; }
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inline void G4Track::AddTrackLength(const G4double aValue)
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{ fTrackLength += aValue; }
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// Accumulated track length
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// step number
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inline G4int G4Track::GetCurrentStepNumber() const
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{ return fCurrentStepNumber; }
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inline void G4Track::IncrementCurrentStepNumber()
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{ fCurrentStepNumber++; }
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// step length
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inline G4double G4Track::GetStepLength() const
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{ return fStepLength; }
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inline void G4Track::SetStepLength(G4double value)
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{ fStepLength = value; }
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// vertex (where this track was created) information
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inline const G4ThreeVector& G4Track::GetVertexPosition() const
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{ return fVtxPosition; }
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inline void G4Track::SetVertexPosition(const G4ThreeVector& aValue)
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{ fVtxPosition = aValue; }
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inline const G4ThreeVector& G4Track::GetVertexMomentumDirection() const
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{ return fVtxMomentumDirection; }
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inline void G4Track::SetVertexMomentumDirection(const G4ThreeVector& aValue)
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{ fVtxMomentumDirection = aValue ;}
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inline G4double G4Track::GetVertexKineticEnergy() const
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{ return fVtxKineticEnergy; }
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inline void G4Track::SetVertexKineticEnergy(const G4double aValue)
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{ fVtxKineticEnergy = aValue; }
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inline const G4LogicalVolume* G4Track::GetLogicalVolumeAtVertex() const
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{ return fpLVAtVertex; }
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inline void G4Track::SetLogicalVolumeAtVertex(const G4LogicalVolume* aValue)
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{ fpLVAtVertex = aValue; }
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inline const G4VProcess* G4Track::GetCreatorProcess() const
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{ return fpCreatorProcess; }
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// If the pointer is 0, this means the track is created
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// by the event generator, i.e. the primary track.If it is not
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// 0, it points to the process which created this track.
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inline void G4Track::SetCreatorProcess(const G4VProcess* aValue)
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{ fpCreatorProcess = aValue; }
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inline void G4Track::SetCreatorModelIndex(G4int idx)
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{ fCreatorModelIndex = idx; }
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inline const G4String & G4Track::GetCreatorModelName() const
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{ return G4PhysicsModelCatalog::GetModelName(fCreatorModelIndex); }
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inline G4int G4Track::GetCreatorModelID() const
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{ return fCreatorModelIndex; }
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// flag for "Below Threshold"
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inline G4bool G4Track::IsBelowThreshold() const
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{ return fBelowThreshold; }
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inline void G4Track::SetBelowThresholdFlag(G4bool value)
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{ fBelowThreshold = value; }
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// flag for " Good for Tracking"
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inline G4bool G4Track::IsGoodForTracking() const
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{ return fGoodForTracking; }
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inline void G4Track::SetGoodForTrackingFlag(G4bool value)
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{ fGoodForTracking = value; }
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// track weight
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inline void G4Track::SetWeight(G4double aValue)
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{ fWeight = aValue; }
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inline G4double G4Track::GetWeight() const
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{ return fWeight; }
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// user information
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inline G4VUserTrackInformation* G4Track::GetUserInformation() const
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{ return fpUserInformation; }
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inline void G4Track::SetUserInformation(G4VUserTrackInformation* aValue) const
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{ fpUserInformation = aValue; }
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inline const G4Step* G4Track::GetStep() const
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{ return fpStep; }
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inline void G4Track::SetStep(const G4Step* aValue)
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{ fpStep = aValue; }
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