Import Geant4 10.7.0.beta source tree

This commit is contained in:
Gabriele Cosmo
2020-06-26 10:23:25 +02:00
parent c02c370437
commit 67ba86d073
1871 changed files with 174422 additions and 131884 deletions
@@ -23,36 +23,31 @@
// * acceptance of all terms of the Geant4 Software license. *
// ********************************************************************
//
// G4RichTrajectoryPoint
//
// Class description:
//
//---------------------------------------------------------------
//
// G4RichTrajectoryPoint.hh
//
// class description:
// This class extends G4TrajectoryPoint.
// From G4Trajectory, the following information is included:
// 1) Position (end of step).
// The extended information, only publicly accessible through AttValues,
// includes:
// 2) Auxiliary points, as in G4SmoothTrajectory.
// 3) Total energy deposit.
// 4) Remaining energy.
// 5) Process defining end of step.
// 6) Global time (from start of event) at pre- amd post-step.
// ...and more.
//
// This class extends G4TrajectoryPoint.
// From G4Trajectory, the following information is included:
// 1) Position (end of step).
// The extended information, only publicly accessible through AttValues,
// includes:
// 2) Auxiliary points, as in G4SmoothTrajectory.
// 3) Total energy deposit.
// 4) Remaining energy.
// 5) Process defining end of step.
// 6) Global time (from start of event) at pre- amd post-step.
// ...and more.
// Contact:
// Questions and comments to this code should be sent to
// Katsuya Amako (e-mail: Katsuya.Amako@kek.jp)
// Makoto Asai (e-mail: asai@kekvax.kek.jp)
// Makoto Asai (e-mail: asai@slac.stanford.edu)
// Takashi Sasaki (e-mail: Takashi.Sasaki@kek.jp)
// and on the extended code to:
// John Allison (e-mail: John.Allison@manchester.ac.uk)
// Joseph Perl (e-mail: perl@slac.stanford.edu)
//
// ---------------------------------------------------------------
// --------------------------------------------------------------------
#ifndef G4RICHTRAJECTORYPOINT_HH
#define G4RICHTRAJECTORYPOINT_HH
@@ -71,64 +66,77 @@ class G4VProcess;
class G4RichTrajectoryPoint : public G4TrajectoryPoint
{
public: // without description
public: // without description
// Constructor/Destructor
G4RichTrajectoryPoint();
G4RichTrajectoryPoint(const G4Track*); // For first point.
G4RichTrajectoryPoint(const G4Step*); // For subsequent points.
G4RichTrajectoryPoint(const G4RichTrajectoryPoint &right);
virtual ~G4RichTrajectoryPoint();
// Constructors/Destructor
//
G4RichTrajectoryPoint();
G4RichTrajectoryPoint(const G4Track*); // For first point.
G4RichTrajectoryPoint(const G4Step*); // For subsequent points.
G4RichTrajectoryPoint(const G4RichTrajectoryPoint& right);
virtual ~G4RichTrajectoryPoint();
private:
G4RichTrajectoryPoint& operator= (const G4RichTrajectoryPoint&);
// Operators
//
G4RichTrajectoryPoint& operator= (const G4RichTrajectoryPoint&) = delete;
inline G4bool operator==(const G4RichTrajectoryPoint& right) const;
inline void *operator new(size_t);
inline void operator delete(void *aRichTrajectoryPoint);
public:
// Get/Set functions
//
inline const std::vector<G4ThreeVector>* GetAuxiliaryPoints() const;
virtual const std::map<G4String,G4AttDef>* GetAttDefs() const;
virtual std::vector<G4AttValue>* CreateAttValues() const;
// Get/Set functions
const std::vector<G4ThreeVector>* GetAuxiliaryPoints() const
{ return fpAuxiliaryPointVector; }
private:
// Operators
inline void *operator new(size_t);
inline void operator delete(void *aRichTrajectoryPoint);
inline G4bool operator==(const G4RichTrajectoryPoint& right) const
{ return (this==&right); }
// Get methods for HepRep style attributes
virtual const std::map<G4String,G4AttDef>* GetAttDefs() const;
virtual std::vector<G4AttValue>* CreateAttValues() const;
private:
// Extended member data
std::vector<G4ThreeVector>* fpAuxiliaryPointVector;
G4double fTotEDep;
G4double fRemainingEnergy;
const G4VProcess* fpProcess;
G4StepStatus fPreStepPointStatus;
G4StepStatus fPostStepPointStatus;
G4double fPreStepPointGlobalTime;
G4double fPostStepPointGlobalTime;
G4TouchableHandle fpPreStepPointVolume;
G4TouchableHandle fpPostStepPointVolume;
G4double fPreStepPointWeight;
G4double fPostStepPointWeight;
// Extended member data
//
std::vector<G4ThreeVector>* fpAuxiliaryPointVector = nullptr;
G4double fTotEDep = 0.0;
G4double fRemainingEnergy = 0.0;
const G4VProcess* fpProcess = nullptr;
G4StepStatus fPreStepPointStatus = fUndefined;
G4StepStatus fPostStepPointStatus = fUndefined;
G4double fPreStepPointGlobalTime = 0.0;
G4double fPostStepPointGlobalTime = 0.0;
G4TouchableHandle fpPreStepPointVolume;
G4TouchableHandle fpPostStepPointVolume;
G4double fPreStepPointWeight = 0.0;
G4double fPostStepPointWeight = 0.0;
};
extern G4TRACKING_DLL G4Allocator<G4RichTrajectoryPoint>*& aRichTrajectoryPointAllocator();
extern G4TRACKING_DLL
G4Allocator<G4RichTrajectoryPoint>*& aRichTrajectoryPointAllocator();
inline void* G4RichTrajectoryPoint::operator new(size_t)
inline void*
G4RichTrajectoryPoint::operator new(size_t)
{
if (!aRichTrajectoryPointAllocator())
{ aRichTrajectoryPointAllocator() = new G4Allocator<G4RichTrajectoryPoint>; }
if (aRichTrajectoryPointAllocator() == nullptr)
{
aRichTrajectoryPointAllocator() = new G4Allocator<G4RichTrajectoryPoint>;
}
return (void *) aRichTrajectoryPointAllocator()->MallocSingle();
}
inline void G4RichTrajectoryPoint::operator delete(void *aRichTrajectoryPoint)
inline void
G4RichTrajectoryPoint::operator delete(void *aRichTrajectoryPoint)
{
aRichTrajectoryPointAllocator()->FreeSingle
((G4RichTrajectoryPoint *) aRichTrajectoryPoint);
}
inline G4bool
G4RichTrajectoryPoint::operator==(const G4RichTrajectoryPoint& r) const
{
return (this==&r);
}
inline const std::vector<G4ThreeVector>*
G4RichTrajectoryPoint::GetAuxiliaryPoints() const
{
return fpAuxiliaryPointVector;
}
#endif