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geant4/examples/advanced/CaTS/include/PhotonHit.hh
2021-12-10 16:15:15 +00:00

123 lines
4.7 KiB
C++

//
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//
// CaTS (Calorimetry and Tracking Simulation)
//
// Authors : Hans Wenzel
// Soon Yung Jun
// (Fermi National Accelerator Laboratory)
//
// History
// October 18th, 2021 : first implementation
//
// ********************************************************************
//
/// \file PhotonHit.hh
/// \brief Definition of the CaTS::PhotonHit class
#pragma once
#include "G4VHit.hh"
#include "G4THitsCollection.hh"
#include "G4Allocator.hh"
#include "G4ThreeVector.hh"
class PhotonHit : public G4VHit
{
public:
PhotonHit();
~PhotonHit() = default;
PhotonHit(const PhotonHit&);
const PhotonHit& operator=(const PhotonHit&);
G4bool operator==(const PhotonHit&) const;
inline void* operator new(size_t);
inline void operator delete(void*);
void Draw() final;
inline void Print() final
{
G4cout << "PhotonHit id: " << fid << " pid: " << fpid
<< " wavelength: " << fwavelength << " time: " << ftime
<< " position X: " << fposition.getX() << " Y: " << fposition.getY()
<< " Z: " << fposition.getZ()
<< " direction X: " << fdirection.getX()
<< " Y: " << fdirection.getY() << " Z: " << fdirection.getZ()
<< " polarization: X:" << fpolarization.getX()
<< " Y: " << fpolarization.getY() << " Z: " << fpolarization.getZ()
<< G4endl;
}
PhotonHit(unsigned id, unsigned pid, G4double wavelength, G4double time,
G4ThreeVector position, G4ThreeVector direction,
G4ThreeVector polarization);
inline void SetWavelength(G4double wavelength) { fwavelength = wavelength; }
inline G4double GetWavelength() { return fwavelength; }
inline void SetPolarization(G4ThreeVector polarization)
{
fpolarization = polarization;
}
inline G4ThreeVector GetPolarization() const { return fpolarization; }
inline void SetDirection(G4ThreeVector direction) { fdirection = direction; }
inline G4ThreeVector GetDirection() const { return fdirection; }
inline void SetPosition(G4ThreeVector position) { fposition = position; }
inline G4ThreeVector GetPosition() const { return fposition; }
inline void SetTime(G4double time) { ftime = time; }
inline G4double GetTime() const { return ftime; }
inline void SetPid(unsigned pid) { fpid = pid; }
inline unsigned GetPid() const { return fpid; }
inline void SetId(unsigned id) { fid = id; }
inline unsigned GetId() const { return fid; }
private:
unsigned int fid{ 0 };
unsigned int fpid{ 0 };
G4double fwavelength{ 0 };
G4double ftime{ 0 };
G4ThreeVector fposition{ 0, 0, 0 };
G4ThreeVector fdirection{ 0, 0, 0 };
G4ThreeVector fpolarization{ 0, 0, 0 };
};
using PhotonHitsCollection = G4THitsCollection<PhotonHit>;
extern G4ThreadLocal G4Allocator<PhotonHit>* PhotonHitAllocator;
inline void* PhotonHit::operator new(size_t)
{
if(!PhotonHitAllocator)
{
PhotonHitAllocator = new G4Allocator<PhotonHit>;
}
return (void*) PhotonHitAllocator->MallocSingle();
}
inline void PhotonHit::operator delete(void* aHit)
{
PhotonHitAllocator->FreeSingle((PhotonHit*) aHit);
}