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geant4/examples/basic/B5/include/B5HadCalorimeterHit.hh
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2019-04-17 10:39:02 +02:00

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//
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/// \file B5HadCalorimeterHit.hh
/// \brief Definition of the B5HadCalorimeterHit class
#ifndef B5HadCalorimeterHit_h
#define B5HadCalorimeterHit_h 1
#include "G4VHit.hh"
#include "G4THitsCollection.hh"
#include "G4Allocator.hh"
#include "G4ThreeVector.hh"
#include "G4LogicalVolume.hh"
#include "G4Transform3D.hh"
#include "G4RotationMatrix.hh"
class G4AttDef;
class G4AttValue;
/// Hadron Calorimeter hit
///
/// It records:
/// - the cell column ID and row ID
/// - the energy deposit
/// - the cell position and rotation
class B5HadCalorimeterHit : public G4VHit
{
public:
B5HadCalorimeterHit();
B5HadCalorimeterHit(G4int iCol,G4int iRow);
B5HadCalorimeterHit(const B5HadCalorimeterHit &right);
virtual ~B5HadCalorimeterHit();
const B5HadCalorimeterHit& operator=(const B5HadCalorimeterHit &right);
G4bool operator==(const B5HadCalorimeterHit &right) const;
inline void *operator new(size_t);
inline void operator delete(void *aHit);
virtual void Draw();
virtual const std::map<G4String,G4AttDef>* GetAttDefs() const;
virtual std::vector<G4AttValue>* CreateAttValues() const;
virtual void Print();
void SetColumnID(G4int z) { fColumnID = z; }
G4int GetColumnID() const { return fColumnID; }
void SetRowID(G4int z) { fRowID = z; }
G4int GetRowID() const { return fRowID; }
void SetEdep(G4double de) { fEdep = de; }
void AddEdep(G4double de) { fEdep += de; }
G4double GetEdep() const { return fEdep; }
void SetPos(G4ThreeVector xyz) { fPos = xyz; }
G4ThreeVector GetPos() const { return fPos; }
void SetRot(G4RotationMatrix rmat) { fRot = rmat; }
G4RotationMatrix GetRot() const { return fRot; }
private:
G4int fColumnID;
G4int fRowID;
G4double fEdep;
G4ThreeVector fPos;
G4RotationMatrix fRot;
};
using B5HadCalorimeterHitsCollection = G4THitsCollection<B5HadCalorimeterHit>;
extern G4ThreadLocal G4Allocator<B5HadCalorimeterHit>* B5HadCalorimeterHitAllocator;
inline void* B5HadCalorimeterHit::operator new(size_t)
{
if (!B5HadCalorimeterHitAllocator) {
B5HadCalorimeterHitAllocator = new G4Allocator<B5HadCalorimeterHit>;
}
return (void*)B5HadCalorimeterHitAllocator->MallocSingle();
}
inline void B5HadCalorimeterHit::operator delete(void* aHit)
{
B5HadCalorimeterHitAllocator->FreeSingle((B5HadCalorimeterHit*) aHit);
}
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#endif