// This code implementation is the intellectual property of // the RD44 GEANT4 collaboration. // // By copying, distributing or modifying the Program (or any work // based on the Program) you indicate your acceptance of this statement, // and all its terms. // // $Id: G4PrimaryParticle.hh,v 1.1 1999/01/07 16:06:33 gunter Exp $ // GEANT4 tag $Name: geant4-00-01 $ // // #ifndef G4PrimaryParticle_h #define G4PrimaryParticle_h 1 #include "globals.hh" #include "G4Allocator.hh" #include "G4ThreeVector.hh" class G4ParticleDefinition; class G4PrimaryParticle { public: inline void *operator new(size_t); inline void operator delete(void *aStackedTrack); G4PrimaryParticle(); G4PrimaryParticle(G4int Pcode); G4PrimaryParticle(G4int Pcode, G4double px,G4double py,G4double pz); G4PrimaryParticle(G4ParticleDefinition* Gcode); G4PrimaryParticle(G4ParticleDefinition* Gcode, G4double px,G4double py,G4double pz); ~G4PrimaryParticle(); const G4PrimaryParticle & operator=(const G4PrimaryParticle &right); int operator==(const G4PrimaryParticle &right) const; int operator!=(const G4PrimaryParticle &right) const; void Print() const; private: G4int PDGcode; G4ParticleDefinition * G4code; G4double Px; G4double Py; G4double Pz; G4PrimaryParticle * nextParticle; G4PrimaryParticle * daughterParticle; G4int trackID; // This will be set if this particle is // sent to G4EventManager and converted to // G4Track. Otherwise = -1. G4double mass; // This is just for book keeping. // This will not be used but the mass in // G4ParticleDefinition will be used. G4double polX; G4double polY; G4double polZ; public: void SetPDGcode(G4int Pcode); inline G4int GetPDGcode() const { return PDGcode; }; void SetG4code(G4ParticleDefinition * Gcode); inline G4ParticleDefinition * GetG4code() const { return G4code; }; inline void SetMomentum(G4double px, G4double py, G4double pz) { Px = px; Py = py; Pz = pz; }; inline G4ThreeVector GetMomentum() const { return G4ThreeVector(Px,Py,Pz); }; inline G4double GetPx() const { return Px; }; inline G4double GetPy() const { return Py; }; inline G4double GetPz() const { return Pz; }; inline void SetNext(G4PrimaryParticle * np) { if(nextParticle == NULL) { nextParticle = np; } else { nextParticle->SetNext(np); } }; inline G4PrimaryParticle * GetNext() const { return nextParticle; }; inline void SetDaughter(G4PrimaryParticle * np) { if(daughterParticle == NULL) { daughterParticle = np; } else { daughterParticle->SetNext(np); } }; inline G4PrimaryParticle * GetDaughter() const { return daughterParticle; }; inline void SetTrackID(G4int id) { trackID = id; }; inline G4int GetTrackID() const { return trackID; }; inline void SetMass(G4double mas) { mass = mas; }; inline G4double GetMass() const { return mass; }; inline void SetPolarization(G4double px,G4double py,G4double pz) { polX = px; polY = py; polZ = pz; }; inline G4ThreeVector GetPolarization() const { return G4ThreeVector(polX,polY,polZ); }; inline G4double GetPolX() const { return polX; }; inline G4double GetPolY() const { return polY; }; inline G4double GetPolZ() const { return polZ; }; }; extern G4Allocator aPrimaryParticleAllocator; inline void * G4PrimaryParticle::operator new(size_t) { void * aPrimaryParticle; aPrimaryParticle = (void *) aPrimaryParticleAllocator.MallocSingle(); return aPrimaryParticle; } inline void G4PrimaryParticle::operator delete(void * aPrimaryParticle) { aPrimaryParticleAllocator.FreeSingle((G4PrimaryParticle *) aPrimaryParticle); } #endif