Import Geant4 9.5.0 source tree

This commit is contained in:
Gabriele Cosmo
2016-06-09 16:46:55 +02:00
parent 89a9605df1
commit b1eb5424d2
10957 changed files with 888481 additions and 160139 deletions
@@ -24,8 +24,8 @@
// ********************************************************************
//
//
// $Id: G4PrimaryParticle.hh,v 1.8 2010/10/27 07:47:05 gcosmo Exp $
// GEANT4 tag $Name: geant4-09-04 $
// $Id: G4PrimaryParticle.hh,v 1.8 2010-10-27 07:47:05 gcosmo Exp $
// GEANT4 tag $Name: not supported by cvs2svn $
//
//
@@ -66,148 +66,115 @@ class G4VUserPrimaryParticleInformation;
class G4PrimaryParticle
{
public:
inline void *operator new(size_t);
inline void operator delete(void *aStackedTrack);
public:
inline void *operator new(size_t);
inline void operator delete(void *aStackedTrack);
public: // with description
G4PrimaryParticle();
G4PrimaryParticle(G4int Pcode);
G4PrimaryParticle(G4int Pcode,
G4double px,G4double py,G4double pz);
G4PrimaryParticle(G4int Pcode,
G4double px,G4double py,G4double pz,G4double E);
G4PrimaryParticle(const G4ParticleDefinition* Gcode);
G4PrimaryParticle(const G4ParticleDefinition* Gcode,
G4double px,G4double py,G4double pz);
G4PrimaryParticle(const G4ParticleDefinition* Gcode,
G4double px,G4double py,G4double pz,G4double E);
public:
virtual ~G4PrimaryParticle();
// copy constructor and assignment operator
// nextParticle and daughterParticle is copied by object (i.e. deep copy)
// userInfo will nt be copied
G4PrimaryParticle(const G4PrimaryParticle &right);
G4PrimaryParticle & operator=(const G4PrimaryParticle &right);
// equal operator returns 'true' only if the same object (i.e comarison by pointer value)
G4int operator==(const G4PrimaryParticle &right) const;
G4int operator!=(const G4PrimaryParticle &right) const;
public: // with description
void Print() const;
// Print the properties of the particle.
G4PrimaryParticle();
G4PrimaryParticle(G4int Pcode);
G4PrimaryParticle(G4int Pcode,
G4double px,G4double py,G4double pz);
G4PrimaryParticle(G4int Pcode,
G4double px,G4double py,G4double pz,G4double E);
G4PrimaryParticle(const G4ParticleDefinition* Gcode);
G4PrimaryParticle(const G4ParticleDefinition* Gcode,
G4double px,G4double py,G4double pz);
G4PrimaryParticle(const G4ParticleDefinition* Gcode,
G4double px,G4double py,G4double pz,G4double E);
~G4PrimaryParticle();
public: // with description
// followings are get/set methods available.
// "trackID" will be set if this particle is sent to G4EventManager
// and converted to G4Track. Otherwise = -1.
// The mass and charge in G4ParticleDefinition will be used in default.
// "SetMass" and "SetCharge" methods are used to set dynamical mass and charge
// G4DynamicParticle."GetMass" and "GetCharge" methods will return
// those in G4ParticleDefinition if users do not set dynamical ones.
const G4PrimaryParticle & operator=(const G4PrimaryParticle &right);
G4int operator==(const G4PrimaryParticle &right) const;
G4int operator!=(const G4PrimaryParticle &right) const;
G4int GetPDGcode() const;
void SetPDGcode(G4int Pcode);
G4ParticleDefinition * GetG4code() const;
void SetG4code(const G4ParticleDefinition * Gcode);
const G4ParticleDefinition * GetParticleDefinition() const;
void SetParticleDefinition(const G4ParticleDefinition * pdef);
G4double GetMass() const;
void SetMass(G4double mas);
G4double GetCharge() const;
void SetCharge(G4double chg);
G4double GetKineticEnergy() const;
void SetKineticEnergy(G4double eKin);
const G4ThreeVector& GetMomentumDirection() const;
void SetMomentumDirection(const G4ThreeVector& p);
G4double GetTotalMomentum() const;
void Set4Momentum(G4double px, G4double py, G4double pz, G4double E);
G4double GetTotalEnergy() const;
void SetTotalEnergy(G4double eTot );
G4ThreeVector GetMomentum() const;
void SetMomentum(G4double px, G4double py, G4double pz);
G4double GetPx() const;
G4double GetPy() const;
G4double GetPz() const;
G4PrimaryParticle * GetNext() const;
void SetNext(G4PrimaryParticle * np);
G4PrimaryParticle * GetDaughter() const;
void SetDaughter(G4PrimaryParticle * np);
G4int GetTrackID() const;
void SetTrackID(G4int id);
G4ThreeVector GetPolarization() const;
void SetPolarization(const G4ThreeVector& pol);
void SetPolarization(G4double px,G4double py,G4double pz);
G4double GetPolX() const;
G4double GetPolY() const;
G4double GetPolZ() const;
G4double GetWeight() const;
void SetWeight(G4double w);
G4double GetProperTime() const;
void SetProperTime(G4double t);
G4VUserPrimaryParticleInformation* GetUserInformation() const;
void SetUserInformation(G4VUserPrimaryParticleInformation* anInfo);
public: // with description
void Print() const;
// Print the properties of the particle.
private:
G4int PDGcode;
const G4ParticleDefinition * G4code;
G4ThreeVector direction;
G4double kinE;
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;
G4double charge;
G4double polX;
G4double polY;
G4double polZ;
G4double Weight0;
G4double properTime;
G4VUserPrimaryParticleInformation* userInfo;
private:
G4int PDGcode;
const 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;
G4double charge;
G4double polX;
G4double polY;
G4double polZ;
G4double Weight0;
G4double properTime;
G4VUserPrimaryParticleInformation* userInfo;
public: // with description
// followings are get methods available.
// "trackID" will be set if this particle is sent to G4EventManager
// and converted to G4Track. Otherwise = -1.
// The mass and charge in G4ParticleDefinition will be used in default.
// "SetMass" and "SetCharge" methods are used to set dynamical mass and charge
// G4DynamicParticle."GetMass" and "GetCharge" methods will return
// those in G4ParticleDefinition if users do not set dynamical ones.
G4double GetMass() const;
G4double GetCharge() const;
inline G4int GetPDGcode() const
{ return PDGcode; }
inline G4ParticleDefinition * GetG4code() const
{ return const_cast<G4ParticleDefinition*>(G4code); }
inline const G4ParticleDefinition * GetParticleDefinition() const
{ return G4code; }
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 G4PrimaryParticle * GetNext() const
{ return nextParticle; }
inline G4PrimaryParticle * GetDaughter() const
{ return daughterParticle; }
inline G4int GetTrackID() const
{ return trackID; }
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; }
inline G4double GetWeight() const { return Weight0; }
inline void SetWeight(G4double w) { Weight0 = w; }
inline void SetProperTime(G4double t) { properTime = t; }
inline G4double GetProperTime() const { return properTime; }
inline void SetUserInformation(G4VUserPrimaryParticleInformation* anInfo)
{ userInfo = anInfo; }
inline G4VUserPrimaryParticleInformation* GetUserInformation() const
{ return userInfo; }
public: // with description
// Followings are available Set methods.
void SetPDGcode(G4int Pcode);
void SetG4code(const G4ParticleDefinition * Gcode);
void SetParticleDefinition(const G4ParticleDefinition * pdef);
inline void SetMomentum(G4double px, G4double py, G4double pz)
{
Px = px;
Py = py;
Pz = pz;
}
inline void Set4Momentum(G4double px, G4double py, G4double pz, G4double E)
{
Px = px;
Py = py;
Pz = pz;
G4double mas2 = E*E - px*px - py*py - pz*pz;
if(mas2>=0.)
{ mass = std::sqrt(mas2); }
else
{ mass = -1.0; }
}
inline void SetNext(G4PrimaryParticle * np)
{
if(nextParticle == 0)
{ nextParticle = np; }
else
{ nextParticle->SetNext(np); }
}
inline void SetDaughter(G4PrimaryParticle * np)
{
if(daughterParticle == 0)
{ daughterParticle = np; }
else
{ daughterParticle->SetNext(np); }
}
inline void SetTrackID(G4int id)
{ trackID = id; }
inline void SetMass(G4double mas)
{ mass = mas; }
inline void SetCharge(G4double chg)
{ charge = chg; }
inline void SetPolarization(G4double px,G4double py,G4double pz)
{
polX = px;
polY = py;
polZ = pz;
}
};
#if defined G4PARTICLES_ALLOC_EXPORT
@@ -228,6 +195,141 @@ inline void G4PrimaryParticle::operator delete(void * aPrimaryParticle)
aPrimaryParticleAllocator.FreeSingle((G4PrimaryParticle *) aPrimaryParticle);
}
inline G4double G4PrimaryParticle::GetMass() const
{ return mass; }
inline G4double G4PrimaryParticle::GetCharge() const
{ return charge; }
inline G4int G4PrimaryParticle::GetPDGcode() const
{ return PDGcode; }
inline G4ParticleDefinition * G4PrimaryParticle::GetG4code() const
{ return const_cast<G4ParticleDefinition*>(G4code); }
inline const G4ParticleDefinition * G4PrimaryParticle::GetParticleDefinition() const
{ return G4code; }
inline G4double G4PrimaryParticle::GetTotalMomentum() const
{
if (mass<0.) return kinE;
else return std::sqrt(kinE*(kinE+2.*mass));
}
inline G4ThreeVector G4PrimaryParticle::GetMomentum() const
{ return GetTotalMomentum()*direction;}
inline const G4ThreeVector& G4PrimaryParticle::GetMomentumDirection() const
{ return direction;}
inline void G4PrimaryParticle::SetMomentumDirection(const G4ThreeVector& p)
{ direction = p;}
inline G4double G4PrimaryParticle::GetPx() const
{ return GetTotalMomentum()*direction.x();}
inline G4double G4PrimaryParticle::GetPy() const
{ return GetTotalMomentum()*direction.y();}
inline G4double G4PrimaryParticle::GetPz() const
{ return GetTotalMomentum()*direction.z();}
inline G4double G4PrimaryParticle::GetTotalEnergy() const
{
if (mass<0.) return kinE;
else return kinE+mass;
}
inline void G4PrimaryParticle::SetTotalEnergy(G4double eTot )
{
if (mass<0.) kinE = eTot;
else kinE = eTot - mass;
}
inline G4double G4PrimaryParticle::GetKineticEnergy() const
{ return kinE; }
inline void G4PrimaryParticle::SetKineticEnergy(G4double eKin)
{ kinE = eKin; }
inline G4PrimaryParticle * G4PrimaryParticle::GetNext() const
{ return nextParticle; }
inline G4PrimaryParticle * G4PrimaryParticle::GetDaughter() const
{ return daughterParticle; }
inline G4int G4PrimaryParticle::GetTrackID() const
{ return trackID; }
inline G4ThreeVector G4PrimaryParticle::GetPolarization() const
{ return G4ThreeVector(polX,polY,polZ); }
inline G4double G4PrimaryParticle::GetPolX() const
{ return polX; }
inline G4double G4PrimaryParticle::GetPolY() const
{ return polY; }
inline G4double G4PrimaryParticle::GetPolZ() const
{ return polZ; }
inline G4double G4PrimaryParticle::GetWeight() const
{ return Weight0; }
inline void G4PrimaryParticle::SetWeight(G4double w)
{ Weight0 = w; }
inline void G4PrimaryParticle::SetProperTime(G4double t)
{ properTime = t; }
inline G4double G4PrimaryParticle::GetProperTime() const
{ return properTime; }
inline void G4PrimaryParticle::SetUserInformation(G4VUserPrimaryParticleInformation* anInfo)
{ userInfo = anInfo; }
inline G4VUserPrimaryParticleInformation* G4PrimaryParticle::GetUserInformation() const
{ return userInfo; }
inline void G4PrimaryParticle::SetG4code(const G4ParticleDefinition* Gcode)
{
SetParticleDefinition(Gcode);
}
inline void G4PrimaryParticle::SetNext(G4PrimaryParticle * np)
{
if (nextParticle == 0) { nextParticle = np; }
else { nextParticle->SetNext(np); }
}
inline void G4PrimaryParticle::SetDaughter(G4PrimaryParticle * np)
{
if(daughterParticle == 0) { daughterParticle = np; }
else { daughterParticle->SetNext(np); }
}
inline void G4PrimaryParticle::SetTrackID(G4int id)
{ trackID = id; }
inline void G4PrimaryParticle::SetMass(G4double mas)
{ mass = mas; }
inline void G4PrimaryParticle::SetCharge(G4double chg)
{ charge = chg; }
inline void G4PrimaryParticle::SetPolarization(G4double px,G4double py,G4double pz)
{
polX = px;
polY = py;
polZ = pz;
}
inline void G4PrimaryParticle::SetPolarization(const G4ThreeVector& pol)
{
polX = pol.x();
polY = pol.y();
polZ = pol.z();
}
#endif