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geant4/source/geometry/solids/CSG/include/G4Sphere.hh
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2016-06-08 15:28:20 +02:00

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// This code implementation is the intellectual property of
// the 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: G4Sphere.hh,v 1.1.10.1 1999/12/07 20:48:30 gunter Exp $
// GEANT4 tag $Name: geant4-01-00 $
//
// class G4Sphere
//
// A G4Sphere is, in the general case, section of a spherical shell, between
// specified phii and theta angles
//
// The phi and theta segments are described by a starting angle,
// and the +ve delta angle for the shape.
// If the delta angle is >=2*M_PI, or >=M_PI the shape is treated as
// continuous in phi or theta respectively.
//
// Theta must lie between 0-PI (incl).
//
// Member Data:
//
// fRmin inner radius
// fRmax outer radius
//
// fSPhi starting angle of the segment in radians
// fDPhi delta angle of the segment in radians
//
// fSTheta starting angle of the segment in radians
// fDTheta delta angle of the segment in radians
//
//
//
// Note:
// Internally fSPhi & fDPhi are adjusted so that fDPhi<=2PI,
// and fDPhi+fSPhi<=2PI. This enables simpler comparisons to be
// made with (say) Phi of a point.
//
//
//
// History:
// 28.3.94 P.Kent Old C++ code converted to tolerant geometry
// 17.9.96 V.Grichine Final modifications to commit
#ifndef G4Sphere_HH
#define G4Sphere_HH
#include "G4CSGSolid.hh"
class G4Sphere : public G4CSGSolid {
public:
G4Sphere(const G4String& pName,
G4double pRmin, G4double pRmax,
G4double pSPhi, G4double pDPhi,
G4double pSTheta, G4double pDTheta);
virtual ~G4Sphere() ;
// Access functions
G4double GetInsideRadius () const { return fRmin; }
G4double GetOuterRadius () const { return fRmax; }
G4double GetStartPhiAngle () const { return fSPhi; }
G4double GetDeltaPhiAngle () const { return fDPhi; }
G4double GetStartThetaAngle() const { return fSTheta; }
G4double GetDeltaThetaAngle() const { return fDTheta; }
void SetInsideRadius (G4double newRmin) { fRmin= newRmin; }
void SetOuterRadius (G4double newRmax) { fRmax= newRmax; }
void SetStartPhiAngle (G4double newSphi) { fSPhi= newSphi; }
void SetDeltaPhiAngle (G4double newDphi) { fDPhi= newDphi; }
void SetStartThetaAngle(G4double newSTheta) { fSTheta=newSTheta; }
void SetDeltaThetaAngle(G4double newDTheta) { fDTheta=newDTheta; }
void ComputeDimensions(G4VPVParameterisation* p,
const G4int n,
const G4VPhysicalVolume* pRep);
G4bool CalculateExtent(const EAxis pAxis,
const G4VoxelLimits& pVoxelLimit,
const G4AffineTransform& pTransform,
G4double& pmin, G4double& pmax) const;
EInside Inside(const G4ThreeVector& p) const;
G4ThreeVector SurfaceNormal( const G4ThreeVector& p) const;
G4double DistanceToIn(const G4ThreeVector& p,
const G4ThreeVector& v) const;
G4double DistanceToIn(const G4ThreeVector& p) const;
G4double DistanceToOut(const G4ThreeVector& p,
const G4ThreeVector& v,
const G4bool calcNorm=G4bool(false),
G4bool *validNorm=0,
G4ThreeVector *n=0) const;
G4double DistanceToOut(const G4ThreeVector& p) const;
// Naming method (pseudo-RTTI : run-time type identification)
virtual G4GeometryType GetEntityType() const { return G4String("G4Sphere"); }
// Visualisation functions
void DescribeYourselfTo(G4VGraphicsScene& scene) const;
G4VisExtent GetExtent() const;
G4Polyhedron* CreatePolyhedron() const;
G4NURBS* CreateNURBS() const;
// Old access functions
G4double GetRmin() const { return GetInsideRadius (); }
G4double GetRmax() const { return GetOuterRadius (); }
G4double GetSPhi() const { return GetStartPhiAngle (); }
G4double GetDPhi() const { return GetDeltaPhiAngle (); }
G4double GetSTheta() const { return GetStartThetaAngle(); }
G4double GetDTheta() const { return GetDeltaThetaAngle(); }
protected:
G4ThreeVectorList*
CreateRotatedVertices(const G4AffineTransform& pTransform,
G4int& noPolygonVertices) const;
// Used by distanceToOut
enum ESide {kNull,kRMin,kRMax,kSPhi,kEPhi,kSTheta,kETheta};
// used by normal
enum ENorm {kNRMin,kNRMax,kNSPhi,kNEPhi,kNSTheta,kNETheta};
private:
G4double fRmin,fRmax,
fSPhi,fDPhi,
fSTheta,fDTheta;
};
#endif