Geant4 10.7.0
Toolkit for the simulation of the passage of particles through matter
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HepPolyhedronTorus Class Reference

#include <HepPolyhedron.h>

+ Inheritance diagram for HepPolyhedronTorus:

Public Member Functions

 HepPolyhedronTorus (G4double rmin, G4double rmax, G4double rtor, G4double phi, G4double dphi)
 
virtual ~HepPolyhedronTorus ()
 
- Public Member Functions inherited from HepPolyhedron
 HepPolyhedron ()
 
 HepPolyhedron (const HepPolyhedron &from)
 
 HepPolyhedron (HepPolyhedron &&from)
 
virtual ~HepPolyhedron ()
 
HepPolyhedronoperator= (const HepPolyhedron &from)
 
HepPolyhedronoperator= (HepPolyhedron &&from)
 
G4int GetNoVertices () const
 
G4int GetNoVerteces () const
 
G4int GetNoFacets () const
 
HepPolyhedronTransform (const G4Transform3D &t)
 
G4bool GetNextVertexIndex (G4int &index, G4int &edgeFlag) const
 
G4Point3D GetVertex (G4int index) const
 
G4bool GetNextVertex (G4Point3D &vertex, G4int &edgeFlag) const
 
G4bool GetNextVertex (G4Point3D &vertex, G4int &edgeFlag, G4Normal3D &normal) const
 
G4bool GetNextEdgeIndices (G4int &i1, G4int &i2, G4int &edgeFlag, G4int &iface1, G4int &iface2) const
 
G4bool GetNextEdgeIndeces (G4int &i1, G4int &i2, G4int &edgeFlag, G4int &iface1, G4int &iface2) const
 
G4bool GetNextEdgeIndices (G4int &i1, G4int &i2, G4int &edgeFlag) const
 
G4bool GetNextEdgeIndeces (G4int &i1, G4int &i2, G4int &edgeFlag) const
 
G4bool GetNextEdge (G4Point3D &p1, G4Point3D &p2, G4int &edgeFlag) const
 
G4bool GetNextEdge (G4Point3D &p1, G4Point3D &p2, G4int &edgeFlag, G4int &iface1, G4int &iface2) const
 
void GetFacet (G4int iFace, G4int &n, G4int *iNodes, G4int *edgeFlags=0, G4int *iFaces=0) const
 
void GetFacet (G4int iFace, G4int &n, G4Point3D *nodes, G4int *edgeFlags=0, G4Normal3D *normals=0) const
 
G4bool GetNextFacet (G4int &n, G4Point3D *nodes, G4int *edgeFlags=0, G4Normal3D *normals=0) const
 
G4Normal3D GetNormal (G4int iFace) const
 
G4Normal3D GetUnitNormal (G4int iFace) const
 
G4bool GetNextNormal (G4Normal3D &normal) const
 
G4bool GetNextUnitNormal (G4Normal3D &normal) const
 
HepPolyhedron add (const HepPolyhedron &p) const
 
HepPolyhedron subtract (const HepPolyhedron &p) const
 
HepPolyhedron intersect (const HepPolyhedron &p) const
 
G4double GetSurfaceArea () const
 
G4double GetVolume () const
 
G4int createTwistedTrap (G4double Dz, const G4double xy1[][2], const G4double xy2[][2])
 
G4int createPolyhedron (G4int Nnodes, G4int Nfaces, const G4double xyz[][3], const G4int faces[][4])
 

Additional Inherited Members

- Static Public Member Functions inherited from HepPolyhedron
static G4int GetNumberOfRotationSteps ()
 
static void SetNumberOfRotationSteps (G4int n)
 
static void ResetNumberOfRotationSteps ()
 
- Protected Member Functions inherited from HepPolyhedron
void AllocateMemory (G4int Nvert, G4int Nface)
 
G4int FindNeighbour (G4int iFace, G4int iNode, G4int iOrder) const
 
G4Normal3D FindNodeNormal (G4int iFace, G4int iNode) const
 
void CreatePrism ()
 
void RotateEdge (G4int k1, G4int k2, G4double r1, G4double r2, G4int v1, G4int v2, G4int vEdge, G4bool ifWholeCircle, G4int ns, G4int &kface)
 
void SetSideFacets (G4int ii[4], G4int vv[4], G4int *kk, G4double *r, G4double dphi, G4int ns, G4int &kface)
 
void RotateAroundZ (G4int nstep, G4double phi, G4double dphi, G4int np1, G4int np2, const G4double *z, G4double *r, G4int nodeVis, G4int edgeVis)
 
void SetReferences ()
 
void InvertFacets ()
 
- Protected Attributes inherited from HepPolyhedron
G4int nvert
 
G4int nface
 
G4Point3DpV
 
G4FacetpF
 
- Static Protected Attributes inherited from HepPolyhedron
static G4ThreadLocal G4int fNumberOfRotationSteps = DEFAULT_NUMBER_OF_STEPS
 

Detailed Description

Definition at line 510 of file HepPolyhedron.h.

Constructor & Destructor Documentation

◆ HepPolyhedronTorus()

HepPolyhedronTorus::HepPolyhedronTorus ( G4double  rmin,
G4double  rmax,
G4double  rtor,
G4double  phi,
G4double  dphi 
)

Definition at line 2033 of file HepPolyhedron.cc.

2052{
2053 // C H E C K I N P U T P A R A M E T E R S
2054
2055 if (dphi <= 0. || dphi > twopi) {
2056 std::cerr
2057 << "HepPolyhedronTorus: wrong delta phi = " << dphi
2058 << std::endl;
2059 return;
2060 }
2061
2062 if (rmin < 0. || rmin >= rmax || rmax >= rtor) {
2063 std::cerr
2064 << "HepPolyhedronTorus: error in radiuses"
2065 << " rmin=" << rmin << " rmax=" << rmax << " rtorus=" << rtor
2066 << std::endl;
2067 return;
2068 }
2069
2070 // P R E P A R E T W O P O L Y L I N E S
2071
2073 assert(np1>0);
2074 G4int np2 = rmin < spatialTolerance ? 1 : np1;
2075
2076 G4double *zz, *rr;
2077 zz = new G4double[np1+np2];
2078 rr = new G4double[np1+np2];
2079
2080 G4double a = twopi/np1;
2081 G4double cosa, sina;
2082 for (G4int i=0; i<np1; i++) {
2083 cosa = std::cos(i*a);
2084 sina = std::sin(i*a);
2085 zz[i] = rmax*cosa;
2086 rr[i] = rtor+rmax*sina;
2087 if (np2 > 1) {
2088 zz[i+np1] = rmin*cosa;
2089 rr[i+np1] = rtor+rmin*sina;
2090 }
2091 }
2092 if (np2 == 1) {
2093 zz[np1] = 0.;
2094 rr[np1] = rtor;
2095 np2 = -1;
2096 }
2097
2098 // R O T A T E P O L Y L I N E S
2099
2100 RotateAroundZ(0, phi, dphi, -np1, -np2, zz, rr, -1,-1);
2101 SetReferences();
2102
2103 delete [] zz;
2104 delete [] rr;
2105}
double G4double
Definition: G4Types.hh:83
int G4int
Definition: G4Types.hh:85
const G4double spatialTolerance
void RotateAroundZ(G4int nstep, G4double phi, G4double dphi, G4int np1, G4int np2, const G4double *z, G4double *r, G4int nodeVis, G4int edgeVis)
void SetReferences()
static G4int GetNumberOfRotationSteps()

◆ ~HepPolyhedronTorus()

HepPolyhedronTorus::~HepPolyhedronTorus ( )
virtual

Definition at line 2107 of file HepPolyhedron.cc.

2107{}

The documentation for this class was generated from the following files: