source: trunk/source/geometry/solids/specific/include/G4PolyhedraSide.hh @ 1202

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26//
27// $Id: G4PolyhedraSide.hh,v 1.11 2008/05/15 11:41:59 gcosmo Exp $
28// GEANT4 tag $Name: geant4-09-02-ref-02 $
29//
30//
31// --------------------------------------------------------------------
32// GEANT 4 class header file
33//
34//
35// G4PolyhedraSide
36//
37// Class description:
38//
39//   Class implementing a face that represents one segmented side
40//   of a polyhedra:
41//
42//   G4PolyhedraSide( const G4PolyhedraSideRZ *prevRZ,
43//                    const G4PolyhedraSideRZ *tail,
44//                    const G4PolyhedraSideRZ *head,
45//                    const G4PolyhedraSideRZ *nextRZ,
46//                          G4int    numSide,
47//                          G4double phiStart, G4double phiTotal,
48//                          G4bool phiIsOpen,  G4bool isAllBehind=false )
49//
50//   Values for r1,z1 and r2,z2 should be specified in clockwise
51//   order in (r,z).
52
53// Author:
54//   David C. Williams (davidw@scipp.ucsc.edu)
55// --------------------------------------------------------------------
56
57#ifndef G4PolyhedraSide_hh
58#define G4PolyhedraSide_hh
59
60#include "G4VCSGface.hh"
61
62class G4IntersectingCone;
63
64struct G4PolyhedraSideRZ
65{
66  G4double r, z;  // start of vector
67};
68
69class G4PolyhedraSide : public G4VCSGface
70{
71
72  public:  // with description
73
74    G4PolyhedraSide( const G4PolyhedraSideRZ *prevRZ,
75                     const G4PolyhedraSideRZ *tail,
76                     const G4PolyhedraSideRZ *head,
77                     const G4PolyhedraSideRZ *nextRZ,
78                           G4int    numSide,
79                           G4double phiStart, G4double phiTotal, 
80                           G4bool phiIsOpen,  G4bool isAllBehind=false );
81    virtual ~G4PolyhedraSide();
82 
83    G4PolyhedraSide( const G4PolyhedraSide &source );
84    G4PolyhedraSide& operator=( const G4PolyhedraSide &source );
85 
86    G4bool Intersect( const G4ThreeVector &p, const G4ThreeVector &v, 
87                            G4bool outgoing, G4double surfTolerance,
88                            G4double &distance, G4double &distFromSurface,
89                            G4ThreeVector &normal, G4bool &allBehind );
90
91    G4double Distance( const G4ThreeVector &p, G4bool outgoing );
92 
93    EInside Inside( const G4ThreeVector &p, G4double tolerance, 
94                          G4double *bestDistance );
95 
96    G4ThreeVector Normal( const G4ThreeVector &p,  G4double *bestDistance );
97
98    G4double Extent( const G4ThreeVector axis );
99 
100    void CalculateExtent( const EAxis axis, 
101                          const G4VoxelLimits &voxelLimit,
102                          const G4AffineTransform &tranform,
103                                G4SolidExtentList &extentList );
104
105    G4VCSGface *Clone() { return new G4PolyhedraSide( *this ); }
106
107  public:  // without description
108
109    // Methods used for GetPointOnSurface()
110
111    G4double SurfaceTriangle( G4ThreeVector p1,
112                              G4ThreeVector p2,
113                              G4ThreeVector p3,
114                              G4ThreeVector *p4 );
115    G4ThreeVector GetPointOnPlane( G4ThreeVector p0, G4ThreeVector p1, 
116                                   G4ThreeVector p2, G4ThreeVector p3,
117                                   G4double *Area );
118    G4double SurfaceArea();
119    G4ThreeVector GetPointOnFace(); 
120
121  public:  // without description
122
123    G4PolyhedraSide(__void__&);
124      // Fake default constructor for usage restricted to direct object
125      // persistency for clients requiring preallocation of memory for
126      // persistifiable objects.
127
128  protected:
129
130    //
131    // A couple internal data structures
132    //
133    struct sG4PolyhedraSideVec;         // Secret recipe for allowing
134    friend struct sG4PolyhedraSideVec;  // protected nested structures
135
136    typedef struct sG4PolyhedraSideEdge
137    {
138      G4ThreeVector  normal;       // Unit normal to this edge
139      G4ThreeVector  corner[2];    // The two corners of this phi edge
140      G4ThreeVector  cornNorm[2];  // The normals of these corners
141    } G4PolyhedraSideEdge;
142 
143    typedef struct sG4PolyhedraSideVec
144    {
145      G4ThreeVector  normal,   // Normal (point out of the shape)
146                     center,   // Point in center of side
147                     surfPhi,  // Unit vector on surface pointing along phi
148                     surfRZ;   // Unit vector on surface pointing along R/Z
149      G4PolyhedraSideEdge *edges[2];  // The phi boundary edges to this side
150                                      //     [0]=low phi [1]=high phi
151      G4ThreeVector  edgeNorm[2];     // RZ edge normals [i] at {r[i],z[i]}
152    } G4PolyhedraSideVec;
153
154    G4bool IntersectSidePlane( const G4ThreeVector &p, const G4ThreeVector &v,
155                               const G4PolyhedraSideVec vec,
156                                     G4double normSign, 
157                                     G4double surfTolerance,
158                                     G4double &distance,
159                                     G4double &distFromSurface );
160
161    G4int LineHitsSegments( const G4ThreeVector &p,
162                            const G4ThreeVector &v,
163                                  G4int *i1, G4int *i2 );
164
165    G4int ClosestPhiSegment( G4double phi );
166 
167    G4int PhiSegment( G4double phi );
168 
169    G4double DistanceToOneSide( const G4ThreeVector &p,
170                                const G4PolyhedraSideVec &vec,
171                                      G4double *normDist );
172
173    G4double DistanceAway( const G4ThreeVector &p,
174                           const G4PolyhedraSideVec &vec,
175                                 G4double *normDist );
176             
177    void CopyStuff( const G4PolyhedraSide &source );
178
179  protected:
180
181    G4int   numSide;      // Number sides
182    G4double r[2], z[2];  // r, z parameters, in specified order
183    G4double startPhi,    // Start phi (0 to 2pi), if phiIsOpen
184             deltaPhi,    // Delta phi (0 to 2pi), if phiIsOpen
185             endPhi;      // End phi (>startPhi), if phiIsOpen
186    G4bool   phiIsOpen;   // True if there is a phi slice
187    G4bool   allBehind;   // True if the entire solid is "behind" this face
188 
189    G4IntersectingCone  *cone;  // Our intersecting cone
190 
191    G4PolyhedraSideVec  *vecs;    // Vector set for each facet of our face
192    G4PolyhedraSideEdge *edges;   // The edges belong to vecs
193    G4double    lenRZ,      // RZ length of each side
194                lenPhi[2];  // Phi dimensions of each side
195    G4double    edgeNorm;   // Normal in RZ/Phi space to each side
196
197  private:
198
199    G4double kCarTolerance;  // Geometrical surface thickness
200    G4double fSurfaceArea;   // Surface Area
201};
202
203#endif
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