source: trunk/source/geometry/solids/specific/include/G4Hype.hh @ 1202

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26//
27// $Id: G4Hype.hh,v 1.15 2006/10/20 13:45:20 gcosmo Exp $
28// $Original: G4Hype.hh,v 1.0 1998/06/09 16:57:50 safai Exp $
29// GEANT4 tag $Name: geant4-09-02-ref-02 $
30//
31//
32// --------------------------------------------------------------------
33// GEANT 4 class header file
34//
35//
36// G4Hype
37//
38// Class description:
39//
40//   This class implements a tube with hyperbolic profile.
41//
42//   It describes an hyperbolic volume with curved sides parallel to
43//   the z-axis. The solid has a specified half-length along the z axis,
44//   about which it is centered, and a given minimum and maximum radius.
45//   A minimum radius of 0 signifies a filled Hype (with hyperbolical
46//   inner surface). To have a filled Hype the user must specify
47//   inner radius = 0 AND inner stereo angle = 0.
48//
49//   The inner and outer hyperbolical surfaces can have different
50//   stereo angles. A stereo angle of 0 gives a cylindrical surface.
51
52// Authors:
53//      Ernesto Lamanna (Ernesto.Lamanna@roma1.infn.it) &
54//      Francesco Safai Tehrani (Francesco.SafaiTehrani@roma1.infn.it)
55//      Rome, INFN & University of Rome "La Sapienza",  9 June 1998.
56//
57// --------------------------------------------------------------------
58#ifndef G4HYPE_HH
59#define G4HYPE_HH
60
61#include "G4VSolid.hh"
62#include "G4ThreeVector.hh"
63
64class G4SolidExtentList;
65class G4ClippablePolygon;
66
67class G4Hype : public G4VSolid
68{
69 public:  // with description
70
71  G4Hype(const G4String& pName,
72               G4double  newInnerRadius,
73               G4double  newOuterRadius,
74               G4double  newInnerStereo,
75               G4double  newOuterStereo,
76               G4double  newHalfLenZ);
77
78  virtual ~G4Hype();
79   
80  void ComputeDimensions(G4VPVParameterisation* p,
81                         const G4int n,
82                         const G4VPhysicalVolume* pRep);
83
84  G4bool CalculateExtent(const EAxis pAxis,
85                         const G4VoxelLimits& pVoxelLimit,
86                         const G4AffineTransform& pTransform,
87                         G4double& pmin, G4double& pmax) const;
88
89  inline G4double GetInnerRadius () const;
90  inline G4double GetOuterRadius () const;
91  inline G4double GetZHalfLength () const;
92  inline G4double GetInnerStereo () const;
93  inline G4double GetOuterStereo () const;
94
95  inline void SetInnerRadius (G4double newIRad);
96  inline void SetOuterRadius (G4double newORad);
97  inline void SetZHalfLength (G4double newHLZ);
98  inline void SetInnerStereo (G4double newISte);
99  inline void SetOuterStereo (G4double newOSte);
100
101  EInside Inside(const G4ThreeVector& p) const;
102
103  G4ThreeVector SurfaceNormal(const G4ThreeVector& p) const;
104
105  G4double DistanceToIn(const G4ThreeVector& p, const G4ThreeVector& v) const;
106  G4double DistanceToIn(const G4ThreeVector& p) const;
107  G4double DistanceToOut(const G4ThreeVector& p, const G4ThreeVector& v,
108                         const G4bool calcNorm=G4bool(false),
109                         G4bool *validNorm=0, G4ThreeVector *n=0) const;
110  G4double DistanceToOut(const G4ThreeVector& p) const;
111
112  G4GeometryType  GetEntityType() const;
113
114  std::ostream& StreamInfo(std::ostream& os) const;
115 
116  G4double GetCubicVolume();
117  G4double GetSurfaceArea();
118
119  G4ThreeVector GetPointOnSurface() const;
120
121  void          DescribeYourselfTo (G4VGraphicsScene& scene) const;
122  G4VisExtent   GetExtent          () const;
123  G4Polyhedron* CreatePolyhedron   () const;
124  G4NURBS*      CreateNURBS        () const;
125  G4Polyhedron* GetPolyhedron      () const;
126
127 public:  // without description
128
129  G4Hype(__void__&);
130    // Fake default constructor for usage restricted to direct object
131    // persistency for clients requiring preallocation of memory for
132    // persistifiable objects.
133
134 protected:  // without description
135 
136  inline G4bool InnerSurfaceExists() const;
137    // whether we have an inner surface or not
138
139  static G4double ApproxDistOutside( G4double pr, G4double pz,
140                                     G4double r0, G4double tanPhi );
141  static G4double ApproxDistInside( G4double pr, G4double pz,
142                                    G4double r0, G4double tan2Phi );
143    // approximate isotropic distance to hyperbolic surface
144
145  inline G4double HypeInnerRadius2(G4double zVal) const;
146  inline G4double HypeOuterRadius2(G4double zVal) const;
147    // values of hype radius at a given Z
148
149  static G4int IntersectHype( const G4ThreeVector &p, const G4ThreeVector &v, 
150                              G4double r2, G4double tan2Phi, G4double s[2] );
151    // intersection with hyperbolic surface
152
153  static void AddPolyToExtent( const G4ThreeVector &v0,
154                               const G4ThreeVector &v1,
155                               const G4ThreeVector &w1,
156                               const G4ThreeVector &w0,
157                               const G4VoxelLimits &voxelLimit,
158                               const EAxis axis,
159                               G4SolidExtentList &extentList );
160
161 protected:
162
163  G4double innerRadius;
164  G4double outerRadius;
165  G4double halfLenZ;
166  G4double innerStereo;
167  G4double outerStereo;
168
169  // precalculated parameters, squared quantities
170
171  G4double tanInnerStereo;
172  G4double tanOuterStereo;
173  G4double tanInnerStereo2; // squared tan of Inner Stereo angle
174  G4double tanOuterStereo2; // squared tan of Outer Stereo angle
175  G4double innerRadius2;    // squared Inner Radius
176  G4double outerRadius2;    // squared Outer Radius
177  G4double endInnerRadius2; // squared endcap Inner Radius
178  G4double endOuterRadius2; // squared endcap Outer Radius
179  G4double endInnerRadius; // endcap Inner Radius
180  G4double endOuterRadius; // endcap Outer Radius
181 
182  // Used by distanceToOut
183
184  enum ESide {outerFace,innerFace,leftCap, rightCap};
185
186 private:
187
188  G4double asinh(G4double arg);
189
190 private:
191 
192  G4double fCubicVolume;
193  G4double fSurfaceArea;
194
195  mutable G4Polyhedron* fpPolyhedron;
196
197};
198
199#include "G4Hype.icc"
200
201#endif
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