source: trunk/source/geometry/solids/specific/src/G4EnclosingCylinder.cc @ 1350

Last change on this file since 1350 was 1337, checked in by garnier, 14 years ago

tag geant4.9.4 beta 1 + modifs locales

File size: 4.7 KB
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26//
27// $Id: G4EnclosingCylinder.cc,v 1.10 2007/05/11 13:54:29 gcosmo Exp $
28// GEANT4 tag $Name: geant4-09-04-beta-01 $
29//
30//
31// --------------------------------------------------------------------
32// GEANT 4 class source file
33//
34//
35// G4EnclosingCylinder.cc
36//
37// Implementation of a utility class for a quick check of geometry.
38//
39// --------------------------------------------------------------------
40
41#include "G4EnclosingCylinder.hh"
42#include "G4ReduciblePolygon.hh"
43#include "G4GeometryTolerance.hh"
44
45//
46// Constructor
47//
48G4EnclosingCylinder::G4EnclosingCylinder( const G4ReduciblePolygon *rz,
49                                                G4bool thePhiIsOpen, 
50                                                G4double theStartPhi,
51                                                G4double theTotalPhi )
52  : startPhi(theStartPhi), totalPhi(theTotalPhi),
53    rx1(0.), ry1(0.), dx1(0.), dy1(0.),
54    rx2(0.), ry2(0.), dx2(0.), dy2(0.),     
55    concave(theTotalPhi > pi)
56{
57  //
58  // Obtain largest r and smallest and largest z
59  //
60  radius = rz->Amax();
61  zHi = rz->Bmax();
62  zLo = rz->Bmin();
63
64  G4double kCarTolerance = G4GeometryTolerance::GetInstance()
65                           ->GetSurfaceTolerance();
66  //
67  // Save phi info
68  //
69  phiIsOpen = thePhiIsOpen;
70  if ( phiIsOpen )
71  {   
72    rx1 = std::cos(startPhi);
73    ry1 = std::sin(startPhi);
74    dx1 = +ry1*10*kCarTolerance;
75    dy1 = -rx1*10*kCarTolerance;
76   
77    rx2 = std::cos(startPhi+totalPhi);
78    ry2 = std::sin(startPhi+totalPhi);
79    dx2 = -ry2*10*kCarTolerance;
80    dy2 = +rx2*10*kCarTolerance;
81  }
82 
83  //
84  // Add safety
85  //
86  radius += 10*kCarTolerance;
87  zLo    -= 10*kCarTolerance;
88  zHi    += 10*kCarTolerance;
89}
90
91//
92// Fake default constructor - sets only member data and allocates memory
93//                            for usage restricted to object persistency.
94//
95G4EnclosingCylinder::G4EnclosingCylinder( __void__& )
96{
97}
98
99//
100// Destructor
101//
102G4EnclosingCylinder::~G4EnclosingCylinder()
103{
104}
105
106
107//
108// Outside
109//
110// Decide very rapidly if the point is outside the cylinder
111//
112// If one is not certain, return false
113//
114G4bool G4EnclosingCylinder::MustBeOutside( const G4ThreeVector &p ) const
115{
116  if (p.perp() > radius) return true;
117  if (p.z() < zLo) return true;
118  if (p.z() > zHi) return true;
119
120  if (phiIsOpen)
121  {
122    if (concave)
123    {
124      if ( ((p.x()-dx1)*ry1 - (p.y()-dy1)*rx1) < 0) return false;
125      if ( ((p.x()-dx2)*ry2 - (p.y()-dy2)*rx2) > 0) return false;
126    }
127    else
128    {
129      if ( ((p.x()-dx1)*ry1 - (p.y()-dy1)*rx1) > 0) return true;
130      if ( ((p.x()-dx2)*ry2 - (p.y()-dy2)*rx2) < 0) return true;
131    }
132  }
133 
134  return false;
135}
136   
137   
138//
139// Misses
140//
141// Decide very rapidly if the trajectory is going to miss the cylinder
142//
143// If one is not sure, return false
144//
145G4bool G4EnclosingCylinder::ShouldMiss( const G4ThreeVector &p,
146                                        const G4ThreeVector &v ) const
147{
148  if (!MustBeOutside(p)) return false;
149 
150  G4double cross = p.x()*v.y() - p.y()*v.x();
151  if (cross > radius) return true;
152 
153  if (p.perp() > radius)
154  {
155    G4double dot = p.x()*v.x() + p.y()*v.y();
156    if (dot > 0) return true;
157  }
158
159  return false;
160}
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