source: trunk/source/geometry/solids/CSG/include/G4Trd.icc @ 831

Last change on this file since 831 was 831, checked in by garnier, 16 years ago

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25//
26//
27// $Id: G4Trd.icc,v 1.7 2006/10/19 15:33:37 gcosmo Exp $
28// GEANT4 tag $Name:  $
29//
30// --------------------------------------------------------------------
31// GEANT 4 inline definitions file
32//
33// G4Trd.icc
34//
35// Implementation of inline methods of G4Trd
36// --------------------------------------------------------------------
37
38inline
39G4double G4Trd::GetXHalfLength1() const
40{
41  return fDx1;
42}
43
44inline
45G4double G4Trd::GetXHalfLength2() const
46{
47  return fDx2;
48}
49
50inline
51G4double G4Trd::GetYHalfLength1() const
52{
53  return fDy1;
54}
55
56inline
57G4double G4Trd::GetYHalfLength2() const
58{
59  return fDy2;
60}
61
62inline
63G4double G4Trd::GetZHalfLength() const
64{
65  return fDz;
66}
67
68inline
69void G4Trd::SetXHalfLength1(G4double val)
70{
71  fDx1= val;
72  fCubicVolume= 0.;
73  fSurfaceArea=0;
74  fpPolyhedron = 0;
75}
76
77inline
78void G4Trd::SetXHalfLength2(G4double val)
79{
80  fDx2= val;
81  fCubicVolume= 0.;
82  fSurfaceArea=0;
83  fpPolyhedron = 0;
84}
85
86inline
87void G4Trd::SetYHalfLength1(G4double val)
88{
89  fDy1= val;
90  fCubicVolume= 0.;
91  fSurfaceArea=0;
92  fpPolyhedron = 0;
93}
94
95inline
96void G4Trd::SetYHalfLength2(G4double val)
97{
98  fDy2= val;
99  fCubicVolume= 0.;
100  fSurfaceArea=0;
101  fpPolyhedron = 0;
102}
103
104inline
105void G4Trd::SetZHalfLength(G4double val)
106{
107  fDz= val;
108  fCubicVolume= 0.;
109  fSurfaceArea=0;
110  fpPolyhedron = 0;
111}
112
113inline
114G4double G4Trd::GetCubicVolume()
115{
116  if(fCubicVolume != 0.) {;}
117  else
118  {
119    fCubicVolume = 2*fDz*( (fDx1+fDx2)*(fDy1+fDy2)
120                         + (fDx2-fDx1)*(fDy2-fDy1)/3 );
121  }
122  return fCubicVolume;
123}
124
125inline
126G4double G4Trd::GetSurfaceArea()
127{
128  if(fSurfaceArea != 0.) {;}
129  else
130  {
131    fSurfaceArea = 4*(fDx1*fDy1+fDx2*fDy2)
132                 + 2*((fDy1+fDy2)*std::sqrt(4*fDz*fDz+(fDx2-fDx1)*(fDx2-fDx1))
133                 + (fDx1+fDx2) *std::sqrt(4*fDz*fDz+(fDy2-fDy1)*(fDy2-fDy1)) );
134  }
135  return fSurfaceArea;
136}
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