source: trunk/source/geometry/solids/CSG/include/G4Trap.icc@ 1036

Last change on this file since 1036 was 850, checked in by garnier, 17 years ago

geant4.8.2 beta

File size: 4.8 KB
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1//
2// ********************************************************************
3// * License and Disclaimer *
4// * *
5// * The Geant4 software is copyright of the Copyright Holders of *
6// * the Geant4 Collaboration. It is provided under the terms and *
7// * conditions of the Geant4 Software License, included in the file *
8// * LICENSE and available at http://cern.ch/geant4/license . These *
9// * include a list of copyright holders. *
10// * *
11// * Neither the authors of this software system, nor their employing *
12// * institutes,nor the agencies providing financial support for this *
13// * work make any representation or warranty, express or implied, *
14// * regarding this software system or assume any liability for its *
15// * use. Please see the license in the file LICENSE and URL above *
16// * for the full disclaimer and the limitation of liability. *
17// * *
18// * This code implementation is the result of the scientific and *
19// * technical work of the GEANT4 collaboration. *
20// * By using, copying, modifying or distributing the software (or *
21// * any work based on the software) you agree to acknowledge its *
22// * use in resulting scientific publications, and indicate your *
23// * acceptance of all terms of the Geant4 Software license. *
24// ********************************************************************
25//
26//
27// $Id: G4Trap.icc,v 1.8 2006/10/19 15:33:37 gcosmo Exp $
28// GEANT4 tag $Name: HEAD $
29//
30// --------------------------------------------------------------------
31// GEANT 4 inline definitions file
32//
33// G4Trap.icc
34//
35// Implementation of inline methods of G4Trap
36// --------------------------------------------------------------------
37
38inline
39G4double G4Trap::GetZHalfLength() const
40{
41 return fDz ;
42}
43
44inline
45G4ThreeVector G4Trap::GetSymAxis() const
46{
47 G4double cosTheta = 1.0/std::sqrt(1+fTthetaCphi*fTthetaCphi +
48 fTthetaSphi*fTthetaSphi) ;
49
50 return G4ThreeVector(fTthetaCphi*cosTheta,
51 fTthetaSphi*cosTheta,
52 cosTheta) ;
53}
54
55inline
56G4double G4Trap::GetYHalfLength1() const
57{
58 return fDy1 ;
59}
60
61inline
62G4double G4Trap::GetXHalfLength1() const
63{
64 return fDx1 ;
65}
66
67inline
68G4double G4Trap::GetXHalfLength2() const
69{
70 return fDx2 ;
71}
72
73inline
74G4double G4Trap::GetTanAlpha1() const
75{
76 return fTalpha1 ;
77}
78
79inline
80G4double G4Trap::GetYHalfLength2() const
81{
82 return fDy2 ;
83}
84
85inline
86G4double G4Trap::GetXHalfLength3() const
87{
88 return fDx3 ;
89}
90
91inline
92G4double G4Trap::GetXHalfLength4() const
93{
94 return fDx4 ;
95}
96
97inline
98G4double G4Trap::GetTanAlpha2() const
99{
100 return fTalpha2 ;
101}
102
103inline
104TrapSidePlane G4Trap::GetSidePlane( G4int n ) const
105{
106 return fPlanes[n] ;
107}
108
109inline
110G4double G4Trap::GetFaceArea(const G4ThreeVector& p0, const G4ThreeVector& p1,
111 const G4ThreeVector& p2, const G4ThreeVector& p3)
112{
113 G4double area = 0.5*((p1-p0).cross(p2-p1).mag()+(p3-p2).cross(p0-p3).mag());
114 return area;
115}
116
117inline
118G4double G4Trap::GetCubicVolume()
119{
120 if(fCubicVolume != 0.) {;}
121 else { fCubicVolume = fDz*( (fDx1+fDx2+fDx3+fDx4)*(fDy1+fDy2)
122 + (fDx4+fDx3-fDx2-fDx1)*(fDy2-fDy1)/3 ); }
123 return fCubicVolume;
124}
125
126inline
127G4double G4Trap::GetSurfaceArea()
128{
129 if(fSurfaceArea != 0.) {;}
130 else
131 {
132 G4ThreeVector ba(fDx1-fDx2+fTalpha1*2*fDy1,2*fDy1,0);
133 G4ThreeVector bc(2*fDz*fTthetaCphi-(fDx4-fDx2)+fTalpha2*fDy2-fTalpha1*fDy1,
134 2*fDz*fTthetaSphi+fDy2-fDy1, 2*fDz);
135 G4ThreeVector dc(-fDx4+fDx3+2*fTalpha2*fDy2, 2*fDy2,0);
136 G4ThreeVector da(-2*fDz*fTthetaCphi-(fDx1-fDx3)-fTalpha1*fDy1+fTalpha2*fDy2,
137 -2*fDz*fTthetaSphi-fDy1+fDy2,-2*fDz);
138
139 G4ThreeVector ef(fDx2-fDx1+2*fTalpha1*fDy1, 2*fDy1,0);
140 G4ThreeVector eh(2*fDz*fTthetaCphi+fDx3-fDx1+fTalpha1*fDy1-fTalpha2*fDy2,
141 2*fDz*fTthetaSphi-fDy2+fDy1,2*fDz);
142 G4ThreeVector gh(fDx3-fDx4-2*fTalpha2*fDy2, -2*fDy2,0);
143 G4ThreeVector gf(-2*fDz*fTthetaCphi+fDx2-fDx4+fTalpha1*fDy1-fTalpha2*fDy2,
144 -2*fDz*fTthetaSphi+fDy1-fDy2,-2*fDz);
145
146 G4ThreeVector cr;
147 cr = ba.cross(bc);
148 G4double babc=cr.mag();
149 cr = dc.cross(da);
150 G4double dcda=cr.mag();
151 cr = ef.cross(eh);
152 G4double efeh=cr.mag();
153 cr = gh.cross(gf);
154 G4double ghgf=cr.mag();
155
156 fSurfaceArea = 2*fDy1*(fDx1+fDx2)+2*fDy2*(fDx3+fDx4)
157 + (fDx1+fDx3)
158 * std::sqrt(4*fDz*fDz+std::pow(fDy2-fDy1-2*fDz*fTthetaSphi,2))
159 + (fDx2+fDx4)
160 * std::sqrt(4*fDz*fDz+std::pow(fDy2-fDy1+2*fDz*fTthetaSphi,2))
161 + 0.5*(babc+dcda+efeh+ghgf);
162 }
163 return fSurfaceArea;
164}
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