source: trunk/source/geometry/solids/CSG/include/G4Cons.icc @ 1358

Last change on this file since 1358 was 1337, checked in by garnier, 14 years ago

tag geant4.9.4 beta 1 + modifs locales

File size: 6.5 KB
Line 
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: G4Cons.icc,v 1.11 2009/06/09 16:08:23 gcosmo Exp $
28// GEANT4 tag $Name: geant4-09-04-beta-01 $
29//
30// --------------------------------------------------------------------
31// GEANT 4 inline definitions file
32//
33// G4Cons.icc
34//
35// Implementation of inline methods of G4Cons
36// --------------------------------------------------------------------
37
38inline
39G4double G4Cons::GetInnerRadiusMinusZ() const
40{
41  return fRmin1 ;
42}
43
44inline
45G4double G4Cons::GetOuterRadiusMinusZ() const
46{
47  return fRmax1 ;
48}
49
50inline
51G4double G4Cons::GetInnerRadiusPlusZ() const
52{
53  return fRmin2 ;
54}
55
56inline
57G4double G4Cons::GetOuterRadiusPlusZ() const
58{
59  return fRmax2 ;
60}
61
62inline
63G4double G4Cons::GetZHalfLength() const
64{
65  return fDz ;
66}
67
68inline 
69G4double G4Cons::GetStartPhiAngle() const
70{
71  return fSPhi ;
72}
73
74inline
75G4double G4Cons::GetDeltaPhiAngle() const
76{
77  return fDPhi;
78}
79
80inline
81void G4Cons::Initialize()
82{
83  fCubicVolume = 0.;
84  fSurfaceArea = 0.;
85  fpPolyhedron = 0;
86}
87
88inline
89void G4Cons::InitializeTrigonometry()
90{
91  G4double hDPhi = 0.5*fDPhi;                       // half delta phi
92  G4double cPhi  = fSPhi + hDPhi;
93  G4double ePhi  = fSPhi + fDPhi;
94
95  sinCPhi    = std::sin(cPhi);
96  cosCPhi    = std::cos(cPhi);
97  cosHDPhiIT = std::cos(hDPhi - 0.5*kAngTolerance); // inner/outer tol half dphi
98  cosHDPhiOT = std::cos(hDPhi + 0.5*kAngTolerance);
99  sinSPhi = std::sin(fSPhi);
100  cosSPhi = std::cos(fSPhi);
101  sinEPhi = std::sin(ePhi);
102  cosEPhi = std::cos(ePhi);
103}
104
105inline void G4Cons::CheckSPhiAngle(G4double sPhi)
106{
107  // Ensure fSphi in 0-2PI or -2PI-0 range if shape crosses 0
108
109  if ( sPhi < 0 )
110  {
111    fSPhi = twopi - std::fmod(std::fabs(sPhi),twopi);
112  }
113  else
114  {
115    fSPhi = std::fmod(sPhi,twopi) ;
116  }
117  if ( fSPhi+fDPhi > twopi )
118  {
119    fSPhi -= twopi ;
120  }
121}
122
123inline void G4Cons::CheckDPhiAngle(G4double dPhi)
124{
125  fPhiFullCone = true;
126  if ( dPhi >= twopi-kAngTolerance*0.5 )
127  {
128    fDPhi=twopi;
129    fSPhi=0;
130  }
131  else
132  {
133    fPhiFullCone = false;
134    if ( dPhi > 0 )
135    {
136      fDPhi = dPhi;
137    }
138    else
139    {
140      G4cerr << "ERROR - G4Cons()::CheckDPhiAngle()" << G4endl
141             << "        Negative or zero delta-Phi (" << dPhi << ") in solid: "
142             << GetName() << G4endl;
143      G4Exception("G4Cons::CheckDPhiAngle()", "InvalidSetup",
144                  FatalException, "Invalid dphi.");
145    }
146  }
147}
148
149inline void G4Cons::CheckPhiAngles(G4double sPhi, G4double dPhi)
150{
151  CheckDPhiAngle(dPhi);
152  if ( (fDPhi<twopi) && (sPhi) ) { CheckSPhiAngle(sPhi); }
153  InitializeTrigonometry();
154}
155
156inline
157void G4Cons::SetInnerRadiusMinusZ( G4double Rmin1 )
158{
159  fRmin1= Rmin1 ;
160  Initialize();
161}
162
163inline
164void G4Cons::SetOuterRadiusMinusZ( G4double Rmax1 )
165{
166  fRmax1= Rmax1 ;
167  Initialize();
168}
169
170inline
171void G4Cons::SetInnerRadiusPlusZ ( G4double Rmin2 )
172{
173  fRmin2= Rmin2 ;
174  Initialize();
175}
176
177inline
178void G4Cons::SetOuterRadiusPlusZ ( G4double Rmax2 )
179{
180  fRmax2= Rmax2 ;
181  Initialize();
182}
183
184inline
185void G4Cons::SetZHalfLength ( G4double newDz )
186{
187  fDz= newDz ;
188  Initialize();
189}
190
191inline
192void G4Cons::SetStartPhiAngle ( G4double newSPhi, G4bool compute )
193{
194  // Flag 'compute' can be used to explicitely avoid recomputation of
195  // trigonometry in case SetDeltaPhiAngle() is invoked afterwards
196
197  CheckSPhiAngle(newSPhi);
198  fPhiFullCone = false;
199  if (compute)  { InitializeTrigonometry(); }
200  Initialize();
201}
202
203void G4Cons::SetDeltaPhiAngle ( G4double newDPhi )
204{
205  CheckPhiAngles(fSPhi, newDPhi);
206  Initialize();
207}
208
209// Old access methods ...
210
211inline
212G4double G4Cons::GetRmin1() const
213{
214  return GetInnerRadiusMinusZ();
215}
216
217inline
218G4double G4Cons::GetRmax1() const
219{
220  return GetOuterRadiusMinusZ();
221}
222
223inline
224G4double G4Cons::GetRmin2() const
225{
226  return GetInnerRadiusPlusZ();
227}
228
229inline
230G4double G4Cons::GetRmax2() const
231{
232  return GetOuterRadiusPlusZ();
233}
234
235inline 
236G4double G4Cons::GetDz() const
237{
238  return GetZHalfLength();
239}
240
241inline
242G4double G4Cons::GetSPhi() const
243{
244  return GetStartPhiAngle();
245}
246
247inline
248G4double G4Cons::GetDPhi() const
249{
250  return GetDeltaPhiAngle();
251}
252
253inline
254G4double G4Cons::GetCubicVolume()
255{
256  if(fCubicVolume != 0.) {;}
257  else   
258  {
259    G4double Rmean, rMean, deltaR, deltar;
260
261    Rmean  = 0.5*(fRmax1+fRmax2);
262    deltaR = fRmax1-fRmax2;
263
264    rMean  = 0.5*(fRmin1+fRmin2);
265    deltar = fRmin1-fRmin2;
266    fCubicVolume = fDPhi*fDz*(Rmean*Rmean-rMean*rMean
267                            +(deltaR*deltaR-deltar*deltar)/12);
268  }
269  return fCubicVolume;
270}
271
272inline
273G4double G4Cons::GetSurfaceArea()
274{
275  if(fSurfaceArea != 0.) {;}
276  else   
277  {
278    G4double mmin, mmax, dmin, dmax;
279
280    mmin= (fRmin1+fRmin2)*0.5;
281    mmax= (fRmax1+fRmax2)*0.5;
282    dmin= (fRmin2-fRmin1);
283    dmax= (fRmax2-fRmax1);
284   
285    fSurfaceArea = fDPhi*( mmin * std::sqrt(dmin*dmin+4*fDz*fDz)
286                         + mmax * std::sqrt(dmax*dmax+4*fDz*fDz)
287                         + 0.5*(fRmax1*fRmax1-fRmin1*fRmin1
288                               +fRmax2*fRmax2-fRmin2*fRmin2 ));
289    if(!fPhiFullCone)
290    {
291      fSurfaceArea = fSurfaceArea+4*fDz*(mmax-mmin);
292    }
293  }
294  return fSurfaceArea;
295}
Note: See TracBrowser for help on using the repository browser.