source: trunk/source/geometry/solids/specific/test/testG4EllipticalTube.cc @ 1350

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

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26//
27// $Id: testG4EllipticalTube.cc
28// GEANT4 tag $Name:
29//
30// testG4EllipticalTube
31//
32// Test file for class G4EllipticalTube derived from G4EllipticalCone
33//
34//             Ensure asserts are compiled in
35
36#include <assert.h>
37#include <cmath>
38
39#include "globals.hh"
40#include "geomdefs.hh"
41#include "G4GeometryTolerance.hh"
42
43#include "G4ThreeVector.hh"
44#include "G4EllipticalTube.hh"
45#include "G4RotationMatrix.hh"
46#include "G4AffineTransform.hh"
47#include "G4VoxelLimits.hh"
48
49const G4String OutputInside(const EInside a)
50{
51        switch(a) 
52        {
53                case kInside:  return "Inside"; 
54                case kOutside: return "Outside";
55                case kSurface: return "Surface";
56        }
57        return "????";
58}
59
60
61G4bool testG4EllipticalTube()
62{
63
64    G4ThreeVector pzero(0,0,0);
65    G4ThreeVector pout ( 0*cm, 0*cm, 25*cm ) ;
66    G4ThreeVector psurface(2.*mm,0*mm,0*cm);
67    G4ThreeVector dir = pzero-pout ;
68    dir *= 1/dir.mag();
69
70    //For Normal
71    G4ThreeVector *pNorm,norm;
72    G4bool *pgoodNorm,goodNorm,calcNorm=true;
73
74    pNorm=&norm;
75    pgoodNorm=&goodNorm;//For Normal
76   
77   
78    G4EllipticalTube t1("Solid EllipticalTube #1",
79                        2*mm,       // xSemiAxis
80                        1*mm,       // ySemiAxis
81                        15*cm);      // zheight   
82                       
83                           
84    G4double dist = t1.DistanceToOut(pout,dir) ; 
85    G4cout << "*********** Testing DistanceToOut method *************** "<<G4endl;
86    G4cout << "Distance = " << dist << G4endl <<G4endl; 
87    dist = t1.DistanceToOut(psurface,G4ThreeVector(1,0,0),calcNorm,pgoodNorm,pNorm);
88    G4cout << "Distance = " << dist << G4endl ; 
89    G4cout << "with Normal = "<< (*pNorm) << G4endl << G4endl ; 
90    // Check Inside
91 
92    G4cout << "************ Test Inside(p) ****************" << G4endl ;
93    G4cout << "pzero :  " << t1.Inside(pzero) << G4endl <<G4endl ; 
94    G4cout << "psurface:" << t1.Inside(psurface) << G4endl <<G4endl ;
95    //test the name
96    G4cout << "The name is : " << t1.GetName() << G4endl ; 
97
98    // testing the volume
99 
100    G4double volume = t1.GetCubicVolume() ; 
101    G4cout << G4endl ;
102    G4cout << "Solid EllipticalTube #1 has Volume = " << volume / cm / cm /cm << " cm^3" 
103           << G4endl << G4endl; 
104
105    return true; 
106}
107
108//
109//  This test generates a random point on the surface of the solid and 
110//  checks the distance from a point outside in the direction of the
111//  line between the two points
112//
113G4bool testDistanceToIn() 
114{   
115  G4EllipticalTube t1("Solid EllipticalTube #1", 
116                      2*cm,       // xSemiAxis
117                      1*cm,       // ySemiAxis 
118                      15*cm);      // zheight
119                       
120 
121  G4int N = 10000;
122  G4int n = 0;
123
124  G4double kCarTolerance = G4GeometryTolerance::GetInstance()->GetSurfaceTolerance();
125
126  for(G4int i=0; i<N; i++)
127  {
128    G4ThreeVector point = t1.GetPointOnSurface();
129    point.setX(std::fabs(point.x()));
130    point.setY(std::fabs(point.y()));
131   
132    G4ThreeVector out (100*cm, 100*cm, 100*cm);
133   
134    G4ThreeVector dir = point - out;
135    G4double dist2 = dir.mag();
136    dir /= dist2;
137   
138    G4double dist1 = t1.DistanceToIn(point,dir);
139    G4double diff = std::fabs(dist1 - dist2);
140   
141    if(diff < 2.*kCarTolerance)
142      n++;     
143  }
144
145  G4cout <<" ************   For testG4EllipticalTube   ******************"<<G4endl<<G4endl;
146  G4cout <<" Number of inconsistencies for testDistanceToIn was: "<< n <<" ..."<<G4endl
147         <<" ... For a total of "<<N<<" trials."<< G4endl <<G4endl;
148
149  return true;
150}
151G4bool testDistanceToOut() 
152{   
153  G4EllipticalTube t1("Solid EllipticalTube #1", 
154                      2*cm,       // xSemiAxis
155                      1*cm,       // ySemiAxis 
156                      15*cm);      // zheight
157 
158  G4int N = 10000;
159  G4int n = 0;
160  G4int nn= 0;
161
162  G4double kCarTolerance = G4GeometryTolerance::GetInstance()->GetSurfaceTolerance();
163
164  //For Normal
165    G4ThreeVector *pNorm,norm,SurfNormal;
166    G4bool *pgoodNorm,goodNorm,calcNorm=true;
167   
168    pNorm=&norm;
169    pgoodNorm=&goodNorm;
170 //
171
172  for(G4int i=0; i<N; i++)
173  {
174    G4ThreeVector point = t1.GetPointOnSurface();
175    point.setX(std::fabs(point.x()));
176    point.setY(std::fabs(point.y()));
177   
178    G4ThreeVector out (0*cm, 0*cm, 0*cm);
179   
180    G4ThreeVector dir = point - out;
181    G4double dist2 = dir.mag();
182    dir /= dist2;
183   
184    G4double dist1 = t1.DistanceToOut(point,dir,calcNorm,pgoodNorm,pNorm);
185    G4double diff = std::fabs(dist1 - dist2);
186    G4double difNorm=((*pNorm)-t1.SurfaceNormal(point)).mag();
187   
188    if(difNorm > 2.*kCarTolerance){
189    if(std::fabs(std::fabs(point.z())-15.0*cm)>kCarTolerance)  nn++;   
190      G4cout<<"point="<<point<<" norm="<< (*pNorm)<<" surfNorm="<<t1.SurfaceNormal(point)<<G4endl;
191     
192    } 
193
194    if(diff < 2.*kCarTolerance)
195      n++;     
196  }
197
198  G4cout <<" ************   For testG4EllipticalTube   ******************"<<G4endl<<G4endl;
199  G4cout <<" Number of inconsistencies for testDistanceToOut was: "<< n <<" ..."<<G4endl
200         <<" ... For a total of "<<N<<" trials."<< G4endl <<G4endl;
201  G4cout <<" Number of differences for test Normal was "<< nn << " ...."<<G4endl <<G4endl;
202
203  return true;
204}
205
206 
207int main() 
208{ 
209
210  G4cout << G4endl;
211  G4cout << "*********************************************************************" <<G4endl;
212  G4cout << "****************** UNIT TEST FOR ELLIPTICAL TUBE ********************" <<G4endl;
213  G4cout << "*********************************************************************" <<G4endl;
214  G4cout << G4endl;
215
216  // temporary test
217  G4ThreeVector Spoint ;
218  G4double dist ;
219
220  G4EllipticalTube t1("Solid EllipticalTube #1",
221                      0.5*mm,       // xSemiAxis
222                      1*mm,       // ySemiAxis
223                      40*cm);      // zheight   
224 
225
226  EInside side ; 
227  for ( G4int i = 0 ; i < 3 ; i++ ) {
228    // G4cout << "Event " << i << G4endl << G4endl ;
229    Spoint = t1.GetPointOnSurface() ;
230    side = t1.Inside(Spoint) ;
231    dist = t1.DistanceToIn(Spoint, -Spoint/Spoint.mag()) ;
232    G4cout << "Spoint " << Spoint << " " <<  dist  << " " << side  << G4endl ;
233  }
234
235#ifdef NDEBUG
236  G4Exception("FAIL: *** Assertions must be compiled in! ***");
237#endif
238  assert(testG4EllipticalTube()); 
239   
240  G4bool what;
241  what = testDistanceToIn();
242  what = testDistanceToOut();
243  G4cout << G4endl;
244  G4cout << "*********************************************************************" <<G4endl;
245  G4cout << "******************* END OF TEST - THANK YOU!!! **********************" <<G4endl;
246  G4cout << "*********************************************************************" <<G4endl;
247  G4cout << G4endl;
248
249  return 0;
250}
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