Geant4 9.6.0
Toolkit for the simulation of the passage of particles through matter
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G4IntersectingCone Class Reference

#include <G4IntersectingCone.hh>

Public Member Functions

 G4IntersectingCone (const G4double r[2], const G4double z[2])
 
virtual ~G4IntersectingCone ()
 
G4int LineHitsCone (const G4ThreeVector &p, const G4ThreeVector &v, G4double *s1, G4double *s2)
 
G4bool HitOn (const G4double r, const G4double z)
 
G4double RLo () const
 
G4double RHi () const
 
G4double ZLo () const
 
G4double ZHi () const
 
 G4IntersectingCone (__void__ &)
 

Protected Member Functions

G4int LineHitsCone1 (const G4ThreeVector &p, const G4ThreeVector &v, G4double *s1, G4double *s2)
 
G4int LineHitsCone2 (const G4ThreeVector &p, const G4ThreeVector &v, G4double *s1, G4double *s2)
 

Protected Attributes

G4double zLo
 
G4double zHi
 
G4double rLo
 
G4double rHi
 
G4bool type1
 
G4double A
 
G4double B
 

Detailed Description

Definition at line 51 of file G4IntersectingCone.hh.

Constructor & Destructor Documentation

◆ G4IntersectingCone() [1/2]

G4IntersectingCone::G4IntersectingCone ( const G4double  r[2],
const G4double  z[2] 
)

Definition at line 46 of file G4IntersectingCone.cc.

48{
49 static const G4double halfCarTolerance
51
52 //
53 // What type of cone are we?
54 //
55 type1 = (std::fabs(z[1]-z[0]) > std::fabs(r[1]-r[0]));
56
57 if (type1)
58 {
59 B = (r[1]-r[0])/(z[1]-z[0]); // tube like
60 A = 0.5*( r[1]+r[0] - B*(z[1]+z[0]) );
61 }
62 else
63 {
64 B = (z[1]-z[0])/(r[1]-r[0]); // disk like
65 A = 0.5*( z[1]+z[0] - B*(r[1]+r[0]) );
66 }
67 //
68 // Calculate extent
69 //
70 if (r[0] < r[1])
71 {
72 rLo = r[0]-halfCarTolerance; rHi = r[1]+halfCarTolerance;
73 }
74 else
75 {
76 rLo = r[1]-halfCarTolerance; rHi = r[0]+halfCarTolerance;
77 }
78
79 if (z[0] < z[1])
80 {
81 zLo = z[0]-halfCarTolerance; zHi = z[1]+halfCarTolerance;
82 }
83 else
84 {
85 zLo = z[1]-halfCarTolerance; zHi = z[0]+halfCarTolerance;
86 }
87}
double G4double
Definition: G4Types.hh:64
G4double GetSurfaceTolerance() const
static G4GeometryTolerance * GetInstance()

◆ ~G4IntersectingCone()

G4IntersectingCone::~G4IntersectingCone ( )
virtual

Definition at line 103 of file G4IntersectingCone.cc.

104{
105}

◆ G4IntersectingCone() [2/2]

G4IntersectingCone::G4IntersectingCone ( __void__ &  )

Definition at line 94 of file G4IntersectingCone.cc.

95 : zLo(0.), zHi(0.), rLo(0.), rHi(0.), type1(false), A(0.), B(0.)
96{
97}

Member Function Documentation

◆ HitOn()

G4bool G4IntersectingCone::HitOn ( const G4double  r,
const G4double  z 
)

Definition at line 114 of file G4IntersectingCone.cc.

116{
117 //
118 // Be careful! The inequalities cannot be "<=" and ">=" here without
119 // punching a tiny hole in our shape!
120 //
121 if (type1)
122 {
123 if (z < zLo || z > zHi) return false;
124 }
125 else
126 {
127 if (r < rLo || r > rHi) return false;
128 }
129
130 return true;
131}

Referenced by G4PolyconeSide::PointOnCone().

◆ LineHitsCone()

G4int G4IntersectingCone::LineHitsCone ( const G4ThreeVector p,
const G4ThreeVector v,
G4double s1,
G4double s2 
)

Definition at line 140 of file G4IntersectingCone.cc.

143{
144 if (type1)
145 {
146 return LineHitsCone1( p, v, s1, s2 );
147 }
148 else
149 {
150 return LineHitsCone2( p, v, s1, s2 );
151 }
152}
G4int LineHitsCone1(const G4ThreeVector &p, const G4ThreeVector &v, G4double *s1, G4double *s2)
G4int LineHitsCone2(const G4ThreeVector &p, const G4ThreeVector &v, G4double *s1, G4double *s2)

Referenced by G4PolyconeSide::Intersect(), and G4PolyhedraSide::LineHitsSegments().

◆ LineHitsCone1()

G4int G4IntersectingCone::LineHitsCone1 ( const G4ThreeVector p,
const G4ThreeVector v,
G4double s1,
G4double s2 
)
protected

Definition at line 214 of file G4IntersectingCone.cc.

217{
218 G4double x0 = p.x(), y0 = p.y(), z0 = p.z();
219 G4double tx = v.x(), ty = v.y(), tz = v.z();
220
221 G4double a = tx*tx + ty*ty - sqr(B*tz);
222 G4double b = 2*( x0*tx + y0*ty - (A*B + B*B*z0)*tz);
223 G4double c = x0*x0 + y0*y0 - sqr(A + B*z0);
224
225 G4double radical = b*b - 4*a*c;
226
227 if (radical < -1E-6*std::fabs(b)) { return 0; } // No solution
228
229 if (radical < 1E-6*std::fabs(b))
230 {
231 //
232 // The radical is roughly zero: check for special, very rare, cases
233 //
234 if (std::fabs(a) > 1/kInfinity)
235 {
236 if(B==0.) { return 0; }
237 if ( std::fabs(x0*ty - y0*tx) < std::fabs(1E-6/B) )
238 {
239 *s1 = -0.5*b/a;
240 return 1;
241 }
242 return 0;
243 }
244 }
245 else
246 {
247 radical = std::sqrt(radical);
248 }
249
250 if (a > 1/kInfinity)
251 {
252 G4double sa, sb, q = -0.5*( b + (b < 0 ? -radical : +radical) );
253 sa = q/a;
254 sb = c/q;
255 if (sa < sb) { *s1 = sa; *s2 = sb; } else { *s1 = sb; *s2 = sa; }
256 if (A + B*(z0+(*s1)*tz) < 0) { return 0; }
257 return 2;
258 }
259 else if (a < -1/kInfinity)
260 {
261 G4double sa, sb, q = -0.5*( b + (b < 0 ? -radical : +radical) );
262 sa = q/a;
263 sb = c/q;
264 *s1 = (B*tz > 0)^(sa > sb) ? sb : sa;
265 return 1;
266 }
267 else if (std::fabs(b) < 1/kInfinity)
268 {
269 return 0;
270 }
271 else
272 {
273 *s1 = -c/b;
274 if (A + B*(z0+(*s1)*tz) < 0) { return 0; }
275 return 1;
276 }
277}
double z() const
double x() const
double y() const
T sqr(const T &x)
Definition: templates.hh:145

Referenced by LineHitsCone().

◆ LineHitsCone2()

G4int G4IntersectingCone::LineHitsCone2 ( const G4ThreeVector p,
const G4ThreeVector v,
G4double s1,
G4double s2 
)
protected

Definition at line 304 of file G4IntersectingCone.cc.

307{
308 G4double x0 = p.x(), y0 = p.y(), z0 = p.z();
309 G4double tx = v.x(), ty = v.y(), tz = v.z();
310
311
312 // Special case which might not be so rare: B = 0 (precisely)
313 //
314 if (B==0)
315 {
316 if (std::fabs(tz) < 1/kInfinity) { return 0; }
317
318 *s1 = (A-z0)/tz;
319 return 1;
320 }
321
322 G4double B2 = B*B;
323
324 G4double a = tz*tz - B2*(tx*tx + ty*ty);
325 G4double b = 2*( (z0-A)*tz - B2*(x0*tx + y0*ty) );
326 G4double c = sqr(z0-A) - B2*( x0*x0 + y0*y0 );
327
328 G4double radical = b*b - 4*a*c;
329
330 if (radical < -1E-6*std::fabs(b)) { return 0; } // No solution
331
332 if (radical < 1E-6*std::fabs(b))
333 {
334 //
335 // The radical is roughly zero: check for special, very rare, cases
336 //
337 if (std::fabs(a) > 1/kInfinity)
338 {
339 if ( std::fabs(x0*ty - y0*tx) < std::fabs(1E-6/B) )
340 {
341 *s1 = -0.5*b/a;
342 return 1;
343 }
344 return 0;
345 }
346 }
347 else
348 {
349 radical = std::sqrt(radical);
350 }
351
352 if (a < -1/kInfinity)
353 {
354 G4double sa, sb, q = -0.5*( b + (b < 0 ? -radical : +radical) );
355 sa = q/a;
356 sb = c/q;
357 if (sa < sb) { *s1 = sa; *s2 = sb; } else { *s1 = sb; *s2 = sa; }
358 if ((z0 + (*s1)*tz - A)/B < 0) { return 0; }
359 return 2;
360 }
361 else if (a > 1/kInfinity)
362 {
363 G4double sa, sb, q = -0.5*( b + (b < 0 ? -radical : +radical) );
364 sa = q/a;
365 sb = c/q;
366 *s1 = (tz*B > 0)^(sa > sb) ? sb : sa;
367 return 1;
368 }
369 else if (std::fabs(b) < 1/kInfinity)
370 {
371 return 0;
372 }
373 else
374 {
375 *s1 = -c/b;
376 if ((z0 + (*s1)*tz - A)/B < 0) { return 0; }
377 return 1;
378 }
379}

Referenced by LineHitsCone().

◆ RHi()

G4double G4IntersectingCone::RHi ( ) const
inline

Definition at line 64 of file G4IntersectingCone.hh.

64{ return rHi; }

◆ RLo()

G4double G4IntersectingCone::RLo ( ) const
inline

Definition at line 63 of file G4IntersectingCone.hh.

63{ return rLo; }

◆ ZHi()

G4double G4IntersectingCone::ZHi ( ) const
inline

Definition at line 66 of file G4IntersectingCone.hh.

66{ return zHi; }

Referenced by G4PolyconeSide::Extent(), and G4PolyhedraSide::Extent().

◆ ZLo()

G4double G4IntersectingCone::ZLo ( ) const
inline

Definition at line 65 of file G4IntersectingCone.hh.

65{ return zLo; }

Referenced by G4PolyconeSide::Extent(), and G4PolyhedraSide::Extent().

Member Data Documentation

◆ A

G4double G4IntersectingCone::A
protected

Definition at line 83 of file G4IntersectingCone.hh.

Referenced by G4IntersectingCone(), LineHitsCone1(), and LineHitsCone2().

◆ B

G4double G4IntersectingCone::B
protected

Definition at line 83 of file G4IntersectingCone.hh.

Referenced by G4IntersectingCone(), LineHitsCone1(), and LineHitsCone2().

◆ rHi

G4double G4IntersectingCone::rHi
protected

Definition at line 79 of file G4IntersectingCone.hh.

Referenced by G4IntersectingCone(), HitOn(), and RHi().

◆ rLo

G4double G4IntersectingCone::rLo
protected

Definition at line 79 of file G4IntersectingCone.hh.

Referenced by G4IntersectingCone(), and RLo().

◆ type1

G4bool G4IntersectingCone::type1
protected

Definition at line 81 of file G4IntersectingCone.hh.

Referenced by G4IntersectingCone(), HitOn(), and LineHitsCone().

◆ zHi

G4double G4IntersectingCone::zHi
protected

Definition at line 78 of file G4IntersectingCone.hh.

Referenced by G4IntersectingCone(), HitOn(), and ZHi().

◆ zLo

G4double G4IntersectingCone::zLo
protected

Definition at line 78 of file G4IntersectingCone.hh.

Referenced by G4IntersectingCone(), and ZLo().


The documentation for this class was generated from the following files: