60 using namespace CLHEP;
77 if ( pDx > 0 && pDy > 0 && pDz > 0 )
82 fTalpha = std::tan(pAlpha);
83 fTthetaCphi = std::tan(pTheta)*std::cos(pPhi);
84 fTthetaSphi = std::tan(pTheta)*std::sin(pPhi);
88 std::ostringstream message;
89 message <<
"Invalid Length Parameters for Solid: " << GetName() <<
G4endl
90 <<
" pDx, pDy, pDz = "
91 << pDx <<
", " << pDy <<
", " << pDz;
92 G4Exception(
"G4Para::SetAllParameters()",
"GeomSolids0002",
107 if ((pDx<=0) || (pDy<=0) || (pDz<=0))
109 std::ostringstream message;
110 message <<
"Invalid Length Parameters for Solid: " <<
GetName() <<
G4endl
111 <<
" pDx, pDy, pDz = "
112 << pDx <<
", " << pDy <<
", " << pDz;
129 if (!( pt[0].z()<0 && pt[0].z()==pt[1].z() && pt[0].z()==pt[2].z() &&
130 pt[0].z()==pt[3].z() && pt[4].z()>0 && pt[4].z()==pt[5].z() &&
131 pt[4].z()==pt[6].z() && pt[4].z()==pt[7].z() &&
132 (pt[0].z()+pt[4].z())==0 &&
133 pt[0].y()==pt[1].y() && pt[2].y()==pt[3].y() &&
134 pt[4].y()==pt[5].y() && pt[6].y()==pt[7].y() &&
135 ( pt[0].y() + pt[2].y() + pt[4].y() + pt[6].y() ) == 0 &&
136 ( pt[0].x() + pt[1].x() + pt[4].x() + pt[5].x() ) == 0) )
138 std::ostringstream message;
139 message <<
"Invalid vertice coordinates for Solid: " <<
GetName();
143 fDx = ((pt[3]).x()-(pt[2]).x())*0.5;
144 fDy = ((pt[2]).y()-(pt[1]).y())*0.5;
146 fTalpha = ((pt[2]).x()+(pt[3]).x()-(pt[1]).x()-(pt[0]).x())*0.25/
fDy ;
160 fTalpha(0.), fTthetaCphi(0.), fTthetaSphi(0.)
176 :
G4CSGSolid(rhs), fDx(rhs.fDx), fDy(rhs.fDy), fDz(rhs.fDz),
177 fTalpha(rhs.fTalpha), fTthetaCphi(rhs.fTthetaCphi),
178 fTthetaSphi(rhs.fTthetaSphi)
190 if (
this == &rhs) {
return *
this; }
232 std::min(-x0-x1-dx,-x0+x1-dx),x0-x1-dx),x0+x1-dx);
236 std::max(-x0-x1+dx,-x0+x1+dx),x0-x1+dx),x0+x1+dx);
242 pMin.set(xmin,ymin,-dz);
243 pMax.set(xmax,ymax, dz);
247 if (pMin.x() >= pMax.x() || pMin.y() >= pMax.y() || pMin.z() >= pMax.z())
249 std::ostringstream message;
250 message <<
"Bad bounding box (min >= max) for solid: "
252 <<
"\npMin = " << pMin
253 <<
"\npMax = " << pMax;
276 if (
true)
return bbox.
CalculateExtent(pAxis,pVoxelLimit,pTransform,pMin,pMax);
280 return exist = (pMin < pMax) ?
true :
false;
294 baseA[0].set(-x0-x1-dx,-y0-dy,-dz);
295 baseA[1].set(-x0-x1+dx,-y0-dy,-dz);
296 baseA[2].set(-x0+x1+dx,-y0+dy,-dz);
297 baseA[3].set(-x0+x1-dx,-y0+dy,-dz);
299 baseB[0].set(+x0-x1-dx, y0-dy, dz);
300 baseB[1].set(+x0-x1+dx, y0-dy, dz);
301 baseB[2].set(+x0+x1+dx, y0+dy, dz);
302 baseB[3].set(+x0+x1-dx, y0+dy, dz);
304 std::vector<const G4ThreeVectorList *> polygons(2);
305 polygons[0] = &baseA;
306 polygons[1] = &baseB;
323 yt = std::fabs(yt1) ;
359 G4int noSurfaces = 0;
374 xshift = newpx - newpy*
fTalpha;
377 distx = std::fabs(std::fabs(xshift)-
fDx);
378 disty = std::fabs(std::fabs(newpy)-
fDy);
379 distz = std::fabs(std::fabs(p.z())-
fDz);
382 cosntheta = 1/std::sqrt(1+tntheta*tntheta);
394 if ( xshift >= 0.) {sumnorm += nX;}
395 else {sumnorm -= nX;}
400 if ( newpy >= 0.) {sumnorm += nY;}
401 else {sumnorm -= nY;}
406 if ( p.z() >= 0.) {sumnorm += nZ;}
407 else {sumnorm -= nZ;}
409 if ( noSurfaces == 0 )
412 G4Exception(
"G4Para::SurfaceNormal(p)",
"GeomSolids1002",
417 else if ( noSurfaces == 1 ) {norm = sumnorm;}
418 else {norm = sumnorm.unit();}
445 xshift=newpx*calpha+newpy*salpha;
447 distx=std::fabs(std::fabs(xshift)-
fDx*calpha);
448 disty=std::fabs(std::fabs(newpy)-
fDy);
449 distz=std::fabs(std::fabs(p.z())-
fDz);
453 if (distx<distz) {side=
kNX;}
458 if (disty<distz) {side=
kNY;}
468 cosntheta=-1/std::sqrt(1+tntheta*tntheta);
472 cosntheta=1/std::sqrt(1+tntheta*tntheta);
474 norm=
G4ThreeVector(calpha*cosntheta,salpha*cosntheta,-tntheta*cosntheta);
534 smin=(-
fDz-p.z())/v.z();
547 smin=(
fDz-p.z())/v.z();
556 if (std::fabs(p.z())<=
fDz)
602 if (std::fabs(yt)<=
fDy)
615 if (tmin>smin) smin=tmin;
616 if (tmax<smax) smax=tmax;
656 if (std::fabs(xt)<=
fDx)
666 if (tmin>smin) smin=tmin;
667 if (tmax<smax) smax=tmax;
670 if (smax>0&&smin<smax)
696 G4double distz1,distz2,disty1,disty2,distx1,distx2;
717 disty1=(trany-
fDy)*cosy;
718 disty2=(-
fDy-trany)*cosy;
720 if (disty1>safe) safe=disty1;
721 if (disty2>safe) safe=disty2;
725 distx1=(tranx-
fDx)*cosx;
726 distx2=(-
fDx-tranx)*cosx;
728 if (distx1>safe) safe=distx1;
729 if (distx2>safe) safe=distx2;
749 G4double ycomp,calpha,salpha,tntheta,cosntheta;
876 cosntheta=1/std::sqrt(1+tntheta*tntheta);
877 *n=
G4ThreeVector(calpha*cosntheta,salpha*cosntheta,-tntheta*cosntheta);
902 cosntheta=-1/std::sqrt(1+tntheta*tntheta);
903 *n=
G4ThreeVector(calpha*cosntheta,salpha*cosntheta,-tntheta*cosntheta);
925 ycomp=1/std::sqrt(1+fTthetaSphi*fTthetaSphi);
932 cosntheta=-1/std::sqrt(1+tntheta*tntheta);
933 *n=
G4ThreeVector(calpha*cosntheta,salpha*cosntheta,-tntheta*cosntheta);
936 calpha=1/std::sqrt(1+fTalpha*fTalpha);
939 cosntheta=1/std::sqrt(1+tntheta*tntheta);
940 *n=
G4ThreeVector(calpha*cosntheta,salpha*cosntheta,-tntheta*cosntheta);
946 "Undefined side for valid surface normal to solid.");
961 G4double distz1,distz2,disty1,disty2,distx1,distx2;
974 G4cout.precision(oldprc) ;
975 G4Exception(
"G4Para::DistanceToOut(p)",
"GeomSolids1002",
998 disty1=(
fDy-trany)*cosy;
999 disty2=(
fDy+trany)*cosy;
1001 if (disty1<safe) safe=disty1;
1002 if (disty2<safe) safe=disty2;
1006 distx1=(
fDx-tranx)*cosx;
1007 distx2=(
fDx+tranx)*cosx;
1009 if (distx1<safe) safe=distx1;
1010 if (distx2<safe) safe=distx2;
1031 return new G4Para(*
this);
1040 G4int oldprc = os.precision(16);
1041 os <<
"-----------------------------------------------------------\n"
1042 <<
" *** Dump for solid - " <<
GetName() <<
" ***\n"
1043 <<
" ===================================================\n"
1044 <<
" Solid type: G4Para\n"
1045 <<
" Parameters: \n"
1046 <<
" half length X: " <<
fDx/
mm <<
" mm \n"
1047 <<
" half length Y: " <<
fDy/
mm <<
" mm \n"
1048 <<
" half length Z: " <<
fDz/
mm <<
" mm \n"
1054 <<
"-----------------------------------------------------------\n";
1055 os.precision(oldprc);
1070 G4double lambda1, lambda2, chose, aOne, aTwo;
1079 w.z()*v.x() - w.x()*v.z(),
1080 w.x()*v.y() - w.y()*v.x());
1082 aOne = 0.5*Area.mag();
1085 t.z()*u.x() - t.x()*u.z(),
1086 t.x()*u.y() - t.y()*u.x());
1088 aTwo = 0.5*Area.mag();
1094 if( (chose>=0.) && (chose < aOne) )
1098 return (p2+lambda1*v+lambda2*w);
1105 return (p0+lambda1*t+lambda2*u);
1119 G4double chose, aOne, aTwo, aThree, aFour, aFive, aSix;
1149 if( (chose>=0.) && (chose<aOne) )
1151 else if(chose>=aOne && chose<aOne+aTwo)
1153 else if(chose>=aOne+aTwo && chose<aOne+aTwo+aThree)
1155 else if(chose>=aOne+aTwo+aThree && chose<aOne+aTwo+aThree+aFour)
1157 else if(chose>=aOne+aTwo+aThree+aFour && chose<aOne+aTwo+aThree+aFour+aFive)
G4double DistanceToOut(const G4ThreeVector &p, const G4ThreeVector &v, const G4bool calcNorm=G4bool(false), G4bool *validNorm=0, G4ThreeVector *n=0) const
ThreeVector shoot(const G4int Ap, const G4int Af)
G4ThreeVector GetPointOnSurface() const
void ComputeDimensions(G4VPVParameterisation *p, const G4int n, const G4VPhysicalVolume *pRep)
EInside Inside(const G4ThreeVector &p) const
static constexpr double mm
void SetAllParameters(G4double pDx, G4double pDy, G4double pDz, G4double pAlpha, G4double pTheta, G4double pPhi)
G4bool CalculateExtent(const EAxis pAxis, const G4VoxelLimits &pVoxelLimit, const G4AffineTransform &pTransform, G4double &pMin, G4double &pMax) const
static const G4double kInfinity
CLHEP::Hep3Vector G4ThreeVector
std::vector< ExP01TrackerHit * > a
G4ThreeVector ApproxSurfaceNormal(const G4ThreeVector &p) const
G4ThreeVector SurfaceNormal(const G4ThreeVector &p) const
G4double DistanceToIn(const G4ThreeVector &p, const G4ThreeVector &v) const
G4Para(const G4String &pName, G4double pDx, G4double pDy, G4double pDz, G4double pAlpha, G4double pTheta, G4double pPhi)
std::ostream & StreamInfo(std::ostream &os) const
G4Para & operator=(const G4Para &rhs)
virtual void AddSolid(const G4Box &)=0
G4Polyhedron * CreatePolyhedron() const
static double normal(HepRandomEngine *eptr)
G4GLOB_DLL std::ostream G4cout
static constexpr double degree
G4bool CalculateExtent(const EAxis pAxis, const G4VoxelLimits &pVoxelLimits, const G4Transform3D &pTransform3D, G4double &pMin, G4double &pMax) const
G4bool BoundingBoxVsVoxelLimits(const EAxis pAxis, const G4VoxelLimits &pVoxelLimits, const G4Transform3D &pTransform3D, G4double &pMin, G4double &pMax) const
G4GeometryType GetEntityType() const
std::vector< G4ThreeVector > G4ThreeVectorList
G4double GetXHalfLength() const
void G4Exception(const char *originOfException, const char *exceptionCode, G4ExceptionSeverity severity, const char *comments)
virtual void ComputeDimensions(G4Box &, const G4int, const G4VPhysicalVolume *) const
void DescribeYourselfTo(G4VGraphicsScene &scene) const
G4double GetTanAlpha() const
T max(const T t1, const T t2)
brief Return the largest of the two arguments
T min(const T t1, const T t2)
brief Return the smallest of the two arguments
G4double GetZHalfLength() const
static const G4double alpha
G4CSGSolid & operator=(const G4CSGSolid &rhs)
void Extent(G4ThreeVector &pMin, G4ThreeVector &pMax) const
G4ThreeVector GetPointOnPlane(G4ThreeVector p0, G4ThreeVector p1, G4ThreeVector p2, G4ThreeVector p3, G4double &area) const
G4double GetYHalfLength() const