133 norm[0] = norm[1] = 0.0;
153 Double_t ndotd = norm[0]*dir[0]+norm[1]*dir[1]+norm[2]*dir[2];
168 if (aa < 0)
return kFALSE;
169 Double_t rsq = point[0]*point[0]+point[1]*point[1];
180 const Int_t numPoints=
n*(
n+1)+2;
190 Double_t rsq = point[0]*point[0]+point[1]*point[1];
192 Double_t b = 2.*
fA*(point[0]*dir[0]+point[1]*dir[1])-dir[2];
205 if (delta<0)
return dist;
212 if (
dist<0)
continue;
217 if (!in) ndotd *= -1;
218 if (ndotd<0)
return dist;
229 if (iact<3 && safe) {
238 dz = -(point[2]+
fDz)/dir[2];
239 }
else if (dir[2]>0) {
240 dz = (
fDz-point[2])/dir[2];
252 if (iact<3 && safe) {
259 if (point[2]<=-
fDz) {
261 snxt = -(
fDz+point[2])/dir[2];
263 xnew = point[0]+snxt*dir[0];
264 ynew = point[1]+snxt*dir[1];
265 if ((xnew*xnew+ynew*ynew) <=
fRlo*
fRlo)
return snxt;
266 }
else if (point[2]>=
fDz) {
268 snxt = (
fDz-point[2])/dir[2];
270 xnew = point[0]+snxt*dir[0];
271 ynew = point[1]+snxt*dir[1];
272 if ((xnew*xnew+ynew*ynew) <=
fRhi*
fRhi)
return snxt;
275 if (snxt > 1E20)
return snxt;
276 znew = point[2]+snxt*dir[2];
287 Error(
"Divide",
"Paraboloid divisions not implemented");
299 param[1] *= param[1];
318 printf(
"*** Shape %s: TGeoParaboloid ***\n",
GetName());
319 printf(
" rlo = %11.5f\n",
fRlo);
320 printf(
" rhi = %11.5f\n",
fRhi);
321 printf(
" dz = %11.5f\n",
fDz);
322 printf(
" Bounding box:\n");
338 nbPnts, 3*nbPnts, nbSegs, 3*nbSegs, nbPols, 2*
n*5 +
n*
n*6);
362 for (j=0; j<
n; j++) {
364 buff.
fSegs[indx++] = 0;
365 buff.
fSegs[indx++] = j+1;
368 for (i=0; i<
n+1; i++) {
370 for (j=0; j<
n; j++) {
372 buff.
fSegs[indx++] =
n*i+1+j;
373 buff.
fSegs[indx++] =
n*i+1+((j+1)%
n);
377 for (j=0; j<
n; j++) {
379 buff.
fSegs[indx++] =
n*i+1+j;
380 buff.
fSegs[indx++] =
n*(i+1)+1+j;
384 for (j=0; j<
n; j++) {
387 buff.
fSegs[indx++] = nn1;
393 for (j=0; j<
n; j++) {
395 buff.
fPols[indx++] = 3;
397 buff.
fPols[indx++] = (j+1)%
n;
398 buff.
fPols[indx++] = j;
401 for (i=0; i<
n; i++) {
403 for (j=0; j<
n; j++) {
405 buff.
fPols[indx++] = 4;
406 buff.
fPols[indx++] = (2*i+1)*
n+j;
407 buff.
fPols[indx++] = 2*(i+1)*
n+j;
408 buff.
fPols[indx++] = (2*i+3)*
n+j;
409 buff.
fPols[indx++] = 2*(i+1)*
n+((j+1)%
n);
413 for (j=0; j<
n; j++) {
415 buff.
fPols[indx++] = 3;
416 buff.
fPols[indx++] = 2*
n*(
n+1)+j;
417 buff.
fPols[indx++] = 2*
n*(
n+1)+((j+1)%
n);
418 buff.
fPols[indx++] = (2*
n+1)*
n+j;
428 if (!in) safz = -safz;
430 Double_t rsq = point[0]*point[0]+point[1]*point[1];
439 if (dr>-1.E-8)
return 0.;
443 if (dr<1.E-8)
return safz;
459 Error(
"SetParaboloidDimensions",
"Dimensions of %s invalid: check (rlo>=0) (rhi>=0) (rlo!=rhi) dz>0",
GetName());
517 for (
Int_t i=0; i<
n+1; i++) {
530 for (
Int_t j=0; j<
n; j++) {
572 out <<
" rlo = " <<
fRlo <<
";" << std::endl;
573 out <<
" rhi = " <<
fRhi <<
";" << std::endl;
574 out <<
" dz = " <<
fDZ <<
";" << std::endl;
575 out <<
" TGeoShape *" <<
GetPointerName() <<
" = new TGeoParaboloid(\"" <<
GetName() <<
"\", rlo,rhi,dz);" << std::endl;
599 for (
Int_t i=0; i<
n+1; i++) {
612 for (
Int_t j=0; j<
n; j++) {
645 if (buffer.
SetRawSizes(nbPnts, 3*nbPnts, nbSegs, 3*nbSegs, nbPols, 2*
n*5 +
n*
n*6)) {
R__EXTERN TGeoManager * gGeoManager
Generic 3D primitive description class.
Bool_t SectionsValid(UInt_t mask) const
void SetSectionsValid(UInt_t mask)
Bool_t SetRawSizes(UInt_t reqPnts, UInt_t reqPntsCapacity, UInt_t reqSegs, UInt_t reqSegsCapacity, UInt_t reqPols, UInt_t reqPolsCapacity)
Set kRaw tessellation section of buffer with supplied sizes.
virtual void InspectShape() const
Prints shape parameters.
virtual void FillBuffer3D(TBuffer3D &buffer, Int_t reqSections, Bool_t localFrame) const
Fills the supplied buffer, with sections in desired frame See TBuffer3D.h for explanation of sections...
Int_t GetNsegments() const
Get number of segments approximating circles.
Geometrical transformation package.
virtual void DistFromOutside_v(const Double_t *points, const Double_t *dirs, Double_t *dists, Int_t vecsize, Double_t *step) const
Compute distance from array of input points having directions specified by dirs. Store output in dist...
virtual TGeoShape * GetMakeRuntimeShape(TGeoShape *mother, TGeoMatrix *mat) const
in case shape has some negative parameters, these has to be computed in order to fit the mother
virtual Bool_t Contains(const Double_t *point) const
test if point is inside the elliptical tube
Double_t DistToParaboloid(const Double_t *point, const Double_t *dir, Bool_t in) const
Compute distance from a point to the parabola given by: z = a*rsq + b; rsq = x*x+y*y
virtual void SavePrimitive(std::ostream &out, Option_t *option="")
Save a primitive as a C++ statement(s) on output stream "out".
virtual Double_t Safety(const Double_t *point, Bool_t in=kTRUE) const
Computes the closest distance from given point to this shape.
virtual TGeoVolume * Divide(TGeoVolume *voldiv, const char *divname, Int_t iaxis, Int_t ndiv, Double_t start, Double_t step)
Divide the paraboloid along one axis.
virtual const TBuffer3D & GetBuffer3D(Int_t reqSections, Bool_t localFrame) const
Fills a static 3D buffer and returns a reference.
virtual void GetBoundingCylinder(Double_t *param) const
Fill vector param[4] with the bounding cylinder parameters.
virtual void ComputeNormal_v(const Double_t *points, const Double_t *dirs, Double_t *norms, Int_t vecsize)
Compute the normal for an array o points so that norm.dot.dir is positive Input: Arrays of point coor...
virtual void SetSegsAndPols(TBuffer3D &buff) const
Fill TBuffer3D structure for segments and polygons.
virtual void GetMeshNumbers(Int_t &nvert, Int_t &nsegs, Int_t &npols) const
Returns numbers of vertices, segments and polygons composing the shape mesh.
virtual Int_t DistancetoPrimitive(Int_t px, Int_t py)
compute closest distance from point px,py to each vertex
virtual void ComputeNormal(const Double_t *point, const Double_t *dir, Double_t *norm)
Compute normal to closest surface from POINT.
virtual void SetPoints(Double_t *points) const
Create paraboloid mesh points.
void SetParaboloidDimensions(Double_t rlo, Double_t rhi, Double_t dz)
Set paraboloid dimensions.
virtual Double_t Capacity() const
Computes capacity of the shape in [length^3].
virtual TBuffer3D * MakeBuffer3D() const
Creates a TBuffer3D describing this shape.
virtual Int_t GetNmeshVertices() const
Returns number of vertices on the paraboloid mesh.
virtual void Contains_v(const Double_t *points, Bool_t *inside, Int_t vecsize) const
Check the inside status for each of the points in the array.
virtual Double_t DistFromInside(const Double_t *point, const Double_t *dir, Int_t iact=1, Double_t step=TGeoShape::Big(), Double_t *safe=0) const
compute distance from inside point to surface of the paraboloid
virtual void SetDimensions(Double_t *param)
Set paraboloid dimensions starting from an array.
virtual Double_t DistFromOutside(const Double_t *point, const Double_t *dir, Int_t iact=1, Double_t step=TGeoShape::Big(), Double_t *safe=0) const
compute distance from outside point to surface of the paraboloid and safe distance
virtual void DistFromInside_v(const Double_t *points, const Double_t *dirs, Double_t *dists, Int_t vecsize, Double_t *step) const
Compute distance from array of input points having directions specified by dirs. Store output in dist...
virtual void ComputeBBox()
compute bounding box of the tube
virtual void Sizeof3D() const
virtual ~TGeoParaboloid()
destructor
TGeoParaboloid()
Dummy constructor.
virtual void InspectShape() const
print shape parameters
virtual void Safety_v(const Double_t *points, const Bool_t *inside, Double_t *safe, Int_t vecsize) const
Compute safe distance from each of the points in the input array.
Base abstract class for all shapes.
Int_t GetBasicColor() const
Get the basic color (0-7).
void TransformPoints(Double_t *points, UInt_t NbPoints) const
Tranform a set of points (LocalToMaster)
void SetShapeBit(UInt_t f, Bool_t set)
Equivalent of TObject::SetBit.
const char * GetPointerName() const
Provide a pointer name containing uid.
Int_t ShapeDistancetoPrimitive(Int_t numpoints, Int_t px, Int_t py) const
Returns distance to shape primitive mesh.
virtual const char * GetName() const
Get the shape name.
static Double_t Tolerance()
TGeoVolume, TGeoVolumeMulti, TGeoVolumeAssembly are the volume classes.
R__ALWAYS_INLINE Bool_t TestBit(UInt_t f) const
virtual const char * ClassName() const
Returns name of class to which the object belongs.
void SetBit(UInt_t f, Bool_t set)
Set or unset the user status bits as specified in f.
virtual void Error(const char *method, const char *msgfmt,...) const
Issue error message.
double dist(Rotation3D const &r1, Rotation3D const &r2)
Short_t Max(Short_t a, Short_t b)
Double_t ATan2(Double_t y, Double_t x)
constexpr Double_t DegToRad()
Conversion from degree to radian:
Double_t Sqrt(Double_t x)
Short_t Min(Short_t a, Short_t b)
static long int sum(long int i)