175 fOrigin[0] = fOrigin[1] = fOrigin[2] = 0.0;
176 SetBoxDimensions(dx, dy, dz, origin);
185 fOrigin[0] = fOrigin[1] = fOrigin[2] = 0.0;
186 SetBoxDimensions(dx, dy, dz, origin);
198 fOrigin[0] = fOrigin[1] = fOrigin[2] = 0.0;
199 SetDimensions(param);
220 memset(norm, 0, 3 *
sizeof(
Double_t));
227 norm[i] = (dir[i] > 0) ? 1 : (-1);
244 if (do2 <= (mind * mind))
254 Double_t dirnorm = dir[0] * dir[0] + dir[1] * dir[1] + dir[2] * dir[2];
255 if ((doct * doct) >= (do2 - rmax2) * dirnorm)
265 const Int_t numPoints = 8;
280 TGeoVolumeMulti *vmulti;
281 TGeoPatternFinder *finder;
287 finder =
new TGeoPatternX(voldiv, ndiv,
start, end);
292 finder =
new TGeoPatternY(voldiv, ndiv,
start, end);
297 finder =
new TGeoPatternZ(voldiv, ndiv,
start, end);
300 default:
Error(
"Divide",
"Wrong axis type for division");
return nullptr;
302 vol =
new TGeoVolume(divname, shape, voldiv->
GetMedium());
307 for (
Int_t ic = 0; ic < ndiv; ic++) {
358 for (i = 0; i < 3; i++)
359 newpt[i] = point[i] -
fOrigin[i];
360 saf[0] =
fDX + newpt[0];
361 saf[1] =
fDX - newpt[0];
362 saf[2] =
fDY + newpt[1];
363 saf[3] =
fDY - newpt[1];
364 saf[4] =
fDZ + newpt[2];
365 saf[5] =
fDZ - newpt[2];
366 if (iact < 3 && safe) {
369 for (i = 1; i < 6; i++)
377 if (iact == 1 && step < *safe)
382 for (i = 0; i < 3; i++) {
384 s = (dir[i] > 0) ? (saf[(i << 1) + 1] / dir[i]) : (-saf[i << 1] / dir[i]);
404 for (i = 0; i < 3; i++)
405 newpt[i] = point[i] - origin[i];
406 saf[0] = dx + newpt[0];
407 saf[1] = dx - newpt[0];
408 saf[2] = dy + newpt[1];
409 saf[3] = dy - newpt[1];
410 saf[4] = dz + newpt[2];
411 saf[5] = dz - newpt[2];
414 for (i = 0; i < 3; i++) {
416 s = (dir[i] > 0) ? (saf[(i << 1) + 1] / dir[i]) : (-saf[i << 1] / dir[i]);
438 for (i = 0; i < 3; i++)
439 newpt[i] = point[i] -
fOrigin[i];
443 for (i = 0; i < 3; i++) {
447 if (in && saf[i] > 0)
450 if (iact < 3 && safe) {
463 if (iact == 1 && step < *safe)
477 if (newpt[j] * dir[j] > 0)
481 for (i = 0; i < 3; i++) {
484 if (newpt[i] * dir[i] >= 0)
488 for (j = 0; j < 3; j++) {
491 Double_t coord = newpt[j] + snxt * dir[j];
515 for (i = 0; i < 3; i++)
516 newpt[i] = point[i] - origin[i];
520 for (i = 0; i < 3; i++) {
522 if (saf[i] >= stepmax)
524 if (in && saf[i] > 0)
532 for (i = 0; i < 3; i++) {
535 if (newpt[i] * dir[i] >= 0)
539 for (j = 0; j < 3; j++) {
542 coord = newpt[j] + snxt * dir[j];
563 default:
return "UNDEFINED";
619 case 6: area = 4. *
fDX *
fDY;
return area;
621 case 4: area = 4. *
fDX *
fDZ;
return area;
623 case 5: area = 4. *
fDY *
fDZ;
return area;
638 if (index < 0 || index > 6)
643 for (
Int_t isurf = 0; isurf < 6; isurf++) {
646 surf[isurf] += surf[isurf - 1];
651 for (
Int_t i = 0; i < npoints; i++) {
654 Int_t surfindex = index;
655 if (surfindex == 0) {
704 if (!array || npoints <= 0)
713 if (npnts <= 0 || nsegs <= 0 || !buff->fPnts || !buff->fSegs) {
719 Int_t remaining = npoints;
724 for (
Int_t i = 0; i < nsegs && remaining > 0; i++) {
725 const Int_t i0 = buff->fSegs[3 * i + 1];
726 const Int_t i1 = buff->fSegs[3 * i + 2];
728 if (i0 < 0 || i0 >= npnts || i1 < 0 || i1 >= npnts) {
730 Error(
"GetPointsOnSegments",
"Segment index out of range: (%d,%d) npnts=%d", i0, i1, npnts);
733 const Double_t *p0 = &buff->fPnts[3 * i0];
734 const Double_t *p1 = &buff->fPnts[3 * i1];
736 if (i == (nsegs - 1))
739 const Double_t dx = (p1[0] - p0[0]) / (nperseg + 1);
740 const Double_t dy = (p1[1] - p0[1]) / (nperseg + 1);
741 const Double_t dz = (p1[2] - p0[2]) / (nperseg + 1);
743 for (
Int_t j = 0; j < nperseg && remaining > 0; ++j) {
744 array[icrt++] = p0[0] + (j + 1) * dx;
745 array[icrt++] = p0[1] + (j + 1) * dy;
746 array[icrt++] = p0[2] + (j + 1) * dz;
753 Error(
"GetPointsOnSegments",
"Could not fill %d points (%d missing)", npoints, remaining);
766 Error(
"GetFittingBox",
"cannot handle parametrized rotated volumes");
773 Error(
"GetFittingBox",
"wrong matrix - parametrized box is outside this");
779 dd[0] = parambox->
GetDX();
780 dd[1] = parambox->
GetDY();
781 dd[2] = parambox->
GetDZ();
782 for (
Int_t iaxis = 0; iaxis < 3; iaxis++) {
787 dd[iaxis] =
TMath::Min(origin[iaxis] - xlo, xhi - origin[iaxis]);
789 Error(
"GetFittingBox",
"wrong matrix");
810 Error(
"GetMakeRuntimeShape",
"cannot fit this to mother");
847 printf(
"*** Shape %s: TGeoBBox ***\n",
GetName());
848 printf(
" dX = %11.5f\n",
fDX);
849 printf(
" dY = %11.5f\n",
fDY);
850 printf(
" dZ = %11.5f\n",
fDZ);
902 return dist >= (rA + rB - tol);
911 Int_t npnts = 0, nsegs = 0, npols = 0;
913 if (npnts <= 0 || nsegs <= 0)
968 const Double_t dmax = rA + rB - tol;
971 if (D.
Mag2() >= dmax * dmax)
981 if (
IsSeparatingAxis(Ax, D, Ax, Ay, Az, Bx, By, Bz, dA, dB, tol))
983 if (
IsSeparatingAxis(Ay, D, Ax, Ay, Az, Bx, By, Bz, dA, dB, tol))
985 if (
IsSeparatingAxis(Az, D, Ax, Ay, Az, Bx, By, Bz, dA, dB, tol))
988 if (
IsSeparatingAxis(Bx, D, Ax, Ay, Az, Bx, By, Bz, dA, dB, tol))
990 if (
IsSeparatingAxis(By, D, Ax, Ay, Az, Bx, By, Bz, dA, dB, tol))
992 if (
IsSeparatingAxis(Bz, D, Ax, Ay, Az, Bx, By, Bz, dA, dB, tol))
999 for (
int i = 0; i < 3; ++i) {
1000 for (
int j = 0; j < 3; ++j) {
1002 if (
IsSeparatingAxis(L, D, Ax, Ay, Az, Bx, By, Bz, dA, dB, tol))
1070 buff.
fPols[15] = 11;
1072 buff.
fPols[17] = 10;
1078 buff.
fPols[23] = 11;
1126 out <<
" // Shape: " <<
GetName() <<
" type: " <<
ClassName() << std::endl;
1127 out <<
" dx = " <<
fDX <<
";" << std::endl;
1128 out <<
" dy = " <<
fDY <<
";" << std::endl;
1129 out <<
" dz = " <<
fDZ <<
";" << std::endl;
1132 out <<
" origin[0] = " <<
fOrigin[0] <<
";" << std::endl;
1133 out <<
" origin[1] = " <<
fOrigin[1] <<
";" << std::endl;
1134 out <<
" origin[2] = " <<
fOrigin[2] <<
";" << std::endl;
1135 out <<
" TGeoShape *" <<
GetPointerName() <<
" = new TGeoBBox(\"" <<
GetName() <<
"\", dx,dy,dz,origin);"
1138 out <<
" TGeoShape *" <<
GetPointerName() <<
" = new TGeoBBox(\"" <<
GetName() <<
"\", dx,dy,dz);" << std::endl;
1159 if ((
fDX < 0) || (
fDY < 0) || (
fDZ < 0))
1172 Error(
"SetDimensions",
"null parameters");
1181 if ((
fDX < 0) || (
fDY < 0) || (
fDZ < 0))
1292 if (buffer.SetRawSizes(8, 3 * 8, 12, 3 * 12, 6, 6 * 6)) {
1298 if (!buffer.fLocalFrame) {
1335 for (
Int_t i = 0; i < vecsize; i++)
1346 for (
Int_t i = 0; i < vecsize; i++)
1356 for (
Int_t i = 0; i < vecsize; i++)
1366 for (
Int_t i = 0; i < vecsize; i++)
1377 for (
Int_t i = 0; i < vecsize; i++)
int Int_t
Signed integer 4 bytes (int).
bool Bool_t
Boolean (0=false, 1=true) (bool).
double Double_t
Double 8 bytes.
float Float_t
Float 4 bytes (float).
const char Option_t
Option string (const char).
externTGeoManager * gGeoManager
DisplacementVector3D Cross(const DisplacementVector3D< OtherCoords, Tag > &v) const
Return vector (cross) product of two displacement vectors, as a vector in the coordinate system of th...
Scalar Mag2() const
Magnitute squared ( r^2 in spherical coordinate).
Scalar Dot(const DisplacementVector3D< OtherCoords, Tag > &v) const
Return the scalar (dot) product of two displacement vectors.
Generic 3D primitive description class.
void SetSectionsValid(UInt_t mask)
void SetAABoundingBox(const Double_t origin[3], const Double_t halfLengths[3])
Set fBBVertex in kBoundingBox section to a axis aligned (local) BB using supplied origin and box half...
ROOT::Math::XYZVector GetWorldCenter(const TGeoMatrix *m) const
void FillBuffer3D(TBuffer3D &buffer, Int_t reqSections, Bool_t localFrame) const override
Fill the supplied buffer, with sections in desired frame See TBuffer3D.h for explanation of sections,...
virtual Double_t GetFacetArea(Int_t index=0) const
void SavePrimitive(std::ostream &out, Option_t *option="") override
Save a primitive as a C++ statement(s) on output stream "out".
virtual const Double_t * GetOrigin() const
Double_t DistFromInside(const Double_t *point, const Double_t *dir, Int_t iact=1, Double_t step=TGeoShape::Big(), Double_t *safe=nullptr) const override
const char * GetAxisName(Int_t iaxis) const override
void DistFromInside_v(const Double_t *points, const Double_t *dirs, Double_t *dists, Int_t vecsize, Double_t *step) const override
void GetBoundingCylinder(Double_t *param) const override
void ComputeNormal(const Double_t *point, const Double_t *dir, Double_t *norm) const override
void SetPoints(Double_t *points) const override
void SetBoxDimensions(Double_t dx, Double_t dy, Double_t dz, Double_t *origin=nullptr)
Double_t DistFromOutside(const Double_t *point, const Double_t *dir, Int_t iact=1, Double_t step=TGeoShape::Big(), Double_t *safe=nullptr) const override
static bool MayIntersect(const TGeoBBox *boxA, const TGeoMatrix *mA, const TGeoBBox *boxB, const TGeoMatrix *mB)
Double_t Capacity() const override
virtual Double_t GetDX() const
Int_t DistancetoPrimitive(Int_t px, Int_t py) override
Computes distance from point (px,py) to the object.
Bool_t CouldBeCrossed(const Double_t *point, const Double_t *dir) const override
void Contains_v(const Double_t *points, Bool_t *inside, Int_t vecsize) const override
void SetBoxPoints(Double_t *points) const
Bool_t GetPointsOnSegments(Int_t npoints, Double_t *array) const override
virtual Double_t GetDZ() const
virtual Double_t GetDY() const
Int_t GetFittingBox(const TGeoBBox *parambox, TGeoMatrix *mat, Double_t &dx, Double_t &dy, Double_t &dz) const override
Double_t GetAxisRange(Int_t iaxis, Double_t &xlo, Double_t &xhi) const override
TBuffer3D * MakeBuffer3D() const override
void InspectShape() const override
void DistFromOutside_v(const Double_t *points, const Double_t *dirs, Double_t *dists, Int_t vecsize, Double_t *step) const override
Bool_t Contains(const Double_t *point) const override
Double_t Safety(const Double_t *point, Bool_t in=kTRUE) const override
ROOT::Math::XYZVector GetDimensions() const
void GetMeshNumbers(Int_t &nvert, Int_t &nsegs, Int_t &npols) const override
void Sizeof3D() const override
TGeoShape * GetMakeRuntimeShape(TGeoShape *mother, TGeoMatrix *mat) const override
void SetSegsAndPols(TBuffer3D &buffer) const override
virtual Bool_t GetPointsOnFacet(Int_t index, Int_t npoints, Double_t *array) const
void SetDimensions(Double_t *param) override
const TBuffer3D & GetBuffer3D(Int_t reqSections, Bool_t localFrame) const override
Stub implementation to avoid forcing implementation at this stage.
void ComputeNormal_v(const Double_t *points, const Double_t *dirs, Double_t *norms, Int_t vecsize) override
void Safety_v(const Double_t *points, const Bool_t *inside, Double_t *safe, Int_t vecsize) const override
void ComputeBBox() override
static Bool_t IsSeparatingAxis(const ROOT::Math::XYZVector &L, const ROOT::Math::XYZVector &D, const ROOT::Math::XYZVector &Ax, const ROOT::Math::XYZVector &Ay, const ROOT::Math::XYZVector &Az, const ROOT::Math::XYZVector &Bx, const ROOT::Math::XYZVector &By, const ROOT::Math::XYZVector &Bz, const ROOT::Math::XYZVector &dA, const ROOT::Math::XYZVector &dB, Double_t tol)
TGeoVolume * Divide(TGeoVolume *voldiv, const char *divname, Int_t iaxis, Int_t ndiv, Double_t start, Double_t step) override
Geometrical transformation package.
Bool_t IsRotation() const
virtual void LocalToMaster(const Double_t *local, Double_t *master) const
convert a point by multiplying its column vector (x, y, z, 1) to matrix inverse
void GetWorldAxes(ROOT::Math::XYZVector &ax, ROOT::Math::XYZVector &ay, ROOT::Math::XYZVector &az) const
Extract world-space axes of a placed TGeoBBox.
void SetDivIndex(Int_t index)
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.
TGeoShape()
Default constructor.
static Bool_t IsSameWithinTolerance(Double_t a, Double_t b)
Check if two numbers differ with less than a tolerance.
const char * GetPointerName() const
Provide a pointer name containing uid.
virtual void FillBuffer3D(TBuffer3D &buffer, Int_t reqSections, Bool_t localFrame) const
Fill the supplied buffer, with sections in desired frame See TBuffer3D.h for explanation of sections,...
Int_t ShapeDistancetoPrimitive(Int_t numpoints, Int_t px, Int_t py) const
Returns distance to shape primitive mesh.
virtual Int_t GetFittingBox(const TGeoBBox *parambox, TGeoMatrix *mat, Double_t &dx, Double_t &dy, Double_t &dz) const =0
const char * GetName() const override
Get the shape name.
static Double_t Tolerance()
Bool_t TestShapeBit(UInt_t f) const
void AddVolume(TGeoVolume *vol)
Add a volume with valid shape to the list of volumes.
TGeoVolume, TGeoVolumeMulti, TGeoVolumeAssembly are the volume classes.
void AddNodeOffset(TGeoVolume *vol, Int_t copy_no, Double_t offset=0, Option_t *option="")
Add a division node to the list of nodes.
TGeoMedium * GetMedium() const
void SetFinder(TGeoPatternFinder *finder)
Int_t GetNdaughters() const
TObject * At(Int_t idx) const override
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.
const char * Data() const
DisplacementVector3D< Cartesian3D< double >, DefaultCoordinateSystemTag > XYZVector
3D Vector based on the cartesian coordinates x,y,z in double precision
double dist(Rotation3D const &r1, Rotation3D const &r2)
RooArgList L(Args_t &&... args)
Long64_t LocMin(Long64_t n, const T *a)
Returns index of array with the minimum element.
Short_t Max(Short_t a, Short_t b)
Returns the largest of a and b.
Double_t Sqrt(Double_t x)
Returns the square root of x.
Short_t Min(Short_t a, Short_t b)
Returns the smallest of a and b.
Long64_t BinarySearch(Long64_t n, const T *array, T value)
Binary search in an array of n values to locate value.
Short_t Abs(Short_t d)
Returns the absolute value of parameter Short_t d.