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Open CASCADE Technology Reference Manual 8.0.0
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2D Algebraic-Hyperbolic-Trigonometric Bezier curve. Uses a mixed basis: {1, t, ..., t^k, sinh(alpha*t), cosh(alpha*t), sin(beta*t), cos(beta*t)}. The number of basis functions = algDegree + 1 + 2*(alpha>0) + 2*(beta>0) must equal NbPoles. Parameter range: [0, 1]. More...
#include <Geom2dEval_AHTBezierCurve.hxx>

Public Member Functions | |
| Geom2dEval_AHTBezierCurve (const NCollection_Array1< gp_Pnt2d > &thePoles, int theAlgDegree, double theAlpha, double theBeta) | |
| Non-rational constructor. | |
| Geom2dEval_AHTBezierCurve (const NCollection_Array1< gp_Pnt2d > &thePoles, const NCollection_Array1< double > &theWeights, int theAlgDegree, double theAlpha, double theBeta) | |
| Rational constructor. | |
| const NCollection_Array1< gp_Pnt2d > & | Poles () const |
| Returns the array of poles. | |
| const NCollection_Array1< double > & | Weights () const |
| Returns the array of weights. | |
| int | AlgDegree () const |
| Returns the algebraic polynomial degree. | |
| double | Alpha () const |
| Returns the hyperbolic frequency parameter. | |
| double | Beta () const |
| Returns the trigonometric frequency parameter. | |
| int | NbPoles () const |
| Returns the number of poles. | |
| bool | IsRational () const |
| Returns true if the curve is rational (has explicit weights). | |
| gp_Pnt2d | StartPoint () const final |
| Returns the start point of the curve (at parameter 0). | |
| gp_Pnt2d | EndPoint () const final |
| Returns the end point of the curve (at parameter 1). | |
| void | Reverse () final |
| Reversal is not supported for this eval curve. | |
| double | ReversedParameter (const double U) const final |
| Reversal is not supported for this eval curve. | |
| double | FirstParameter () const final |
| Returns the value of the first parameter: 0.0. | |
| double | LastParameter () const final |
| Returns the value of the last parameter: 1.0. | |
| bool | IsClosed () const final |
| Returns true if the curve is closed. | |
| bool | IsPeriodic () const final |
| Returns false. The AHT-Bezier curve is not periodic. | |
| GeomAbs_Shape | Continuity () const final |
| Returns GeomAbs_CN. | |
| bool | IsCN (const int N) const final |
| Returns true for any N. The AHT-Bezier curve is infinitely differentiable. | |
| gp_Pnt2d | EvalD0 (const double U) const final |
| Computes the point at parameter U. | |
| Geom2d_Curve::ResD1 | EvalD1 (const double U) const final |
| Computes the point and first derivative at parameter U. | |
| Geom2d_Curve::ResD2 | EvalD2 (const double U) const final |
| Computes the point and first two derivatives at parameter U. | |
| Geom2d_Curve::ResD3 | EvalD3 (const double U) const final |
| Computes the point and first three derivatives at parameter U. | |
| gp_Vec2d | EvalDN (const double U, const int N) const final |
| Computes the N-th derivative at parameter U. | |
| void | Transform (const gp_Trsf2d &T) final |
| Transformation is not supported for this eval geometry. | |
| occ::handle< Geom2d_Geometry > | Copy () const final |
| Creates a new object which is a copy of this curve. | |
| void | DumpJson (Standard_OStream &theOStream, int theDepth=-1) const final |
| Dumps the content of me into the stream. | |
Public Member Functions inherited from Geom2d_Curve | |
| virtual double | TransformedParameter (const double U, const gp_Trsf2d &T) const |
| Computes the parameter on the curve transformed by T for the point of parameter U on this curve. Note: this function generally returns U but it can be redefined (for example, on a line). | |
| virtual double | ParametricTransformation (const gp_Trsf2d &T) const |
| Returns the coefficient required to compute the parametric transformation of this curve when transformation T is applied. This coefficient is the ratio between the parameter of a point on this curve and the parameter of the transformed point on the new curve transformed by T. Note: this function generally returns 1. but it can be redefined (for example, on a line). | |
| occ::handle< Geom2d_Curve > | Reversed () const |
| Creates a reversed duplicate Changes the orientation of this curve. The first and last parameters are not changed, but the parametric direction of the curve is reversed. If the curve is bounded: | |
| virtual double | Period () const |
| Returns the period of this curve. raises if the curve is not periodic. | |
| void | D0 (const double U, gp_Pnt2d &P) const |
| Returns in P the point of parameter U. | |
| void | D1 (const double U, gp_Pnt2d &P, gp_Vec2d &V1) const |
| Returns the point P of parameter U and the first derivative V1. | |
| void | D2 (const double U, gp_Pnt2d &P, gp_Vec2d &V1, gp_Vec2d &V2) const |
| Returns the point P of parameter U, the first and second derivatives V1 and V2. | |
| void | D3 (const double U, gp_Pnt2d &P, gp_Vec2d &V1, gp_Vec2d &V2, gp_Vec2d &V3) const |
| Returns the point P of parameter U, the first, the second and the third derivative. | |
| gp_Vec2d | DN (const double U, const int N) const |
| Computes the Nth derivative vector. | |
| gp_Pnt2d | Value (const double U) const |
| Computes the point of parameter U on <me>. Implemented with D0. | |
Public Member Functions inherited from Geom2d_Geometry | |
| void | Mirror (const gp_Pnt2d &P) |
| Performs the symmetrical transformation of a Geometry with respect to the point P which is the center of the symmetry and assigns the result to this geometric object. | |
| void | Mirror (const gp_Ax2d &A) |
| Performs the symmetrical transformation of a Geometry with respect to an axis placement which is the axis of the symmetry. | |
| void | Rotate (const gp_Pnt2d &P, const double Ang) |
| Rotates a Geometry. P is the center of the rotation. Ang is the angular value of the rotation in radians. | |
| void | Scale (const gp_Pnt2d &P, const double S) |
| Scales a Geometry. S is the scaling value. | |
| void | Translate (const gp_Vec2d &V) |
| Translates a Geometry. V is the vector of the translation. | |
| void | Translate (const gp_Pnt2d &P1, const gp_Pnt2d &P2) |
| Translates a Geometry from the point P1 to the point P2. | |
| occ::handle< Geom2d_Geometry > | Mirrored (const gp_Pnt2d &P) const |
| occ::handle< Geom2d_Geometry > | Mirrored (const gp_Ax2d &A) const |
| occ::handle< Geom2d_Geometry > | Rotated (const gp_Pnt2d &P, const double Ang) const |
| occ::handle< Geom2d_Geometry > | Scaled (const gp_Pnt2d &P, const double S) const |
| occ::handle< Geom2d_Geometry > | Transformed (const gp_Trsf2d &T) const |
| occ::handle< Geom2d_Geometry > | Translated (const gp_Vec2d &V) const |
| occ::handle< Geom2d_Geometry > | Translated (const gp_Pnt2d &P1, const gp_Pnt2d &P2) const |
Public Member Functions inherited from Standard_Transient | |
| Standard_Transient () | |
| Empty constructor. | |
| Standard_Transient (const Standard_Transient &) | |
| Copy constructor – does nothing. | |
| Standard_Transient & | operator= (const Standard_Transient &) |
| Assignment operator, needed to avoid copying reference counter. | |
| virtual | ~Standard_Transient ()=default |
| Destructor must be virtual. | |
| virtual const opencascade::handle< Standard_Type > & | DynamicType () const |
| Returns a type descriptor about this object. | |
| bool | IsInstance (const opencascade::handle< Standard_Type > &theType) const |
| Returns a true value if this is an instance of Type. | |
| bool | IsInstance (const char *const theTypeName) const |
| Returns a true value if this is an instance of TypeName. | |
| bool | IsKind (const opencascade::handle< Standard_Type > &theType) const |
| Returns true if this is an instance of Type or an instance of any class that inherits from Type. Note that multiple inheritance is not supported by OCCT RTTI mechanism. | |
| bool | IsKind (const char *const theTypeName) const |
| Returns true if this is an instance of TypeName or an instance of any class that inherits from TypeName. Note that multiple inheritance is not supported by OCCT RTTI mechanism. | |
| Standard_Transient * | This () const |
| Returns non-const pointer to this object (like const_cast). For protection against creating handle to objects allocated in stack or call from constructor, it will raise exception Standard_ProgramError if reference counter is zero. | |
| int | GetRefCount () const noexcept |
| Get the reference counter of this object. | |
| void | IncrementRefCounter () noexcept |
| Increments the reference counter of this object. Uses relaxed memory ordering since incrementing only requires atomicity, not synchronization with other memory operations. | |
| int | DecrementRefCounter () noexcept |
| Decrements the reference counter of this object; returns the decremented value. Uses release ordering for the decrement to ensure all writes to the object are visible before the count reaches zero. An acquire fence is added only when the count reaches zero, ensuring proper synchronization before deletion. This is more efficient than using acq_rel for every decrement. | |
| virtual void | Delete () const |
| Memory deallocator for transient classes. | |
Additional Inherited Members | |
Public Types inherited from Standard_Transient | |
| typedef void | base_type |
| Returns a type descriptor about this object. | |
Static Public Member Functions inherited from Standard_Transient | |
| static constexpr const char * | get_type_name () |
| Returns a type descriptor about this object. | |
| static const opencascade::handle< Standard_Type > & | get_type_descriptor () |
| Returns type descriptor of Standard_Transient class. | |
2D Algebraic-Hyperbolic-Trigonometric Bezier curve. Uses a mixed basis: {1, t, ..., t^k, sinh(alpha*t), cosh(alpha*t), sin(beta*t), cos(beta*t)}. The number of basis functions = algDegree + 1 + 2*(alpha>0) + 2*(beta>0) must equal NbPoles. Parameter range: [0, 1].
| Geom2dEval_AHTBezierCurve::Geom2dEval_AHTBezierCurve | ( | const NCollection_Array1< gp_Pnt2d > & | thePoles, |
| int | theAlgDegree, | ||
| double | theAlpha, | ||
| double | theBeta ) |
Non-rational constructor.
| [in] | thePoles | control points |
| [in] | theAlgDegree | algebraic polynomial degree (>= 0) |
| [in] | theAlpha | hyperbolic frequency (>= 0, 0 = no hyperbolic terms) |
| [in] | theBeta | trigonometric frequency (>= 0, 0 = no trig terms) |
| Geom2dEval_AHTBezierCurve::Geom2dEval_AHTBezierCurve | ( | const NCollection_Array1< gp_Pnt2d > & | thePoles, |
| const NCollection_Array1< double > & | theWeights, | ||
| int | theAlgDegree, | ||
| double | theAlpha, | ||
| double | theBeta ) |
Rational constructor.
| [in] | thePoles | control points |
| [in] | theWeights | weights for each pole (must be > 0) |
| [in] | theAlgDegree | algebraic polynomial degree (>= 0) |
| [in] | theAlpha | hyperbolic frequency (>= 0, 0 = no hyperbolic terms) |
| [in] | theBeta | trigonometric frequency (>= 0, 0 = no trig terms) |
| int Geom2dEval_AHTBezierCurve::AlgDegree | ( | ) | const |
Returns the algebraic polynomial degree.
| double Geom2dEval_AHTBezierCurve::Alpha | ( | ) | const |
Returns the hyperbolic frequency parameter.
| double Geom2dEval_AHTBezierCurve::Beta | ( | ) | const |
Returns the trigonometric frequency parameter.
|
finalvirtual |
Returns GeomAbs_CN.
Implements Geom2d_Curve.
|
finalvirtual |
Creates a new object which is a copy of this curve.
Implements Geom2d_Geometry.
|
finalvirtual |
Dumps the content of me into the stream.
Reimplemented from Geom2d_BoundedCurve.
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finalvirtual |
Returns the end point of the curve (at parameter 1).
Implements Geom2d_BoundedCurve.
Computes the point at parameter U.
Implements Geom2d_Curve.
|
finalvirtual |
Computes the point and first derivative at parameter U.
Implements Geom2d_Curve.
|
finalvirtual |
Computes the point and first two derivatives at parameter U.
Implements Geom2d_Curve.
|
finalvirtual |
Computes the point and first three derivatives at parameter U.
Implements Geom2d_Curve.
Computes the N-th derivative at parameter U.
| [in] | U | the parameter value |
| [in] | N | the derivative order (must be >= 1) |
Implements Geom2d_Curve.
|
finalvirtual |
Returns the value of the first parameter: 0.0.
Implements Geom2d_Curve.
|
finalvirtual |
Returns true if the curve is closed.
Implements Geom2d_Curve.
Returns true for any N. The AHT-Bezier curve is infinitely differentiable.
Implements Geom2d_Curve.
|
finalvirtual |
Returns false. The AHT-Bezier curve is not periodic.
Implements Geom2d_Curve.
| bool Geom2dEval_AHTBezierCurve::IsRational | ( | ) | const |
Returns true if the curve is rational (has explicit weights).
|
finalvirtual |
Returns the value of the last parameter: 1.0.
Implements Geom2d_Curve.
| int Geom2dEval_AHTBezierCurve::NbPoles | ( | ) | const |
Returns the number of poles.
| const NCollection_Array1< gp_Pnt2d > & Geom2dEval_AHTBezierCurve::Poles | ( | ) | const |
Returns the array of poles.
|
finalvirtual |
Reversal is not supported for this eval curve.
| Standard_NotImplemented |
Implements Geom2d_Curve.
Reversal is not supported for this eval curve.
| Standard_NotImplemented |
Implements Geom2d_Curve.
|
finalvirtual |
Returns the start point of the curve (at parameter 0).
Implements Geom2d_BoundedCurve.
Transformation is not supported for this eval geometry.
| Standard_NotImplemented |
Implements Geom2d_Geometry.
| const NCollection_Array1< double > & Geom2dEval_AHTBezierCurve::Weights | ( | ) | const |
Returns the array of weights.