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    Open CASCADE Technology Reference Manual 8.0.1
    Adaptor3d_Curve Class Reference

    Root class for 3D curves on which geometric algorithms work. An adapted curve is an interface between the services provided by a curve and those required of the curve by algorithms which use it. Two derived concrete classes are provided: More...

    #include <Adaptor3d_Curve.hxx>

    Inheritance diagram for Adaptor3d_Curve:

    Public Member Functions

    virtual occ::handle< Adaptor3d_CurveShallowCopy () const
     Shallow copy of adaptor.
    virtual double FirstParameter () const
    virtual double LastParameter () const
    virtual GeomAbs_Shape Continuity () const
    virtual int NbIntervals (const GeomAbs_Shape S) const
     Returns the number of intervals for continuity . May be one if Continuity(me) >= .
    virtual void Intervals (NCollection_Array1< double > &T, const GeomAbs_Shape S) const
     Stores in <T> the parameters bounding the intervals of continuity .
    virtual occ::handle< Adaptor3d_CurveTrim (const double First, const double Last, const double Tol) const
     Returns a curve equivalent of <me> between parameters <First> and <Last>. <Tol> is used to test for 3d points confusion. If <First> >= <Last>.
    virtual bool IsClosed () const
    virtual bool IsPeriodic () const
    virtual double Period () const
    gp_Pnt Value (const double theU) const
     Computes the point of parameter U on the curve.
    void D0 (const double theU, gp_Pnt &theP) const
     Computes the point of parameter U on the curve.
    void D1 (const double theU, gp_Pnt &theP, gp_Vec &theV) const
     Computes the point of parameter U on the curve with its first derivative. Raised if the continuity of the current interval is not C1.
    void D2 (const double theU, gp_Pnt &theP, gp_Vec &theV1, gp_Vec &theV2) const
     Returns the point P of parameter U, the first and second derivatives V1 and V2. Raised if the continuity of the current interval is not C2.
    void D3 (const double theU, gp_Pnt &theP, gp_Vec &theV1, gp_Vec &theV2, gp_Vec &theV3) const
     Returns the point P of parameter U, the first, the second and the third derivative. Raised if the continuity of the current interval is not C3.
    gp_Vec DN (const double theU, const int theN) const
     The returned vector gives the value of the derivative for the order of derivation N. Raised if the continuity of the current interval is not CN. Raised if N < 1.
    virtual double Resolution (const double R3d) const
     Returns the parametric resolution corresponding to the real space resolution <R3d>.
    virtual GeomAbs_CurveType GetType () const
     Returns the type of the curve in the current interval: Line, Circle, Ellipse, Hyperbola, Parabola, BezierCurve, BSplineCurve, OtherCurve.
    virtual gp_Lin Line () const
    virtual gp_Circ Circle () const
    virtual gp_Elips Ellipse () const
    virtual gp_Hypr Hyperbola () const
    virtual gp_Parab Parabola () const
    virtual int Degree () const
    virtual bool IsRational () const
    virtual int NbPoles () const
    virtual int NbKnots () const
    virtual occ::handle< Geom_BezierCurveBezier () const
    virtual occ::handle< Geom_BSplineCurveBSpline () const
    virtual occ::handle< Geom_OffsetCurveOffsetCurve () const
    virtual gp_Pnt EvalD0 (const double theU) const
     Computes the point of parameter U on the curve. Raises an exception on failure.
    virtual Geom_Curve::ResD1 EvalD1 (const double theU) const
     Computes the point and first derivative at parameter U. Raises an exception on failure.
    virtual Geom_Curve::ResD2 EvalD2 (const double theU) const
     Computes the point and first two derivatives at parameter U. Raises an exception on failure.
    virtual Geom_Curve::ResD3 EvalD3 (const double theU) const
     Computes the point and first three derivatives at parameter U. Raises an exception on failure.
    virtual gp_Vec EvalDN (const double theU, const int theN) const
     Computes the Nth derivative at parameter U. Raises an exception on failure.
     ~Adaptor3d_Curve () override
    Public Member Functions inherited from Standard_Transient
     Standard_Transient ()
     Empty constructor.
     Standard_Transient (const Standard_Transient &)
     Copy constructor – does nothing.
    Standard_Transientoperator= (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_TransientThis () 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

    typedef void base_type
     Returns a type descriptor about this object.
    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.

    Detailed Description

    Root class for 3D curves on which geometric algorithms work. An adapted curve is an interface between the services provided by a curve and those required of the curve by algorithms which use it. Two derived concrete classes are provided:

    Polynomial coefficients of BSpline curves used for their evaluation are cached for better performance. Therefore these evaluations are not thread-safe and parallel evaluations need to be prevented.

    Constructor & Destructor Documentation

    ◆ ~Adaptor3d_Curve()

    Adaptor3d_Curve::~Adaptor3d_Curve ( )
    override

    Member Function Documentation

    ◆ Bezier()

    ◆ BSpline()

    ◆ Circle()

    ◆ Continuity()

    ◆ D0()

    void Adaptor3d_Curve::D0 ( const double theU,
    gp_Pnt & theP ) const
    inline

    Computes the point of parameter U on the curve.

    ◆ D1()

    void Adaptor3d_Curve::D1 ( const double theU,
    gp_Pnt & theP,
    gp_Vec & theV ) const
    inline

    Computes the point of parameter U on the curve with its first derivative. Raised if the continuity of the current interval is not C1.

    ◆ D2()

    void Adaptor3d_Curve::D2 ( const double theU,
    gp_Pnt & theP,
    gp_Vec & theV1,
    gp_Vec & theV2 ) const
    inline

    Returns the point P of parameter U, the first and second derivatives V1 and V2. Raised if the continuity of the current interval is not C2.

    ◆ D3()

    void Adaptor3d_Curve::D3 ( const double theU,
    gp_Pnt & theP,
    gp_Vec & theV1,
    gp_Vec & theV2,
    gp_Vec & theV3 ) const
    inline

    Returns the point P of parameter U, the first, the second and the third derivative. Raised if the continuity of the current interval is not C3.

    ◆ Degree()

    ◆ DN()

    gp_Vec Adaptor3d_Curve::DN ( const double theU,
    const int theN ) const
    inline

    The returned vector gives the value of the derivative for the order of derivation N. Raised if the continuity of the current interval is not CN. Raised if N < 1.

    ◆ Ellipse()

    ◆ EvalD0()

    virtual gp_Pnt Adaptor3d_Curve::EvalD0 ( const double theU) const
    nodiscardvirtual

    ◆ EvalD1()

    virtual Geom_Curve::ResD1 Adaptor3d_Curve::EvalD1 ( const double theU) const
    nodiscardvirtual

    ◆ EvalD2()

    virtual Geom_Curve::ResD2 Adaptor3d_Curve::EvalD2 ( const double theU) const
    nodiscardvirtual

    ◆ EvalD3()

    virtual Geom_Curve::ResD3 Adaptor3d_Curve::EvalD3 ( const double theU) const
    nodiscardvirtual

    Computes the point and first three derivatives at parameter U. Raises an exception on failure.

    Reimplemented in Adaptor3d_CurveOnSurface, Adaptor3d_IsoCurve, BiTgte_CurveOnEdge, BiTgte_CurveOnVertex, BRepAdaptor_CompCurve, ChFiDS_ElSpine, GeomAdaptor_Curve, GeomAdaptor_TransformedCurve, GeomFill_SnglrFunc, and ProjLib_ProjectOnPlane.

    ◆ EvalDN()

    virtual gp_Vec Adaptor3d_Curve::EvalDN ( const double theU,
    const int theN ) const
    nodiscardvirtual

    ◆ FirstParameter()

    ◆ GetType()

    virtual GeomAbs_CurveType Adaptor3d_Curve::GetType ( ) const
    virtual

    Returns the type of the curve in the current interval: Line, Circle, Ellipse, Hyperbola, Parabola, BezierCurve, BSplineCurve, OtherCurve.

    Reimplemented in Adaptor3d_CurveOnSurface, Adaptor3d_IsoCurve, BiTgte_CurveOnEdge, BiTgte_CurveOnVertex, BRepAdaptor_CompCurve, ChFiDS_ElSpine, GeomAdaptor_Curve, GeomAdaptor_TransformedCurve, GeomFill_SnglrFunc, and ProjLib_ProjectOnPlane.

    ◆ Hyperbola()

    ◆ Intervals()

    virtual void Adaptor3d_Curve::Intervals ( NCollection_Array1< double > & T,
    const GeomAbs_Shape S ) const
    virtual

    Stores in <T> the parameters bounding the intervals of continuity .

    The array must provide enough room to accommodate for the parameters. i.e. T.Length() > NbIntervals()

    Reimplemented in Adaptor3d_CurveOnSurface, Adaptor3d_IsoCurve, BiTgte_CurveOnEdge, BiTgte_CurveOnVertex, BRepAdaptor_CompCurve, ChFiDS_ElSpine, GeomAdaptor_Curve, GeomAdaptor_TransformedCurve, GeomFill_SnglrFunc, HelixGeom_HelixCurve, and ProjLib_ProjectOnPlane.

    ◆ IsClosed()

    ◆ IsPeriodic()

    ◆ IsRational()

    ◆ LastParameter()

    ◆ Line()

    ◆ NbIntervals()

    virtual int Adaptor3d_Curve::NbIntervals ( const GeomAbs_Shape S) const
    virtual

    ◆ NbKnots()

    ◆ NbPoles()

    ◆ OffsetCurve()

    virtual occ::handle< Geom_OffsetCurve > Adaptor3d_Curve::OffsetCurve ( ) const
    virtual

    ◆ Parabola()

    ◆ Period()

    ◆ Resolution()

    virtual double Adaptor3d_Curve::Resolution ( const double R3d) const
    virtual

    ◆ ShallowCopy()

    ◆ Trim()

    virtual occ::handle< Adaptor3d_Curve > Adaptor3d_Curve::Trim ( const double First,
    const double Last,
    const double Tol ) const
    virtual

    Returns a curve equivalent of <me> between parameters <First> and <Last>. <Tol> is used to test for 3d points confusion. If <First> >= <Last>.

    Reimplemented in Adaptor3d_CurveOnSurface, Adaptor3d_IsoCurve, BiTgte_CurveOnEdge, BiTgte_CurveOnVertex, BRepAdaptor_CompCurve, BRepAdaptor_Curve, ChFiDS_ElSpine, GeomAdaptor_Curve, GeomAdaptor_TransformedCurve, and ProjLib_ProjectOnPlane.

    ◆ Value()

    gp_Pnt Adaptor3d_Curve::Value ( const double theU) const
    inline

    Computes the point of parameter U on the curve.


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