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// This file is generated by WOK (CPPExt).
// Please do not edit this file; modify original file instead.
// The copyright and license terms as defined for the original file apply to
// this header file considered to be the "object code" form of the original source.
#ifndef _GccAna_Lin2dTanObl_HeaderFile
#define _GccAna_Lin2dTanObl_HeaderFile
#ifndef _Standard_HeaderFile
#include <Standard.hxx>
#endif
#ifndef _Standard_Macro_HeaderFile
#include <Standard_Macro.hxx>
#endif
#ifndef _Standard_Boolean_HeaderFile
#include <Standard_Boolean.hxx>
#endif
#ifndef _Standard_Integer_HeaderFile
#include <Standard_Integer.hxx>
#endif
#ifndef _TColgp_Array1OfLin2d_HeaderFile
#include <TColgp_Array1OfLin2d.hxx>
#endif
#ifndef _GccEnt_Array1OfPosition_HeaderFile
#include <GccEnt_Array1OfPosition.hxx>
#endif
#ifndef _TColgp_Array1OfPnt2d_HeaderFile
#include <TColgp_Array1OfPnt2d.hxx>
#endif
#ifndef _TColStd_Array1OfReal_HeaderFile
#include <TColStd_Array1OfReal.hxx>
#endif
#ifndef _Standard_Real_HeaderFile
#include <Standard_Real.hxx>
#endif
#ifndef _GccEnt_Position_HeaderFile
#include <GccEnt_Position.hxx>
#endif
class Standard_OutOfRange;
class GccEnt_BadQualifier;
class StdFail_NotDone;
class gp_Pnt2d;
class gp_Lin2d;
class GccEnt_QualifiedCirc;
//! This class implements the algorithms used to <br>
//! create 2d line tangent to a circle or a point and <br>
//! making an angle with a line. <br>
//! The angle is in radians. <br>
//! The origin of the solution is the tangency point <br>
//! with the first argument. <br>
//! Its direction is making an angle Angle with the <br>
//! second argument. <br>
class GccAna_Lin2dTanObl {
public:
void* operator new(size_t,void* anAddress)
{
return anAddress;
}
void* operator new(size_t size)
{
return Standard::Allocate(size);
}
void operator delete(void *anAddress)
{
if (anAddress) Standard::Free((Standard_Address&)anAddress);
}
//! This class implements the algorithms used to <br>
//! create 2d line passing through a point and <br>
//! making an angle with a line. <br>
Standard_EXPORT GccAna_Lin2dTanObl(const gp_Pnt2d& ThePoint,const gp_Lin2d& TheLine,const Standard_Real TheAngle);
//! This class implements the algorithms used to <br>
//! create 2d line tangent to a circle and <br>
//! making an angle with a line. <br>
//! Exceptions <br>
//! GccEnt_BadQualifier if a qualifier is inconsistent with <br>
//! the argument it qualifies (for example, enclosed for a circle). <br>
Standard_EXPORT GccAna_Lin2dTanObl(const GccEnt_QualifiedCirc& Qualified1,const gp_Lin2d& TheLine,const Standard_Real TheAngle);
//! Returns True if the algorithm succeeded. <br>
//! Note: IsDone protects against a failure arising from a <br>
//! more internal intersection algorithm, which has reached <br>
//! its numeric limits. <br>
Standard_EXPORT Standard_Boolean IsDone() const;
//! Returns the number of of lines, representing solutions computed by this algorithm. <br>
//! Raises NotDone if the construction algorithm didn't succeed. <br>
Standard_EXPORT Standard_Integer NbSolutions() const;
//! Returns the solution number Index. <br>
//! Be careful: the Index is only a way to get all the <br>
//! solutions, but is not associated to theses outside the <br>
//! context of the algorithm-object. <br>
//! raises NotDone if the construction algorithm didn't succeed. <br>
//! It raises OutOfRange if Index is greater than the number of solutions. <br>
Standard_EXPORT gp_Lin2d ThisSolution(const Standard_Integer Index) const;
//! Returns the qualifier Qualif1 of the tangency argument <br>
//! for the solution of index Index computed by this algorithm. <br>
//! The returned qualifier is: <br>
//! - that specified at the start of construction when the <br>
//! solutions are defined as enclosing or outside with <br>
//! respect to the argument, or <br>
//! - that computed during construction (i.e. enclosing or <br>
//! outside) when the solutions are defined as unqualified <br>
//! with respect to the argument, or <br>
//! - GccEnt_noqualifier if the tangency argument is a point. <br>
//! Exceptions <br>
//! Standard_OutOfRange if Index is less than zero or <br>
//! greater than the number of solutions computed by this algorithm. <br>
//! StdFail_NotDone if the construction fails. <br>
Standard_EXPORT void WhichQualifier(const Standard_Integer Index,GccEnt_Position& Qualif1) const;
//! Returns informations about the tangency point between the <br>
//! result number Index and the first argument. <br>
//! ParSol is the intrinsic parameter of the point ParSol on <br>
//! the solution curv. <br>
//! ParArg is the intrinsic parameter of the point ParArg on <br>
//! the argument curv. Raises NotDone if the construction algorithm <br>
//! didn't succeed. <br>
//! It raises OutOfRange if Index is greater than the number of solutions. <br>
Standard_EXPORT void Tangency1(const Standard_Integer Index,Standard_Real& ParSol,Standard_Real& ParArg,gp_Pnt2d& PntSol) const;
//! Returns informations about the intersection between the <br>
//! result number Index and the third argument. <br>
//! Raises NotDone if the construction algorithm didn't succeed. <br>
//! It raises OutOfRange if Index is greater than the number of solutions. <br>
Standard_EXPORT void Intersection2(const Standard_Integer Index,Standard_Real& ParSol,Standard_Real& ParArg,gp_Pnt2d& PntSol) const;
protected:
private:
Standard_Boolean WellDone;
Standard_Integer NbrSol;
TColgp_Array1OfLin2d linsol;
GccEnt_Array1OfPosition qualifier1;
TColgp_Array1OfPnt2d pnttg1sol;
TColgp_Array1OfPnt2d pntint2sol;
TColStd_Array1OfReal par1sol;
TColStd_Array1OfReal par2sol;
TColStd_Array1OfReal pararg1;
TColStd_Array1OfReal pararg2;
};
// other Inline functions and methods (like "C++: function call" methods)
#endif
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