#include <BRepApprox_TheZerImpFuncOfTheImpPrmSvSurfacesOfApprox.hxx>
◆ BRepApprox_TheZerImpFuncOfTheImpPrmSvSurfacesOfApprox() [1/3]
BRepApprox_TheZerImpFuncOfTheImpPrmSvSurfacesOfApprox::BRepApprox_TheZerImpFuncOfTheImpPrmSvSurfacesOfApprox |
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◆ BRepApprox_TheZerImpFuncOfTheImpPrmSvSurfacesOfApprox() [2/3]
◆ BRepApprox_TheZerImpFuncOfTheImpPrmSvSurfacesOfApprox() [3/3]
BRepApprox_TheZerImpFuncOfTheImpPrmSvSurfacesOfApprox::BRepApprox_TheZerImpFuncOfTheImpPrmSvSurfacesOfApprox |
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const IntSurf_Quadric & |
IS | ) |
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◆ Derivatives()
Returns the values <D> of the derivatives for the variable <X>. Returns True if the computation was done successfully, False otherwise.
Implements math_FunctionSetWithDerivatives.
◆ Direction2d()
const gp_Dir2d & BRepApprox_TheZerImpFuncOfTheImpPrmSvSurfacesOfApprox::Direction2d |
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◆ Direction3d()
const gp_Vec & BRepApprox_TheZerImpFuncOfTheImpPrmSvSurfacesOfApprox::Direction3d |
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◆ IsTangent()
Standard_Boolean BRepApprox_TheZerImpFuncOfTheImpPrmSvSurfacesOfApprox::IsTangent |
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◆ ISurface()
◆ NbEquations()
Standard_Integer BRepApprox_TheZerImpFuncOfTheImpPrmSvSurfacesOfApprox::NbEquations |
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◆ NbVariables()
Standard_Integer BRepApprox_TheZerImpFuncOfTheImpPrmSvSurfacesOfApprox::NbVariables |
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◆ Point()
const gp_Pnt & BRepApprox_TheZerImpFuncOfTheImpPrmSvSurfacesOfApprox::Point |
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◆ PSurface()
◆ Root()
Standard_Real BRepApprox_TheZerImpFuncOfTheImpPrmSvSurfacesOfApprox::Root |
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◆ Set() [1/2]
◆ Set() [2/2]
void BRepApprox_TheZerImpFuncOfTheImpPrmSvSurfacesOfApprox::Set |
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const Standard_Real |
Tolerance | ) |
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◆ SetImplicitSurface()
void BRepApprox_TheZerImpFuncOfTheImpPrmSvSurfacesOfApprox::SetImplicitSurface |
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const IntSurf_Quadric & |
IS | ) |
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◆ Tolerance()
Standard_Real BRepApprox_TheZerImpFuncOfTheImpPrmSvSurfacesOfApprox::Tolerance |
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Returns the value Tol so that if Abs(Func.Root())<Tol the function is considered null.
◆ Value()
Computes the values <F> of the Functions for the variable <X>. Returns True if the computation was done successfully, False otherwise.
Implements math_FunctionSetWithDerivatives.
◆ Values()
returns the values <F> of the functions and the derivatives <D> for the variable <X>. Returns True if the computation was done successfully, False otherwise.
Implements math_FunctionSetWithDerivatives.
The documentation for this class was generated from the following file: