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occt/src/DrawFairCurve/DrawFairCurve_MinimalVariation.cxx
abv 92efcf78a6 0026936: Drawbacks of inlining in new type system in OCCT 7.0 -- automatic
Automatic restore of IMPLEMENT_STANDARD_RTTIEXT macro (upgrade -rtti)
2015-12-04 14:15:06 +03:00

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2.6 KiB
C++

// Copyright (c) 1996-1999 Matra Datavision
// Copyright (c) 1999-2014 OPEN CASCADE SAS
//
// This file is part of Open CASCADE Technology software library.
//
// This library is free software; you can redistribute it and/or modify it under
// the terms of the GNU Lesser General Public License version 2.1 as published
// by the Free Software Foundation, with special exception defined in the file
// OCCT_LGPL_EXCEPTION.txt. Consult the file LICENSE_LGPL_21.txt included in OCCT
// distribution for complete text of the license and disclaimer of any warranty.
//
// Alternatively, this file may be used under the terms of Open CASCADE
// commercial license or contractual agreement.
#include <Draw_ColorKind.hxx>
#include <DrawFairCurve_MinimalVariation.hxx>
#include <FairCurve_MinimalVariation.hxx>
#include <Standard_Type.hxx>
IMPLEMENT_STANDARD_RTTIEXT(DrawFairCurve_MinimalVariation,DrawFairCurve_Batten)
DrawFairCurve_MinimalVariation::DrawFairCurve_MinimalVariation(const Standard_Address TheMVC)
: DrawFairCurve_Batten(TheMVC)
{
SetColor(Draw_jaune);
}
void DrawFairCurve_MinimalVariation::SetCurvature(const Standard_Integer Side,
const Standard_Real Rho)
{
if (Side == 1) {
((FairCurve_MinimalVariation*)MyBatten)->SetCurvature1(Rho);
((FairCurve_MinimalVariation*)MyBatten)->SetConstraintOrder1(2);
}
else {
((FairCurve_MinimalVariation*)MyBatten)->SetCurvature2(Rho);
((FairCurve_MinimalVariation*)MyBatten)->SetConstraintOrder2(2);
}
Compute();
}
void DrawFairCurve_MinimalVariation::FreeCurvature(const Standard_Integer Side)
{
if (Side == 1) {
if ( ((FairCurve_MinimalVariation*)MyBatten)->GetConstraintOrder1()>1)
{
((FairCurve_MinimalVariation*)MyBatten)->SetConstraintOrder1(1);
}
}
else {
if ( ((FairCurve_MinimalVariation*)MyBatten)->GetConstraintOrder2()>1)
{
((FairCurve_MinimalVariation*)MyBatten)->SetConstraintOrder2(1);
}
}
Compute();
}
void DrawFairCurve_MinimalVariation::SetPhysicalRatio( const Standard_Real Ratio)
{
((FairCurve_MinimalVariation*)MyBatten)->SetPhysicalRatio(Ratio);
Compute();
}
Standard_Real DrawFairCurve_MinimalVariation::GetCurvature(const Standard_Integer Side) const
{
if (Side == 1) {return ((FairCurve_MinimalVariation*)MyBatten)->GetCurvature1();}
else {return ((FairCurve_MinimalVariation*)MyBatten)->GetCurvature2();}
}
Standard_Real DrawFairCurve_MinimalVariation::GetPhysicalRatio() const
{
return ((FairCurve_MinimalVariation*)MyBatten)->GetPhysicalRatio();
}