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Update empty method guards to new style with regex (see PR). Used clang-format 18.1.8. New actions to validate code formatting is added. Update .clang-format with disabling of include sorting. It is temporary changes, then include will be sorted. Apply formatting for /src and /tools folder. The files with .hxx,.cxx,.lxx,.h,.pxx,.hpp,*.cpp extensions.
291 lines
9.1 KiB
C++
291 lines
9.1 KiB
C++
// Created on: 1993-03-24
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// Created by: JCV
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// Copyright (c) 1993-1999 Matra Datavision
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// Copyright (c) 1999-2014 OPEN CASCADE SAS
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//
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// This file is part of Open CASCADE Technology software library.
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//
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// This library is free software; you can redistribute it and/or modify it under
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// the terms of the GNU Lesser General Public License version 2.1 as published
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// by the Free Software Foundation, with special exception defined in the file
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// OCCT_LGPL_EXCEPTION.txt. Consult the file LICENSE_LGPL_21.txt included in OCCT
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// distribution for complete text of the license and disclaimer of any warranty.
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//
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// Alternatively, this file may be used under the terms of Open CASCADE
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// commercial license or contractual agreement.
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#include <ElCLib.hxx>
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#include <Geom2d_BezierCurve.hxx>
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#include <Geom2d_BSplineCurve.hxx>
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#include <Geom2d_Curve.hxx>
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#include <Geom2d_Geometry.hxx>
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#include <Geom2d_OffsetCurve.hxx>
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#include <Geom2d_TrimmedCurve.hxx>
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#include <Geom2d_UndefinedDerivative.hxx>
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#include <gp.hxx>
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#include <gp_Pnt2d.hxx>
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#include <gp_Trsf2d.hxx>
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#include <gp_Vec2d.hxx>
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#include <Precision.hxx>
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#include <Standard_ConstructionError.hxx>
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#include <Standard_RangeError.hxx>
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#include <Standard_Type.hxx>
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IMPLEMENT_STANDARD_RTTIEXT(Geom2d_TrimmedCurve, Geom2d_BoundedCurve)
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typedef Geom2d_TrimmedCurve TrimmedCurve;
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typedef gp_Ax2d Ax2d;
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typedef gp_Pnt2d Pnt2d;
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typedef gp_Trsf2d Trsf2d;
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typedef gp_Vec2d Vec2d;
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//=================================================================================================
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Handle(Geom2d_Geometry) Geom2d_TrimmedCurve::Copy() const
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{
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Handle(Geom2d_TrimmedCurve) Tc;
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Tc = new TrimmedCurve(basisCurve, uTrim1, uTrim2);
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return Tc;
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}
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//=================================================================================================
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Geom2d_TrimmedCurve::Geom2d_TrimmedCurve(const Handle(Geom2d_Curve)& C,
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const Standard_Real U1,
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const Standard_Real U2,
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const Standard_Boolean Sense,
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const Standard_Boolean theAdjustPeriodic)
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: uTrim1(U1),
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uTrim2(U2)
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{
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if (C.IsNull())
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throw Standard_ConstructionError("Geom2d_TrimmedCurve:: C is null");
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// kill trimmed basis curves
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Handle(Geom2d_TrimmedCurve) T = Handle(Geom2d_TrimmedCurve)::DownCast(C);
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if (!T.IsNull())
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basisCurve = Handle(Geom2d_Curve)::DownCast(T->BasisCurve()->Copy());
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else
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basisCurve = Handle(Geom2d_Curve)::DownCast(C->Copy());
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SetTrim(U1, U2, Sense, theAdjustPeriodic);
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}
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//=================================================================================================
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void Geom2d_TrimmedCurve::Reverse()
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{
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Standard_Real U1 = basisCurve->ReversedParameter(uTrim2);
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Standard_Real U2 = basisCurve->ReversedParameter(uTrim1);
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basisCurve->Reverse();
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SetTrim(U1, U2, Standard_True, Standard_False);
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}
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//=================================================================================================
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Standard_Real Geom2d_TrimmedCurve::ReversedParameter(const Standard_Real U) const
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{
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return basisCurve->ReversedParameter(U);
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}
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//=================================================================================================
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void Geom2d_TrimmedCurve::SetTrim(const Standard_Real U1,
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const Standard_Real U2,
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const Standard_Boolean Sense,
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const Standard_Boolean theAdjustPeriodic)
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{
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Standard_Boolean sameSense = Standard_True;
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if (U1 == U2)
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throw Standard_ConstructionError("Geom2d_TrimmedCurve::U1 == U2");
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Standard_Real Udeb = basisCurve->FirstParameter();
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Standard_Real Ufin = basisCurve->LastParameter();
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if (basisCurve->IsPeriodic())
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{
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sameSense = Sense;
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// set uTrim1 in the range Udeb , Ufin
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// set uTrim2 in the range uTrim1 , uTrim1 + Period()
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uTrim1 = U1;
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uTrim2 = U2;
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if (theAdjustPeriodic)
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ElCLib::AdjustPeriodic(Udeb,
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Ufin,
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Min(Abs(uTrim2 - uTrim1) / 2, Precision::PConfusion()),
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uTrim1,
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uTrim2);
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}
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else
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{
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if (U1 < U2)
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{
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sameSense = Sense;
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uTrim1 = U1;
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uTrim2 = U2;
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}
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else
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{
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sameSense = !Sense;
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uTrim1 = U2;
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uTrim2 = U1;
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}
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if ((Udeb - uTrim1 > Precision::PConfusion()) || (uTrim2 - Ufin > Precision::PConfusion()))
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{
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throw Standard_ConstructionError("Geom_TrimmedCurve::parameters out of range");
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}
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}
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if (!sameSense)
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Reverse();
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}
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//=================================================================================================
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Handle(Geom2d_Curve) Geom2d_TrimmedCurve::BasisCurve() const
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{
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return basisCurve;
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}
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//=================================================================================================
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GeomAbs_Shape Geom2d_TrimmedCurve::Continuity() const
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{
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return basisCurve->Continuity();
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}
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//=================================================================================================
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Standard_Boolean Geom2d_TrimmedCurve::IsCN(const Standard_Integer N) const
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{
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Standard_RangeError_Raise_if(N < 0, " ");
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return basisCurve->IsCN(N);
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}
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//=================================================================================================
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Pnt2d Geom2d_TrimmedCurve::EndPoint() const
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{
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return basisCurve->Value(uTrim2);
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}
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//=================================================================================================
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Standard_Real Geom2d_TrimmedCurve::FirstParameter() const
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{
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return uTrim1;
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}
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//=================================================================================================
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Standard_Boolean Geom2d_TrimmedCurve::IsClosed() const
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{
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Standard_Real Dist = Value(FirstParameter()).Distance(Value(LastParameter()));
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return (Dist <= gp::Resolution());
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}
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//=================================================================================================
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Standard_Boolean Geom2d_TrimmedCurve::IsPeriodic() const
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{
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// return basisCurve->IsPeriodic();
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return Standard_False;
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}
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//=================================================================================================
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Standard_Real Geom2d_TrimmedCurve::Period() const
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{
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return basisCurve->Period();
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}
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//=================================================================================================
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Standard_Real Geom2d_TrimmedCurve::LastParameter() const
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{
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return uTrim2;
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}
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//=================================================================================================
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Pnt2d Geom2d_TrimmedCurve::StartPoint() const
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{
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gp_Pnt2d P;
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P = basisCurve->Value(uTrim1);
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return P;
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}
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//=================================================================================================
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void Geom2d_TrimmedCurve::D0(const Standard_Real U, Pnt2d& P) const
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{
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basisCurve->D0(U, P);
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}
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//=================================================================================================
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void Geom2d_TrimmedCurve::D1(const Standard_Real U, Pnt2d& P, Vec2d& V1) const
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{
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basisCurve->D1(U, P, V1);
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}
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//=================================================================================================
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void Geom2d_TrimmedCurve::D2(const Standard_Real U, Pnt2d& P, Vec2d& V1, Vec2d& V2) const
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{
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basisCurve->D2(U, P, V1, V2);
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}
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//=================================================================================================
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void Geom2d_TrimmedCurve::D3(const Standard_Real U, Pnt2d& P, Vec2d& V1, Vec2d& V2, Vec2d& V3) const
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{
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basisCurve->D3(U, P, V1, V2, V3);
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}
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//=================================================================================================
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Vec2d Geom2d_TrimmedCurve::DN(const Standard_Real U, const Standard_Integer N) const
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{
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return basisCurve->DN(U, N);
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}
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//=================================================================================================
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void Geom2d_TrimmedCurve::Transform(const Trsf2d& T)
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{
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basisCurve->Transform(T);
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Standard_Real U1 = basisCurve->TransformedParameter(uTrim1, T);
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Standard_Real U2 = basisCurve->TransformedParameter(uTrim2, T);
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SetTrim(U1, U2, Standard_True, Standard_False);
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}
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//=================================================================================================
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Standard_Real Geom2d_TrimmedCurve::TransformedParameter(const Standard_Real U,
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const gp_Trsf2d& T) const
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{
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return basisCurve->TransformedParameter(U, T);
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}
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//=================================================================================================
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Standard_Real Geom2d_TrimmedCurve::ParametricTransformation(const gp_Trsf2d& T) const
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{
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return basisCurve->ParametricTransformation(T);
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}
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//=================================================================================================
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void Geom2d_TrimmedCurve::DumpJson(Standard_OStream& theOStream, Standard_Integer theDepth) const
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{
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OCCT_DUMP_TRANSIENT_CLASS_BEGIN(theOStream)
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OCCT_DUMP_BASE_CLASS(theOStream, theDepth, Geom2d_BoundedCurve)
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OCCT_DUMP_FIELD_VALUES_DUMPED(theOStream, theDepth, basisCurve.get())
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OCCT_DUMP_FIELD_VALUE_NUMERICAL(theOStream, uTrim1)
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OCCT_DUMP_FIELD_VALUE_NUMERICAL(theOStream, uTrim2)
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}
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