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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.
351 lines
12 KiB
C++
351 lines
12 KiB
C++
// Created on: 1993-07-13
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// Created by: Yves FRICAUD
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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 <Bisector_Bisec.hxx>
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#include <BRepMAT2d_BisectingLocus.hxx>
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#include <BRepMAT2d_Explorer.hxx>
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#include <Geom2d_Geometry.hxx>
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#include <Geom2d_TrimmedCurve.hxx>
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#include <gp_Pnt2d.hxx>
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#include <MAT2d_BiInt.hxx>
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#include <MAT2d_Circuit.hxx>
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#include <MAT2d_CutCurve.hxx>
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#include <MAT2d_Mat2d.hxx>
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#include <MAT2d_SequenceOfSequenceOfGeometry.hxx>
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#include <MAT2d_Tool2d.hxx>
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#include <MAT_BasicElt.hxx>
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#include <MAT_DataMapOfIntegerBasicElt.hxx>
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#include <MAT_Graph.hxx>
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#include <MAT_ListOfBisector.hxx>
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#include <MAT_Node.hxx>
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#include <Precision.hxx>
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#include <TColGeom2d_SequenceOfGeometry.hxx>
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#include <Geom2d_Curve.hxx>
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static void CutSketch(MAT2d_SequenceOfSequenceOfGeometry& Figure,
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MAT2d_DataMapOfBiIntInteger& NbSect);
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//=============================================================================
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// function : BRepMAT2d_BisectingLocus
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// purpose : Constructeur vide.
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//=============================================================================
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BRepMAT2d_BisectingLocus::BRepMAT2d_BisectingLocus()
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: isDone(Standard_False),
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nbContours(0)
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{
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}
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//=============================================================================
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// function : Compute
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// purpose : Calcul de la carte des lieux bisecteurs sur le contour defini par
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// <anExplo>.
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//=============================================================================
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void BRepMAT2d_BisectingLocus::Compute(BRepMAT2d_Explorer& anExplo,
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const Standard_Integer IndexLine,
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const MAT_Side aSide,
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const GeomAbs_JoinType aJoinType,
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const Standard_Boolean IsOpenResult)
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{
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MAT2d_Mat2d TheMAT(IsOpenResult);
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Handle(MAT_ListOfBisector) TheRoots = new MAT_ListOfBisector();
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MAT2d_SequenceOfSequenceOfGeometry Figure;
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Standard_Integer i;
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nbSect.Clear();
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theGraph = new MAT_Graph();
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nbContours = anExplo.NumberOfContours();
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if (nbContours == 0)
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{
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return;
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}
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//---------------------------------
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// Lecture des donnees de anExplo.
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//---------------------------------
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for (i = 1; i <= anExplo.NumberOfContours(); i++)
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{
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TColGeom2d_SequenceOfGeometry Line;
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Figure.Append(Line);
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for (anExplo.Init(i); anExplo.More(); anExplo.Next())
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{
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Figure.ChangeValue(i).Append(anExplo.Value());
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}
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}
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//-----------------------
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// Decoupage des courbes.
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//-----------------------
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CutSketch(Figure, nbSect);
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//----------------------------------------------------------
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// Construction du circuit sur lequel est calcule la carte.
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//----------------------------------------------------------
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Handle(MAT2d_Circuit) ACircuit = new MAT2d_Circuit(aJoinType, IsOpenResult);
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// Modified by Sergey KHROMOV - Wed Mar 6 17:43:47 2002 Begin
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// ACircuit->Perform(Figure,IndexLine,(aSide == MAT_Left));
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ACircuit->Perform(Figure, anExplo.GetIsClosed(), IndexLine, (aSide == MAT_Left));
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// Modified by Sergey KHROMOV - Wed Mar 6 17:43:48 2002 End
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// -----------------------
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// Initialistion du Tool.
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// -----------------------
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theTool.Sense(aSide);
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theTool.SetJoinType(aJoinType);
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theTool.InitItems(ACircuit);
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// --------------------------------------------
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// Initialisation et execution de l algorithme.
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// --------------------------------------------
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if (IsOpenResult)
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TheMAT.CreateMatOpen(theTool);
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else
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TheMAT.CreateMat(theTool);
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isDone = TheMAT.IsDone();
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if (!isDone)
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return;
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// ----------------------------------------------------------------
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// Recuperation du resultat de l algorithme et creation du graphe.
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// ----------------------------------------------------------------
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for (TheMAT.Init(); TheMAT.More(); TheMAT.Next())
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{
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TheRoots->BackAdd(TheMAT.Bisector());
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}
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theGraph->Perform(TheMAT.SemiInfinite(),
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TheRoots,
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theTool.NumberOfItems(),
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TheMAT.NumberOfBisectors());
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//-----------------------------------------------------------------------
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// Fusion des elements de base doubles si plusieurs lignes dans Exploset.
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//-----------------------------------------------------------------------
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if (anExplo.NumberOfContours() > 1)
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{
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MAT_DataMapOfIntegerBasicElt NewMap;
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Standard_Integer IndexLast = 1;
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//-----------------------------------------------------------------------
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// Construction de NewMap dont les elements sont ordonnes suivant les
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// lignes du contour et qui ne contient pas d element dupliques.
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// em meme temps fusion des arcs dupliques et mise a jour des noeuds.
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//-----------------------------------------------------------------------
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for (i = 1; i <= anExplo.NumberOfContours(); i++)
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{
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RenumerationAndFusion(i, theTool.Circuit()->LineLength(i), IndexLast, NewMap);
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}
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//-----------------------------------------------------------------------
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// Chargement dans le graph de la nouvelle map.
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// et compactage de la map des Arcs (ie Elimination des trous du a la
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// fusion d arcs ).et de celle des Nodes.
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//-----------------------------------------------------------------------
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theGraph->ChangeBasicElts(NewMap);
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theGraph->CompactArcs();
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theGraph->CompactNodes();
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}
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}
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//=================================================================================================
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void BRepMAT2d_BisectingLocus::RenumerationAndFusion(const Standard_Integer ILine,
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const Standard_Integer LengthLine,
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Standard_Integer& IndexLast,
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MAT_DataMapOfIntegerBasicElt& NewMap)
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{
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Standard_Integer IndFirst;
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Standard_Integer i, j;
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Standard_Integer GeomIndexArc1, GeomIndexArc2, GeomIndexArc3, GeomIndexArc4;
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Standard_Boolean MergeArc1, MergeArc2;
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for (i = 1; i <= LengthLine; i++)
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{
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const TColStd_SequenceOfInteger& S = theTool.Circuit()->RefToEqui(ILine, i);
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IndFirst = S.Value(1);
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NewMap.Bind(IndexLast, theGraph->ChangeBasicElt(IndFirst));
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IndexLast++;
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for (j = 2; j <= S.Length(); j++)
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{
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theGraph->FusionOfBasicElts(IndFirst,
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S.Value(j),
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MergeArc1,
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GeomIndexArc1,
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GeomIndexArc2,
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MergeArc2,
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GeomIndexArc3,
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GeomIndexArc4);
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if (MergeArc1)
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{
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theTool.BisecFusion(GeomIndexArc1, GeomIndexArc2);
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}
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if (MergeArc2)
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{
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theTool.BisecFusion(GeomIndexArc3, GeomIndexArc4);
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}
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}
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}
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}
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//=================================================================================================
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Standard_Boolean BRepMAT2d_BisectingLocus::IsDone() const
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{
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return isDone;
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}
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//=============================================================================
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// function : Graph
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//
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//=============================================================================
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Handle(MAT_Graph) BRepMAT2d_BisectingLocus::Graph() const
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{
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return theGraph;
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}
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//=============================================================================
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// function : NumberOfContours
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//
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//=============================================================================
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Standard_Integer BRepMAT2d_BisectingLocus::NumberOfContours() const
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{
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return nbContours;
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}
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//=============================================================================
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// function : NumberOfElts
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//
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//=============================================================================
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Standard_Integer BRepMAT2d_BisectingLocus::NumberOfElts(const Standard_Integer IndLine) const
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{
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return theTool.Circuit()->LineLength(IndLine);
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}
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//=============================================================================
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// function : NumberOfSect
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//
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//=============================================================================
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Standard_Integer BRepMAT2d_BisectingLocus::NumberOfSections(const Standard_Integer IndLine,
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const Standard_Integer Index) const
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{
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MAT2d_BiInt B(IndLine, Index);
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return nbSect(B);
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}
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//=============================================================================
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// function : BasicElt
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//
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//=============================================================================
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Handle(MAT_BasicElt) BRepMAT2d_BisectingLocus::BasicElt(const Standard_Integer IndLine,
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const Standard_Integer Index) const
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{
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Standard_Integer i;
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Standard_Integer Ind = Index;
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for (i = 1; i < IndLine; i++)
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{
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Ind = Ind + theTool.Circuit()->LineLength(i);
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}
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return theGraph->BasicElt(Ind);
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}
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//=============================================================================
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// function : GeomBis
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//
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//=============================================================================
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Bisector_Bisec BRepMAT2d_BisectingLocus::GeomBis(const Handle(MAT_Arc)& anArc,
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Standard_Boolean& Reverse) const
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{
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Reverse = Standard_False;
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Handle(Geom2d_Curve) Bis(theTool.GeomBis(anArc->GeomIndex()).Value());
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if (Bis->FirstParameter() <= -Precision::Infinite())
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{
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Reverse = Standard_True;
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}
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else if (Bis->LastParameter() < Precision::Infinite())
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{
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gp_Pnt2d PF = Bis->Value(Bis->FirstParameter());
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gp_Pnt2d PL = Bis->Value(Bis->LastParameter());
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gp_Pnt2d PNode = GeomElt(anArc->FirstNode());
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if (PNode.SquareDistance(PF) > PNode.SquareDistance(PL))
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Reverse = Standard_True;
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}
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return theTool.GeomBis(anArc->GeomIndex());
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}
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//=============================================================================
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// function : GeomElt
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//
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//=============================================================================
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Handle(Geom2d_Geometry) BRepMAT2d_BisectingLocus::GeomElt(
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const Handle(MAT_BasicElt)& aBasicElt) const
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{
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return theTool.GeomElt(aBasicElt->GeomIndex());
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}
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//=============================================================================
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// function : GeomElt
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//
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//=============================================================================
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gp_Pnt2d BRepMAT2d_BisectingLocus::GeomElt(const Handle(MAT_Node)& aNode) const
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{
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return theTool.GeomPnt(aNode->GeomIndex());
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}
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//=============================================================================
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// function : CutSketch
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//
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//=============================================================================
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static void CutSketch(MAT2d_SequenceOfSequenceOfGeometry& Figure,
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MAT2d_DataMapOfBiIntInteger& NbSect)
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{
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MAT2d_CutCurve Cuter;
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Standard_Integer i, j, k, ico;
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Standard_Integer ICurveInit;
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Standard_Integer NbSection;
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for (i = 1; i <= Figure.Length(); i++)
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{
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TColGeom2d_SequenceOfGeometry& Contour = Figure.ChangeValue(i);
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ICurveInit = 0;
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for (j = 1; j <= Contour.Length(); j++)
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{
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ICurveInit++;
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Cuter.Perform(Handle(Geom2d_Curve)::DownCast(Contour.ChangeValue(j)));
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NbSection = 1;
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if (!Cuter.UnModified())
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{
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ico = j;
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NbSection = Cuter.NbCurves();
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for (k = 1; k <= NbSection; k++)
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{
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Contour.InsertAfter(j, Cuter.Value(k));
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j++;
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}
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Contour.Remove(ico);
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j--;
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}
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MAT2d_BiInt B(i, ICurveInit);
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NbSect.Bind(B, NbSection);
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}
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}
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}
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