// Created on: 1996-04-01 // Created by: Flore Lantheaume // 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 #include #include #include #include #include #include #include #include #include #include #include #include #include //======================================================================= //function : Add //purpose : //======================================================================= void DsgPrs_FixPresentation::Add( const Handle(Prs3d_Presentation)& aPresentation, const Handle(Prs3d_Drawer)& aDrawer, const gp_Pnt& aPntAttach, const gp_Pnt& aPntEnd, const gp_Dir& aNormPln, const Standard_Real symbsize) { Handle(Prs3d_DimensionAspect) LA = aDrawer->DimensionAspect(); Prs3d_Root::CurrentGroup(aPresentation)->SetPrimitivesAspect(LA->LineAspect()->Aspect()); Handle(Graphic3d_ArrayOfSegments) aPrims = new Graphic3d_ArrayOfSegments(10); //Trace du segment de raccordement aPrims->AddVertex(aPntAttach); aPrims->AddVertex(aPntEnd); // trace du symbole 'Fix' gp_Vec dirac(aPntAttach, aPntEnd); // vecteur directeur du seg. de raccord dirac.Normalize(); gp_Vec norac = dirac.Crossed(gp_Vec(aNormPln)); gp_Ax1 ax(aPntEnd, aNormPln); norac.Rotate(ax, M_PI/8); // vecteur normal au seg. de raccord norac*=(symbsize/2); gp_Pnt P1 = aPntEnd.Translated(norac); gp_Pnt P2 = aPntEnd.Translated(-norac); aPrims->AddVertex(P1); aPrims->AddVertex(P2); // trace des 'dents' norac*=0.8; P1 = aPntEnd.Translated(norac); P2 = aPntEnd.Translated(-norac); dirac*=(symbsize/2); gp_Pnt PF = P1; gp_Pnt PL = PF.Translated(dirac); PL.Translate(norac); aPrims->AddVertex(PF); aPrims->AddVertex(PL); PF = P2; PL = PF.Translated(dirac); PL.Translate(norac); aPrims->AddVertex(PF); aPrims->AddVertex(PL); PF.SetXYZ(0.5*(P1.XYZ() + P2.XYZ())); PL = PF.Translated(dirac); PL.Translate(norac); aPrims->AddVertex(PF); aPrims->AddVertex(PL); Prs3d_Root::CurrentGroup(aPresentation)->AddPrimitiveArray(aPrims); Prs3d_Root::NewGroup(aPresentation); Prs3d_Root::CurrentGroup(aPresentation)->SetPrimitivesAspect(LA->LineAspect()->Aspect()); Quantity_Color aColor = LA->LineAspect()->Aspect()->Color(); Handle(Graphic3d_AspectMarker3d) aMarkerAsp = new Graphic3d_AspectMarker3d (Aspect_TOM_O, aColor, 1.0); Prs3d_Root::CurrentGroup(aPresentation)->SetPrimitivesAspect (aMarkerAsp); Handle(Graphic3d_ArrayOfPoints) anArrayOfPoints = new Graphic3d_ArrayOfPoints (1); anArrayOfPoints->AddVertex (aPntAttach.X(), aPntAttach.Y(), aPntAttach.Z()); Prs3d_Root::CurrentGroup(aPresentation)->AddPrimitiveArray (anArrayOfPoints); }