// 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 // --- Enum : PreferredSurfaceCurveRepresentation --- static TCollection_AsciiString pscrPcurveS2(".PCURVE_S2."); static TCollection_AsciiString pscrPcurveS1(".PCURVE_S1."); static TCollection_AsciiString pscrCurve3d(".CURVE_3D."); RWStepGeom_RWSurfaceCurve::RWStepGeom_RWSurfaceCurve () {} void RWStepGeom_RWSurfaceCurve::ReadStep (const Handle(StepData_StepReaderData)& data, const Standard_Integer num, Handle(Interface_Check)& ach, const Handle(StepGeom_SurfaceCurve)& ent) const { // --- Number of Parameter Control --- if (!data->CheckNbParams(num,4,ach,"surface_curve")) return; // --- inherited field : name --- Handle(TCollection_HAsciiString) aName; //szv#4:S4163:12Mar99 `Standard_Boolean stat1 =` not needed data->ReadString (num,1,"name",ach,aName); // --- own field : curve3d --- Handle(StepGeom_Curve) aCurve3d; //szv#4:S4163:12Mar99 `Standard_Boolean stat2 =` not needed data->ReadEntity(num, 2,"curve_3d", ach, STANDARD_TYPE(StepGeom_Curve), aCurve3d); // --- own field : associatedGeometry --- Handle(StepGeom_HArray1OfPcurveOrSurface) aAssociatedGeometry; StepGeom_PcurveOrSurface aAssociatedGeometryItem; Standard_Integer nsub3; if (data->ReadSubList (num,3,"associated_geometry",ach,nsub3)) { Standard_Integer nb3 = data->NbParams(nsub3); aAssociatedGeometry = new StepGeom_HArray1OfPcurveOrSurface (1, nb3); for (Standard_Integer i3 = 1; i3 <= nb3; i3 ++) { //szv#4:S4163:12Mar99 `Standard_Boolean stat3 =` not needed if (data->ReadEntity (nsub3,i3,"associated_geometry",ach,aAssociatedGeometryItem)) aAssociatedGeometry->SetValue(i3,aAssociatedGeometryItem); } } // --- own field : masterRepresentation --- StepGeom_PreferredSurfaceCurveRepresentation aMasterRepresentation = StepGeom_pscrCurve3d; if (data->ParamType(num,4) == Interface_ParamEnum) { Standard_CString text = data->ParamCValue(num,4); if (pscrPcurveS2.IsEqual(text)) aMasterRepresentation = StepGeom_pscrPcurveS2; else if (pscrPcurveS1.IsEqual(text)) aMasterRepresentation = StepGeom_pscrPcurveS1; else if (pscrCurve3d.IsEqual(text)) aMasterRepresentation = StepGeom_pscrCurve3d; else ach->AddFail("Enumeration preferred_surface_curve_representation has not an allowed value"); } else ach->AddFail("Parameter #4 (master_representation) is not an enumeration"); //--- Initialisation of the read entity --- ent->Init(aName, aCurve3d, aAssociatedGeometry, aMasterRepresentation); } void RWStepGeom_RWSurfaceCurve::WriteStep (StepData_StepWriter& SW, const Handle(StepGeom_SurfaceCurve)& ent) const { // --- inherited field name --- SW.Send(ent->Name()); // --- own field : curve3d --- SW.Send(ent->Curve3d()); // --- own field : associatedGeometry --- SW.OpenSub(); for (Standard_Integer i3 = 1; i3 <= ent->NbAssociatedGeometry(); i3 ++) { if (!ent->AssociatedGeometryValue(i3).Value().IsNull()) { SW.Send(ent->AssociatedGeometryValue(i3).Value()); } } SW.CloseSub(); // --- own field : masterRepresentation --- switch(ent->MasterRepresentation()) { case StepGeom_pscrPcurveS2 : SW.SendEnum (pscrPcurveS2); break; case StepGeom_pscrPcurveS1 : SW.SendEnum (pscrPcurveS1); break; case StepGeom_pscrCurve3d : SW.SendEnum (pscrCurve3d); break; } } void RWStepGeom_RWSurfaceCurve::Share(const Handle(StepGeom_SurfaceCurve)& ent, Interface_EntityIterator& iter) const { iter.GetOneItem(ent->Curve3d()); Standard_Integer nbElem2 = ent->NbAssociatedGeometry(); for (Standard_Integer is2=1; is2<=nbElem2; is2 ++) { iter.GetOneItem(ent->AssociatedGeometryValue(is2).Value()); } }