// 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 RWStepShape_RWFacetedBrepAndBrepWithVoids::RWStepShape_RWFacetedBrepAndBrepWithVoids () {} void RWStepShape_RWFacetedBrepAndBrepWithVoids::ReadStep (const Handle(StepData_StepReaderData)& data, const Standard_Integer num0, Handle(Interface_Check)& ach, const Handle(StepShape_FacetedBrepAndBrepWithVoids)& ent) const { Standard_Integer num = num0; // --- Instance of plex componant BrepWithVoids --- if (!data->CheckNbParams(num,1,ach,"brep_with_voids")) return; // --- field : voids --- Handle(StepShape_HArray1OfOrientedClosedShell) aVoids; Handle(StepShape_OrientedClosedShell) anent; Standard_Integer nsub1; if (data->ReadSubList (num,1,"voids",ach,nsub1)) { Standard_Integer nb1 = data->NbParams(nsub1); aVoids = new StepShape_HArray1OfOrientedClosedShell (1, nb1); for (Standard_Integer i1 = 1; i1 <= nb1; i1 ++) { //szv#4:S4163:12Mar99 `Standard_Boolean stat1 =` not needed if (data->ReadEntity (nsub1, i1,"oriented_closed_shell", ach, STANDARD_TYPE(StepShape_OrientedClosedShell), anent)) aVoids->SetValue(i1, anent); } } num = data->NextForComplex(num); // --- Instance of plex componant FacetedBrep --- if (!data->CheckNbParams(num,0,ach,"faceted_brep")) return; num = data->NextForComplex(num); // --- Instance of plex componant GeometricRepresentationItem --- if (!data->CheckNbParams(num,0,ach,"geometric_representation_item")) return; num = data->NextForComplex(num); // --- Instance of common supertype ManifoldSolidBrep --- if (!data->CheckNbParams(num,1,ach,"manifold_solid_brep")) return; // --- field : outer --- Handle(StepShape_ClosedShell) aOuter; //szv#4:S4163:12Mar99 `Standard_Boolean stat2 =` not needed data->ReadEntity(num, 1,"outer", ach, STANDARD_TYPE(StepShape_ClosedShell), aOuter); num = data->NextForComplex(num); // --- Instance of plex componant RepresentationItem --- if (!data->CheckNbParams(num,1,ach,"representation_item")) return; // --- field : name --- Handle(TCollection_HAsciiString) aName; //szv#4:S4163:12Mar99 `Standard_Boolean stat10 =` not needed data->ReadString (num,1,"name",ach,aName); num = data->NextForComplex(num); // --- Instance of plex componant SolidModel --- if (!data->CheckNbParams(num,0,ach,"solid_model")) return; //--- Initialisation of the red entity --- ent->Init(aName, aOuter,aVoids); } void RWStepShape_RWFacetedBrepAndBrepWithVoids::WriteStep (StepData_StepWriter& SW, const Handle(StepShape_FacetedBrepAndBrepWithVoids)& ent) const { // --- Instance of plex componant BrepWithVoids --- SW.StartEntity("BREP_WITH_VOIDS"); // --- field : voids --- SW.OpenSub(); for (Standard_Integer i1 = 1; i1 <= ent->NbVoids(); i1 ++) { SW.Send(ent->VoidsValue(i1)); } SW.CloseSub(); // --- Instance of plex componant FacetedBrep --- SW.StartEntity("FACETED_BREP"); // --- Instance of plex componant GeometricRepresentationItem --- SW.StartEntity("GEOMETRIC_REPRESENTATION_ITEM"); // --- Instance of common supertype ManifoldSolidBrep --- SW.StartEntity("MANIFOLD_SOLID_BREP"); // --- field : outer --- SW.Send(ent->Outer()); // --- Instance of plex componant RepresentationItem --- SW.StartEntity("REPRESENTATION_ITEM"); // --- field : name --- SW.Send(ent->Name()); // --- Instance of plex componant SolidModel --- SW.StartEntity("SOLID_MODEL"); } void RWStepShape_RWFacetedBrepAndBrepWithVoids::Share(const Handle(StepShape_FacetedBrepAndBrepWithVoids)& ent, Interface_EntityIterator& iter) const { iter.GetOneItem(ent->Outer()); Standard_Integer nbElem2 = ent->NbVoids(); for (Standard_Integer is2=1; is2<=nbElem2; is2 ++) { iter.GetOneItem(ent->VoidsValue(is2)); } }