// Created on: 2001-12-28 // Created by: Andrey BETENEV // Copyright (c) 2001-2012 OPEN CASCADE SAS // // The content of this file is subject to the Open CASCADE Technology Public // License Version 6.5 (the "License"). You may not use the content of this file // except in compliance with the License. Please obtain a copy of the License // at http://www.opencascade.org and read it completely before using this file. // // The Initial Developer of the Original Code is Open CASCADE S.A.S., having its // main offices at: 1, place des Freres Montgolfier, 78280 Guyancourt, France. // // The Original Code and all software distributed under the License is // distributed on an "AS IS" basis, without warranty of any kind, and the // Initial Developer hereby disclaims all such warranties, including without // limitation, any warranties of merchantability, fitness for a particular // purpose or non-infringement. Please see the License for the specific terms // and conditions governing the rights and limitations under the License. // Generator: ExpToCas (EXPRESS -> CASCADE/XSTEP Translator) V1.1 #include #include #include //======================================================================= //function : RWStepShape_RWCompoundShapeRepresentation //purpose : //======================================================================= RWStepShape_RWCompoundShapeRepresentation::RWStepShape_RWCompoundShapeRepresentation () { } //======================================================================= //function : ReadStep //purpose : //======================================================================= void RWStepShape_RWCompoundShapeRepresentation::ReadStep (const Handle(StepData_StepReaderData)& data, const Standard_Integer num, Handle(Interface_Check)& ach, const Handle(StepShape_CompoundShapeRepresentation) &ent) const { // Check number of parameters if ( ! data->CheckNbParams(num,3,ach,"compound_shape_representation") ) return; // Inherited fields of Representation Handle(TCollection_HAsciiString) aRepresentation_Name; data->ReadString (num, 1, "representation.name", ach, aRepresentation_Name); Handle(StepRepr_HArray1OfRepresentationItem) aRepresentation_Items; Standard_Integer sub2 = 0; if ( data->ReadSubList (num, 2, "representation.items", ach, sub2) ) { Standard_Integer num2 = sub2; Standard_Integer nb0 = data->NbParams(num2); aRepresentation_Items = new StepRepr_HArray1OfRepresentationItem (1, nb0); for ( Standard_Integer i0=1; i0 <= nb0; i0++ ) { Handle(StepRepr_RepresentationItem) anIt0; data->ReadEntity (num2, i0, "representation.items", ach, STANDARD_TYPE(StepRepr_RepresentationItem), anIt0); aRepresentation_Items->SetValue(i0, anIt0); } } Handle(StepRepr_RepresentationContext) aRepresentation_ContextOfItems; data->ReadEntity (num, 3, "representation.context_of_items", ach, STANDARD_TYPE(StepRepr_RepresentationContext), aRepresentation_ContextOfItems); // Initialize entity ent->Init(aRepresentation_Name, aRepresentation_Items, aRepresentation_ContextOfItems); } //======================================================================= //function : WriteStep //purpose : //======================================================================= void RWStepShape_RWCompoundShapeRepresentation::WriteStep (StepData_StepWriter& SW, const Handle(StepShape_CompoundShapeRepresentation) &ent) const { // Inherited fields of Representation SW.Send (ent->StepRepr_Representation::Name()); SW.OpenSub(); for (Standard_Integer i1=1; i1 <= ent->StepRepr_Representation::Items()->Length(); i1++ ) { Handle(StepRepr_RepresentationItem) Var0 = ent->StepRepr_Representation::Items()->Value(i1); SW.Send (Var0); } SW.CloseSub(); SW.Send (ent->StepRepr_Representation::ContextOfItems()); } //======================================================================= //function : Share //purpose : //======================================================================= void RWStepShape_RWCompoundShapeRepresentation::Share (const Handle(StepShape_CompoundShapeRepresentation) &ent, Interface_EntityIterator& iter) const { // Inherited fields of Representation for (Standard_Integer i1=1; i1 <= ent->StepRepr_Representation::Items()->Length(); i1++ ) { Handle(StepRepr_RepresentationItem) Var0 = ent->StepRepr_Representation::Items()->Value(i1); iter.AddItem (Var0); } iter.AddItem (ent->StepRepr_Representation::ContextOfItems()); }