// Copyright (c) 1999-2012 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. #include #include #include #include #include RWStepRepr_RWGlobalUncertaintyAssignedContext::RWStepRepr_RWGlobalUncertaintyAssignedContext () {} void RWStepRepr_RWGlobalUncertaintyAssignedContext::ReadStep (const Handle(StepData_StepReaderData)& data, const Standard_Integer num, Handle(Interface_Check)& ach, const Handle(StepRepr_GlobalUncertaintyAssignedContext)& ent) const { // --- Number of Parameter Control --- if (!data->CheckNbParams(num,3,ach,"global_uncertainty_assigned_context")) return; // --- inherited field : contextIdentifier --- Handle(TCollection_HAsciiString) aContextIdentifier; //szv#4:S4163:12Mar99 `Standard_Boolean stat1 =` not needed data->ReadString (num,1,"context_identifier",ach,aContextIdentifier); // --- inherited field : contextType --- Handle(TCollection_HAsciiString) aContextType; //szv#4:S4163:12Mar99 `Standard_Boolean stat2 =` not needed data->ReadString (num,2,"context_type",ach,aContextType); // --- own field : uncertainty --- Handle(StepBasic_HArray1OfUncertaintyMeasureWithUnit) aUncertainty; Handle(StepBasic_UncertaintyMeasureWithUnit) anent3; Standard_Integer nsub3; if (data->ReadSubList (num,3,"uncertainty",ach,nsub3)) { Standard_Integer nb3 = data->NbParams(nsub3); aUncertainty = new StepBasic_HArray1OfUncertaintyMeasureWithUnit (1, nb3); for (Standard_Integer i3 = 1; i3 <= nb3; i3 ++) { //szv#4:S4163:12Mar99 `Standard_Boolean stat3 =` not needed if (data->ReadEntity (nsub3, i3,"uncertainty_measure_with_unit", ach, STANDARD_TYPE(StepBasic_UncertaintyMeasureWithUnit), anent3)) aUncertainty->SetValue(i3, anent3); } } //--- Initialisation of the read entity --- ent->Init(aContextIdentifier, aContextType, aUncertainty); } void RWStepRepr_RWGlobalUncertaintyAssignedContext::WriteStep (StepData_StepWriter& SW, const Handle(StepRepr_GlobalUncertaintyAssignedContext)& ent) const { // --- inherited field contextIdentifier --- SW.Send(ent->ContextIdentifier()); // --- inherited field contextType --- SW.Send(ent->ContextType()); // --- own field : uncertainty --- SW.OpenSub(); for (Standard_Integer i3 = 1; i3 <= ent->NbUncertainty(); i3 ++) { SW.Send(ent->UncertaintyValue(i3)); } SW.CloseSub(); } void RWStepRepr_RWGlobalUncertaintyAssignedContext::Share(const Handle(StepRepr_GlobalUncertaintyAssignedContext)& ent, Interface_EntityIterator& iter) const { Standard_Integer nbElem1 = ent->NbUncertainty(); for (Standard_Integer is1=1; is1<=nbElem1; is1 ++) { iter.GetOneItem(ent->UncertaintyValue(is1)); } }