// Copyright (C) 2007-2013 CEA/DEN, EDF R&D, OPEN CASCADE // // Copyright (C) 2003-2007 OPEN CASCADE, EADS/CCR, LIP6, CEA/DEN, // CEDRAT, EDF R&D, LEG, PRINCIPIA R&D, BUREAU VERITAS // // This library is free software; you can redistribute it and/or // modify it under the terms of the GNU Lesser General Public // License as published by the Free Software Foundation; either // version 2.1 of the License. // // This library is distributed in the hope that it will be useful, // but WITHOUT ANY WARRANTY; without even the implied warranty of // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU // Lesser General Public License for more details. // // You should have received a copy of the GNU Lesser General Public // License along with this library; if not, write to the Free Software // Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA // // See http://www.salome-platform.org/ or email : webmaster.salome@opencascade.com // #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include //======================================================================= //function : GetID //purpose : //======================================================================= const Standard_GUID& GEOMImpl_ThruSectionsDriver::GetID() { static Standard_GUID aThruSectionsDriver("FF1BB971-E99C-4f89-B989-5B48E061049B"); return aThruSectionsDriver; } //======================================================================= //function : GEOMImpl_ThruSectionsDriver //purpose : //======================================================================= GEOMImpl_ThruSectionsDriver::GEOMImpl_ThruSectionsDriver() { } //======================================================================= //function : Execute //purpose : //======================================================================= Standard_Integer GEOMImpl_ThruSectionsDriver::Execute(TFunction_Logbook& log) const { if (Label().IsNull()) return 0; Handle(GEOM_Function) aFunction = GEOM_Function::GetFunction(Label()); GEOMImpl_IThruSections aCI (aFunction); Standard_Integer aType = aFunction->GetType(); Standard_Boolean isSolid = (aCI.GetSolidMode() == 1); Handle(TColStd_HSequenceOfTransient) aSeqSections = aCI.GetSections(); if( aSeqSections.IsNull()) return 0; Standard_Integer aNbSections = aSeqSections->Length(); Standard_Real aPreci = Max(aCI.GetPrecision(),Precision::Confusion()); if(!aNbSections ) return 0; BRepOffsetAPI_ThruSections aBuilder(isSolid,aType ==THRUSECTIONS_RULED,aPreci); aBuilder.CheckCompatibility(Standard_False); //added sections for building surface Standard_Integer i =1; Standard_Integer nbAdded =0; for( ; i <= aNbSections; i++,nbAdded++) { Handle(Standard_Transient) anItem = aSeqSections->Value(i); if(anItem.IsNull()) continue; Handle(GEOM_Function) aSection = Handle(GEOM_Function)::DownCast(anItem); if(aSection.IsNull()) continue; TopoDS_Shape aShapeSection = aSection->GetValue(); TopAbs_ShapeEnum aTypeSect = aShapeSection.ShapeType(); if(aTypeSect == TopAbs_WIRE) aBuilder.AddWire(TopoDS::Wire(aShapeSection)); else if(aTypeSect == TopAbs_EDGE) { TopoDS_Edge anEdge = TopoDS::Edge(aShapeSection); TopoDS_Wire aWire = BRepBuilderAPI_MakeWire(anEdge); aBuilder.AddWire(aWire); } else if(aTypeSect == TopAbs_VERTEX) { TopoDS_Vertex aVert = TopoDS::Vertex(aShapeSection); aBuilder.AddVertex(aVert); } else nbAdded--; } if(!nbAdded) Standard_TypeMismatch::Raise("ThruSections aborted : invalid types of sections"); //make surface by sections aBuilder.Build(); TopoDS_Shape aShape = aBuilder.Shape(); if (aShape.IsNull()) { return 0; } BRepCheck_Analyzer ana (aShape, Standard_False); if (!ana.IsValid()) { //algoritm thru section creats on the arcs invalid shapes gka ShapeFix_ShapeTolerance aSFT; aSFT.LimitTolerance(aShape,Precision::Confusion(),Precision::Confusion()); Handle(ShapeFix_Shape) aSfs = new ShapeFix_Shape(aShape); aSfs->SetPrecision(Precision::Confusion()); aSfs->Perform(); aShape = aSfs->Shape(); //ana.Init(aShape, Standard_False); //if (!ana.IsValid()) // Standard_ConstructionError::Raise("Algorithm have produced an invalid shape result"); } aFunction->SetValue(aShape); log.SetTouched(Label()); return 1; } //================================================================================ /*! * \brief Returns a name of creation operation and names and values of creation parameters */ //================================================================================ bool GEOMImpl_ThruSectionsDriver:: GetCreationInformation(std::string& theOperationName, std::vector& theParams) { if (Label().IsNull()) return 0; Handle(GEOM_Function) function = GEOM_Function::GetFunction(Label()); GEOMImpl_IThruSections aCI( function ); Standard_Integer aType = function->GetType(); theOperationName = "MakeThruSections"; switch ( aType ) { case THRUSECTIONS_RULED: case THRUSECTIONS_SMOOTHED: AddParam( theParams, "Sections", aCI.GetSections() ); AddParam( theParams, "Is solid", aCI.GetSolidMode() ); AddParam( theParams, "Precision", aCI.GetPrecision() ); AddParam( theParams, "Is ruled", aType == THRUSECTIONS_RULED ); break; default: return false; } return true; } IMPLEMENT_STANDARD_HANDLE (GEOMImpl_ThruSectionsDriver,GEOM_BaseDriver); IMPLEMENT_STANDARD_RTTIEXT (GEOMImpl_ThruSectionsDriver,GEOM_BaseDriver);