X-Git-Url: http://git.salome-platform.org/gitweb/?a=blobdiff_plain;f=src%2FHYDROData%2FHYDROData_CalculationCase.cxx;h=5c5760130d4124f270dfc528dd99a1e8612f68f8;hb=2f217128f8d34b2082de78d2af90bf243bf9e8b1;hp=220790056cd917e0ab50f1075a26aa4687d75218;hpb=1627f32b3e7df56354aeac06c12caa31ce8c6405;p=modules%2Fhydro.git diff --git a/src/HYDROData/HYDROData_CalculationCase.cxx b/src/HYDROData/HYDROData_CalculationCase.cxx index 22079005..5c576013 100644 --- a/src/HYDROData/HYDROData_CalculationCase.cxx +++ b/src/HYDROData/HYDROData_CalculationCase.cxx @@ -2,17 +2,19 @@ #include "HYDROData_CalculationCase.h" #include "HYDROData_ArtificialObject.h" -#include "HYDROData_Bathymetry.h" +#include "HYDROData_IAltitudeObject.h" #include "HYDROData_Document.h" -#include "HYDROData_EdgesGroup.h" +#include "HYDROData_ShapesGroup.h" #include "HYDROData_Iterator.h" #include "HYDROData_NaturalObject.h" #include "HYDROData_PolylineXY.h" -#include "HYDROData_SplitToZonesTool.h" -#include "HYDROData_SplittedEdgesGroup.h" +#include "HYDROData_SplittedShapesGroup.h" #include "HYDROData_Region.h" #include "HYDROData_Tool.h" -#include "HYDROData_Zone.h" + +#include + +#include #include #include @@ -22,17 +24,36 @@ #include #include +#include + #include #include #include #include #include +#include - +//#define DEB_CALCULATION 1 +#ifdef DEB_CALCULATION +#include +#include +#endif #define CALCULATION_REGIONS_PREF GetName() + "_Reg" #define CALCULATION_ZONES_PREF GetName() + "_Zone" +#define CALCULATION_GROUPS_PREF GetName() + "_" +//#define DEB_CLASS2D 1 +#ifdef DEB_CLASS2D +#include +#endif + +#define EXPORT_NAME "HYDRO_" + GetName() + +#include +#include + + + -#define PYTHON_CALCULATION_ID "KIND_CALCULATION" IMPLEMENT_STANDARD_HANDLE(HYDROData_CalculationCase, HYDROData_Entity) IMPLEMENT_STANDARD_RTTIEXT(HYDROData_CalculationCase, HYDROData_Entity) @@ -61,12 +82,7 @@ void HYDROData_CalculationCase::SetName( const QString& theName ) if ( aRegion.IsNull() ) continue; - QString aRegionName = aRegion->GetName(); - if ( aRegionName.startsWith( anOldCaseName ) ) - { - aRegionName.replace( anOldCaseName, theName ); - aRegion->SetName( aRegionName ); - } + HYDROData_Tool::UpdateChildObjectName( anOldCaseName, theName, aRegion ); HYDROData_SequenceOfObjects aZones = aRegion->GetZones(); HYDROData_SequenceOfObjects::Iterator anIter( aZones ); @@ -77,14 +93,22 @@ void HYDROData_CalculationCase::SetName( const QString& theName ) if ( aRegZone.IsNull() ) continue; - QString aRegionZoneName = aRegZone->GetName(); - if ( aRegionZoneName.startsWith( anOldCaseName ) ) - { - aRegionZoneName.replace( anOldCaseName, theName ); - aRegZone->SetName( aRegionZoneName ); - } + HYDROData_Tool::UpdateChildObjectName( anOldCaseName, theName, aRegZone ); } } + + HYDROData_SequenceOfObjects aGroups = GetSplittedGroups(); + + anIter.Init( aGroups ); + for ( ; anIter.More(); anIter.Next() ) + { + Handle(HYDROData_SplittedShapesGroup) aGroup = + Handle(HYDROData_SplittedShapesGroup)::DownCast( anIter.Value() ); + if ( aGroup.IsNull() ) + continue; + + HYDROData_Tool::UpdateChildObjectName( anOldCaseName, theName, aGroup ); + } } HYDROData_Entity::SetName( theName ); @@ -92,20 +116,13 @@ void HYDROData_CalculationCase::SetName( const QString& theName ) QStringList HYDROData_CalculationCase::DumpToPython( MapOfTreatedObjects& theTreatedObjects ) const { - QStringList aResList; + QStringList aResList = dumpObjectCreation( theTreatedObjects ); - Handle(HYDROData_Document) aDocument = HYDROData_Document::Document( myLab ); - if ( aDocument.IsNull() ) - return aResList; - - QString aDocName = aDocument->GetDocPyName(); - QString aCalculName = GetName(); - - aResList << QString( "%1 = %2.CreateObject( %3 );" ) - .arg( aCalculName ).arg( aDocName ).arg( PYTHON_CALCULATION_ID ); - aResList << QString( "%1.SetName( \"%2\" );" ) - .arg( aCalculName ).arg( aCalculName ); - aResList << QString( "" ); + QString aCalculName = GetObjPyName(); + + AssignmentMode aMode = GetAssignmentMode(); + QString aModeStr = aMode==MANUAL ? "HYDROData_CalculationCase.MANUAL" : "HYDROData_CalculationCase.AUTOMATIC"; + aResList << QString( "%0.SetAssignmentMode( %1 )" ).arg( aCalculName ).arg( aModeStr ); HYDROData_SequenceOfObjects aGeomObjects = GetGeometryObjects(); HYDROData_SequenceOfObjects::Iterator anIter( aGeomObjects ); @@ -113,28 +130,74 @@ QStringList HYDROData_CalculationCase::DumpToPython( MapOfTreatedObjects& theTre { Handle(HYDROData_Object) aRefGeomObj = Handle(HYDROData_Object)::DownCast( anIter.Value() ); - if ( !aRefGeomObj.IsNull() ) - setPythonReferenceObject( theTreatedObjects, aResList, aRefGeomObj, "AddGeometryObject" ); + setPythonReferenceObject( theTreatedObjects, aResList, aRefGeomObj, "AddGeometryObject" ); } aResList << QString( "" ); - aResList << QString( "%1.SplitGeometryObjects();" ).arg( aCalculName ); - aResList << QString( "" ); + QString aGroupName = HYDROData_Tool::GenerateNameForPython( theTreatedObjects, "case_geom_group" ); - // Now we restore the regions and zones order - HYDROData_SequenceOfObjects aRegions = GetRegions(); - anIter.Init( aRegions ); + HYDROData_SequenceOfObjects aGeomGroups = GetGeometryGroups(); + anIter.Init( aGeomGroups ); for ( ; anIter.More(); anIter.Next() ) { - Handle(HYDROData_Region) aRegion = - Handle(HYDROData_Region)::DownCast( anIter.Value() ); - if ( aRegion.IsNull() ) + Handle(HYDROData_ShapesGroup) aGeomGroup = + Handle(HYDROData_ShapesGroup)::DownCast( anIter.Value() ); + if ( aGeomGroup.IsNull() ) continue; - QString aRegionName = aRegion->GetName(); - // TODO + Handle(HYDROData_Object) aFatherGeom = + Handle(HYDROData_Object)::DownCast( aGeomGroup->GetFatherObject() ); + if ( aFatherGeom.IsNull() ) + continue; + + int aGroupId = aFatherGeom->GetGroupId( aGeomGroup ); + aResList << QString( "%1 = %2.GetGroup( %3 );" ) + .arg( aGroupName ).arg( aFatherGeom->GetObjPyName() ).arg( aGroupId ); + + aResList << QString( "%1.AddGeometryGroup( %2 );" ).arg( aCalculName ).arg( aGroupName ); } + aResList << QString( "" ); + + Handle(HYDROData_PolylineXY) aBoundaryPolyline = GetBoundaryPolyline(); + setPythonReferenceObject( theTreatedObjects, aResList, aBoundaryPolyline, "SetBoundaryPolyline" ); + aResList << QString( "" ); + + if( aMode==AUTOMATIC ) + DumpRulesToPython( aCalculName, aResList ); + + aResList << QString( "" ); + aResList << QString( "%1.Update();" ).arg( aCalculName ); + aResList << QString( "" ); + if( aMode==MANUAL ) + { + // Now we restore the regions and zones order + HYDROData_SequenceOfObjects aRegions = GetRegions(); + anIter.Init( aRegions ); + for ( ; anIter.More(); anIter.Next() ) + { + Handle(HYDROData_Region) aRegion = + Handle(HYDROData_Region)::DownCast( anIter.Value() ); + if ( aRegion.IsNull() ) + continue; + + QString aRegionName = aRegion->GetName(); + + HYDROData_SequenceOfObjects aZones = aRegion->GetZones(); + HYDROData_SequenceOfObjects::Iterator aZonesIter( aZones ); + for ( ; aZonesIter.More(); aZonesIter.Next() ) + { + Handle(HYDROData_Zone) aRegZone = + Handle(HYDROData_Zone)::DownCast( aZonesIter.Value() ); + if ( aRegZone.IsNull() ) + continue; + + // TODO + } + } + } + + aResList << QString( "" ); return aResList; } @@ -155,6 +218,7 @@ HYDROData_SequenceOfObjects HYDROData_CalculationCase::GetAllReferenceObjects() void HYDROData_CalculationCase::Update() { HYDROData_Entity::Update(); + SetWarning(); // At first we remove previously created objects RemoveRegions(); @@ -171,72 +235,165 @@ void HYDROData_CalculationCase::Update() HYDROData_SequenceOfObjects aGeomGroups = GetGeometryGroups(); - HYDROData_SplitToZonesTool::SplitDataList aSplitedObjects = + HYDROData_SplitToZonesTool::SplitDataList aSplitObjects = HYDROData_SplitToZonesTool::Split( aGeomObjects, aGeomGroups, aBoundaryPolyline ); - if ( aSplitedObjects.isEmpty() ) + if ( aSplitObjects.isEmpty() ) return; - QString aRegsPref = CALCULATION_REGIONS_PREF; - QString aZonesPref = CALCULATION_ZONES_PREF; - - QMap aSplittedEdgesGroupsMap; + HYDROData_SplitToZonesTool::SplitDataList aZonesList, anEdgesList; - // Create result regions for case, by default one zone for one region - HYDROData_SplitToZonesTool::SplitDataListIterator anIter( aSplitedObjects ); + HYDROData_SplitToZonesTool::SplitDataListIterator anIter( aSplitObjects ); while( anIter.hasNext() ) { const HYDROData_SplitToZonesTool::SplitData& aSplitData = anIter.next(); - if ( aSplitData.Type == HYDROData_SplitToZonesTool::SplitData::Data_Zone ) - { - // Create new region - Handle(HYDROData_Region) aRegion = addNewRegion(); + aZonesList.append( aSplitData ); + else if ( aSplitData.Type == HYDROData_SplitToZonesTool::SplitData::Data_Edge ) + anEdgesList.append( aSplitData ); + } - QString aRegionName = HYDROData_Tool::GenerateObjectName( aDocument, aRegsPref ); - aRegion->SetName( aRegionName ); + switch( GetAssignmentMode() ) + { + case MANUAL: + CreateRegionsDef( aDocument, aZonesList ); + break; + case AUTOMATIC: + CreateRegionsAuto( aDocument, aZonesList ); + break; + } + CreateEdgeGroupsDef( aDocument, anEdgesList ); +} - // Add the zone for region - Handle(HYDROData_Zone) aRegionZone = aRegion->addNewZone(); +void HYDROData_CalculationCase::CreateRegionsDef( const Handle(HYDROData_Document)& theDoc, + const HYDROData_SplitToZonesTool::SplitDataList& theZones ) +{ + // Create result regions for case, by default one zone for one region + QString aRegsPref = CALCULATION_REGIONS_PREF; + QString aZonesPref = CALCULATION_ZONES_PREF; - QString aZoneName = HYDROData_Tool::GenerateObjectName( aDocument, aZonesPref ); - aRegionZone->SetName( aZoneName ); + HYDROData_SplitToZonesTool::SplitDataListIterator anIter( theZones ); + while( anIter.hasNext() ) + { + const HYDROData_SplitToZonesTool::SplitData& aSplitData = anIter.next(); + // Create new region + Handle(HYDROData_Region) aRegion = addNewRegion( theDoc, aRegsPref ); - aRegionZone->SetShape( aSplitData.Face() ); + // Add the zone for region + Handle(HYDROData_Zone) aRegionZone = aRegion->addNewZone( theDoc, aZonesPref, aSplitData.Face(), aSplitData.ObjectNames ); + } +} - // Add the reference object for zone - for ( int i = 0, n = aSplitData.ObjectNames.length(); i < n; ++i ) - { - const QString& anObjName = aSplitData.ObjectNames.at( i ); - - Handle(HYDROData_Object) aRefObject = Handle(HYDROData_Object)::DownCast( - HYDROData_Tool::FindObjectByName( aDocument, anObjName ) ); - if ( aRefObject.IsNull() ) - continue; +void HYDROData_CalculationCase::CreateRegionsAuto( const Handle(HYDROData_Document)& theDoc, + const HYDROData_SplitToZonesTool::SplitDataList& theZones ) +{ + QMap aRegionsMap; //object name to region + QMap aRegionNameToObjNameMap; + QString aZonesPref = CALCULATION_ZONES_PREF; + HYDROData_PriorityQueue aPr( this ); - aRegionZone->AddGeometryObject( aRefObject ); - } + // 1. First we create a default region for each object included into the calculation case + HYDROData_SequenceOfObjects aGeomObjects = GetGeometryObjects(); + for( int i=aGeomObjects.Lower(), n=aGeomObjects.Upper(); i<=n; i++ ) + { + Handle(HYDROData_Object) anObj = Handle(HYDROData_Object)::DownCast( aGeomObjects.Value( i ) ); + if( anObj.IsNull() ) + continue; + QString anObjName = anObj->GetName(); + QString aRegName = anObjName + "_reg"; + Handle(HYDROData_Region) aRegion = addNewRegion( theDoc, aRegName, false ); + aRegionsMap.insert( anObjName, aRegion ); + aRegionNameToObjNameMap.insert( aRegName, anObjName ); + } + + // 2. Now for each zone it is necessary to determine the most priority object + // and assign to zone to corresponding region + HYDROData_SplitToZonesTool::SplitDataListIterator anIter( theZones ); + while( anIter.hasNext() ) + { + const HYDROData_SplitToZonesTool::SplitData& aSplitData = anIter.next(); + HYDROData_Zone::MergeAltitudesType aMergeType; + Handle(HYDROData_Object) aRegObj = aPr.GetMostPriorityObject( aSplitData.ObjectNames, aMergeType ); + if( aRegObj.IsNull() ) + continue; + Handle(HYDROData_Region) aRegion = aRegionsMap[aRegObj->GetName()]; + if( aRegion.IsNull() ) + continue; + Handle(HYDROData_Zone) aRegionZone = aRegion->addNewZone( theDoc, aZonesPref, aSplitData.Face(), aSplitData.ObjectNames ); + + if( aSplitData.ObjectNames.count() > 1 && aMergeType==HYDROData_Zone::Merge_UNKNOWN ) + { + qDebug( "Error in algorithm: unresolved conflicts" ); } - else if ( aSplitData.Type == HYDROData_SplitToZonesTool::SplitData::Data_Edge ) + + switch( aMergeType ) { - // Create new edges group - if ( aSplitData.ObjectNames.isEmpty() || - aSplitData.Shape.IsNull() || aSplitData.Shape.ShapeType() != TopAbs_EDGE ) - continue; + case HYDROData_Zone::Merge_ZMIN: + case HYDROData_Zone::Merge_ZMAX: + aRegionZone->SetMergeType( aMergeType ); + break; + case HYDROData_Zone::Merge_Object: + aRegionZone->SetMergeType( aMergeType ); + aRegionZone->RemoveMergeAltitude(); + aRegionZone->SetMergeAltitude( aRegObj->GetAltitudeObject() ); + break; + } + } - QString anObjName = aSplitData.ObjectNames.first(); - if ( anObjName.isEmpty() ) - continue; + QStringList anObjectsWithEmptyRegions; + QMap::const_iterator + anIt = aRegionsMap.begin(), aLast = aRegionsMap.end(); + for( ; anIt!=aLast; anIt++ ) + { + Handle(HYDROData_Region) aRegion = anIt.value(); + if( aRegion->GetZones().IsEmpty() ) + { + QString aRegName = aRegion->GetName(); + QString anObjName = aRegionNameToObjNameMap[aRegName]; + anObjectsWithEmptyRegions.append( anObjName ); + } + } + + if( !anObjectsWithEmptyRegions.empty() ) + { + QString aData = anObjectsWithEmptyRegions.join( ", " ); + SetWarning( WARN_EMPTY_REGIONS, aData ); + } +} - if ( !aSplittedEdgesGroupsMap.contains( anObjName ) ) - aSplittedEdgesGroupsMap.insert( anObjName, addNewSplittedGroup() ); +void HYDROData_CalculationCase::CreateEdgeGroupsDef( const Handle(HYDROData_Document)& theDoc, + const HYDROData_SplitToZonesTool::SplitDataList& theEdges ) +{ + QMap aSplittedEdgesGroupsMap; - Handle(HYDROData_SplittedEdgesGroup) aSplittedGroup = aSplittedEdgesGroupsMap[ anObjName ]; - if ( aSplittedGroup.IsNull() ) - continue; + HYDROData_SplitToZonesTool::SplitDataListIterator anIter( theEdges ); + while( anIter.hasNext() ) + { + const HYDROData_SplitToZonesTool::SplitData& aSplitData = anIter.next(); + // Create new edges group + if ( aSplitData.ObjectNames.isEmpty() || aSplitData.Shape.IsNull() ) + continue; - TopoDS_Edge anEdge = TopoDS::Edge( aSplitData.Shape ); - aSplittedGroup->AddEdge( anEdge ); + QString anObjName = aSplitData.ObjectNames.first(); + if ( anObjName.isEmpty() ) + continue; +#ifdef DEB_CALCULATION + QString aStr = aSplitData.ObjectNames.join(" "); + cout << " CCase: Names = "<SetName( aRegionName ); + return aNewRegion; } -Handle(HYDROData_SplittedEdgesGroup) HYDROData_CalculationCase::addNewSplittedGroup() +Handle(HYDROData_SplittedShapesGroup) HYDROData_CalculationCase::addNewSplittedGroup( const QString& theName ) { TDF_Label aNewLab = myLab.FindChild( DataTag_SplittedGroups ).NewChild(); - Handle(HYDROData_SplittedEdgesGroup) aNewGroup = - Handle(HYDROData_SplittedEdgesGroup)::DownCast( + Handle(HYDROData_SplittedShapesGroup) aNewGroup = + Handle(HYDROData_SplittedShapesGroup)::DownCast( HYDROData_Iterator::CreateObject( aNewLab, KIND_SPLITTED_GROUP ) ); AddReferenceObject( aNewGroup, DataTag_SplittedGroups ); + aNewGroup->SetName( theName ); + return aNewGroup; } +QString HYDROData_CalculationCase::Export( int theStudyId ) const +{ + int argc = 0; + char** argv = 0; + CORBA::ORB_var anORB = CORBA::ORB_init( argc, argv, "omniORB4"/*CORBA::ORB_ID*/ ); + SALOME_NamingService aNameService( anORB ); + SALOME_LifeCycleCORBA aLCC( &aNameService ); + Engines::EngineComponent_var aComponent = aLCC.FindOrLoad_Component( "FactoryServer", "GEOM" ); + GEOM::GEOM_Gen_var aGEOMEngine = GEOM::GEOM_Gen::_narrow( aComponent ); + + CORBA::Object_var aSMObject = aNameService.Resolve("/myStudyManager"); + SALOMEDS::StudyManager_var aStudyManager = SALOMEDS::StudyManager::_narrow(aSMObject); + SALOMEDS::Study_var aDSStudy = aStudyManager->GetStudyByID( theStudyId ); + + QString aGeomObjEntry; + bool isOK = Export( aGEOMEngine, aDSStudy, aGeomObjEntry ); + return isOK ? aGeomObjEntry : QString(); +} + +bool HYDROData_CalculationCase::Export( GEOM::GEOM_Gen_var theGeomEngine, + SALOMEDS::Study_ptr theStudy, + QString& theGeomObjEntry ) const +{ + HYDROData_ShapesGroup::SeqOfGroupsDefs aSeqOfGroupsDefs; + + // Get groups definitions + HYDROData_SequenceOfObjects aSplittedGroups = GetSplittedGroups(); + + HYDROData_SequenceOfObjects::Iterator anIter( aSplittedGroups ); + for ( ; anIter.More(); anIter.Next() ) + { + // Get shapes group + Handle(HYDROData_ShapesGroup) aGroup = + Handle(HYDROData_ShapesGroup)::DownCast( anIter.Value() ); + if ( aGroup.IsNull() ) + continue; + + HYDROData_ShapesGroup::GroupDefinition aGroupDef; + + aGroupDef.Name = aGroup->GetName().toLatin1().constData(); + aGroup->GetShapes( aGroupDef.Shapes ); + + aSeqOfGroupsDefs.Append( aGroupDef ); + } + + // Get faces + TopTools_ListOfShape aFaces; + HYDROData_SequenceOfObjects aCaseRegions = GetRegions(); + HYDROData_SequenceOfObjects::Iterator aRegionIter( aCaseRegions ); + for ( ; aRegionIter.More(); aRegionIter.Next() ) + { + Handle(HYDROData_Region) aRegion = + Handle(HYDROData_Region)::DownCast( aRegionIter.Value() ); + if( aRegion.IsNull() ) + continue; + + TopoDS_Shape aRegionShape = aRegion->GetShape( &aSeqOfGroupsDefs ); + aFaces.Append( aRegionShape ); + } + + return Export( theGeomEngine, theStudy, aFaces, aSeqOfGroupsDefs, theGeomObjEntry ); +} + +bool HYDROData_CalculationCase::Export( GEOM::GEOM_Gen_var theGeomEngine, + SALOMEDS::Study_ptr theStudy, + const TopTools_ListOfShape& theFaces, + const HYDROData_ShapesGroup::SeqOfGroupsDefs& theGroupsDefs, + QString& theGeomObjEntry ) const +{ + // Sew faces + BRepBuilderAPI_Sewing aSewing( Precision::Confusion() * 10.0 ); + aSewing.SetNonManifoldMode( Standard_False ); +#ifdef DEB_CALCULATION + TCollection_AsciiString aNam("Sh_"); + int i=1; +#endif + TopTools_ListIteratorOfListOfShape aFaceIter( theFaces ); + for ( ; aFaceIter.More(); aFaceIter.Next() ) + { + TopoDS_Shape aShape = aFaceIter.Value(); + if ( aShape.IsNull() ) + continue; + if ( aShape.ShapeType() == TopAbs_FACE ) + { + aSewing.Add( aShape ); +#ifdef DEB_CALCULATION + TCollection_AsciiString aName = aNam + ++i + ".brep"; + BRepTools::Write(aShape ,aName.ToCString()); +#endif + } + else + { +#ifdef DEB_CALCULATION + int j = 1; +#endif + TopExp_Explorer anExp( aShape, TopAbs_FACE ); + for (; anExp.More(); anExp.Next() ) { + aSewing.Add( anExp.Current() ); +#ifdef DEB_CALCULATION + + TCollection_AsciiString aName = aNam + i + "_" + ++j + ".brep"; + BRepTools::Write(anExp.Current() ,aName.ToCString()); +#endif + } + } + } // faces iterator + + aSewing.Perform(); + TopoDS_Shape aSewedShape = aSewing.SewedShape(); + + // If the sewed shape is empty - return false + if ( aSewedShape.IsNull() || !TopoDS_Iterator( aSewedShape ).More() ) + return false; + +#ifdef DEB_CALCULATION + BRepTools::Write(aSewedShape ,"Sew.brep"); +#endif + // Publish the sewed shape + QString aName = EXPORT_NAME; + GEOM::GEOM_Object_ptr aMainShape = + publishShapeInGEOM( theGeomEngine, theStudy, aSewedShape, aName, theGeomObjEntry ); + + if ( aMainShape->_is_nil() ) + return false; + + if ( theGroupsDefs.IsEmpty() ) + return true; + + // Create groups + TopTools_IndexedMapOfShape aMapOfSubShapes; + TopExp::MapShapes( aSewedShape, aMapOfSubShapes ); + + NCollection_DataMap< TCollection_AsciiString, NCollection_Sequence > aGroupsData; + + for ( int aGrId = 1, nbGroups = theGroupsDefs.Length(); aGrId <= nbGroups; ++aGrId ) + { + const HYDROData_ShapesGroup::GroupDefinition& aGroupDef = theGroupsDefs.Value( aGrId ); + + NCollection_Sequence aGroupIndexes; + for( int i = 1, n = aGroupDef.Shapes.Length(); i <= n; i++ ) + { + const TopoDS_Shape& aShape = aGroupDef.Shapes.Value( i ); +#ifdef DEB_CALCULATION + cout << "\nOld shape(" << i << ") = " << aShape.TShape() <GetIGroupOperations( theStudy->StudyId() ); + + NCollection_DataMap< TCollection_AsciiString, NCollection_Sequence >::Iterator aMapIt( aGroupsData ); + for ( ; aMapIt.More(); aMapIt.Next() ) + { + const TCollection_AsciiString& aGroupName = aMapIt.Key(); + const NCollection_Sequence& aGroupIndexes = aMapIt.Value(); + + GEOM::GEOM_Object_var aGeomGroup = aGroupOp->CreateGroup( aMainShape, TopAbs_EDGE ); + if ( CORBA::is_nil( aGeomGroup ) || !aGroupOp->IsDone() ) + continue; + + GEOM::ListOfLong_var aGeomIndexes = new GEOM::ListOfLong; + aGeomIndexes->length( aGroupIndexes.Length() ); + + for( int i = 1, n = aGroupIndexes.Length(); i <= n; i++ ) + aGeomIndexes[ i - 1 ] = aGroupIndexes.Value( i ); + + aGroupOp->UnionIDs( aGeomGroup, aGeomIndexes ); + if ( aGroupOp->IsDone() ) + { + SALOMEDS::SObject_var aGroupSO = + theGeomEngine->AddInStudy( theStudy, aGeomGroup, aGroupName.ToCString(), aMainShape ); + } + } + } + + return true; +} + +GEOM::GEOM_Object_ptr HYDROData_CalculationCase::publishShapeInGEOM( + GEOM::GEOM_Gen_var theGeomEngine, SALOMEDS::Study_ptr theStudy, + const TopoDS_Shape& theShape, const QString& theName, + QString& theGeomObjEntry ) const +{ + theGeomObjEntry = ""; + GEOM::GEOM_Object_var aGeomObj; + + if ( theGeomEngine->_is_nil() || theStudy->_is_nil() || + theShape.IsNull() ) { + return aGeomObj._retn(); + } + + std::ostringstream aStreamShape; + // Write TopoDS_Shape in ASCII format to the stream + BRepTools::Write( theShape, aStreamShape ); + // Returns the number of bytes that have been stored in the stream's buffer. + int aSize = aStreamShape.str().size(); + // Allocate octect buffer of required size + CORBA::Octet* anOctetBuf = SALOMEDS::TMPFile::allocbuf( aSize ); + // Copy ostrstream content to the octect buffer + memcpy( anOctetBuf, aStreamShape.str().c_str(), aSize ); + // Create TMPFile + SALOMEDS::TMPFile_var aSeqFile = new SALOMEDS::TMPFile( aSize, aSize, anOctetBuf, 1 ); + + // Restore shape from the stream and get the GEOM object + GEOM::GEOM_IInsertOperations_var anInsOp = theGeomEngine->GetIInsertOperations( theStudy->StudyId() ); + aGeomObj = anInsOp->RestoreShape( aSeqFile ); + + // Puplish the GEOM object + if ( !aGeomObj->_is_nil() ) { + QString aName = GEOMBase::GetDefaultName( theName ); + + SALOMEDS::SObject_var aResultSO = + theGeomEngine->PublishInStudy( theStudy, SALOMEDS::SObject::_nil(), + aGeomObj, qPrintable( aName ) ); + if ( aResultSO->_is_nil() ) { + aGeomObj = GEOM::GEOM_Object::_nil(); + } + else + theGeomObjEntry = aResultSO->GetID(); + } + + return aGeomObj._retn(); +} + +void HYDROData_CalculationCase::ClearRules( const bool theIsSetToUpdate ) +{ + TDF_Label aRulesLab = myLab.FindChild( DataTag_CustomRules ); + HYDROData_PriorityQueue::ClearRules( aRulesLab ); + + // Indicate model of the need to update splitting + if ( theIsSetToUpdate ) { + SetToUpdate( true ); + } +} + +void HYDROData_CalculationCase::AddRule( const Handle(HYDROData_Object)& theObject1, + HYDROData_PriorityType thePriority, + const Handle(HYDROData_Object)& theObject2, + HYDROData_Zone::MergeAltitudesType theMergeType ) +{ + TDF_Label aRulesLab = myLab.FindChild( DataTag_CustomRules ); + HYDROData_PriorityQueue::AddRule( aRulesLab, theObject1, thePriority, theObject2, theMergeType ); + + // Indicate model of the need to update splitting + SetToUpdate( true ); +} + +QString HYDROData_CalculationCase::DumpRules() const +{ + TDF_Label aRulesLab = myLab.FindChild( DataTag_CustomRules ); + return HYDROData_PriorityQueue::DumpRules( aRulesLab ); +} + +void HYDROData_CalculationCase::SetAssignmentMode( AssignmentMode theMode ) +{ + TDF_Label aModeLab = myLab.FindChild( DataTag_AssignmentMode ); + TDataStd_Integer::Set( aModeLab, ( int ) theMode ); + + // Indicate model of the need to update splitting + SetToUpdate( true ); +} + +HYDROData_CalculationCase::AssignmentMode HYDROData_CalculationCase::GetAssignmentMode() const +{ + Handle(TDataStd_Integer) aModeAttr; + bool isOK = myLab.FindChild( DataTag_AssignmentMode ).FindAttribute( TDataStd_Integer::GetID(), aModeAttr ); + if( isOK ) + return ( AssignmentMode ) aModeAttr->Get(); + else + return MANUAL; +} + +void HYDROData_CalculationCase::DumpRulesToPython( const QString& theCalcCaseName, + QStringList& theScript ) const +{ + TDF_Label aRulesLab = myLab.FindChild( DataTag_CustomRules ); + HYDROData_PriorityQueue::DumpRulesToPython( aRulesLab, theCalcCaseName, theScript ); +} + +HYDROData_Warning HYDROData_CalculationCase::GetLastWarning() const +{ + return myLastWarning; +} + +void HYDROData_CalculationCase::SetWarning( HYDROData_WarningType theType, const QString& theData ) +{ + myLastWarning.Type = theType; + myLastWarning.Data = theData; +} + +bool HYDROData_CalculationCase::GetRule( int theIndex, + Handle(HYDROData_Object)& theObject1, + HYDROData_PriorityType& thePriority, + Handle(HYDROData_Object)& theObject2, + HYDROData_Zone::MergeAltitudesType& theMergeType ) const +{ + TDF_Label aRulesLab = myLab.FindChild( DataTag_CustomRules ); + return HYDROData_PriorityQueue::GetRule( aRulesLab, theIndex, + theObject1, thePriority, theObject2, theMergeType ); +}