X-Git-Url: http://git.salome-platform.org/gitweb/?a=blobdiff_plain;f=src%2FHYDROData%2FHYDROData_CalculationCase.cxx;h=f1b7a564105e49b32db3b81f6ee22fb0ee3b2282;hb=58bb6b7459bebeeb089c9ed486c4683a8bae7288;hp=1bd1057d6dd42ccc548a86640b9901e5ff4e2f9b;hpb=f7598de0de5abad3f557c8b2c52d0e0163a0951c;p=modules%2Fhydro.git diff --git a/src/HYDROData/HYDROData_CalculationCase.cxx b/src/HYDROData/HYDROData_CalculationCase.cxx index 1bd1057d..f1b7a564 100644 --- a/src/HYDROData/HYDROData_CalculationCase.cxx +++ b/src/HYDROData/HYDROData_CalculationCase.cxx @@ -17,7 +17,6 @@ // #include "HYDROData_CalculationCase.h" - #include "HYDROData_ArtificialObject.h" #include "HYDROData_IAltitudeObject.h" #include "HYDROData_Document.h" @@ -26,13 +25,23 @@ #include "HYDROData_NaturalObject.h" #include "HYDROData_PolylineXY.h" #include "HYDROData_StricklerTable.h" -#include "HYDROData_LandCover.h" -#include "HYDROData_SplittedShapesGroup.h" +#include "HYDROData_LandCoverMap.h" +#include "HYDROData_SplitShapesGroup.h" #include "HYDROData_Region.h" #include "HYDROData_Tool.h" #include "HYDROData_GeomTool.h" +#ifdef WIN32 + #pragma warning ( disable: 4251 ) +#endif + +#ifndef LIGHT_MODE #include +#endif + +#ifdef WIN32 + #pragma warning ( default: 4251 ) +#endif #include @@ -60,7 +69,6 @@ #endif #define CALCULATION_REGIONS_PREF GetName() + "_Reg" #define CALCULATION_ZONES_PREF GetName() + "_Zone" -#define CALCULATION_LANDCOVER_ZONES_PREF GetName() + "_LandCoverZone" #define CALCULATION_GROUPS_PREF GetName() + "_" //#define DEB_CLASS2D 1 #ifdef DEB_CLASS2D @@ -69,11 +77,18 @@ #define EXPORT_NAME "HYDRO_" + GetName() -IMPLEMENT_STANDARD_HANDLE(HYDROData_CalculationCase, HYDROData_Entity) +#ifndef LIGHT_MODE +#include +#include +#endif + +#define _DEVDEBUG_ +#include "HYDRO_trace.hxx" + IMPLEMENT_STANDARD_RTTIEXT(HYDROData_CalculationCase, HYDROData_Entity) HYDROData_CalculationCase::HYDROData_CalculationCase() -: HYDROData_Entity() +: HYDROData_Entity( Geom_2d_and_groups ) { } @@ -87,18 +102,16 @@ void HYDROData_CalculationCase::SetName( const QString& theName ) if ( anOldCaseName != theName ) { // Update names of regions and its zones - UpdateRegionsNames( GetRegions( false ), anOldCaseName, theName ); - // Update names of land cover regions and its zones - UpdateRegionsNames( GetRegions( true ), anOldCaseName, theName ); + UpdateRegionsNames( GetRegions(), anOldCaseName, theName ); - HYDROData_SequenceOfObjects aGroups = GetSplittedGroups(); + HYDROData_SequenceOfObjects aGroups = GetSplitGroups(); HYDROData_SequenceOfObjects::Iterator anIter; anIter.Init( aGroups ); for ( ; anIter.More(); anIter.Next() ) { - Handle(HYDROData_SplittedShapesGroup) aGroup = - Handle(HYDROData_SplittedShapesGroup)::DownCast( anIter.Value() ); + Handle(HYDROData_SplitShapesGroup) aGroup = + Handle(HYDROData_SplitShapesGroup)::DownCast( anIter.Value() ); if ( aGroup.IsNull() ) continue; @@ -109,14 +122,15 @@ void HYDROData_CalculationCase::SetName( const QString& theName ) HYDROData_Entity::SetName( theName ); } -QStringList HYDROData_CalculationCase::DumpToPython( MapOfTreatedObjects& theTreatedObjects ) const +QStringList HYDROData_CalculationCase::DumpToPython( const QString& thePyScriptPath, + MapOfTreatedObjects& theTreatedObjects ) const { QStringList aResList = dumpObjectCreation( theTreatedObjects ); aResList.prepend( "# Calculation case" ); QString aCalculName = GetObjPyName(); - AssignmentMode aMode = GetAssignmentMode(); + AssignmentMode aMode = GetAssignmentMode(); QString aModeStr = aMode==MANUAL ? "HYDROData_CalculationCase.MANUAL" : "HYDROData_CalculationCase.AUTOMATIC"; aResList << QString( "%0.SetAssignmentMode( %1 )" ).arg( aCalculName ).arg( aModeStr ); @@ -126,7 +140,7 @@ QStringList HYDROData_CalculationCase::DumpToPython( MapOfTreatedObjects& theTre { Handle(HYDROData_Object) aRefGeomObj = Handle(HYDROData_Object)::DownCast( anIter.Value() ); - setPythonReferenceObject( theTreatedObjects, aResList, aRefGeomObj, "AddGeometryObject" ); + setPythonReferenceObject( thePyScriptPath, theTreatedObjects, aResList, aRefGeomObj, "AddGeometryObject" ); } aResList << QString( "" ); @@ -147,29 +161,33 @@ QStringList HYDROData_CalculationCase::DumpToPython( MapOfTreatedObjects& theTre continue; int aGroupId = aFatherGeom->GetGroupId( aGeomGroup ); - aResList << QString( "%1 = %2.GetGroup( %3 );" ) + aResList << QString( "%1 = %2.GetGroup( %3 )" ) .arg( aGroupName ).arg( aFatherGeom->GetObjPyName() ).arg( aGroupId ); - aResList << QString( "%1.AddGeometryGroup( %2 );" ).arg( aCalculName ).arg( aGroupName ); + aResList << QString( "%1.AddGeometryGroup( %2 )" ).arg( aCalculName ).arg( aGroupName ); } Handle(HYDROData_PolylineXY) aBoundaryPolyline = GetBoundaryPolyline(); - setPythonReferenceObject( theTreatedObjects, aResList, aBoundaryPolyline, "SetBoundaryPolyline" ); + setPythonReferenceObject( thePyScriptPath, theTreatedObjects, aResList, aBoundaryPolyline, "SetBoundaryPolyline" ); + + Handle(HYDROData_StricklerTable) aStricklerTable = GetStricklerTable(); + setPythonReferenceObject( thePyScriptPath, theTreatedObjects, aResList, aStricklerTable, "SetStricklerTable" ); + + Handle(HYDROData_LandCoverMap) aLandCoverMap = GetLandCoverMap(); + setPythonReferenceObject( thePyScriptPath, theTreatedObjects, aResList, aLandCoverMap, "SetLandCoverMap" ); if( aMode==AUTOMATIC ) DumpRulesToPython( aCalculName, aResList ); aResList << QString( "" ); aResList << "# Start the algorithm of the partition and assignment"; - aResList << QString( "%1.Update();" ).arg( aCalculName ); + aResList << QString( "%1.Update()" ).arg( aCalculName ); if( aMode==MANUAL ) { // Now we restore the // - regions and zones order - DumpRegionsToPython( aResList, theTreatedObjects, GetRegions( false ) ); - // - land cover regions and zones order - DumpRegionsToPython( aResList, theTreatedObjects, GetRegions( true ) ); + DumpRegionsToPython( aResList, thePyScriptPath, theTreatedObjects, GetRegions() ); } // Export calculation case @@ -185,11 +203,12 @@ QStringList HYDROData_CalculationCase::DumpToPython( MapOfTreatedObjects& theTre aResList << "import GEOM"; aResList << QString( "print \"Entry:\", %1" ).arg( anEntryVar ); QString aGeomShapeName = aCalculName + "_geom"; - aResList << QString( "%1 = salome.IDToObject( str( %2 ) )" ).arg( aGeomShapeName ).arg( anEntryVar ); - aResList << QString( "print \"Geom shape:\", %1" ).arg( aGeomShapeName ); - aResList << QString( "print \"Geom shape name:\", %1.GetName()" ).arg( aGeomShapeName ); + aResList << QString( "HYDRO_%1 = salome.IDToObject( str( %2 ) )" ).arg( GetName() ).arg( anEntryVar ); + aResList << QString( "print \"Geom shape:\", HYDRO_%1" ).arg( GetName() ); + aResList << QString( "print \"Geom shape name:\", HYDRO_%1.GetName()" ).arg( GetName() ); - DumpSampleMeshing( aResList, aStudyName, aGeomShapeName, aCalculName+"_mesh" ); + + //DumpSampleMeshing( aResList, aStudyName, aGeomShapeName, aCalculName+"_mesh" ); aResList << QString( "" ); return aResList; @@ -241,14 +260,13 @@ HYDROData_SequenceOfObjects HYDROData_CalculationCase::GetAllReferenceObjects() if ( !aBoundaryPolyline.IsNull() ) aResSeq.Append( aBoundaryPolyline ); + HYDROData_SequenceOfObjects aSeqOfGeomObjs = GetGeometryObjects(); + aResSeq.Append( aSeqOfGeomObjs ); + // Regions - HYDROData_SequenceOfObjects aSeqOfRegions = GetRegions( false ); + HYDROData_SequenceOfObjects aSeqOfRegions = GetRegions(); aResSeq.Append( aSeqOfRegions ); - // Land cover regions - HYDROData_SequenceOfObjects aSeqOfLandCoverRegions = GetRegions( true ); - aResSeq.Append( aSeqOfLandCoverRegions ); - return aResSeq; } @@ -258,9 +276,8 @@ void HYDROData_CalculationCase::Update() SetWarning(); // At first we remove previously created objects - RemoveRegions( false ); - RemoveRegions( true ); - RemoveSplittedGroups(); + RemoveRegions(); + RemoveSplitGroups(); Handle(HYDROData_Document) aDocument = HYDROData_Document::Document( myLab ); if ( aDocument.IsNull() ) @@ -270,69 +287,54 @@ void HYDROData_CalculationCase::Update() HYDROData_SplitToZonesTool::SplitDataList aZonesList, anEdgesList; Handle(HYDROData_PolylineXY) aBoundaryPolyline = GetBoundaryPolyline(); + + HYDROData_SequenceOfObjects InterPolys = GetInterPolyObjects(); + HYDROData_SequenceOfObjects aGeomObjects = GetGeometryObjects(); if ( !aGeomObjects.IsEmpty() ) { HYDROData_SequenceOfObjects aGeomGroups = GetGeometryGroups(); HYDROData_SplitToZonesTool::SplitDataList aSplitObjects = - HYDROData_SplitToZonesTool::Split( aGeomObjects, aGeomGroups, aBoundaryPolyline ); + HYDROData_SplitToZonesTool::Split( aGeomObjects, aGeomGroups, aBoundaryPolyline, InterPolys ); if ( !aSplitObjects.isEmpty() ) { HYDROData_SplitToZonesTool::SplitDataListIterator anIter( aSplitObjects ); while( anIter.hasNext() ) { const HYDROData_SplitToZonesTool::SplitData& aSplitData = anIter.next(); if ( aSplitData.Type == HYDROData_SplitToZonesTool::SplitData::Data_Zone ) aZonesList.append( aSplitData ); - else if ( aSplitData.Type == HYDROData_SplitToZonesTool::SplitData::Data_Edge ) + else if ( aSplitData.Type == HYDROData_SplitToZonesTool::SplitData::Data_Edge || + aSplitData.Type == HYDROData_SplitToZonesTool::SplitData::Data_IntEdge) anEdgesList.append( aSplitData ); } } } - // Split to land cover zones - HYDROData_SplitToZonesTool::SplitDataList aLandCoverZonesList; - - HYDROData_SequenceOfObjects aLandCovers = GetLandCovers(); - if ( !aLandCovers.IsEmpty() ) { - HYDROData_SplitToZonesTool::SplitDataList aSplitLandCoverObjects = - HYDROData_SplitToZonesTool::Split( aLandCovers ); - if ( !aSplitLandCoverObjects.isEmpty() ) { - HYDROData_SplitToZonesTool::SplitDataListIterator anIter( aSplitLandCoverObjects ); - while( anIter.hasNext() ) { - const HYDROData_SplitToZonesTool::SplitData& aSplitData = anIter.next(); - if ( aSplitData.Type == HYDROData_SplitToZonesTool::SplitData::Data_Zone ) - aLandCoverZonesList.append( aSplitData ); - } - } - } - switch( GetAssignmentMode() ) { case MANUAL: - CreateRegionsDef( aDocument, aZonesList, false ); - CreateRegionsDef( aDocument, aLandCoverZonesList, true ); + CreateRegionsDef( aDocument, aZonesList ); break; case AUTOMATIC: - CreateRegionsAuto( aDocument, aZonesList, false ); - CreateRegionsAuto( aDocument, aLandCoverZonesList, true ); + CreateRegionsAuto( aDocument, aZonesList ); break; } + CreateEdgeGroupsDef( aDocument, anEdgesList ); } void HYDROData_CalculationCase::CreateRegionsDef( const Handle(HYDROData_Document)& theDoc, - const HYDROData_SplitToZonesTool::SplitDataList& theZones, - const bool theLandCover ) + const HYDROData_SplitToZonesTool::SplitDataList& theZones ) { // Create result regions for case, by default one zone for one region QString aRegsPref = CALCULATION_REGIONS_PREF; - QString aZonesPref = theLandCover ? CALCULATION_LANDCOVER_ZONES_PREF : CALCULATION_ZONES_PREF; + QString aZonesPref = CALCULATION_ZONES_PREF; 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, theLandCover ); + Handle(HYDROData_Region) aRegion = addNewRegion( theDoc, aRegsPref ); // Add the zone for region Handle(HYDROData_Zone) aRegionZone = aRegion->addNewZone( theDoc, aZonesPref, aSplitData.Face(), aSplitData.ObjectNames ); @@ -340,16 +342,16 @@ void HYDROData_CalculationCase::CreateRegionsDef( const Handle(HYDROData_Documen } void HYDROData_CalculationCase::CreateRegionsAuto( const Handle(HYDROData_Document)& theDoc, - const HYDROData_SplitToZonesTool::SplitDataList& theZones, - const bool theLandCover ) + const HYDROData_SplitToZonesTool::SplitDataList& theZones ) { + DEBTRACE("HYDROData_CalculationCase::CreateRegionsAuto"); QMap aRegionsMap; //object name to region QMap aRegionNameToObjNameMap; - QString aZonesPref = theLandCover ? CALCULATION_LANDCOVER_ZONES_PREF : CALCULATION_ZONES_PREF; - HYDROData_PriorityQueue aPr( this, theLandCover ? DataTag_CustomLandCoverRules : DataTag_CustomRules ); + QString aZonesPref = CALCULATION_ZONES_PREF; + HYDROData_PriorityQueue aPr( this, DataTag_CustomRules ); // 1. First we create a default region for each object included into the calculation case - HYDROData_SequenceOfObjects anObjects = theLandCover ? GetLandCovers() : GetGeometryObjects(); + HYDROData_SequenceOfObjects anObjects = GetGeometryObjects(); for( int i = anObjects.Lower(), n = anObjects.Upper(); i<=n; i++ ) { Handle(HYDROData_Entity) anObj = anObjects.Value( i ); @@ -357,7 +359,7 @@ void HYDROData_CalculationCase::CreateRegionsAuto( const Handle(HYDROData_Docume continue; QString anObjName = anObj->GetName(); QString aRegName = anObjName + "_reg"; - Handle(HYDROData_Region) aRegion = addNewRegion( theDoc, aRegName, theLandCover, false ); + Handle(HYDROData_Region) aRegion = addNewRegion( theDoc, aRegName, false ); aRegionsMap.insert( anObjName, aRegion ); aRegionNameToObjNameMap.insert( aRegName, anObjName ); } @@ -383,11 +385,10 @@ void HYDROData_CalculationCase::CreateRegionsAuto( const Handle(HYDROData_Docume } Handle(HYDROData_Entity) aMergeEntity = aRegObj; - if ( !theLandCover ) { - Handle(HYDROData_Object) aMergeObject = Handle(HYDROData_Object)::DownCast( aMergeEntity ); - if ( !aMergeObject.IsNull() ) { - aMergeEntity = aMergeObject->GetAltitudeObject(); - } + Handle(HYDROData_Object) aMergeObject = Handle(HYDROData_Object)::DownCast( aMergeEntity ); + if ( !aMergeObject.IsNull() ) { + DEBTRACE("aMergeEntity " << aMergeEntity->GetName().toStdString()); + aMergeEntity = aMergeObject->GetAltitudeObject(); } switch( aMergeType ) @@ -428,7 +429,7 @@ void HYDROData_CalculationCase::CreateRegionsAuto( const Handle(HYDROData_Docume void HYDROData_CalculationCase::CreateEdgeGroupsDef( const Handle(HYDROData_Document)& theDoc, const HYDROData_SplitToZonesTool::SplitDataList& theEdges ) { - QMap aSplittedEdgesGroupsMap; + QMap aSplitEdgesGroupsMap; HYDROData_SplitToZonesTool::SplitDataListIterator anIter( theEdges ); while( anIter.hasNext() ) @@ -445,20 +446,26 @@ void HYDROData_CalculationCase::CreateEdgeGroupsDef( const Handle(HYDROData_Docu QString aStr = aSplitData.ObjectNames.join(" "); cout << " CCase: Names = "<GetName().toStdString() << " Zone " << aZone->GetName().toStdString()); Handle(HYDROData_Region) aRefRegion = Handle(HYDROData_Region)::DownCast( aZone->GetFatherObject() ); if ( IsEqual( aRefRegion, theRegion ) ) - aResAltitude = GetAltitudeForPoint( thePoint, aZone ); + aResAltitude = GetAltitudeForPoint( thePoint, aZone, theMethod ); + else + { + DEBTRACE("GetAltitudeForPoint Region " << aRefRegion->GetName().toStdString() << " Zone " << aZone->GetName().toStdString() << " ---------------------------"); + aResAltitude = GetAltitudeForPoint( thePoint, aZone, theMethod ); + } } + else + { + DEBTRACE(" --- GetAltitudeForPoint No Zone ---"); + } return aResAltitude; } double HYDROData_CalculationCase::GetAltitudeForPoint( const gp_XY& thePoint, - const Handle(HYDROData_Zone)& theZone ) const + const Handle(HYDROData_Zone)& theZone, + int theMethod) const { + //DEBTRACE("GetAltitudeForPoint Zone " << theZone->GetName().toStdString()); double aResAltitude = HYDROData_IAltitudeObject::GetInvalidAltitude(); if ( theZone.IsNull() ) + { + DEBTRACE("Zone nulle"); return aResAltitude; + } HYDROData_Zone::MergeType aZoneMergeType = theZone->GetMergeType(); + //DEBTRACE("aZoneMergeType " << aZoneMergeType); if ( !theZone->IsMergingNeed() ) { aZoneMergeType = HYDROData_Zone::Merge_UNKNOWN; + //DEBTRACE("---"); } else if ( aZoneMergeType == HYDROData_Zone::Merge_UNKNOWN ) { + DEBTRACE("GetAltitudeForPoint Zone " << theZone->GetName().toStdString() << " Merge_UNKNOWN"); return aResAltitude; } @@ -798,15 +797,20 @@ double HYDROData_CalculationCase::GetAltitudeForPoint( const gp_XY& { if ( aZoneInterpolator != NULL ) { + DEBTRACE("aZoneInterpolator != NULL"); aZoneInterpolator->SetAltitudeObject( aMergeAltitude ); aResAltitude = aZoneInterpolator->GetAltitudeForPoint( thePoint ); } else + { + DEBTRACE("aZoneInterpolator == NULL"); aResAltitude = aMergeAltitude->GetAltitudeForPoint( thePoint ); + } } } else { + //DEBTRACE("aZoneMergeType != HYDROData_Zone::Merge_Object"); HYDROData_SequenceOfObjects aZoneObjects = theZone->GetObjects(); HYDROData_SequenceOfObjects::Iterator anIter( aZoneObjects ); for ( ; anIter.More(); anIter.Next() ) @@ -823,11 +827,15 @@ double HYDROData_CalculationCase::GetAltitudeForPoint( const gp_XY& double aPointAltitude = 0.0; if ( aZoneInterpolator != NULL ) { + DEBTRACE("aZoneInterpolator != NULL"); aZoneInterpolator->SetAltitudeObject( anObjAltitude ); aPointAltitude = aZoneInterpolator->GetAltitudeForPoint( thePoint ); } else - aPointAltitude = anObjAltitude->GetAltitudeForPoint( thePoint ); + { + //DEBTRACE("aZoneInterpolator == NULL"); + aPointAltitude = anObjAltitude->GetAltitudeForPoint( thePoint, theMethod ); + } if ( ValuesEquals( aPointAltitude, HYDROData_IAltitudeObject::GetInvalidAltitude() ) ) continue; @@ -861,15 +869,17 @@ double HYDROData_CalculationCase::GetAltitudeForPoint( const gp_XY& NCollection_Sequence HYDROData_CalculationCase::GetAltitudesForPoints( const NCollection_Sequence& thePoints, - const Handle(HYDROData_Region)& theRegion ) const + const Handle(HYDROData_Region)& theRegion, + int theMethod) const { + DEBTRACE("HYDROData_CalculationCase::GetAltitudesForPoints " << theRegion->GetName().toStdString()); NCollection_Sequence aResSeq; for ( int i = 1, n = thePoints.Length(); i <= n; ++i ) { const gp_XY& thePnt = thePoints.Value( i ); - double anAltitude = GetAltitudeForPoint( thePnt, theRegion ); + double anAltitude = GetAltitudeForPoint( thePnt, theRegion, theMethod ); aResSeq.Append( anAltitude ); } @@ -878,7 +888,8 @@ NCollection_Sequence HYDROData_CalculationCase::GetAltitudesForPoints( NCollection_Sequence HYDROData_CalculationCase::GetAltitudesForPoints( const NCollection_Sequence& thePoints, - const Handle(HYDROData_Zone)& theZone ) const + const Handle(HYDROData_Zone)& theZone, + int theMethod) const { NCollection_Sequence aResSeq; @@ -886,31 +897,56 @@ NCollection_Sequence HYDROData_CalculationCase::GetAltitudesForPoints( { const gp_XY& thePnt = thePoints.Value( i ); - double anAltitude = GetAltitudeForPoint( thePnt, theZone ); + double anAltitude = GetAltitudeForPoint( thePnt, theZone, theMethod ); aResSeq.Append( anAltitude ); } return aResSeq; } -Handle(HYDROData_Region) HYDROData_CalculationCase::GetRegionFromPoint( const gp_XY& thePoint, - const bool theLandCover ) const +double HYDROData_CalculationCase::GetStricklerCoefficientForPoint( const gp_XY& thePoint ) const +{ + Handle( HYDROData_LandCoverMap ) aMap = GetLandCoverMap(); + Handle( HYDROData_StricklerTable ) aTable = GetStricklerTable(); + if( aMap.IsNull() ) + return 0.0; + + QString aType; + aMap->FindByPoint( thePoint, aType ); + double aCoeff = aTable->Get( aType, 0.0 ); + return aCoeff; +} + +std::vector HYDROData_CalculationCase::GetStricklerCoefficientForPoints(const std::vector& thePoints, + double DefValue, bool UseMax ) const +{ + Handle( HYDROData_LandCoverMap ) aLCM = GetLandCoverMap(); + Handle( HYDROData_StricklerTable ) aTable = GetStricklerTable(); + std::vector theCoeffs; + if( aLCM.IsNull() || aTable.IsNull() ) + return theCoeffs; + + aLCM->ClassifyPoints(thePoints, aTable, theCoeffs, DefValue, UseMax ); + + return theCoeffs; +} + +Handle(HYDROData_Region) HYDROData_CalculationCase::GetRegionFromPoint( const gp_XY& thePoint ) const { Handle(HYDROData_Region) aResRegion; - Handle(HYDROData_Zone) aZone = GetZoneFromPoint( thePoint, theLandCover ); + Handle(HYDROData_Zone) aZone = GetZoneFromPoint( thePoint ); if ( !aZone.IsNull() ) aResRegion = Handle(HYDROData_Region)::DownCast( aZone->GetFatherObject() ); return aResRegion; } -Handle(HYDROData_Zone) HYDROData_CalculationCase::GetZoneFromPoint( const gp_XY& thePoint, - const bool theLandCover ) const +Handle(HYDROData_Zone) HYDROData_CalculationCase::GetZoneFromPoint( const gp_XY& thePoint ) const { Handle(HYDROData_Zone) aResZone; - HYDROData_SequenceOfObjects aRegions = GetRegions( theLandCover ); + HYDROData_SequenceOfObjects aRegions = GetRegions(); HYDROData_SequenceOfObjects::Iterator anIter( aRegions ); for ( ; anIter.More() && aResZone.IsNull(); anIter.Next() ) @@ -971,30 +1007,29 @@ HYDROData_CalculationCase::PointClassification HYDROData_CalculationCase::GetPoi Handle(HYDROData_Region) HYDROData_CalculationCase::addNewRegion( const Handle(HYDROData_Document)& theDoc, const QString& thePrefixOrName, - const bool theLandCover, bool isPrefix ) { - TDF_Label aNewLab = myLab.FindChild( theLandCover ? DataTag_ChildLandCoverRegion : DataTag_ChildRegion ).NewChild(); + TDF_Label aNewLab = myLab.FindChild( DataTag_ChildRegion ).NewChild(); int aTag = aNewLab.Tag(); Handle(HYDROData_Region) aNewRegion = Handle(HYDROData_Region)::DownCast( HYDROData_Iterator::CreateObject( aNewLab, KIND_REGION ) ); - AddRegion( aNewRegion, theLandCover ); + AddRegion( aNewRegion ); QString aRegionName = isPrefix ? HYDROData_Tool::GenerateObjectName( theDoc, thePrefixOrName ) : thePrefixOrName; - aNewRegion->SetName( aRegionName ); + aNewRegion->SetName( aRegionName, true ); return aNewRegion; } -Handle(HYDROData_SplittedShapesGroup) HYDROData_CalculationCase::addNewSplittedGroup( const QString& theName ) +Handle(HYDROData_SplitShapesGroup) HYDROData_CalculationCase::addNewSplitGroup( const QString& theName ) { - TDF_Label aNewLab = myLab.FindChild( DataTag_SplittedGroups ).NewChild(); + TDF_Label aNewLab = myLab.FindChild( DataTag_SplitGroups ).NewChild(); - Handle(HYDROData_SplittedShapesGroup) aNewGroup = - Handle(HYDROData_SplittedShapesGroup)::DownCast( - HYDROData_Iterator::CreateObject( aNewLab, KIND_SPLITTED_GROUP ) ); - AddReferenceObject( aNewGroup, DataTag_SplittedGroups ); + Handle(HYDROData_SplitShapesGroup) aNewGroup = + Handle(HYDROData_SplitShapesGroup)::DownCast( + HYDROData_Iterator::CreateObject( aNewLab, KIND_SPLIT_GROUP ) ); + AddReferenceObject( aNewGroup, DataTag_SplitGroups ); aNewGroup->SetName( theName ); @@ -1003,24 +1038,33 @@ Handle(HYDROData_SplittedShapesGroup) HYDROData_CalculationCase::addNewSplittedG QString HYDROData_CalculationCase::Export( int theStudyId ) const { +#ifdef LIGHT_MODE + return ""; +#else GEOM::GEOM_Gen_var aGEOMEngine = HYDROData_GeomTool::GetGeomGen(); SALOMEDS::Study_var aDSStudy = HYDROData_GeomTool::GetStudyByID( theStudyId ); - QString aGeomObjEntry; - bool isOK = Export( aGEOMEngine, aDSStudy, aGeomObjEntry ); + QString aGeomObjEntry, anErrorMsg; + QString statMess; + bool isOK = Export( aGEOMEngine, aDSStudy, aGeomObjEntry, anErrorMsg, statMess ); return isOK ? aGeomObjEntry : QString(); +#endif } +#ifndef LIGHT_MODE bool HYDROData_CalculationCase::Export( GEOM::GEOM_Gen_var theGeomEngine, SALOMEDS::Study_ptr theStudy, - QString& theGeomObjEntry ) const + QString& theGeomObjEntry, + QString& theErrorMsg, + QString& statMess) const { HYDROData_ShapesGroup::SeqOfGroupsDefs aSeqOfGroupsDefs; // Get groups definitions - HYDROData_SequenceOfObjects aSplittedGroups = GetSplittedGroups(); + HYDROData_SequenceOfObjects aSplitGroups = GetSplitGroups(); - HYDROData_SequenceOfObjects::Iterator anIter( aSplittedGroups ); + TopTools_SequenceOfShape IntSh; //internal edges + HYDROData_SequenceOfObjects::Iterator anIter( aSplitGroups ); for ( ; anIter.More(); anIter.Next() ) { // Get shapes group @@ -1035,29 +1079,60 @@ bool HYDROData_CalculationCase::Export( GEOM::GEOM_Gen_var theGeomEngine, aGroup->GetShapes( aGroupDef.Shapes ); aSeqOfGroupsDefs.Append( aGroupDef ); + + Handle(HYDROData_SplitShapesGroup) aSSGroup = Handle(HYDROData_SplitShapesGroup)::DownCast( anIter.Value() ); + TopTools_SequenceOfShape dummy; + if (!aSSGroup.IsNull()) + if (aSSGroup->GetInternal()) + { + aSSGroup->GetShapes(dummy); + IntSh.Append(dummy); + } + } // Get faces - TopTools_ListOfShape aFaces; - HYDROData_SequenceOfObjects aCaseRegions = GetRegions( false ); + bool isAllNotSubmersible = true; + HYDROData_SequenceOfObjects aCaseRegions = GetRegions(); HYDROData_SequenceOfObjects::Iterator aRegionIter( aCaseRegions ); + NCollection_IndexedDataMap aShToNames; for ( ; aRegionIter.More(); aRegionIter.Next() ) { Handle(HYDROData_Region) aRegion = Handle(HYDROData_Region)::DownCast( aRegionIter.Value() ); if( aRegion.IsNull() || !aRegion->IsSubmersible() ) continue; + + if ( isAllNotSubmersible ) + isAllNotSubmersible = false; - TopoDS_Shape aRegionShape = aRegion->GetShape( &aSeqOfGroupsDefs ); - aFaces.Append( aRegionShape ); + TopoDS_Shape aRegionShape = aRegion->GetShape( &aSeqOfGroupsDefs, &IntSh ); + aShToNames.Add( aRegionShape, aRegion->GetName() ); } - return Export( theGeomEngine, theStudy, aFaces, aSeqOfGroupsDefs, theGeomObjEntry ); + bool aRes = false; + + if ( aCaseRegions.IsEmpty() ) { + theErrorMsg = QString("the list of regions is empty."); + } else if ( isAllNotSubmersible ) { + theErrorMsg = QString("there are no submersible regions."); + } else { + aRes = Export( theGeomEngine, theStudy, aShToNames, aSeqOfGroupsDefs, theGeomObjEntry );; + } + + if( aRes && !GetLandCoverMap().IsNull() && !GetStricklerTable().IsNull() ) + { + QString aTelemacFileName = GetName() + ".telemac"; + aRes = GetLandCoverMap()->ExportTelemac( aTelemacFileName, 1E-2, GetStricklerTable(), statMess ); + if (!aRes) + theErrorMsg = QString( "The export to TELEMAC %1 failed" ).arg( aTelemacFileName ); + } + return aRes; } bool HYDROData_CalculationCase::Export( GEOM::GEOM_Gen_var theGeomEngine, SALOMEDS::Study_ptr theStudy, - const TopTools_ListOfShape& theFaces, + const NCollection_IndexedDataMap& aShToName, const HYDROData_ShapesGroup::SeqOfGroupsDefs& theGroupsDefs, QString& theGeomObjEntry ) const { @@ -1068,34 +1143,32 @@ bool HYDROData_CalculationCase::Export( GEOM::GEOM_Gen_var TCollection_AsciiString aNam("Sh_"); int i=1; #endif - TopTools_ListIteratorOfListOfShape aFaceIter( theFaces ); - for ( ; aFaceIter.More(); aFaceIter.Next() ) + TopTools_DataMapOfShapeListOfShape SH2M; + for ( int i = 1; i <= aShToName.Extent(); i++ ) { - TopoDS_Shape aShape = aFaceIter.Value(); + const TopoDS_Shape& aShape = aShToName.FindKey(i); if ( aShape.IsNull() ) continue; - - if ( aShape.ShapeType() == TopAbs_FACE ) + + SH2M.Bind(aShape, TopTools_ListOfShape()); + TopTools_ListOfShape& LM = SH2M.ChangeFind(aShape); + if ( aShape.ShapeType() == TopAbs_FACE || aShape.ShapeType() == TopAbs_SHELL ) { aSewing.Add( aShape ); -#ifdef DEB_CALCULATION - TCollection_AsciiString aName = aNam + ++i + ".brep"; - BRepTools::Write(aShape ,aName.ToCString()); -#endif + LM.Append(aShape); } - else + else if (aShape.ShapeType() == TopAbs_COMPOUND) { -#ifdef DEB_CALCULATION - int j = 1; -#endif - TopExp_Explorer anExp( aShape, TopAbs_FACE ); - for (; anExp.More(); anExp.Next() ) { + TopExp_Explorer anExp( aShape, TopAbs_SHELL ); + 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 + LM.Append(anExp.Current()); + } + anExp.Init( aShape, TopAbs_FACE, TopAbs_SHELL ); + { + aSewing.Add( anExp.Current() ); + LM.Append(anExp.Current()); } } } // faces iterator @@ -1103,6 +1176,24 @@ bool HYDROData_CalculationCase::Export( GEOM::GEOM_Gen_var aSewing.Perform(); TopoDS_Shape aSewedShape = aSewing.SewedShape(); + NCollection_IndexedDataMap aFacesToNameModif; + + for ( int i = 1; i <= aShToName.Extent(); i++ ) + { + const TopoDS_Shape& CurShape = aShToName.FindKey(i); + const QString& Qstr = aShToName.FindFromIndex(i); + const TopTools_ListOfShape& LM = SH2M(CurShape); + for (TopTools_ListIteratorOfListOfShape it(LM); it.More(); it.Next()) + { + const TopoDS_Shape& csh = it.Value(); + if (aSewing.IsModified(csh)) + aFacesToNameModif.Add(aSewing.Modified(csh), Qstr); + else + aFacesToNameModif.Add(csh, Qstr); + } + } + + // If the sewed shape is empty - return false if ( aSewedShape.IsNull() || !TopoDS_Iterator( aSewedShape ).More() ) return false; @@ -1113,7 +1204,7 @@ bool HYDROData_CalculationCase::Export( GEOM::GEOM_Gen_var // Publish the sewed shape QString aName = EXPORT_NAME; GEOM::GEOM_Object_ptr aMainShape = - HYDROData_GeomTool::publishShapeInGEOM( theGeomEngine, theStudy, aSewedShape, aName, theGeomObjEntry ); + HYDROData_GeomTool::ExplodeShapeInGEOMandPublish( theGeomEngine, theStudy, aSewedShape, aFacesToNameModif, aName, theGeomObjEntry ); if ( aMainShape->_is_nil() ) return false; @@ -1209,6 +1300,7 @@ bool HYDROData_CalculationCase::Export( GEOM::GEOM_Gen_var return true; } +#endif void HYDROData_CalculationCase::ClearRules( HYDROData_CalculationCase::DataTag theDataTag, const bool theIsSetToUpdate ) @@ -1218,7 +1310,7 @@ void HYDROData_CalculationCase::ClearRules( HYDROData_CalculationCase::DataTag t // Indicate model of the need to update splitting if ( theIsSetToUpdate ) { - SetToUpdate( true ); + Changed( Geom_2d ); } } @@ -1232,7 +1324,7 @@ void HYDROData_CalculationCase::AddRule( const Handle(HYDROData_Entity)& theO HYDROData_PriorityQueue::AddRule( aRulesLab, theObject1, thePriority, theObject2, theMergeType ); // Indicate model of the need to update splitting - SetToUpdate( true ); + Changed( Geom_2d ); } QString HYDROData_CalculationCase::DumpRules() const @@ -1247,7 +1339,7 @@ void HYDROData_CalculationCase::SetAssignmentMode( AssignmentMode theMode ) TDataStd_Integer::Set( aModeLab, ( int ) theMode ); // Indicate model of the need to update splitting - SetToUpdate( true ); + Changed( Geom_2d ); } HYDROData_CalculationCase::AssignmentMode HYDROData_CalculationCase::GetAssignmentMode() const @@ -1307,22 +1399,33 @@ void HYDROData_CalculationCase::UpdateRegionsNames( const HYDROData_SequenceOfOb } void HYDROData_CalculationCase::DumpRegionsToPython( QStringList& theResList, + const QString& thePyScriptPath, MapOfTreatedObjects& theTreatedObjects, const HYDROData_SequenceOfObjects& theRegions ) const { HYDROData_SequenceOfObjects::Iterator anIter; - anIter.Init( theRegions ); - for ( ; anIter.More(); anIter.Next() ) - { - Handle(HYDROData_Region) aRegion = - Handle(HYDROData_Region)::DownCast( anIter.Value() ); - if ( aRegion.IsNull() ) - continue; - - theTreatedObjects.insert( aRegion->GetName(), aRegion ); - QStringList aRegDump = aRegion->DumpToPython( theTreatedObjects ); - theResList << aRegDump; - } + anIter.Init(theRegions); + for (int ireg = 1; anIter.More(); anIter.Next(), ireg++) + { + Handle(HYDROData_Region) aRegion = Handle(HYDROData_Region)::DownCast(anIter.Value()); + if (aRegion.IsNull()) + continue; + QString defRegName = this->GetName(); + QString regSuffix = QString("_Reg_%1").arg(ireg); + defRegName += regSuffix; + theTreatedObjects.insert(aRegion->GetName(), aRegion); + QStringList aRegDump = aRegion->DumpToPython(thePyScriptPath, theTreatedObjects, defRegName); + theResList << aRegDump; + } + for (anIter.Init(theRegions); anIter.More(); anIter.Next()) + { + Handle(HYDROData_Region) aRegion = Handle(HYDROData_Region)::DownCast(anIter.Value()); + if (aRegion.IsNull()) + continue; + QStringList aRegDump; + aRegion->SetNameInDumpPython(aRegDump); + theResList << aRegDump; + } } bool HYDROData_CalculationCase::GetRule( int theIndex, @@ -1337,21 +1440,33 @@ bool HYDROData_CalculationCase::GetRule( int theIndex, theObject1, thePriority, theObject2, theMergeType ); } -void HYDROData_CalculationCase::SetAssignmentLandCoverMode( AssignmentMode theMode ) +bool HYDROData_CalculationCase::AddInterPoly( const Handle(HYDROData_PolylineXY)& theInterPolyline ) { - TDF_Label aModeLab = myLab.FindChild( DataTag_AssignmentLandCoverMode ); - TDataStd_Integer::Set( aModeLab, ( int ) theMode ); + HYDROData_CalculationCase::DataTag aDataTag = DataTag_InterPoly; - // Indicate model of the need to update land covers partition - SetToUpdate( true ); + if ( HasReference( theInterPolyline, aDataTag ) ) + return false; + + AddReferenceObject( theInterPolyline, aDataTag ); + + Changed( Geom_2d ); + + return true; } -HYDROData_CalculationCase::AssignmentMode HYDROData_CalculationCase::GetAssignmentLandCoverMode() const +HYDROData_SequenceOfObjects HYDROData_CalculationCase::GetInterPolyObjects() const { - Handle(TDataStd_Integer) aModeAttr; - bool isOK = myLab.FindChild( DataTag_AssignmentLandCoverMode ).FindAttribute( TDataStd_Integer::GetID(), aModeAttr ); - if( isOK ) - return ( AssignmentMode ) aModeAttr->Get(); - else - return MANUAL; + return GetReferenceObjects( DataTag_InterPoly ); +} + +void HYDROData_CalculationCase::RemoveInterPolyObject( const Handle(HYDROData_PolylineXY)& theInterPolyline ) +{ + if ( theInterPolyline.IsNull() ) + return; + + RemoveReferenceObject( theInterPolyline->Label(), DataTag_InterPoly ); + } + + +