X-Git-Url: http://git.salome-platform.org/gitweb/?a=blobdiff_plain;f=src%2FHYDROData%2FHYDROData_SplitToZonesTool.cxx;h=f91732cd2fcdba0a6ae49707008b8b684b76dee3;hb=545854182f0363f61284d5abe34c3627d4f3b088;hp=cbc77b7ce4ba324b236da80387c003ec8f984c1f;hpb=1462940bc2cdc36635cf45f8f95147fe7c2d5021;p=modules%2Fhydro.git diff --git a/src/HYDROData/HYDROData_SplitToZonesTool.cxx b/src/HYDROData/HYDROData_SplitToZonesTool.cxx index cbc77b7c..f91732cd 100644 --- a/src/HYDROData/HYDROData_SplitToZonesTool.cxx +++ b/src/HYDROData/HYDROData_SplitToZonesTool.cxx @@ -1,35 +1,52 @@ +// Copyright (C) 2014-2015 EDF-R&D +// 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, or (at your option) any later version. +// +// 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 "HYDROData_SplitToZonesTool.h" #include "HYDROData_PolylineXY.h" - -#include +#include "HYDROData_ShapesGroup.h" +#include #include +#include #include - +#include #include #include -#include +#include +#include #include -#include +#include #include -#include -#include -#include -#include #include #include -#include -typedef NCollection_DataMap HYDROData_DataMapOfShapeListOfShape; -typedef HYDROData_DataMapOfShapeListOfShape::Iterator HYDROData_DataMapIteratorOfDataMapOfShapeListOfShape; -typedef NCollection_DataMap HYDROData_DataMapOfShapeListOfString; -typedef HYDROData_DataMapOfShapeListOfString::Iterator HYDROData_DataMapIteratorOfDataMapOfShapeListOfString; -#undef _NCollection_MapHasher - -#define DEB_SPLIT_TO_ZONES 1 -#ifdef DEB_SPLIT_TO_ZONES +#include +#include +#include +#include +#include + +//#define DEB_SPLIT_TO_ZONES 1 +//#define DEB_SPLIT_TO_ZONES_CHECK_PARTITION 1 +#if (defined (DEB_SPLIT_TO_ZONES) || defined(DEB_SPLIT_TO_ZONES_CHECK_PARTITION)) #include +static TCollection_AsciiString fileNameBefore("BeforeTranslation"); #endif + TopoDS_Face HYDROData_SplitToZonesTool::SplitData::Face() const { TopoDS_Face aResFace; @@ -52,280 +69,540 @@ TopoDS_Face HYDROData_SplitToZonesTool::SplitData::Face() const return aResFace; } +Standard_Boolean buildLimFace(const TopoDS_Wire& theBndWire, TopoDS_Face& outFace) +{ + GProp_GProps G; + BRepGProp::LinearProperties(theBndWire,G); + const gp_Pnt& aCPnt = G.CentreOfMass(); + gp_Pln aPln; + BRepBuilderAPI_FindPlane fndPlane (theBndWire, Precision::Confusion()); + if(fndPlane.Found()) + aPln = fndPlane.Plane()->Pln(); + else + aPln = gp_Pln(aCPnt, gp::OZ().Direction()); + BRepBuilderAPI_MakeFace aMkFace(aPln, theBndWire); + if(aMkFace.IsDone()) { + outFace = aMkFace.Face(); + if(!outFace.IsNull()) { +#ifdef DEB_SPLIT_TO_ZONES +// BRepTools::Write(limFace,"FL.brep"); +#endif + return Standard_True; + } + } + return Standard_False; +} +//====================================================================================== + +void HYDROData_SplitToZonesTool::SetFileNames(const QString& theNameBefore, const QString& theNameAfter) +{ +#ifdef DEB_SPLIT_TO_ZONES_CHECK_PARTITION + if(!theNameBefore.isNull() && !theNameBefore.isEmpty()) + { + TCollection_AsciiString aName (theNameBefore.toStdString().data()); + fileNameBefore = aName; + } + if(!theNameAfter.isNull() && !theNameAfter.isEmpty()) + { + TCollection_AsciiString aName (theNameAfter.toStdString().data()); + HYDROData_Transform::SetFileName (aName); + } +#endif +} +//====================================================================================== +Standard_Integer HYDROData_SplitToZonesTool::SplitFaces(const TopoDS_Compound& theComp, + HYDROData_Transform& theTool) +{ + theTool.Clear(); + theTool.SetArgument(theComp); + theTool.Detect(); + const Standard_Boolean bToTransform = theTool.ToTransform(); + theTool.SetToTransform(bToTransform); + theTool.Perform(); + Standard_Integer anErr = theTool.ErrorStatus(); + return anErr; +} + +//====================================================================================== HYDROData_SplitToZonesTool::SplitDataList HYDROData_SplitToZonesTool::Split( const HYDROData_SequenceOfObjects& theObjectList, const HYDROData_SequenceOfObjects& theGroupsList, const Handle(HYDROData_PolylineXY)& thePolyline ) { SplitDataList anOutputSplitDataList; - - // Preparation. Collect the object shapes to split. InputDataList will contain elements which will hold shape & name_of_shape. + if(theObjectList.IsEmpty()) return anOutputSplitDataList; + // Preparation. + // Collect the object shapes to split. InputDataList will contain elements which will hold shape & name_of_shape. SplitDataList anInputSplitDataList; +#ifdef DEB_SPLIT_TO_ZONES + TCollection_AsciiString aNam("Faces_"); +#endif for( int anIndex = 1, aLength = theObjectList.Length(); anIndex <= aLength; anIndex++ ) { - Handle(HYDROData_Object) aGeomObj = - Handle(HYDROData_Object)::DownCast( theObjectList.Value( anIndex ) ); - if( aGeomObj.IsNull() ) - continue; + Handle(HYDROData_Entity) anObj = theObjectList.Value( anIndex ); + TopoDS_Shape aShape; + + Handle(HYDROData_Object) aGeomObj = Handle(HYDROData_Object)::DownCast( anObj ); + if( !aGeomObj.IsNull() ) { + aShape = aGeomObj->GetTopShape(); + } - TopoDS_Shape aShape = aGeomObj->GetTopShape(); if ( aShape.IsNull() ) - continue; - + continue; +#ifdef DEB_SPLIT_TO_ZONES + TCollection_AsciiString aName = aNam + anIndex + ".brep"; + BRepTools::Write(aShape, aName.ToCString()); +#endif if ( aShape.ShapeType() == TopAbs_COMPOUND ) { // Create split data for each face contained in the compound TopExp_Explorer anExp( aShape, TopAbs_FACE ); for ( ; anExp.More(); anExp.Next() ) { - TopoDS_Face aFace = TopoDS::Face( anExp.Current() ); + const TopoDS_Face& aFace = TopoDS::Face( anExp.Current() ); if ( !aFace.IsNull() ) { - SplitData aSplitData( SplitData::Data_Zone, aFace, aGeomObj->GetName() ); + SplitData aSplitData( SplitData::Data_Zone, aFace, anObj->GetName() ); anInputSplitDataList.append( aSplitData ); } } } else { - SplitData aSplitData( SplitData::Data_Zone, aShape, aGeomObj->GetName() ); + SplitData aSplitData( SplitData::Data_Zone, aShape, anObj->GetName() ); anInputSplitDataList.append( aSplitData ); } } + // + SplitDataList anInputGroupList; + for( int anIndex = 1, aLength = theGroupsList.Length(); anIndex <=aLength; anIndex++ ) + { + Handle(HYDROData_ShapesGroup) aGeomGroup = + Handle(HYDROData_ShapesGroup)::DownCast( theGroupsList.Value( anIndex ) ); + if( aGeomGroup.IsNull() ) + continue; + + TopTools_SequenceOfShape aGroupShapes; + aGeomGroup->GetShapes( aGroupShapes ); + for( int i = 1, aNbShapes = aGroupShapes.Length(); i <= aNbShapes; i++ ) { + const TopoDS_Shape& aGroupShape = aGroupShapes.Value( i ); + if ( aGroupShape.IsNull() ) + continue; + + if ( aGroupShape.ShapeType() == TopAbs_COMPOUND ) { + TopExp_Explorer anExp( aGroupShape, TopAbs_EDGE ); + for ( ; anExp.More(); anExp.Next() ) { + const TopoDS_Edge& anEdge = TopoDS::Edge( anExp.Current() ); + if ( !anEdge.IsNull() ) { + SplitData aSplitData( SplitData::Data_Edge, anEdge, aGeomGroup->GetName() ); + anInputGroupList.append( aSplitData ); + } + } + } else { + SplitData aSplitData( SplitData::Data_Edge, aGroupShape, aGeomGroup->GetName() ); + anInputGroupList.append( aSplitData ); +#ifdef DEB_SPLIT_TO_ZONES + QString aStr = aSplitData.ObjectNames.join(" "); + cout << "Group# = " <Modified(anIt.Value()); - TopTools_ListOfShape aList; - TopTools_ListIteratorOfListOfShape it1(aListOfNew); - for(;it1.More();it1.Next()) - aList.Append(it1.Value()); - const TopTools_ListOfShape& aListOfGen = aBuilder->Generated(anIt.Value()); - TopTools_ListIteratorOfListOfShape it2(aListOfGen); - for(;it2.More();it2.Next()) - aList.Append(it2.Value()); - aDM1.Bind(anIt.Value(), aList); - //cout << "NB_Face = " << aList.Extent() <Modified(exp.Current()); - // cout << "NB_EDGE = " << aList2.Extent() < 1) { + HYDROData_Transform splitTool; + const Standard_Integer anErr = SplitFaces(aCmp, splitTool); + if(anErr) + return anOutputSplitDataList; + aResult = splitTool.Shape(); + if (aResult.IsNull()) + return anOutputSplitDataList; + BRepCheck_Analyzer aCheck (aResult); + if(!aCheck.IsValid()) { + #ifdef DEB_SPLIT_TO_ZONES + cout << "result is not valid" < temporary solution is used + //const TopTools_ListOfShape& aListOfGen = splitTool.Generated(anIt.Value()); + //if(!aListOfGen.IsEmpty()) + //foundF = Standard_True; + //it.Initialize(aListOfGen); + //for(;it.More();it.Next()) + // aList.Append(it.Value()); + ********************************************************************* */ + if(!foundF) // face is not modified + aList.Append (anIt.Value()); + aDM1.Add(anIt.Value(), aList); + #ifdef DEB_SPLIT_TO_ZONES + TCollection_AsciiString aName; + #endif + if(!anInputGroupList.isEmpty() ) { // 1 + TopExp_Explorer exp (anIt.Value(), TopAbs_EDGE); + for (int j =1;exp.More();exp.Next(),j++) { + aList.Clear(); + Standard_Boolean foundE(Standard_False); + const TopTools_ListOfShape& aListM = splitTool.Modified(exp.Current()); + //cout << "NB_EDGE_M = " << aListM.Extent() <GetName(); + hasLimits = Standard_True; // DM2 should be filled here + TopExp_Explorer exp (limFace, TopAbs_EDGE); + for (int i =1;exp.More();exp.Next(),i++) { + const TopoDS_Shape& anEdge = exp.Current(); + if(anEdge.IsNull()) continue; + aBndView.Add(anEdge); + QStringList aListOfNames; + aListOfNames.append(aBndName); + aDM3.Add(anEdge, aListOfNames); + TopTools_ListOfShape aList; + aList.Append(anEdge); + aDM1.Add(anEdge,aList); + } + HYDROData_MapOfShape aView; + exp.Init (aResult, TopAbs_FACE); + for (int i =1;exp.More();exp.Next(),i++) { + const TopoDS_Shape& aFace = exp.Current(); + if(!aFace.IsNull()) { + const TopTools_ListOfShape& aListOfNew = mkCom.Modified(aFace); + //cout << "Modified: " << aListOfNew.Extent() <GetShape() ); - if( !aWire.IsNull() ) - { - BRepBuilderAPI_MakeFace aMakeFace( aWire, Standard_True ); - aMakeFace.Build(); - if( aMakeFace.IsDone() ) - { - SplitData aBoundarySplitData( SplitData::Data_Zone, aMakeFace.Face(), "" ); - - SplitDataList aCutSplitDataList; - SplitDataListIterator anOutputIter( anOutputSplitDataList ); - while( anOutputIter.hasNext() ) - { - const SplitData& anOutputSplitData = anOutputIter.next(); - - SplitData aData1Subtracted, aData2Subtracted, aDataIntersected; - if( SplitTwoData( anOutputSplitData, aBoundarySplitData, - aData1Subtracted, aData2Subtracted, aDataIntersected ) ) - aCutSplitDataList.append( aDataIntersected ); + }// end limits processing + if(!hasLimits) { + HYDROData_DataMapIteratorOfDataMapOfShapeListOfShape aMIt(aDM1); + for(;aMIt.More();aMIt.Next()) { + const TopoDS_Shape& aKey = aMIt.Key(); + TopTools_ListOfShape aList; + aList.Append(aKey); + const TopTools_ListOfShape& aListOfNew = aMIt.Value(); + TopTools_ListIteratorOfListOfShape it(aListOfNew); + for(;it.More();it.Next()) { + if(!aDM2.Contains(it.Value())) + aDM2.Add(it.Value(), aList); + else { + TopTools_ListOfShape& aList = aDM2.ChangeFromKey(it.Value()); + aList.Prepend(aKey); } - anOutputSplitDataList = aCutSplitDataList; } } } + // Step 4. Fill output structure. +#ifdef DEB_SPLIT_TO_ZONES + TCollection_AsciiString aNam4 ("SC_"); +#endif + HYDROData_DataMapIteratorOfDataMapOfShapeListOfShape aMIt(aDM2); + for(int i =1;aMIt.More();aMIt.Next(),i++) { + SplitData aDestSplitData; + const TopoDS_Shape& aKey = aMIt.Key(); //new + aDestSplitData.Shape = aKey; + if(aKey.ShapeType() == TopAbs_FACE) + aDestSplitData.Type = SplitData::Data_Zone; + else { + aDestSplitData.Type = SplitData::Data_Edge; +#ifdef DEB_SPLIT_TO_ZONES + TCollection_AsciiString aName = aNam4 + i + ".brep"; + BRepTools::Write(aKey,aName.ToCString()); +#endif + } - // Step 3. Extract the separate regions. - SplitDataList anExtractedSplitDataList; - SplitDataListIterator anOutputIter( anOutputSplitDataList ); - while( anOutputIter.hasNext() ) - { - const SplitData& anOutputSplitData = anOutputIter.next(); - anExtractedSplitDataList.append( ExtractSeparateData( anOutputSplitData ) ); - } -*/ - // return anExtractedSplitDataList; -} - -bool HYDROData_SplitToZonesTool::SplitTwoData( const SplitData& theData1, - const SplitData& theData2, - SplitData& theData1Subtracted, - SplitData& theData2Subtracted, - SplitData& theDataIntersected ) -{ - const TopoDS_Shape& aShape1 = theData1.Shape; - const TopoDS_Shape& aShape2 = theData2.Shape; - - const QStringList& anObjectNames1 = theData1.ObjectNames; - const QStringList& anObjectNames2 = theData2.ObjectNames; + QStringList aListOfNames; // names processing + const TopTools_ListOfShape& aListOfOld = aMIt.Value(); + TopTools_ListIteratorOfListOfShape it(aListOfOld); + for(int j =1;it.More();it.Next(),j++) { + const TopoDS_Shape& aSh = it.Value(); //old + if(aDM3.Contains(aSh)) { + const QStringList& ObjectNames = aDM3.FindFromKey(aSh); + aListOfNames.append(ObjectNames); +#ifdef DEB_SPLIT_TO_ZONES + TCollection_AsciiString aName = aNam4 + i +"_" + j + ".brep"; + BRepTools::Write(aSh ,aName.ToCString()); +#endif + } else { +#ifdef DEB_SPLIT_TO_ZONES + TCollection_AsciiString aName = aNam4 +"__" + i +"_" + j + ".brep"; + BRepTools::Write(aSh ,aName.ToCString()); + cout <