X-Git-Url: http://git.salome-platform.org/gitweb/?p=modules%2Fsmesh.git;a=blobdiff_plain;f=src%2FSMESH_I%2FSMESH_Gen_i.cxx;h=916a1f2221aebb4f30521f2abd379ee1ee2ae740;hp=7d1dbf9c8bcae3a8367f11aab6fde86eb8fbac99;hb=096485adbe5e66ace1182bf6c49dc6853f437d9c;hpb=a3ee66b0371b361bf97d6261c61a35995b4595bb diff --git a/src/SMESH_I/SMESH_Gen_i.cxx b/src/SMESH_I/SMESH_Gen_i.cxx index 7d1dbf9c8..916a1f222 100644 --- a/src/SMESH_I/SMESH_Gen_i.cxx +++ b/src/SMESH_I/SMESH_Gen_i.cxx @@ -1,4 +1,4 @@ -// Copyright (C) 2007-2014 CEA/DEN, EDF R&D, OPEN CASCADE +// Copyright (C) 2007-2016 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 @@ -44,12 +44,17 @@ #include #include #include +#include +#include +#include + #ifdef WIN32 #include #include #else #include + #include // for basename function #endif #ifdef WIN32 @@ -59,7 +64,7 @@ #define UnLoadLib( handle ) FreeLibrary( handle ); #else #define LibHandle void* - #define LoadLib( name ) dlopen( name, RTLD_LAZY ) + #define LoadLib( name ) dlopen( name, RTLD_LAZY | RTLD_GLOBAL ) #define GetProc dlsym #define UnLoadLib( handle ) dlclose( handle ); #endif @@ -93,6 +98,7 @@ #include "SMESH_Mesh_i.hxx" #include "SMESH_PreMeshInfo.hxx" #include "SMESH_PythonDump.hxx" +#include "SMESH_ControlsDef.hxx" #include "SMESH_TryCatch.hxx" // to include after OCC headers! #include CORBA_SERVER_HEADER(SMESH_Group) @@ -108,7 +114,6 @@ #include #include #include -#include #include #include #include @@ -264,7 +269,6 @@ GEOM::GEOM_Gen_var SMESH_Gen_i::GetGeomEngine() { SMESH_Gen_i::SMESH_Gen_i() { - INFOS( "SMESH_Gen_i::SMESH_Gen_i : default constructor" ); } //============================================================================= @@ -280,9 +284,8 @@ SMESH_Gen_i::SMESH_Gen_i( CORBA::ORB_ptr orb, PortableServer::ObjectId* contId, const char* instanceName, const char* interfaceName ) - : Engines_Component_i( orb, poa, contId, instanceName, interfaceName ) + : Engines_Component_i( orb, poa, contId, instanceName, interfaceName ) { - MESSAGE( "SMESH_Gen_i::SMESH_Gen_i : standard constructor" ); myOrb = CORBA::ORB::_duplicate(orb); myPoa = PortableServer::POA::_duplicate(poa); @@ -296,9 +299,6 @@ SMESH_Gen_i::SMESH_Gen_i( CORBA::ORB_ptr orb, myIsHistoricalPythonDump = true; myToForgetMeshDataOnHypModif = false; - myImportedStudyChanged = true; - myImportedStudyId = 0; - // set it in standalone mode only //OSD::SetSignal( true ); @@ -335,13 +335,18 @@ SMESH_Gen_i::SMESH_Gen_i( CORBA::ORB_ptr orb, SMESH_Gen_i::~SMESH_Gen_i() { - MESSAGE( "SMESH_Gen_i::~SMESH_Gen_i" ); - // delete hypothesis creators - map::iterator itHyp; + map::iterator itHyp, itHyp2; for (itHyp = myHypCreatorMap.begin(); itHyp != myHypCreatorMap.end(); itHyp++) { - delete (*itHyp).second; + // same creator can be mapped under different names + GenericHypothesisCreator_i* creator = (*itHyp).second; + if ( !creator ) + continue; + delete creator; + for (itHyp2 = itHyp; itHyp2 != myHypCreatorMap.end(); itHyp2++) + if ( creator == (*itHyp2).second ) + (*itHyp2).second = 0; } myHypCreatorMap.clear(); @@ -378,8 +383,10 @@ GenericHypothesisCreator_i* SMESH_Gen_i::getHypothesisCreator(const char* theHyp !strcmp( theLibName+libNameLen-3, ".so" )) { //the old format -#ifdef WIN32 +#if defined(WIN32) aPlatformLibName = std::string( theLibName+3, libNameLen-6 ) + ".dll"; +#elif defined(__APPLE__) + aPlatformLibName = std::string( theLibName, libNameLen-3 ) + ".dylib"; #else aPlatformLibName = theLibName; #endif @@ -387,11 +394,13 @@ GenericHypothesisCreator_i* SMESH_Gen_i::getHypothesisCreator(const char* theHyp else { //try to use new format -#ifdef WIN32 +#if defined(WIN32) aPlatformLibName = theLibName; aPlatformLibName += ".dll"; +#elif defined(__APPLE__) + aPlatformLibName = std::string( "lib" ) + std::string( theLibName ) + ".dylib"; #else - aPlatformLibName = "lib" + std::string( theLibName ) + ".so"; + aPlatformLibName = std::string( "lib" ) + std::string( theLibName ) + ".so"; #endif } } @@ -412,7 +421,7 @@ GenericHypothesisCreator_i* SMESH_Gen_i::getHypothesisCreator(const char* theHyp LibHandle libHandle = LoadLib( aPlatformLibName.c_str() ); if (!libHandle) { - // report any error, if occured + // report any error, if occurred #ifndef WIN32 const char* anError = dlerror(); throw(SALOME_Exception(anError)); @@ -467,23 +476,23 @@ SMESH::SMESH_Hypothesis_ptr SMESH_Gen_i::createHypothesis(const char* theHypName SMESH_Hypothesis_i* myHypothesis_i = 0; SMESH::SMESH_Hypothesis_var hypothesis_i; std::string aPlatformLibName; - typedef GenericHypothesisCreator_i* (*GetHypothesisCreator)(const char* ); - GenericHypothesisCreator_i* aCreator = getHypothesisCreator(theHypName, theLibName, aPlatformLibName); - // create a new hypothesis object, store its ref. in studyContext - if(MYDEBUG) MESSAGE("Create Hypothesis " << theHypName); - myHypothesis_i = - myHypCreatorMap[string(theHypName)]->Create(myPoa, GetCurrentStudyID(), &myGen); - myHypothesis_i->SetLibName(aPlatformLibName.c_str()); // for persistency assurance - - if (!myHypothesis_i) - return hypothesis_i._retn(); - - // activate the CORBA servant of hypothesis - hypothesis_i = myHypothesis_i->_this(); - int nextId = RegisterObject( hypothesis_i ); - if(MYDEBUG) { MESSAGE( "Add hypo to map with id = "<< nextId ); } - else { nextId = 0; } // avoid "unused variable" warning in release mode + GenericHypothesisCreator_i* aCreator = + getHypothesisCreator(theHypName, theLibName, aPlatformLibName); + // create a new hypothesis object, store its ref. in studyContext + myHypothesis_i = aCreator->Create(myPoa, GetCurrentStudyID(), &myGen); + if (myHypothesis_i) + { + myHypothesis_i->SetLibName( aPlatformLibName.c_str() ); // for persistency assurance + CORBA::String_var hypName = myHypothesis_i->GetName(); + myHypCreatorMap[ hypName.in() ] = aCreator; + + // activate the CORBA servant of hypothesis + hypothesis_i = myHypothesis_i->_this(); + int nextId = RegisterObject( hypothesis_i ); + if(MYDEBUG) { MESSAGE( "Add hypo to map with id = "<< nextId ); } + else { nextId = 0; } // avoid "unused variable" warning in release mode + } return hypothesis_i._retn(); } @@ -495,7 +504,7 @@ SMESH::SMESH_Hypothesis_ptr SMESH_Gen_i::createHypothesis(const char* theHypName */ //============================================================================= SMESH::SMESH_Mesh_ptr SMESH_Gen_i::createMesh() - throw ( SALOME::SALOME_Exception ) + throw ( SALOME::SALOME_Exception ) { Unexpect aCatch(SALOME_SalomeException); if(MYDEBUG) MESSAGE( "SMESH_Gen_i::createMesh" ); @@ -505,7 +514,7 @@ SMESH::SMESH_Mesh_ptr SMESH_Gen_i::createMesh() // create a new mesh object servant, store it in a map in study context SMESH_Mesh_i* meshServant = new SMESH_Mesh_i( GetPOA(), this, GetCurrentStudyID() ); // create a new mesh object - MESSAGE("myIsEmbeddedMode " << myIsEmbeddedMode); + if(MYDEBUG) MESSAGE("myIsEmbeddedMode " << myIsEmbeddedMode); meshServant->SetImpl( myGen.CreateMesh( GetCurrentStudyID(), myIsEmbeddedMode )); // activate the CORBA servant of Mesh @@ -564,7 +573,6 @@ void SMESH_Gen_i::SetGeomEngine( GEOM::GEOM_Gen_ptr geomcompo ) void SMESH_Gen_i::SetEmbeddedMode( CORBA::Boolean theMode ) { myIsEmbeddedMode = theMode; - MESSAGE("myIsEmbeddedMode " << myIsEmbeddedMode); if ( !myIsEmbeddedMode ) { //PAL10867: disable signals catching with "noexcepthandler" option @@ -673,7 +681,7 @@ SALOMEDS::Study_ptr SMESH_Gen_i::GetCurrentStudy() StudyContext* SMESH_Gen_i::GetCurrentStudyContext() { if ( !CORBA::is_nil( myCurrentStudy ) && - myStudyContextMap.find( GetCurrentStudyID() ) != myStudyContextMap.end() ) + myStudyContextMap.find( GetCurrentStudyID() ) != myStudyContextMap.end() ) return myStudyContextMap[ myCurrentStudy->StudyId() ]; else return 0; @@ -689,7 +697,7 @@ StudyContext* SMESH_Gen_i::GetCurrentStudyContext() SMESH::SMESH_Hypothesis_ptr SMESH_Gen_i::CreateHypothesis( const char* theHypName, const char* theLibName ) - throw ( SALOME::SALOME_Exception ) + throw ( SALOME::SALOME_Exception ) { Unexpect aCatch(SALOME_SalomeException); // Create hypothesis/algorithm @@ -747,7 +755,7 @@ SMESH_Gen_i::GetHypothesisParameterValues (const char* theHypType, return SMESH::SMESH_Hypothesis::_nil(); ::SMESH_Mesh* mesh = meshServant ? &meshServant->GetImpl() : (::SMESH_Mesh*)0; - // create a temporary hypothesis to know its dimention + // create a temporary hypothesis to know its dimension SMESH::SMESH_Hypothesis_var tmpHyp = this->createHypothesis( theHypType, theLibName ); SMESH_Hypothesis_i* hypServant = SMESH::DownCast( tmpHyp ); if ( !hypServant ) @@ -803,6 +811,104 @@ SMESH_Gen_i::GetHypothesisParameterValues (const char* theHypType, return SMESH::SMESH_Hypothesis::_nil(); } +//============================================================================= +/*! + * Returns \c True if a hypothesis is assigned to a sole sub-mesh in a current Study + * \param [in] theHyp - the hypothesis of interest + * \param [out] theMesh - the sole mesh using \a theHyp + * \param [out] theShape - the sole geometry \a theHyp is assigned to + * \return boolean - \c True if \a theMesh and \a theShape are sole using \a theHyp + * + * If two meshes on same shape have theHyp assigned to the same sub-shape, they are + * considered as SAME sub-mesh => result is \c true. + * This method ids used to initialize SMESHGUI_GenericHypothesisCreator with + * a shape to which an hyp being edited is assigned. + */ +//============================================================================= + +CORBA::Boolean SMESH_Gen_i::GetSoleSubMeshUsingHyp( SMESH::SMESH_Hypothesis_ptr theHyp, + SMESH::SMESH_Mesh_out theMesh, + GEOM::GEOM_Object_out theShape) +{ + if ( GetCurrentStudyID() < 0 || CORBA::is_nil( theHyp )) + return false; + + // get Mesh component SO + CORBA::String_var compDataType = ComponentDataType(); + SALOMEDS::SComponent_wrap comp = myCurrentStudy->FindComponent( compDataType.in() ); + if ( CORBA::is_nil( comp )) + return false; + + // look for child SO of meshes + SMESH::SMESH_Mesh_var foundMesh; + TopoDS_Shape foundShape; + bool isSole = true; + SALOMEDS::ChildIterator_wrap meshIter = myCurrentStudy->NewChildIterator( comp ); + for ( ; meshIter->More() && isSole; meshIter->Next() ) + { + SALOMEDS::SObject_wrap curSO = meshIter->Value(); + CORBA::Object_var obj = SObjectToObject( curSO ); + SMESH_Mesh_i* mesh_i = SMESH::DownCast< SMESH_Mesh_i* >( obj ); + if ( ! mesh_i ) + continue; + + // look for a sole shape where theHyp is assigned + bool isHypFound = false; + const ShapeToHypothesis & s2hyps = mesh_i->GetImpl().GetMeshDS()->GetHypotheses(); + ShapeToHypothesis::Iterator s2hypsIt( s2hyps ); + for ( ; s2hypsIt.More() && isSole; s2hypsIt.Next() ) + { + const THypList& hyps = s2hypsIt.Value(); + THypList::const_iterator h = hyps.begin(); + for ( ; h != hyps.end(); ++h ) + if ( (*h)->GetID() == theHyp->GetId() ) + break; + if ( h != hyps.end()) // theHyp found + { + isHypFound = true; + if ( ! foundShape.IsNull() && + ! foundShape.IsSame( s2hypsIt.Key() )) // not a sole sub-shape + { + foundShape.Nullify(); + isSole = false; + break; + } + foundShape = s2hypsIt.Key(); + } + } // loop on assigned hyps + + if ( isHypFound && !foundShape.IsNull() ) // a mesh using theHyp is found + { + if ( !foundMesh->_is_nil() ) // not a sole mesh + { + if ( !foundMesh->HasShapeToMesh() || + !mesh_i ->HasShapeToMesh() ) + { + isSole = ( foundMesh->HasShapeToMesh() == mesh_i->HasShapeToMesh() ); + } + else + { + GEOM::GEOM_Object_var s1 = mesh_i ->GetShapeToMesh(); + GEOM::GEOM_Object_var s2 = foundMesh->GetShapeToMesh(); + isSole = s1->IsSame( s2 ); + } + } + foundMesh = SMESH::SMESH_Mesh::_narrow( obj ); + } + + } // loop on meshes + + if ( isSole && + ! foundMesh->_is_nil() && + ! foundShape.IsNull() ) + { + theMesh = foundMesh._retn(); + theShape = ShapeToGeomObject( foundShape ); + return ( !theMesh->_is_nil() && !theShape->_is_nil() ); + } + return false; +} + //============================================================================= /*! * Sets number of segments per diagonal of boundary box of geometry by which @@ -842,7 +948,7 @@ void SMESH_Gen_i::SetOption(const char* name, const char* value) { if ( name && value && strlen( value ) > 0 ) { - string msgToGUI; + string msgToGUI; if ( strcmp(name, "historical_python_dump") == 0 ) { myIsHistoricalPythonDump = ( value[0] == '1' || toupper(value[0]) == 'T' ); // 1 || true @@ -855,6 +961,34 @@ void SMESH_Gen_i::SetOption(const char* name, const char* value) msgToGUI = "preferences/SMESH/forget_mesh_on_hyp_modif/"; msgToGUI += myToForgetMeshDataOnHypModif ? "true" : "false"; } + else if ( strcmp(name, "default_grp_color") == 0 ) + { + vector color; + string str = value; + // color must be presented as a string of following form: + if ( str.at(0) == '#' && str.length() == 7 ) { // hexadecimal color ("#ffaa00", for example) + str = str.substr(1); + for ( size_t i = 0; i < str.length()/2; i++ ) + if ( str.at(i*2) >= '0' && str.at(i*2) <= 'f' && str.at(i*2+1) >= '0' && str.at(i*2+1) <= 'f' ) + color.push_back( strtol( str.substr( i*2, 2 ).c_str(), NULL, 16 ) ); + } + else if ( value ) { // rgb color ("255,170,0", for example) + string tempValue( value ); + char* colorValue = strtok( &tempValue[0], "," ); + while ( colorValue != NULL ) { + int c_value = atoi( colorValue ); + if ( c_value >= 0 && c_value <= 255 ) + color.push_back( c_value ); + colorValue = strtok( NULL, "," ); + } + } + if ( color.size() == 3 ) { // color must have three valid component + SMESHDS_GroupBase::SetDefaultColor( Quantity_Color( color[0]/255., color[1]/255., color[2]/255., Quantity_TOC_RGB ) ); + myDefaultGroupColor = value; + msgToGUI = "preferences/SMESH/default_grp_color/"; + msgToGUI += value; + } + } // update preferences in case if SetOption() is invoked from python console if ( !msgToGUI.empty() ) @@ -885,6 +1019,10 @@ char* SMESH_Gen_i::GetOption(const char* name) { return CORBA::string_dup( myToForgetMeshDataOnHypModif ? "true" : "false" ); } + if ( strcmp(name, "default_grp_color") == 0 ) + { + return CORBA::string_dup( myDefaultGroupColor.c_str() ); + } } return CORBA::string_dup( "" ); } @@ -1036,7 +1174,7 @@ SMESH::mesh_array* SMESH_Gen_i::CreateMeshesFromMEDorSAUV( const char* theFileNa _splitpath( theFileNameForPython, NULL, NULL, bname, NULL ); string aFileName = bname; #else - string aFileName = basename( theFileNameForPython ); + string aFileName = basename( const_cast(theFileNameForPython) ); #endif // Retrieve mesh names from the file DriverMED_R_SMESHDS_Mesh myReader; @@ -1079,11 +1217,11 @@ SMESH::mesh_array* SMESH_Gen_i::CreateMeshesFromMEDorSAUV( const char* theFileNa // - as names of meshes are stored in MED file, we use them for data publishing // - as mesh name is not stored in UNV file, we use file name as name of mesh when publishing data aSO = PublishMesh( myCurrentStudy, mesh.in(), ( theFileName == theFileNameForPython ) ? (*it).c_str() : aFileName.c_str() ); + + // Python Dump if ( !aSO->_is_nil() ) { - // Python Dump aPythonDump << aSO; } else { - // Python Dump aPythonDump << "mesh_" << i; } @@ -1106,7 +1244,7 @@ SMESH::mesh_array* SMESH_Gen_i::CreateMeshesFromMEDorSAUV( const char* theFileNa aPythonDump << "], status) = " << this << "." << theCommandNameForPython << "(r'" << theFileNameForPython << "')"; } // Dump creation of groups - for ( int i = 0; i < aResult->length(); ++i ) + for ( CORBA::ULong i = 0; i < aResult->length(); ++i ) SMESH::ListOfGroups_var groups = aResult[ i ]->GetGroups(); return aResult._retn(); @@ -1185,7 +1323,7 @@ SMESH::SMESH_Mesh_ptr SMESH_Gen_i::CreateMeshesFromSTL( const char* theFileName _splitpath( theFileName, NULL, NULL, bname, NULL ); string aFileName = bname; #else - string aFileName = basename( theFileName ); + string aFileName = basename( const_cast(theFileName) ); #endif // publish mesh in the study if ( CanPublishInStudy( aMesh ) ) { @@ -1284,7 +1422,7 @@ SMESH::mesh_array* SMESH_Gen_i::CreateMeshesFromCGNS( const char* theFileName, aPythonDump << "], status) = " << this << ".CreateMeshesFromCGNS(r'" << theFileName << "')"; } // Dump creation of groups - for ( int i = 0; i < aResult->length(); ++i ) + for ( CORBA::ULong i = 0; i < aResult->length(); ++i ) SMESH::ListOfGroups_var groups = aResult[ i ]->GetGroups(); #else THROW_SALOME_CORBA_EXCEPTION("CGNS library is unavailable", SALOME::INTERNAL_ERROR); @@ -1314,7 +1452,7 @@ SMESH_Gen_i::CreateMeshesFromGMF( const char* theFileName, _splitpath( theFileName, NULL, NULL, bname, NULL ); string aFileName = bname; #else - string aFileName = basename( theFileName ); + string aFileName = basename( const_cast(theFileName) ); #endif // publish mesh in the study if ( CanPublishInStudy( aMesh ) ) { @@ -1679,9 +1817,10 @@ SMESH::algo_error_array* SMESH_Gen_i::GetAlgoState( SMESH::SMESH_Mesh_ptr theMes */ //============================================================================= -SMESH::long_array* SMESH_Gen_i::GetSubShapesId( GEOM::GEOM_Object_ptr theMainShapeObject, - const SMESH::object_array& theListOfSubShapeObject ) - throw ( SALOME::SALOME_Exception ) +SMESH::long_array* +SMESH_Gen_i::GetSubShapesId( GEOM::GEOM_Object_ptr theMainShapeObject, + const SMESH::object_array& theListOfSubShapeObject ) + throw ( SALOME::SALOME_Exception ) { Unexpect aCatch(SALOME_SalomeException); if(MYDEBUG) MESSAGE( "SMESH_Gen_i::GetSubShapesId" ); @@ -1690,58 +1829,57 @@ SMESH::long_array* SMESH_Gen_i::GetSubShapesId( GEOM::GEOM_Object_ptr theMainSha set setId; if ( CORBA::is_nil( theMainShapeObject ) ) - THROW_SALOME_CORBA_EXCEPTION( "bad shape object reference", - SALOME::BAD_PARAM ); + THROW_SALOME_CORBA_EXCEPTION( "bad shape object reference", SALOME::BAD_PARAM ); try - { - TopoDS_Shape myMainShape = GeomObjectToShape(theMainShapeObject); - TopTools_IndexedMapOfShape myIndexToShape; - TopExp::MapShapes(myMainShape,myIndexToShape); + { + TopoDS_Shape myMainShape = GeomObjectToShape(theMainShapeObject); + TopTools_IndexedMapOfShape myIndexToShape; + TopExp::MapShapes(myMainShape,myIndexToShape); - for ( int i = 0; i < theListOfSubShapeObject.length(); i++ ) - { - GEOM::GEOM_Object_var aShapeObject - = GEOM::GEOM_Object::_narrow(theListOfSubShapeObject[i]); - if ( CORBA::is_nil( aShapeObject ) ) - THROW_SALOME_CORBA_EXCEPTION ("bad shape object reference", \ - SALOME::BAD_PARAM ); - - TopoDS_Shape locShape = GeomObjectToShape(aShapeObject); - for (TopExp_Explorer exp(locShape,TopAbs_FACE); exp.More(); exp.Next()) - { - const TopoDS_Face& F = TopoDS::Face(exp.Current()); - setId.insert(myIndexToShape.FindIndex(F)); - if(MYDEBUG) SCRUTE(myIndexToShape.FindIndex(F)); - } - for (TopExp_Explorer exp(locShape,TopAbs_EDGE); exp.More(); exp.Next()) - { - const TopoDS_Edge& E = TopoDS::Edge(exp.Current()); - setId.insert(myIndexToShape.FindIndex(E)); - if(MYDEBUG) SCRUTE(myIndexToShape.FindIndex(E)); - } - for (TopExp_Explorer exp(locShape,TopAbs_VERTEX); exp.More(); exp.Next()) - { - const TopoDS_Vertex& V = TopoDS::Vertex(exp.Current()); - setId.insert(myIndexToShape.FindIndex(V)); - if(MYDEBUG) SCRUTE(myIndexToShape.FindIndex(V)); - } - } - shapesId->length(setId.size()); - set::iterator iind; - int i=0; - for (iind = setId.begin(); iind != setId.end(); iind++) - { - if(MYDEBUG) SCRUTE((*iind)); - shapesId[i] = (*iind); - if(MYDEBUG) SCRUTE(shapesId[i]); - i++; - } + for ( CORBA::ULong i = 0; i < theListOfSubShapeObject.length(); i++ ) + { + GEOM::GEOM_Object_var aShapeObject + = GEOM::GEOM_Object::_narrow(theListOfSubShapeObject[i]); + if ( CORBA::is_nil( aShapeObject ) ) + THROW_SALOME_CORBA_EXCEPTION ("bad shape object reference", \ + SALOME::BAD_PARAM ); + + TopoDS_Shape locShape = GeomObjectToShape(aShapeObject); + for (TopExp_Explorer exp(locShape,TopAbs_FACE); exp.More(); exp.Next()) + { + const TopoDS_Face& F = TopoDS::Face(exp.Current()); + setId.insert(myIndexToShape.FindIndex(F)); + if(MYDEBUG) SCRUTE(myIndexToShape.FindIndex(F)); + } + for (TopExp_Explorer exp(locShape,TopAbs_EDGE); exp.More(); exp.Next()) + { + const TopoDS_Edge& E = TopoDS::Edge(exp.Current()); + setId.insert(myIndexToShape.FindIndex(E)); + if(MYDEBUG) SCRUTE(myIndexToShape.FindIndex(E)); + } + for (TopExp_Explorer exp(locShape,TopAbs_VERTEX); exp.More(); exp.Next()) + { + const TopoDS_Vertex& V = TopoDS::Vertex(exp.Current()); + setId.insert(myIndexToShape.FindIndex(V)); + if(MYDEBUG) SCRUTE(myIndexToShape.FindIndex(V)); + } } - catch (SALOME_Exception& S_ex) + shapesId->length(setId.size()); + set::iterator iind; + int i=0; + for (iind = setId.begin(); iind != setId.end(); iind++) { - THROW_SALOME_CORBA_EXCEPTION(S_ex.what(), SALOME::BAD_PARAM); + if(MYDEBUG) SCRUTE((*iind)); + shapesId[i] = (*iind); + if(MYDEBUG) SCRUTE(shapesId[i]); + i++; } + } + catch (SALOME_Exception& S_ex) + { + THROW_SALOME_CORBA_EXCEPTION(S_ex.what(), SALOME::BAD_PARAM); + } return shapesId._retn(); } @@ -1777,9 +1915,9 @@ CORBA::Boolean SMESH_Gen_i::Compute( SMESH::SMESH_Mesh_ptr theMesh, try { // get mesh servant SMESH_Mesh_i* meshServant = dynamic_cast( GetServant( theMesh ).in() ); - meshServant->Load(); ASSERT( meshServant ); if ( meshServant ) { + meshServant->Load(); // NPAL16168: "geometrical group edition from a submesh don't modifiy mesh computation" meshServant->CheckGeomModif(); // get local TopoDS_Shape @@ -1790,8 +1928,11 @@ CORBA::Boolean SMESH_Gen_i::Compute( SMESH::SMESH_Mesh_ptr theMesh, myLocShape = SMESH_Mesh::PseudoShape(); // call implementation compute ::SMESH_Mesh& myLocMesh = meshServant->GetImpl(); - myGen.PrepareCompute( myLocMesh, myLocShape); - bool ok = myGen.Compute( myLocMesh, myLocShape); + myGen.PrepareCompute( myLocMesh, myLocShape ); + int how = ::SMESH_Gen::COMPACT_MESH; + if ( myLocShape != myLocMesh.GetShapeToMesh() ) // compute a sub-mesh + how |= ::SMESH_Gen::SHAPE_ONLY; + bool ok = myGen.Compute( myLocMesh, myLocShape, how ); meshServant->CreateGroupServants(); // algos can create groups (issue 0020918) myLocMesh.GetMeshDS()->Modified(); return ok; @@ -1875,7 +2016,7 @@ SMESH::MeshPreviewStruct* SMESH_Gen_i::Precompute( SMESH::SMESH_Mesh_ptr theMesh ::SMESH_Mesh& myLocMesh = meshServant->GetImpl(); TSetOfInt shapeIds; ::MeshDimension aDim = (MeshDimension)theDimension; - if ( myGen.Compute( myLocMesh, myLocShape, false, false, aDim, &shapeIds ) ) + if ( myGen.Compute( myLocMesh, myLocShape, ::SMESH_Gen::COMPACT_MESH, aDim, &shapeIds ) ) { int nbShapeId = shapeIds.size(); theShapesId.length( nbShapeId ); @@ -2058,6 +2199,7 @@ SMESH::long_array* SMESH_Gen_i::Evaluate(SMESH::SMESH_Mesh_ptr theMesh, SMESH_Mesh_i* meshServant = dynamic_cast( GetServant( theMesh ).in() ); ASSERT( meshServant ); if ( meshServant ) { + meshServant->Load(); // NPAL16168: "geometrical group edition from a submesh don't modifiy mesh computation" meshServant->CheckGeomModif(); // get local TopoDS_Shape @@ -2073,13 +2215,13 @@ SMESH::long_array* SMESH_Gen_i::Evaluate(SMESH::SMESH_Mesh_ptr theMesh, MapShapeNbElemsItr anIt = aResMap.begin(); for(; anIt!=aResMap.end(); anIt++) { const vector& aVec = (*anIt).second; - for(i = SMESH::Entity_Node; i < aVec.size(); i++) { + for ( i = SMESH::Entity_Node; i < (int)aVec.size(); i++ ) { int nbElem = aVec[i]; if ( nbElem < 0 ) // algo failed, check that it has reported a message { - SMESH_subMesh* sm = anIt->first; + SMESH_subMesh* sm = anIt->first; SMESH_ComputeErrorPtr& error = sm->GetComputeError(); - const SMESH_Algo* algo = myGen.GetAlgo( myLocMesh, sm->GetSubShape()); + const SMESH_Algo* algo = sm->GetAlgo(); if ( (algo && !error.get()) || error->IsOK() ) error.reset( new SMESH_ComputeError( COMPERR_ALGO_FAILED,"Failed to evaluate",algo)); } @@ -2254,10 +2396,11 @@ SMESH_Gen_i::FindGeometryByMeshElement( SMESH::SMESH_Mesh_ptr theMesh, */ //================================================================================ -SMESH::SMESH_Mesh_ptr SMESH_Gen_i::Concatenate(const SMESH::mesh_array& theMeshesArray, - CORBA::Boolean theUniteIdenticalGroups, - CORBA::Boolean theMergeNodesAndElements, - CORBA::Double theMergeTolerance) +SMESH::SMESH_Mesh_ptr +SMESH_Gen_i::Concatenate(const SMESH::ListOfIDSources& theMeshesArray, + CORBA::Boolean theUniteIdenticalGroups, + CORBA::Boolean theMergeNodesAndElements, + CORBA::Double theMergeTolerance) throw ( SALOME::SALOME_Exception ) { return ConcatenateCommon(theMeshesArray, @@ -2277,10 +2420,10 @@ SMESH::SMESH_Mesh_ptr SMESH_Gen_i::Concatenate(const SMESH::mesh_array& theMeshe //================================================================================ SMESH::SMESH_Mesh_ptr -SMESH_Gen_i::ConcatenateWithGroups(const SMESH::mesh_array& theMeshesArray, - CORBA::Boolean theUniteIdenticalGroups, - CORBA::Boolean theMergeNodesAndElements, - CORBA::Double theMergeTolerance) +SMESH_Gen_i::ConcatenateWithGroups(const SMESH::ListOfIDSources& theMeshesArray, + CORBA::Boolean theUniteIdenticalGroups, + CORBA::Boolean theMergeNodesAndElements, + CORBA::Double theMergeTolerance) throw ( SALOME::SALOME_Exception ) { return ConcatenateCommon(theMeshesArray, @@ -2299,17 +2442,15 @@ SMESH_Gen_i::ConcatenateWithGroups(const SMESH::mesh_array& theMeshesArray, //================================================================================ SMESH::SMESH_Mesh_ptr -SMESH_Gen_i::ConcatenateCommon(const SMESH::mesh_array& theMeshesArray, - CORBA::Boolean theUniteIdenticalGroups, - CORBA::Boolean theMergeNodesAndElements, - CORBA::Double theMergeTolerance, - CORBA::Boolean theCommonGroups) +SMESH_Gen_i::ConcatenateCommon(const SMESH::ListOfIDSources& theMeshesArray, + CORBA::Boolean theUniteIdenticalGroups, + CORBA::Boolean theMergeNodesAndElements, + CORBA::Double theMergeTolerance, + CORBA::Boolean theCommonGroups) throw ( SALOME::SALOME_Exception ) { - typedef map TIDsMap; typedef list TListOfNewGroups; typedef map< pair, TListOfNewGroups > TGroupsMap; - typedef std::set TGroups; TPythonDump* pPythonDump = new TPythonDump; TPythonDump& aPythonDump = *pPythonDump; // prevent dump of called methods @@ -2317,303 +2458,248 @@ SMESH_Gen_i::ConcatenateCommon(const SMESH::mesh_array& theMeshesArray, // create mesh SMESH::SMESH_Mesh_var aNewMesh = CreateEmptyMesh(); - SMESHDS_Mesh* aNewMeshDS = 0; - if ( !aNewMesh->_is_nil() ) { - SMESH_Mesh_i* aNewImpl = dynamic_cast( GetServant( aNewMesh ).in() ); - if ( aNewImpl ) { - ::SMESH_Mesh& aLocMesh = aNewImpl->GetImpl(); - aNewMeshDS = aLocMesh.GetMeshDS(); - - TGroupsMap aGroupsMap; - TListOfNewGroups aListOfNewGroups; - SMESH_MeshEditor aNewEditor = ::SMESH_MeshEditor(&aLocMesh); - SMESH::ListOfGroups_var aListOfGroups = new SMESH::ListOfGroups(); - - // loop on meshes - for ( int i = 0; i < theMeshesArray.length(); i++) { - SMESH::SMESH_Mesh_var anInitMesh = theMeshesArray[i]; - if ( !anInitMesh->_is_nil() ) { - SMESH_Mesh_i* anInitImpl = dynamic_cast( GetServant( anInitMesh ).in() ); - if ( anInitImpl ) { - ::SMESH_Mesh& aInitLocMesh = anInitImpl->GetImpl(); - aInitLocMesh.Load(); - SMESHDS_Mesh* anInitMeshDS = aInitLocMesh.GetMeshDS(); - - TIDsMap nodesMap; - TIDsMap elemsMap; - - // loop on elements of mesh - SMDS_ElemIteratorPtr itElems = anInitMeshDS->elementsIterator(); - const SMDS_MeshElement* anElem = 0; - const SMDS_MeshElement* aNewElem = 0; - int anElemNbNodes = 0; - - int anNbNodes = 0; - int anNbEdges = 0; - int anNbFaces = 0; - int anNbVolumes = 0; - int aNbBalls = 0; - - SMESH::long_array_var anIDsNodes = new SMESH::long_array(); - SMESH::long_array_var anIDsEdges = new SMESH::long_array(); - SMESH::long_array_var anIDsFaces = new SMESH::long_array(); - SMESH::long_array_var anIDsVolumes = new SMESH::long_array(); - SMESH::long_array_var anIDsBalls = new SMESH::long_array(); - - if( theCommonGroups ) { - anIDsNodes->length( anInitMeshDS->NbNodes() ); - anIDsEdges->length( anInitMeshDS->NbEdges() ); - anIDsFaces->length( anInitMeshDS->NbFaces() ); - anIDsVolumes->length( anInitMeshDS->NbVolumes() ); - anIDsBalls->length( anInitMeshDS->NbBalls() ); - } + if ( aNewMesh->_is_nil() ) + return aNewMesh._retn(); - for ( int j = 0; itElems->more(); j++) { - anElem = itElems->next(); - SMDSAbs_ElementType anElemType = anElem->GetType(); - anElemNbNodes = anElem->NbNodes(); - std::vector aNodesArray (anElemNbNodes); - - // loop on nodes of element - const SMDS_MeshNode* aNode = 0; - const SMDS_MeshNode* aNewNode = 0; - SMDS_ElemIteratorPtr itNodes = anElem->nodesIterator(); - - for ( int k = 0; itNodes->more(); k++) { - aNode = static_cast(itNodes->next()); - if ( nodesMap.find(aNode->GetID()) == nodesMap.end() ) { - aNewNode = aNewMeshDS->AddNode(aNode->X(), aNode->Y(), aNode->Z()); - nodesMap.insert( make_pair(aNode->GetID(), aNewNode->GetID()) ); - if( theCommonGroups ) - anIDsNodes[anNbNodes++] = aNewNode->GetID(); - } - else - aNewNode = aNewMeshDS->FindNode( nodesMap.find(aNode->GetID())->second ); - aNodesArray[k] = aNewNode; - }//nodes loop - - // creates a corresponding element on existent nodes in new mesh - switch ( anElem->GetEntityType() ) { - case SMDSEntity_Polyhedra: - if ( const SMDS_VtkVolume* aVolume = - dynamic_cast (anElem)) - { - aNewElem = aNewMeshDS->AddPolyhedralVolume(aNodesArray, - aVolume->GetQuantities()); - elemsMap.insert(make_pair(anElem->GetID(), aNewElem->GetID())); - if( theCommonGroups ) - anIDsVolumes[anNbVolumes++] = aNewElem->GetID(); - } - break; - case SMDSEntity_Ball: - if ( const SMDS_BallElement* aBall = - dynamic_cast (anElem)) - { - aNewElem = aNewEditor.AddElement(aNodesArray, SMDSAbs_Ball, - /*isPoly=*/false, /*id=*/0, - aBall->GetDiameter() ); - elemsMap.insert(make_pair(anElem->GetID(), aNewElem->GetID())); - if( theCommonGroups ) - anIDsBalls[aNbBalls++] = aNewElem->GetID(); - } - break; - default: - { - aNewElem = aNewEditor.AddElement(aNodesArray, - anElemType, - anElem->IsPoly()); - elemsMap.insert(make_pair(anElem->GetID(), aNewElem->GetID())); - if( theCommonGroups ) { - if( anElemType == SMDSAbs_Edge ) - anIDsEdges[anNbEdges++] = aNewElem->GetID(); - else if( anElemType == SMDSAbs_Face ) - anIDsFaces[anNbFaces++] = aNewElem->GetID(); - else if( anElemType == SMDSAbs_Volume ) - anIDsVolumes[anNbVolumes++] = aNewElem->GetID(); - } - } - } - } //elems loop + SMESH_Mesh_i* aNewImpl = SMESH::DownCast( aNewMesh ); + if ( !aNewImpl ) + return aNewMesh._retn(); - // copy orphan nodes - SMDS_NodeIteratorPtr itNodes = anInitMeshDS->nodesIterator(); - while ( itNodes->more() ) - { - const SMDS_MeshNode* aNode = itNodes->next(); - if ( aNode->NbInverseElements() == 0 ) - { - const SMDS_MeshNode* aNewNode = - aNewMeshDS->AddNode(aNode->X(), aNode->Y(), aNode->Z()); - nodesMap.insert( make_pair(aNode->GetID(), aNewNode->GetID()) ); - if( theCommonGroups ) - anIDsNodes[anNbNodes++] = aNewNode->GetID(); - } - } + ::SMESH_Mesh& aLocMesh = aNewImpl->GetImpl(); + SMESHDS_Mesh* aNewMeshDS = aLocMesh.GetMeshDS(); + TGroupsMap aGroupsMap; + TListOfNewGroups aListOfNewGroups; + ::SMESH_MeshEditor aNewEditor(&aLocMesh); + SMESH::ListOfGroups_var aListOfGroups; - aListOfGroups = anInitImpl->GetGroups(); - SMESH::SMESH_GroupBase_ptr aGroup; + ::SMESH_MeshEditor::ElemFeatures elemType; + std::vector aNodesArray; - // loop on groups of mesh - SMESH::long_array_var anInitIDs = new SMESH::long_array(); - SMESH::long_array_var anNewIDs = new SMESH::long_array(); - SMESH::SMESH_Group_var aNewGroup; + // loop on sub-meshes + for ( CORBA::ULong i = 0; i < theMeshesArray.length(); i++) + { + if ( CORBA::is_nil( theMeshesArray[i] )) continue; + SMESH::SMESH_Mesh_var anInitMesh = theMeshesArray[i]->GetMesh(); + if ( anInitMesh->_is_nil() ) continue; + SMESH_Mesh_i* anInitImpl = SMESH::DownCast( anInitMesh ); + if ( !anInitImpl ) continue; + anInitImpl->Load(); + + //::SMESH_Mesh& aInitLocMesh = anInitImpl->GetImpl(); + //SMESHDS_Mesh* anInitMeshDS = aInitLocMesh.GetMeshDS(); + + // remember nb of elements before filling in + SMESH::long_array_var prevState = aNewMesh->GetNbElementsByType(); + + typedef std::map TEEMap; + TEEMap elemsMap, nodesMap; + + // loop on elements of a sub-mesh + SMDS_ElemIteratorPtr itElems = anInitImpl->GetElements( theMeshesArray[i], SMESH::ALL ); + const SMDS_MeshElement* anElem; + const SMDS_MeshElement* aNewElem; + const SMDS_MeshNode* aNode; + const SMDS_MeshNode* aNewNode; + int anElemNbNodes; + + while ( itElems->more() ) + { + anElem = itElems->next(); + anElemNbNodes = anElem->NbNodes(); + aNodesArray.resize( anElemNbNodes ); - SMESH::ElementType aGroupType; - CORBA::String_var aGroupName; - if ( theCommonGroups ) { - for(aGroupType=SMESH::NODE;aGroupType<=SMESH::BALL;aGroupType=(SMESH::ElementType)(aGroupType+1)) { - string str = "Gr"; - SALOMEDS::SObject_wrap aMeshSObj = ObjectToSObject( myCurrentStudy, anInitMesh ); - if(aMeshSObj) - str += aMeshSObj->GetName(); - str += "_"; + // loop on nodes of an element + SMDS_ElemIteratorPtr itNodes = anElem->nodesIterator(); + for ( int k = 0; itNodes->more(); k++) + { + aNode = static_cast( itNodes->next() ); + TEEMap::iterator n2nnIt = nodesMap.find( aNode ); + if ( n2nnIt == nodesMap.end() ) + { + aNewNode = aNewMeshDS->AddNode(aNode->X(), aNode->Y(), aNode->Z()); + nodesMap.insert( make_pair( aNode, aNewNode )); + } + else + { + aNewNode = static_cast( n2nnIt->second ); + } + aNodesArray[k] = aNewNode; + } - int anLen = 0; + // creates a corresponding element on existent nodes in new mesh + if ( anElem->GetType() == SMDSAbs_Node ) + aNewElem = 0; + else + aNewElem = + aNewEditor.AddElement( aNodesArray, elemType.Init( anElem, /*basicOnly=*/false )); - switch(aGroupType) { - case SMESH::NODE: - str += "Nodes"; - anIDsNodes->length(anNbNodes); - anLen = anNbNodes; - break; - case SMESH::EDGE: - str += "Edges"; - anIDsEdges->length(anNbEdges); - anLen = anNbEdges; - break; - case SMESH::FACE: - str += "Faces"; - anIDsFaces->length(anNbFaces); - anLen = anNbFaces; - break; - case SMESH::VOLUME: - str += "Volumes"; - anIDsVolumes->length(anNbVolumes); - anLen = anNbVolumes; - break; - case SMESH::BALL: - str += "Balls"; - anIDsBalls->length(aNbBalls); - anLen = aNbBalls; - break; - default: - break; - } + if ( aNewElem ) + elemsMap.insert( make_pair( anElem, aNewElem )); - if(anLen) { - aGroupName = str.c_str(); + } //elems loop - // add a new group in the mesh - aNewGroup = aNewImpl->CreateGroup(aGroupType, aGroupName); + aNewEditor.ClearLastCreated(); // forget the history - switch(aGroupType) { - case SMESH::NODE: - aNewGroup->Add( anIDsNodes ); - break; - case SMESH::EDGE: - aNewGroup->Add( anIDsEdges ); - break; - case SMESH::FACE: - aNewGroup->Add( anIDsFaces ); - break; - case SMESH::VOLUME: - aNewGroup->Add( anIDsVolumes ); - break; - case SMESH::BALL: - aNewGroup->Add( anIDsBalls ); - break; - default: - break; - } - aListOfNewGroups.clear(); - aListOfNewGroups.push_back(aNewGroup); - aGroupsMap.insert(make_pair( make_pair(aGroupName, aGroupType), aListOfNewGroups )); - } + // create groups of just added elements + SMESH::SMESH_Group_var aNewGroup; + SMESH::ElementType aGroupType; + if ( theCommonGroups ) + { + SMESH::long_array_var curState = aNewMesh->GetNbElementsByType(); + + for( aGroupType = SMESH::NODE; + aGroupType < SMESH::NB_ELEMENT_TYPES; + aGroupType = (SMESH::ElementType)( aGroupType + 1 )) + { + if ( curState[ aGroupType ] <= prevState[ aGroupType ]) + continue; + + // make a group name + const char* typeNames[] = { "All","Nodes","Edges","Faces","Volumes","0DElems","Balls" }; + { // check of typeNames: compilation failure mains that NB_ELEMENT_TYPES changed: + const int nbNames = sizeof(typeNames) / sizeof(const char*); + int _assert[( nbNames == SMESH::NB_ELEMENT_TYPES ) ? 2 : -1 ]; _assert[0]=_assert[1]=0; + } + string groupName = "Gr"; + SALOMEDS::SObject_wrap aMeshSObj = ObjectToSObject( myCurrentStudy, theMeshesArray[i] ); + if ( aMeshSObj ) { + CORBA::String_var name = aMeshSObj->GetName(); + groupName += name; + } + groupName += "_"; + groupName += typeNames[ aGroupType ]; + + // make and fill a group + TEEMap & e2neMap = ( aGroupType == SMESH::NODE ) ? nodesMap : elemsMap; + aNewGroup = aNewImpl->CreateGroup( aGroupType, groupName.c_str() ); + if ( SMESH_Group_i* grp_i = SMESH::DownCast( aNewGroup )) + { + if ( SMESHDS_Group* grpDS = dynamic_cast( grp_i->GetGroupDS() )) + { + TEEMap::iterator e2neIt = e2neMap.begin(); + for ( ; e2neIt != e2neMap.end(); ++e2neIt ) + { + aNewElem = e2neIt->second; + if ( aNewElem->GetType() == grpDS->GetType() ) + { + grpDS->Add( aNewElem ); + + if ( prevState[ aGroupType ]++ >= curState[ aGroupType ] ) + break; } } + } + } + aListOfNewGroups.clear(); + aListOfNewGroups.push_back(aNewGroup); + aGroupsMap.insert(make_pair( make_pair(groupName, aGroupType), aListOfNewGroups )); + } + } - // check that current group name and type don't have identical ones in union mesh - for (int iG = 0; iG < aListOfGroups->length(); iG++) { - aGroup = aListOfGroups[iG]; - aListOfNewGroups.clear(); - aGroupType = aGroup->GetType(); - aGroupName = aGroup->GetName(); - - TGroupsMap::iterator anIter = aGroupsMap.find(make_pair(aGroupName, aGroupType)); - - // convert a list of IDs - anInitIDs = aGroup->GetListOfID(); - anNewIDs->length(anInitIDs->length()); - if ( aGroupType == SMESH::NODE ) - for (int j = 0; j < anInitIDs->length(); j++) { - anNewIDs[j] = nodesMap.find(anInitIDs[j])->second; - } - else - for (int j = 0; j < anInitIDs->length(); j++) { - anNewIDs[j] = elemsMap.find(anInitIDs[j])->second; - } + if ( SMESH_Mesh_i* anSrcImpl = SMESH::DownCast( theMeshesArray[i] )) + { + // copy orphan nodes + if ( anSrcImpl->NbNodes() > (int)nodesMap.size() ) + { + SMDS_ElemIteratorPtr itNodes = anInitImpl->GetElements( theMeshesArray[i], SMESH::NODE ); + while ( itNodes->more() ) + { + const SMDS_MeshNode* aNode = static_cast< const SMDS_MeshNode* >( itNodes->next() ); + if ( aNode->NbInverseElements() == 0 ) + { + aNewNode = aNewMeshDS->AddNode(aNode->X(), aNode->Y(), aNode->Z()); + nodesMap.insert( make_pair( aNode, aNewNode )); + } + } + } - // check that current group name and type don't have identical ones in union mesh - if ( anIter == aGroupsMap.end() ) { - // add a new group in the mesh - aNewGroup = aNewImpl->CreateGroup(aGroupType, aGroupName); - // add elements into new group - aNewGroup->Add( anNewIDs ); + // copy groups - aListOfNewGroups.push_back(aNewGroup); - aGroupsMap.insert(make_pair( make_pair(aGroupName, aGroupType), aListOfNewGroups )); - } + SMESH::SMESH_GroupBase_ptr aGroup; + CORBA::String_var aGroupName; + SMESH::long_array_var anNewIDs = new SMESH::long_array(); - else if ( theUniteIdenticalGroups ) { - // unite identical groups - TListOfNewGroups& aNewGroups = anIter->second; - aNewGroups.front()->Add( anNewIDs ); - } + // loop on groups of a source mesh + aListOfGroups = anSrcImpl->GetGroups(); + for ( CORBA::ULong iG = 0; iG < aListOfGroups->length(); iG++ ) + { + aGroup = aListOfGroups[iG]; + aGroupType = aGroup->GetType(); + aGroupName = aGroup->GetName(); + string aName = aGroupName.in(); + + // convert a list of IDs + anNewIDs->length( aGroup->Size() ); + TEEMap & e2neMap = ( aGroupType == SMESH::NODE ) ? nodesMap : elemsMap; + SMDS_ElemIteratorPtr itGrElems = anSrcImpl->GetElements( aGroup, SMESH::ALL ); + int iElem = 0; + while ( itGrElems->more() ) + { + anElem = itGrElems->next(); + TEEMap::iterator e2neIt = e2neMap.find( anElem ); + if ( e2neIt != e2neMap.end() ) + anNewIDs[ iElem++ ] = e2neIt->second->GetID(); + } + anNewIDs->length( iElem ); + + // check a current group name and type don't have identical ones in final mesh + aListOfNewGroups.clear(); + TGroupsMap::iterator anIter = aGroupsMap.find( make_pair( aName, aGroupType )); + if ( anIter == aGroupsMap.end() ) { + // add a new group in the mesh + aNewGroup = aNewImpl->CreateGroup( aGroupType, aGroupName.in() ); + // add elements into new group + aNewGroup->Add( anNewIDs ); + + aListOfNewGroups.push_back(aNewGroup); + aGroupsMap.insert(make_pair( make_pair(aName, aGroupType), aListOfNewGroups )); + } - else { - // rename identical groups - aNewGroup = aNewImpl->CreateGroup(aGroupType, aGroupName); - aNewGroup->Add( anNewIDs ); + else if ( theUniteIdenticalGroups ) { + // unite identical groups + TListOfNewGroups& aNewGroups = anIter->second; + aNewGroups.front()->Add( anNewIDs ); + } - TListOfNewGroups& aNewGroups = anIter->second; - string aNewGroupName; - if (aNewGroups.size() == 1) { - aNewGroupName = string(aGroupName) + "_1"; - aNewGroups.front()->SetName(aNewGroupName.c_str()); - } - char aGroupNum[128]; - sprintf(aGroupNum, "%u", aNewGroups.size()+1); - aNewGroupName = string(aGroupName) + "_" + string(aGroupNum); - aNewGroup->SetName(aNewGroupName.c_str()); - aNewGroups.push_back(aNewGroup); - } - }//groups loop + else { + // rename identical groups + aNewGroup = aNewImpl->CreateGroup(aGroupType, aGroupName.in()); + aNewGroup->Add( anNewIDs ); + + TListOfNewGroups& aNewGroups = anIter->second; + string aNewGroupName; + if (aNewGroups.size() == 1) { + aNewGroupName = aName + "_1"; + aNewGroups.front()->SetName(aNewGroupName.c_str()); } + char aGroupNum[128]; + sprintf(aGroupNum, "%u", (unsigned int)aNewGroups.size()+1); + aNewGroupName = aName + "_" + string(aGroupNum); + aNewGroup->SetName(aNewGroupName.c_str()); + aNewGroups.push_back(aNewGroup); } - }//meshes loop - - if (theMergeNodesAndElements) { - // merge nodes - TIDSortedNodeSet aMeshNodes; // no input nodes - SMESH_MeshEditor::TListOfListOfNodes aGroupsOfNodes; - aNewEditor.FindCoincidentNodes( aMeshNodes, theMergeTolerance, aGroupsOfNodes ); - aNewEditor.MergeNodes( aGroupsOfNodes ); - // merge elements - aNewEditor.MergeEqualElements(); - } - } + } //groups loop + } // if an IDSource is a mesh + } //meshes loop + + if (theMergeNodesAndElements) // merge nodes + { + TIDSortedNodeSet aMeshNodes; // no input nodes + SMESH_MeshEditor::TListOfListOfNodes aGroupsOfNodes; + aNewEditor.FindCoincidentNodes( aMeshNodes, theMergeTolerance, aGroupsOfNodes, + /*SeparateCornersAndMedium=*/ false ); + aNewEditor.MergeNodes( aGroupsOfNodes ); + // merge elements + aNewEditor.MergeEqualElements(); } // Update Python script - aPythonDump << aNewMesh << " = " << this; - if( !theCommonGroups ) - aPythonDump << ".Concatenate("; - else - aPythonDump << ".ConcatenateWithGroups("; - aPythonDump << "["; - for ( int i = 0; i < theMeshesArray.length(); i++) { + aPythonDump << aNewMesh << " = " << this << "." + << ( theCommonGroups ? "ConcatenateWithGroups" : "Concatenate" ) + << "(["; + for ( CORBA::ULong i = 0; i < theMeshesArray.length(); i++) { if (i > 0) aPythonDump << ", "; aPythonDump << theMeshesArray[i]; } @@ -2636,6 +2722,7 @@ SMESH_Gen_i::ConcatenateCommon(const SMESH::mesh_array& theMeshesArray, if (aNewMeshDS) aNewMeshDS->Modified(); + return aNewMesh._retn(); } @@ -2685,6 +2772,7 @@ SMESH::SMESH_Mesh_ptr SMESH_Gen_i::CopyMesh(SMESH::SMESH_IDSource_ptr meshPart, } SMESHDS_Mesh* newMeshDS = newMesh_i->GetImpl().GetMeshDS(); ::SMESH_MeshEditor editor( &newMesh_i->GetImpl() ); + ::SMESH_MeshEditor::ElemFeatures elemType; // 3. Get elements to copy @@ -2702,13 +2790,13 @@ SMESH::SMESH_Mesh_ptr SMESH_Gen_i::CopyMesh(SMESH::SMESH_IDSource_ptr meshPart, SMESH::long_array_var ids = meshPart->GetIDs(); if ( srcElemTypes->length() == 1 && srcElemTypes[0] == SMESH::NODE ) // group of nodes { - for (int i=0; i < ids->length(); i++) + for ( CORBA::ULong i=0; i < ids->length(); i++ ) if ( const SMDS_MeshElement * elem = srcMeshDS->FindNode( ids[i] )) srcElems.insert( elem ); } else { - for (int i=0; i < ids->length(); i++) + for ( CORBA::ULong i = 0; i < ids->length(); i++ ) if ( const SMDS_MeshElement * elem = srcMeshDS->FindElement( ids[i] )) srcElems.insert( elem ); } @@ -2756,30 +2844,12 @@ SMESH::SMESH_Mesh_ptr SMESH_Gen_i::CopyMesh(SMESH::SMESH_IDSource_ptr meshPart, // add elements if ( elem->GetType() != SMDSAbs_Node ) { - int ID = toKeepIDs ? elem->GetID() : 0; - const SMDS_MeshElement * newElem; - switch ( elem->GetEntityType() ) { - case SMDSEntity_Polyhedra: - if ( toKeepIDs ) - newElem = editor.GetMeshDS()-> - AddPolyhedralVolumeWithID( nodes, - static_cast(elem)->GetQuantities(), - ID); - else - newElem = editor.GetMeshDS()-> - AddPolyhedralVolume( nodes, - static_cast(elem)->GetQuantities()); - break; - case SMDSEntity_Ball: - newElem = editor.AddElement( nodes, SMDSAbs_Ball, false, ID, - static_cast(elem)->GetDiameter()); - break; - default: - newElem = editor.AddElement( nodes,elem->GetType(),elem->IsPoly(),ID); + elemType.Init( elem, /*basicOnly=*/false ); + if ( toKeepIDs ) elemType.SetID( elem->GetID() ); + const SMDS_MeshElement * newElem = editor.AddElement( nodes, elemType ); if ( toCopyGroups && !toKeepIDs ) e2eMapByType[ elem->GetType() ].insert( make_pair( elem, newElem )); - } } } // while ( srcElemIt->more() ) @@ -2939,8 +3009,6 @@ SALOMEDS::TMPFile* SMESH_Gen_i::Save( SALOMEDS::SComponent_ptr theComponent, const char* theURL, bool isMultiFile ) { - INFOS( "SMESH_Gen_i::Save" ); - // ASSERT( theComponent->GetStudy()->StudyId() == myCurrentStudy->StudyId() ) // san -- in case differs from theComponent's study, // use that of the component @@ -3019,7 +3087,7 @@ SALOMEDS::TMPFile* SMESH_Gen_i::Save( SALOMEDS::SComponent_ptr theComponent, TPythonDump pd; // not to dump GetGroups() SMESH::ListOfGroups_var groups = myMesh->GetGroups(); pd << ""; // to avoid optimizing pd out - for ( int i = 0; i < groups->length(); ++i ) + for ( CORBA::ULong i = 0; i < groups->length(); ++i ) { SMESH_GroupBase_i* grImpl = SMESH::DownCast( groups[i]); if ( grImpl ) @@ -3074,7 +3142,7 @@ SALOMEDS::TMPFile* SMESH_Gen_i::Save( SALOMEDS::SComponent_ptr theComponent, if( libname_len > 4 ) libname.resize( libname_len - 4 ); #else - // PAL17753 (Regresion: missing hypothesis in restored study) + // PAL17753 (Regression: missing hypothesis in restored study) // "lib" also should be removed from the beginning //if( libname_len > 3 ) //libname.resize( libname_len - 3 ); @@ -3143,7 +3211,7 @@ SALOMEDS::TMPFile* SMESH_Gen_i::Save( SALOMEDS::SComponent_ptr theComponent, if( libname_len > 4 ) libname.resize( libname_len - 4 ); #else - // PAL17753 (Regresion: missing hypothesis in restored study) + // PAL17753 (Regression: missing hypothesis in restored study) // "lib" also should be removed from the beginning //if( libname_len > 3 ) //libname.resize( libname_len - 3 ); @@ -3665,7 +3733,7 @@ SALOMEDS::TMPFile* SMESH_Gen_i::Save( SALOMEDS::SComponent_ptr theComponent, myWriter.AddGroup( aGeomGrp ); } } - else if ( SMESH_GroupOnFilter_i* aFilterGrp_i = + else if ( SMESH_GroupOnFilter_i* aFilterGrp_i = dynamic_cast( myGroupImpl )) { std::string str = aFilterGrp_i->FilterToString(); @@ -3882,7 +3950,6 @@ SALOMEDS::TMPFile* SMESH_Gen_i::Save( SALOMEDS::SComponent_ptr theComponent, if ( !isMultiFile ) SALOMEDS_Tool::RemoveTemporaryFiles( tmpDir.ToCString(), aFileSeq.in(), true ); - INFOS( "SMESH_Gen_i::Save() completed" ); return aStreamFile._retn(); } @@ -3949,8 +4016,6 @@ bool SMESH_Gen_i::Load( SALOMEDS::SComponent_ptr theComponent, const char* theURL, bool isMultiFile ) { - INFOS( "SMESH_Gen_i::Load" ); - if ( theComponent->GetStudy()->StudyId() != GetCurrentStudyID() ) SetCurrentStudy( theComponent->GetStudy() ); @@ -3967,11 +4032,6 @@ bool SMESH_Gen_i::Load( SALOMEDS::SComponent_ptr theComponent, TCollection_AsciiString tmpDir = ( char* )( isMultiFile ? theURL : SALOMEDS_Tool::GetTmpDir().c_str() ); - INFOS( "THE URL++++++++++++++" ); - INFOS( theURL ); - INFOS( "THE TMP PATH+++++++++" ); - INFOS( tmpDir ); - // Convert the stream into sequence of files to process SALOMEDS::ListOfFileNames_var aFileSeq = SALOMEDS_Tool::PutStreamToFiles( theStream, tmpDir.ToCString(), @@ -4021,6 +4081,7 @@ bool SMESH_Gen_i::Load( SALOMEDS::SComponent_ptr theComponent, list< pair< SMESH_Hypothesis_i*, string > > hypDataList; list< pair< SMESH_Mesh_i*, HDFgroup* > > meshGroupList; + list< SMESH::Filter_var > filters; // get total number of top-level groups int aNbGroups = aFile->nInternalObjects(); @@ -4439,7 +4500,7 @@ bool SMESH_Gen_i::Load( SALOMEDS::SComponent_ptr theComponent, // --> try to find SUB-MESHES containers for each type of submesh for ( int j = GetSubMeshOnVertexTag(); j <= GetSubMeshOnCompoundTag(); j++ ) { - const char* name_meshgroup; + const char* name_meshgroup = 0; if ( j == GetSubMeshOnVertexTag() ) name_meshgroup = "SubMeshes On Vertex"; else if ( j == GetSubMeshOnEdgeTag() ) @@ -4663,6 +4724,7 @@ bool SMESH_Gen_i::Load( SALOMEDS::SComponent_ptr theComponent, if ( strlen( persistStr ) > 0 ) { filter = SMESH_GroupOnFilter_i::StringToFilter( persistStr ); predicate = SMESH_GroupOnFilter_i::GetPredicate( filter ); + filters.push_back( filter ); } } @@ -4709,11 +4771,6 @@ bool SMESH_Gen_i::Load( SALOMEDS::SComponent_ptr theComponent, Quantity_Color aColor( anRGB[0], anRGB[1], anRGB[2], Quantity_TOC_RGB ); aGroupBaseDS->SetColor( aColor ); } - - // Fill group with contents from MED file - // SMESHDS_Group* aGrp = dynamic_cast( aGroupBaseDS ); - // if ( aGrp ) - // myReader.GetGroup( aGrp ); } } aGroup->CloseOnDisk(); @@ -4772,6 +4829,13 @@ bool SMESH_Gen_i::Load( SALOMEDS::SComponent_ptr theComponent, ComputeStateEngine (SMESH_subMesh::SUBMESH_RESTORED); } + // let filters detect dependency on mesh groups via FT_BelongToMeshGroup predicate (22877) + list< SMESH::Filter_var >::iterator f = filters.begin(); + for ( ; f != filters.end(); ++f ) + if ( SMESH::Filter_i * fi = SMESH::DownCast< SMESH::Filter_i*>( *f )) + fi->FindBaseObjects(); + + // close mesh group if(aTopGroup) aTopGroup->CloseOnDisk(); @@ -4808,13 +4872,12 @@ bool SMESH_Gen_i::Load( SALOMEDS::SComponent_ptr theComponent, if ( !useCaseBuilder->IsUseCaseNode( theComponent ) ) { useCaseBuilder->SetRootCurrent(); useCaseBuilder->Append( theComponent ); // component object is added as the top level item - SALOMEDS::ChildIterator_wrap it = study->NewChildIterator( theComponent ); + SALOMEDS::ChildIterator_wrap it = study->NewChildIterator( theComponent ); for (it->InitEx(true); it->More(); it->Next()) { useCaseBuilder->AppendTo( it->Value()->GetFather(), it->Value() ); } } - INFOS( "SMESH_Gen_i::Load completed" ); return true; } @@ -4844,7 +4907,7 @@ bool SMESH_Gen_i::LoadASCII( SALOMEDS::SComponent_ptr theComponent, _CORBA_Octet* buffer = new _CORBA_Octet[real_size]; char tmp[3]; tmp[2]='\0'; - int c = -1; + unsigned int c = -1; for ( int i = 0; i < real_size; i++ ) { memcpy( &(tmp[0]), &(theStream[i*3+1]), 2 ); @@ -4963,8 +5026,6 @@ int SMESH_Gen_i::RegisterObject(CORBA::Object_ptr theObject) { StudyContext* myStudyContext = GetCurrentStudyContext(); if ( myStudyContext && !CORBA::is_nil( theObject )) { - if (GetCurrentStudyID() == myImportedStudyId) - myImportedStudyChanged = true; CORBA::String_var iorString = GetORB()->object_to_string( theObject ); return myStudyContext->addObject( string( iorString.in() ) ); } @@ -5025,12 +5086,12 @@ char* SMESH_Gen_i::getVersion() //================================================================================= // function : Move() -// purpose : Moves objects to the specified position. +// purpose : Moves objects to the specified position. // Is used in the drag-n-drop functionality. //================================================================================= void SMESH_Gen_i::Move( const SMESH::sobject_list& what, - SALOMEDS::SObject_ptr where, - CORBA::Long row ) + SALOMEDS::SObject_ptr where, + CORBA::Long row ) { if ( CORBA::is_nil( where ) ) return; @@ -5040,7 +5101,7 @@ void SMESH_Gen_i::Move( const SMESH::sobject_list& what, SALOMEDS::SComponent_var father = where->GetFatherComponent(); std::string dataType = father->ComponentDataType(); if ( dataType != "SMESH" ) return; // not a SMESH component - + SALOMEDS::SObject_var objAfter; if ( row >= 0 && useCaseBuilder->HasChildren( where ) ) { // insert at given row -> find insertion position @@ -5051,8 +5112,8 @@ void SMESH_Gen_i::Move( const SMESH::sobject_list& what, objAfter = useCaseIt->Value(); } } - - for ( int i = 0; i < what.length(); i++ ) { + + for ( CORBA::ULong i = 0; i < what.length(); i++ ) { SALOMEDS::SObject_var sobj = what[i]; if ( CORBA::is_nil( sobj ) ) continue; // skip bad object // insert the object to the use case tree @@ -5062,10 +5123,18 @@ void SMESH_Gen_i::Move( const SMESH::sobject_list& what, useCaseBuilder->AppendTo( where, sobj ); // append to the end of list } } -//================================================================================= -// function : IsApplicable -// purpose : Return true if algorithm can be applied -//================================================================================= +//================================================================================ +/*! + * \brief Returns true if algorithm can be used to mesh a given geometry + * \param [in] theAlgoType - the algorithm type + * \param [in] theLibName - a name of the Plug-in library implementing the algorithm + * \param [in] theGeomObject - the geometry to mesh + * \param [in] toCheckAll - if \c True, returns \c True if all shapes are meshable, + * else, returns \c True if at least one shape is meshable + * \return CORBA::Boolean - can or can't + */ +//================================================================================ + CORBA::Boolean SMESH_Gen_i::IsApplicable ( const char* theAlgoType, const char* theLibName, GEOM::GEOM_Object_ptr theGeomObject, @@ -5075,12 +5144,12 @@ CORBA::Boolean SMESH_Gen_i::IsApplicable ( const char* theAlgoType, std::string aPlatformLibName; typedef GenericHypothesisCreator_i* (*GetHypothesisCreator)(const char*); - GenericHypothesisCreator_i* aCreator = getHypothesisCreator(theAlgoType, theLibName, aPlatformLibName); + GenericHypothesisCreator_i* aCreator = + getHypothesisCreator(theAlgoType, theLibName, aPlatformLibName); if (aCreator) { TopoDS_Shape shape = GeomObjectToShape( theGeomObject ); - if ( !shape.IsNull() ) - return aCreator->IsApplicable( shape, toCheckAll ); + return shape.IsNull() || aCreator->IsApplicable( shape, toCheckAll ); } else { @@ -5088,144 +5157,201 @@ CORBA::Boolean SMESH_Gen_i::IsApplicable ( const char* theAlgoType, } SMESH_CATCH( SMESH::doNothing ); + +#ifdef _DEBUG_ + cout << "SMESH_Gen_i::IsApplicable(): exception in " << ( theAlgoType ? theAlgoType : "") << endl; +#endif return true; } //================================================================================= -// function : importData -// purpose : imports mesh data file (the med one) into the SMESH internal data structure +// function : GetInsideSphere +// purpose : Collect indices of elements, which are located inside the sphere //================================================================================= -Engines::ListOfIdentifiers* SMESH_Gen_i::importData(CORBA::Long studyId, - Engines::DataContainer_ptr data, - const Engines::ListOfOptions& options) +SMESH::long_array* SMESH_Gen_i::GetInsideSphere( SMESH::SMESH_IDSource_ptr meshPart, + SMESH::ElementType theElemType, + CORBA::Double theX, + CORBA::Double theY, + CORBA::Double theZ, + CORBA::Double theR) { - Engines::ListOfIdentifiers_var aResultIds = new Engines::ListOfIdentifiers; - list aResultList; - - CORBA::Object_var aSMObject = myNS->Resolve( "/myStudyManager" ); - SALOMEDS::StudyManager_var aStudyManager = SALOMEDS::StudyManager::_narrow( aSMObject ); - SALOMEDS::Study_var aStudy = aStudyManager->GetStudyByID( studyId ); - SetCurrentStudy(aStudy); - - // load and store temporary imported file - string aFileName = Kernel_Utils::GetTmpFileName(); - aFileName += string(".") + data->extension(); - Engines::TMPFile* aFileStream = data->get(); - const char *aBuffer = (const char*)aFileStream->NP_data(); -#ifdef WIN32 - std::ofstream aFile(aFileName.c_str(), std::ios::binary); -#else - std::ofstream aFile(aFileName.c_str()); -#endif - aFile.write(aBuffer, aFileStream->length()); - aFile.close(); + SMESH::long_array_var aResult = new SMESH::long_array(); + if ( meshPart->_is_nil() ) + return aResult._retn(); - // Retrieve mesh names from the file - DriverMED_R_SMESHDS_Mesh aReader; - aReader.SetFile( aFileName ); - aReader.SetMeshId(-1); - Driver_Mesh::Status aStatus; - list aNames = aReader.GetMeshNames(aStatus); - SMESH::mesh_array_var aResult = new SMESH::mesh_array(); - SMESH::DriverMED_ReadStatus aStatus2 = (SMESH::DriverMED_ReadStatus)aStatus; - if (aStatus2 == SMESH::DRS_OK) { - // Iterate through all meshes and create mesh objects - for ( list::iterator it = aNames.begin(); it != aNames.end(); it++ ) { - // create mesh - SMESH::SMESH_Mesh_var mesh = createMesh(); + // 1. Create geometrical object + gp_Pnt aP( theX, theY, theZ ); + TopoDS_Shape aShape = BRepPrimAPI_MakeSphere( aP, theR ).Shape(); - // publish mesh in the study - SALOMEDS::SObject_var aSO; - if (CanPublishInStudy(mesh)) { - aSO = PublishMesh(aStudy, mesh.in(), (*it).c_str()); - aResultList.push_back(aSO->GetID()); - } - // Read mesh data (groups are published automatically by ImportMEDFile()) - SMESH_Mesh_i* meshServant = dynamic_cast( GetServant( mesh ).in() ); - ASSERT( meshServant ); - meshServant->ImportMEDFile( aFileName.c_str(), (*it).c_str() ); - //meshServant->GetImpl().GetMeshDS()->Modified(); + std::vector lst =_GetInside(meshPart, theElemType, aShape); + + if ( lst.size() > 0 ) { + aResult->length( lst.size() ); + for ( size_t i = 0; i < lst.size(); i++ ) { + aResult[i] = lst[i]; } - } else { - MESSAGE("Opening MED file problems "<_is_nil() ) + return aResult._retn(); - if (!aResultList.empty()) { - aResultIds->length(aResultList.size()); - list::iterator aListIter = aResultList.begin(); - for(int a = 0; aListIter != aResultList.end(); aListIter++, a++) - aResultIds[a] = aListIter->c_str(); - } - - myImportedStudyId = studyId; - myImportedStudyChanged = false; + TopoDS_Shape aShape = BRepPrimAPI_MakeBox( gp_Pnt( theX1, theY1, theZ1 ), gp_Pnt( theX2, theY2, theZ2 ) ).Shape(); + + std::vector lst =_GetInside(meshPart, theElemType, aShape); - return aResultIds._retn(); + if( lst.size() > 0 ) { + aResult->length( lst.size() ); + for ( size_t i = 0; i < lst.size(); i++ ) { + aResult[i] = lst[i]; + } + } + return aResult._retn(); } -//================================================================================= -// function : getModifiedData -// purpose : exports all geometry of this GEOM module into one BRep file -//================================================================================= -Engines::ListOfData* SMESH_Gen_i::getModifiedData(CORBA::Long studyId) -{ - Engines::ListOfData_var aResult = new Engines::ListOfData; - - if (!myImportedStudyChanged) { - INFOS("SMESH module data was not changed") +SMESH::long_array* SMESH_Gen_i::GetInsideCylinder( SMESH::SMESH_IDSource_ptr meshPart, + SMESH::ElementType theElemType, + CORBA::Double theX, + CORBA::Double theY, + CORBA::Double theZ, + CORBA::Double theDX, + CORBA::Double theDY, + CORBA::Double theDZ, + CORBA::Double theH, + CORBA::Double theR ){ + SMESH::long_array_var aResult = new SMESH::long_array(); + if( meshPart->_is_nil() ) return aResult._retn(); + + gp_Pnt aP( theX, theY, theZ ); + gp_Vec aV( theDX, theDY, theDZ ); + gp_Ax2 anAxes (aP, aV); + + TopoDS_Shape aShape = BRepPrimAPI_MakeCylinder(anAxes, theR, Abs(theH)).Shape(); + + std::vector lst =_GetInside(meshPart, theElemType, aShape); + + if( lst.size() > 0 ) { + aResult->length( lst.size() ); + for ( size_t i = 0; i < lst.size(); i++ ) { + aResult[i] = lst[i]; + } } + return aResult._retn(); +} - CORBA::Object_var aSMObject = myNS->Resolve("/myStudyManager"); - SALOMEDS::StudyManager_var aStudyManager = SALOMEDS::StudyManager::_narrow(aSMObject); - SALOMEDS::Study_var aStudy = aStudyManager->GetStudyByID(studyId); - SetCurrentStudy(aStudy); - SALOMEDS::SComponent_var aComponent = aStudy->FindComponent("SMESH"); - - if (CORBA::is_nil(aComponent)) +SMESH::long_array* SMESH_Gen_i::GetInside( SMESH::SMESH_IDSource_ptr meshPart, + SMESH::ElementType theElemType, + GEOM::GEOM_Object_ptr theGeom, + CORBA::Double theTolerance ) { + SMESH::long_array_var aResult = new SMESH::long_array(); + if( meshPart->_is_nil() || theGeom->_is_nil() ) return aResult._retn(); - std::string aFullPath(Kernel_Utils::GetTmpFileName()); - aFullPath += ".med"; - StudyContext* myStudyContext = GetCurrentStudyContext(); + TopoDS_Shape aShape = GeomObjectToShape( theGeom ); + + std::vector lst =_GetInside(meshPart, theElemType, aShape, &theTolerance); + + if( lst.size() > 0 ) { + aResult->length( lst.size() ); + for ( size_t i = 0; i < lst.size(); i++ ) { + aResult[i] = lst[i]; + } + } + return aResult._retn(); +} + + + +std::vector SMESH_Gen_i::_GetInside( SMESH::SMESH_IDSource_ptr meshPart, + SMESH::ElementType theElemType, + TopoDS_Shape& aShape, + double* theTolerance) { - SALOMEDS::ChildIterator_var anIter = aStudy->NewChildIterator(aComponent); // check only published meshes - int aNumMeshes = 0; // number of meshes in result - for(; anIter->More(); anIter->Next()) { - SALOMEDS::SObject_var aSO = anIter->Value(); - CORBA::Object_var anObj = aSO->GetObject(); - if (!CORBA::is_nil(anObj)) { - SMESH::SMESH_Mesh_var aCORBAMesh = SMESH::SMESH_Mesh::_narrow(anObj); - if(!aCORBAMesh->_is_nil()) { - SMESH_Mesh_i* myImpl = dynamic_cast(GetServant(aCORBAMesh).in()); - if (myImpl) { - myImpl->Load(); - SMESH_Mesh& aMesh = myImpl->GetImpl(); - CORBA::String_var objName = aSO->GetName(); - aMesh.ExportMED(aFullPath.c_str(), objName.in(), false, MED::eV2_2, 0); - aNumMeshes++; + std::vector res; + SMESH::SMESH_Mesh_var mesh = meshPart->GetMesh(); + + if ( mesh->_is_nil() ) + return res; + + SMESH_Mesh_i* anImpl = dynamic_cast( GetServant( mesh ).in() ); + if ( !anImpl ) + return res; + + const SMDS_Mesh* meshDS = anImpl->GetImpl().GetMeshDS(); + + if ( !meshDS ) + return res; + + SMDSAbs_ElementType aType = SMDSAbs_ElementType(theElemType); + SMESH::Controls::ElementsOnShape* anElementsOnShape = new SMESH::Controls::ElementsOnShape(); + anElementsOnShape->SetAllNodes( true ); + anElementsOnShape->SetMesh( meshDS ); + anElementsOnShape->SetShape( aShape, aType ); + + if(theTolerance) + anElementsOnShape->SetTolerance(*theTolerance); + + SMESH::SMESH_Mesh_var msource = SMESH::SMESH_Mesh::_narrow(meshPart); + if ( !msource->_is_nil() ) { // Mesh case + SMDS_ElemIteratorPtr elemIt = meshDS->elementsIterator( aType ); + if ( elemIt ) { + while ( elemIt->more() ) { + const SMDS_MeshElement* anElem = elemIt->next(); + long anId = anElem->GetID(); + if ( anElementsOnShape->IsSatisfy( anId ) ) + res.push_back( anId ); + } + } + } + SMESH::SMESH_Group_var gsource = SMESH::SMESH_Group::_narrow(meshPart); + if ( !gsource->_is_nil() ) { + if(theElemType == SMESH::NODE) { + SMESH::long_array_var nodes = gsource->GetNodeIDs(); + for ( CORBA::ULong i = 0; i < nodes->length(); ++i ) { + if ( const SMDS_MeshNode* node = meshDS->FindNode( nodes[i] )) { + long anId = node->GetID(); + if ( anElementsOnShape->IsSatisfy( anId ) ) + res.push_back( anId ); + } + } + } else if (gsource->GetType() == theElemType || theElemType == SMESH::ALL ) { + SMESH::long_array_var elems = gsource->GetListOfID(); + for ( CORBA::ULong i = 0; i < elems->length(); ++i ) { + if ( const SMDS_MeshElement* elem = meshDS->FindElement( elems[i] )) { + long anId = elem->GetID(); + if ( anElementsOnShape->IsSatisfy( anId ) ) + res.push_back( anId ); } } } } - if (aNumMeshes > 0) { // prepare a container to store files - INFOS("Write "<length(1); - Engines::DataContainer_var aData = (new Engines_DataContainer_i( - aFullPath.c_str(), "", "", true))->_this(); - aResult[0] = aData; + SMESH::SMESH_subMesh_var smsource = SMESH::SMESH_subMesh::_narrow(meshPart); + if ( !smsource->_is_nil() ) { + SMESH::long_array_var elems = smsource->GetElementsByType( theElemType ); + for ( CORBA::ULong i = 0; i < elems->length(); ++i ) { + const SMDS_MeshElement* elem = ( theElemType == SMESH::NODE ) ? meshDS->FindNode( elems[i] ) : meshDS->FindElement( elems[i] ); + if (elem) { + long anId = elem->GetID(); + if ( anElementsOnShape->IsSatisfy( anId ) ) + res.push_back( anId ); + } + } } - return aResult._retn(); + return res; } + //============================================================================= /*! * SMESHEngine_factory