-// Copyright (C) 2007-2022 CEA/DEN, EDF R&D, OPEN CASCADE
+// Copyright (C) 2007-2024 CEA, EDF, OPEN CASCADE
//
// Copyright (C) 2003-2007 OPEN CASCADE, EADS/CCR, LIP6, CEA/DEN,
// CEDRAT, EDF R&D, LEG, PRINCIPIA R&D, BUREAU VERITAS
#include "SMESH_Hypothesis.hxx"
#include "SMESH_Hypothesis_i.hxx"
#include "SMESH_Mesh.hxx"
+#include "SMESH_ParallelMesh.hxx"
#include "SMESH_MeshEditor.hxx"
#include "SMESH_Mesh_i.hxx"
+#include <SMESH_SequentialMesh_i.hxx>
+#include "SMESH_ParallelMesh_i.hxx"
#include "SMESH_PreMeshInfo.hxx"
#include "SMESH_PythonDump.hxx"
#include "SMESH_ControlsDef.hxx"
#include <SMESH_BoostTxtArchive.hxx>
+#include <SMESH_SequentialMesh_i.hxx>
+#include <SMESH_ParallelMesh_i.hxx>
+#include "SMESH_Meshio.h"
// to pass CORBA exception through SMESH_TRY
#define SMY_OWN_CATCH catch( SALOME::SALOME_Exception& se ) { throw se; }
#define NUM_TMP_FILES 2
-#ifdef _DEBUG_
-static int MYDEBUG = 0;
-#else
-static int MYDEBUG = 0;
-#endif
-
// Static variables definition
GEOM::GEOM_Gen_var SMESH_Gen_i::myGeomGen;
CORBA::ORB_var SMESH_Gen_i::myOrb;
thePlatformLibName = aPlatformLibName;
Unexpect aCatch(SALOME_SalomeException);
- if(MYDEBUG) MESSAGE( "Create Hypothesis <" << theHypName << "> from " << aPlatformLibName);
+ MESSAGE( "Create Hypothesis <" << theHypName << "> from " << aPlatformLibName);
typedef GenericHypothesisCreator_i* (*GetHypothesisCreator)(const char* );
GenericHypothesisCreator_i* aCreator;
if (myHypCreatorMap.find(string(theHypName)) == myHypCreatorMap.end())
{
// load plugin library
- if(MYDEBUG) MESSAGE("Loading server meshers plugin library ...");
+ MESSAGE("Loading server meshers plugin library ...");
#ifdef WIN32
# ifdef UNICODE
const wchar_t* path = Kernel_Utils::decode_s(aPlatformLibName);
}
// get method, returning hypothesis creator
- if(MYDEBUG) MESSAGE("Find GetHypothesisCreator() method ...");
+ MESSAGE("Find GetHypothesisCreator() method ...");
GetHypothesisCreator procHandle =
(GetHypothesisCreator)GetProc( libHandle, "GetHypothesisCreator" );
if (!procHandle)
}
// get hypothesis creator
- if(MYDEBUG) MESSAGE("Get Hypothesis Creator for " << theHypName);
+ MESSAGE("Get Hypothesis Creator for " << theHypName);
aCreator = procHandle(theHypName);
if (!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 { (void)nextId; } // avoid "unused variable" warning in release mode
+ MESSAGE( "Add hypo to map with id = "<< nextId );
}
return hypothesis_i._retn();
}
SMESH::SMESH_Mesh_ptr SMESH_Gen_i::createMesh()
{
Unexpect aCatch(SALOME_SalomeException);
- if(MYDEBUG) MESSAGE( "SMESH_Gen_i::createMesh" );
+ MESSAGE( "SMESH_Gen_i::createMesh" );
// Get or create the GEOM_Client instance
try {
// create a new mesh object servant, store it in a map in study context
SMESH_Mesh_i* meshServant = new SMESH_Mesh_i( GetPOA(), this );
// create a new mesh object
- if(MYDEBUG) MESSAGE("myIsEmbeddedMode " << myIsEmbeddedMode);
- meshServant->SetImpl( myGen.CreateMesh( myIsEmbeddedMode ));
+ MESSAGE("myIsEmbeddedMode " << myIsEmbeddedMode);
+ SMESH_Mesh* myImpl = dynamic_cast<SMESH_Mesh*>(myGen.CreateMesh( myIsEmbeddedMode ));
+ if(myImpl == NULL )
+ THROW_SALOME_CORBA_EXCEPTION( "Could not cast SequentialMesh as Mesh", SALOME::INTERNAL_ERROR );
+ meshServant->SetImpl(myImpl);
// activate the CORBA servant of Mesh
SMESH::SMESH_Mesh_var mesh = SMESH::SMESH_Mesh::_narrow( meshServant->_this() );
int nextId = RegisterObject( mesh );
- if(MYDEBUG) { MESSAGE( "Add mesh to map with id = "<< nextId); }
- else { (void)nextId; } // avoid "unused variable" warning in release mode
+ MESSAGE( "Add mesh to map with id = "<< nextId);
+
return mesh._retn();
}
catch (SALOME_Exception& S_ex) {
return SMESH::SMESH_Mesh::_nil();
}
+//=============================================================================
+/*!
+ * SMESH_Gen_i::createParallelMesh
+ *
+ * Create empty parallel mesh on shape
+ */
+//=============================================================================
+SMESH::SMESH_ParallelMesh_ptr SMESH_Gen_i::createParallelMesh()
+{
+ Unexpect aCatch(SALOME_SalomeException);
+ MESSAGE( "SMESH_Gen_i::createParallelMesh" );
+
+ // Get or create the GEOM_Client instance
+ try {
+ // create a new mesh object servant, store it in a map in study context
+ SMESH_ParallelMesh_i* meshServant = new SMESH_ParallelMesh_i( GetPOA(), this );
+ // create a new mesh object
+ MESSAGE("myIsEmbeddedMode " << myIsEmbeddedMode);
+ SMESH_Mesh* myImpl = dynamic_cast<SMESH_Mesh*>(myGen.CreateParallelMesh( myIsEmbeddedMode ));
+ if(myImpl == NULL )
+ THROW_SALOME_CORBA_EXCEPTION( "Could not cast ParallelMesh as Mesh", SALOME::INTERNAL_ERROR );
+ meshServant->SetImpl(myImpl);
+
+ // activate the CORBA servant of Mesh
+ SMESH::SMESH_ParallelMesh_var mesh = SMESH::SMESH_ParallelMesh::_narrow( meshServant->_this() );
+ int nextId = RegisterObject( mesh );
+ MESSAGE( "Add mesh to map with id = "<< nextId);
+
+ return mesh._retn();
+ }
+ catch (SALOME_Exception& S_ex) {
+ THROW_SALOME_CORBA_EXCEPTION( S_ex.what(), SALOME::BAD_PARAM );
+ }
+ return SMESH::SMESH_ParallelMesh::_nil();
+}
+
//=============================================================================
/*!
* SMESH_Gen_i::GetShapeReader
if (!envNoCatchSignals || !atoi(envNoCatchSignals))
{
bool raiseFPE;
-#ifdef _DEBUG_
- raiseFPE = true;
- char* envDisableFPE = getenv("DISABLE_FPE");
- if (envDisableFPE && atoi(envDisableFPE))
+
+ if (SALOME::VerbosityActivated())
+ {
+ raiseFPE = true;
+ char* envDisableFPE = getenv("DISABLE_FPE");
+ if (envDisableFPE && atoi(envDisableFPE))
+ raiseFPE = false;
+ }
+ else
+ {
raiseFPE = false;
-#else
- raiseFPE = false;
-#endif
+ }
+
OSD::SetSignal( raiseFPE );
}
// else OSD::SetSignal() is called in GUI
SMESH::SMESH_Mesh_ptr SMESH_Gen_i::CreateMesh( GEOM::GEOM_Object_ptr theShapeObject )
{
Unexpect aCatch(SALOME_SalomeException);
- if(MYDEBUG) MESSAGE( "SMESH_Gen_i::CreateMesh" );
+ MESSAGE( "SMESH_Gen_i::CreateMesh(GEOM_Object_ptr)" );
// create mesh
SMESH::SMESH_Mesh_var mesh = this->createMesh();
// set shape
return mesh._retn();
}
+//=============================================================================
+/*!
+ * SMESH_Gen_i::CreateParallelMesh
+ *
+ * Create empty parallel mesh on a shape and publish it in the study
+ */
+//=============================================================================
+
+SMESH::SMESH_ParallelMesh_ptr SMESH_Gen_i::CreateParallelMesh( GEOM::GEOM_Object_ptr theShapeObject )
+{
+ Unexpect aCatch(SALOME_SalomeException);
+ MESSAGE( "SMESH_Gen_i::CreateParallelMesh" );
+ // create mesh
+ SMESH::SMESH_ParallelMesh_var mesh = this->createParallelMesh();
+ // set shape
+ SMESH_ParallelMesh_i* meshServant = SMESH::DownCast<SMESH_ParallelMesh_i*>( mesh );
+ ASSERT( meshServant );
+ meshServant->SetShape( theShapeObject );
+
+ // publish mesh in the study
+ if ( CanPublishInStudy( mesh ) ) {
+ SALOMEDS::StudyBuilder_var aStudyBuilder = getStudyServant()->NewBuilder();
+ aStudyBuilder->NewCommand(); // There is a transaction
+ SALOMEDS::SObject_wrap aSO = PublishMesh( mesh.in() );
+ aStudyBuilder->CommitCommand();
+ if ( !aSO->_is_nil() ) {
+ // Update Python script
+ TPythonDump(this) << aSO << " = " << this << ".CreateParallelMesh(" << theShapeObject << ")";
+ }
+ }
+
+ return mesh._retn();
+}
+
//=============================================================================
/*!
* SMESH_Gen_i::CreateEmptyMesh
SMESH::SMESH_Mesh_ptr SMESH_Gen_i::CreateEmptyMesh()
{
Unexpect aCatch(SALOME_SalomeException);
- if(MYDEBUG) MESSAGE( "SMESH_Gen_i::CreateMesh" );
+ MESSAGE( "SMESH_Gen_i::CreateEmptyMesh" );
// create mesh
SMESH::SMESH_Mesh_var mesh = this->createMesh();
SALOME::BAD_PARAM );
}
}
+
+ //================================================================================
+ /*!
+ * \brief Makes a python dump for a function by iterating the given SObjects
+ */
+ //================================================================================
+
+ void functionToPythonDump(
+ SMESH_Gen_i* smesh, const std::string& functionName, std::vector<SALOMEDS::SObject_wrap>& sobjects)
+ {
+ TPythonDump aPythonDump(smesh);
+ aPythonDump << "([";
+
+ int i = 0;
+ for (const SALOMEDS::SObject_wrap& so : sobjects)
+ {
+ if (i > 0)
+ {
+ aPythonDump << ", ";
+ }
+
+ if (!so->_is_nil())
+ {
+ aPythonDump << so;
+ }
+ else
+ {
+ aPythonDump << "mesh_" << i;
+ }
+ }
+
+ aPythonDump << "], status) = " << smesh << functionName;
+ }
}
//=============================================================================
return aMesh._retn();
}
+//================================================================================
+/*!
+ * \brief Create a mesh and import data from any file supported by meshio library
+ */
+//================================================================================
+
+SMESH::mesh_array* SMESH_Gen_i::CreateMeshesFromMESHIO(const char* theFileName,
+ SMESH::DriverMED_ReadStatus& theStatus)
+{
+ Unexpect aCatch(SALOME_SalomeException);
+ checkFileReadable(theFileName);
+
+ MESSAGE("Import part with meshio through an intermediate MED file");
+
+ // Create an object that holds a temp file name and
+ // removes the file when goes out of scope.
+ SMESH_Meshio meshio;
+ const QString tempFileName = meshio.CreateTempFileName(theFileName);
+
+ // Convert temp file into a target one with meshio command
+ meshio.Convert(theFileName, tempFileName);
+
+ // We don't need a python dump from SMESH_Gen_i::CreateMeshesFromMED(), so
+ // we can't use this method as is here. The followed code is an edited part of
+ // copy pasted CreateMeshesFromMED().
+
+ // Retrieve mesh names from the file
+ DriverMED_R_SMESHDS_Mesh myReader;
+ myReader.SetFile(tempFileName.toStdString());
+ myReader.SetMeshId(-1);
+ Driver_Mesh::Status aStatus;
+ list<string> aNames = myReader.GetMeshNames(aStatus);
+ SMESH::mesh_array_var aResult = new SMESH::mesh_array();
+ theStatus = (SMESH::DriverMED_ReadStatus)aStatus;
+
+ if (theStatus == SMESH::DRS_OK)
+ {
+ SALOMEDS::StudyBuilder_var aStudyBuilder;
+ aStudyBuilder = getStudyServant()->NewBuilder();
+ aStudyBuilder->NewCommand(); // There is a transaction
+
+ aResult->length(aNames.size());
+ std::vector<SALOMEDS::SObject_wrap> sobjects;
+ int i = 0;
+
+ // Iterate through all meshes and create mesh objects
+ for (const std::string& meshName : aNames)
+ {
+ // create mesh
+ SMESH::SMESH_Mesh_var mesh = createMesh();
+
+ // publish mesh in the study
+ SALOMEDS::SObject_wrap aSO;
+ if (CanPublishInStudy(mesh))
+ aSO = PublishMesh(mesh.in(), meshName.c_str());
+
+ // Save SO to use in a python dump
+ sobjects.emplace_back(aSO);
+
+ // Read mesh data (groups are published automatically by ImportMEDFile())
+ SMESH_Mesh_i* meshServant = dynamic_cast<SMESH_Mesh_i*>(GetServant(mesh).in());
+ ASSERT(meshServant);
+ SMESH::DriverMED_ReadStatus status1 =
+ meshServant->ImportMEDFile(tempFileName.toUtf8().data(), meshName.c_str());
+ if (status1 > theStatus)
+ theStatus = status1;
+
+ aResult[i++] = SMESH::SMESH_Mesh::_duplicate(mesh);
+ meshServant->GetImpl().GetMeshDS()->Modified();
+ }
+
+ if (!aStudyBuilder->_is_nil())
+ aStudyBuilder->CommitCommand();
+
+ // Python dump
+ const std::string functionName = std::string(".CreateMeshesFromMESHIO(r'") + theFileName + "')";
+ functionToPythonDump(this, functionName, sobjects);
+ }
+
+ // Dump creation of groups
+ for (CORBA::ULong i = 0; i < aResult->length(); ++i)
+ SMESH::ListOfGroups_var groups = aResult[i]->GetGroups();
+
+ return aResult._retn();
+}
//=============================================================================
/*!
GEOM::GEOM_Object_ptr theShapeObject )
{
Unexpect aCatch(SALOME_SalomeException);
- if(MYDEBUG) MESSAGE( "SMESH_Gen_i::IsReadyToCompute" );
+ MESSAGE( "SMESH_Gen_i::IsReadyToCompute" );
if ( CORBA::is_nil( theShapeObject ) )
THROW_SALOME_CORBA_EXCEPTION( "bad shape object reference",
GEOM::GEOM_Object_ptr theSubObject )
{
Unexpect aCatch(SALOME_SalomeException);
- if(MYDEBUG) MESSAGE( "SMESH_Gen_i::GetComputeErrors()" );
+ MESSAGE( "SMESH_Gen_i::GetComputeErrors()" );
if ( CORBA::is_nil( theSubObject ) && theMesh->HasShapeToMesh())
THROW_SALOME_CORBA_EXCEPTION( "bad shape object reference", SALOME::BAD_PARAM );
CORBA::Short theSubShapeID )
{
Unexpect aCatch(SALOME_SalomeException);
- if(MYDEBUG) MESSAGE( "SMESH_Gen_i::GetBadInputElements()" );
+ MESSAGE( "SMESH_Gen_i::GetBadInputElements()" );
if ( CORBA::is_nil( theMesh ) )
THROW_SALOME_CORBA_EXCEPTION( "bad Mesh reference",SALOME::BAD_PARAM );
GEOM::GEOM_Object_ptr theSubObject )
{
Unexpect aCatch(SALOME_SalomeException);
- if(MYDEBUG) MESSAGE( "SMESH_Gen_i::GetAlgoState()" );
+ MESSAGE( "SMESH_Gen_i::GetAlgoState()" );
if ( CORBA::is_nil( theSubObject ) && theMesh->HasShapeToMesh())
THROW_SALOME_CORBA_EXCEPTION( "bad shape object reference", SALOME::BAD_PARAM );
const SMESH::object_array& theListOfSubShapeObject )
{
Unexpect aCatch(SALOME_SalomeException);
- if(MYDEBUG) MESSAGE( "SMESH_Gen_i::GetSubShapesId" );
+ MESSAGE( "SMESH_Gen_i::GetSubShapesId" );
SMESH::long_array_var shapesId = new SMESH::long_array;
set<int> setId;
{
const TopoDS_Face& F = TopoDS::Face(exp.Current());
setId.insert(myIndexToShape.FindIndex(F));
- if(MYDEBUG) SCRUTE(myIndexToShape.FindIndex(F));
+ 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));
+ 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));
+ SCRUTE(myIndexToShape.FindIndex(V));
}
}
shapesId->length(setId.size());
int i=0;
for (iind = setId.begin(); iind != setId.end(); iind++)
{
- if(MYDEBUG) SCRUTE((*iind));
+ SCRUTE((*iind));
shapesId[i] = (*iind);
- if(MYDEBUG) SCRUTE(shapesId[i]);
+ SCRUTE(shapesId[i]);
i++;
}
}
{
//MEMOSTAT;
Unexpect aCatch(SALOME_SalomeException);
- if(MYDEBUG) MESSAGE( "SMESH_Gen_i::Compute" );
+ MESSAGE( "SMESH_Gen_i::Compute" );
if ( CORBA::is_nil( theShapeObject ) && theMesh->HasShapeToMesh())
THROW_SALOME_CORBA_EXCEPTION( "bad shape object reference",
// Update Python script
TPythonDump(this) << "isDone = " << this << ".Compute( "
- << theMesh << ", " << theShapeObject << ")";
+ << theMesh << ", " << theShapeObject << ")";
+ TPythonDump(this) << this << ".CheckCompute( "
+ << theMesh << ")";
try {
// get mesh servant
SMESH::long_array& theShapesId)
{
Unexpect aCatch(SALOME_SalomeException);
- if(MYDEBUG) MESSAGE( "SMESH_Gen_i::Precompute" );
+ MESSAGE( "SMESH_Gen_i::Precompute" );
if ( CORBA::is_nil( theShapeObject ) && theMesh->HasShapeToMesh())
THROW_SALOME_CORBA_EXCEPTION( "bad shape object reference",
GEOM::GEOM_Object_ptr theShapeObject)
{
Unexpect aCatch(SALOME_SalomeException);
- if(MYDEBUG) MESSAGE( "SMESH_Gen_i::Evaluate" );
+ MESSAGE( "SMESH_Gen_i::Evaluate" );
if ( CORBA::is_nil( theShapeObject ) && theMesh->HasShapeToMesh())
THROW_SALOME_CORBA_EXCEPTION( "bad shape object reference", SALOME::BAD_PARAM );
ats = "False";
std::string cmd="import salome.smesh.smesh_tools as smt\n";
- cmd +="smt.smesh_create_dual_mesh(\"" + mesh_ior + "\", \"" +
+ cmd +="smt.smesh_create_dual_mesh(\"" + mesh_ior + "\", r\"" +
dual_mesh_file.string() + "\", mesh_name=\"" + mesh_name + "\", adapt_to_shape=" + ats + ")";
MESSAGE(cmd);
PyObject *py_main = PyImport_AddModule("__main__");
PyObject *py_dict = PyModule_GetDict(py_main);
+ PyObject *local_dict = PyDict_New();
- PyRun_String(cmd.c_str(), Py_file_input, py_dict, py_dict);
+ PyRun_String(cmd.c_str(), Py_file_input, py_dict, local_dict);
if (PyErr_Occurred()) {
// Restrieving python error
- MESSAGE("Catching error")
+ MESSAGE("Catching error");
PyObject *errtype, *errvalue, *traceback;
PyErr_Fetch(&errtype, &errvalue, &traceback);
if(errvalue != NULL) {
- MESSAGE("Error has a value")
+ MESSAGE("Error has a value");
PyObject *s = PyObject_Str(errvalue);
Py_ssize_t size;
std::string msg = PyUnicode_AsUTF8AndSize(s, &size);
msg = "Issue with the execution of create_dual_mesh:\n"+msg;
- MESSAGE("throwing exception")
+ MESSAGE("throwing exception");
// We need to deactivate the GIL before throwing the exception
PyGILState_Release(gstate);
THROW_SALOME_CORBA_EXCEPTION(msg.c_str(), SALOME::INTERNAL_ERROR );
SetName( meshSO, meshName, meshName );
SetPixMap( meshSO, "ICON_SMESH_TREE_MESH_IMPORTED");
}
- int ret = newMesh_i->ImportMEDFile(dual_mesh_file.c_str(), meshName);
+ int ret = newMesh_i->ImportMEDFile(dual_mesh_file.string().c_str(), meshName);
if(ret)
THROW_SALOME_CORBA_EXCEPTION( "Issue when importing mesh", SALOME::INTERNAL_ERROR );
MESSAGE("Dump of groups");
SMESH::ListOfGroups_var groups = newMesh->GetGroups();
+#ifndef _DEBUG_
+ fs::remove_all(tmp_folder);
+#endif
+
return newMesh._retn();
}
SALOMEDS::TMPFile* SMESH_Gen_i::SaveASCII( SALOMEDS::SComponent_ptr theComponent,
const char* theURL,
bool isMultiFile ) {
- if(MYDEBUG) MESSAGE( "SMESH_Gen_i::SaveASCII" );
+ MESSAGE( "SMESH_Gen_i::SaveASCII" );
SALOMEDS::TMPFile_var aStreamFile = Save( theComponent, theURL, isMultiFile );
return aStreamFile._retn();
size = aDataset->GetSize();
char* libname_str = new char[ size ];
aDataset->ReadFromDisk( libname_str );
- if(MYDEBUG) SCRUTE( libname_str );
+ SCRUTE( libname_str );
libname = string( libname_str );
delete [] libname_str;
aDataset->CloseOnDisk();
// --> restore hypothesis from data
if ( id > 0 && !hypname.empty()/* && !hypdata.empty()*/ ) { // VSR : persistent data can be empty
- if(MYDEBUG) MESSAGE("VSR - load hypothesis : id = " << id <<
+ MESSAGE("VSR - load hypothesis : id = " << id <<
", name = " << hypname.c_str() << ", persistent string = " << hypdata.c_str());
SMESH::SMESH_Hypothesis_var myHyp;
myStudyContext->mapOldToNew( id, newId );
}
else
- if(MYDEBUG) MESSAGE( "VSR - SMESH_Gen::Load - can't get servant" );
+ MESSAGE( "VSR - SMESH_Gen::Load - can't get servant" );
}
}
}
size = aDataset->GetSize();
char* libname_str = new char[ size ];
aDataset->ReadFromDisk( libname_str );
- if(MYDEBUG) SCRUTE( libname_str );
+ SCRUTE( libname_str );
libname = string( libname_str );
delete [] libname_str;
aDataset->CloseOnDisk();
size = aDataset->GetSize();
char* hypdata_str = new char[ size ];
aDataset->ReadFromDisk( hypdata_str );
- if(MYDEBUG) SCRUTE( hypdata_str );
+ SCRUTE( hypdata_str );
hypdata = string( hypdata_str );
delete [] hypdata_str;
aDataset->CloseOnDisk();
// --> restore algorithm from data
if ( id > 0 && !hypname.empty()/* && !hypdata.empty()*/ ) { // VSR : persistent data can be empty
- if(MYDEBUG) MESSAGE("VSR - load algo : id = " << id <<
+ MESSAGE("VSR - load algo : id = " << id <<
", name = " << hypname.c_str() << ", persistent string = " << hypdata.c_str());
SMESH::SMESH_Hypothesis_var myHyp;
myStudyContext->mapOldToNew( id, newId );
}
else
- if(MYDEBUG) MESSAGE( "VSR - SMESH_Gen::Load - can't get servant" );
+ MESSAGE( "VSR - SMESH_Gen::Load - can't get servant" );
}
}
}
int aNbObjects = aTopGroup->nInternalObjects();
if ( aNbObjects > 0 ) {
// create mesh
- if(MYDEBUG) MESSAGE( "VSR - load mesh : id = " << id );
+ MESSAGE( "VSR - load mesh : id = " << id );
SMESH::SMESH_Mesh_var myNewMesh = this->createMesh();
SMESH_Mesh_i* myNewMeshImpl = dynamic_cast<SMESH_Mesh_i*>( GetServant( myNewMesh ).in() );
if ( !myNewMeshImpl )
aGroup->OpenOnDisk();
// get number of applied algorithms
int aNbSubObjects = aGroup->nInternalObjects();
- if(MYDEBUG) MESSAGE( "VSR - number of applied algos " << aNbSubObjects );
+ MESSAGE( "VSR - number of applied algos " << aNbSubObjects );
for ( int j = 0; j < aNbSubObjects; j++ ) {
char name_dataset[ HDF_NAME_MAX_LEN+1 ];
aGroup->InternalObjectIndentify( j, name_dataset );
const SALOMEDS::TMPFile& theStream,
const char* theURL,
bool isMultiFile ) {
- if(MYDEBUG) MESSAGE( "SMESH_Gen_i::LoadASCII" );
+ MESSAGE( "SMESH_Gen_i::LoadASCII" );
return Load( theComponent, theStream, theURL, isMultiFile );
//before call main ::Load method it's need for decipher text format to
void SMESH_Gen_i::Close( SALOMEDS::SComponent_ptr theComponent )
{
- if(MYDEBUG) MESSAGE( "SMESH_Gen_i::Close" );
+ MESSAGE( "SMESH_Gen_i::Close" );
// Clear study contexts data
myStudyContext->Clear();
char* SMESH_Gen_i::ComponentDataType()
{
- if(MYDEBUG) MESSAGE( "SMESH_Gen_i::ComponentDataType" );
+ MESSAGE( "SMESH_Gen_i::ComponentDataType" );
return CORBA::string_dup( "SMESH" );
}
CORBA::Boolean /*isMultiFile*/,
CORBA::Boolean /*isASCII*/ )
{
- if(MYDEBUG) MESSAGE( "SMESH_Gen_i::IORToLocalPersistentID" );
+ MESSAGE( "SMESH_Gen_i::IORToLocalPersistentID" );
if ( myStudyContext && strcmp( IORString, "" ) != 0 ) {
int anId = myStudyContext->findId( IORString );
if ( anId ) {
- if(MYDEBUG) MESSAGE( "VSR " << anId )
+ MESSAGE( "VSR " << anId );
char strId[ 20 ];
sprintf( strId, "%d", anId );
return CORBA::string_dup( strId );
CORBA::Boolean /*isMultiFile*/,
CORBA::Boolean /*isASCII*/ )
{
- if(MYDEBUG) MESSAGE( "SMESH_Gen_i::LocalPersistentIDToIOR(): id = " << aLocalPersistentID );
+ MESSAGE( "SMESH_Gen_i::LocalPersistentIDToIOR(): id = " << aLocalPersistentID );
if ( myStudyContext && strcmp( aLocalPersistentID, "" ) != 0 ) {
int anId = atoi( aLocalPersistentID );
SMESH_CATCH( SMESH::doNothing );
-#ifdef _DEBUG_
- cout << "SMESH_Gen_i::IsApplicable(): exception in " << ( theAlgoType ? theAlgoType : "") << endl;
-#endif
+ MESSAGE("SMESH_Gen_i::IsApplicable(): exception in " << ( theAlgoType ? theAlgoType : ""));
return true;
}