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[modules/smesh.git] / src / SMESH_I / SMESH_Gen_i.hxx
1 // Copyright (C) 2007-2012  CEA/DEN, EDF R&D, OPEN CASCADE
2 //
3 // Copyright (C) 2003-2007  OPEN CASCADE, EADS/CCR, LIP6, CEA/DEN,
4 // CEDRAT, EDF R&D, LEG, PRINCIPIA R&D, BUREAU VERITAS
5 //
6 // This library is free software; you can redistribute it and/or
7 // modify it under the terms of the GNU Lesser General Public
8 // License as published by the Free Software Foundation; either
9 // version 2.1 of the License.
10 //
11 // This library is distributed in the hope that it will be useful,
12 // but WITHOUT ANY WARRANTY; without even the implied warranty of
13 // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
14 // Lesser General Public License for more details.
15 //
16 // You should have received a copy of the GNU Lesser General Public
17 // License along with this library; if not, write to the Free Software
18 // Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA  02111-1307 USA
19 //
20 // See http://www.salome-platform.org/ or email : webmaster.salome@opencascade.com
21 //
22 //  File   : SMESH_Gen_i.hxx
23 //  Author : Paul RASCLE, EDF
24 //  Module : SMESH
25
26 #ifndef _SMESH_GEN_I_HXX_
27 #define _SMESH_GEN_I_HXX_
28
29 #include "SMESH.hxx"
30
31 #include <SALOMEconfig.h>
32 #include CORBA_SERVER_HEADER(SMESH_Gen)
33 #include CORBA_SERVER_HEADER(SMESH_Mesh)
34 #include CORBA_SERVER_HEADER(SMESH_Hypothesis)
35 #include CORBA_CLIENT_HEADER(GEOM_Gen)
36 #include CORBA_CLIENT_HEADER(SALOMEDS)
37 #include CORBA_CLIENT_HEADER(SALOMEDS_Attributes)
38
39 #include "SMESH_Mesh_i.hxx"
40 #include "SMESH_Hypothesis_i.hxx"
41 #include "SALOME_Component_i.hxx"
42 #include "SALOME_NamingService.hxx"
43
44 #include "SMESH_Gen.hxx"
45 #include "GEOM_Client.hxx"
46
47 #include <TCollection_AsciiString.hxx>
48 #include <Resource_DataMapOfAsciiStringAsciiString.hxx>
49 #include <TColStd_HSequenceOfAsciiString.hxx>
50
51 #include <map>
52 #include <sstream>
53
54 class SMESH_Mesh_i;
55 class SALOME_LifeCycleCORBA;
56
57 // ===========================================================
58 // Study context - stores study-connected objects references
59 // ==========================================================
60 class SMESH_I_EXPORT StudyContext
61 {
62 public:
63   // constructor
64   StudyContext() {}
65   // destructor
66   ~StudyContext()
67   {
68     mapIdToIOR.clear();
69     mapIdToId.clear();
70   }
71   // register object in the internal map and return its id
72   int addObject( string theIOR )
73   {
74     int nextId = getNextId();
75     mapIdToIOR[ nextId ]  = theIOR;
76     return nextId;
77   }
78   // find the object id in the internal map by the IOR
79   int findId( string theIOR )
80   {
81     map<int, string>::iterator imap;
82     for ( imap = mapIdToIOR.begin(); imap != mapIdToIOR.end(); ++imap ) {
83       if ( imap->second == theIOR )
84         return imap->first;
85     }
86     return 0;
87   }
88   // get object's IOR by id
89   string getIORbyId( const int theId )
90   {
91     if ( mapIdToIOR.find( theId ) != mapIdToIOR.end() )
92       return mapIdToIOR[ theId ];
93     return string( "" );
94   }
95   // get object's IOR by old id
96   string getIORbyOldId( const int theOldId )
97   {
98     if ( mapIdToId.find( theOldId ) != mapIdToId.end() )
99       return getIORbyId( mapIdToId[ theOldId ] );
100     return string( "" );
101   }
102   // maps old object id to the new one (used when restoring data)
103   void mapOldToNew( const int oldId, const int newId ) {
104     mapIdToId[ oldId ] = newId;
105   }
106   // get old id by a new one
107   int getOldId( const int newId ) {
108     map<int, int>::iterator imap;
109     for ( imap = mapIdToId.begin(); imap != mapIdToId.end(); ++imap ) {
110       if ( imap->second == newId )
111         return imap->first;
112     }
113     return 0;
114   }
115
116 private:
117   // get next free object identifier
118   int getNextId()
119   {
120     int id = 1;
121     while( mapIdToIOR.find( id ) != mapIdToIOR.end() )
122       id++;
123     return id;
124   }
125
126   map<int, string> mapIdToIOR;      // persistent-to-transient map
127   map<int, int>    mapIdToId;       // used to translate object from persistent to transient form
128 };
129
130 // ===========================================================
131 // SMESH module's engine
132 // ==========================================================
133 class SMESH_I_EXPORT SMESH_Gen_i:
134   public virtual POA_SMESH::SMESH_Gen,
135   public virtual Engines_Component_i
136 {
137 public:
138   // Get last created instance of the class
139   static SMESH_Gen_i* GetSMESHGen() { return mySMESHGen;}
140   // Get ORB object
141   static CORBA::ORB_var GetORB() { return myOrb;}
142   // Get SMESH module's POA object
143   static PortableServer::POA_var GetPOA() { return myPoa;}
144   // Get Naming Service object
145   static SALOME_NamingService* GetNS();
146   // Get SALOME_LifeCycleCORBA object
147   static SALOME_LifeCycleCORBA* GetLCC();
148   // Retrieve and get GEOM engine reference
149   static GEOM::GEOM_Gen_ptr GetGeomEngine();
150   // Get object of the CORBA reference
151   static PortableServer::ServantBase_var GetServant( CORBA::Object_ptr theObject );
152   // Get CORBA object corresponding to the SALOMEDS::SObject
153   static CORBA::Object_var SObjectToObject( SALOMEDS::SObject_ptr theSObject );
154   // Get the SALOMEDS::SObject corresponding to a CORBA object
155   static SALOMEDS::SObject_ptr ObjectToSObject(SALOMEDS::Study_ptr theStudy,
156                                                CORBA::Object_ptr   theObject);
157   // Get GEOM Object correspoding to TopoDS_Shape
158   GEOM::GEOM_Object_ptr ShapeToGeomObject (const TopoDS_Shape& theShape );
159   // Get TopoDS_Shape correspoding to GEOM_Object
160   TopoDS_Shape GeomObjectToShape(GEOM::GEOM_Object_ptr theGeomObject);
161
162   // Default constructor
163   SMESH_Gen_i();
164   // Standard constructor
165   SMESH_Gen_i( CORBA::ORB_ptr            orb,
166                PortableServer::POA_ptr   poa,
167                PortableServer::ObjectId* contId,
168                const char*               instanceName,
169                const char*               interfaceName );
170   // Destructor
171   virtual ~SMESH_Gen_i();
172
173   // *****************************************
174   // Interface methods
175   // *****************************************
176   // Set a new Mesh object name
177   void SetName(const char* theIOR,
178                const char* theName);
179
180   //GEOM::GEOM_Gen_ptr SetGeomEngine( const char* containerLoc );
181   void SetGeomEngine( GEOM::GEOM_Gen_ptr geomcompo );
182
183   // Set current study
184   void SetEmbeddedMode( CORBA::Boolean theMode );
185   // Get current study
186   CORBA::Boolean IsEmbeddedMode();
187
188   // Set current study
189   void SetCurrentStudy( SALOMEDS::Study_ptr theStudy );
190   // Get current study
191   SALOMEDS::Study_ptr GetCurrentStudy();
192
193   // Create hypothesis/algorothm of given type
194   SMESH::SMESH_Hypothesis_ptr CreateHypothesis (const char* theHypType,
195                                                 const char* theLibName)
196     throw ( SALOME::SALOME_Exception );
197
198   // Return hypothesis of given type holding parameter values of the existing mesh
199   SMESH::SMESH_Hypothesis_ptr GetHypothesisParameterValues (const char*           theHypType,
200                                                             const char*           theLibName,
201                                                             SMESH::SMESH_Mesh_ptr theMesh,
202                                                             GEOM::GEOM_Object_ptr theGeom,
203                                                             CORBA::Boolean        byMesh)
204     throw ( SALOME::SALOME_Exception );
205
206   // Preferences
207   // ------------
208   /*!
209    * Sets number of segments per diagonal of boundary box of geometry by which
210    * default segment length of appropriate 1D hypotheses is defined
211    */
212   void SetBoundaryBoxSegmentation( CORBA::Long theNbSegments ) throw ( SALOME::SALOME_Exception );
213   /*!
214    * \brief Sets default number of segments per edge
215    */
216   void SetDefaultNbSegments(CORBA::Long theNbSegments) throw ( SALOME::SALOME_Exception );
217
218   /*!
219     Set an option value
220   */
221   virtual void  SetOption(const char*, const char*);
222   /*!
223     Return an option value
224   */
225   virtual char* GetOption(const char*);
226
227   /*!
228    * To load full mesh data from study at hyp modification or not
229    */
230   bool ToForgetMeshDataOnHypModif() const { return myToForgetMeshDataOnHypModif; }
231
232
233   // Create empty mesh on a shape
234   SMESH::SMESH_Mesh_ptr CreateMesh( GEOM::GEOM_Object_ptr theShapeObject )
235     throw ( SALOME::SALOME_Exception );
236
237   // Create empty mesh
238   SMESH::SMESH_Mesh_ptr CreateEmptyMesh()
239     throw ( SALOME::SALOME_Exception );
240
241   //  Create mesh(es) and import data from UNV fileter
242   SMESH::SMESH_Mesh_ptr CreateMeshesFromUNV( const char* theFileName )
243     throw ( SALOME::SALOME_Exception );
244
245   //  Create mesh(es) and import data from MED file
246   SMESH::mesh_array* CreateMeshesFromMED( const char* theFileName,
247                                           SMESH::DriverMED_ReadStatus& theStatus )
248     throw ( SALOME::SALOME_Exception );
249
250   //  Create mesh(es) and import data from MED file
251   SMESH::mesh_array* CreateMeshesFromSAUV( const char* theFileName,
252                                            SMESH::DriverMED_ReadStatus& theStatus )
253     throw ( SALOME::SALOME_Exception );
254
255   //  Create mesh(es) and import data from STL file
256   SMESH::SMESH_Mesh_ptr CreateMeshesFromSTL( const char* theFileName )
257     throw ( SALOME::SALOME_Exception );
258
259   //  Create mesh(es) and import data from CGNS file
260   SMESH::mesh_array* CreateMeshesFromCGNS( const char* theFileName,
261                                            SMESH::DriverMED_ReadStatus& theStatus )
262     throw ( SALOME::SALOME_Exception );
263
264   // Copy a part of mesh
265   SMESH::SMESH_Mesh_ptr CopyMesh(SMESH::SMESH_IDSource_ptr meshPart,
266                                  const char*               meshName,
267                                  CORBA::Boolean            toCopyGroups,
268                                  CORBA::Boolean            toKeepIDs);
269
270   // Compute mesh on a shape
271   CORBA::Boolean Compute( SMESH::SMESH_Mesh_ptr theMesh,
272                           GEOM::GEOM_Object_ptr theShapeObject )
273     throw ( SALOME::SALOME_Exception );
274
275   // Cancel Compute mesh on a shape
276   void CancelCompute( SMESH::SMESH_Mesh_ptr theMesh,
277                       GEOM::GEOM_Object_ptr theShapeObject );
278
279   /*!
280    * \brief Return errors of mesh computation
281    */
282   SMESH::compute_error_array* GetComputeErrors(SMESH::SMESH_Mesh_ptr theMesh,
283                                                GEOM::GEOM_Object_ptr  theShapeObject )
284     throw ( SALOME::SALOME_Exception );
285
286   /*!
287    * Evaluate mesh on a shape and
288    *  returns statistic of mesh elements
289    * Result array of number enityties
290    */
291   SMESH::long_array* Evaluate(SMESH::SMESH_Mesh_ptr theMesh,
292                               GEOM::GEOM_Object_ptr theShapeObject)
293     throw ( SALOME::SALOME_Exception );
294
295   // Returns true if mesh contains enough data to be computed
296   CORBA::Boolean IsReadyToCompute( SMESH::SMESH_Mesh_ptr theMesh,
297                                    GEOM::GEOM_Object_ptr theShapeObject )
298     throw ( SALOME::SALOME_Exception );
299
300   /*!
301    * Calculate Mesh as preview till indicated dimension on shape
302    * First, verify list of hypothesis associated with the subShape.
303    * Return mesh preview structure
304    */
305   SMESH::MeshPreviewStruct* Precompute( SMESH::SMESH_Mesh_ptr theMesh,
306                                         GEOM::GEOM_Object_ptr theSubObject,
307                                         SMESH::Dimension      theDimension,
308                                         SMESH::long_array&    theShapesId )
309     throw ( SALOME::SALOME_Exception );
310
311   // Returns errors of hypotheses definintion
312   SMESH::algo_error_array* GetAlgoState( SMESH::SMESH_Mesh_ptr theMesh,
313                                          GEOM::GEOM_Object_ptr theSubObject )
314       throw ( SALOME::SALOME_Exception );
315
316   // Return mesh elements preventing computation of a subshape
317   SMESH::MeshPreviewStruct* GetBadInputElements( SMESH::SMESH_Mesh_ptr theMesh,
318                                                  CORBA::Short          theSubShapeID )
319     throw ( SALOME::SALOME_Exception );
320
321   // Get sub-shapes unique ID's list
322   SMESH::long_array* GetSubShapesId( GEOM::GEOM_Object_ptr      theMainShapeObject,
323                                      const SMESH::object_array& theListOfSubShape )
324     throw ( SALOME::SALOME_Exception );
325
326   // Return geometrical object the given element is built on. Publish it in study.
327   GEOM::GEOM_Object_ptr GetGeometryByMeshElement( SMESH::SMESH_Mesh_ptr  theMesh,
328                                                   CORBA::Long            theElementID,
329                                                   const char*            theGeomName)
330     throw ( SALOME::SALOME_Exception );
331
332   // Return geometrical object the given element is built on. Don't publish it in study.
333   GEOM::GEOM_Object_ptr FindGeometryByMeshElement( SMESH::SMESH_Mesh_ptr  theMesh,
334                                                    CORBA::Long            theElementID)
335     throw ( SALOME::SALOME_Exception );
336
337   // Concatenate the given meshes into one mesh
338   SMESH::SMESH_Mesh_ptr ConcatenateCommon(const SMESH::mesh_array& theMeshesArray,
339                                           CORBA::Boolean           theUniteIdenticalGroups,
340                                           CORBA::Boolean           theMergeNodesAndElements,
341                                           CORBA::Double            theMergeTolerance,
342                                           CORBA::Boolean           theCommonGroups)
343     throw ( SALOME::SALOME_Exception );
344
345   // Concatenate the given meshes into one mesh
346   SMESH::SMESH_Mesh_ptr Concatenate(const SMESH::mesh_array& theMeshesArray,
347                                     CORBA::Boolean           theUniteIdenticalGroups,
348                                     CORBA::Boolean           theMergeNodesAndElements,
349                                     CORBA::Double            theMergeTolerance)
350     throw ( SALOME::SALOME_Exception );
351
352   // Concatenate the given meshes into one mesh
353   // Create the groups of all elements from initial meshes
354   SMESH::SMESH_Mesh_ptr ConcatenateWithGroups(const SMESH::mesh_array& theMeshesArray,
355                                               CORBA::Boolean           theUniteIdenticalGroups,
356                                               CORBA::Boolean           theMergeNodesAndElements,
357                                               CORBA::Double            theMergeTolerance)
358     throw ( SALOME::SALOME_Exception );
359
360   // Get MED version of the file by its name
361   CORBA::Boolean GetMEDVersion(const char* theFileName,
362                                SMESH::MED_VERSION& theVersion);
363
364   // Get names of meshes defined in file with the specified name
365   SMESH::string_array* GetMeshNames(const char* theFileName);
366
367   // ****************************************************
368   // Interface inherited methods (from SALOMEDS::Driver)
369   // ****************************************************
370
371   // Save SMESH data
372   SALOMEDS::TMPFile* Save( SALOMEDS::SComponent_ptr theComponent,
373                          const char*              theURL,
374                          bool                     isMultiFile );
375   // Load SMESH data
376   bool Load( SALOMEDS::SComponent_ptr theComponent,
377              const SALOMEDS::TMPFile& theStream,
378              const char*              theURL,
379              bool                     isMultiFile );
380   // Save SMESH data in ASCII format
381   SALOMEDS::TMPFile* SaveASCII( SALOMEDS::SComponent_ptr theComponent,
382                                 const char*              theURL,
383                                 bool                     isMultiFile );
384   // Load SMESH data in ASCII format
385   bool LoadASCII( SALOMEDS::SComponent_ptr theComponent,
386                   const SALOMEDS::TMPFile& theStream,
387                   const char*              theURL,
388                   bool                     isMultiFile );
389
390   // Create filter manager
391   SMESH::FilterManager_ptr CreateFilterManager();
392
393   // Return a pattern mesher
394   SMESH::SMESH_Pattern_ptr GetPattern();
395
396   // Create measurement instance
397   SMESH::Measurements_ptr  CreateMeasurements();
398
399   // Clears study-connected data when it is closed
400   void Close( SALOMEDS::SComponent_ptr theComponent );
401
402   // Get component data type
403   char* ComponentDataType();
404
405   // Transform data from transient form to persistent
406   char* IORToLocalPersistentID( SALOMEDS::SObject_ptr theSObject,
407                                 const char*           IORString,
408                                 CORBA::Boolean        isMultiFile,
409                                 CORBA::Boolean        isASCII );
410   // Transform data from persistent form to transient
411   char* LocalPersistentIDToIOR( SALOMEDS::SObject_ptr theSObject,
412                                 const char*           aLocalPersistentID,
413                                 CORBA::Boolean        isMultiFile,
414                                 CORBA::Boolean        isASCII );
415
416   // Returns true if object can be published in the study
417   bool CanPublishInStudy( CORBA::Object_ptr theIOR );
418   // Publish object in the study
419   SALOMEDS::SObject_ptr PublishInStudy( SALOMEDS::Study_ptr   theStudy,
420                                         SALOMEDS::SObject_ptr theSObject,
421                                         CORBA::Object_ptr     theObject,
422                                         const char*           theName )
423     throw ( SALOME::SALOME_Exception );
424
425   // Copy-paste methods - returns true if object can be copied to the clipboard
426   CORBA::Boolean CanCopy( SALOMEDS::SObject_ptr theObject ) { return false; }
427   // Copy-paste methods - copy object to the clipboard
428   SALOMEDS::TMPFile* CopyFrom( SALOMEDS::SObject_ptr theObject, CORBA::Long& theObjectID ) { return false; }
429   // Copy-paste methods - returns true if object can be pasted from the clipboard
430   CORBA::Boolean CanPaste( const char* theComponentName, CORBA::Long theObjectID ) { return false; }
431   // Copy-paste methods - paste object from the clipboard
432   SALOMEDS::SObject_ptr PasteInto( const SALOMEDS::TMPFile& theStream,
433                                    CORBA::Long              theObjectID,
434                                    SALOMEDS::SObject_ptr    theObject ) {
435     SALOMEDS::SObject_var aResultSO;
436     return aResultSO._retn();
437   }
438
439   // ============
440   // Dump python
441   // ============
442
443   virtual Engines::TMPFile* DumpPython(CORBA::Object_ptr theStudy,
444                                        CORBA::Boolean isPublished,
445                                        CORBA::Boolean isMultiFile,
446                                        CORBA::Boolean& isValidScript);
447
448   void AddToPythonScript (int theStudyID, const TCollection_AsciiString& theString);
449
450   void RemoveLastFromPythonScript (int theStudyID);
451
452   void SavePython (SALOMEDS::Study_ptr theStudy);
453
454   TCollection_AsciiString DumpPython_impl (SALOMEDS::Study_ptr theStudy,
455                                            Resource_DataMapOfAsciiStringAsciiString& theObjectNames,
456                                            Resource_DataMapOfAsciiStringAsciiString& theNames,
457                                            bool isPublished,
458                                            bool isMultiFile,
459                                            bool isHistoricalDump,
460                                            bool& aValidScript,
461                                            const TCollection_AsciiString& theSavedTrace);
462
463   TCollection_AsciiString GetNewPythonLines (int theStudyID);
464
465   void CleanPythonTrace (int theStudyID);
466
467
468   // *****************************************
469   // Internal methods
470   // *****************************************
471 public:
472   // Get shape reader
473   GEOM_Client* GetShapeReader();
474
475   // Tags definition
476   static long GetHypothesisRootTag();
477   static long GetAlgorithmsRootTag();
478   static long GetRefOnShapeTag();
479   static long GetRefOnAppliedHypothesisTag();
480   static long GetRefOnAppliedAlgorithmsTag();
481   static long GetSubMeshOnVertexTag();
482   static long GetSubMeshOnEdgeTag();
483   static long GetSubMeshOnFaceTag();
484   static long GetSubMeshOnSolidTag();
485   static long GetSubMeshOnCompoundTag();
486   static long GetSubMeshOnWireTag();
487   static long GetSubMeshOnShellTag();
488   static long GetNodeGroupsTag();
489   static long GetEdgeGroupsTag();
490   static long GetFaceGroupsTag();
491   static long GetVolumeGroupsTag();
492   static long Get0DElementsGroupsTag();
493   static long GetBallElementsGroupsTag();
494
495   // publishing methods
496   SALOMEDS::SComponent_ptr PublishComponent(SALOMEDS::Study_ptr theStudy);
497   SALOMEDS::SObject_ptr PublishMesh (SALOMEDS::Study_ptr   theStudy,
498                                      SMESH::SMESH_Mesh_ptr theMesh,
499                                      const char*           theName = 0);
500   SALOMEDS::SObject_ptr PublishHypothesis (SALOMEDS::Study_ptr         theStudy,
501                                            SMESH::SMESH_Hypothesis_ptr theHyp,
502                                            const char*                 theName = 0);
503   SALOMEDS::SObject_ptr PublishSubMesh (SALOMEDS::Study_ptr      theStudy,
504                                         SMESH::SMESH_Mesh_ptr    theMesh,
505                                         SMESH::SMESH_subMesh_ptr theSubMesh,
506                                         GEOM::GEOM_Object_ptr    theShapeObject,
507                                         const char*              theName = 0);
508   SALOMEDS::SObject_ptr PublishGroup (SALOMEDS::Study_ptr    theStudy,
509                                       SMESH::SMESH_Mesh_ptr  theMesh,
510                                       SMESH::SMESH_GroupBase_ptr theGroup,
511                                       GEOM::GEOM_Object_ptr  theShapeObject,
512                                       const char*            theName = 0);
513   bool AddHypothesisToShape(SALOMEDS::Study_ptr         theStudy,
514                             SMESH::SMESH_Mesh_ptr       theMesh,
515                             GEOM::GEOM_Object_ptr       theShapeObject,
516                             SMESH::SMESH_Hypothesis_ptr theHyp);
517   bool RemoveHypothesisFromShape(SALOMEDS::Study_ptr         theStudy,
518                                  SMESH::SMESH_Mesh_ptr       theMesh,
519                                  GEOM::GEOM_Object_ptr       theShapeObject,
520                                  SMESH::SMESH_Hypothesis_ptr theHyp);
521   SALOMEDS::SObject_ptr GetMeshOrSubmeshByShape (SALOMEDS::Study_ptr   theStudy,
522                                                  SMESH::SMESH_Mesh_ptr theMesh,
523                                                  GEOM::GEOM_Object_ptr theShape);
524   static void SetName(SALOMEDS::SObject_ptr theSObject,
525                       const char*           theName,
526                       const char*           theDefaultName = 0);
527
528   static void SetPixMap(SALOMEDS::SObject_ptr theSObject,
529                         const char*           thePixMap);
530
531   //  Get study context
532   StudyContext* GetCurrentStudyContext();
533
534   // Register an object in a StudyContext; return object id
535   int RegisterObject(CORBA::Object_ptr theObject);
536
537   // Return id of registered object
538   CORBA::Long GetObjectId(CORBA::Object_ptr theObject);
539
540   // Return an object that previously had an oldID
541   template<class TInterface>
542   typename TInterface::_var_type GetObjectByOldId( const int oldID )
543   {
544     if ( StudyContext* myStudyContext = GetCurrentStudyContext() ) {
545       string ior = myStudyContext->getIORbyOldId( oldID );
546       if ( !ior.empty() )
547         return TInterface::_narrow(GetORB()->string_to_object( ior.c_str() ));
548     }
549     return TInterface::_nil();
550   }
551
552   // Get current study ID
553   int GetCurrentStudyID();
554
555   /*!
556    * \brief Find SObject for an algo
557    */
558   SALOMEDS::SObject_ptr GetAlgoSO(const ::SMESH_Algo* algo);
559
560   void UpdateParameters(/*CORBA::Object_ptr theObject,*/ const char* theParameters);
561   char* GetParameters(CORBA::Object_ptr theObject);
562   char* ParseParameters(const char* theParameters);
563   const std::vector< std::string >& GetLastParameters() const { return myLastParameters; }
564
565 private:
566   // Create hypothesis of given type
567   SMESH::SMESH_Hypothesis_ptr createHypothesis( const char* theHypName,
568                                                 const char* theLibName)
569     throw ( SALOME::SALOME_Exception );
570
571   // Create empty mesh on shape
572   SMESH::SMESH_Mesh_ptr createMesh()
573     throw ( SALOME::SALOME_Exception );
574
575   static void loadGeomData( SALOMEDS::SComponent_ptr theCompRoot );
576
577   SMESH::mesh_array* CreateMeshesFromMEDorSAUV( const char* theFileName,
578                                                 SMESH::DriverMED_ReadStatus& theStatus,
579                                                 const char* theCommandNameForPython,
580                                                 const char* theFileNameForPython);
581
582   void setCurrentStudy( SALOMEDS::Study_ptr theStudy,
583                         bool                theStudyIsBeingClosed=false);
584
585 private:
586   static GEOM::GEOM_Gen_var      myGeomGen;
587   static CORBA::ORB_var          myOrb;         // ORB reference
588   static PortableServer::POA_var myPoa;         // POA reference
589   static SALOME_NamingService*   myNS;          // Naming Service
590   static SALOME_LifeCycleCORBA*  myLCC;         // Life Cycle CORBA
591   static SMESH_Gen_i*            mySMESHGen;    // Point to last created instance of the class
592   ::SMESH_Gen                    myGen;         // SMESH_Gen local implementation
593
594   // hypotheses managing
595   map<string, GenericHypothesisCreator_i*> myHypCreatorMap;
596
597   map<int, StudyContext*>   myStudyContextMap;  // Map of study context objects
598
599   GEOM_Client*              myShapeReader;      // Shape reader
600   SALOMEDS::Study_var       myCurrentStudy;     // Current study
601   CORBA::Boolean            myIsEmbeddedMode;   // Current mode
602
603   // To load full mesh data from study at hyp modification or not
604   bool myToForgetMeshDataOnHypModif;
605
606   // Dump Python: trace of API methods calls
607   std::map < int, Handle(TColStd_HSequenceOfAsciiString) > myPythonScripts;
608   bool                                                     myIsHistoricalPythonDump;
609   std::vector< std::string >                               myLastParameters;
610 };
611
612
613 namespace SMESH
614 {
615   template<class T>
616   T
617   DownCast(CORBA::Object_ptr theArg)
618   {
619     return dynamic_cast<T>(SMESH_Gen_i::GetServant(theArg).in());
620   }
621 }
622
623
624 #endif