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correct previous integration (Porting to Python 2.6)
[modules/smesh.git] / src / SMESH_SWIG / SMESH_fixation_hexa.py
index 2d12c7f47580f35f32afdfcd7cbc1f1a58b25b0d..6a73b38b8161acc44a69a1fe7fffbbfa942654a0 100644 (file)
+#  -*- coding: iso-8859-1 -*-
+#  Copyright (C) 2007-2008  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
+#
+#  This library is free software; you can redistribute it and/or
+#  modify it under the terms of the GNU Lesser General Public
+#  License as published by the Free Software Foundation; either
+#  version 2.1 of the License.
+#
+#  This library is distributed in the hope that it will be useful,
+#  but WITHOUT ANY WARRANTY; without even the implied warranty of
+#  MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
+#  Lesser General Public License for more details.
+#
+#  You should have received a copy of the GNU Lesser General Public
+#  License along with this library; if not, write to the Free Software
+#  Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA  02111-1307 USA
+#
+#  See http://www.salome-platform.org/ or email : webmaster.salome@opencascade.com
 #
 # Hexahedrization of the geometry generated by the Python script
 # SMESH_fixation.py
 # Hypothesis and algorithms for the mesh generation are global
 #
-
 import SMESH_fixation
-
-import StdMeshers
+import smesh
 
 compshell = SMESH_fixation.compshell
 idcomp = SMESH_fixation.idcomp
 geompy = SMESH_fixation.geompy
 salome = SMESH_fixation.salome
 
-ShapeTypeShell     = 3
-ShapeTypeFace      = 4
-ShapeTypeEdge      = 6
-
 print "Analysis of the geometry to be meshed :"
-subShellList=geompy.SubShapeAll(compshell,ShapeTypeShell)
-subFaceList=geompy.SubShapeAll(compshell,ShapeTypeFace)
-subEdgeList=geompy.SubShapeAll(compshell,ShapeTypeEdge)
+subShellList = geompy.SubShapeAll(compshell, geompy.ShapeType["SHELL"])
+subFaceList  = geompy.SubShapeAll(compshell, geompy.ShapeType["FACE"])
+subEdgeList  = geompy.SubShapeAll(compshell, geompy.ShapeType["EDGE"])
 
-print "number of Shells in compshell : ",len(subShellList)
-print "number of Faces in compshell : ",len(subFaceList)
-print "number of Edges in compshell : ",len(subEdgeList)
+print "number of Shells in compshell : ", len(subShellList)
+print "number of Faces  in compshell : ", len(subFaceList)
+print "number of Edges  in compshell : ", len(subEdgeList)
 
-status=geompy.CheckShape(compshell)
+status = geompy.CheckShape(compshell)
 print " check status ", status
 
 ### ---------------------------- SMESH --------------------------------------
-smesh = salome.lcc.FindOrLoadComponent("FactoryServer", "SMESH")
 
-smeshgui = salome.ImportComponentGUI("SMESH")
-smeshgui.Init(salome.myStudyId)
+# ---- init a Mesh with the compshell
+shape_mesh = salome.IDToObject( idcomp  )
+
+mesh = smesh.Mesh(shape_mesh, "MeshCompShell")
 
-### ---- create Hypothesis
 
-print "-------------------------- create Hypothesis"
+# ---- set Hypothesis and Algorithm
 
 print "-------------------------- NumberOfSegments"
 
 numberOfSegments = 5
 
-hypNbSeg=smesh.CreateHypothesis("NumberOfSegments", "libStdMeshersEngine.so")
-hypNbSeg.SetNumberOfSegments(numberOfSegments)
-
+regular1D = mesh.Segment()
+regular1D.SetName("Wire Discretisation")
+hypNbSeg = regular1D.NumberOfSegments(numberOfSegments)
 print hypNbSeg.GetName()
 print hypNbSeg.GetId()
 print hypNbSeg.GetNumberOfSegments()
-
-smeshgui.SetName(salome.ObjectToID(hypNbSeg), "NumberOfSegments_5")
-
-# ---- create Algorithms
-
-print "-------------------------- create Algorithms"
-
-print "-------------------------- Regular_1D"
-
-regular1D=smesh.CreateHypothesis("Regular_1D", "libStdMeshersEngine.so")
-
-smeshgui.SetName(salome.ObjectToID(regular1D), "Wire Discretisation")
+smesh.SetName(hypNbSeg, "NumberOfSegments_" + str(numberOfSegments))
 
 print "-------------------------- Quadrangle_2D"
 
-quad2D=smesh.CreateHypothesis("Quadrangle_2D", "libStdMeshersEngine.so")
-
-smeshgui.SetName(salome.ObjectToID(quad2D), "Quadrangle_2D")
+quad2D = mesh.Quadrangle()
+quad2D.SetName("Quadrangle_2D")
 
 print "-------------------------- Hexa_3D"
 
-hexa3D=smesh.CreateHypothesis("Hexa_3D", "libStdMeshersEngine.so")
-
-smeshgui.SetName(salome.ObjectToID(hexa3D), "Hexa_3D")
-
-# ---- init a Mesh with the compshell
-shape_mesh = salome.IDToObject( idcomp  )
-
-mesh=smesh.CreateMesh(shape_mesh)
-smeshgui.SetName(salome.ObjectToID(mesh), "MeshCompShell")
-
-
-# ---- add hypothesis to compshell
-
-print "-------------------------- add hypothesis to compshell"
-
-mesh.AddHypothesis(shape_mesh,regular1D)
-mesh.AddHypothesis(shape_mesh,hypNbSeg)
+hexa3D = mesh.Hexahedron()
+hexa3D.SetName("Hexa_3D")
 
-mesh.AddHypothesis(shape_mesh,quad2D)
-mesh.AddHypothesis(shape_mesh,hexa3D)
 
 salome.sg.updateObjBrowser(1)
 
 print "-------------------------- compute compshell"
-ret=smesh.Compute(mesh, shape_mesh)
+ret = mesh.Compute()
 print ret
 if ret != 0:
-    log=mesh.GetLog(0) # no erase trace
+    log = mesh.GetLog(0) # no erase trace
     for linelog in log:
         print linelog
     print "Information about the MeshcompShel:"