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# SMESH SMESH_I : idl implementation based on 'SMESH' unit's calsses
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#
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# Copyright (C) 2003 OPEN CASCADE, EADS/CCR, LIP6, CEA/DEN,
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# CEDRAT, EDF R&D, LEG, PRINCIPIA R&D, BUREAU VERITAS
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#
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# This library is free software; you can redistribute it and/or
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# modify it under the terms of the GNU Lesser General Public
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# License as published by the Free Software Foundation; either
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# version 2.1 of the License.
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#
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# This library is distributed in the hope that it will be useful,
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# but WITHOUT ANY WARRANTY; without even the implied warranty of
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# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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# Lesser General Public License for more details.
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#
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# You should have received a copy of the GNU Lesser General Public
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# License along with this library; if not, write to the Free Software
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# Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
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#
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# See http://www.opencascade.org/SALOME/ or email : webmaster.salome@opencascade.org
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#
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#
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#
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# File : SMESH_test.py
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# Module : SMESH
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import salome
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import geompy
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import smeshpy
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import SMESH
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import StdMeshers
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# ---- define a box
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box = geompy.MakeBox(0., 0., 0., 100., 200., 300.)
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idb = geompy.addToStudy(box, "box")
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# ---- add first face of box in study
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subShapeList = geompy.SubShapeAll(box, geompy.ShapeType["FACE"])
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face = subShapeList[0]
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name = geompy.SubShapeName(face, box)
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idf = geompy.addToStudyInFather(box, face, name)
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# ---- add shell from box in study
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subShellList = geompy.SubShapeAll(box, geompy.ShapeType["SHELL"])
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shell = subShellList[0]
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name = geompy.SubShapeName(shell, box)
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ids = geompy.addToStudyInFather(box, shell, name)
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# ---- add first edge of face in study
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edgeList = geompy.SubShapeAll(face, geompy.ShapeType["EDGE"])
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edge = edgeList[0];
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name = geompy.SubShapeName(edge, face)
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ide = geompy.addToStudyInFather(face, edge, name)
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# ---- launch SMESH, init a Mesh with the box
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gen = smeshpy.smeshpy()
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mesh = gen.CreateMesh(idb)
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print "-------------------------- create Hypothesis"
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print "-------------------------- LocalLength"
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hypo1 = gen.CreateHypothesis("LocalLength", "libStdMeshersEngine.so")
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print hypo1.GetName()
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print hypo1.GetId()
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print hypo1.GetLength()
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hypo1.SetLength(100)
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print hypo1.GetLength()
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print "-------------------------- bidon"
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hyp3 = gen.CreateHypothesis("bidon", "")
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print "-------------------------- NumberOfSegments"
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hypo3 = gen.CreateHypothesis("NumberOfSegments", "libStdMeshersEngine.so")
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hypo3.SetNumberOfSegments(7)
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print hypo3.GetName()
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print hypo3.GetNumberOfSegments()
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print hypo3.GetId()
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print "-------------------------- MaxElementArea"
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hypo4 = gen.CreateHypothesis("MaxElementArea", "libStdMeshersEngine.so")
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hypo4.SetMaxElementArea(5000)
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print hypo4.GetName()
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print hypo4.GetMaxElementArea()
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print hypo4.GetId()
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print "-------------------------- Regular_1D"
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algo_1 = gen.CreateHypothesis("Regular_1D", "libStdMeshersEngine.so")
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print algo_1.GetName()
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print algo_1.GetId()
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listHyp = algo_1.GetCompatibleHypothesis()
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for hyp in listHyp:
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print hyp
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print algo_1.GetId()
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print "-------------------------- MEFISTO_2D"
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algo_2 = gen.CreateHypothesis("MEFISTO_2D", "libStdMeshersEngine.so")
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print algo_2.GetName()
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print algo_2.GetId()
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listHyp = algo_2.GetCompatibleHypothesis()
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for hyp in listHyp:
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print hyp
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print algo_2.GetId()
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print "-------------------------- add hypothesis to edge"
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edge = salome.IDToObject(ide)
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submesh = mesh.GetSubMesh(edge, "SubMeshEdge")
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ret = mesh.AddHypothesis(edge,algo_1)
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print ret
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ret = mesh.AddHypothesis(edge,hypo1)
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print ret
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##print "-------------------------- compute edge"
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##ret=gen.Compute(mesh,ide)
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##print ret
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##log=mesh.GetLog(1);
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##for a in log:
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## print a
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print "-------------------------- add hypothesis to box"
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box = salome.IDToObject(idb)
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submesh = mesh.GetSubMesh(box, "SubMeshBox")
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ret = mesh.AddHypothesis(box,algo_1)
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print ret
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ret = mesh.AddHypothesis(box,hypo1)
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print ret
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ret = mesh.AddHypothesis(box,algo_2)
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print ret
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ret = mesh.AddHypothesis(box,hypo4)
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print ret
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print "-------------------------- compute face"
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ret = gen.Compute(mesh,idf)
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print ret
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log = mesh.GetLog(0) # 0 - GetLog without ClearLog after, else if 1 - ClearLog after
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for a in log:
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print "-------"
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ii = 0
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ir = 0
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comType = a.commandType
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if comType == 0:
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for i in range(a.number):
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ind = a.indexes[ii]
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ii = ii+1
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r1 = a.coords[ir]
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ir = ir+1
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r2 = a.coords[ir]
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ir = ir+1
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r3 = a.coords[ir]
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ir = ir+1
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print "AddNode %i - %g %g %g" % (ind, r1, r2, r3)
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elif comType == 1:
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for i in range(a.number):
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ind = a.indexes[ii]
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ii = ii+1
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i1 = a.indexes[ii]
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ii = ii+1
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i2 = a.indexes[ii]
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ii = ii+1
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print "AddEdge %i - %i %i" % (ind, i1, i2)
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elif comType == 2:
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for i in range(a.number):
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ind = a.indexes[ii]
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ii = ii+1
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i1 = a.indexes[ii]
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ii = ii+1
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i2 = a.indexes[ii]
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ii = ii+1
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i3 = a.indexes[ii]
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ii = ii+1
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print "AddTriangle %i - %i %i %i" % (ind, i1, i2, i3)
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##print "-------------------------- compute box"
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##ret=gen.Compute(mesh,idb)
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##print ret
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##log=mesh.GetLog(1);
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##print log
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##shell=salome.IDToObject(ids)
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##submesh=mesh.GetElementsOnShape(shell)
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##ret=mesh.AddHypothesis(shell,algo_1)
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##print ret
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##ret=mesh.AddHypothesis(shell,hypo1)
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##print ret
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##ret=gen.Compute(mesh,ids)
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##print ret
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