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NPAL17920: error in init_smesh routine in smeshDC.py file.
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@ -136,9 +136,9 @@ def TreatHypoStatus(status, hypName, geomName, isAlgo):
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class smeshDC(SMESH._objref_SMESH_Gen):
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def init_smesh(self,theStudy,geompyD):
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self.SetCurrentStudy(theStudy)
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self.geompyD=geompyD
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self.SetGeomEngine(geompyD)
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self.SetCurrentStudy(theStudy)
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def Mesh(self, obj=0, name=0):
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return Mesh(self,self.geompyD,obj,name)
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@ -327,7 +327,7 @@ class smeshDC(SMESH._objref_SMESH_Gen):
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print "Error: Treshold should be a string."
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return None
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elif CritType in [FT_FreeBorders, FT_FreeEdges, FT_BadOrientedVolume]:
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# Here we don't need treshold
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# Here we do not need treshold
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if aTreshold == FT_LogicalNOT:
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aCriterion.UnaryOp = self.EnumToLong(FT_LogicalNOT)
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elif aTreshold in [FT_LogicalAND, FT_LogicalOR]:
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@ -412,7 +412,7 @@ import omniORB
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omniORB.registerObjref(SMESH._objref_SMESH_Gen._NP_RepositoryId, smeshDC)
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## Mother class to define algorithm, recommended to don't use directly.
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## Mother class to define algorithm, recommended to do not use directly.
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#
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# More details.
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class Mesh_Algorithm:
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@ -527,7 +527,7 @@ class Mesh_Algorithm:
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# More details.
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class Mesh_Segment(Mesh_Algorithm):
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algo = 0 # algorithm object common for all Mesh_Segment's
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algo = 0 # algorithm object common for all Mesh_Segments
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## Private constructor.
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def __init__(self, mesh, geom=0):
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@ -646,7 +646,7 @@ class Mesh_Segment(Mesh_Algorithm):
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# More details.
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class Mesh_CompositeSegment(Mesh_Segment):
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algo = 0 # algorithm object common for all Mesh_CompositeSegment's
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algo = 0 # algorithm object common for all Mesh_CompositeSegments
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## Private constructor.
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def __init__(self, mesh, geom=0):
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@ -665,7 +665,7 @@ class Mesh_CompositeSegment(Mesh_Segment):
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# More details.
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class Mesh_Segment_Python(Mesh_Segment):
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algo = 0 # algorithm object common for all Mesh_Segment_Python's
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algo = 0 # algorithm object common for all Mesh_Segment_Pythons
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## Private constructor.
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def __init__(self, mesh, geom=0):
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@ -877,7 +877,7 @@ class Mesh_Triangle(Mesh_Algorithm):
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# More details.
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class Mesh_Quadrangle(Mesh_Algorithm):
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algo = 0 # algorithm object common for all Mesh_Quadrangle's
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algo = 0 # algorithm object common for all Mesh_Quadrangles
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## Private constructor.
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def __init__(self, mesh, geom=0):
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@ -907,9 +907,9 @@ class Mesh_Tetrahedron(Mesh_Algorithm):
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params = 0
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algoType = 0
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algoNET = 0 # algorithm object common for all Mesh_Tetrahedron's
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algoGHS = 0 # algorithm object common for all Mesh_Tetrahedron's
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algoFNET = 0 # algorithm object common for all Mesh_Tetrahedron's
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algoNET = 0 # algorithm object common for all Mesh_Tetrahedrons
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algoGHS = 0 # algorithm object common for all Mesh_Tetrahedrons
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algoFNET = 0 # algorithm object common for all Mesh_Tetrahedrons
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## Private constructor.
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def __init__(self, mesh, algoType, geom=0):
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@ -1015,7 +1015,7 @@ class Mesh_Tetrahedron(Mesh_Algorithm):
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# More details.
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class Mesh_Hexahedron(Mesh_Algorithm):
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algo = 0 # algorithm object common for all Mesh_Hexahedron's
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algo = 0 # algorithm object common for all Mesh_Hexahedrons
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## Private constructor.
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def __init__(self, mesh, geom=0):
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@ -1041,8 +1041,8 @@ class Mesh_Netgen(Mesh_Algorithm):
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is3D = 0
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algoNET23 = 0 # algorithm object common for all Mesh_Netgen's
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algoNET2 = 0 # algorithm object common for all Mesh_Netgen's
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algoNET23 = 0 # algorithm object common for all Mesh_Netgens
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algoNET2 = 0 # algorithm object common for all Mesh_Netgens
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## Private constructor.
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def __init__(self, mesh, is3D, geom=0):
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@ -1086,7 +1086,7 @@ class Mesh_Netgen(Mesh_Algorithm):
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# More details.
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class Mesh_Projection1D(Mesh_Algorithm):
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algo = 0 # algorithm object common for all Mesh_Projection1D's
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algo = 0 # algorithm object common for all Mesh_Projection1Ds
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## Private constructor.
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def __init__(self, mesh, geom=0):
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@ -1126,7 +1126,7 @@ class Mesh_Projection1D(Mesh_Algorithm):
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# More details.
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class Mesh_Projection2D(Mesh_Algorithm):
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algo = 0 # algorithm object common for all Mesh_Projection2D's
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algo = 0 # algorithm object common for all Mesh_Projection2Ds
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## Private constructor.
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def __init__(self, mesh, geom=0):
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@ -1172,7 +1172,7 @@ class Mesh_Projection2D(Mesh_Algorithm):
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# More details.
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class Mesh_Projection3D(Mesh_Algorithm):
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algo = 0 # algorithm object common for all Mesh_Projection3D's
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algo = 0 # algorithm object common for all Mesh_Projection3Ds
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## Private constructor.
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def __init__(self, mesh, geom=0):
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@ -1220,7 +1220,7 @@ class Mesh_Projection3D(Mesh_Algorithm):
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# More details.
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class Mesh_Prism3D(Mesh_Algorithm):
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algo = 0 # algorithm object common for all Mesh_Prism3D's
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algo = 0 # algorithm object common for all Mesh_Prism3Ds
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## Private constructor.
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def __init__(self, mesh, geom=0):
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@ -1240,7 +1240,7 @@ class Mesh_Prism3D(Mesh_Algorithm):
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# More details.
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class Mesh_RadialPrism3D(Mesh_Algorithm):
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algo = 0 # algorithm object common for all Mesh_RadialPrism3D's
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algo = 0 # algorithm object common for all Mesh_RadialPrism3Ds
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## Private constructor.
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def __init__(self, mesh, geom=0):
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@ -3024,13 +3024,13 @@ class Mesh:
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return self.editor.ChangeElemNodes(ide, newIDs)
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## If during last operation of MeshEditor some nodes were
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# created this method returns list of it's IDs, \n
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# created this method returns list of its IDs, \n
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# if new nodes not created - returns empty list
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def GetLastCreatedNodes(self):
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return self.editor.GetLastCreatedNodes()
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## If during last operation of MeshEditor some elements were
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# created this method returns list of it's IDs, \n
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# created this method returns list of its IDs, \n
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# if new elements not creared - returns empty list
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def GetLastCreatedElems(self):
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return self.editor.GetLastCreatedElems()
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