From: eap Date: Thu, 13 Oct 2011 05:28:51 +0000 (+0000) Subject: 0021096: EDF 1729 SMESH: Create a Projection 1D-2D algorithm X-Git-Tag: V6_4_0a1~33 X-Git-Url: http://git.salome-platform.org/gitweb/?a=commitdiff_plain;h=678e9eaa31ba95f724ee460d41304383ff698198;p=modules%2Fsmesh.git 0021096: EDF 1729 SMESH: Create a Projection 1D-2D algorithm + def Projection1D2D(self, geom=0): + return Mesh_Projection2D(self, geom, "Projection_1D2D") --- diff --git a/src/SMESH_SWIG/smeshDC.py b/src/SMESH_SWIG/smeshDC.py index a11feb4d6..ef8dd1df6 100644 --- a/src/SMESH_SWIG/smeshDC.py +++ b/src/SMESH_SWIG/smeshDC.py @@ -1413,6 +1413,15 @@ class Mesh: def Projection1D(self, geom=0): return Mesh_Projection1D(self, geom) + ## Creates a projection 1D-2D algorithm for faces. + # If the optional \a geom parameter is not set, this algorithm is global. + # Otherwise, this algorithm defines a submesh based on \a geom subshape. + # @param geom If defined, the subshape to be meshed + # @return an instance of Mesh_Projection2D algorithm + # @ingroup l3_algos_proj + def Projection1D2D(self, geom=0): + return Mesh_Projection2D(self, geom, "Projection_1D2D") + ## Creates a projection 2D algorithm for faces. # If the optional \a geom parameter is not set, this algorithm is global. # Otherwise, this algorithm defines a submesh based on \a geom subshape. @@ -1420,7 +1429,7 @@ class Mesh: # @return an instance of Mesh_Projection2D algorithm # @ingroup l3_algos_proj def Projection2D(self, geom=0): - return Mesh_Projection2D(self, geom) + return Mesh_Projection2D(self, geom, "Projection_2D") ## Creates a projection 3D algorithm for solids. # If the optional \a geom parameter is not set, this algorithm is global. @@ -6093,9 +6102,9 @@ class Mesh_Projection1D(Mesh_Algorithm): class Mesh_Projection2D(Mesh_Algorithm): ## Private constructor. - def __init__(self, mesh, geom=0): + def __init__(self, mesh, geom=0, algoName="Projection_2D"): Mesh_Algorithm.__init__(self) - self.Create(mesh, geom, "Projection_2D") + self.Create(mesh, geom, algoName) ## Defines "Source Face" hypothesis, specifying a meshed face, from where # a mesh pattern is taken, and, optionally, the association of vertices