a bit more vectorized
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d6b9783794
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@ -855,19 +855,22 @@ class Geom:
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v = VTK.from_polyData(grid_filters.node_coord0(self.grid,self.size,self.origin).reshape(-1,3,order='F'))
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cells = vtk.vtkCellArray()
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index={}
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nodes={}
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nodes_PBC={}
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if periodic:
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FaceYZ_per=np.empty([])
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FaceXY_per=np.empty([])
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FaceXZ_per=np.empty([])
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nodes_PBC['0']=np.array([])
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nodes_PBC['1']=np.array([])
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nodes_PBC['2']=np.array([])
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else:
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FaceYZ_per=np.concatenate((
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nodes_PBC['0']=np.concatenate((
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np.arange(0 , np.prod(self.grid+1) , (self.grid[0]+1) ),
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np.arange(self.grid[0] , np.prod(self.grid+1) , (self.grid[0]+1) ) ))
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FaceXY_per=np.concatenate((
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nodes_PBC['2']=np.concatenate((
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np.arange(0 , np.prod(self.grid[:2]+1) , 1 ),
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np.arange(np.prod(self.grid+1) - np.prod(self.grid[:2]+1), \
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np.prod(self.grid+1) , 1 ) ))
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FaceXZ_per=np.concatenate((
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nodes_PBC['1']=np.concatenate((
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np.concatenate([np.arange((i)*np.prod(self.grid[:2]+1), \
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(i)*np.prod(self.grid[:2]+1)+ (self.grid[0]+1)) for i in range(self.grid[2]+1)]) ,
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np.concatenate([np.arange( (i+1)*np.prod(self.grid[:2]+1)-(self.grid[0]+1),\
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@ -880,29 +883,33 @@ class Geom:
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base_nodes = np.concatenate((base_nodes,np.take(base_nodes,[0],d)),d)
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else:
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base_nodes = np.concatenate((base_nodes,np.logical_and(np.take(base_nodes,[0],d),False)),d)
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for p in np.argwhere(base_nodes.flatten(order='F')):
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if np.any(FaceYZ_per == p[0]) and d_s == 0:
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pass
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elif np.any(FaceXY_per == p[0]) and d_s == 2:
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pass
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elif np.any(FaceXZ_per == p[0]) and d_s == 1:
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pass
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else:
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q = vtk.vtkQuad()
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q.GetPointIds().SetId(0, p[0])
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if d_s == 0:
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q.GetPointIds().SetId(1, p[0]+(self.grid[0]+1))
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q.GetPointIds().SetId(2, p[0]+np.prod(self.grid[:2]+1)+(self.grid[0]+1))
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q.GetPointIds().SetId(3, p[0]+np.prod(self.grid[:2]+1))
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if d_s == 1:
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q.GetPointIds().SetId(1, p[0]+np.prod(self.grid[:2]+1))
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q.GetPointIds().SetId(2, p[0]+np.prod(self.grid[:2]+1)+1)
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q.GetPointIds().SetId(3, p[0]+1)
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if d_s == 2:
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q.GetPointIds().SetId(1, p[0]+1)
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q.GetPointIds().SetId(2, p[0]+(self.grid[0]+1)+1)
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q.GetPointIds().SetId(3, p[0]+(self.grid[0]+1))
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cells.InsertNextCell(q)
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nodes['{}'.format(d_s)]= np.argwhere(base_nodes.flatten(order='F'))[:,0]
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index['{}'.format(d_s)]= np.isin( nodes['{}'.format(d_s)] , nodes_PBC['{}'.format(d_s)] , assume_unique=True, invert=True )
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for p in nodes['0'][index['0']]:
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q = vtk.vtkQuad()
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q.GetPointIds().SetId(0, p)
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q.GetPointIds().SetId(1, p+(self.grid[0]+1))
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q.GetPointIds().SetId(2, p+np.prod(self.grid[:2]+1)+(self.grid[0]+1))
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q.GetPointIds().SetId(3, p+np.prod(self.grid[:2]+1))
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cells.InsertNextCell(q)
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for p in nodes['1'][index['1']]:
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q = vtk.vtkQuad()
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q.GetPointIds().SetId(0, p)
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q.GetPointIds().SetId(1, p+np.prod(self.grid[:2]+1))
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q.GetPointIds().SetId(2, p+np.prod(self.grid[:2]+1)+1)
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q.GetPointIds().SetId(3, p+1)
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cells.InsertNextCell(q)
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for p in nodes['2'][index['2']]:
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q = vtk.vtkQuad()
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q.GetPointIds().SetId(0, p)
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q.GetPointIds().SetId(1, p+1)
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q.GetPointIds().SetId(2, p+(self.grid[0]+1)+1)
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q.GetPointIds().SetId(3, p+(self.grid[0]+1))
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cells.InsertNextCell(q)
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v.vtk_data.SetPolys(cells)
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v.save('GrainBoundaries')
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