only store points, no vertices
visualize via 'Points Gaussian', not 'Points' in paraview. + adding displacements for points
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4c915eddbc
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827f354435
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@ -107,15 +107,8 @@ class VTK:
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vtk_points= vtk.vtkPoints()
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vtk_points.SetData(np_to_vtk(points))
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vertices = vtk.vtkCellArray()
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vertices.SetNumberOfCells(points.shape[0])
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T = np.concatenate((np.ones((points.shape[0],1),dtype=np.int64),
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np.arange(points.shape[0],dtype=np.int64).reshape(-1,1)),axis=1).ravel()
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vertices.SetCells(points.shape[0],np_to_vtk(T, deep=True, array_type=vtk.VTK_ID_TYPE))
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geom = vtk.vtkPolyData()
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geom.SetPoints(vtk_points)
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geom.SetVerts(vertices)
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return VTK(geom)
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@ -446,7 +446,7 @@ class Result:
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def cell_coordinates(self):
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"""Return initial coordinates of the cell centers."""
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if self.structured:
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return grid_filters.cell_coord0(self.grid,self.size,self.origin)
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return grid_filters.cell_coord0(self.grid,self.size,self.origin).reshape(-1,3)
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else:
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with h5py.File(self.fname,'r') as f:
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return f['geometry/x_c'][()]
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@ -1045,14 +1045,14 @@ class Result:
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materialpoints_backup = self.selection['materialpoints'].copy()
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self.pick('materialpoints',False)
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for label in (labels if isinstance(labels,list) else [labels]):
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for p in self.iterate('con_physics'):
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if p != 'generic':
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for c in self.iterate('constituents'):
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x = self.get_dataset_location(label)
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if len(x) == 0:
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continue
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array = self.read_dataset(x,0)
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v.add(array,'1_'+x[0].split('/',1)[1]) #ToDo: hard coded 1!
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for p in self.iterate('con_physics'):
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if p != 'generic':
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for c in self.iterate('constituents'):
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x = self.get_dataset_location(label)
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if len(x) == 0:
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continue
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array = self.read_dataset(x,0)
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v.add(array,'1_'+x[0].split('/',1)[1]) #ToDo: hard coded 1!
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else:
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x = self.get_dataset_location(label)
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if len(x) == 0:
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@ -1066,14 +1066,14 @@ class Result:
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constituents_backup = self.selection['constituents'].copy()
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self.pick('constituents',False)
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for label in (labels if isinstance(labels,list) else [labels]):
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for p in self.iterate('mat_physics'):
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if p != 'generic':
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for m in self.iterate('materialpoints'):
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x = self.get_dataset_location(label)
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if len(x) == 0:
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continue
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array = self.read_dataset(x,0)
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v.add(array,'1_'+x[0].split('/',1)[1]) #ToDo: why 1_?
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for p in self.iterate('mat_physics'):
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if p != 'generic':
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for m in self.iterate('materialpoints'):
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x = self.get_dataset_location(label)
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if len(x) == 0:
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continue
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array = self.read_dataset(x,0)
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v.add(array,'1_'+x[0].split('/',1)[1]) #ToDo: why 1_?
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else:
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x = self.get_dataset_location(label)
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if len(x) == 0:
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@ -1082,9 +1082,8 @@ class Result:
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v.add(array,'1_'+x[0].split('/',1)[1])
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self.pick('constituents',constituents_backup)
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if mode.lower()=='cell':
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u = self.read_dataset(self.get_dataset_location('u_n'))
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v.add(u,'u')
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u = self.read_dataset(self.get_dataset_location('u_n' if mode.lower() == 'cell' else 'u_p'))
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v.add(u,'u')
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file_out = '{}_inc{}'.format(os.path.splitext(os.path.basename(self.fname))[0],
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inc[3:].zfill(N_digits))
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