156 lines
6.0 KiB
Python
Executable File
156 lines
6.0 KiB
Python
Executable File
#!/usr/bin/env python
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# -*- coding: UTF-8 no BOM -*-
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import os,sys,string,re,numpy,vtk
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from optparse import OptionParser, OptionGroup, Option, SUPPRESS_HELP
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#--------------------------------------------------------------------------------------------------
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class extendedOption(Option):
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#--------------------------------------------------------------------------------------------------
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# used for definition of new option parser action 'extend', which enables to take multiple option arguments
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# taken from online tutorial http://docs.python.org/library/optparse.html
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ACTIONS = Option.ACTIONS + ("extend",)
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STORE_ACTIONS = Option.STORE_ACTIONS + ("extend",)
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TYPED_ACTIONS = Option.TYPED_ACTIONS + ("extend",)
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ALWAYS_TYPED_ACTIONS = Option.ALWAYS_TYPED_ACTIONS + ("extend",)
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def take_action(self, action, dest, opt, value, values, parser):
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if action == "extend":
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lvalue = value.split(",")
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values.ensure_value(dest, []).extend(lvalue)
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else:
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Option.take_action(self, action, dest, opt, value, values, parser)
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#--------------------------------------------------------------------------------------------------
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# MAIN
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#--------------------------------------------------------------------------------------------------
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identifiers = {
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'grid': ['a','b','c'],
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'size': ['x','y','z'],
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'origin': ['x','y','z'],
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}
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mappings = {
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'grid': lambda x: int(x),
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'size': lambda x: float(x),
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'origin': lambda x: float(x),
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'homogenization': lambda x: int(x),
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'microstructures': lambda x: int(x),
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}
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parser = OptionParser(option_class=extendedOption, usage='%prog [geomfile[s]]', description = """
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Produce VTK rectilinear mesh of structure data from geom description
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""" + string.replace('$Id$','\n','\\n')
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)
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(options, filenames) = parser.parse_args()
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#--- setup file handles --------------------------------------------------------------------------
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files = []
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if filenames == []:
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files.append({'name':'STDIN',
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'input':sys.stdin,
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'croak':sys.stderr,
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})
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else:
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for name in filenames:
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if os.path.exists(name):
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files.append({'name':name,
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'input':open(name),
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'croak':sys.stdout,
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})
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#--- loop over input files ------------------------------------------------------------------------
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for file in files:
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if file['name'] != 'STDIN': file['croak'].write(file['name']+'\n')
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firstline = file['input'].readline()
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m = re.search('(\d+)\s*head', firstline.lower())
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if m:
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headerlines = int(m.group(1))
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headers = [file['input'].readline() for i in range(headerlines)]
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else:
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headerlines = 1
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headers = firstline
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content = file['input'].readlines()
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file['input'].close()
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#--- interprete header ----------------------------------------------------------------------------
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info = {
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'grid': numpy.zeros(3,'i'),
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'size': numpy.zeros(3,'d'),
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'origin': numpy.zeros(3,'d'),
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'microstructures': 0,
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'homogenization': 0
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}
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for header in headers:
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headitems = map(str.lower,header.split())
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if headitems[0] == 'resolution': headitems[0] = 'grid'
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if headitems[0] == 'dimension': headitems[0] = 'size'
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if headitems[0] in mappings.keys():
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if headitems[0] in identifiers.keys():
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for i in xrange(len(identifiers[headitems[0]])):
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info[headitems[0]][i] = \
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mappings[headitems[0]](headitems[headitems.index(identifiers[headitems[0]][i])+1])
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else:
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info[headitems[0]] = mappings[headitems[0]](headitems[1])
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file['croak'].write('grid a b c: %s\n'%(' x '.join(map(str,info['grid']))) + \
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'size x y z: %s\n'%(' x '.join(map(str,info['size']))) + \
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'origin x y z: %s\n'%(' : '.join(map(str,info['origin']))) + \
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'homogenization: %i\n'%info['homogenization'] + \
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'microstructures: %i\n'%info['microstructures'])
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if numpy.any(info['grid'] < 1):
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file['croak'].write('invalid grid a b c.\n')
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sys.exit()
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if numpy.any(info['size'] <= 0.0):
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file['croak'].write('invalid size x y z.\n')
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sys.exit()
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#--- generate grid --------------------------------------------------------------------------------
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grid = vtk.vtkRectilinearGrid()
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grid.SetDimensions([x+1 for x in info['grid']])
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temp = []
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for i in xrange(3):
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temp.append(vtk.vtkDoubleArray())
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temp[i].SetNumberOfTuples(info['grid'][i]+1)
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for j in range(info['grid'][i]+1):
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temp[i].InsertTuple1(j,j*info['size'][i]/info['grid'][i]+info['origin'][i])
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if i == 0: grid.SetXCoordinates(temp[0])
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if i == 1: grid.SetYCoordinates(temp[1])
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if i == 2: grid.SetZCoordinates(temp[2])
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#--- read microstructure information --------------------------------------------------------------
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structure = vtk.vtkIntArray()
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structure.SetName('Microstructures')
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for line in content:
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for item in map(int,line.split()):
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structure.InsertNextValue(item)
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grid.GetCellData().AddArray(structure)
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#--- write data -----------------------------------------------------------------------------------
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if file['name'] == 'STDIN':
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outWriter = vtk.vtkRectilinearGridWriter()
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outWriter.WriteToOutputStringOn()
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outWriter.SetFileTypeToASCII()
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outWriter.SetHeader('# powered by $Id$')
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outWriter.SetInput(grid)
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outWriter.Write()
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sys.stdout.write(outWriter.GetOutputString()[0:outWriter.GetOutputStringLength()])
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else:
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(head,tail) = os.path.split(file['name'])
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outWriter = vtk.vtkXMLRectilinearGridWriter()
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outWriter.SetDataModeToBinary()
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outWriter.SetCompressorTypeToZLib()
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outWriter.SetFileName(os.path.join(head,'mesh_'+os.path.splitext(tail)[0]
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+'.'+outWriter.GetDefaultFileExtension()))
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outWriter.SetInput(grid)
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outWriter.Write()
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