changed keywords, now also printing out altered size/grid/microstructures information
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@ -27,32 +27,33 @@ class extendedOption(Option):
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# ----------------------- MAIN -------------------------------
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identifiers = {
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'resolution': ['a','b','c'],
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'dimension': ['x','y','z'],
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'origin': ['x','y','z'],
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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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'resolution': lambda x: int(x),
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'dimension': 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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'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 options [file[s]]', description = """
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Scales a geometry description independently in x, y, and z direction in terms of resolution and/or dimension.
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Scales a geometry description independently in x, y, and z direction in terms of grid and/or size.
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""" + string.replace('$Id$','\n','\\n')
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)
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parser.add_option('-r', '--resolution', dest='resolution', type='int', nargs = 3, \
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help='new resolution (a,b,c)')
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parser.add_option('-d', '--dimension', dest='dimension', type='float', nargs = 3, \
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help='new dimension (x,y,z)')
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parser.add_option('-g', '--grid', dest='grid', type='int', nargs = 3, \
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help='a,b,c grid of hexahedral box [unchanged]')
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parser.add_option('-s', '--size', dest='size', type='float', nargs = 3, \
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help='x,y,z size of hexahedral box [unchanged]')
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parser.add_option('-2', '--twodimensional', dest='twoD', action='store_true', \
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help='output geom file with two-dimensional data arrangement')
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parser.set_defaults(resolution = [0,0,0])
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parser.set_defaults(dimension = [0.0,0.0,0.0])
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parser.set_defaults(grid = [0,0,0])
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parser.set_defaults(size = [0.0,0.0,0.0])
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parser.set_defaults(twoD = False)
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(options, filenames) = parser.parse_args()
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@ -86,7 +87,7 @@ for file in files:
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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 = [firstline]+[file['input'].readline() for i in range(headerlines)]
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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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@ -94,15 +95,20 @@ for file in files:
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content = file['input'].readlines()
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file['input'].close()
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info = {'resolution': numpy.array(options.resolution),
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'dimension': numpy.array(options.dimension),
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'origin': numpy.array([0.0,0.0,0.0]),
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'homogenization': 1,
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}
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info = {
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'grid': numpy.array(options.grid),
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'size': numpy.array(options.size),
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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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new_header = []
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new_header.append('$Id$\n')
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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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@ -110,49 +116,50 @@ for file in files:
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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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else:
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new_header.append(header)
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if numpy.all(info['resolution'] == 0):
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file['croak'].write('no resolution info found.\n')
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if numpy.all(info['grid'] == 0):
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file['croak'].write('no grid info found.\n')
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continue
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if numpy.all(info['dimension'] == 0.0):
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file['croak'].write('no dimension info found.\n')
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if numpy.all(info['size'] == 0.0):
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file['croak'].write('no size info found.\n')
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continue
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if options.resolution == [0,0,0]:
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options.resolution = info['resolution']
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if options.dimension == [0.0,0.0,0.0]:
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options.dimension = info['dimension']
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file['croak'].write('resolution: %s\n'%(' x '.join(map(str,info['resolution']))) + \
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'dimension: %s\n'%(' x '.join(map(str,info['dimension']))) + \
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'origin: %s\n'%(' : '.join(map(str,info['origin']))) + \
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'homogenization: %i\n'%info['homogenization'])
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new_header.append("resolution\ta %i\tb %i\tc %i\n"%(
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options.resolution[0],
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options.resolution[1],
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options.resolution[2],))
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new_header.append("dimension\tx %f\ty %f\tz %f\n"%(
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options.dimension[0],
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options.dimension[1],
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options.dimension[2],))
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new_header.append("origin\tx %f\ty %f\tz %f\n"%(
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info['origin'][0],
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info['origin'][1],
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info['origin'][2],))
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new_header.append("homogenization\t%i\n"%info['homogenization'])
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file['croak'].write('-- input --\n' +\
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'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 options.grid == [0,0,0]:
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options.grid = info['grid']
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if options.size == [0.0,0.0,0.0]:
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options.size = info['size']
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microstructure = numpy.zeros(info['resolution'],'i')
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microstructure = numpy.zeros(info['grid'],'i')
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i = 0
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for line in content:
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for item in map(int,line.split()):
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microstructure[i%info['resolution'][0],
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(i/info['resolution'][0])%info['resolution'][1],
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i/info['resolution'][0] /info['resolution'][1]] = item
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microstructure[i%info['grid'][0],
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(i/info['grid'][0])%info['grid'][1],
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i/info['grid'][0] /info['grid'][1]] = item
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i += 1
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info['microstructures'] = microstructure.max()
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formatwidth = 1+int(math.floor(math.log10(microstructure.max())))
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file['croak'].write('-- output --\n' +\
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'grid a b c: %s\n'%(' x '.join(map(str,options.grid))) + \
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'size x y z: %s\n'%(' x '.join(map(str,options.size))) + \
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'microstructures: %i\n'%info['microstructures'])
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new_header.append("grid\ta %i\tb %i\tc %i\n"%(options.grid[0],options.grid[1],options.grid[2],))
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new_header.append("size\tx %f\ty %f\tz %f\n"%(options.size[0],options.size[1],options.size[2],))
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new_header.append("origin\tx %f\ty %f\tz %f\n"%(info['origin'][0],info['origin'][1],info['origin'][2],))
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new_header.append("microstructures\t%i\n"%info['microstructures'])
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new_header.append("homogenization\t%i\n"%info['homogenization'])
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# ------------------------------------------ assemble header ---------------------------------------
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output = '%i\theader\n'%(len(new_header))
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@ -160,12 +167,12 @@ for file in files:
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# ------------------------------------- regenerate texture information ----------------------------------
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for c in xrange(options.resolution[2]):
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z = int(info['resolution'][2]*(c+0.5)/options.resolution[2])%info['resolution'][2]
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for b in xrange(options.resolution[1]):
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y = int(info['resolution'][1]*(b+0.5)/options.resolution[1])%info['resolution'][1]
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for a in xrange(options.resolution[0]):
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x = int(info['resolution'][0]*(a+0.5)/options.resolution[0])%info['resolution'][0]
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for c in xrange(options.grid[2]):
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z = int(info['grid'][2]*(c+0.5)/options.grid[2])%info['grid'][2]
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for b in xrange(options.grid[1]):
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y = int(info['grid'][1]*(b+0.5)/options.grid[1])%info['grid'][1]
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for a in xrange(options.grid[0]):
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x = int(info['grid'][0]*(a+0.5)/options.grid[0])%info['grid'][0]
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output += str(microstructure[x,y,z]).rjust(formatwidth) + {True:' ',False:'\n'}[options.twoD]
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output += {True:'\n',False:''}[options.twoD]
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@ -177,4 +184,4 @@ for file in files:
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file['input'].close()
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file['output'].close()
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os.rename(file['name']+'_tmp',file['name'])
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