using new class
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4788fc6046
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@ -1,7 +1,8 @@
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#!/usr/bin/env python3
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# -*- coding: UTF-8 no BOM -*-
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import os,sys,math
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import os
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import sys
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import numpy as np
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import damask
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from optparse import OptionParser
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@ -23,13 +24,6 @@ parser.add_option('-d','--direction',
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dest = 'directions',
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action = 'extend', metavar = '<string LIST>',
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help = "directions in which to mirror {'x','y','z'}")
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parser.add_option('--float',
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dest = 'float',
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action = 'store_true',
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help = 'use float input')
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parser.set_defaults(float = False,
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)
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(options, filenames) = parser.parse_args()
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@ -39,82 +33,38 @@ if not set(options.directions).issubset(validDirections):
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invalidDirections = [str(e) for e in set(options.directions).difference(validDirections)]
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parser.error('invalid directions {}. '.format(*invalidDirections))
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datatype = 'f' if options.float else 'i'
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# --- loop over input files -------------------------------------------------------------------------
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if filenames == []: filenames = [None]
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for name in filenames:
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try:
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table = damask.ASCIItable(name = name,
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buffered = False,
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labeled = False)
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except: continue
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if name is None:
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virt_file = StringIO(''.join(sys.stdin.read()))
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geom = damask.Geom.from_file(virt_file)
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else:
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geom = damask.Geom.from_file(name)
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damask.util.report(scriptName,name)
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# --- interpret header ----------------------------------------------------------------------------
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table.head_read()
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info,extra_header = table.head_getGeom()
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damask.util.report_geom(info)
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errors = []
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if np.any(info['grid'] < 1): errors.append('invalid grid a b c.')
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if np.any(info['size'] <= 0.0): errors.append('invalid size x y z.')
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if errors != []:
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damask.util.croak(errors)
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table.close(dismiss = True)
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continue
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# --- read data ------------------------------------------------------------------------------------
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microstructure = table.microstructure_read(info['grid'],datatype).reshape(info['grid'],order='F') # read microstructure
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microstructure = geom.microstructure
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if 'z' in options.directions:
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microstructure = np.concatenate([microstructure,microstructure[:,:,::-1]],2)
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geom.set_size(geom.get_size()*np.array([1,1,2]))
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if 'y' in options.directions:
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microstructure = np.concatenate([microstructure,microstructure[:,::-1,:]],1)
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geom.set_size(geom.get_size()*np.array([1,2,1]))
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if 'x' in options.directions:
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microstructure = np.concatenate([microstructure,microstructure[::-1,:,:]],0)
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geom.set_size(geom.get_size()*np.array([2,1,1]))
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# --- do work ------------------------------------------------------------------------------------
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geom.microstructure = microstructure
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geom.add_comment(scriptID + ' ' + ' '.join(sys.argv[1:]))
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newInfo = {
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'size': microstructure.shape*info['size']/info['grid'],
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'grid': microstructure.shape,
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}
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damask.util.croak('\n'.join(geom.info()))
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# --- report ---------------------------------------------------------------------------------------
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remarks = []
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if (any(newInfo['grid'] != info['grid'])):
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remarks.append('--> grid a b c: %s'%(' x '.join(map(str,newInfo['grid']))))
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if (any(newInfo['size'] != info['size'])):
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remarks.append('--> size x y z: %s'%(' x '.join(map(str,newInfo['size']))))
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if remarks != []: damask.util.croak(remarks)
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# --- write header ---------------------------------------------------------------------------------
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table.labels_clear()
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table.info_clear()
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table.info_append(extra_header+[
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scriptID + ' ' + ' '.join(sys.argv[1:]),
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"grid\ta {grid[0]}\tb {grid[1]}\tc {grid[2]}".format(grid=newInfo['grid']),
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"size\tx {size[0]}\ty {size[1]}\tz {size[2]}".format(size=newInfo['size']),
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"origin\tx {origin[0]}\ty {origin[1]}\tz {origin[2]}".format(origin=info['origin']),
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"homogenization\t{homog}".format(homog=info['homogenization']),
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"microstructures\t{microstructures}".format(microstructures=info['microstructures']),
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])
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table.head_write()
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# --- write microstructure information ------------------------------------------------------------
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formatwidth = int(math.floor(math.log10(np.nanmax(microstructure))+1))
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table.data = microstructure.reshape((newInfo['grid'][0],np.prod(newInfo['grid'][1:])),order='F').transpose()
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table.data_writeArray('%{}i'.format(formatwidth),delimiter = ' ')
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# --- output finalization --------------------------------------------------------------------------
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table.close() # close ASCII table
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if name is None:
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sys.stdout.write(str(geom))
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else:
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geom.to_file(name)
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