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https://github.com/triqs/dft_tools
synced 2024-12-22 04:13:47 +01:00
Reading misc_input files only if present
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@ -395,17 +395,17 @@ class Wien2kConverter(ConverterTools):
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band_window = [numpy.zeros((n_k, 2), dtype=int) for isp in range(SP + 1 - SO)]
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for isp, f in enumerate(files):
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if not os.path.exists(f): raise IOError, "convert_misc_input: File %s does not exist" %f
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mpi.report("Reading input from %s..."%f)
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if os.path.exists(f):
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mpi.report("Reading input from %s..."%f)
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R = ConverterTools.read_fortran_file(self, f, self.fortran_to_replace)
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assert int(R.next()) == n_k, "convert_misc_input: Number of k-points is inconsistent in oubwin file!"
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assert int(R.next()) == SO, "convert_misc_input: SO is inconsistent in oubwin file!"
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for ik in xrange(n_k):
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R.next()
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band_window[isp][ik,0] = R.next() # lowest band
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band_window[isp][ik,1] = R.next() # highest band
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R.next()
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R = ConverterTools.read_fortran_file(self, f, self.fortran_to_replace)
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assert int(R.next()) == n_k, "convert_misc_input: Number of k-points is inconsistent in oubwin file!"
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assert int(R.next()) == SO, "convert_misc_input: SO is inconsistent in oubwin file!"
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for ik in xrange(n_k):
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R.next()
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band_window[isp][ik,0] = R.next() # lowest band
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band_window[isp][ik,1] = R.next() # highest band
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R.next()
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R.close() # Reading done!
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@ -415,48 +415,47 @@ class Wien2kConverter(ConverterTools):
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# lattice_constants: unit cell parameters in a. u.
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# lattice_angles: unit cell angles in rad
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if not (os.path.exists(self.struct_file)) : raise IOError, "convert_misc_input: File %s does not exist" %self.struct_file
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mpi.report("Reading input from %s..."%self.struct_file)
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if (os.path.exists(self.struct_file)):
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mpi.report("Reading input from %s..."%self.struct_file)
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with open(self.struct_file) as R:
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try:
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R.readline()
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lattice_type = R.readline().split()[0]
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R.readline()
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temp = R.readline().strip().split()
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lattice_constants = numpy.array([float(t) for t in temp[0:3]])
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lattice_angles = numpy.array([float(t) for t in temp[3:6]]) * numpy.pi / 180.0
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except IOError:
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raise "convert_misc_input: reading file %s failed" %self.struct_file
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with open(self.struct_file) as R:
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try:
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R.readline()
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lattice_type = R.readline().split()[0]
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R.readline()
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temp = R.readline().strip().split()
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lattice_constants = numpy.array([float(t) for t in temp[0:3]])
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lattice_angles = numpy.array([float(t) for t in temp[3:6]]) * numpy.pi / 180.0
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except IOError:
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raise "convert_misc_input: reading file %s failed" %self.struct_file
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# Read relevant data from .outputs file
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#######################################
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# rot_symmetries: matrix representation of all (space group) symmetry operations
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if not (os.path.exists(self.outputs_file)) : raise IOError, "convert_misc_input: File %s does not exist" %self.outputs_file
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mpi.report("Reading input from %s..."%self.outputs_file)
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if (os.path.exists(self.outputs_file)):
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mpi.report("Reading input from %s..."%self.outputs_file)
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rot_symmetries = []
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with open(self.outputs_file) as R:
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try:
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while 1:
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temp = R.readline().strip(' ').split()
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if (temp[0] =='PGBSYM:'):
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n_symmetries = int(temp[-1])
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break
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for i in range(n_symmetries):
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rot_symmetries = []
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with open(self.outputs_file) as R:
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try:
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while 1:
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if (R.readline().strip().split()[0] == 'Symmetry'): break
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sym_i = numpy.zeros((3, 3), dtype = float)
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for ir in range(3):
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temp = R.readline().strip().split()
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for ic in range(3):
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sym_i[ir, ic] = float(temp[ic])
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R.readline()
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rot_symmetries.append(sym_i)
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except IOError:
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raise "convert_misc_input: reading file %s failed" %self.outputs_file
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temp = R.readline().strip(' ').split()
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if (temp[0] =='PGBSYM:'):
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n_symmetries = int(temp[-1])
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break
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for i in range(n_symmetries):
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while 1:
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if (R.readline().strip().split()[0] == 'Symmetry'): break
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sym_i = numpy.zeros((3, 3), dtype = float)
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for ir in range(3):
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temp = R.readline().strip().split()
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for ic in range(3):
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sym_i[ir, ic] = float(temp[ic])
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R.readline()
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rot_symmetries.append(sym_i)
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except IOError:
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raise "convert_misc_input: reading file %s failed" %self.outputs_file
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# Save it to the HDF:
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ar=HDFArchive(self.hdf_file,'a')
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