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https://github.com/triqs/dft_tools
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[transport] Divide transport into appropriate files
Put functions of the initial transport files to the appropriate places in wien2k_converter and sumk_dft_tools
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@ -30,55 +30,16 @@
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from types import *
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import numpy
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# NEW
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import pytriqs.utility.dichotomy as Dichotomy
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# OLD
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#import pytriqs.Base.Utility.Dichotomy as Dichotomy
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# NEW
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#from pytriqs.gf.local.descriptors import A_Omega_Plus_B
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from pytriqs.gf.local import *
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# OLD
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#from pytrigs.Base.GF_Local.GF import GF
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#from pytriqs.Base.GF_local.GFBloc_ImFreq import GFBloc_ImFreq
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#from pytriqs.Base.GF_Local.GFBloc_ReFreq import GFBloc_ReFreq
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#from pytriqs.Base.GF_Local.GFBloc_ImTime import GFBloc_ImTime
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#from pytriqs.Base.GF_Local import GF_Initializers
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# NEW
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#from pytriqs.operators.operators2 import *
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# OLD
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#from pytriqs.Solvers.Operators import *
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# NEW
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# NOT FOUND
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# OLD
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#from pytriqs.Base.Utility.myUtils import Sum
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# NEW
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import pytriqs.utility.mpi as myMPI
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# OLD
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#import pytriqs.Base.Utility.MPI as myMPI
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from datetime import datetime
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#from pytriqs.Wien2k.Symmetry import *
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# NEW
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from pytriqs.applications.dft.sumk_lda import *
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from pytriqs.applications.dft.sumk_lda_tools import *
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#k in xrange(self OLD
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#from pytriqs.Wien2k.SumK_LDA import SumK_LDA
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#from pytriqs.Wien2k.SumK_LDA_tools import SumK_LDA_tools
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import string
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import copy
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import SumK_LDA_Transport_Wien2k_input as Wien
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def Read_Fortran_File (filename):
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""" Returns a generator that yields all numbers in the Fortran file as float, one by one"""
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import os.path
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@ -918,7 +879,7 @@ class TransportEtOptic(SumkLDATools):
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def bandwinfromwiencase(self, wiencase):
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""" read in the band window from wiencase.outbwin file.
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"""
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bandwin = [numpy.zeros(self.n_k * 2, dtype=int).reshape(self.n_k, 2) for isp in range(self.SP + 1 - self.SO)]
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bandwin = [numpy.zeros((self.n_k, 2), dtype=int) for isp in range(self.SP + 1 - self.SO)]
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for isp in range(self.SP + 1 - self.SO):
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if(self.SP == 0 or self.SO == 1):
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winfile = Read_Fortran_File2(wiencase + ".oubwin")
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@ -97,7 +97,7 @@ class Velocities:
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if(nu_prime != nu):
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vxyz[nu_prime][nu][i] = vxyz[nu][nu_prime][i].conjugate()
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vec.vel = vxyz
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vec.vel = vxyz
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self.vks.append(vec)
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except IOError:
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@ -21,7 +21,7 @@
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################################################################################
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from types import *
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import numpy
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import numpy, os.path
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from pytriqs.archive import *
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from converter_tools import *
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@ -33,7 +33,7 @@ class Wien2kConverter(ConverterTools):
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def __init__(self, filename, hdf_filename = None,
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dft_subgrp = 'dft_input', symmcorr_subgrp = 'dft_symmcorr_input',
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parproj_subgrp='dft_parproj_input', symmpar_subgrp='dft_symmpar_input',
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bands_subgrp = 'dft_bands_input', repacking = False):
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bands_subgrp = 'dft_bands_input', transp_subgrp = 'dft_transp_input', repacking = False):
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"""
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Init of the class. Variable filename gives the root of all filenames, e.g. case.ctqmcout, case.h5, and so on.
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"""
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@ -51,7 +51,12 @@ class Wien2kConverter(ConverterTools):
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self.parproj_subgrp = parproj_subgrp
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self.symmpar_subgrp = symmpar_subgrp
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self.bands_subgrp = bands_subgrp
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self.transp_subgrp = transp_subgrp
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self.fortran_to_replace = {'D':'E'}
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self.vel_file = filename+'.pmat'
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self.outputs_file = filename+'.outputs'
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self.struct_file = filename+'.struct'
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self.oubwin_file = filename+'.oubwin'
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# Checks if h5 file is there and repacks it if wanted:
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import os.path
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@ -363,6 +368,197 @@ class Wien2kConverter(ConverterTools):
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del ar
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def convert_transport_input(self, spinbl=['']):
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"""
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Reads the input files necessary for transport calculations
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and stores the data in the HDFfile
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"""
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#Read and write files only on the master node
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if not (mpi.is_master_node()): return
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# Check if SP, SO and n_k are already in h5
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ar = HDFArchive(self.hdf_file, 'a')
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if not (self.lda_subgrp in ar): raise IOError, "No SumK_LDA subgroup in hdf file found! Call convert_dmft_input first."
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SP = ar[self.lda_subgrp]['SP']
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SO = ar[self.lda_subgrp]['SO']
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n_k = ar[self.lda_subgrp]['n_k']
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del ar
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# Read relevant data from .pmat file
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############################################
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vk = []
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kp = []
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bandwin_opt = []
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for ispinbl in spinbl:
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vks = []
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kps = []
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bandwins_opt = []
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if not (os.path.exists(self.vel_file + ispinbl)) : raise IOError, "File %s does not exist" %self.vel_file+ispinbl
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print "Reading input from %s..."%self.vel_file+ispinbl
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with open(self.vel_file + ispinbl) as f:
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while 1:
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try:
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s = f.readline()
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if (s == ''):
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break
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except:
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break
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try:
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[k, nu1, nu2] = [int(x) for x in s.strip().split()]
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bandwins_opt.append((nu1,nu2))
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dim = nu2 - nu1 +1
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v_xyz = numpy.zeros((dim,dim,3), dtype = complex)
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# kp.append(f.readline().strip().split())
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temp = f.readline().strip().split()
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kps.append(numpy.array([float(t) for t in temp[0:3]]))
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for nu_i in xrange(dim):
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for nu_j in xrange(nu_i, dim):
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for i in xrange(3):
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s = f.readline().strip("\n ()").split(',')
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v_xyz[nu_i][nu_j][i] = float(s[0]) + float(s[1])*1j
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if (nu_i != nu_j):
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v_xyz[nu_j][nu_i][i] = v_xyz[nu_i][nu_j][i].conjugate()
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vks.append(v_xyz)
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except IOError:
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raise "Wien2k_converter : reading file %s failed" %self.vel_file
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vk.append(vks)
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kp.append(kps)
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bandwin_opt.append(numpy.array(bandwins_opt))
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print "Read in %s file done!" %self.vel_file
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# Read relevant data from .struct file
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############################################
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if not (os.path.exists(self.struct_file)) : raise IOError, "File %s does not exist" %self.struct_file
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print "Reading input from %s..."%self.struct_file
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with open(self.struct_file) as f:
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try:
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f.readline() #title
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temp = f.readline() #lattice
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#latticetype = temp[0:10].split()[0]
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latticetype = temp.split()[0]
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print 'Lattice: ', latticetype
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f.readline()
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temp = f.readline().strip().split() # lattice constants
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latticeconstants = numpy.array([float(t) for t in temp[0:3]])
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latticeangles = numpy.array([float(t) for t in temp[3:6]])
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latticeangles *= numpy.pi/180.0
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print 'Lattice constants: ', latticeconstants
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print 'Lattice angles: ', latticeangles
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except IOError:
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raise "Wien2k_converter : reading file %s failed" %self.struct_file
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print "Read in %s file done!" %self.struct_file
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# Read relevant data from .outputs file
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############################################
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if not (os.path.exists(self.outputs_file)) : raise IOError, "File %s does not exist" %self.outputs_file
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print "Reading input from %s..."%self.outputs_file
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symmcartesian = []
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taucartesian = []
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with open(self.outputs_file) as f:
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try:
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while 1:
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temp = f.readline().strip(' ').split()
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if (temp[0] =='PGBSYM:'):
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nsymm = int(temp[-1])
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break
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for i in range(nsymm):
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while 1:
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temp = f.readline().strip().split()
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if (temp[0] == 'Symmetry'):
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break
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# read cartesian symmetries
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symmt = numpy.zeros((3, 3), dtype = float)
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taut = numpy.zeros(3, dtype = float)
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for ir in range(3):
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temp = f.readline().strip().split()
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for ic in range(3):
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symmt[ir, ic] = float(temp[ic])
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temp = f.readline().strip().split()
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for ir in range(3):
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taut[ir] = float(temp[ir])
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symmcartesian.append(symmt)
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taucartesian.append(taut)
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except IOError:
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raise "Wien2k_converter : reading file %s failed" %self.outputs_file
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print "Read in %s file done!" %self.outputs_file
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# Read relevant data from .oubwin/up/down files
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############################################
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# convert_dmft_inputar = HDFArchive(self.hdf_file, 'a')
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bandwin = [numpy.zeros((n_k, 2), dtype=int) for isp in range(SP + 1 - SO)]
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for isp in range(SP + 1 - SO):
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if(SP == 0 or SO == 1):
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if not (os.path.exists(self.oubwin_file)) : raise IOError, "File %s does not exist" %self.oubwin_file
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print "Reading input from %s..."%self.oubwin_file
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f = read_fortran_file(self.oubwin_file)
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elif (SP == 1 and isp == 0):
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if not (os.path.exists(self.oubwin_file+'up')) : raise IOError, "File %s does not exist" %self.oubwin_file+'up'
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print "Reading input from %s..."%self.oubwin_file+'up'
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f = read_fortran_file(self.oubwin_file+'up')
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elif (SP == 1 and isp ==1):
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if not (os.path.exists(self.oubwin_file+'dn')) : raise IOError, "File %s does not exist" %self.oubwin_file+'dn'
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print "Reading input from %s..."%self.oubwin_file+'dn'
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f = read_fortran_file(self.oubwin_file+'dn')
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else:
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assert 0, "Reding oubwin error! Check SP and SO!"
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assert int(f.next()) == n_k, "Number of k-points is unconsistent in oubwin file!"
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assert int(f.next()) == SO, "SO is unconsistent in oubwin file!"
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for i in xrange(n_k):
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f.next()
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bandwin[isp][i, 0] = f.next()
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bandwin[isp][i, 1] = f.next()
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f.next()
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print "Read in %s files done!" %self.oubwin_file
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# Put data to HDF5 file
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ar = HDFArchive(self.hdf_file, 'a')
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if not (self.transp_subgrp in ar): ar.create_group(self.transp_subgrp)
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# The subgroup containing the data. If it does not exist, it is created.
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# If it exists, the data is overwritten!!!
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# Data from .pmat file
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ar[self.transp_subgrp]['bandwin_opt'] = bandwin_opt
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ar[self.transp_subgrp]['kp'] = kp
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ar[self.transp_subgrp]['vk'] = vk
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# Data from .struct file
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ar[self.transp_subgrp]['latticetype'] = latticetype
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ar[self.transp_subgrp]['latticeconstants'] = latticeconstants
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ar[self.transp_subgrp]['latticeangles'] = latticeangles
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# Data from .outputs file
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ar[self.transp_subgrp]['nsymm'] = nsymm
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ar[self.transp_subgrp]['symmcartesian'] = symmcartesian
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ar[self.transp_subgrp]['taucartesian'] = taucartesian
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# Data from .oubwin files
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ar[self.transp_subgrp]['bandwin'] = bandwin
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del ar
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def convert_symmetry_input(self, orbits, symm_file, symm_subgrp, SO, SP):
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"""
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Reads input for the symmetrisations from symm_file, which is case.sympar or case.symqmc.
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