mirror of https://gitlab.com/QEF/q-e.git
275 lines
10 KiB
Plaintext
275 lines
10 KiB
Plaintext
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Program PWSCF v.6.3 starts on 6Sep2018 at 12:28:34
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This program is part of the open-source Quantum ESPRESSO suite
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for quantum simulation of materials; please cite
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"P. Giannozzi et al., J. Phys.:Condens. Matter 21 395502 (2009);
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"P. Giannozzi et al., J. Phys.:Condens. Matter 29 465901 (2017);
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URL http://www.quantum-espresso.org",
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in publications or presentations arising from this work. More details at
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http://www.quantum-espresso.org/quote
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Parallel version (MPI), running on 8 processors
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MPI processes distributed on 1 nodes
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R & G space division: proc/nbgrp/npool/nimage = 8
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Waiting for input...
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Reading input from standard input
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Current dimensions of program PWSCF are:
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Max number of different atomic species (ntypx) = 10
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Max number of k-points (npk) = 40000
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Max angular momentum in pseudopotentials (lmaxx) = 3
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Subspace diagonalization in iterative solution of the eigenvalue problem:
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a serial algorithm will be used
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Parallelization info
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--------------------
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sticks: dense smooth PW G-vecs: dense smooth PW
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Min 29 29 10 284 284 65
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Max 30 30 11 285 285 68
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Sum 235 235 85 2277 2277 531
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bravais-lattice index = 2
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lattice parameter (alat) = 10.2600 a.u.
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unit-cell volume = 270.0114 (a.u.)^3
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number of atoms/cell = 2
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number of atomic types = 1
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number of electrons = 8.00
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number of Kohn-Sham states= 4
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kinetic-energy cutoff = 16.0000 Ry
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charge density cutoff = 64.0000 Ry
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convergence threshold = 1.0E-10
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mixing beta = 0.7000
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number of iterations used = 8 plain mixing
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Exchange-correlation = SLA PZ NOGX NOGC ( 1 1 0 0 0 0)
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celldm(1)= 10.260000 celldm(2)= 0.000000 celldm(3)= 0.000000
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celldm(4)= 0.000000 celldm(5)= 0.000000 celldm(6)= 0.000000
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crystal axes: (cart. coord. in units of alat)
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a(1) = ( -0.500000 0.000000 0.500000 )
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a(2) = ( 0.000000 0.500000 0.500000 )
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a(3) = ( -0.500000 0.500000 0.000000 )
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reciprocal axes: (cart. coord. in units 2 pi/alat)
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b(1) = ( -1.000000 -1.000000 1.000000 )
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b(2) = ( 1.000000 1.000000 1.000000 )
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b(3) = ( -1.000000 1.000000 -1.000000 )
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PseudoPot. # 1 for Si read from file:
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/scratch/timrov/WORK_Hubbard/Z_git/work2_QE_fork/q-e/pseudo/Si.pz-vbc.UPF
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MD5 check sum: a974d1b8727157e37210f3f86afb6210
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Pseudo is Norm-conserving, Zval = 4.0
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Generated by new atomic code, or converted to UPF format
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Using radial grid of 431 points, 2 beta functions with:
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l(1) = 0
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l(2) = 1
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atomic species valence mass pseudopotential
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Si 4.00 28.08000 Si( 1.00)
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48 Sym. Ops., with inversion, found (24 have fractional translation)
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Cartesian axes
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site n. atom positions (alat units)
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1 Si tau( 1) = ( 0.0000000 0.0000000 0.0000000 )
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2 Si tau( 2) = ( 0.2500000 0.2500000 0.2500000 )
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number of k points= 6
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cart. coord. in units 2pi/alat
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k( 1) = ( -0.1666667 0.1666667 0.1666667), wk = 0.1481481
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k( 2) = ( 0.5000000 -0.5000000 0.8333333), wk = 0.4444444
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k( 3) = ( 0.1666667 -0.1666667 0.5000000), wk = 0.4444444
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k( 4) = ( -0.1666667 -1.1666667 0.1666667), wk = 0.4444444
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k( 5) = ( -0.5000000 -0.8333333 -0.1666667), wk = 0.4444444
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k( 6) = ( 0.5000000 -0.5000000 -0.5000000), wk = 0.0740741
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Dense grid: 2277 G-vectors FFT dimensions: ( 20, 20, 20)
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Estimated max dynamical RAM per process > 0.34 MB
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Estimated total dynamical RAM > 2.72 MB
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Initial potential from superposition of free atoms
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starting charge 7.99901, renormalised to 8.00000
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Starting wfcs are 8 randomized atomic wfcs
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total cpu time spent up to now is 0.1 secs
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Self-consistent Calculation
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iteration # 1 ecut= 16.00 Ry beta= 0.70
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Davidson diagonalization with overlap
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ethr = 1.00E-02, avg # of iterations = 2.0
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Threshold (ethr) on eigenvalues was too large:
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Diagonalizing with lowered threshold
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Davidson diagonalization with overlap
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ethr = 7.54E-04, avg # of iterations = 1.0
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total cpu time spent up to now is 0.1 secs
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total energy = -15.83444456 Ry
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Harris-Foulkes estimate = -15.85461765 Ry
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estimated scf accuracy < 0.05986098 Ry
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iteration # 2 ecut= 16.00 Ry beta= 0.70
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Davidson diagonalization with overlap
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ethr = 7.48E-04, avg # of iterations = 1.0
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total cpu time spent up to now is 0.1 secs
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total energy = -15.83734266 Ry
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Harris-Foulkes estimate = -15.83766010 Ry
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estimated scf accuracy < 0.00215959 Ry
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iteration # 3 ecut= 16.00 Ry beta= 0.70
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Davidson diagonalization with overlap
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ethr = 2.70E-05, avg # of iterations = 2.5
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total cpu time spent up to now is 0.1 secs
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total energy = -15.83774327 Ry
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Harris-Foulkes estimate = -15.83777185 Ry
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estimated scf accuracy < 0.00006501 Ry
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iteration # 4 ecut= 16.00 Ry beta= 0.70
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Davidson diagonalization with overlap
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ethr = 8.13E-07, avg # of iterations = 2.3
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total cpu time spent up to now is 0.1 secs
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total energy = -15.83775924 Ry
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Harris-Foulkes estimate = -15.83776170 Ry
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estimated scf accuracy < 0.00000557 Ry
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iteration # 5 ecut= 16.00 Ry beta= 0.70
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Davidson diagonalization with overlap
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ethr = 6.97E-08, avg # of iterations = 2.0
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total cpu time spent up to now is 0.1 secs
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total energy = -15.83776009 Ry
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Harris-Foulkes estimate = -15.83776012 Ry
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estimated scf accuracy < 0.00000006 Ry
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iteration # 6 ecut= 16.00 Ry beta= 0.70
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Davidson diagonalization with overlap
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ethr = 7.43E-10, avg # of iterations = 2.8
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total cpu time spent up to now is 0.1 secs
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total energy = -15.83776011 Ry
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Harris-Foulkes estimate = -15.83776011 Ry
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estimated scf accuracy < 9.3E-10 Ry
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iteration # 7 ecut= 16.00 Ry beta= 0.70
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Davidson diagonalization with overlap
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ethr = 1.17E-11, avg # of iterations = 2.5
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total cpu time spent up to now is 0.1 secs
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End of self-consistent calculation
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k =-0.1667 0.1667 0.1667 ( 295 PWs) bands (ev):
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-5.4967 3.6957 5.6238 5.6238
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k = 0.5000-0.5000 0.8333 ( 295 PWs) bands (ev):
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-3.7440 0.0718 3.0087 4.7685
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k = 0.1667-0.1667 0.5000 ( 294 PWs) bands (ev):
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-4.5572 1.6534 4.0719 4.3166
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k =-0.1667-1.1667 0.1667 ( 290 PWs) bands (ev):
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-2.7838 -0.4549 2.4110 3.5032
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k =-0.5000-0.8333-0.1667 ( 286 PWs) bands (ev):
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-2.5685 -0.7453 2.0335 3.2881
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k = 0.5000-0.5000-0.5000 ( 272 PWs) bands (ev):
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-3.5030 -0.9051 4.8715 4.8715
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highest occupied level (ev): 5.6238
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! total energy = -15.83776011 Ry
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Harris-Foulkes estimate = -15.83776011 Ry
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estimated scf accuracy < 5.6E-13 Ry
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The total energy is the sum of the following terms:
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one-electron contribution = 4.66609198 Ry
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hartree contribution = 1.09245386 Ry
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xc contribution = -4.79537637 Ry
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ewald contribution = -16.80092958 Ry
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convergence has been achieved in 7 iterations
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Writing output data file Si.save/
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init_run : 0.01s CPU 0.01s WALL ( 1 calls)
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electrons : 0.05s CPU 0.06s WALL ( 1 calls)
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Called by init_run:
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wfcinit : 0.01s CPU 0.01s WALL ( 1 calls)
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potinit : 0.00s CPU 0.00s WALL ( 1 calls)
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hinit0 : 0.00s CPU 0.00s WALL ( 1 calls)
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Called by electrons:
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c_bands : 0.04s CPU 0.05s WALL ( 8 calls)
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sum_band : 0.01s CPU 0.01s WALL ( 8 calls)
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v_of_rho : 0.00s CPU 0.00s WALL ( 8 calls)
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mix_rho : 0.00s CPU 0.00s WALL ( 8 calls)
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Called by c_bands:
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init_us_2 : 0.00s CPU 0.00s WALL ( 102 calls)
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cegterg : 0.04s CPU 0.04s WALL ( 48 calls)
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Called by sum_band:
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Called by *egterg:
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h_psi : 0.03s CPU 0.03s WALL ( 151 calls)
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g_psi : 0.00s CPU 0.00s WALL ( 97 calls)
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cdiaghg : 0.01s CPU 0.01s WALL ( 139 calls)
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Called by h_psi:
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h_psi:pot : 0.03s CPU 0.03s WALL ( 151 calls)
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h_psi:calbec : 0.00s CPU 0.00s WALL ( 151 calls)
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vloc_psi : 0.03s CPU 0.03s WALL ( 151 calls)
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add_vuspsi : 0.00s CPU 0.00s WALL ( 151 calls)
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General routines
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calbec : 0.00s CPU 0.00s WALL ( 151 calls)
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fft : 0.00s CPU 0.00s WALL ( 24 calls)
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ffts : 0.00s CPU 0.00s WALL ( 8 calls)
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fftw : 0.03s CPU 0.03s WALL ( 1328 calls)
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Parallel routines
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fft_scatt_xy : 0.00s CPU 0.00s WALL ( 1360 calls)
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fft_scatt_yz : 0.02s CPU 0.02s WALL ( 1360 calls)
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PWSCF : 0.11s CPU 0.13s WALL
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This run was terminated on: 12:28:34 6Sep2018
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=------------------------------------------------------------------------------=
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JOB DONE.
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=------------------------------------------------------------------------------=
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