[Octopus-notify] [oct-run_testsuite on x86_64] daily report - 2007-04-10
Heiko Appel
appel at physik.fu-berlin.de
Tue Apr 10 10:39:23 WEST 2007
Total run-time of the testsuite: 02:04:21
[34m ***** 1D Box ***** [0m
Using workdir : /tmp/octopus.o1Uko7
Using executable : /usr/bin/octopus-intel-9.1-debug
Using test file : /usr/share/octopus/testsuite/finite_systems_1d/04-box_oct_long.test
Using input file : /usr/share/octopus/testsuite/finite_systems_1d/04-box.01-ground_state.inp
Starting test run ...
Executing: cd /tmp/octopus.o1Uko7; /usr/bin/octopus-intel-9.1-debug > out 2>&1
Finished test run.
TotalEnergy : [ [32m OK [0m ]
2th state : [ [31m FAIL [0m ]
Using input file : /usr/share/octopus/testsuite/finite_systems_1d/04-box.02-oct_long.inp
Starting test run ...
Executing: cd /tmp/octopus.o1Uko7; /usr/bin/octopus-intel-9.1-debug > out 2>&1
Finished test run.
J1 1st iteration : [ [31m FAIL [0m ]
J1 2nd iteration : [ [31m FAIL [0m ]
J1 5th iteration : [ [31m FAIL [0m ]
J1 10th iteration : [ [31m FAIL [0m ]
J1 15th iteration : [ [31m FAIL [0m ]
Using input file : /usr/share/octopus/testsuite/finite_systems_1d/04-box.03-oct_long.inp
Starting test run ...
Executing: cd /tmp/octopus.o1Uko7; /usr/bin/octopus-intel-9.1-debug > out 2>&1
Finished test run.
J1 1st iteration : [ [31m FAIL [0m ]
J1 2nd iteration : [ [31m FAIL [0m ]
J1 5th iteration : [ [31m FAIL [0m ]
J1 10th iteration : [ [31m FAIL [0m ]
J1 15th iteration : [ [31m FAIL [0m ]
Using input file : /usr/share/octopus/testsuite/finite_systems_1d/04-box.04-oct_long.inp
Starting test run ...
Executing: cd /tmp/octopus.o1Uko7; /usr/bin/octopus-intel-9.1-debug > out 2>&1
Finished test run.
J1 1st iteration : [ [31m FAIL [0m ]
J1 2nd iteration : [ [31m FAIL [0m ]
J1 5th iteration : [ [31m FAIL [0m ]
J1 10th iteration : [ [31m FAIL [0m ]
J1 15th iteration : [ [31m FAIL [0m ]
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This program is free software; you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation; either version 2, or (at your option)
any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program; if not, write to the Free Software
Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA
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Running octopus, version 2.2.0pre1
build time - Tue Apr 10 02:31:15 CEST 2007
svn revision: 2820 [td.F90 2007-04-09]
Compiler: ifort
Compiler flags: -static -I/home/appel/opt/intel-9.1/include -g -O0 -assume minus
The octopus is swimming in n41 (Linux)
Calculation started on 2007/04/10 at 09:36:56
************************** Calculation Mode **************************
Input: [CalculationMode = opt_control]
**********************************************************************
****************************** Species *******************************
Specie "Box1D" is an user-defined potential.
Potential = -5*step(x+5)*step(5-x)
**********************************************************************
Input: [SpinComponents = unpolarized]
Input: [CurvMethod = curv_uniform]
Input: [DerivativesSpace = real_space]
Input: [DerivativesStencil = stencil_star]
************************** Parallelization ***************************
Octopus will run in *serial*
**********************************************************************
******************************** Grid ********************************
Simulation Box:
Type = sphere
Radius [b] = 15.000
The octopus will run in 1 dimension(s).
The octopus will treat the system as periodic in 0 dimension(s).
Main mesh:
Spacing [b] = ( 0.400,-1.000,-1.000) volume/point [b^3] = 0.40000
# inner mesh = 75
# total mesh = 83
Grid Cutoff [H] = 30.843
**********************************************************************
****************************** Hartree *******************************
Input: [PoissonSolver = direct1D]
**********************************************************************
Info: Treating the electrons as non-interacting
Info: Lasers
1:
Polarization: ( 1.0000, 0.0000)( 0.0000, 0.0000)( 0.0000, 0.0000)
Envelope: 0
Frequency: 0.1570 [H]
Amplitude: 0.0600 [H/b]
Intensity: 1.2634E+14 [W/cm^2]
Width: 80.0406 [hbar/H]
Middle t: 80.0406 [hbar/H]
Input: [RelativisticCorrection = non_relativistic]
Input: [TDGauge = length]
Input: [AbsorbingBoundaries = no_absorbing]
Input: [MoveIons = static_ions]
Input: [TDEvolutionMethod = aetrs]
Input: [TDExponentialMethod = taylor]
******************** Loading restart information *********************
All the needed files were succesfully read.
**********************************************************************
Info: Number of electrons: 1
Input: [SpinComponents = unpolarized]
Input: [SpinComponents = unpolarized]
Input: [SpinComponents = unpolarized]
Input: [SpinComponents = unpolarized]
Input: [SpinComponents = unpolarized]
Input: Fluence of Initial laser 0.35985341
Input: No Polarization defined and degrees of freedom defined
Input: Using default: x-polarized.
Input: [SpinComponents = unpolarized]
Info: Using Ground State for InitialState
Input: [SpinComponents = unpolarized]
Info: Using Excited State for TargetOperator
**************************** FATAL ERROR *****************************
*** Fatal Error (description follows)
*--------------------------------------------------------------------
* Unsuccesfull read of states in 'tmp/restart_gs/0000000002'
*--------------------------------------------------------------------
* Stack:
**********************************************************************
msg: I/O Error.
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