Started by GitHub push by MathieuMorlighem
Running as SYSTEM
Building remotely on macOS-Intel (mac) in workspace /Users/jenkins/workspace/macOS-Intel-Solid_Earth
The recommended git tool is: NONE
using credential 3c85c82b-fb35-4fea-b703-0aa4f155f9c7
> git rev-parse --resolve-git-dir /Users/jenkins/workspace/macOS-Intel-Solid_Earth/.git # timeout=10
Fetching changes from the remote Git repository
> git config remote.origin.url git@github.com:ISSMteam/ISSM.git # timeout=10
Fetching upstream changes from git@github.com:ISSMteam/ISSM.git
> git --version # timeout=10
> git --version # 'git version 2.37.1 (Apple Git-137.1)'
using GIT_SSH to set credentials GitHub Deploy Key - ISSMteam/ISSM - Jenkins
Verifying host key using known hosts file
> git fetch --tags --force --progress -- git@github.com:ISSMteam/ISSM.git +refs/heads/*:refs/remotes/origin/* # timeout=10
> git rev-parse refs/remotes/origin/main^{commit} # timeout=10
Checking out Revision 70b01e1117ebf8dbc3dfb0ffdd70112350eee3a0 (refs/remotes/origin/main)
> git config core.sparsecheckout # timeout=10
> git checkout -f 70b01e1117ebf8dbc3dfb0ffdd70112350eee3a0 # timeout=10
Commit message: "CHG: fixed typo"
> git rev-list --no-walk ed48cfa2f395a4678a41ce3dc8acb2bbc4c0f2e1 # timeout=10
[macOS-Intel-Solid_Earth] $ /bin/bash /var/folders/j6/3xhtbkbs3kj24wm4s4s4b99w0000gp/T/jenkins9292128233080017224.sh
Cleaning up execution directory
======================================================
Determining installation type
======================================================
List of changed files
---------------------
.github/ci_scripts/ci_ISSM.sh
-- checking for changed externalpackages... no
-- checking for reconfiguration... no
-- checking for recompilation... no
======================================================
Skipping autotools
======================================================
======================================================
Skipping cmake
======================================================
======================================================
Skipping petsc
======================================================
======================================================
Skipping gsl
======================================================
======================================================
Skipping boost
======================================================
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Skipping dakota
======================================================
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Skipping chaco
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Skipping curl
======================================================
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Skipping hdf5
======================================================
======================================================
Skipping netcdf
======================================================
======================================================
Skipping proj
======================================================
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Skipping gdal
======================================================
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Skipping gshhg
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Skipping gmt
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Skipping gmsh
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Skipping triangle
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Skipping m1qn3
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Skipping semic
======================================================
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Skipping shell2junit
======================================================
Skipping ISSM compilation
--------------Running Python test for Rank 1---------------------
--------------Running Python test for Rank 1---------------------
--------------Running Python test for Rank 2---------------------
--------------Running Python test for Rank 2---------------------
Waiting on: 23216
Waiting on: 23217
This is the concatenation phase for rank: python_log1.log
This is the concatenation phase for rank: python_log2.log
+++ Removing old junit reports from: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog/results
+++ Running case: MATLAB-2001
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
boundary conditions for stressbalance model: spc set as zero
no smb.mass_balance specified: values set as zero
no basalforcings.groundedice_melting_rate specified: values set as zero
no basalforcings.floatingice_melting_rate specified: values set as zero
no dsl.global_average_thermosteric_sea_level specified: transient values set to zero
no dsl.sea_surface_height_above_geoid specified: transient values set to zero
no dsl.sea_water_pressure_at_sea_floor specified: transient values set to zero
no balancethickness.thickening_rate specified: values set as zero
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
call computational core:
write lock file:
FemModel initialization elapsed time: 0.083977
Total Core solution elapsed time: 5.27697
Linear solver elapsed time: 0.001554 (0.029%)
Total elapsed time: 0 hrs 0 min 5 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
SUCCESS difference: 0 < 1e-13 test id: 2001 test name: SquareSheetConstrainedGia2d field: UGrd
+++ exit code: 0
+++ error: 0
+++ Running case: MATLAB-2001
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
boundary conditions for stressbalance model: spc set as zero
no smb.mass_balance specified: values set as zero
no basalforcings.groundedice_melting_rate specified: values set as zero
no basalforcings.floatingice_melting_rate specified: values set as zero
no dsl.global_average_thermosteric_sea_level specified: transient values set to zero
no dsl.sea_surface_height_above_geoid specified: transient values set to zero
no dsl.sea_water_pressure_at_sea_floor specified: transient values set to zero
no balancethickness.thickening_rate specified: values set as zero
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
call computational core:
write lock file:
FemModel initialization elapsed time: 0.083977
Total Core solution elapsed time: 5.27697
Linear solver elapsed time: 0.001554 (0.029%)
Total elapsed time: 0 hrs 0 min 5 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
SUCCESS difference: 0 < 1e-13 test id: 2001 test name: SquareSheetConstrainedGia2d field: UGrd
+++ exit code: 0
+++ error: 0
+++ Running case: MATLAB-2002
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
gmtmask: num vertices 1286
gmtmask: done
checking model consistency
marshalling file test2002.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
call computational core:
computing initial sea level geometrical kernels and weights.
iteration 1/1 time [yr]: 1.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
write lock file:
FemModel initialization elapsed time: 0.085841
Total Core solution elapsed time: 0.063724
Linear solver elapsed time: 0.000665 (1%)
Total elapsed time: 0 hrs 0 min 0 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
checking model consistency
marshalling file test2002.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
call computational core:
computing initial sea level geometrical kernels and weights.
iteration 1/1 time [yr]: 1.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
write lock file:
FemModel initialization elapsed time: 0.090982
Total Core solution elapsed time: 0.447054
Linear solver elapsed time: 0.000941 (0.21%)
Total elapsed time: 0 hrs 0 min 0 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
checking model consistency
marshalling file test2002.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
call computational core:
computing initial sea level geometrical kernels and weights.
iteration 1/1 time [yr]: 1.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
write lock file:
FemModel initialization elapsed time: 0.217066
Total Core solution elapsed time: 0.454623
Linear solver elapsed time: 0.000486 (0.11%)
Total elapsed time: 0 hrs 0 min 0 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
checking model consistency
marshalling file test2002.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
call computational core:
computing initial sea level geometrical kernels and weights.
iteration 1/1 time [yr]: 1.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
write lock file:
FemModel initialization elapsed time: 0.196542
Total Core solution elapsed time: 0.437783
Linear solver elapsed time: 0.000983 (0.22%)
Total elapsed time: 0 hrs 0 min 0 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 1.2e-16 < 1e-13 test id: 2002 test name: EarthSlc field: Seustatic
SUCCESS difference: 1.1e-16 < 1e-13 test id: 2002 test name: EarthSlc field: Sselfattraction
SUCCESS difference: 0 < 1e-13 test id: 2002 test name: EarthSlc field: Selastic
SUCCESS difference: 1.1e-16 < 1e-13 test id: 2002 test name: EarthSlc field: Srotation
SUCCESS difference: 0 < 1e-13 test id: 2002 test name: EarthSlc field: Beustatic
SUCCESS difference: 0 < 1e-13 test id: 2002 test name: EarthSlc field: Bselfattraction
SUCCESS difference: 0 < 1e-13 test id: 2002 test name: EarthSlc field: Belastic
SUCCESS difference: 8.4e-18 < 1e-13 test id: 2002 test name: EarthSlc field: Brotation
+++ exit code: 0
+++ error: 0
+++ Running case: MATLAB-2002
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
gmtmask: num vertices 1286
gmtmask: done
checking model consistency
marshalling file test2002.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
call computational core:
computing initial sea level geometrical kernels and weights.
iteration 1/1 time [yr]: 1.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
write lock file:
FemModel initialization elapsed time: 0.085841
Total Core solution elapsed time: 0.063724
Linear solver elapsed time: 0.000665 (1%)
Total elapsed time: 0 hrs 0 min 0 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
checking model consistency
marshalling file test2002.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
call computational core:
computing initial sea level geometrical kernels and weights.
iteration 1/1 time [yr]: 1.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
write lock file:
FemModel initialization elapsed time: 0.090982
Total Core solution elapsed time: 0.447054
Linear solver elapsed time: 0.000941 (0.21%)
Total elapsed time: 0 hrs 0 min 0 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
checking model consistency
marshalling file test2002.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
call computational core:
computing initial sea level geometrical kernels and weights.
iteration 1/1 time [yr]: 1.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
write lock file:
FemModel initialization elapsed time: 0.217066
Total Core solution elapsed time: 0.454623
Linear solver elapsed time: 0.000486 (0.11%)
Total elapsed time: 0 hrs 0 min 0 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
checking model consistency
marshalling file test2002.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
call computational core:
computing initial sea level geometrical kernels and weights.
iteration 1/1 time [yr]: 1.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
write lock file:
FemModel initialization elapsed time: 0.196542
Total Core solution elapsed time: 0.437783
Linear solver elapsed time: 0.000983 (0.22%)
Total elapsed time: 0 hrs 0 min 0 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 1.2e-16 < 1e-13 test id: 2002 test name: EarthSlc field: Seustatic
SUCCESS difference: 1.1e-16 < 1e-13 test id: 2002 test name: EarthSlc field: Sselfattraction
SUCCESS difference: 0 < 1e-13 test id: 2002 test name: EarthSlc field: Selastic
SUCCESS difference: 1.1e-16 < 1e-13 test id: 2002 test name: EarthSlc field: Srotation
SUCCESS difference: 0 < 1e-13 test id: 2002 test name: EarthSlc field: Beustatic
SUCCESS difference: 0 < 1e-13 test id: 2002 test name: EarthSlc field: Bselfattraction
SUCCESS difference: 0 < 1e-13 test id: 2002 test name: EarthSlc field: Belastic
SUCCESS difference: 8.4e-18 < 1e-13 test id: 2002 test name: EarthSlc field: Brotation
+++ exit code: 0
+++ error: 0
+++ Running case: MATLAB-2003
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
gmtmask: num vertices 1286
gmtmask: done
checking model consistency
marshalling file test2003.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
call computational core:
computing initial sea level geometrical kernels and weights.
iteration 1/1 time [yr]: 1.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
write lock file:
FemModel initialization elapsed time: 0.132793
Total Core solution elapsed time: 0.799376
Linear solver elapsed time: 0.000383 (0.048%)
Total elapsed time: 0 hrs 0 min 0 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
checking model consistency
marshalling file test2003.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
call computational core:
computing initial sea level geometrical kernels and weights.
iteration 1/1 time [yr]: 1.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
write lock file:
FemModel initialization elapsed time: 0.121846
Total Core solution elapsed time: 0.605905
Linear solver elapsed time: 0.000534 (0.088%)
Total elapsed time: 0 hrs 0 min 0 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 1.3e-14 < 1e-13 test id: 2003 test name: EarthSlc_rotationalFeedback field: Sealevel
SUCCESS difference: 3.9e-15 < 1e-13 test id: 2003 test name: EarthSlc_rotationalFeedback field: Uplift
SUCCESS difference: 6.9e-15 < 1e-13 test id: 2003 test name: EarthSlc_rotationalFeedback field: NorthDisplacement
SUCCESS difference: 5.3e-15 < 1e-13 test id: 2003 test name: EarthSlc_rotationalFeedback field: EastDisplacement
+++ exit code: 0
+++ error: 0
+++ Running case: MATLAB-2003
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
gmtmask: num vertices 1286
gmtmask: done
checking model consistency
marshalling file test2003.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
call computational core:
computing initial sea level geometrical kernels and weights.
iteration 1/1 time [yr]: 1.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
write lock file:
FemModel initialization elapsed time: 0.132793
Total Core solution elapsed time: 0.799376
Linear solver elapsed time: 0.000383 (0.048%)
Total elapsed time: 0 hrs 0 min 0 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
checking model consistency
marshalling file test2003.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
call computational core:
computing initial sea level geometrical kernels and weights.
iteration 1/1 time [yr]: 1.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
write lock file:
FemModel initialization elapsed time: 0.121846
Total Core solution elapsed time: 0.605905
Linear solver elapsed time: 0.000534 (0.088%)
Total elapsed time: 0 hrs 0 min 0 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 1.3e-14 < 1e-13 test id: 2003 test name: EarthSlc_rotationalFeedback field: Sealevel
SUCCESS difference: 3.9e-15 < 1e-13 test id: 2003 test name: EarthSlc_rotationalFeedback field: Uplift
SUCCESS difference: 6.9e-15 < 1e-13 test id: 2003 test name: EarthSlc_rotationalFeedback field: NorthDisplacement
SUCCESS difference: 5.3e-15 < 1e-13 test id: 2003 test name: EarthSlc_rotationalFeedback field: EastDisplacement
+++ exit code: 0
+++ error: 0
+++ Running case: MATLAB-2005
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
gmtmask: num vertices 1286
gmtmask: done
checking model consistency
marshalling file test2005.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
call computational core:
computing initial sea level geometrical kernels and weights.
iteration 1/10 time [yr]: 1.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 2/10 time [yr]: 2.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 3/10 time [yr]: 3.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 4/10 time [yr]: 4.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 5/10 time [yr]: 5.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 6/10 time [yr]: 6.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 7/10 time [yr]: 7.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 8/10 time [yr]: 8.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 9/10 time [yr]: 9.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 10/10 time [yr]: 10.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
write lock file:
FemModel initialization elapsed time: 0.18937
Total Core solution elapsed time: 1.13045
Linear solver elapsed time: 0.003609 (0.32%)
Total elapsed time: 0 hrs 0 min 1 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 0 < 1e-13 test id: 2005 test name: Earthslc_time field: Sealevel1
SUCCESS difference: 0 < 1e-13 test id: 2005 test name: Earthslc_time field: Sealevel5
SUCCESS difference: 0 < 1e-13 test id: 2005 test name: Earthslc_time field: Sealevel10
SUCCESS difference: 0 < 1e-13 test id: 2005 test name: Earthslc_time field: Seustatic10
+++ exit code: 0
+++ error: 0
+++ Running case: MATLAB-2005
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
gmtmask: num vertices 1286
gmtmask: done
checking model consistency
marshalling file test2005.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
call computational core:
computing initial sea level geometrical kernels and weights.
iteration 1/10 time [yr]: 1.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 2/10 time [yr]: 2.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 3/10 time [yr]: 3.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 4/10 time [yr]: 4.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 5/10 time [yr]: 5.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 6/10 time [yr]: 6.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 7/10 time [yr]: 7.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 8/10 time [yr]: 8.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 9/10 time [yr]: 9.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 10/10 time [yr]: 10.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
write lock file:
FemModel initialization elapsed time: 0.18937
Total Core solution elapsed time: 1.13045
Linear solver elapsed time: 0.003609 (0.32%)
Total elapsed time: 0 hrs 0 min 1 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 0 < 1e-13 test id: 2005 test name: Earthslc_time field: Sealevel1
SUCCESS difference: 0 < 1e-13 test id: 2005 test name: Earthslc_time field: Sealevel5
SUCCESS difference: 0 < 1e-13 test id: 2005 test name: Earthslc_time field: Sealevel10
SUCCESS difference: 0 < 1e-13 test id: 2005 test name: Earthslc_time field: Seustatic10
+++ exit code: 0
+++ error: 0
+++ Running case: MATLAB-2007
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
gmtmask: num vertices 1286
gmtmask: done
checking model consistency
marshalling file test2007.bin
external (offlinesolidearthsolution) solution:
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
call computational core:
computing initial sea level geometrical kernels and weights.
iteration 1/10 time [yr]: 0.50 (time step: 0.50)
computing sea level change
computing external solid earth contributions
saving results
saving temporary results
iteration 2/10 time [yr]: 1.00 (time step: 0.50)
computing sea level change
computing external solid earth contributions
saving results
saving temporary results
iteration 3/10 time [yr]: 1.50 (time step: 0.50)
computing sea level change
computing external solid earth contributions
saving results
saving temporary results
iteration 4/10 time [yr]: 2.00 (time step: 0.50)
computing sea level change
computing external solid earth contributions
saving results
saving temporary results
iteration 5/10 time [yr]: 2.50 (time step: 0.50)
computing sea level change
computing external solid earth contributions
saving results
saving temporary results
iteration 6/10 time [yr]: 3.00 (time step: 0.50)
computing sea level change
computing external solid earth contributions
saving results
saving temporary results
iteration 7/10 time [yr]: 3.50 (time step: 0.50)
computing sea level change
computing external solid earth contributions
saving results
saving temporary results
iteration 8/10 time [yr]: 4.00 (time step: 0.50)
computing sea level change
computing external solid earth contributions
saving results
saving temporary results
iteration 9/10 time [yr]: 4.50 (time step: 0.50)
computing sea level change
computing external solid earth contributions
saving results
saving temporary results
iteration 10/10 time [yr]: 5.00 (time step: 0.50)
computing sea level change
computing external solid earth contributions
saving results
saving temporary results
write lock file:
FemModel initialization elapsed time: 0.080904
Total Core solution elapsed time: 0.286069
Linear solver elapsed time: 0 (0%)
Total elapsed time: 0 hrs 0 min 0 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 1.1e-16 < 1e-13 test id: 2007 test name: External_OfflineSolidearthSolution field: Geoid
SUCCESS difference: 0 < 1e-13 test id: 2007 test name: External_OfflineSolidearthSolution field: BedUp
SUCCESS difference: 3.2e-17 < 1e-13 test id: 2007 test name: External_OfflineSolidearthSolution field: BedEast
SUCCESS difference: 0 < 1e-13 test id: 2007 test name: External_OfflineSolidearthSolution field: BedNorth
+++ exit code: 0
+++ error: 0
+++ Running case: MATLAB-2007
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
gmtmask: num vertices 1286
gmtmask: done
checking model consistency
marshalling file test2007.bin
external (offlinesolidearthsolution) solution:
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
call computational core:
computing initial sea level geometrical kernels and weights.
iteration 1/10 time [yr]: 0.50 (time step: 0.50)
computing sea level change
computing external solid earth contributions
saving results
saving temporary results
iteration 2/10 time [yr]: 1.00 (time step: 0.50)
computing sea level change
computing external solid earth contributions
saving results
saving temporary results
iteration 3/10 time [yr]: 1.50 (time step: 0.50)
computing sea level change
computing external solid earth contributions
saving results
saving temporary results
iteration 4/10 time [yr]: 2.00 (time step: 0.50)
computing sea level change
computing external solid earth contributions
saving results
saving temporary results
iteration 5/10 time [yr]: 2.50 (time step: 0.50)
computing sea level change
computing external solid earth contributions
saving results
saving temporary results
iteration 6/10 time [yr]: 3.00 (time step: 0.50)
computing sea level change
computing external solid earth contributions
saving results
saving temporary results
iteration 7/10 time [yr]: 3.50 (time step: 0.50)
computing sea level change
computing external solid earth contributions
saving results
saving temporary results
iteration 8/10 time [yr]: 4.00 (time step: 0.50)
computing sea level change
computing external solid earth contributions
saving results
saving temporary results
iteration 9/10 time [yr]: 4.50 (time step: 0.50)
computing sea level change
computing external solid earth contributions
saving results
saving temporary results
iteration 10/10 time [yr]: 5.00 (time step: 0.50)
computing sea level change
computing external solid earth contributions
saving results
saving temporary results
write lock file:
FemModel initialization elapsed time: 0.080904
Total Core solution elapsed time: 0.286069
Linear solver elapsed time: 0 (0%)
Total elapsed time: 0 hrs 0 min 0 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 1.1e-16 < 1e-13 test id: 2007 test name: External_OfflineSolidearthSolution field: Geoid
SUCCESS difference: 0 < 1e-13 test id: 2007 test name: External_OfflineSolidearthSolution field: BedUp
SUCCESS difference: 3.2e-17 < 1e-13 test id: 2007 test name: External_OfflineSolidearthSolution field: BedEast
SUCCESS difference: 0 < 1e-13 test id: 2007 test name: External_OfflineSolidearthSolution field: BedNorth
+++ exit code: 0
+++ error: 0
+++ Running case: MATLAB-2008
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
gmtmask: num vertices 1286
gmtmask: done
checking model consistency
marshalling file test2008.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
call computational core:
computing initial sea level geometrical kernels and weights.
iteration 1/1 time [yr]: 1.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
write lock file:
FemModel initialization elapsed time: 0.27065
Total Core solution elapsed time: 1.06578
Linear solver elapsed time: 0.001104 (0.1%)
Total elapsed time: 0 hrs 0 min 1 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
checking model consistency
marshalling file test2008.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
call computational core:
computing initial sea level geometrical kernels and weights.
iteration 1/1 time [yr]: 1.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing external solid earth contributions
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
write lock file:
FemModel initialization elapsed time: 0.263394
Total Core solution elapsed time: 0.609026
Linear solver elapsed time: 0.002247 (0.37%)
Total elapsed time: 0 hrs 0 min 0 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 1.2e-16 < 1e-13 test id: 2008 test name: External_AdditionalSolidearthSolution field: SealevelGrd
SUCCESS difference: 0 < 1e-13 test id: 2008 test name: External_AdditionalSolidearthSolution field: BedrockGrd
SUCCESS difference: 8.9e-17 < 1e-13 test id: 2008 test name: External_AdditionalSolidearthSolution field: SealevelAdditional
SUCCESS difference: 0 < 1e-13 test id: 2008 test name: External_AdditionalSolidearthSolution field: BedrockAdditional
+++ exit code: 0
+++ error: 0
+++ Running case: MATLAB-2008
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
gmtmask: num vertices 1286
gmtmask: done
checking model consistency
marshalling file test2008.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
call computational core:
computing initial sea level geometrical kernels and weights.
iteration 1/1 time [yr]: 1.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
write lock file:
FemModel initialization elapsed time: 0.27065
Total Core solution elapsed time: 1.06578
Linear solver elapsed time: 0.001104 (0.1%)
Total elapsed time: 0 hrs 0 min 1 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
checking model consistency
marshalling file test2008.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
call computational core:
computing initial sea level geometrical kernels and weights.
iteration 1/1 time [yr]: 1.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing external solid earth contributions
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
write lock file:
FemModel initialization elapsed time: 0.263394
Total Core solution elapsed time: 0.609026
Linear solver elapsed time: 0.002247 (0.37%)
Total elapsed time: 0 hrs 0 min 0 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 1.2e-16 < 1e-13 test id: 2008 test name: External_AdditionalSolidearthSolution field: SealevelGrd
SUCCESS difference: 0 < 1e-13 test id: 2008 test name: External_AdditionalSolidearthSolution field: BedrockGrd
SUCCESS difference: 8.9e-17 < 1e-13 test id: 2008 test name: External_AdditionalSolidearthSolution field: SealevelAdditional
SUCCESS difference: 0 < 1e-13 test id: 2008 test name: External_AdditionalSolidearthSolution field: BedrockAdditional
+++ exit code: 0
+++ error: 0
+++ Running case: MATLAB-2010
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
gmtmask: num vertices 1286
gmtmask: done
checking model consistency
marshalling file test2010.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
call computational core:
computing initial sea level geometrical kernels and weights.
iteration 1/1 time [yr]: 1.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
write lock file:
FemModel initialization elapsed time: 0.156517
Total Core solution elapsed time: 0.942227
Linear solver elapsed time: 0.001017 (0.11%)
Total elapsed time: 0 hrs 0 min 1 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 0 < 1e-13 test id: 2010 test name: MomentOfIntertia field: eus
SUCCESS difference: 9.1e-16 < 1e-13 test id: 2010 test name: MomentOfIntertia field: slc
SUCCESS difference: 1.4e-16 < 1e-13 test id: 2010 test name: MomentOfIntertia field: moixz
SUCCESS difference: 0 < 1e-13 test id: 2010 test name: MomentOfIntertia field: moiyz
SUCCESS difference: 0 < 1e-13 test id: 2010 test name: MomentOfIntertia field: moizz
+++ exit code: 0
+++ error: 0
+++ Running case: MATLAB-2010
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
gmtmask: num vertices 1286
gmtmask: done
checking model consistency
marshalling file test2010.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
call computational core:
computing initial sea level geometrical kernels and weights.
iteration 1/1 time [yr]: 1.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
write lock file:
FemModel initialization elapsed time: 0.156517
Total Core solution elapsed time: 0.942227
Linear solver elapsed time: 0.001017 (0.11%)
Total elapsed time: 0 hrs 0 min 1 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 0 < 1e-13 test id: 2010 test name: MomentOfIntertia field: eus
SUCCESS difference: 9.1e-16 < 1e-13 test id: 2010 test name: MomentOfIntertia field: slc
SUCCESS difference: 1.4e-16 < 1e-13 test id: 2010 test name: MomentOfIntertia field: moixz
SUCCESS difference: 0 < 1e-13 test id: 2010 test name: MomentOfIntertia field: moiyz
SUCCESS difference: 0 < 1e-13 test id: 2010 test name: MomentOfIntertia field: moizz
+++ exit code: 0
+++ error: 0
+++ Running case: MATLAB-2011
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
gmtmask: num vertices 1286
gmtmask: done
checking model consistency
marshalling file test2011.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
call computational core:
computing initial sea level geometrical kernels and weights.
iteration 1/1 time [yr]: 1.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
write lock file:
FemModel initialization elapsed time: 0.200079
Total Core solution elapsed time: 0.723826
Linear solver elapsed time: 0.000961 (0.13%)
Total elapsed time: 0 hrs 0 min 0 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 2.3e-16 < 1e-13 test id: 2011 test name: SlcBarystatic field: BarystaticIce
SUCCESS difference: 8.1e-16 < 1e-13 test id: 2011 test name: SlcBarystatic field: BarystaticIce2
SUCCESS difference: 0 < 1e-13 test id: 2011 test name: SlcBarystatic field: BarystaticIceDiff
+++ exit code: 0
+++ error: 0
+++ Running case: MATLAB-2011
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
gmtmask: num vertices 1286
gmtmask: done
checking model consistency
marshalling file test2011.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
call computational core:
computing initial sea level geometrical kernels and weights.
iteration 1/1 time [yr]: 1.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
write lock file:
FemModel initialization elapsed time: 0.200079
Total Core solution elapsed time: 0.723826
Linear solver elapsed time: 0.000961 (0.13%)
Total elapsed time: 0 hrs 0 min 0 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 2.3e-16 < 1e-13 test id: 2011 test name: SlcBarystatic field: BarystaticIce
SUCCESS difference: 8.1e-16 < 1e-13 test id: 2011 test name: SlcBarystatic field: BarystaticIce2
SUCCESS difference: 0 < 1e-13 test id: 2011 test name: SlcBarystatic field: BarystaticIceDiff
+++ exit code: 0
+++ error: 0
+++ Running case: MATLAB-2013
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
gmtmask: num vertices 1286
gmtmask: done
checking model consistency
marshalling file test2013.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
call computational core:
computing initial sea level geometrical kernels and weights.
iteration 1/1 time [yr]: 1.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
write lock file:
FemModel initialization elapsed time: 0.105698
Total Core solution elapsed time: 0.999192
Linear solver elapsed time: 0.004895 (0.49%)
Total elapsed time: 0 hrs 0 min 1 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 1.1e-16 < 1e-13 test id: 2013 test name: EarthSlc_Geometry field: Mask
SUCCESS difference: 1.2e-15 < 1e-13 test id: 2013 test name: EarthSlc_Geometry field: LoadAreas
SUCCESS difference: 2.5e-16 < 1e-13 test id: 2013 test name: EarthSlc_Geometry field: SurfaceLoad
SUCCESS difference: 1.7e-16 < 1e-13 test id: 2013 test name: EarthSlc_Geometry field: LoadWeights
SUCCESS difference: 2.5e-16 < 1e-13 test id: 2013 test name: EarthSlc_Geometry field: LatitudeLoadBarycenter
SUCCESS difference: 3.2e-16 < 1e-13 test id: 2013 test name: EarthSlc_Geometry field: LongitudeLoadBarycenter
+++ exit code: 0
+++ error: 0
+++ Running case: MATLAB-2013
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
gmtmask: num vertices 1286
gmtmask: done
checking model consistency
marshalling file test2013.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
call computational core:
computing initial sea level geometrical kernels and weights.
iteration 1/1 time [yr]: 1.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
write lock file:
FemModel initialization elapsed time: 0.105698
Total Core solution elapsed time: 0.999192
Linear solver elapsed time: 0.004895 (0.49%)
Total elapsed time: 0 hrs 0 min 1 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 1.1e-16 < 1e-13 test id: 2013 test name: EarthSlc_Geometry field: Mask
SUCCESS difference: 1.2e-15 < 1e-13 test id: 2013 test name: EarthSlc_Geometry field: LoadAreas
SUCCESS difference: 2.5e-16 < 1e-13 test id: 2013 test name: EarthSlc_Geometry field: SurfaceLoad
SUCCESS difference: 1.7e-16 < 1e-13 test id: 2013 test name: EarthSlc_Geometry field: LoadWeights
SUCCESS difference: 2.5e-16 < 1e-13 test id: 2013 test name: EarthSlc_Geometry field: LatitudeLoadBarycenter
SUCCESS difference: 3.2e-16 < 1e-13 test id: 2013 test name: EarthSlc_Geometry field: LongitudeLoadBarycenter
+++ exit code: 0
+++ error: 0
+++ Running case: MATLAB-2020
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
=== Computing "real" spherical harmonics for chosen resolution ====
SH computations : degree 0 (of 60) completed.
SH computations : degree 1 (of 60) completed.
SH computations : degree 2 (of 60) completed.
SH computations : degree 3 (of 60) completed.
SH computations : degree 4 (of 60) completed.
SH computations : degree 5 (of 60) completed.
SH computations : degree 6 (of 60) completed.
SH computations : degree 7 (of 60) completed.
SH computations : degree 8 (of 60) completed.
SH computations : degree 9 (of 60) completed.
SH computations : degree 10 (of 60) completed.
SH computations : degree 11 (of 60) completed.
SH computations : degree 12 (of 60) completed.
SH computations : degree 13 (of 60) completed.
SH computations : degree 14 (of 60) completed.
SH computations : degree 15 (of 60) completed.
SH computations : degree 16 (of 60) completed.
SH computations : degree 17 (of 60) completed.
SH computations : degree 18 (of 60) completed.
SH computations : degree 19 (of 60) completed.
SH computations : degree 20 (of 60) completed.
SH computations : degree 21 (of 60) completed.
SH computations : degree 22 (of 60) completed.
SH computations : degree 23 (of 60) completed.
SH computations : degree 24 (of 60) completed.
SH computations : degree 25 (of 60) completed.
SH computations : degree 26 (of 60) completed.
SH computations : degree 27 (of 60) completed.
SH computations : degree 28 (of 60) completed.
SH computations : degree 29 (of 60) completed.
SH computations : degree 30 (of 60) completed.
SH computations : degree 31 (of 60) completed.
SH computations : degree 32 (of 60) completed.
SH computations : degree 33 (of 60) completed.
SH computations : degree 34 (of 60) completed.
SH computations : degree 35 (of 60) completed.
SH computations : degree 36 (of 60) completed.
SH computations : degree 37 (of 60) completed.
SH computations : degree 38 (of 60) completed.
SH computations : degree 39 (of 60) completed.
SH computations : degree 40 (of 60) completed.
SH computations : degree 41 (of 60) completed.
SH computations : degree 42 (of 60) completed.
SH computations : degree 43 (of 60) completed.
SH computations : degree 44 (of 60) completed.
SH computations : degree 45 (of 60) completed.
SH computations : degree 46 (of 60) completed.
SH computations : degree 47 (of 60) completed.
SH computations : degree 48 (of 60) completed.
SH computations : degree 49 (of 60) completed.
SH computations : degree 50 (of 60) completed.
SH computations : degree 51 (of 60) completed.
SH computations : degree 52 (of 60) completed.
SH computations : degree 53 (of 60) completed.
SH computations : degree 54 (of 60) completed.
SH computations : degree 55 (of 60) completed.
SH computations : degree 56 (of 60) completed.
SH computations : degree 57 (of 60) completed.
SH computations : degree 58 (of 60) completed.
SH computations : degree 59 (of 60) completed.
SH computations : degree 60 (of 60) completed.
completed!
=== Computing SH coefficients for ocean function ==================
gmtmask: num vertices 12288
gmtmask: done
completed!
=== Solving WOUT rotational feedbacks =========
iteration # 1 :: difference in norm = 0.11957
iteration # 2 :: difference in norm = 0.0025007
iteration # 3 :: difference in norm = 0.0004088
iteration # 4 :: difference in norm = 6.3542e-05
iteration # 5 :: difference in norm = 1.0397e-05
iteration # 6 :: difference in norm = 1.7779e-06
solution converged!
=== Solving WITH rotational feedbacks =========
iteration # 1 :: difference in norm = 0.11937
iteration # 2 :: difference in norm = 0.0024814
iteration # 3 :: difference in norm = 0.00040586
iteration # 4 :: difference in norm = 6.3273e-05
iteration # 5 :: difference in norm = 1.0489e-05
iteration # 6 :: difference in norm = 1.8334e-06
solution converged!
SUCCESS difference: 2.7e-07 < 3e-07 test id: 2020 test name: SHslc field: Barystatic_no_rotation
SUCCESS difference: 4.1e-15 < 1e-13 test id: 2020 test name: SHslc field: rsl_no_rotation
SUCCESS difference: 1.6e-15 < 1e-13 test id: 2020 test name: SHslc field: geoid_no_rotation
SUCCESS difference: 1.9e-15 < 1e-13 test id: 2020 test name: SHslc field: bed_no_rotation
SUCCESS difference: 1.8e-07 < 2e-07 test id: 2020 test name: SHslc field: Barystatic_with_rotation
SUCCESS difference: 3.9e-15 < 1e-13 test id: 2020 test name: SHslc field: rsl_with_rotation
SUCCESS difference: 1.4e-15 < 1e-13 test id: 2020 test name: SHslc field: geoid_with_rotation
SUCCESS difference: 2.1e-15 < 1e-13 test id: 2020 test name: SHslc field: bed_with_rotation
+++ exit code: 0
+++ error: 0
+++ Running case: MATLAB-2020
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
=== Computing "real" spherical harmonics for chosen resolution ====
SH computations : degree 0 (of 60) completed.
SH computations : degree 1 (of 60) completed.
SH computations : degree 2 (of 60) completed.
SH computations : degree 3 (of 60) completed.
SH computations : degree 4 (of 60) completed.
SH computations : degree 5 (of 60) completed.
SH computations : degree 6 (of 60) completed.
SH computations : degree 7 (of 60) completed.
SH computations : degree 8 (of 60) completed.
SH computations : degree 9 (of 60) completed.
SH computations : degree 10 (of 60) completed.
SH computations : degree 11 (of 60) completed.
SH computations : degree 12 (of 60) completed.
SH computations : degree 13 (of 60) completed.
SH computations : degree 14 (of 60) completed.
SH computations : degree 15 (of 60) completed.
SH computations : degree 16 (of 60) completed.
SH computations : degree 17 (of 60) completed.
SH computations : degree 18 (of 60) completed.
SH computations : degree 19 (of 60) completed.
SH computations : degree 20 (of 60) completed.
SH computations : degree 21 (of 60) completed.
SH computations : degree 22 (of 60) completed.
SH computations : degree 23 (of 60) completed.
SH computations : degree 24 (of 60) completed.
SH computations : degree 25 (of 60) completed.
SH computations : degree 26 (of 60) completed.
SH computations : degree 27 (of 60) completed.
SH computations : degree 28 (of 60) completed.
SH computations : degree 29 (of 60) completed.
SH computations : degree 30 (of 60) completed.
SH computations : degree 31 (of 60) completed.
SH computations : degree 32 (of 60) completed.
SH computations : degree 33 (of 60) completed.
SH computations : degree 34 (of 60) completed.
SH computations : degree 35 (of 60) completed.
SH computations : degree 36 (of 60) completed.
SH computations : degree 37 (of 60) completed.
SH computations : degree 38 (of 60) completed.
SH computations : degree 39 (of 60) completed.
SH computations : degree 40 (of 60) completed.
SH computations : degree 41 (of 60) completed.
SH computations : degree 42 (of 60) completed.
SH computations : degree 43 (of 60) completed.
SH computations : degree 44 (of 60) completed.
SH computations : degree 45 (of 60) completed.
SH computations : degree 46 (of 60) completed.
SH computations : degree 47 (of 60) completed.
SH computations : degree 48 (of 60) completed.
SH computations : degree 49 (of 60) completed.
SH computations : degree 50 (of 60) completed.
SH computations : degree 51 (of 60) completed.
SH computations : degree 52 (of 60) completed.
SH computations : degree 53 (of 60) completed.
SH computations : degree 54 (of 60) completed.
SH computations : degree 55 (of 60) completed.
SH computations : degree 56 (of 60) completed.
SH computations : degree 57 (of 60) completed.
SH computations : degree 58 (of 60) completed.
SH computations : degree 59 (of 60) completed.
SH computations : degree 60 (of 60) completed.
completed!
=== Computing SH coefficients for ocean function ==================
gmtmask: num vertices 12288
gmtmask: done
completed!
=== Solving WOUT rotational feedbacks =========
iteration # 1 :: difference in norm = 0.11957
iteration # 2 :: difference in norm = 0.0025007
iteration # 3 :: difference in norm = 0.0004088
iteration # 4 :: difference in norm = 6.3542e-05
iteration # 5 :: difference in norm = 1.0397e-05
iteration # 6 :: difference in norm = 1.7779e-06
solution converged!
=== Solving WITH rotational feedbacks =========
iteration # 1 :: difference in norm = 0.11937
iteration # 2 :: difference in norm = 0.0024814
iteration # 3 :: difference in norm = 0.00040586
iteration # 4 :: difference in norm = 6.3273e-05
iteration # 5 :: difference in norm = 1.0489e-05
iteration # 6 :: difference in norm = 1.8334e-06
solution converged!
SUCCESS difference: 2.7e-07 < 3e-07 test id: 2020 test name: SHslc field: Barystatic_no_rotation
SUCCESS difference: 4.1e-15 < 1e-13 test id: 2020 test name: SHslc field: rsl_no_rotation
SUCCESS difference: 1.6e-15 < 1e-13 test id: 2020 test name: SHslc field: geoid_no_rotation
SUCCESS difference: 1.9e-15 < 1e-13 test id: 2020 test name: SHslc field: bed_no_rotation
SUCCESS difference: 1.8e-07 < 2e-07 test id: 2020 test name: SHslc field: Barystatic_with_rotation
SUCCESS difference: 3.9e-15 < 1e-13 test id: 2020 test name: SHslc field: rsl_with_rotation
SUCCESS difference: 1.4e-15 < 1e-13 test id: 2020 test name: SHslc field: geoid_with_rotation
SUCCESS difference: 2.1e-15 < 1e-13 test id: 2020 test name: SHslc field: bed_with_rotation
+++ exit code: 0
+++ error: 0
+++ Running case: MATLAB-2021
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
Computing Greens functions...
500 of 1286 vertices done!
1000 of 1286 vertices done!
gmtmask: num vertices 2568
gmtmask: done
Solving sesaw-slc for Rigid Earth WITHOUT rotational feedback...
iteration # 1 :: difference in norm = 0.011137
iteration # 2 :: difference in norm = 0.00011489
iteration # 3 :: difference in norm = 3.4553e-06
solution converged!
Solving sesaw-slc for Rigid Earth WITH rotational feedback...
iteration # 1 :: difference in norm = 0.011693
iteration # 2 :: difference in norm = 0.00012356
iteration # 3 :: difference in norm = 2.9489e-07
solution converged!
Solving sesaw-slc for Elastic Earth WITH rotational feedback...
iteration # 1 :: difference in norm = 0.012866
iteration # 2 :: difference in norm = 0.00025771
iteration # 3 :: difference in norm = 5.7273e-05
iteration # 4 :: difference in norm = 9.3911e-06
solution converged!
Solving sesaw-slc for Elastic Earth WITHOUT rotational feedback...
iteration # 1 :: difference in norm = 0.012425
iteration # 2 :: difference in norm = 0.00026672
iteration # 3 :: difference in norm = 5.4626e-05
iteration # 4 :: difference in norm = 8.4046e-06
solution converged!
SUCCESS difference: 3.6e-16 < 1e-13 test id: 2021 test name: SESAWslc field: eus_rigid
SUCCESS difference: 3.6e-16 < 1e-13 test id: 2021 test name: SESAWslc field: eus_rigid_rot
SUCCESS difference: 3.6e-16 < 1e-13 test id: 2021 test name: SESAWslc field: eus_elast
SUCCESS difference: 3.6e-16 < 1e-13 test id: 2021 test name: SESAWslc field: eus_elast_rot
SUCCESS difference: 3.2e-15 < 1e-13 test id: 2021 test name: SESAWslc field: rsl_rigid
SUCCESS difference: 3.4e-15 < 1e-13 test id: 2021 test name: SESAWslc field: rsl_rigid_rot
SUCCESS difference: 1e-14 < 1e-13 test id: 2021 test name: SESAWslc field: rsl_elast
SUCCESS difference: 1e-14 < 1e-13 test id: 2021 test name: SESAWslc field: rsl_elast_rot
+++ exit code: 0
+++ error: 0
+++ Running case: MATLAB-2021
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
Computing Greens functions...
500 of 1286 vertices done!
1000 of 1286 vertices done!
gmtmask: num vertices 2568
gmtmask: done
Solving sesaw-slc for Rigid Earth WITHOUT rotational feedback...
iteration # 1 :: difference in norm = 0.011137
iteration # 2 :: difference in norm = 0.00011489
iteration # 3 :: difference in norm = 3.4553e-06
solution converged!
Solving sesaw-slc for Rigid Earth WITH rotational feedback...
iteration # 1 :: difference in norm = 0.011693
iteration # 2 :: difference in norm = 0.00012356
iteration # 3 :: difference in norm = 2.9489e-07
solution converged!
Solving sesaw-slc for Elastic Earth WITH rotational feedback...
iteration # 1 :: difference in norm = 0.012866
iteration # 2 :: difference in norm = 0.00025771
iteration # 3 :: difference in norm = 5.7273e-05
iteration # 4 :: difference in norm = 9.3911e-06
solution converged!
Solving sesaw-slc for Elastic Earth WITHOUT rotational feedback...
iteration # 1 :: difference in norm = 0.012425
iteration # 2 :: difference in norm = 0.00026672
iteration # 3 :: difference in norm = 5.4626e-05
iteration # 4 :: difference in norm = 8.4046e-06
solution converged!
SUCCESS difference: 3.6e-16 < 1e-13 test id: 2021 test name: SESAWslc field: eus_rigid
SUCCESS difference: 3.6e-16 < 1e-13 test id: 2021 test name: SESAWslc field: eus_rigid_rot
SUCCESS difference: 3.6e-16 < 1e-13 test id: 2021 test name: SESAWslc field: eus_elast
SUCCESS difference: 3.6e-16 < 1e-13 test id: 2021 test name: SESAWslc field: eus_elast_rot
SUCCESS difference: 3.2e-15 < 1e-13 test id: 2021 test name: SESAWslc field: rsl_rigid
SUCCESS difference: 3.4e-15 < 1e-13 test id: 2021 test name: SESAWslc field: rsl_rigid_rot
SUCCESS difference: 1e-14 < 1e-13 test id: 2021 test name: SESAWslc field: rsl_elast
SUCCESS difference: 1e-14 < 1e-13 test id: 2021 test name: SESAWslc field: rsl_elast_rot
+++ exit code: 0
+++ error: 0
+++ Running case: MATLAB-2070
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
checking model consistency
marshalling file test2070.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
starting model processor
creating datasets for analysis LoveAnalysis
updating elements and materials for control parameters
updating elements and materials for uncertainty quantification
creating output definitions
done with model processor
Processing finite element model of analysis LoveAnalysis:
toolkits Options set for analysis: LoveAnalysis
configuring element and loads
Configuring elements...
Configuring loads...
Configuring materials...
Configuring inputs...
detecting active vertices
resolving node constraints
creating nodal degrees of freedom
call computational core:
computing LOVE numbers
Surface gravity: 9.81555 m.s^-2
Mean density: 5511.68 kg.m^-3
elastic
Degree: 9, surface/Depth Love number ratio small: 1.99455e-21
Changing the interface where integration starts
New start interface: r=1.2225e+06m
Degree: 28, surface/Depth Love number ratio small: 5.72091e-21
Changing the interface where integration starts
New start interface: r=3.48e+06m
Degree: 84, surface/Depth Love number ratio small: 9.06995e-21
Changing the interface where integration starts
New start interface: r=5.701e+06m
Degree: 452, surface/Depth Love number ratio small: 9.99209e-21
Changing the interface where integration starts
New start interface: r=5.951e+06m
Degree: 740, surface/Depth Love number ratio small: 1.58329e-21
Changing the interface where integration starts
New start interface: r=6.301e+06m
tidal
write lock file:
FemModel initialization elapsed time: 0.065799
Total Core solution elapsed time: 0.991804
Linear solver elapsed time: 0 (0%)
Total elapsed time: 0 hrs 0 min 1 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
checking model consistency
marshalling file test2070.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
starting model processor
creating datasets for analysis LoveAnalysis
updating elements and materials for control parameters
updating elements and materials for uncertainty quantification
creating output definitions
done with model processor
Processing finite element model of analysis LoveAnalysis:
toolkits Options set for analysis: LoveAnalysis
configuring element and loads
Configuring elements...
Configuring loads...
Configuring materials...
Configuring inputs...
detecting active vertices
resolving node constraints
creating nodal degrees of freedom
call computational core:
computing LOVE numbers
Surface gravity: 9.81555 m.s^-2
Mean density: 5511.68 kg.m^-3
elastic
Degree: 10, surface/Depth Love number ratio small: 5.45782e-22
Changing the interface where integration starts
New start interface: r=1.2225e+06m
Degree: 31, surface/Depth Love number ratio small: 6.21509e-21
Changing the interface where integration starts
New start interface: r=3.48e+06m
Degree: 146, surface/Depth Love number ratio small: 2.60307e-22
Changing the interface where integration starts
New start interface: r=5.701e+06m
Degree: 453, surface/Depth Love number ratio small: 9.78446e-21
Changing the interface where integration starts
New start interface: r=5.951e+06m
Degree: 1369, surface/Depth Love number ratio small: 1.72457e-21
Changing the interface where integration starts
New start interface: r=6.301e+06m
write lock file:
FemModel initialization elapsed time: 0.046546
Total Core solution elapsed time: 1.21084
Linear solver elapsed time: 0 (0%)
Total elapsed time: 0 hrs 0 min 1 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 0 < 2e-08 test id: 2070 test name: ElasticLoveNumbers field: LoveH_loading_elastic
SUCCESS difference: 0 < 2e-08 test id: 2070 test name: ElasticLoveNumbers field: LoveK_loading_elastic
SUCCESS difference: 0 < 2e-08 test id: 2070 test name: ElasticLoveNumbers field: LoveL_loading_elastic
SUCCESS difference: 0 < 2e-08 test id: 2070 test name: ElasticLoveNumbers field: LoveH_tidal_elastic
SUCCESS difference: 0 < 2e-08 test id: 2070 test name: ElasticLoveNumbers field: LoveK_tidal_elastic
SUCCESS difference: 0 < 2e-08 test id: 2070 test name: ElasticLoveNumbers field: LoveL_tidal_elastic
+++ exit code: 0
+++ error: 0
+++ Running case: MATLAB-2070
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
checking model consistency
marshalling file test2070.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
starting model processor
creating datasets for analysis LoveAnalysis
updating elements and materials for control parameters
updating elements and materials for uncertainty quantification
creating output definitions
done with model processor
Processing finite element model of analysis LoveAnalysis:
toolkits Options set for analysis: LoveAnalysis
configuring element and loads
Configuring elements...
Configuring loads...
Configuring materials...
Configuring inputs...
detecting active vertices
resolving node constraints
creating nodal degrees of freedom
call computational core:
computing LOVE numbers
Surface gravity: 9.81555 m.s^-2
Mean density: 5511.68 kg.m^-3
elastic
Degree: 9, surface/Depth Love number ratio small: 1.99455e-21
Changing the interface where integration starts
New start interface: r=1.2225e+06m
Degree: 28, surface/Depth Love number ratio small: 5.72091e-21
Changing the interface where integration starts
New start interface: r=3.48e+06m
Degree: 84, surface/Depth Love number ratio small: 9.06995e-21
Changing the interface where integration starts
New start interface: r=5.701e+06m
Degree: 452, surface/Depth Love number ratio small: 9.99209e-21
Changing the interface where integration starts
New start interface: r=5.951e+06m
Degree: 740, surface/Depth Love number ratio small: 1.58329e-21
Changing the interface where integration starts
New start interface: r=6.301e+06m
tidal
write lock file:
FemModel initialization elapsed time: 0.065799
Total Core solution elapsed time: 0.991804
Linear solver elapsed time: 0 (0%)
Total elapsed time: 0 hrs 0 min 1 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
checking model consistency
marshalling file test2070.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
starting model processor
creating datasets for analysis LoveAnalysis
updating elements and materials for control parameters
updating elements and materials for uncertainty quantification
creating output definitions
done with model processor
Processing finite element model of analysis LoveAnalysis:
toolkits Options set for analysis: LoveAnalysis
configuring element and loads
Configuring elements...
Configuring loads...
Configuring materials...
Configuring inputs...
detecting active vertices
resolving node constraints
creating nodal degrees of freedom
call computational core:
computing LOVE numbers
Surface gravity: 9.81555 m.s^-2
Mean density: 5511.68 kg.m^-3
elastic
Degree: 10, surface/Depth Love number ratio small: 5.45782e-22
Changing the interface where integration starts
New start interface: r=1.2225e+06m
Degree: 31, surface/Depth Love number ratio small: 6.21509e-21
Changing the interface where integration starts
New start interface: r=3.48e+06m
Degree: 146, surface/Depth Love number ratio small: 2.60307e-22
Changing the interface where integration starts
New start interface: r=5.701e+06m
Degree: 453, surface/Depth Love number ratio small: 9.78446e-21
Changing the interface where integration starts
New start interface: r=5.951e+06m
Degree: 1369, surface/Depth Love number ratio small: 1.72457e-21
Changing the interface where integration starts
New start interface: r=6.301e+06m
write lock file:
FemModel initialization elapsed time: 0.046546
Total Core solution elapsed time: 1.21084
Linear solver elapsed time: 0 (0%)
Total elapsed time: 0 hrs 0 min 1 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 0 < 2e-08 test id: 2070 test name: ElasticLoveNumbers field: LoveH_loading_elastic
SUCCESS difference: 0 < 2e-08 test id: 2070 test name: ElasticLoveNumbers field: LoveK_loading_elastic
SUCCESS difference: 0 < 2e-08 test id: 2070 test name: ElasticLoveNumbers field: LoveL_loading_elastic
SUCCESS difference: 0 < 2e-08 test id: 2070 test name: ElasticLoveNumbers field: LoveH_tidal_elastic
SUCCESS difference: 0 < 2e-08 test id: 2070 test name: ElasticLoveNumbers field: LoveK_tidal_elastic
SUCCESS difference: 0 < 2e-08 test id: 2070 test name: ElasticLoveNumbers field: LoveL_tidal_elastic
+++ exit code: 0
+++ error: 0
+++ Running case: MATLAB-2071
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
Temporal love numbers: Overriding md.love.nfreq and md.love.frequencies
checking model consistency
marshalling file test2071.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
starting model processor
creating datasets for analysis LoveAnalysis
updating elements and materials for control parameters
updating elements and materials for uncertainty quantification
creating output definitions
done with model processor
Processing finite element model of analysis LoveAnalysis:
toolkits Options set for analysis: LoveAnalysis
configuring element and loads
Configuring elements...
Configuring loads...
Configuring materials...
Configuring inputs...
detecting active vertices
resolving node constraints
creating nodal degrees of freedom
call computational core:
computing LOVE numbers
Surface gravity: 9.81555 m.s^-2
Mean density: 5511.68 kg.m^-3
elastic
Degree: 9, surface/Depth Love number ratio small: 1.99455e-21
Changing the interface where integration starts
New start interface: r=1.2225e+06m
Degree: 28, surface/Depth Love number ratio small: 5.72091e-21
Changing the interface where integration starts
New start interface: r=3.48e+06m
Degree: 84, surface/Depth Love number ratio small: 9.06995e-21
Changing the interface where integration starts
New start interface: r=5.701e+06m
Degree: 452, surface/Depth Love number ratio small: 9.99209e-21
Changing the interface where integration starts
New start interface: r=5.951e+06m
Degree: 740, surface/Depth Love number ratio small: 1.58329e-21
Changing the interface where integration starts
New start interface: r=6.301e+06m
Degree: 878/1000 found negligible variation across frequencies, will copy elastic values after this degree
Delta_h/h=1.89303e-06; Delta_k/k=1.89953e-06; Delta_l/l=0.0009963; threshold set to 0.001
loading
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tidal
Inverse Laplace Transform... done!
Transforming PMTF and tidal love numbers... done!
Assembling parralel vectors...done
saving results
write lock file:
FemModel initialization elapsed time: 0.059866
Total Core solution elapsed time: 97.5114
Linear solver elapsed time: 0 (0%)
Total elapsed time: 0 hrs 1 min 38 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 0 < 5e-06 test id: 2071 test name: TemporalLoveNumbers field: LoveH_loading_temporal
SUCCESS difference: 0 < 5e-05 test id: 2071 test name: TemporalLoveNumbers field: LoveK_loading_temporal
SUCCESS difference: 0 < 4e-05 test id: 2071 test name: TemporalLoveNumbers field: LoveL_loading_temporal
+++ exit code: 0
+++ error: 0
+++ Running case: MATLAB-2071
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
Temporal love numbers: Overriding md.love.nfreq and md.love.frequencies
checking model consistency
marshalling file test2071.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
starting model processor
creating datasets for analysis LoveAnalysis
updating elements and materials for control parameters
updating elements and materials for uncertainty quantification
creating output definitions
done with model processor
Processing finite element model of analysis LoveAnalysis:
toolkits Options set for analysis: LoveAnalysis
configuring element and loads
Configuring elements...
Configuring loads...
Configuring materials...
Configuring inputs...
detecting active vertices
resolving node constraints
creating nodal degrees of freedom
call computational core:
computing LOVE numbers
Surface gravity: 9.81555 m.s^-2
Mean density: 5511.68 kg.m^-3
elastic
Degree: 9, surface/Depth Love number ratio small: 1.99455e-21
Changing the interface where integration starts
New start interface: r=1.2225e+06m
Degree: 28, surface/Depth Love number ratio small: 5.72091e-21
Changing the interface where integration starts
New start interface: r=3.48e+06m
Degree: 84, surface/Depth Love number ratio small: 9.06995e-21
Changing the interface where integration starts
New start interface: r=5.701e+06m
Degree: 452, surface/Depth Love number ratio small: 9.99209e-21
Changing the interface where integration starts
New start interface: r=5.951e+06m
Degree: 740, surface/Depth Love number ratio small: 1.58329e-21
Changing the interface where integration starts
New start interface: r=6.301e+06m
Degree: 878/1000 found negligible variation across frequencies, will copy elastic values after this degree
Delta_h/h=1.89303e-06; Delta_k/k=1.89953e-06; Delta_l/l=0.0009963; threshold set to 0.001
loading
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tidal
Inverse Laplace Transform... done!
Transforming PMTF and tidal love numbers... done!
Assembling parralel vectors...done
saving results
write lock file:
FemModel initialization elapsed time: 0.059866
Total Core solution elapsed time: 97.5114
Linear solver elapsed time: 0 (0%)
Total elapsed time: 0 hrs 1 min 38 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 0 < 5e-06 test id: 2071 test name: TemporalLoveNumbers field: LoveH_loading_temporal
SUCCESS difference: 0 < 5e-05 test id: 2071 test name: TemporalLoveNumbers field: LoveK_loading_temporal
SUCCESS difference: 0 < 4e-05 test id: 2071 test name: TemporalLoveNumbers field: LoveL_loading_temporal
+++ exit code: 0
+++ error: 0
+++ Running case: MATLAB-2072
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
Temporal love numbers: Overriding md.love.nfreq and md.love.frequencies
checking model consistency
marshalling file test2072.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
starting model processor
creating datasets for analysis LoveAnalysis
updating elements and materials for control parameters
updating elements and materials for uncertainty quantification
creating output definitions
done with model processor
Processing finite element model of analysis LoveAnalysis:
toolkits Options set for analysis: LoveAnalysis
configuring element and loads
Configuring elements...
Configuring loads...
Configuring materials...
Configuring inputs...
detecting active vertices
resolving node constraints
creating nodal degrees of freedom
call computational core:
computing LOVE numbers
Surface gravity: 9.74033 m.s^-2
Mean density: 5469.45 kg.m^-3
elastic
Degree: 9, surface/Depth Love number ratio small: 1.80361e-21
Changing the interface where integration starts
New start interface: r=1.2225e+06m
Degree: 28, surface/Depth Love number ratio small: 6.92452e-21
Changing the interface where integration starts
New start interface: r=3.48e+06m
Degree: 83, surface/Depth Love number ratio small: 6.9234e-21
Changing the interface where integration starts
New start interface: r=3.6e+06m
Degree: 84, surface/Depth Love number ratio small: 7.13879e-21
Changing the interface where integration starts
New start interface: r=3.6305e+06m
Degree: 85, surface/Depth Love number ratio small: 8.17255e-21
Changing the interface where integration starts
New start interface: r=3.7e+06m
Degree: 88, surface/Depth Love number ratio small: 7.80507e-21
Changing the interface where integration starts
New start interface: r=3.9e+06m
Degree: 97, surface/Depth Love number ratio small: 9.44141e-21
Changing the interface where integration starts
New start interface: r=4e+06m
Degree: 103, surface/Depth Love number ratio small: 6.33018e-21
Changing the interface where integration starts
New start interface: r=4.2e+06m
Degree: 114, surface/Depth Love number ratio small: 9.35921e-21
Changing the interface where integration starts
New start interface: r=4.3e+06m
Degree: 121, surface/Depth Love number ratio small: 7.79262e-21
Changing the interface where integration starts
New start interface: r=4.5e+06m
Degree: 136, surface/Depth Love number ratio small: 9.26762e-21
Changing the interface where integration starts
New start interface: r=4.6e+06m
Degree: 145, surface/Depth Love number ratio small: 7.662e-21
Changing the interface where integration starts
New start interface: r=4.8e+06m
Degree: 165, surface/Depth Love number ratio small: 9.94772e-21
Changing the interface where integration starts
New start interface: r=4.9e+06m
Degree: 176, surface/Depth Love number ratio small: 7.90145e-21
Changing the interface where integration starts
New start interface: r=5.1e+06m
Degree: 204, surface/Depth Love number ratio small: 8.42663e-21
Changing the interface where integration starts
New start interface: r=5.2e+06m
Degree: 210, surface/Depth Love number ratio small: 5.33863e-22
Changing the interface where integration starts
New start interface: r=5.4e+06m
loading
Degree: 1/256 Degree: 2/256 Degree: 3/256 Degree: 4/256 Degree: 5/256 Degree: 6/256 Degree: 7/256 Degree: 8/256 Degree: 9/256 Degree: 10/256 Degree: 11/256 Degree: 12/256 Degree: 13/256 Degree: 14/256 Degree: 15/256 Degree: 16/256 Degree: 17/256 Degree: 18/256 Degree: 19/256 Degree: 20/256 Degree: 21/256 Degree: 22/256 Degree: 23/256 Degree: 24/256 Degree: 25/256 Degree: 26/256 Degree: 27/256 Degree: 28/256 Degree: 29/256 Degree: 30/256 Degree: 31/256 Degree: 32/256 Degree: 33/256 Degree: 34/256 Degree: 35/256 Degree: 36/256 Degree: 37/256 Degree: 38/256 Degree: 39/256 Degree: 40/256 Degree: 41/256 Degree: 42/256 Degree: 43/256 Degree: 44/256 Degree: 45/256 Degree: 46/256 Degree: 47/256 Degree: 48/256 Degree: 49/256 Degree: 50/256 Degree: 51/256 Degree: 52/256 Degree: 53/256 Degree: 54/256 Degree: 55/256 Degree: 56/256 Degree: 57/256 Degree: 58/256 Degree: 59/256 Degree: 60/256 Degree: 61/256 Degree: 62/256 Degree: 63/256 Degree: 64/256 Degree: 65/256 Degree: 66/256 Degree: 67/256 Degree: 68/256 Degree: 69/256 Degree: 70/256 Degree: 71/256 Degree: 72/256 Degree: 73/256 Degree: 74/256 Degree: 75/256 Degree: 76/256 Degree: 77/256 Degree: 78/256 Degree: 79/256 Degree: 80/256 Degree: 81/256 Degree: 82/256 Degree: 83/256 Degree: 84/256 Degree: 85/256 Degree: 86/256 Degree: 87/256 Degree: 88/256 Degree: 89/256 Degree: 90/256 Degree: 91/256 Degree: 92/256 Degree: 93/256 Degree: 94/256 Degree: 95/256 Degree: 96/256 Degree: 97/256 Degree: 98/256 Degree: 99/256 Degree: 100/256 Degree: 101/256 Degree: 102/256 Degree: 103/256 Degree: 104/256 Degree: 105/256 Degree: 106/256 Degree: 107/256 Degree: 108/256 Degree: 109/256 Degree: 110/256 Degree: 111/256 Degree: 112/256 Degree: 113/256 Degree: 114/256 Degree: 115/256 Degree: 116/256 Degree: 117/256 Degree: 118/256 Degree: 119/256 Degree: 120/256 Degree: 121/256 Degree: 122/256 Degree: 123/256 Degree: 124/256 Degree: 125/256 Degree: 126/256 Degree: 127/256 Degree: 128/256 Degree: 129/256 Degree: 130/256 Degree: 131/256 Degree: 132/256 Degree: 133/256 Degree: 134/256 Degree: 135/256 Degree: 136/256 Degree: 137/256 Degree: 138/256 Degree: 139/256 Degree: 140/256 Degree: 141/256 Degree: 142/256 Degree: 143/256 Degree: 144/256 Degree: 145/256 Degree: 146/256 Degree: 147/256 Degree: 148/256 Degree: 149/256 Degree: 150/256 Degree: 151/256 Degree: 152/256 Degree: 153/256 Degree: 154/256 Degree: 155/256 Degree: 156/256 Degree: 157/256 Degree: 158/256 Degree: 159/256 Degree: 160/256 Degree: 161/256 Degree: 162/256 Degree: 163/256 Degree: 164/256 Degree: 165/256 Degree: 166/256 Degree: 167/256 Degree: 168/256 Degree: 169/256 Degree: 170/256 Degree: 171/256 Degree: 172/256 Degree: 173/256 Degree: 174/256 Degree: 175/256 Degree: 176/256 Degree: 177/256 Degree: 178/256 Degree: 179/256 Degree: 180/256 Degree: 181/256 Degree: 182/256 Degree: 183/256 Degree: 184/256 Degree: 185/256 Degree: 186/256 Degree: 187/256 Degree: 188/256 Degree: 189/256 Degree: 190/256 Degree: 191/256 Degree: 192/256 Degree: 193/256 Degree: 194/256 Degree: 195/256 Degree: 196/256 Degree: 197/256 Degree: 198/256 Degree: 199/256 Degree: 200/256 Degree: 201/256 Degree: 202/256 Degree: 203/256 Degree: 204/256 Degree: 205/256 Degree: 206/256 Degree: 207/256 Degree: 208/256 Degree: 209/256 Degree: 210/256 Degree: 211/256 Degree: 212/256 Degree: 213/256 Degree: 214/256 Degree: 215/256 Degree: 216/256 Degree: 217/256 Degree: 218/256 Degree: 219/256 Degree: 220/256 Degree: 221/256 Degree: 222/256 Degree: 223/256 Degree: 224/256 Degree: 225/256 Degree: 226/256 Degree: 227/256 Degree: 228/256 Degree: 229/256 Degree: 230/256 Degree: 231/256 Degree: 232/256 Degree: 233/256 Degree: 234/256 Degree: 235/256 Degree: 236/256 Degree: 237/256 Degree: 238/256 Degree: 239/256 Degree: 240/256 Degree: 241/256 Degree: 242/256 Degree: 243/256 Degree: 244/256 Degree: 245/256 Degree: 246/256 Degree: 247/256 Degree: 248/256 Degree: 249/256 Degree: 250/256 Degree: 251/256 Degree: 252/256 Degree: 253/256 Degree: 254/256 Degree: 255/256 Degree: 256/256
tidal
Inverse Laplace Transform... done!
Transforming PMTF and tidal love numbers... done!
Assembling parralel vectors...done
saving results
write lock file:
FemModel initialization elapsed time: 0.120625
Total Core solution elapsed time: 46.34
Linear solver elapsed time: 0 (0%)
Total elapsed time: 0 hrs 0 min 46 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 0 < 2e-05 test id: 2072 test name: ElasticLoveNumbers_HighlyLayeredEarth field: LoveH_loading_elastic
SUCCESS difference: 0 < 2e-05 test id: 2072 test name: ElasticLoveNumbers_HighlyLayeredEarth field: LoveK_loading_elastic
SUCCESS difference: 0 < 2e-05 test id: 2072 test name: ElasticLoveNumbers_HighlyLayeredEarth field: LoveL_loading_elastic
+++ exit code: 0
+++ error: 0
+++ Running case: MATLAB-2072
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
Temporal love numbers: Overriding md.love.nfreq and md.love.frequencies
checking model consistency
marshalling file test2072.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
starting model processor
creating datasets for analysis LoveAnalysis
updating elements and materials for control parameters
updating elements and materials for uncertainty quantification
creating output definitions
done with model processor
Processing finite element model of analysis LoveAnalysis:
toolkits Options set for analysis: LoveAnalysis
configuring element and loads
Configuring elements...
Configuring loads...
Configuring materials...
Configuring inputs...
detecting active vertices
resolving node constraints
creating nodal degrees of freedom
call computational core:
computing LOVE numbers
Surface gravity: 9.74033 m.s^-2
Mean density: 5469.45 kg.m^-3
elastic
Degree: 9, surface/Depth Love number ratio small: 1.80361e-21
Changing the interface where integration starts
New start interface: r=1.2225e+06m
Degree: 28, surface/Depth Love number ratio small: 6.92452e-21
Changing the interface where integration starts
New start interface: r=3.48e+06m
Degree: 83, surface/Depth Love number ratio small: 6.9234e-21
Changing the interface where integration starts
New start interface: r=3.6e+06m
Degree: 84, surface/Depth Love number ratio small: 7.13879e-21
Changing the interface where integration starts
New start interface: r=3.6305e+06m
Degree: 85, surface/Depth Love number ratio small: 8.17255e-21
Changing the interface where integration starts
New start interface: r=3.7e+06m
Degree: 88, surface/Depth Love number ratio small: 7.80507e-21
Changing the interface where integration starts
New start interface: r=3.9e+06m
Degree: 97, surface/Depth Love number ratio small: 9.44141e-21
Changing the interface where integration starts
New start interface: r=4e+06m
Degree: 103, surface/Depth Love number ratio small: 6.33018e-21
Changing the interface where integration starts
New start interface: r=4.2e+06m
Degree: 114, surface/Depth Love number ratio small: 9.35921e-21
Changing the interface where integration starts
New start interface: r=4.3e+06m
Degree: 121, surface/Depth Love number ratio small: 7.79262e-21
Changing the interface where integration starts
New start interface: r=4.5e+06m
Degree: 136, surface/Depth Love number ratio small: 9.26762e-21
Changing the interface where integration starts
New start interface: r=4.6e+06m
Degree: 145, surface/Depth Love number ratio small: 7.662e-21
Changing the interface where integration starts
New start interface: r=4.8e+06m
Degree: 165, surface/Depth Love number ratio small: 9.94772e-21
Changing the interface where integration starts
New start interface: r=4.9e+06m
Degree: 176, surface/Depth Love number ratio small: 7.90145e-21
Changing the interface where integration starts
New start interface: r=5.1e+06m
Degree: 204, surface/Depth Love number ratio small: 8.42663e-21
Changing the interface where integration starts
New start interface: r=5.2e+06m
Degree: 210, surface/Depth Love number ratio small: 5.33863e-22
Changing the interface where integration starts
New start interface: r=5.4e+06m
loading
Degree: 1/256 Degree: 2/256 Degree: 3/256 Degree: 4/256 Degree: 5/256 Degree: 6/256 Degree: 7/256 Degree: 8/256 Degree: 9/256 Degree: 10/256 Degree: 11/256 Degree: 12/256 Degree: 13/256 Degree: 14/256 Degree: 15/256 Degree: 16/256 Degree: 17/256 Degree: 18/256 Degree: 19/256 Degree: 20/256 Degree: 21/256 Degree: 22/256 Degree: 23/256 Degree: 24/256 Degree: 25/256 Degree: 26/256 Degree: 27/256 Degree: 28/256 Degree: 29/256 Degree: 30/256 Degree: 31/256 Degree: 32/256 Degree: 33/256 Degree: 34/256 Degree: 35/256 Degree: 36/256 Degree: 37/256 Degree: 38/256 Degree: 39/256 Degree: 40/256 Degree: 41/256 Degree: 42/256 Degree: 43/256 Degree: 44/256 Degree: 45/256 Degree: 46/256 Degree: 47/256 Degree: 48/256 Degree: 49/256 Degree: 50/256 Degree: 51/256 Degree: 52/256 Degree: 53/256 Degree: 54/256 Degree: 55/256 Degree: 56/256 Degree: 57/256 Degree: 58/256 Degree: 59/256 Degree: 60/256 Degree: 61/256 Degree: 62/256 Degree: 63/256 Degree: 64/256 Degree: 65/256 Degree: 66/256 Degree: 67/256 Degree: 68/256 Degree: 69/256 Degree: 70/256 Degree: 71/256 Degree: 72/256 Degree: 73/256 Degree: 74/256 Degree: 75/256 Degree: 76/256 Degree: 77/256 Degree: 78/256 Degree: 79/256 Degree: 80/256 Degree: 81/256 Degree: 82/256 Degree: 83/256 Degree: 84/256 Degree: 85/256 Degree: 86/256 Degree: 87/256 Degree: 88/256 Degree: 89/256 Degree: 90/256 Degree: 91/256 Degree: 92/256 Degree: 93/256 Degree: 94/256 Degree: 95/256 Degree: 96/256 Degree: 97/256 Degree: 98/256 Degree: 99/256 Degree: 100/256 Degree: 101/256 Degree: 102/256 Degree: 103/256 Degree: 104/256 Degree: 105/256 Degree: 106/256 Degree: 107/256 Degree: 108/256 Degree: 109/256 Degree: 110/256 Degree: 111/256 Degree: 112/256 Degree: 113/256 Degree: 114/256 Degree: 115/256 Degree: 116/256 Degree: 117/256 Degree: 118/256 Degree: 119/256 Degree: 120/256 Degree: 121/256 Degree: 122/256 Degree: 123/256 Degree: 124/256 Degree: 125/256 Degree: 126/256 Degree: 127/256 Degree: 128/256 Degree: 129/256 Degree: 130/256 Degree: 131/256 Degree: 132/256 Degree: 133/256 Degree: 134/256 Degree: 135/256 Degree: 136/256 Degree: 137/256 Degree: 138/256 Degree: 139/256 Degree: 140/256 Degree: 141/256 Degree: 142/256 Degree: 143/256 Degree: 144/256 Degree: 145/256 Degree: 146/256 Degree: 147/256 Degree: 148/256 Degree: 149/256 Degree: 150/256 Degree: 151/256 Degree: 152/256 Degree: 153/256 Degree: 154/256 Degree: 155/256 Degree: 156/256 Degree: 157/256 Degree: 158/256 Degree: 159/256 Degree: 160/256 Degree: 161/256 Degree: 162/256 Degree: 163/256 Degree: 164/256 Degree: 165/256 Degree: 166/256 Degree: 167/256 Degree: 168/256 Degree: 169/256 Degree: 170/256 Degree: 171/256 Degree: 172/256 Degree: 173/256 Degree: 174/256 Degree: 175/256 Degree: 176/256 Degree: 177/256 Degree: 178/256 Degree: 179/256 Degree: 180/256 Degree: 181/256 Degree: 182/256 Degree: 183/256 Degree: 184/256 Degree: 185/256 Degree: 186/256 Degree: 187/256 Degree: 188/256 Degree: 189/256 Degree: 190/256 Degree: 191/256 Degree: 192/256 Degree: 193/256 Degree: 194/256 Degree: 195/256 Degree: 196/256 Degree: 197/256 Degree: 198/256 Degree: 199/256 Degree: 200/256 Degree: 201/256 Degree: 202/256 Degree: 203/256 Degree: 204/256 Degree: 205/256 Degree: 206/256 Degree: 207/256 Degree: 208/256 Degree: 209/256 Degree: 210/256 Degree: 211/256 Degree: 212/256 Degree: 213/256 Degree: 214/256 Degree: 215/256 Degree: 216/256 Degree: 217/256 Degree: 218/256 Degree: 219/256 Degree: 220/256 Degree: 221/256 Degree: 222/256 Degree: 223/256 Degree: 224/256 Degree: 225/256 Degree: 226/256 Degree: 227/256 Degree: 228/256 Degree: 229/256 Degree: 230/256 Degree: 231/256 Degree: 232/256 Degree: 233/256 Degree: 234/256 Degree: 235/256 Degree: 236/256 Degree: 237/256 Degree: 238/256 Degree: 239/256 Degree: 240/256 Degree: 241/256 Degree: 242/256 Degree: 243/256 Degree: 244/256 Degree: 245/256 Degree: 246/256 Degree: 247/256 Degree: 248/256 Degree: 249/256 Degree: 250/256 Degree: 251/256 Degree: 252/256 Degree: 253/256 Degree: 254/256 Degree: 255/256 Degree: 256/256
tidal
Inverse Laplace Transform... done!
Transforming PMTF and tidal love numbers... done!
Assembling parralel vectors...done
saving results
write lock file:
FemModel initialization elapsed time: 0.120625
Total Core solution elapsed time: 46.34
Linear solver elapsed time: 0 (0%)
Total elapsed time: 0 hrs 0 min 46 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 0 < 2e-05 test id: 2072 test name: ElasticLoveNumbers_HighlyLayeredEarth field: LoveH_loading_elastic
SUCCESS difference: 0 < 2e-05 test id: 2072 test name: ElasticLoveNumbers_HighlyLayeredEarth field: LoveK_loading_elastic
SUCCESS difference: 0 < 2e-05 test id: 2072 test name: ElasticLoveNumbers_HighlyLayeredEarth field: LoveL_loading_elastic
+++ exit code: 0
+++ error: 0
+++ Running case: MATLAB-2073
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
checking model consistency
marshalling file test2073.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
starting model processor
creating datasets for analysis LoveAnalysis
updating elements and materials for control parameters
updating elements and materials for uncertainty quantification
creating output definitions
done with model processor
Processing finite element model of analysis LoveAnalysis:
toolkits Options set for analysis: LoveAnalysis
configuring element and loads
Configuring elements...
Configuring loads...
Configuring materials...
Configuring inputs...
detecting active vertices
resolving node constraints
creating nodal degrees of freedom
call computational core:
computing LOVE numbers
Surface gravity: 9.81555 m.s^-2
Mean density: 5511.68 kg.m^-3
elastic
tidal
write lock file:
FemModel initialization elapsed time: 0.05324
Total Core solution elapsed time: 0.000278
Linear solver elapsed time: 0 (0%)
Total elapsed time: 0 hrs 0 min 0 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 0 < 1e-13 test id: 2073 test name: YiSystemDebug field: LoveYi_loading_elastic
SUCCESS difference: 0 < 1e-13 test id: 2073 test name: YiSystemDebug field: LoveRhs_loading_elastic
+++ exit code: 0
+++ error: 0
+++ Running case: MATLAB-2073
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
checking model consistency
marshalling file test2073.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
starting model processor
creating datasets for analysis LoveAnalysis
updating elements and materials for control parameters
updating elements and materials for uncertainty quantification
creating output definitions
done with model processor
Processing finite element model of analysis LoveAnalysis:
toolkits Options set for analysis: LoveAnalysis
configuring element and loads
Configuring elements...
Configuring loads...
Configuring materials...
Configuring inputs...
detecting active vertices
resolving node constraints
creating nodal degrees of freedom
call computational core:
computing LOVE numbers
Surface gravity: 9.81555 m.s^-2
Mean density: 5511.68 kg.m^-3
elastic
tidal
write lock file:
FemModel initialization elapsed time: 0.05324
Total Core solution elapsed time: 0.000278
Linear solver elapsed time: 0 (0%)
Total elapsed time: 0 hrs 0 min 0 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 0 < 1e-13 test id: 2073 test name: YiSystemDebug field: LoveYi_loading_elastic
SUCCESS difference: 0 < 1e-13 test id: 2073 test name: YiSystemDebug field: LoveRhs_loading_elastic
+++ exit code: 0
+++ error: 0
+++ Running case: MATLAB-2084
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
Temporal love numbers: Overriding md.love.nfreq and md.love.frequencies
checking model consistency
marshalling file FourierLoveTest.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
starting model processor
creating datasets for analysis LoveAnalysis
updating elements and materials for control parameters
updating elements and materials for uncertainty quantification
creating output definitions
done with model processor
Processing finite element model of analysis LoveAnalysis:
toolkits Options set for analysis: LoveAnalysis
configuring element and loads
Configuring elements...
Configuring loads...
Configuring materials...
Configuring inputs...
detecting active vertices
resolving node constraints
creating nodal degrees of freedom
call computational core:
computing LOVE numbers
Surface gravity: 9.81555 m.s^-2
Mean density: 5511.68 kg.m^-3
elastic
Degree: 9, surface/Depth Love number ratio small: 2.00545e-21
Changing the interface where integration starts
New start interface: r=1.2225e+06m
Degree: 28, surface/Depth Love number ratio small: 5.72696e-21
Changing the interface where integration starts
New start interface: r=3.48e+06m
Degree: 84, surface/Depth Love number ratio small: 8.89724e-21
Changing the interface where integration starts
New start interface: r=5.701e+06m
Degree: 476, surface/Depth Love number ratio small: 9.52498e-21
Changing the interface where integration starts
New start interface: r=5.951e+06m
Degree: 841, surface/Depth Love number ratio small: 9.15677e-21
Changing the interface where integration starts
New start interface: r=6.301e+06m
Degree: 894/1000 found negligible variation across frequencies, will copy elastic values after this degree
Delta_h/h=1.89743e-06; Delta_k/k=1.9045e-06; Delta_l/l=0.000998958; threshold set to 0.001
loading
Degree: 1/1000 Degree: 2/1000 Degree: 3/1000 Degree: 4/1000 Degree: 5/1000 Degree: 6/1000 Degree: 7/1000 Degree: 8/1000 Degree: 9/1000 Degree: 10/1000 Degree: 11/1000 Degree: 12/1000 Degree: 13/1000 Degree: 14/1000 Degree: 15/1000 Degree: 16/1000 Degree: 17/1000 Degree: 18/1000 Degree: 19/1000 Degree: 20/1000 Degree: 21/1000 Degree: 22/1000 Degree: 23/1000 Degree: 24/1000 Degree: 25/1000 Degree: 26/1000 Degree: 27/1000 Degree: 28/1000 Degree: 29/1000 Degree: 30/1000 Degree: 31/1000 Degree: 32/1000 Degree: 33/1000 Degree: 34/1000 Degree: 35/1000 Degree: 36/1000 Degree: 37/1000 Degree: 38/1000 Degree: 39/1000 Degree: 40/1000 Degree: 41/1000 Degree: 42/1000 Degree: 43/1000 Degree: 44/1000 Degree: 45/1000 Degree: 46/1000 Degree: 47/1000 Degree: 48/1000 Degree: 49/1000 Degree: 50/1000 Degree: 51/1000 Degree: 52/1000 Degree: 53/1000 Degree: 54/1000 Degree: 55/1000 Degree: 56/1000 Degree: 57/1000 Degree: 58/1000 Degree: 59/1000 Degree: 60/1000 Degree: 61/1000 Degree: 62/1000 Degree: 63/1000 Degree: 64/1000 Degree: 65/1000 Degree: 66/1000 Degree: 67/1000 Degree: 68/1000 Degree: 69/1000 Degree: 70/1000 Degree: 71/1000 Degree: 72/1000 Degree: 73/1000 Degree: 74/1000 Degree: 75/1000 Degree: 76/1000 Degree: 77/1000 Degree: 78/1000 Degree: 79/1000 Degree: 80/1000 Degree: 81/1000 Degree: 82/1000 Degree: 83/1000 Degree: 84/1000 Degree: 85/1000 Degree: 86/1000 Degree: 87/1000 Degree: 88/1000 Degree: 89/1000 Degree: 90/1000 Degree: 91/1000 Degree: 92/1000 Degree: 93/1000 Degree: 94/1000 Degree: 95/1000 Degree: 96/1000 Degree: 97/1000 Degree: 98/1000 Degree: 99/1000 Degree: 100/1000 Degree: 101/1000 Degree: 102/1000 Degree: 103/1000 Degree: 104/1000 Degree: 105/1000 Degree: 106/1000 Degree: 107/1000 Degree: 108/1000 Degree: 109/1000 Degree: 110/1000 Degree: 111/1000 Degree: 112/1000 Degree: 113/1000 Degree: 114/1000 Degree: 115/1000 Degree: 116/1000 Degree: 117/1000 Degree: 118/1000 Degree: 119/1000 Degree: 120/1000 Degree: 121/1000 Degree: 122/1000 Degree: 123/1000 Degree: 124/1000 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tidal
Inverse Laplace Transform... done!
Transforming PMTF and tidal love numbers... done!
Assembling parralel vectors...done
saving results
write lock file:
FemModel initialization elapsed time: 0.17322
Total Core solution elapsed time: 14.2144
Linear solver elapsed time: 0 (0%)
Total elapsed time: 0 hrs 0 min 14 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 0 < 2e-08 test id: 2084 test name: GiaCaron field: LoveH_loading_elastic
SUCCESS difference: 0 < 2e-08 test id: 2084 test name: GiaCaron field: LoveK_loading_elastic
SUCCESS difference: 0 < 2e-08 test id: 2084 test name: GiaCaron field: LoveL_loading_elastic
+++ exit code: 0
+++ error: 0
+++ Running case: MATLAB-2084
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
Temporal love numbers: Overriding md.love.nfreq and md.love.frequencies
checking model consistency
marshalling file FourierLoveTest.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
starting model processor
creating datasets for analysis LoveAnalysis
updating elements and materials for control parameters
updating elements and materials for uncertainty quantification
creating output definitions
done with model processor
Processing finite element model of analysis LoveAnalysis:
toolkits Options set for analysis: LoveAnalysis
configuring element and loads
Configuring elements...
Configuring loads...
Configuring materials...
Configuring inputs...
detecting active vertices
resolving node constraints
creating nodal degrees of freedom
call computational core:
computing LOVE numbers
Surface gravity: 9.81555 m.s^-2
Mean density: 5511.68 kg.m^-3
elastic
Degree: 9, surface/Depth Love number ratio small: 2.00545e-21
Changing the interface where integration starts
New start interface: r=1.2225e+06m
Degree: 28, surface/Depth Love number ratio small: 5.72696e-21
Changing the interface where integration starts
New start interface: r=3.48e+06m
Degree: 84, surface/Depth Love number ratio small: 8.89724e-21
Changing the interface where integration starts
New start interface: r=5.701e+06m
Degree: 476, surface/Depth Love number ratio small: 9.52498e-21
Changing the interface where integration starts
New start interface: r=5.951e+06m
Degree: 841, surface/Depth Love number ratio small: 9.15677e-21
Changing the interface where integration starts
New start interface: r=6.301e+06m
Degree: 894/1000 found negligible variation across frequencies, will copy elastic values after this degree
Delta_h/h=1.89743e-06; Delta_k/k=1.9045e-06; Delta_l/l=0.000998958; threshold set to 0.001
loading
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885/1000 Degree: 886/1000 Degree: 887/1000 Degree: 888/1000 Degree: 889/1000 Degree: 890/1000 Degree: 891/1000 Degree: 892/1000 Degree: 893/1000 Degree: 894/1000 Degree: 900/1000 Degree: 1000/1000
tidal
Inverse Laplace Transform... done!
Transforming PMTF and tidal love numbers... done!
Assembling parralel vectors...done
saving results
write lock file:
FemModel initialization elapsed time: 0.17322
Total Core solution elapsed time: 14.2144
Linear solver elapsed time: 0 (0%)
Total elapsed time: 0 hrs 0 min 14 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 0 < 2e-08 test id: 2084 test name: GiaCaron field: LoveH_loading_elastic
SUCCESS difference: 0 < 2e-08 test id: 2084 test name: GiaCaron field: LoveK_loading_elastic
SUCCESS difference: 0 < 2e-08 test id: 2084 test name: GiaCaron field: LoveL_loading_elastic
+++ exit code: 0
+++ error: 0
+++ Running case: MATLAB-2090
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
gmtmask: num vertices 1286
gmtmask: done
checking model consistency
marshalling file test2090.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
call computational core:
computing initial sea level geometrical kernels and weights.
iteration 1/10 time [yr]: 100.00 (time step: 100.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 2/10 time [yr]: 200.00 (time step: 100.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 3/10 time [yr]: 300.00 (time step: 100.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 4/10 time [yr]: 400.00 (time step: 100.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 5/10 time [yr]: 500.00 (time step: 100.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 6/10 time [yr]: 600.00 (time step: 100.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 7/10 time [yr]: 700.00 (time step: 100.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 8/10 time [yr]: 800.00 (time step: 100.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 9/10 time [yr]: 900.00 (time step: 100.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 10/10 time [yr]: 1000.00 (time step: 100.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
write lock file:
FemModel initialization elapsed time: 6.69717
Total Core solution elapsed time: 25.172
Linear solver elapsed time: 0.025938 (0.1%)
Total elapsed time: 0 hrs 0 min 31 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
2024-07-12 13:10:06.832 MATLAB[11294:126476533] XType: com.apple.fonts is not accessible.
2024-07-12 13:10:06.832 MATLAB[11294:126476533] XType: XTFontStaticRegistry is enabled.
2024-07-12 13:10:07.399 MATLAB[11294:126476533] CoreText note: Client requested name ".SFNS-Regular", it will get Times-Roman rather than the intended font. All system UI font access should be through proper APIs such as CTFontCreateUIFontForLanguage() or +[NSFont systemFontOfSize:].
2024-07-12 13:10:07.399 MATLAB[11294:126476533] CoreText note: Set a breakpoint on CTFontLogSystemFontNameRequest to debug.
2024-07-12 13:10:07.401 MATLAB[11294:126476533] CoreText note: Client requested name ".SFNS-Bold", it will get Times-Roman rather than the intended font. All system UI font access should be through proper APIs such as CTFontCreateUIFontForLanguage() or +[NSFont systemFontOfSize:].
2024-07-12 13:10:07.409 MATLAB[11294:126476533] CoreText note: Client requested name ".SFNS-Regular", it will get Times-Roman rather than the intended font. All system UI font access should be through proper APIs such as CTFontCreateUIFontForLanguage() or +[NSFont systemFontOfSize:].
2024-07-12 13:10:07.409 MATLAB[11294:126476533] CoreText note: Client requested name ".SFNS-Bold", it will get Times-Roman rather than the intended font. All system UI font access should be through proper APIs such as CTFontCreateUIFontForLanguage() or +[NSFont systemFontOfSize:].
SUCCESS difference: 1.2e-15 < 1e-13 test id: 2090 test name: ViscoElasticEarthSlc field: Sealevel
SUCCESS difference: 3e-16 < 1e-13 test id: 2090 test name: ViscoElasticEarthSlc field: Bed
+++ exit code: 0
+++ error: 0
+++ Running case: MATLAB-2090
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
gmtmask: num vertices 1286
gmtmask: done
checking model consistency
marshalling file test2090.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
call computational core:
computing initial sea level geometrical kernels and weights.
iteration 1/10 time [yr]: 100.00 (time step: 100.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 2/10 time [yr]: 200.00 (time step: 100.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 3/10 time [yr]: 300.00 (time step: 100.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 4/10 time [yr]: 400.00 (time step: 100.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 5/10 time [yr]: 500.00 (time step: 100.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 6/10 time [yr]: 600.00 (time step: 100.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 7/10 time [yr]: 700.00 (time step: 100.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 8/10 time [yr]: 800.00 (time step: 100.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 9/10 time [yr]: 900.00 (time step: 100.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 10/10 time [yr]: 1000.00 (time step: 100.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
write lock file:
FemModel initialization elapsed time: 6.69717
Total Core solution elapsed time: 25.172
Linear solver elapsed time: 0.025938 (0.1%)
Total elapsed time: 0 hrs 0 min 31 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
2024-07-12 13:10:06.832 MATLAB[11294:126476533] XType: com.apple.fonts is not accessible.
2024-07-12 13:10:06.832 MATLAB[11294:126476533] XType: XTFontStaticRegistry is enabled.
2024-07-12 13:10:07.399 MATLAB[11294:126476533] CoreText note: Client requested name ".SFNS-Regular", it will get Times-Roman rather than the intended font. All system UI font access should be through proper APIs such as CTFontCreateUIFontForLanguage() or +[NSFont systemFontOfSize:].
2024-07-12 13:10:07.399 MATLAB[11294:126476533] CoreText note: Set a breakpoint on CTFontLogSystemFontNameRequest to debug.
2024-07-12 13:10:07.401 MATLAB[11294:126476533] CoreText note: Client requested name ".SFNS-Bold", it will get Times-Roman rather than the intended font. All system UI font access should be through proper APIs such as CTFontCreateUIFontForLanguage() or +[NSFont systemFontOfSize:].
2024-07-12 13:10:07.409 MATLAB[11294:126476533] CoreText note: Client requested name ".SFNS-Regular", it will get Times-Roman rather than the intended font. All system UI font access should be through proper APIs such as CTFontCreateUIFontForLanguage() or +[NSFont systemFontOfSize:].
2024-07-12 13:10:07.409 MATLAB[11294:126476533] CoreText note: Client requested name ".SFNS-Bold", it will get Times-Roman rather than the intended font. All system UI font access should be through proper APIs such as CTFontCreateUIFontForLanguage() or +[NSFont systemFontOfSize:].
SUCCESS difference: 1.2e-15 < 1e-13 test id: 2090 test name: ViscoElasticEarthSlc field: Sealevel
SUCCESS difference: 3e-16 < 1e-13 test id: 2090 test name: ViscoElasticEarthSlc field: Bed
+++ exit code: 0
+++ error: 0
+++ Running case: MATLAB-2091
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
Construction of a mesh from a given geometry
checking model consistency
marshalling file test2091.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
call computational core:
computing initial sea level geometrical kernels and weights.
iteration 1/12 time [yr]: 1000.00 (time step: 1000.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 2/12 time [yr]: 2000.00 (time step: 1000.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 3/12 time [yr]: 3000.00 (time step: 1000.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 4/12 time [yr]: 4000.00 (time step: 1000.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 5/12 time [yr]: 5000.00 (time step: 1000.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 6/12 time [yr]: 6000.00 (time step: 1000.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 7/12 time [yr]: 7000.00 (time step: 1000.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 8/12 time [yr]: 8000.00 (time step: 1000.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 9/12 time [yr]: 9000.00 (time step: 1000.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 10/12 time [yr]: 10000.00 (time step: 1000.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 11/12 time [yr]: 11000.00 (time step: 1000.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 12/12 time [yr]: 12000.00 (time step: 1000.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
write lock file:
FemModel initialization elapsed time: 6.80255
Total Core solution elapsed time: 1.9062
Linear solver elapsed time: 0.013554 (0.71%)
Total elapsed time: 0 hrs 0 min 8 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 6.8e-15 < 1e-13 test id: 2091 test name: ViscoElasticEarthSlc field: Sealevel
SUCCESS difference: 7.4e-16 < 1e-13 test id: 2091 test name: ViscoElasticEarthSlc field: Bed
SUCCESS difference: 9.5e-16 < 1e-13 test id: 2091 test name: ViscoElasticEarthSlc field: Horizontals
+++ exit code: 0
+++ error: 0
+++ Running case: MATLAB-2091
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
Construction of a mesh from a given geometry
checking model consistency
marshalling file test2091.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
call computational core:
computing initial sea level geometrical kernels and weights.
iteration 1/12 time [yr]: 1000.00 (time step: 1000.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 2/12 time [yr]: 2000.00 (time step: 1000.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 3/12 time [yr]: 3000.00 (time step: 1000.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 4/12 time [yr]: 4000.00 (time step: 1000.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 5/12 time [yr]: 5000.00 (time step: 1000.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 6/12 time [yr]: 6000.00 (time step: 1000.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 7/12 time [yr]: 7000.00 (time step: 1000.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 8/12 time [yr]: 8000.00 (time step: 1000.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 9/12 time [yr]: 9000.00 (time step: 1000.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 10/12 time [yr]: 10000.00 (time step: 1000.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 11/12 time [yr]: 11000.00 (time step: 1000.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 12/12 time [yr]: 12000.00 (time step: 1000.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
write lock file:
FemModel initialization elapsed time: 6.80255
Total Core solution elapsed time: 1.9062
Linear solver elapsed time: 0.013554 (0.71%)
Total elapsed time: 0 hrs 0 min 8 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 6.8e-15 < 1e-13 test id: 2091 test name: ViscoElasticEarthSlc field: Sealevel
SUCCESS difference: 7.4e-16 < 1e-13 test id: 2091 test name: ViscoElasticEarthSlc field: Bed
SUCCESS difference: 9.5e-16 < 1e-13 test id: 2091 test name: ViscoElasticEarthSlc field: Horizontals
+++ exit code: 0
+++ error: 0
+++ Running case: MATLAB-2092
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
Construction of a mesh from a given geometry
checking model consistency
marshalling file test2092.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
call computational core:
computing initial sea level geometrical kernels and weights.
iteration 1/11 time [yr]: 1000.00 (time step: 1000.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 2/11 time [yr]: 2000.00 (time step: 1000.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 3/11 time [yr]: 3000.00 (time step: 1000.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 4/11 time [yr]: 4000.00 (time step: 1000.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 5/11 time [yr]: 5000.00 (time step: 1000.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 6/11 time [yr]: 6000.00 (time step: 1000.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 7/11 time [yr]: 7000.00 (time step: 1000.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 8/11 time [yr]: 8000.00 (time step: 1000.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 9/11 time [yr]: 9000.00 (time step: 1000.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 10/11 time [yr]: 10000.00 (time step: 1000.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 11/11 time [yr]: 11000.00 (time step: 1000.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
write lock file:
FemModel initialization elapsed time: 0.348401
Total Core solution elapsed time: 1.12274
Linear solver elapsed time: 0.011521 (1%)
Total elapsed time: 0 hrs 0 min 1 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 4.9e-16 < 4e-05 test id: 2092 test name: PolarMotion field: PolarmotionX
SUCCESS difference: 7.9e-16 < 2e-05 test id: 2092 test name: PolarMotion field: PolarmotionY
SUCCESS difference: 1.7e-16 < 3e-05 test id: 2092 test name: PolarMotion field: PolarmotionZ
+++ exit code: 0
+++ error: 0
+++ Running case: MATLAB-2092
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
Construction of a mesh from a given geometry
checking model consistency
marshalling file test2092.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
call computational core:
computing initial sea level geometrical kernels and weights.
iteration 1/11 time [yr]: 1000.00 (time step: 1000.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 2/11 time [yr]: 2000.00 (time step: 1000.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 3/11 time [yr]: 3000.00 (time step: 1000.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 4/11 time [yr]: 4000.00 (time step: 1000.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 5/11 time [yr]: 5000.00 (time step: 1000.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 6/11 time [yr]: 6000.00 (time step: 1000.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 7/11 time [yr]: 7000.00 (time step: 1000.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 8/11 time [yr]: 8000.00 (time step: 1000.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 9/11 time [yr]: 9000.00 (time step: 1000.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 10/11 time [yr]: 10000.00 (time step: 1000.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 11/11 time [yr]: 11000.00 (time step: 1000.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
write lock file:
FemModel initialization elapsed time: 0.348401
Total Core solution elapsed time: 1.12274
Linear solver elapsed time: 0.011521 (1%)
Total elapsed time: 0 hrs 0 min 1 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 4.9e-16 < 4e-05 test id: 2092 test name: PolarMotion field: PolarmotionX
SUCCESS difference: 7.9e-16 < 2e-05 test id: 2092 test name: PolarMotion field: PolarmotionY
SUCCESS difference: 1.7e-16 < 3e-05 test id: 2092 test name: PolarMotion field: PolarmotionZ
+++ exit code: 0
+++ error: 0
+++ Running case: MATLAB-2101
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
gmtmask: num vertices 1286
gmtmask: done
checking model consistency
marshalling file test2101.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
starting model processor
creating datasets for analysis EsaAnalysis
updating elements and materials for control parameters
updating elements and materials for uncertainty quantification
creating output definitions
done with model processor
Processing finite element model of analysis EsaAnalysis:
toolkits Options set for analysis: EsaAnalysis
configuring element and loads
Configuring elements...
Configuring loads...
Configuring materials...
Configuring inputs...
detecting active vertices
resolving node constraints
creating nodal degrees of freedom
Renumbering degrees of freedom
call computational core:
computing elastic adjustment
toolkits Options set for analysis: EsaAnalysis
computing elastic geodetic core
write lock file:
FemModel initialization elapsed time: 1.1892
Total Core solution elapsed time: 0.019831
Linear solver elapsed time: 0 (0%)
Total elapsed time: 0 hrs 0 min 1 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 2.3e-15 < 1e-13 test id: 2101 test name: EarthEsa field: EsaUmotion
SUCCESS difference: 2.5e-14 < 1e-13 test id: 2101 test name: EarthEsa field: EsaNmotion
SUCCESS difference: 4.5e-14 < 2e-13 test id: 2101 test name: EarthEsa field: EsaEmotion
+++ exit code: 0
+++ error: 0
+++ Running case: MATLAB-2101
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
gmtmask: num vertices 1286
gmtmask: done
checking model consistency
marshalling file test2101.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
starting model processor
creating datasets for analysis EsaAnalysis
updating elements and materials for control parameters
updating elements and materials for uncertainty quantification
creating output definitions
done with model processor
Processing finite element model of analysis EsaAnalysis:
toolkits Options set for analysis: EsaAnalysis
configuring element and loads
Configuring elements...
Configuring loads...
Configuring materials...
Configuring inputs...
detecting active vertices
resolving node constraints
creating nodal degrees of freedom
Renumbering degrees of freedom
call computational core:
computing elastic adjustment
toolkits Options set for analysis: EsaAnalysis
computing elastic geodetic core
write lock file:
FemModel initialization elapsed time: 1.1892
Total Core solution elapsed time: 0.019831
Linear solver elapsed time: 0 (0%)
Total elapsed time: 0 hrs 0 min 1 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 2.3e-15 < 1e-13 test id: 2101 test name: EarthEsa field: EsaUmotion
SUCCESS difference: 2.5e-14 < 1e-13 test id: 2101 test name: EarthEsa field: EsaNmotion
SUCCESS difference: 4.5e-14 < 2e-13 test id: 2101 test name: EarthEsa field: EsaEmotion
+++ exit code: 0
+++ error: 0
+++ Running case: MATLAB-2110
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
checking model consistency
marshalling file test2110.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
starting model processor
creating datasets for analysis EsaAnalysis
updating elements and materials for control parameters
updating elements and materials for uncertainty quantification
creating output definitions
done with model processor
Processing finite element model of analysis EsaAnalysis:
toolkits Options set for analysis: EsaAnalysis
configuring element and loads
Configuring elements...
Configuring loads...
Configuring materials...
Configuring inputs...
detecting active vertices
resolving node constraints
creating nodal degrees of freedom
Renumbering degrees of freedom
call computational core:
computing elastic adjustment
toolkits Options set for analysis: EsaAnalysis
computing elastic geodetic core
write lock file:
FemModel initialization elapsed time: 1.43661
Total Core solution elapsed time: 0.428943
Linear solver elapsed time: 0 (0%)
Total elapsed time: 0 hrs 0 min 1 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 1.6e-15 < 1e-13 test id: 2110 test name: Esa2Dsurface field: EsaUmotion
SUCCESS difference: 1.8e-15 < 2e-12 test id: 2110 test name: Esa2Dsurface field: EsaXmotion
SUCCESS difference: 1.4e-15 < 2e-12 test id: 2110 test name: Esa2Dsurface field: EsaYmotion
SUCCESS difference: 5.3e-15 < 9e-12 test id: 2110 test name: Esa2Dsurface field: EsaStrainratexx
SUCCESS difference: 4.5e-15 < 8e-12 test id: 2110 test name: Esa2Dsurface field: EsaStrainratexy
SUCCESS difference: 5.2e-15 < 8e-12 test id: 2110 test name: Esa2Dsurface field: EsaStrainrateyy
SUCCESS difference: 3.2e-14 < 3e-11 test id: 2110 test name: Esa2Dsurface field: EsaRotationrate
+++ exit code: 0
+++ error: 0
+++ Running case: MATLAB-2110
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
checking model consistency
marshalling file test2110.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
starting model processor
creating datasets for analysis EsaAnalysis
updating elements and materials for control parameters
updating elements and materials for uncertainty quantification
creating output definitions
done with model processor
Processing finite element model of analysis EsaAnalysis:
toolkits Options set for analysis: EsaAnalysis
configuring element and loads
Configuring elements...
Configuring loads...
Configuring materials...
Configuring inputs...
detecting active vertices
resolving node constraints
creating nodal degrees of freedom
Renumbering degrees of freedom
call computational core:
computing elastic adjustment
toolkits Options set for analysis: EsaAnalysis
computing elastic geodetic core
write lock file:
FemModel initialization elapsed time: 1.43661
Total Core solution elapsed time: 0.428943
Linear solver elapsed time: 0 (0%)
Total elapsed time: 0 hrs 0 min 1 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 1.6e-15 < 1e-13 test id: 2110 test name: Esa2Dsurface field: EsaUmotion
SUCCESS difference: 1.8e-15 < 2e-12 test id: 2110 test name: Esa2Dsurface field: EsaXmotion
SUCCESS difference: 1.4e-15 < 2e-12 test id: 2110 test name: Esa2Dsurface field: EsaYmotion
SUCCESS difference: 5.3e-15 < 9e-12 test id: 2110 test name: Esa2Dsurface field: EsaStrainratexx
SUCCESS difference: 4.5e-15 < 8e-12 test id: 2110 test name: Esa2Dsurface field: EsaStrainratexy
SUCCESS difference: 5.2e-15 < 8e-12 test id: 2110 test name: Esa2Dsurface field: EsaStrainrateyy
SUCCESS difference: 3.2e-14 < 3e-11 test id: 2110 test name: Esa2Dsurface field: EsaRotationrate
+++ exit code: 0
+++ error: 0
+++ Running case: MATLAB-2111
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
checking model consistency
marshalling file test2111.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
starting model processor
creating datasets for analysis EsaAnalysis
updating elements and materials for control parameters
updating elements and materials for uncertainty quantification
creating output definitions
done with model processor
Processing finite element model of analysis EsaAnalysis:
toolkits Options set for analysis: EsaAnalysis
configuring element and loads
Configuring elements...
Configuring loads...
Configuring materials...
Configuring inputs...
detecting active vertices
resolving node constraints
creating nodal degrees of freedom
Renumbering degrees of freedom
call computational core:
computing elastic adjustment
toolkits Options set for analysis: EsaAnalysis
computing elastic geodetic core
write lock file:
FemModel initialization elapsed time: 1.2068
Total Core solution elapsed time: 0.189818
Linear solver elapsed time: 0 (0%)
Total elapsed time: 0 hrs 0 min 1 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 2.3e-15 < 1e-13 test id: 2111 test name: Esa2Dsurface field: EsaUmotion
SUCCESS difference: 3.3e-14 < 3e-13 test id: 2111 test name: Esa2Dsurface field: EsaNmotion
SUCCESS difference: 3.7e-14 < 3e-13 test id: 2111 test name: Esa2Dsurface field: EsaEmotion
SUCCESS difference: 4.2e-14 < 2e-13 test id: 2111 test name: Esa2Dsurface field: EsaXmotion
SUCCESS difference: 2.6e-14 < 3e-13 test id: 2111 test name: Esa2Dsurface field: EsaYmotion
+++ exit code: 0
+++ error: 0
+++ Running case: MATLAB-2111
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
checking model consistency
marshalling file test2111.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
starting model processor
creating datasets for analysis EsaAnalysis
updating elements and materials for control parameters
updating elements and materials for uncertainty quantification
creating output definitions
done with model processor
Processing finite element model of analysis EsaAnalysis:
toolkits Options set for analysis: EsaAnalysis
configuring element and loads
Configuring elements...
Configuring loads...
Configuring materials...
Configuring inputs...
detecting active vertices
resolving node constraints
creating nodal degrees of freedom
Renumbering degrees of freedom
call computational core:
computing elastic adjustment
toolkits Options set for analysis: EsaAnalysis
computing elastic geodetic core
write lock file:
FemModel initialization elapsed time: 1.2068
Total Core solution elapsed time: 0.189818
Linear solver elapsed time: 0 (0%)
Total elapsed time: 0 hrs 0 min 1 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 2.3e-15 < 1e-13 test id: 2111 test name: Esa2Dsurface field: EsaUmotion
SUCCESS difference: 3.3e-14 < 3e-13 test id: 2111 test name: Esa2Dsurface field: EsaNmotion
SUCCESS difference: 3.7e-14 < 3e-13 test id: 2111 test name: Esa2Dsurface field: EsaEmotion
SUCCESS difference: 4.2e-14 < 2e-13 test id: 2111 test name: Esa2Dsurface field: EsaXmotion
SUCCESS difference: 2.6e-14 < 3e-13 test id: 2111 test name: Esa2Dsurface field: EsaYmotion
+++ exit code: 0
+++ error: 0
+++ Running case: MATLAB-2112
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
checking model consistency
marshalling file test2112.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
starting model processor
creating datasets for analysis EsaAnalysis
updating elements and materials for control parameters
updating elements and materials for uncertainty quantification
creating output definitions
done with model processor
Processing finite element model of analysis EsaAnalysis:
toolkits Options set for analysis: EsaAnalysis
configuring element and loads
Configuring elements...
Configuring loads...
Configuring materials...
Configuring inputs...
detecting active vertices
resolving node constraints
creating nodal degrees of freedom
Renumbering degrees of freedom
call computational core:
computing elastic adjustment
toolkits Options set for analysis: EsaAnalysis
computing elastic geodetic core
write lock file:
FemModel initialization elapsed time: 1.87874
Total Core solution elapsed time: 0.241178
Linear solver elapsed time: 0 (0%)
Total elapsed time: 0 hrs 0 min 2 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 1.3e-15 < 1e-13 test id: 2112 test name: Esa2Dsurface field: EsaUmotion
SUCCESS difference: 1.4e-14 < 4e-13 test id: 2112 test name: Esa2Dsurface field: EsaNmotion
SUCCESS difference: 9.7e-14 < 3e-12 test id: 2112 test name: Esa2Dsurface field: EsaEmotion
SUCCESS difference: 1.3e-14 < 3e-13 test id: 2112 test name: Esa2Dsurface field: EsaXmotion
SUCCESS difference: 1.2e-14 < 3e-13 test id: 2112 test name: Esa2Dsurface field: EsaYmotion
+++ exit code: 0
+++ error: 0
+++ Running case: MATLAB-2112
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
checking model consistency
marshalling file test2112.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
starting model processor
creating datasets for analysis EsaAnalysis
updating elements and materials for control parameters
updating elements and materials for uncertainty quantification
creating output definitions
done with model processor
Processing finite element model of analysis EsaAnalysis:
toolkits Options set for analysis: EsaAnalysis
configuring element and loads
Configuring elements...
Configuring loads...
Configuring materials...
Configuring inputs...
detecting active vertices
resolving node constraints
creating nodal degrees of freedom
Renumbering degrees of freedom
call computational core:
computing elastic adjustment
toolkits Options set for analysis: EsaAnalysis
computing elastic geodetic core
write lock file:
FemModel initialization elapsed time: 1.87874
Total Core solution elapsed time: 0.241178
Linear solver elapsed time: 0 (0%)
Total elapsed time: 0 hrs 0 min 2 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 1.3e-15 < 1e-13 test id: 2112 test name: Esa2Dsurface field: EsaUmotion
SUCCESS difference: 1.4e-14 < 4e-13 test id: 2112 test name: Esa2Dsurface field: EsaNmotion
SUCCESS difference: 9.7e-14 < 3e-12 test id: 2112 test name: Esa2Dsurface field: EsaEmotion
SUCCESS difference: 1.3e-14 < 3e-13 test id: 2112 test name: Esa2Dsurface field: EsaXmotion
SUCCESS difference: 1.2e-14 < 3e-13 test id: 2112 test name: Esa2Dsurface field: EsaYmotion
+++ exit code: 0
+++ error: 0
+++ Running case: MATLAB-2113
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
checking model consistency
marshalling file test2113.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
starting model processor
creating datasets for analysis EsaAnalysis
updating elements and materials for control parameters
updating elements and materials for uncertainty quantification
creating output definitions
done with model processor
Processing finite element model of analysis EsaAnalysis:
toolkits Options set for analysis: EsaAnalysis
configuring element and loads
Configuring elements...
Configuring loads...
Configuring materials...
Configuring inputs...
detecting active vertices
resolving node constraints
creating nodal degrees of freedom
Renumbering degrees of freedom
call computational core:
computing elastic adjustment
toolkits Options set for analysis: EsaAnalysis
computing elastic geodetic core
write lock file:
FemModel initialization elapsed time: 2.0702
Total Core solution elapsed time: 0.027937
Linear solver elapsed time: 0 (0%)
Total elapsed time: 0 hrs 0 min 2 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 2.1e-15 < 1e-13 test id: 2113 test name: Esa2Dsurface field: EsaUmotion
SUCCESS difference: 4e-14 < 2e-13 test id: 2113 test name: Esa2Dsurface field: EsaNmotion
SUCCESS difference: 2.9e-14 < 2e-13 test id: 2113 test name: Esa2Dsurface field: EsaEmotion
+++ exit code: 0
+++ error: 0
+++ Running case: MATLAB-2113
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
checking model consistency
marshalling file test2113.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
starting model processor
creating datasets for analysis EsaAnalysis
updating elements and materials for control parameters
updating elements and materials for uncertainty quantification
creating output definitions
done with model processor
Processing finite element model of analysis EsaAnalysis:
toolkits Options set for analysis: EsaAnalysis
configuring element and loads
Configuring elements...
Configuring loads...
Configuring materials...
Configuring inputs...
detecting active vertices
resolving node constraints
creating nodal degrees of freedom
Renumbering degrees of freedom
call computational core:
computing elastic adjustment
toolkits Options set for analysis: EsaAnalysis
computing elastic geodetic core
write lock file:
FemModel initialization elapsed time: 2.0702
Total Core solution elapsed time: 0.027937
Linear solver elapsed time: 0 (0%)
Total elapsed time: 0 hrs 0 min 2 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 2.1e-15 < 1e-13 test id: 2113 test name: Esa2Dsurface field: EsaUmotion
SUCCESS difference: 4e-14 < 2e-13 test id: 2113 test name: Esa2Dsurface field: EsaNmotion
SUCCESS difference: 2.9e-14 < 2e-13 test id: 2113 test name: Esa2Dsurface field: EsaEmotion
+++ exit code: 0
+++ error: 0
+++ Running case: PYTHON-2001
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
----------------running-----------------------
boundary conditions for stressbalance model: spc set as zero
no smb.mass_balance specified: values set as zero
no basalforcings.groundedice_melting_rate specified: values set as zero
no basalforcings.floatingice_melting_rate specified: values set as zero
no dsl.global_average_thermosteric_sea_level specified: transient values set to zero
no dsl.sea_surface_height_above_geoid specified: transient values set to zero
no dsl.sea_water_pressure_at_sea_floor specified: transient values set to zero
no balancethickness.thickening_rate specified: values set as zero
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
call computational core:
write lock file:
FemModel initialization elapsed time: 0.290403
Total Core solution elapsed time: 13.1948
Linear solver elapsed time: 0.001212 (0.0092%)
Total elapsed time: 0 hrs 0 min 13 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 1 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
SUCCESS difference: 0 < 1e-13 test id: 2001 test name: SquareSheetConstrainedGia2d field: UGrd
+++ exit code: 0
+++ error: 0
+++ Running case: PYTHON-2001
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
----------------running-----------------------
boundary conditions for stressbalance model: spc set as zero
no smb.mass_balance specified: values set as zero
no basalforcings.groundedice_melting_rate specified: values set as zero
no basalforcings.floatingice_melting_rate specified: values set as zero
no dsl.global_average_thermosteric_sea_level specified: transient values set to zero
no dsl.sea_surface_height_above_geoid specified: transient values set to zero
no dsl.sea_water_pressure_at_sea_floor specified: transient values set to zero
no balancethickness.thickening_rate specified: values set as zero
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
call computational core:
write lock file:
FemModel initialization elapsed time: 0.290403
Total Core solution elapsed time: 13.1948
Linear solver elapsed time: 0.001212 (0.0092%)
Total elapsed time: 0 hrs 0 min 13 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 1 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
SUCCESS difference: 0 < 1e-13 test id: 2001 test name: SquareSheetConstrainedGia2d field: UGrd
+++ exit code: 0
+++ error: 0
+++ Running case: PYTHON-2002
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
----------------running-----------------------
gmtmask: num vertices 1286
gmtmask: done
checking model consistency
marshalling file 'test2002'.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
call computational core:
computing initial sea level geometrical kernels and weights.
iteration 1/1 time [yr]: 1.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
write lock file:
FemModel initialization elapsed time: 0.116142
Total Core solution elapsed time: 0.112932
Linear solver elapsed time: 0.000475 (0.42%)
Total elapsed time: 0 hrs 0 min 0 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 1 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
checking model consistency
marshalling file 'test2002'.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
call computational core:
computing initial sea level geometrical kernels and weights.
iteration 1/1 time [yr]: 1.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
write lock file:
FemModel initialization elapsed time: 0.218237
Total Core solution elapsed time: 1.03184
Linear solver elapsed time: 0.000742 (0.072%)
Total elapsed time: 0 hrs 0 min 1 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 1 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
checking model consistency
marshalling file 'test2002'.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
call computational core:
computing initial sea level geometrical kernels and weights.
iteration 1/1 time [yr]: 1.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
write lock file:
FemModel initialization elapsed time: 0.403048
Total Core solution elapsed time: 0.833541
Linear solver elapsed time: 0.000796 (0.095%)
Total elapsed time: 0 hrs 0 min 1 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 1 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
checking model consistency
marshalling file 'test2002'.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
call computational core:
computing initial sea level geometrical kernels and weights.
iteration 1/1 time [yr]: 1.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
write lock file:
FemModel initialization elapsed time: 0.402614
Total Core solution elapsed time: 1.14391
Linear solver elapsed time: 0.007682 (0.67%)
Total elapsed time: 0 hrs 0 min 1 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 1 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 4.7e-16 < 1e-13 test id: 2002 test name: EarthSlc field: Seustatic
SUCCESS difference: 1.2e-15 < 1e-13 test id: 2002 test name: EarthSlc field: Sselfattraction
SUCCESS difference: 2e-15 < 1e-13 test id: 2002 test name: EarthSlc field: Selastic
SUCCESS difference: 1.8e-15 < 1e-13 test id: 2002 test name: EarthSlc field: Srotation
SUCCESS difference: 0 < 1e-13 test id: 2002 test name: EarthSlc field: Beustatic
SUCCESS difference: 0 < 1e-13 test id: 2002 test name: EarthSlc field: Bselfattraction
SUCCESS difference: 1.6e-15 < 1e-13 test id: 2002 test name: EarthSlc field: Belastic
SUCCESS difference: 1.3e-15 < 1e-13 test id: 2002 test name: EarthSlc field: Brotation
+++ exit code: 0
+++ error: 0
+++ Running case: PYTHON-2002
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
----------------running-----------------------
gmtmask: num vertices 1286
gmtmask: done
checking model consistency
marshalling file 'test2002'.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
call computational core:
computing initial sea level geometrical kernels and weights.
iteration 1/1 time [yr]: 1.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
write lock file:
FemModel initialization elapsed time: 0.116142
Total Core solution elapsed time: 0.112932
Linear solver elapsed time: 0.000475 (0.42%)
Total elapsed time: 0 hrs 0 min 0 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 1 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
checking model consistency
marshalling file 'test2002'.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
call computational core:
computing initial sea level geometrical kernels and weights.
iteration 1/1 time [yr]: 1.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
write lock file:
FemModel initialization elapsed time: 0.218237
Total Core solution elapsed time: 1.03184
Linear solver elapsed time: 0.000742 (0.072%)
Total elapsed time: 0 hrs 0 min 1 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 1 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
checking model consistency
marshalling file 'test2002'.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
call computational core:
computing initial sea level geometrical kernels and weights.
iteration 1/1 time [yr]: 1.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
write lock file:
FemModel initialization elapsed time: 0.403048
Total Core solution elapsed time: 0.833541
Linear solver elapsed time: 0.000796 (0.095%)
Total elapsed time: 0 hrs 0 min 1 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 1 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
checking model consistency
marshalling file 'test2002'.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
call computational core:
computing initial sea level geometrical kernels and weights.
iteration 1/1 time [yr]: 1.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
write lock file:
FemModel initialization elapsed time: 0.402614
Total Core solution elapsed time: 1.14391
Linear solver elapsed time: 0.007682 (0.67%)
Total elapsed time: 0 hrs 0 min 1 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 1 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 4.7e-16 < 1e-13 test id: 2002 test name: EarthSlc field: Seustatic
SUCCESS difference: 1.2e-15 < 1e-13 test id: 2002 test name: EarthSlc field: Sselfattraction
SUCCESS difference: 2e-15 < 1e-13 test id: 2002 test name: EarthSlc field: Selastic
SUCCESS difference: 1.8e-15 < 1e-13 test id: 2002 test name: EarthSlc field: Srotation
SUCCESS difference: 0 < 1e-13 test id: 2002 test name: EarthSlc field: Beustatic
SUCCESS difference: 0 < 1e-13 test id: 2002 test name: EarthSlc field: Bselfattraction
SUCCESS difference: 1.6e-15 < 1e-13 test id: 2002 test name: EarthSlc field: Belastic
SUCCESS difference: 1.3e-15 < 1e-13 test id: 2002 test name: EarthSlc field: Brotation
+++ exit code: 0
+++ error: 0
+++ Running case: PYTHON-2005
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
----------------running-----------------------
gmtmask: num vertices 1286
gmtmask: done
checking model consistency
marshalling file 'test2005'.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
call computational core:
computing initial sea level geometrical kernels and weights.
iteration 1/10 time [yr]: 1.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 2/10 time [yr]: 2.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 3/10 time [yr]: 3.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 4/10 time [yr]: 4.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 5/10 time [yr]: 5.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 6/10 time [yr]: 6.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 7/10 time [yr]: 7.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 8/10 time [yr]: 8.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 9/10 time [yr]: 9.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 10/10 time [yr]: 10.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
write lock file:
FemModel initialization elapsed time: 0.38144
Total Core solution elapsed time: 2.78797
Linear solver elapsed time: 0.028084 (1%)
Total elapsed time: 0 hrs 0 min 3 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 1 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 1.3e-15 < 1e-13 test id: 2005 test name: EarthSlc field: Sealevel1
SUCCESS difference: 1.2e-15 < 1e-13 test id: 2005 test name: EarthSlc field: Sealevel5
SUCCESS difference: 1.6e-15 < 1e-13 test id: 2005 test name: EarthSlc field: Sealevel10
SUCCESS difference: 0 < 1e-13 test id: 2005 test name: EarthSlc field: Seustatic10
+++ exit code: 0
+++ error: 0
+++ Running case: PYTHON-2005
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
----------------running-----------------------
gmtmask: num vertices 1286
gmtmask: done
checking model consistency
marshalling file 'test2005'.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
call computational core:
computing initial sea level geometrical kernels and weights.
iteration 1/10 time [yr]: 1.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 2/10 time [yr]: 2.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 3/10 time [yr]: 3.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 4/10 time [yr]: 4.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 5/10 time [yr]: 5.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 6/10 time [yr]: 6.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 7/10 time [yr]: 7.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 8/10 time [yr]: 8.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 9/10 time [yr]: 9.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
iteration 10/10 time [yr]: 10.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
converging GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
write lock file:
FemModel initialization elapsed time: 0.38144
Total Core solution elapsed time: 2.78797
Linear solver elapsed time: 0.028084 (1%)
Total elapsed time: 0 hrs 0 min 3 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 1 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 1.3e-15 < 1e-13 test id: 2005 test name: EarthSlc field: Sealevel1
SUCCESS difference: 1.2e-15 < 1e-13 test id: 2005 test name: EarthSlc field: Sealevel5
SUCCESS difference: 1.6e-15 < 1e-13 test id: 2005 test name: EarthSlc field: Sealevel10
SUCCESS difference: 0 < 1e-13 test id: 2005 test name: EarthSlc field: Seustatic10
+++ exit code: 0
+++ error: 0
+++ Running case: PYTHON-2010
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
----------------running-----------------------
gmtmask: num vertices 1286
gmtmask: done
checking model consistency
marshalling file 'test2010'.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
call computational core:
computing initial sea level geometrical kernels and weights.
iteration 1/1 time [yr]: 1.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
write lock file:
FemModel initialization elapsed time: 0.230738
Total Core solution elapsed time: 1.36034
Linear solver elapsed time: 0.000473 (0.035%)
Total elapsed time: 0 hrs 0 min 1 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 1 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 0 < 1e-13 test id: 2010 test name: MomentOfIntertia field: eus
SUCCESS difference: 2.5e-15 < 1e-13 test id: 2010 test name: MomentOfIntertia field: slc
SUCCESS difference: 1.4e-16 < 1e-13 test id: 2010 test name: MomentOfIntertia field: moixz
SUCCESS difference: 2.1e-16 < 1e-13 test id: 2010 test name: MomentOfIntertia field: moiyz
SUCCESS difference: 3.6e-16 < 1e-13 test id: 2010 test name: MomentOfIntertia field: moizz
+++ exit code: 0
+++ error: 0
+++ Running case: PYTHON-2010
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
----------------running-----------------------
gmtmask: num vertices 1286
gmtmask: done
checking model consistency
marshalling file 'test2010'.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
call computational core:
computing initial sea level geometrical kernels and weights.
iteration 1/1 time [yr]: 1.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
write lock file:
FemModel initialization elapsed time: 0.230738
Total Core solution elapsed time: 1.36034
Linear solver elapsed time: 0.000473 (0.035%)
Total elapsed time: 0 hrs 0 min 1 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 1 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 0 < 1e-13 test id: 2010 test name: MomentOfIntertia field: eus
SUCCESS difference: 2.5e-15 < 1e-13 test id: 2010 test name: MomentOfIntertia field: slc
SUCCESS difference: 1.4e-16 < 1e-13 test id: 2010 test name: MomentOfIntertia field: moixz
SUCCESS difference: 2.1e-16 < 1e-13 test id: 2010 test name: MomentOfIntertia field: moiyz
SUCCESS difference: 3.6e-16 < 1e-13 test id: 2010 test name: MomentOfIntertia field: moizz
+++ exit code: 0
+++ error: 0
+++ Running case: PYTHON-2084
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
----------------running-----------------------
Temporal love numbers: Overriding md.love.nfreq and md.love.frequencies
checking model consistency
marshalling file 'FourierLoveTest'.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
starting model processor
creating datasets for analysis LoveAnalysis
updating elements and materials for control parameters
updating elements and materials for uncertainty quantification
creating output definitions
done with model processor
Processing finite element model of analysis LoveAnalysis:
toolkits Options set for analysis: LoveAnalysis
configuring element and loads
Configuring elements...
Configuring loads...
Configuring materials...
Configuring inputs...
detecting active vertices
resolving node constraints
creating nodal degrees of freedom
call computational core:
computing LOVE numbers
Surface gravity: 9.81555 m.s^-2
Mean density: 5511.68 kg.m^-3
elastic
Degree: 9, surface/Depth Love number ratio small: 2.00545e-21
Changing the interface where integration starts
New start interface: r=1.2225e+06m
Degree: 28, surface/Depth Love number ratio small: 5.72696e-21
Changing the interface where integration starts
New start interface: r=3.48e+06m
Degree: 84, surface/Depth Love number ratio small: 8.89724e-21
Changing the interface where integration starts
New start interface: r=5.701e+06m
Degree: 476, surface/Depth Love number ratio small: 9.52498e-21
Changing the interface where integration starts
New start interface: r=5.951e+06m
Degree: 841, surface/Depth Love number ratio small: 9.15677e-21
Changing the interface where integration starts
New start interface: r=6.301e+06m
Degree: 894/1000 found negligible variation across frequencies, will copy elastic values after this degree
Delta_h/h=1.89743e-06; Delta_k/k=1.9045e-06; Delta_l/l=0.000998958; threshold set to 0.001
loading
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tidal
Inverse Laplace Transform... done!
Transforming PMTF and tidal love numbers... done!
Assembling parralel vectors...done
saving results
write lock file:
FemModel initialization elapsed time: 0.309467
Total Core solution elapsed time: 19.2376
Linear solver elapsed time: 0 (0%)
Total elapsed time: 0 hrs 0 min 19 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 1 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 0 < 2e-08 test id: 2084 test name: GiaCaron field: LoveH_loading_elastic
SUCCESS difference: 0 < 2e-08 test id: 2084 test name: GiaCaron field: LoveK_loading_elastic
SUCCESS difference: 0 < 2e-08 test id: 2084 test name: GiaCaron field: LoveL_loading_elastic
+++ exit code: 0
+++ error: 0
+++ Running case: PYTHON-2084
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
----------------running-----------------------
Temporal love numbers: Overriding md.love.nfreq and md.love.frequencies
checking model consistency
marshalling file 'FourierLoveTest'.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
starting model processor
creating datasets for analysis LoveAnalysis
updating elements and materials for control parameters
updating elements and materials for uncertainty quantification
creating output definitions
done with model processor
Processing finite element model of analysis LoveAnalysis:
toolkits Options set for analysis: LoveAnalysis
configuring element and loads
Configuring elements...
Configuring loads...
Configuring materials...
Configuring inputs...
detecting active vertices
resolving node constraints
creating nodal degrees of freedom
call computational core:
computing LOVE numbers
Surface gravity: 9.81555 m.s^-2
Mean density: 5511.68 kg.m^-3
elastic
Degree: 9, surface/Depth Love number ratio small: 2.00545e-21
Changing the interface where integration starts
New start interface: r=1.2225e+06m
Degree: 28, surface/Depth Love number ratio small: 5.72696e-21
Changing the interface where integration starts
New start interface: r=3.48e+06m
Degree: 84, surface/Depth Love number ratio small: 8.89724e-21
Changing the interface where integration starts
New start interface: r=5.701e+06m
Degree: 476, surface/Depth Love number ratio small: 9.52498e-21
Changing the interface where integration starts
New start interface: r=5.951e+06m
Degree: 841, surface/Depth Love number ratio small: 9.15677e-21
Changing the interface where integration starts
New start interface: r=6.301e+06m
Degree: 894/1000 found negligible variation across frequencies, will copy elastic values after this degree
Delta_h/h=1.89743e-06; Delta_k/k=1.9045e-06; Delta_l/l=0.000998958; threshold set to 0.001
loading
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tidal
Inverse Laplace Transform... done!
Transforming PMTF and tidal love numbers... done!
Assembling parralel vectors...done
saving results
write lock file:
FemModel initialization elapsed time: 0.309467
Total Core solution elapsed time: 19.2376
Linear solver elapsed time: 0 (0%)
Total elapsed time: 0 hrs 0 min 19 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 1 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 0 < 2e-08 test id: 2084 test name: GiaCaron field: LoveH_loading_elastic
SUCCESS difference: 0 < 2e-08 test id: 2084 test name: GiaCaron field: LoveK_loading_elastic
SUCCESS difference: 0 < 2e-08 test id: 2084 test name: GiaCaron field: LoveL_loading_elastic
+++ exit code: 0
+++ error: 0
+++ Running case: PYTHON-2101
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
----------------running-----------------------
gmtmask: num vertices 1286
gmtmask: done
checking model consistency
marshalling file 'test2101'.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
starting model processor
creating datasets for analysis EsaAnalysis
updating elements and materials for control parameters
updating elements and materials for uncertainty quantification
creating output definitions
done with model processor
Processing finite element model of analysis EsaAnalysis:
toolkits Options set for analysis: EsaAnalysis
configuring element and loads
Configuring elements...
Configuring loads...
Configuring materials...
Configuring inputs...
detecting active vertices
resolving node constraints
creating nodal degrees of freedom
Renumbering degrees of freedom
call computational core:
computing elastic adjustment
toolkits Options set for analysis: EsaAnalysis
computing elastic geodetic core
write lock file:
FemModel initialization elapsed time: 1.83853
Total Core solution elapsed time: 0.12495
Linear solver elapsed time: 0 (0%)
Total elapsed time: 0 hrs 0 min 1 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 1 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 5.6e-15 < 1e-13 test id: 2101 test name: EarthEsa field: EsaUmotion
SUCCESS difference: 2.5e-14 < 1e-13 test id: 2101 test name: EarthEsa field: EsaNmotion
SUCCESS difference: 4.5e-14 < 2e-13 test id: 2101 test name: EarthEsa field: EsaEmotion
+++ exit code: 0
+++ error: 0
+++ Running case: PYTHON-2101
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
----------------running-----------------------
gmtmask: num vertices 1286
gmtmask: done
checking model consistency
marshalling file 'test2101'.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
starting model processor
creating datasets for analysis EsaAnalysis
updating elements and materials for control parameters
updating elements and materials for uncertainty quantification
creating output definitions
done with model processor
Processing finite element model of analysis EsaAnalysis:
toolkits Options set for analysis: EsaAnalysis
configuring element and loads
Configuring elements...
Configuring loads...
Configuring materials...
Configuring inputs...
detecting active vertices
resolving node constraints
creating nodal degrees of freedom
Renumbering degrees of freedom
call computational core:
computing elastic adjustment
toolkits Options set for analysis: EsaAnalysis
computing elastic geodetic core
write lock file:
FemModel initialization elapsed time: 1.83853
Total Core solution elapsed time: 0.12495
Linear solver elapsed time: 0 (0%)
Total elapsed time: 0 hrs 0 min 1 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 1 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 5.6e-15 < 1e-13 test id: 2101 test name: EarthEsa field: EsaUmotion
SUCCESS difference: 2.5e-14 < 1e-13 test id: 2101 test name: EarthEsa field: EsaNmotion
SUCCESS difference: 4.5e-14 < 2e-13 test id: 2101 test name: EarthEsa field: EsaEmotion
+++ exit code: 0
+++ error: 0
+++ Running case: PYTHON-2110
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
----------------running-----------------------
checking model consistency
marshalling file 'test2110'.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
starting model processor
creating datasets for analysis EsaAnalysis
updating elements and materials for control parameters
updating elements and materials for uncertainty quantification
creating output definitions
done with model processor
Processing finite element model of analysis EsaAnalysis:
toolkits Options set for analysis: EsaAnalysis
configuring element and loads
Configuring elements...
Configuring loads...
Configuring materials...
Configuring inputs...
detecting active vertices
resolving node constraints
creating nodal degrees of freedom
Renumbering degrees of freedom
call computational core:
computing elastic adjustment
toolkits Options set for analysis: EsaAnalysis
computing elastic geodetic core
write lock file:
FemModel initialization elapsed time: 2.00509
Total Core solution elapsed time: 0.410201
Linear solver elapsed time: 0 (0%)
Total elapsed time: 0 hrs 0 min 2 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 1 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 1.6e-15 < 1e-13 test id: 2110 test name: Esa2Dsurface field: EsaUmotion
SUCCESS difference: 1.8e-15 < 2e-12 test id: 2110 test name: Esa2Dsurface field: EsaXmotion
SUCCESS difference: 1.4e-15 < 2e-12 test id: 2110 test name: Esa2Dsurface field: EsaYmotion
SUCCESS difference: 5.3e-15 < 9e-12 test id: 2110 test name: Esa2Dsurface field: EsaStrainratexx
SUCCESS difference: 4.5e-15 < 8e-12 test id: 2110 test name: Esa2Dsurface field: EsaStrainratexy
SUCCESS difference: 5.2e-15 < 8e-12 test id: 2110 test name: Esa2Dsurface field: EsaStrainrateyy
SUCCESS difference: 3.2e-14 < 3e-11 test id: 2110 test name: Esa2Dsurface field: EsaRotationrate
+++ exit code: 0
+++ error: 0
+++ Running case: PYTHON-2110
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
----------------running-----------------------
checking model consistency
marshalling file 'test2110'.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
starting model processor
creating datasets for analysis EsaAnalysis
updating elements and materials for control parameters
updating elements and materials for uncertainty quantification
creating output definitions
done with model processor
Processing finite element model of analysis EsaAnalysis:
toolkits Options set for analysis: EsaAnalysis
configuring element and loads
Configuring elements...
Configuring loads...
Configuring materials...
Configuring inputs...
detecting active vertices
resolving node constraints
creating nodal degrees of freedom
Renumbering degrees of freedom
call computational core:
computing elastic adjustment
toolkits Options set for analysis: EsaAnalysis
computing elastic geodetic core
write lock file:
FemModel initialization elapsed time: 2.00509
Total Core solution elapsed time: 0.410201
Linear solver elapsed time: 0 (0%)
Total elapsed time: 0 hrs 0 min 2 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 1 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 1.6e-15 < 1e-13 test id: 2110 test name: Esa2Dsurface field: EsaUmotion
SUCCESS difference: 1.8e-15 < 2e-12 test id: 2110 test name: Esa2Dsurface field: EsaXmotion
SUCCESS difference: 1.4e-15 < 2e-12 test id: 2110 test name: Esa2Dsurface field: EsaYmotion
SUCCESS difference: 5.3e-15 < 9e-12 test id: 2110 test name: Esa2Dsurface field: EsaStrainratexx
SUCCESS difference: 4.5e-15 < 8e-12 test id: 2110 test name: Esa2Dsurface field: EsaStrainratexy
SUCCESS difference: 5.2e-15 < 8e-12 test id: 2110 test name: Esa2Dsurface field: EsaStrainrateyy
SUCCESS difference: 3.2e-14 < 3e-11 test id: 2110 test name: Esa2Dsurface field: EsaRotationrate
+++ exit code: 0
+++ error: 0
+++ Running case: PYTHON-2111
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
----------------running-----------------------
checking model consistency
marshalling file 'test2111'.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
starting model processor
creating datasets for analysis EsaAnalysis
updating elements and materials for control parameters
updating elements and materials for uncertainty quantification
creating output definitions
done with model processor
Processing finite element model of analysis EsaAnalysis:
toolkits Options set for analysis: EsaAnalysis
configuring element and loads
Configuring elements...
Configuring loads...
Configuring materials...
Configuring inputs...
detecting active vertices
resolving node constraints
creating nodal degrees of freedom
Renumbering degrees of freedom
call computational core:
computing elastic adjustment
toolkits Options set for analysis: EsaAnalysis
computing elastic geodetic core
write lock file:
FemModel initialization elapsed time: 2.11503
Total Core solution elapsed time: 0.027602
Linear solver elapsed time: 0 (0%)
Total elapsed time: 0 hrs 0 min 2 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 1 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 2.3e-15 < 1e-13 test id: 2111 test name: Esa2Dsurface field: EsaUmotion
SUCCESS difference: 3.3e-14 < 3e-13 test id: 2111 test name: Esa2Dsurface field: EsaNmotion
SUCCESS difference: 3.7e-14 < 3e-13 test id: 2111 test name: Esa2Dsurface field: EsaEmotion
SUCCESS difference: 4.2e-14 < 2e-13 test id: 2111 test name: Esa2Dsurface field: EsaXmotion
SUCCESS difference: 2.6e-14 < 3e-13 test id: 2111 test name: Esa2Dsurface field: EsaYmotion
+++ exit code: 0
+++ error: 0
+++ Running case: PYTHON-2111
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
----------------running-----------------------
checking model consistency
marshalling file 'test2111'.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
starting model processor
creating datasets for analysis EsaAnalysis
updating elements and materials for control parameters
updating elements and materials for uncertainty quantification
creating output definitions
done with model processor
Processing finite element model of analysis EsaAnalysis:
toolkits Options set for analysis: EsaAnalysis
configuring element and loads
Configuring elements...
Configuring loads...
Configuring materials...
Configuring inputs...
detecting active vertices
resolving node constraints
creating nodal degrees of freedom
Renumbering degrees of freedom
call computational core:
computing elastic adjustment
toolkits Options set for analysis: EsaAnalysis
computing elastic geodetic core
write lock file:
FemModel initialization elapsed time: 2.11503
Total Core solution elapsed time: 0.027602
Linear solver elapsed time: 0 (0%)
Total elapsed time: 0 hrs 0 min 2 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 1 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 2.3e-15 < 1e-13 test id: 2111 test name: Esa2Dsurface field: EsaUmotion
SUCCESS difference: 3.3e-14 < 3e-13 test id: 2111 test name: Esa2Dsurface field: EsaNmotion
SUCCESS difference: 3.7e-14 < 3e-13 test id: 2111 test name: Esa2Dsurface field: EsaEmotion
SUCCESS difference: 4.2e-14 < 2e-13 test id: 2111 test name: Esa2Dsurface field: EsaXmotion
SUCCESS difference: 2.6e-14 < 3e-13 test id: 2111 test name: Esa2Dsurface field: EsaYmotion
+++ exit code: 0
+++ error: 0
+++ Running case: PYTHON-2113
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
----------------running-----------------------
checking model consistency
marshalling file 'test2113'.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
starting model processor
creating datasets for analysis EsaAnalysis
updating elements and materials for control parameters
updating elements and materials for uncertainty quantification
creating output definitions
done with model processor
Processing finite element model of analysis EsaAnalysis:
toolkits Options set for analysis: EsaAnalysis
configuring element and loads
Configuring elements...
Configuring loads...
Configuring materials...
Configuring inputs...
detecting active vertices
resolving node constraints
creating nodal degrees of freedom
Renumbering degrees of freedom
call computational core:
computing elastic adjustment
toolkits Options set for analysis: EsaAnalysis
computing elastic geodetic core
write lock file:
FemModel initialization elapsed time: 2.1991
Total Core solution elapsed time: 0.046075
Linear solver elapsed time: 0 (0%)
Total elapsed time: 0 hrs 0 min 2 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 1 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 2.1e-15 < 1e-13 test id: 2113 test name: Esa2Dsurface field: EsaUmotion
SUCCESS difference: 4e-14 < 2e-13 test id: 2113 test name: Esa2Dsurface field: EsaNmotion
SUCCESS difference: 2.9e-14 < 2e-13 test id: 2113 test name: Esa2Dsurface field: EsaEmotion
+++ exit code: 0
+++ error: 0
+++ Running case: PYTHON-2113
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
----------------running-----------------------
checking model consistency
marshalling file 'test2113'.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
starting model processor
creating datasets for analysis EsaAnalysis
updating elements and materials for control parameters
updating elements and materials for uncertainty quantification
creating output definitions
done with model processor
Processing finite element model of analysis EsaAnalysis:
toolkits Options set for analysis: EsaAnalysis
configuring element and loads
Configuring elements...
Configuring loads...
Configuring materials...
Configuring inputs...
detecting active vertices
resolving node constraints
creating nodal degrees of freedom
Renumbering degrees of freedom
call computational core:
computing elastic adjustment
toolkits Options set for analysis: EsaAnalysis
computing elastic geodetic core
write lock file:
FemModel initialization elapsed time: 2.1991
Total Core solution elapsed time: 0.046075
Linear solver elapsed time: 0 (0%)
Total elapsed time: 0 hrs 0 min 2 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 1 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 2.1e-15 < 1e-13 test id: 2113 test name: Esa2Dsurface field: EsaUmotion
SUCCESS difference: 4e-14 < 2e-13 test id: 2113 test name: Esa2Dsurface field: EsaNmotion
SUCCESS difference: 2.9e-14 < 2e-13 test id: 2113 test name: Esa2Dsurface field: EsaEmotion
+++ exit code: 0
+++ error: 0
+++ Running case: PYTHON-2003
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
----------------running-----------------------
gmtmask: num vertices 1286
gmtmask: done
checking model consistency
marshalling file 'test2003'.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
call computational core:
computing initial sea level geometrical kernels and weights.
iteration 1/1 time [yr]: 1.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
write lock file:
FemModel initialization elapsed time: 0.683573
Total Core solution elapsed time: 1.5007
Linear solver elapsed time: 0.000466 (0.031%)
Total elapsed time: 0 hrs 0 min 2 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 1 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
checking model consistency
marshalling file 'test2003'.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
call computational core:
computing initial sea level geometrical kernels and weights.
iteration 1/1 time [yr]: 1.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
write lock file:
FemModel initialization elapsed time: 0.270755
Total Core solution elapsed time: 1.52118
Linear solver elapsed time: 0.000543 (0.036%)
Total elapsed time: 0 hrs 0 min 1 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 1 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 1.1e-14 < 1e-13 test id: 2003 test name: EarthSlc_rotationalFeedback field: Sealevel
SUCCESS difference: 7.7e-15 < 1e-13 test id: 2003 test name: EarthSlc_rotationalFeedback field: Uplift
SUCCESS difference: 6.9e-15 < 1e-13 test id: 2003 test name: EarthSlc_rotationalFeedback field: NorthDisplacement
SUCCESS difference: 6.2e-15 < 1e-13 test id: 2003 test name: EarthSlc_rotationalFeedback field: EastDisplacement
+++ exit code: 0
+++ error: 0
+++ Running case: PYTHON-2003
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
----------------running-----------------------
gmtmask: num vertices 1286
gmtmask: done
checking model consistency
marshalling file 'test2003'.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
call computational core:
computing initial sea level geometrical kernels and weights.
iteration 1/1 time [yr]: 1.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
write lock file:
FemModel initialization elapsed time: 0.683573
Total Core solution elapsed time: 1.5007
Linear solver elapsed time: 0.000466 (0.031%)
Total elapsed time: 0 hrs 0 min 2 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 1 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
checking model consistency
marshalling file 'test2003'.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
call computational core:
computing initial sea level geometrical kernels and weights.
iteration 1/1 time [yr]: 1.00 (time step: 1.00)
computing basal mass balance
computing mass transport
call computational core
updating vertices positions
computing sea level change
computing sea level geometrical kernel and weight updates.
computing GRD patterns
starting GRD convolutions
deformation GRD convolutions
updating GRD fields
saving results
saving temporary results
write lock file:
FemModel initialization elapsed time: 0.270755
Total Core solution elapsed time: 1.52118
Linear solver elapsed time: 0.000543 (0.036%)
Total elapsed time: 0 hrs 0 min 1 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 1 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 1.1e-14 < 1e-13 test id: 2003 test name: EarthSlc_rotationalFeedback field: Sealevel
SUCCESS difference: 7.7e-15 < 1e-13 test id: 2003 test name: EarthSlc_rotationalFeedback field: Uplift
SUCCESS difference: 6.9e-15 < 1e-13 test id: 2003 test name: EarthSlc_rotationalFeedback field: NorthDisplacement
SUCCESS difference: 6.2e-15 < 1e-13 test id: 2003 test name: EarthSlc_rotationalFeedback field: EastDisplacement
+++ exit code: 0
+++ error: 0
+++ Running case: PYTHON-2112
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
----------------running-----------------------
checking model consistency
marshalling file 'test2112'.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
starting model processor
creating datasets for analysis EsaAnalysis
updating elements and materials for control parameters
updating elements and materials for uncertainty quantification
creating output definitions
done with model processor
Processing finite element model of analysis EsaAnalysis:
toolkits Options set for analysis: EsaAnalysis
configuring element and loads
Configuring elements...
Configuring loads...
Configuring materials...
Configuring inputs...
detecting active vertices
resolving node constraints
creating nodal degrees of freedom
Renumbering degrees of freedom
call computational core:
computing elastic adjustment
toolkits Options set for analysis: EsaAnalysis
computing elastic geodetic core
write lock file:
FemModel initialization elapsed time: 2.63472
Total Core solution elapsed time: 0.234141
Linear solver elapsed time: 0 (0%)
Total elapsed time: 0 hrs 0 min 2 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 1 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 1.3e-15 < 1e-13 test id: 2112 test name: Esa2Dsurface field: EsaUmotion
SUCCESS difference: 1.4e-14 < 4e-13 test id: 2112 test name: Esa2Dsurface field: EsaNmotion
SUCCESS difference: 9.7e-14 < 3e-12 test id: 2112 test name: Esa2Dsurface field: EsaEmotion
SUCCESS difference: 1.3e-14 < 3e-13 test id: 2112 test name: Esa2Dsurface field: EsaXmotion
SUCCESS difference: 1.2e-14 < 3e-13 test id: 2112 test name: Esa2Dsurface field: EsaYmotion
+++ exit code: 0
+++ error: 0
+++ Running case: PYTHON-2112
+++ working dir: /Users/jenkins/workspace/macOS-Intel-Solid_Earth/nightlylog
----------------running-----------------------
checking model consistency
marshalling file 'test2112'.bin
uploading input file and queuing script
launching solution sequence on remote cluster
Ice-sheet and Sea-level System Model (ISSM) version 4.24
(website: http://issm.jpl.nasa.gov forum: https://issm.ess.uci.edu/forum/)
starting model processor
creating datasets for analysis EsaAnalysis
updating elements and materials for control parameters
updating elements and materials for uncertainty quantification
creating output definitions
done with model processor
Processing finite element model of analysis EsaAnalysis:
toolkits Options set for analysis: EsaAnalysis
configuring element and loads
Configuring elements...
Configuring loads...
Configuring materials...
Configuring inputs...
detecting active vertices
resolving node constraints
creating nodal degrees of freedom
Renumbering degrees of freedom
call computational core:
computing elastic adjustment
toolkits Options set for analysis: EsaAnalysis
computing elastic geodetic core
write lock file:
FemModel initialization elapsed time: 2.63472
Total Core solution elapsed time: 0.234141
Linear solver elapsed time: 0 (0%)
Total elapsed time: 0 hrs 0 min 2 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 1 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 1.3e-15 < 1e-13 test id: 2112 test name: Esa2Dsurface field: EsaUmotion
SUCCESS difference: 1.4e-14 < 4e-13 test id: 2112 test name: Esa2Dsurface field: EsaNmotion
SUCCESS difference: 9.7e-14 < 3e-12 test id: 2112 test name: Esa2Dsurface field: EsaEmotion
SUCCESS difference: 1.3e-14 < 3e-13 test id: 2112 test name: Esa2Dsurface field: EsaXmotion
SUCCESS difference: 1.2e-14 < 3e-13 test id: 2112 test name: Esa2Dsurface field: EsaYmotion
+++ exit code: 0
+++ error: 0
Recording test results
Finished: SUCCESS