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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:   0.069315
   Total Core solution elapsed time:       79.0729
   Linear solver elapsed time:             0       (0%)

   Total elapsed time: 0 hrs 1 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: 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

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   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:   0.0642 
   Total Core solution elapsed time:       30.2193
   Linear solver elapsed time:             0       (0%)

   Total elapsed time: 0 hrs 0 min 30 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

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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       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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:   0.0642 
   Total Core solution elapsed time:       30.2193
   Linear solver elapsed time:             0       (0%)

   Total elapsed time: 0 hrs 0 min 30 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:   0.042555
   Total Core solution elapsed time:       0.001529
   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:   0.042555
   Total Core solution elapsed time:       0.001529
   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

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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:   0.111597
   Total Core solution elapsed time:       11.7396
   Linear solver elapsed time:             0       (0%)

   Total elapsed time: 0 hrs 0 min 11 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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     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:   0.111597
   Total Core solution elapsed time:       11.7396
   Linear solver elapsed time:             0       (0%)

   Total elapsed time: 0 hrs 0 min 11 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:   1.68982
   Total Core solution elapsed time:       24.3559
   Linear solver elapsed time:             0.593884 (2.4%)

   Total elapsed time: 0 hrs 0 min 26 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
2024-09-12 06:25:00.935 MATLAB[23016:163610509] XType: com.apple.fonts is not accessible.
2024-09-12 06:25:00.935 MATLAB[23016:163610509] XType: XTFontStaticRegistry is enabled.
2024-09-12 06:25:02.096 MATLAB[23016:163610509] 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:].
2024-09-12 06:25:02.096 MATLAB[23016:163610509] CoreText note: Set a breakpoint on CTFontLogSystemFontNameRequest to debug.
2024-09-12 06:25:02.098 MATLAB[23016:163610509] 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:].
2024-09-12 06:25:02.103 MATLAB[23016:163610509] 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:].
2024-09-12 06:25:02.103 MATLAB[23016:163610509] 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:   1.68982
   Total Core solution elapsed time:       24.3559
   Linear solver elapsed time:             0.593884 (2.4%)

   Total elapsed time: 0 hrs 0 min 26 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
2024-09-12 06:25:00.935 MATLAB[23016:163610509] XType: com.apple.fonts is not accessible.
2024-09-12 06:25:00.935 MATLAB[23016:163610509] XType: XTFontStaticRegistry is enabled.
2024-09-12 06:25:02.096 MATLAB[23016:163610509] 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:].
2024-09-12 06:25:02.096 MATLAB[23016:163610509] CoreText note: Set a breakpoint on CTFontLogSystemFontNameRequest to debug.
2024-09-12 06:25:02.098 MATLAB[23016:163610509] 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:].
2024-09-12 06:25:02.103 MATLAB[23016:163610509] 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:].
2024-09-12 06:25:02.103 MATLAB[23016:163610509] 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:   5.19522
   Total Core solution elapsed time:       1.34555
   Linear solver elapsed time:             0.008777 (0.65%)

   Total elapsed time: 0 hrs 0 min 6 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:   5.19522
   Total Core solution elapsed time:       1.34555
   Linear solver elapsed time:             0.008777 (0.65%)

   Total elapsed time: 0 hrs 0 min 6 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:   0.155784
   Total Core solution elapsed time:       0.841269
   Linear solver elapsed time:             0.005534 (0.66%)

   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:   0.155784
   Total Core solution elapsed time:       0.841269
   Linear solver elapsed time:             0.005534 (0.66%)

   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:   0.834603
   Total Core solution elapsed time:       0.009777
   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: 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:   0.834603
   Total Core solution elapsed time:       0.009777
   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: 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:   1.2453 
   Total Core solution elapsed time:       0.382953
   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: 1.3e-15 <   2e-12 test id: 2110 test name: Esa2Dsurface field: EsaYmotion
SUCCESS difference: 5.9e-15 <   9e-12 test id: 2110 test name: Esa2Dsurface field: EsaStrainratexx
SUCCESS difference: 4.3e-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:   1.2453 
   Total Core solution elapsed time:       0.382953
   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: 1.3e-15 <   2e-12 test id: 2110 test name: Esa2Dsurface field: EsaYmotion
SUCCESS difference: 5.9e-15 <   9e-12 test id: 2110 test name: Esa2Dsurface field: EsaStrainratexx
SUCCESS difference: 4.3e-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:   1.22198
   Total Core solution elapsed time:       0.039607
   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:   1.22198
   Total Core solution elapsed time:       0.039607
   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:   1.08804
   Total Core solution elapsed time:       0.143832
   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: 1.3e-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:   1.08804
   Total Core solution elapsed time:       0.143832
   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: 1.3e-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:   1.92083
   Total Core solution elapsed time:       0.042678
   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: 2.1e-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:   1.92083
   Total Core solution elapsed time:       0.042678
   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: 2.1e-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
----------Python exited in error!----------
OSGeo/GDAL for Python not installed, overlay plots are not enabled
Traceback (most recent call last):
  File "/Users/jenkins/workspace/macOS-Intel-Solid_Earth/test/NightlyRun/./runme.py", line 31, in <module>
    from loadmodel import loadmodel
  File "/Users/jenkins/workspace/macOS-Intel-Solid_Earth/src/m/io/loadmodel.py", line 1, in <module>
    from loadvars import loadvars
  File "/Users/jenkins/workspace/macOS-Intel-Solid_Earth/src/m/io/loadvars.py", line 13, in <module>
    from model import *
  File "/Users/jenkins/workspace/macOS-Intel-Solid_Earth/src/m/classes/model.py", line 41, in <module>
    from stressbalance import stressbalance
  File "/Users/jenkins/workspace/macOS-Intel-Solid_Earth/src/m/classes/stressbalance.py", line 150
    md = checkfield(md, 'fieldname', 'stressbalance.ishydrologylayer', 'numel', [1], 'values', [0 1]);
                                                                                                  ^
SyntaxError: invalid syntax
OSGeo/GDAL for Python not installed, overlay plots are not enabled
Traceback (most recent call last):
  File "/Users/jenkins/workspace/macOS-Intel-Solid_Earth/test/NightlyRun/./runme.py", line 31, in <module>
    from loadmodel import loadmodel
  File "/Users/jenkins/workspace/macOS-Intel-Solid_Earth/src/m/io/loadmodel.py", line 1, in <module>
    from loadvars import loadvars
  File "/Users/jenkins/workspace/macOS-Intel-Solid_Earth/src/m/io/loadvars.py", line 13, in <module>
    from model import *
  File "/Users/jenkins/workspace/macOS-Intel-Solid_Earth/src/m/classes/model.py", line 41, in <module>
    from stressbalance import stressbalance
  File "/Users/jenkins/workspace/macOS-Intel-Solid_Earth/src/m/classes/stressbalance.py", line 150
    md = checkfield(md, 'fieldname', 'stressbalance.ishydrologylayer', 'numel', [1], 'values', [0 1]);
                                                                                                  ^
SyntaxError: invalid syntax
-----------End of python_log.log-----------
Build step 'Execute shell' marked build as failure
Recording test results
Finished: FAILURE