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launching solution sequence


Ice-sheet and Sea-level System Model (ISSM) version 2026.2
          GitHub: https://github.com/ISSMteam/ISSM/
   Documentation: https://issmteam.github.io/ISSM-Documentation/

call computational core:
	  computing initial sea level geometrical kernels and weights.
iteration 1/1  time [yr]: 1.00 (time step: 1.00)
   computing basal mass balance
   computing mass transport
   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:   0.101499
   Total Core solution elapsed time:       0.519781
   Linear solver elapsed time:             0.000201992 (0.039%)

   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: 5.6e-15 <   1e-12 test id: 2003 test name: EarthSlc_rotationalFeedback field: Sealevel
SUCCESS difference: 7.7e-15 <   1e-12 test id: 2003 test name: EarthSlc_rotationalFeedback field: Uplift
SUCCESS difference: 6.9e-15 <   1e-12 test id: 2003 test name: EarthSlc_rotationalFeedback field: NorthDisplacement
SUCCESS difference: 5.3e-15 <   1e-12 test id: 2003 test name: EarthSlc_rotationalFeedback field: EastDisplacement
----------------finished:2003-----------------------
----------------starting:2005-----------------------
gmtmask: num vertices 1286
gmtmask: done
checking model consistency
marshalling file /home/jenkins/workspace/Debian_Linux-Solid_Earth//execution/test2005-07-16-2026-13-18-05-1532735/test2005.bin
launching solution sequence


Ice-sheet and Sea-level System Model (ISSM) version 2026.2
          GitHub: https://github.com/ISSMteam/ISSM/
   Documentation: https://issmteam.github.io/ISSM-Documentation/

call computational core:
	  computing initial sea level geometrical kernels and weights.
iteration 1/10  time [yr]: 1.00 (time step: 1.00)
   computing basal mass balance
   computing mass transport
   updating vertices positions
   computing sea level change
	  computing sea level geometrical kernel and weight updates.
	  computing GRD patterns
	  starting  GRD convolutions
	  converging GRD convolutions
	  deformation GRD convolutions
	  updating GRD fields
   saving results
   saving temporary results
iteration 2/10  time [yr]: 2.00 (time step: 1.00)
   computing basal mass balance
   computing mass transport
   updating vertices positions
   computing sea level change
	  computing sea level geometrical kernel and weight updates.
	  computing GRD patterns
	  starting  GRD convolutions
	  converging GRD convolutions
	  deformation GRD convolutions
	  updating GRD fields
   saving results
   saving temporary results
iteration 3/10  time [yr]: 3.00 (time step: 1.00)
   computing basal mass balance
   computing mass transport
   updating vertices positions
   computing sea level change
	  computing sea level geometrical kernel and weight updates.
	  computing GRD patterns
	  starting  GRD convolutions
	  converging GRD convolutions
	  deformation GRD convolutions
	  updating GRD fields
   saving results
   saving temporary results
iteration 4/10  time [yr]: 4.00 (time step: 1.00)
   computing basal mass balance
   computing mass transport
   updating vertices positions
   computing sea level change
	  computing sea level geometrical kernel and weight updates.
	  computing GRD patterns
	  starting  GRD convolutions
	  converging GRD convolutions
	  deformation GRD convolutions
	  updating GRD fields
   saving results
   saving temporary results
iteration 5/10  time [yr]: 5.00 (time step: 1.00)
   computing basal mass balance
   computing mass transport
   updating vertices positions
   computing sea level change
	  computing sea level geometrical kernel and weight updates.
	  computing GRD patterns
	  starting  GRD convolutions
	  converging GRD convolutions
	  deformation GRD convolutions
	  updating GRD fields
   saving results
   saving temporary results
iteration 6/10  time [yr]: 6.00 (time step: 1.00)
   computing basal mass balance
   computing mass transport
   updating vertices positions
   computing sea level change
	  computing sea level geometrical kernel and weight updates.
	  computing GRD patterns
	  starting  GRD convolutions
	  converging GRD convolutions
	  deformation GRD convolutions
	  updating GRD fields
   saving results
   saving temporary results
iteration 7/10  time [yr]: 7.00 (time step: 1.00)
   computing basal mass balance
   computing mass transport
   updating vertices positions
   computing sea level change
	  computing sea level geometrical kernel and weight updates.
	  computing GRD patterns
	  starting  GRD convolutions
	  converging GRD convolutions
	  deformation GRD convolutions
	  updating GRD fields
   saving results
   saving temporary results
iteration 8/10  time [yr]: 8.00 (time step: 1.00)
   computing basal mass balance
   computing mass transport
   updating vertices positions
   computing sea level change
	  computing sea level geometrical kernel and weight updates.
	  computing GRD patterns
	  starting  GRD convolutions
	  converging GRD convolutions
	  deformation GRD convolutions
	  updating GRD fields
   saving results
   saving temporary results
iteration 9/10  time [yr]: 9.00 (time step: 1.00)
   computing basal mass balance
   computing mass transport
   updating vertices positions
   computing sea level change
	  computing sea level geometrical kernel and weight updates.
	  computing GRD patterns
	  starting  GRD convolutions
	  converging GRD convolutions
	  deformation GRD convolutions
	  updating GRD fields
   saving results
   saving temporary results
iteration 10/10  time [yr]: 10.00 (time step: 1.00)
   computing basal mass balance
   computing mass transport
   updating vertices positions
   computing sea level change
	  computing sea level geometrical kernel and weight updates.
	  computing GRD patterns
	  starting  GRD convolutions
	  converging GRD convolutions
	  deformation GRD convolutions
	  updating GRD fields
   saving results
   saving temporary results
write lock file:

   FemModel initialization elapsed time:   0.308864
   Total Core solution elapsed time:       1.14003
   Linear solver elapsed time:             0.0015174 (0.13%)

   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: 3.6e-16 <   1e-12 test id: 2005 test name: Earthslc_time field: Sealevel1
SUCCESS difference: 2.8e-16 <   1e-12 test id: 2005 test name: Earthslc_time field: Sealevel5
SUCCESS difference: 3.2e-16 <   1e-12 test id: 2005 test name: Earthslc_time field: Sealevel10
SUCCESS difference: 0       <   1e-12 test id: 2005 test name: Earthslc_time field: Seustatic10
----------------finished:2005-----------------------
----------------starting:2007-----------------------
gmtmask: num vertices 1286
gmtmask: done
checking model consistency
marshalling file /home/jenkins/workspace/Debian_Linux-Solid_Earth//execution/test2007-07-16-2026-13-18-10-1532735/test2007.bin
   external (offlinesolidearthsolution) solution:
launching solution sequence


Ice-sheet and Sea-level System Model (ISSM) version 2026.2
          GitHub: https://github.com/ISSMteam/ISSM/
   Documentation: https://issmteam.github.io/ISSM-Documentation/

call computational core:
	  computing initial sea level geometrical kernels and weights.
iteration 1/10  time [yr]: 0.50 (time step: 0.50)
   computing sea level change
	  computing external solid earth contributions
   saving results
   saving temporary results
iteration 2/10  time [yr]: 1.00 (time step: 0.50)
   computing sea level change
	  computing external solid earth contributions
   saving results
   saving temporary results
iteration 3/10  time [yr]: 1.50 (time step: 0.50)
   computing sea level change
	  computing external solid earth contributions
   saving results
   saving temporary results
iteration 4/10  time [yr]: 2.00 (time step: 0.50)
   computing sea level change
	  computing external solid earth contributions
   saving results
   saving temporary results
iteration 5/10  time [yr]: 2.50 (time step: 0.50)
   computing sea level change
	  computing external solid earth contributions
   saving results
   saving temporary results
iteration 6/10  time [yr]: 3.00 (time step: 0.50)
   computing sea level change
	  computing external solid earth contributions
   saving results
   saving temporary results
iteration 7/10  time [yr]: 3.50 (time step: 0.50)
   computing sea level change
	  computing external solid earth contributions
   saving results
   saving temporary results
iteration 8/10  time [yr]: 4.00 (time step: 0.50)
   computing sea level change
	  computing external solid earth contributions
   saving results
   saving temporary results
iteration 9/10  time [yr]: 4.50 (time step: 0.50)
   computing sea level change
	  computing external solid earth contributions
   saving results
   saving temporary results
iteration 10/10  time [yr]: 5.00 (time step: 0.50)
   computing sea level change
	  computing external solid earth contributions
   saving results
   saving temporary results
write lock file:

   FemModel initialization elapsed time:   0.0246231
   Total Core solution elapsed time:       0.0972658
   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: 3.3e-16 <   1e-13 test id: 2007 test name: External_OfflineSolidearthSolution field: Geoid
SUCCESS difference: 4e-16   <   1e-13 test id: 2007 test name: External_OfflineSolidearthSolution field: BedUp
SUCCESS difference: 2.5e-16 <   1e-13 test id: 2007 test name: External_OfflineSolidearthSolution field: BedEast
SUCCESS difference: 3.8e-16 <   1e-13 test id: 2007 test name: External_OfflineSolidearthSolution field: BedNorth
----------------finished:2007-----------------------
----------------starting:2008-----------------------
gmtmask: num vertices 1286
gmtmask: done
checking model consistency
marshalling file /home/jenkins/workspace/Debian_Linux-Solid_Earth//execution/test2008-07-16-2026-13-18-12-1532735/test2008.bin
launching solution sequence


Ice-sheet and Sea-level System Model (ISSM) version 2026.2
          GitHub: https://github.com/ISSMteam/ISSM/
   Documentation: https://issmteam.github.io/ISSM-Documentation/

call computational core:
	  computing initial sea level geometrical kernels and weights.
iteration 1/1  time [yr]: 1.00 (time step: 1.00)
   computing basal mass balance
   computing mass transport
   updating vertices positions
   computing sea level change
	  computing sea level geometrical kernel and weight updates.
	  computing GRD patterns
	  starting  GRD convolutions
	  converging GRD convolutions
	  deformation GRD convolutions
	  updating GRD fields
   saving results
   saving temporary results
write lock file:

   FemModel initialization elapsed time:   0.263266
   Total Core solution elapsed time:       0.341549
   Linear solver elapsed time:             0.000227959 (0.067%)

   Total elapsed time: 0 hrs 0 min 0 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
checking model consistency
marshalling file /home/jenkins/workspace/Debian_Linux-Solid_Earth//execution/test2008-07-16-2026-13-18-14-1532735/test2008.bin
launching solution sequence


Ice-sheet and Sea-level System Model (ISSM) version 2026.2
          GitHub: https://github.com/ISSMteam/ISSM/
   Documentation: https://issmteam.github.io/ISSM-Documentation/

call computational core:
	  computing initial sea level geometrical kernels and weights.
iteration 1/1  time [yr]: 1.00 (time step: 1.00)
   computing basal mass balance
   computing mass transport
   updating vertices positions
   computing sea level change
	  computing sea level geometrical kernel and weight updates.
	  computing external solid earth contributions
	  computing GRD patterns
	  starting  GRD convolutions
	  converging GRD convolutions
	  deformation GRD convolutions
	  updating GRD fields
   saving results
   saving temporary results
write lock file:

   FemModel initialization elapsed time:   0.250467
   Total Core solution elapsed time:       0.3155 
   Linear solver elapsed time:             0.000173213 (0.055%)

   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: 4.4e-16 <   1e-13 test id: 2008 test name: External_AdditionalSolidearthSolution field: SealevelGrd
SUCCESS difference: 3.4e-17 <   1e-13 test id: 2008 test name: External_AdditionalSolidearthSolution field: BedrockGrd
SUCCESS difference: 1.7e-16 <   1e-13 test id: 2008 test name: External_AdditionalSolidearthSolution field: SealevelAdditional
SUCCESS difference: 6.7e-17 <   1e-13 test id: 2008 test name: External_AdditionalSolidearthSolution field: BedrockAdditional
----------------finished:2008-----------------------
----------------starting:2010-----------------------
gmtmask: num vertices 1286
gmtmask: done
checking model consistency
marshalling file /home/jenkins/workspace/Debian_Linux-Solid_Earth//execution/test2010-07-16-2026-13-18-17-1532735/test2010.bin
launching solution sequence


Ice-sheet and Sea-level System Model (ISSM) version 2026.2
          GitHub: https://github.com/ISSMteam/ISSM/
   Documentation: https://issmteam.github.io/ISSM-Documentation/

call computational core:
	  computing initial sea level geometrical kernels and weights.
iteration 1/1  time [yr]: 1.00 (time step: 1.00)
   computing basal mass balance
   computing mass transport
   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:   0.0702002
   Total Core solution elapsed time:       0.420588
   Linear solver elapsed time:             0.000200643 (0.048%)

   Total elapsed time: 0 hrs 0 min 0 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 0       <   1e-13 test id: 2010 test name: MomentOfIntertia field: eus
SUCCESS difference: 1.2e-15 <   1e-13 test id: 2010 test name: MomentOfIntertia field: slc
SUCCESS difference: 1.4e-16 <   1e-13 test id: 2010 test name: MomentOfIntertia field: moixz
SUCCESS difference: 0       <   1e-13 test id: 2010 test name: MomentOfIntertia field: moiyz
SUCCESS difference: 0       <   1e-13 test id: 2010 test name: MomentOfIntertia field: moizz
----------------finished:2010-----------------------
----------------starting:2011-----------------------
gmtmask: num vertices 1286
gmtmask: done
checking model consistency
marshalling file /home/jenkins/workspace/Debian_Linux-Solid_Earth//execution/test2011-07-16-2026-13-18-19-1532735/test2011.bin
launching solution sequence


Ice-sheet and Sea-level System Model (ISSM) version 2026.2
          GitHub: https://github.com/ISSMteam/ISSM/
   Documentation: https://issmteam.github.io/ISSM-Documentation/

call computational core:
	  computing initial sea level geometrical kernels and weights.
iteration 1/1  time [yr]: 1.00 (time step: 1.00)
   computing basal mass balance
   computing mass transport
   updating vertices positions
   computing sea level change
	  computing sea level geometrical kernel and weight updates.
	  computing GRD patterns
	  starting  GRD convolutions
	  converging GRD convolutions
	  deformation GRD convolutions
	  updating GRD fields
   saving results
   saving temporary results
write lock file:

   FemModel initialization elapsed time:   0.0526408
   Total Core solution elapsed time:       0.391714
   Linear solver elapsed time:             0.000184926 (0.047%)

   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

ans =

    1.9244    1.9244    1.9244

SUCCESS difference: 0       <   2e-12 test id: 2011 test name: SlcBarystatic field: BarystaticIce1
SUCCESS difference: 9.2e-16 <   1e-13 test id: 2011 test name: SlcBarystatic field: BarystaticIce2
SUCCESS difference: 0       <   1e-13 test id: 2011 test name: SlcBarystatic field: BarystaticIceDiff21
SUCCESS difference: 8.1e-16 <   1e-06 test id: 2011 test name: SlcBarystatic field: BarystaticIce3
SUCCESS difference: 0       <   1e-13 test id: 2011 test name: SlcBarystatic field: BarystaticOceanMigrationLoad
SUCCESS difference: 4.6e-16 <   2e-12 test id: 2011 test name: SlcBarystatic field: BarystaticLoad
SUCCESS difference: 0       <   1e-13 test id: 2011 test name: SlcBarystatic field: BarystaticLoadDiff
----------------finished:2011-----------------------
----------------starting:2013-----------------------
gmtmask: num vertices 1286
gmtmask: done
checking model consistency
marshalling file /home/jenkins/workspace/Debian_Linux-Solid_Earth//execution/test2013-07-16-2026-13-18-22-1532735/test2013.bin
launching solution sequence


Ice-sheet and Sea-level System Model (ISSM) version 2026.2
          GitHub: https://github.com/ISSMteam/ISSM/
   Documentation: https://issmteam.github.io/ISSM-Documentation/

call computational core:
	  computing initial sea level geometrical kernels and weights.
iteration 1/1  time [yr]: 1.00 (time step: 1.00)
   computing basal mass balance
   computing mass transport
   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:   0.0352898
   Total Core solution elapsed time:       0.447854
   Linear solver elapsed time:             0.000216182 (0.048%)

   Total elapsed time: 0 hrs 0 min 0 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 0       <   1e-13 test id: 2013 test name: EarthSlc_Geometry field: Mask
SUCCESS difference: 0       <   1e-13 test id: 2013 test name: EarthSlc_Geometry field: LoadAreas
SUCCESS difference: 2.5e-16 <   1e-13 test id: 2013 test name: EarthSlc_Geometry field: SurfaceLoad
SUCCESS difference: 0       <   1e-13 test id: 2013 test name: EarthSlc_Geometry field: LoadWeights
SUCCESS difference: 8.2e-17 <   1e-13 test id: 2013 test name: EarthSlc_Geometry field: LatitudeLoadBarycenter
SUCCESS difference: 1.6e-16 <   1e-13 test id: 2013 test name: EarthSlc_Geometry field: LongitudeLoadBarycenter
----------------finished:2013-----------------------
----------------starting:2014-----------------------
gmtmask: num vertices 1286
gmtmask: done
checking model consistency
marshalling file /home/jenkins/workspace/Debian_Linux-Solid_Earth//execution/test2014-07-16-2026-13-18-25-1532735/test2014.bin
launching solution sequence


Ice-sheet and Sea-level System Model (ISSM) version 2026.2
          GitHub: https://github.com/ISSMteam/ISSM/
   Documentation: https://issmteam.github.io/ISSM-Documentation/

call computational core:
	  computing initial sea level geometrical kernels and weights.
iteration 1/1  time [yr]: 1.00 (time step: 1.00)
   computing basal mass balance
   computing mass transport
   computing new grounding line position
   updating vertices positions
   computing sea level change
	  computing sea level geometrical kernel and weight updates.
	  computing GRD patterns
	  starting  GRD convolutions
	  converging GRD convolutions
	  deformation GRD convolutions
	  updating GRD fields
   saving results
   saving temporary results
write lock file:

   FemModel initialization elapsed time:   0.0311075
   Total Core solution elapsed time:       0.0338806
   Linear solver elapsed time:             0.000168967 (0.5%)

   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       <   2e-12 test id: 2014 test name: SlcBarystaticGroundinglineMigration field: BslcIce
SUCCESS difference: 4e-16   <   2e-12 test id: 2014 test name: SlcBarystaticGroundinglineMigration field: BslcIceGeom
SUCCESS difference: 0       <   1e-13 test id: 2014 test name: SlcBarystaticGroundinglineMigration field: BslcIceDiff
SUCCESS difference: 0       <   1e-13 test id: 2014 test name: SlcBarystaticGroundinglineMigration field: BslcIceLoadDiff
SUCCESS difference: 2.3e-16 <   2e-12 test id: 2014 test name: SlcBarystaticGroundinglineMigration field: BslcOceanMigrationLoad
SUCCESS difference: 1.2e-16 <   2e-12 test id: 2014 test name: SlcBarystaticGroundinglineMigration field: BslcOceanMigrationLoadGeom
SUCCESS difference: 0       <   1e-13 test id: 2014 test name: SlcBarystaticGroundinglineMigration field: BslcOceanMigrationLoadDiff
SUCCESS difference: 1.9e-16 <   2e-12 test id: 2014 test name: SlcBarystaticGroundinglineMigration field: BslcNetLoad
SUCCESS difference: 3.5e-16 <   2e-12 test id: 2014 test name: SlcBarystaticGroundinglineMigration field: BslcNetLoadGeom
SUCCESS difference: 0       <   1e-13 test id: 2014 test name: SlcBarystaticGroundinglineMigration field: BslcNetLoadDiff
SUCCESS difference: 0       <   1e-13 test id: 2014 test name: SlcBarystaticGroundinglineMigration field: CumBslcIceDiff
----------------finished:2014-----------------------
----------------starting:2020-----------------------
 === Computing "real" spherical harmonics for chosen resolution ==== 
     SH computations : degree 0 (of 60) completed.
     SH computations : degree 1 (of 60) completed.
     SH computations : degree 2 (of 60) completed.
     SH computations : degree 3 (of 60) completed.
     SH computations : degree 4 (of 60) completed.
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     SH computations : degree 30 (of 60) completed.
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     SH computations : degree 48 (of 60) completed.
     SH computations : degree 49 (of 60) completed.
     SH computations : degree 50 (of 60) completed.
     SH computations : degree 51 (of 60) completed.
     SH computations : degree 52 (of 60) completed.
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     SH computations : degree 55 (of 60) completed.
     SH computations : degree 56 (of 60) completed.
     SH computations : degree 57 (of 60) completed.
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     SH computations : degree 59 (of 60) completed.
     SH computations : degree 60 (of 60) completed.
     completed! 
 === Computing SH coefficients for ocean function ================== 
gmtmask: num vertices 12288
gmtmask: done
     completed! 
 === Solving WOUT rotational feedbacks =========
     iteration # 1 :: difference in norm = 0.11957
     iteration # 2 :: difference in norm = 0.0025007
     iteration # 3 :: difference in norm = 0.0004088
     iteration # 4 :: difference in norm = 6.3542e-05
     iteration # 5 :: difference in norm = 1.0397e-05
     iteration # 6 :: difference in norm = 1.7779e-06
     solution converged! 
 === Solving WITH rotational feedbacks =========
     iteration # 1 :: difference in norm = 0.11937
     iteration # 2 :: difference in norm = 0.0024814
     iteration # 3 :: difference in norm = 0.00040586
     iteration # 4 :: difference in norm = 6.3273e-05
     iteration # 5 :: difference in norm = 1.0489e-05
     iteration # 6 :: difference in norm = 1.8334e-06
     solution converged! 
SUCCESS difference: 2.7e-07 <   3e-07 test id: 2020 test name: SHslc  field: Barystatic_no_rotation
SUCCESS difference: 4.1e-15 <   1e-13 test id: 2020 test name: SHslc  field: rsl_no_rotation
SUCCESS difference: 1.6e-15 <   1e-13 test id: 2020 test name: SHslc  field: geoid_no_rotation
SUCCESS difference: 1.9e-15 <   1e-13 test id: 2020 test name: SHslc  field: bed_no_rotation
SUCCESS difference: 1.8e-07 <   2e-07 test id: 2020 test name: SHslc  field: Barystatic_with_rotation
SUCCESS difference: 3.9e-15 <   1e-13 test id: 2020 test name: SHslc  field: rsl_with_rotation
SUCCESS difference: 1.4e-15 <   1e-13 test id: 2020 test name: SHslc  field: geoid_with_rotation
SUCCESS difference: 2.1e-15 <   1e-13 test id: 2020 test name: SHslc  field: bed_with_rotation
----------------finished:2020-----------------------
----------------starting:2021-----------------------
Computing Greens functions...
500 of 1286 vertices done!
1000 of 1286 vertices done!
gmtmask: num vertices 2568
gmtmask: done
Solving sesaw-slc for Rigid Earth WITHOUT rotational feedback...
     iteration # 1 :: difference in norm = 0.011137
     iteration # 2 :: difference in norm = 0.00011489
     iteration # 3 :: difference in norm = 3.4553e-06
     solution converged! 
Solving sesaw-slc for Rigid Earth WITH rotational feedback...
     iteration # 1 :: difference in norm = 0.011693
     iteration # 2 :: difference in norm = 0.00012356
     iteration # 3 :: difference in norm = 2.9489e-07
     solution converged! 
Solving sesaw-slc for Elastic Earth WITH rotational feedback...
     iteration # 1 :: difference in norm = 0.012866
     iteration # 2 :: difference in norm = 0.00025771
     iteration # 3 :: difference in norm = 5.7273e-05
     iteration # 4 :: difference in norm = 9.3911e-06
     solution converged! 
Solving sesaw-slc for Elastic Earth WITHOUT rotational feedback...
     iteration # 1 :: difference in norm = 0.012425
     iteration # 2 :: difference in norm = 0.00026672
     iteration # 3 :: difference in norm = 5.4626e-05
     iteration # 4 :: difference in norm = 8.4046e-06
     solution converged! 
SUCCESS difference: 3.6e-16 <   1e-13 test id: 2021 test name: SESAWslc field: eus_rigid
SUCCESS difference: 3.6e-16 <   1e-13 test id: 2021 test name: SESAWslc field: eus_rigid_rot
SUCCESS difference: 3.6e-16 <   1e-13 test id: 2021 test name: SESAWslc field: eus_elast
SUCCESS difference: 3.6e-16 <   1e-13 test id: 2021 test name: SESAWslc field: eus_elast_rot
SUCCESS difference: 3.2e-15 <   1e-13 test id: 2021 test name: SESAWslc field: rsl_rigid
SUCCESS difference: 3.4e-15 <   1e-13 test id: 2021 test name: SESAWslc field: rsl_rigid_rot
SUCCESS difference: 1e-14   <   1e-13 test id: 2021 test name: SESAWslc field: rsl_elast
SUCCESS difference: 1e-14   <   1e-13 test id: 2021 test name: SESAWslc field: rsl_elast_rot
----------------finished:2021-----------------------
----------------starting:2070-----------------------
checking model consistency
marshalling file /home/jenkins/workspace/Debian_Linux-Solid_Earth//execution/test2070-07-16-2026-13-19-03-1532735/test2070.bin
launching solution sequence


Ice-sheet and Sea-level System Model (ISSM) version 2026.2
          GitHub: https://github.com/ISSMteam/ISSM/
   Documentation: https://issmteam.github.io/ISSM-Documentation/

   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: 13, surface/Depth Love number ratio small: 1.64964e-28
    Changing the interface where integration starts
    New start interface: r=1.2225e+06m


   Degree: 28, surface/Depth Love number ratio small: 4.02754e-21
    Changing the interface where integration starts
    New start interface: r=3.48e+06m


   Degree: 84, surface/Depth Love number ratio small: 1.45142e-21
    Changing the interface where integration starts
    New start interface: r=5.701e+06m


   Degree: 429, surface/Depth Love number ratio small: 9.27061e-21
    Changing the interface where integration starts
    New start interface: r=5.951e+06m


   Degree: 697, surface/Depth Love number ratio small: 9.95155e-21
    Changing the interface where integration starts
    New start interface: r=6.301e+06m

     tidal
write lock file:

   FemModel initialization elapsed time:   0.0271761
   Total Core solution elapsed time:       1.09102
   Linear solver elapsed time:             0       (0%)

   Total elapsed time: 0 hrs 0 min 1 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
checking model consistency
marshalling file /home/jenkins/workspace/Debian_Linux-Solid_Earth//execution/test2070-07-16-2026-13-19-06-1532735/test2070.bin
launching solution sequence


Ice-sheet and Sea-level System Model (ISSM) version 2026.2
          GitHub: https://github.com/ISSMteam/ISSM/
   Documentation: https://issmteam.github.io/ISSM-Documentation/

   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: 13, surface/Depth Love number ratio small: 8.35499e-29
    Changing the interface where integration starts
    New start interface: r=1.2225e+06m


   Degree: 30, surface/Depth Love number ratio small: 8.15353e-21
    Changing the interface where integration starts
    New start interface: r=3.48e+06m


   Degree: 82, surface/Depth Love number ratio small: 9.41507e-21
    Changing the interface where integration starts
    New start interface: r=5.701e+06m


   Degree: 443, surface/Depth Love number ratio small: 9.95001e-21
    Changing the interface where integration starts
    New start interface: r=5.951e+06m


   Degree: 1145, surface/Depth Love number ratio small: 4.76534e-21
    Changing the interface where integration starts
    New start interface: r=6.301e+06m

write lock file:

   FemModel initialization elapsed time:   0.0111252
   Total Core solution elapsed time:       0.923451
   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       <   2e-08 test id: 2070 test name: ElasticLoveNumbers field: LoveH_loading_elastic
SUCCESS difference: 0       <   2e-08 test id: 2070 test name: ElasticLoveNumbers field: LoveK_loading_elastic
SUCCESS difference: 0       <   2e-08 test id: 2070 test name: ElasticLoveNumbers field: LoveL_loading_elastic
SUCCESS difference: 0       <   2e-08 test id: 2070 test name: ElasticLoveNumbers field: LoveH_tidal_elastic
SUCCESS difference: 0       <   2e-08 test id: 2070 test name: ElasticLoveNumbers field: LoveK_tidal_elastic
SUCCESS difference: 0       <   2e-08 test id: 2070 test name: ElasticLoveNumbers field: LoveL_tidal_elastic
----------------finished:2070-----------------------
----------------starting:2071-----------------------
Temporal love numbers: Overriding md.love.nfreq and md.love.frequencies
checking model consistency
marshalling file /home/jenkins/workspace/Debian_Linux-Solid_Earth//execution/test2071-07-16-2026-13-19-08-1532735/test2071.bin
launching solution sequence


Ice-sheet and Sea-level System Model (ISSM) version 2026.2
          GitHub: https://github.com/ISSMteam/ISSM/
   Documentation: https://issmteam.github.io/ISSM-Documentation/

   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: 13, surface/Depth Love number ratio small: 1.64964e-28
    Changing the interface where integration starts
    New start interface: r=1.2225e+06m


   Degree: 28, surface/Depth Love number ratio small: 4.02754e-21
    Changing the interface where integration starts
    New start interface: r=3.48e+06m


   Degree: 84, surface/Depth Love number ratio small: 1.45142e-21
    Changing the interface where integration starts
    New start interface: r=5.701e+06m


   Degree: 429, surface/Depth Love number ratio small: 9.27061e-21
    Changing the interface where integration starts
    New start interface: r=5.951e+06m


   Degree: 697, surface/Depth Love number ratio small: 9.95155e-21
    Changing the interface where integration starts
    New start interface: r=6.301e+06m

   Degree: 874/1000          found negligible variation across frequencies, will copy elastic values after this degree
      Delta_h/h=1.88344e-06; Delta_k/k=1.88981e-06; Delta_l/l=0.000989442; threshold set to 0.001
     loading

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900/1000       Degree: 1000/1000    
     tidal
   Inverse Laplace Transform... done!
     Transforming PMTF and tidal love numbers... done!
   Assembling parallel vectors...done
   saving results
write lock file:

   FemModel initialization elapsed time:   0.0112987
   Total Core solution elapsed time:       21.9619
   Linear solver elapsed time:             0       (0%)

   Total elapsed time: 0 hrs 0 min 22 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       <   4e-06 test id: 2071 test name: TemporalLoveNumbers field: LoveH_loading_temporal
SUCCESS difference: 0       <   2e-06 test id: 2071 test name: TemporalLoveNumbers field: LoveK_loading_temporal
SUCCESS difference: 0       <   2e-06 test id: 2071 test name: TemporalLoveNumbers field: LoveL_loading_temporal
----------------finished:2071-----------------------
----------------starting:2072-----------------------
Temporal love numbers: Overriding md.love.nfreq and md.love.frequencies
checking model consistency
marshalling file /home/jenkins/workspace/Debian_Linux-Solid_Earth//execution/test2072-07-16-2026-13-19-32-1532735/test2072.bin
launching solution sequence


Ice-sheet and Sea-level System Model (ISSM) version 2026.2
          GitHub: https://github.com/ISSMteam/ISSM/
   Documentation: https://issmteam.github.io/ISSM-Documentation/

   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: 13, surface/Depth Love number ratio small: 9.88424e-29
    Changing the interface where integration starts
    New start interface: r=1.2225e+06m


   Degree: 28, surface/Depth Love number ratio small: 5.1057e-21
    Changing the interface where integration starts
    New start interface: r=3.48e+06m


   Degree: 83, surface/Depth Love number ratio small: 6.77074e-21
    Changing the interface where integration starts
    New start interface: r=3.6e+06m


   Degree: 84, surface/Depth Love number ratio small: 8.87865e-21
    Changing the interface where integration starts
    New start interface: r=3.6305e+06m


   Degree: 86, surface/Depth Love number ratio small: 5.91422e-21
    Changing the interface where integration starts
    New start interface: r=3.7e+06m


   Degree: 89, surface/Depth Love number ratio small: 5.95205e-21
    Changing the interface where integration starts
    New start interface: r=3.9e+06m


   Degree: 98, surface/Depth Love number ratio small: 7.88602e-21
    Changing the interface where integration starts
    New start interface: r=4e+06m


   Degree: 103, surface/Depth Love number ratio small: 9.25414e-21
    Changing the interface where integration starts
    New start interface: r=4.2e+06m


   Degree: 115, surface/Depth Love number ratio small: 9.66201e-21
    Changing the interface where integration starts
    New start interface: r=4.3e+06m


   Degree: 122, surface/Depth Love number ratio small: 9.31952e-21
    Changing the interface where integration starts
    New start interface: r=4.5e+06m


   Degree: 138, surface/Depth Love number ratio small: 9.35647e-21
    Changing the interface where integration starts
    New start interface: r=4.6e+06m


   Degree: 148, surface/Depth Love number ratio small: 7.58385e-21
    Changing the interface where integration starts
    New start interface: r=4.8e+06m


   Degree: 170, surface/Depth Love number ratio small: 8.32472e-21
    Changing the interface where integration starts
    New start interface: r=4.9e+06m


   Degree: 183, surface/Depth Love number ratio small: 9.23372e-21
    Changing the interface where integration starts
    New start interface: r=5.1e+06m


   Degree: 216, surface/Depth Love number ratio small: 9.35753e-21
    Changing the interface where integration starts
    New start interface: r=5.2e+06m


   Degree: 237, surface/Depth Love number ratio small: 8.88834e-21
    Changing the interface where integration starts
    New start interface: r=5.4e+06m

     loading

   Degree: 1/256       Degree: 2/256       Degree: 3/256       Degree: 4/256       Degree: 5/256       Degree: 6/256       Degree: 7/256       Degree: 8/256       Degree: 9/256       Degree: 10/256       Degree: 11/256       Degree: 12/256       Degree: 13/256       Degree: 14/256       Degree: 15/256       Degree: 16/256       Degree: 17/256       Degree: 18/256       Degree: 19/256       Degree: 20/256       Degree: 21/256       Degree: 22/256       Degree: 23/256       Degree: 24/256       Degree: 25/256       Degree: 26/256       Degree: 27/256       Degree: 28/256       Degree: 29/256       Degree: 30/256       Degree: 31/256       Degree: 32/256       Degree: 33/256       Degree: 34/256       Degree: 35/256       Degree: 36/256       Degree: 37/256       Degree: 38/256       Degree: 39/256       Degree: 40/256       Degree: 41/256       Degree: 42/256       Degree: 43/256       Degree: 44/256       Degree: 45/256       Degree: 46/256       Degree: 47/256       Degree: 48/256       Degree: 49/256       Degree: 50/256       Degree: 51/256       Degree: 52/256       Degree: 53/256       Degree: 54/256       Degree: 55/256       Degree: 56/256       Degree: 57/256       Degree: 58/256       Degree: 59/256       Degree: 60/256       Degree: 61/256       Degree: 62/256       Degree: 63/256       Degree: 64/256       Degree: 65/256       Degree: 66/256       Degree: 67/256       Degree: 68/256       Degree: 69/256       Degree: 70/256       Degree: 71/256       Degree: 72/256       Degree: 73/256       Degree: 74/256       Degree: 75/256       Degree: 76/256       Degree: 77/256       Degree: 78/256       Degree: 79/256       Degree: 80/256       Degree: 81/256       Degree: 82/256       Degree: 83/256       Degree: 84/256       Degree: 85/256       Degree: 86/256       Degree: 87/256       Degree: 88/256       Degree: 89/256       Degree: 90/256       Degree: 91/256       Degree: 92/256       Degree: 93/256       Degree: 94/256       Degree: 95/256       Degree: 96/256       Degree: 97/256       Degree: 98/256       Degree: 99/256       Degree: 100/256       Degree: 101/256       Degree: 102/256       Degree: 103/256       Degree: 104/256       Degree: 105/256       Degree: 106/256       Degree: 107/256       Degree: 108/256       Degree: 109/256       Degree: 110/256       Degree: 111/256       Degree: 112/256       Degree: 113/256       Degree: 114/256       Degree: 115/256       Degree: 116/256       Degree: 117/256       Degree: 118/256       Degree: 119/256       Degree: 120/256       Degree: 121/256       Degree: 122/256       Degree: 123/256       Degree: 124/256       Degree: 125/256       Degree: 126/256       Degree: 127/256       Degree: 128/256       Degree: 129/256       Degree: 130/256       Degree: 131/256       Degree: 132/256       Degree: 133/256       Degree: 134/256       Degree: 135/256       Degree: 136/256       Degree: 137/256       Degree: 138/256       Degree: 139/256       Degree: 140/256       Degree: 141/256       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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 parallel vectors...done
   saving results
write lock file:

   FemModel initialization elapsed time:   0.0115758
   Total Core solution elapsed time:       37.2694
   Linear solver elapsed time:             0       (0%)

   Total elapsed time: 0 hrs 0 min 37 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: 1.8e-06 <   2e-05 test id: 2072 test name: ElasticLoveNumbers_HighlyLayeredEarth field: LoveH_loading_elastic
SUCCESS difference: 7.7e-07 <   2e-05 test id: 2072 test name: ElasticLoveNumbers_HighlyLayeredEarth field: LoveK_loading_elastic
SUCCESS difference: 1.6e-07 <   2e-06 test id: 2072 test name: ElasticLoveNumbers_HighlyLayeredEarth field: LoveL_loading_elastic
----------------finished:2072-----------------------
----------------starting:2073-----------------------
checking model consistency
marshalling file /home/jenkins/workspace/Debian_Linux-Solid_Earth//execution/test2073-07-16-2026-13-20-11-1532735/test2073.bin
launching solution sequence


Ice-sheet and Sea-level System Model (ISSM) version 2026.2
          GitHub: https://github.com/ISSMteam/ISSM/
   Documentation: https://issmteam.github.io/ISSM-Documentation/

   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:   0.01145
   Total Core solution elapsed time:       0.000497798
   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
----------------finished:2073-----------------------
----------------starting:2074-----------------------
Temporal love numbers: Overriding md.love.nfreq and md.love.frequencies
checking model consistency
marshalling file /home/jenkins/workspace/Debian_Linux-Solid_Earth//execution/test2074-07-16-2026-13-20-13-1532735/test2074.bin
launching solution sequence


Ice-sheet and Sea-level System Model (ISSM) version 2026.2
          GitHub: https://github.com/ISSMteam/ISSM/
   Documentation: https://issmteam.github.io/ISSM-Documentation/

   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: 9.82426 m.s^-2
     Mean density: 5516.58 kg.m^-3
     elastic

   Degree: 11, surface/Depth Love number ratio small: 3.57762e-21
    Changing the interface where integration starts
    New start interface: r=1.2225e+06m


   Degree: 28, surface/Depth Love number ratio small: 2.83465e-21
    Changing the interface where integration starts
    New start interface: r=3.48e+06m


   Degree: 84, surface/Depth Love number ratio small: 3.17574e-21
    Changing the interface where integration starts
    New start interface: r=5.701e+06m

     loading

   Degree: 1/256       Degree: 2/256       Degree: 3/256       Degree: 4/256       Degree: 5/256       Degree: 6/256       Degree: 7/256       Degree: 8/256       Degree: 9/256       Degree: 10/256       Degree: 11/256       Degree: 12/256       Degree: 13/256       Degree: 14/256       Degree: 15/256       Degree: 16/256       Degree: 17/256       Degree: 18/256       Degree: 19/256       Degree: 20/256       Degree: 21/256       Degree: 22/256       Degree: 23/256       Degree: 24/256       Degree: 25/256       Degree: 26/256       Degree: 27/256       Degree: 28/256       Degree: 29/256       Degree: 30/256       Degree: 31/256       Degree: 32/256       Degree: 33/256       Degree: 34/256       Degree: 35/256       Degree: 36/256       Degree: 37/256       Degree: 38/256       Degree: 39/256       Degree: 40/256       Degree: 41/256       Degree: 42/256       Degree: 43/256       Degree: 44/256       Degree: 45/256       Degree: 46/256       Degree: 47/256       Degree: 48/256      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     tidal
   Inverse Laplace Transform... done!
     Transforming PMTF and tidal love numbers... done!
   Assembling parallel vectors...done
   saving results
write lock file:

   FemModel initialization elapsed time:   0.0191639
   Total Core solution elapsed time:       11.2547
   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       <   1e-06 test id: 2074 test name: EBMLoveNumbers field: LoveHebm
SUCCESS difference: 0       <   1e-06 test id: 2074 test name: EBMLoveNumbers field: LoveKebm
SUCCESS difference: 0       <   1e-06 test id: 2074 test name: EBMLoveNumbers field: LoveLebm
----------------finished:2074-----------------------
----------------starting:2075-----------------------
checking model consistency
marshalling file /home/jenkins/workspace/Debian_Linux-Solid_Earth//execution/test2075-07-16-2026-13-20-26-1532735/test2075.bin
launching solution sequence


Ice-sheet and Sea-level System Model (ISSM) version 2026.2
          GitHub: https://github.com/ISSMteam/ISSM/
   Documentation: https://issmteam.github.io/ISSM-Documentation/

   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:
      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: (9.82426,0) m.s^-2
     Mean density: (5516.58,0) kg.m^-3
     elastic
     loading

   Degree: 2/2    
     tidal
write lock file:

   FemModel initialization elapsed time:   0.0172511
   Total Core solution elapsed time:       0.586095
   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
checking model consistency
marshalling file /home/jenkins/workspace/Debian_Linux-Solid_Earth//execution/test2075-07-16-2026-13-20-28-1532735/test2075.bin
launching solution sequence


Ice-sheet and Sea-level System Model (ISSM) version 2026.2
          GitHub: https://github.com/ISSMteam/ISSM/
   Documentation: https://issmteam.github.io/ISSM-Documentation/

   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:
      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: (9.82426,0) m.s^-2
     Mean density: (5516.58,0) kg.m^-3
     elastic
     loading

   Degree: 2/2    
     tidal
write lock file:

   FemModel initialization elapsed time:   0.0253003
   Total Core solution elapsed time:       0.625589
   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: 1e-15   <   1e-06 test id: 2075 test name: Complex_Lovenumbers field: LoveHrEbm
SUCCESS difference: 3.3e-15 <   1e-06 test id: 2075 test name: Complex_Lovenumbers field: LoveHiEbm
SUCCESS difference: 2.2e-15 <   1e-06 test id: 2075 test name: Complex_Lovenumbers field: LoveHrMaxwell
SUCCESS difference: 3.5e-15 <   1e-06 test id: 2075 test name: Complex_Lovenumbers field: LoveHiMaxwell
----------------finished:2075-----------------------
----------------starting:2084-----------------------
Temporal love numbers: Overriding md.love.nfreq and md.love.frequencies
checking model consistency
marshalling file /home/jenkins/workspace/Debian_Linux-Solid_Earth//execution/FourierLoveTest-07-16-2026-13-20-30-1532735/FourierLoveTest.bin
launching solution sequence


Ice-sheet and Sea-level System Model (ISSM) version 2026.2
          GitHub: https://github.com/ISSMteam/ISSM/
   Documentation: https://issmteam.github.io/ISSM-Documentation/

   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: 2.72015e-25
    Changing the interface where integration starts
    New start interface: r=1.2225e+06m


   Degree: 28, surface/Depth Love number ratio small: 4.01783e-21
    Changing the interface where integration starts
    New start interface: r=3.48e+06m


   Degree: 83, surface/Depth Love number ratio small: 6.99808e-21
    Changing the interface where integration starts
    New start interface: r=5.701e+06m


   Degree: 437, surface/Depth Love number ratio small: 9.12139e-21
    Changing the interface where integration starts
    New start interface: r=5.951e+06m


   Degree: 722, surface/Depth Love number ratio small: 6.83906e-21
    Changing the interface where integration starts
    New start interface: r=6.301e+06m

   Degree: 876/1000          found negligible variation across frequencies, will copy elastic values after this degree
      Delta_h/h=1.87419e-06; Delta_k/k=1.88049e-06; Delta_l/l=0.000987463; threshold set to 0.001
     loading

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     tidal
   Inverse Laplace Transform... done!
     Transforming PMTF and tidal love numbers... done!
   Assembling parallel vectors...done
   saving results
write lock file:

   FemModel initialization elapsed time:   0.0120362
   Total Core solution elapsed time:       107.763
   Linear solver elapsed time:             0       (0%)

   Total elapsed time: 0 hrs 1 min 47 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
----------------finished:2084-----------------------
----------------starting:2085-----------------------
checking model consistency
marshalling file /home/jenkins/workspace/Debian_Linux-Solid_Earth//execution/kernels-07-16-2026-13-22-20-1532735/kernels.bin
launching solution sequence


Ice-sheet and Sea-level System Model (ISSM) version 2026.2
          GitHub: https://github.com/ISSMteam/ISSM/
   Documentation: https://issmteam.github.io/ISSM-Documentation/

   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: 9.81344 m.s^-2
     Mean density: 5511 kg.m^-3
     elastic
write lock file:

   FemModel initialization elapsed time:   0.0154398
   Total Core solution elapsed time:       3.93877
   Linear solver elapsed time:             0       (0%)

   Total elapsed time: 0 hrs 0 min 3 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
checking model consistency
marshalling file /home/jenkins/workspace/Debian_Linux-Solid_Earth//execution/kernels-07-16-2026-13-22-25-1532735/kernels.bin
launching solution sequence


Ice-sheet and Sea-level System Model (ISSM) version 2026.2
          GitHub: https://github.com/ISSMteam/ISSM/
   Documentation: https://issmteam.github.io/ISSM-Documentation/

   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: 9.81344 m.s^-2
     Mean density: 5511 kg.m^-3
     elastic
     tidal
write lock file:

   FemModel initialization elapsed time:   0.0116181
   Total Core solution elapsed time:       3.77709
   Linear solver elapsed time:             0       (0%)

   Total elapsed time: 0 hrs 0 min 3 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 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: 3e-17   <   3e-07 test id: 2085 test name: FourierLoveKernels field: y1_tidal_degree002
SUCCESS difference: 2.1e-55 <   3e-07 test id: 2085 test name: FourierLoveKernels field: y2_tidal_degree002
SUCCESS difference: 1.6e-26 <   3e-07 test id: 2085 test name: FourierLoveKernels field: y3_tidal_degree002
SUCCESS difference: 3.4e-78 <   1e-07 test id: 2085 test name: FourierLoveKernels field: y4_tidal_degree002
SUCCESS difference: 3.8e-16 <   6e-08 test id: 2085 test name: FourierLoveKernels field: y5_tidal_degree002
SUCCESS difference: 3.1e-12 <   9e-07 test id: 2085 test name: FourierLoveKernels field: y6_tidal_degree002
SUCCESS difference: 5.4e-17 <   2e-07 test id: 2085 test name: FourierLoveKernels field: y1_tidal_degree020
SUCCESS difference: 2.5e-46 <   7e-08 test id: 2085 test name: FourierLoveKernels field: y2_tidal_degree020
SUCCESS difference: 2.5e-50 <   3e-07 test id: 2085 test name: FourierLoveKernels field: y3_tidal_degree020
SUCCESS difference: 2.8e-78 <   9e-08 test id: 2085 test name: FourierLoveKernels field: y4_tidal_degree020
SUCCESS difference: 6.4e-31 <   9e-10 test id: 2085 test name: FourierLoveKernels field: y5_tidal_degree020
SUCCESS difference: 6.3e-36 <   8e-10 test id: 2085 test name: FourierLoveKernels field: y6_tidal_degree020
SUCCESS difference: 1e-15   <   2e-08 test id: 2085 test name: FourierLoveKernels field: y1_tidal_degree200
SUCCESS difference: 1.5e-51 <   4e-08 test id: 2085 test name: FourierLoveKernels field: y2_tidal_degree200
SUCCESS difference: 6.5e-18 <   4e-07 test id: 2085 test name: FourierLoveKernels field: y3_tidal_degree200
SUCCESS difference: 3e-78   <   3e-08 test id: 2085 test name: FourierLoveKernels field: y4_tidal_degree200
SUCCESS difference: 1.8e-15 <   2e-10 test id: 2085 test name: FourierLoveKernels field: y5_tidal_degree200
SUCCESS difference: 1.3e-07 <   2e-07 test id: 2085 test name: FourierLoveKernels field: y6_tidal_degree200
SUCCESS difference: 3.8e-17 <   4e-06 test id: 2085 test name: FourierLoveKernels field: y1_loading_degree002
SUCCESS difference: 8.1e-57 <   1e-06 test id: 2085 test name: FourierLoveKernels field: y2_loading_degree002
SUCCESS difference: 1.8e-24 <   4e-06 test id: 2085 test name: FourierLoveKernels field: y3_loading_degree002
SUCCESS difference: 7.6e-79 <   3e-06 test id: 2085 test name: FourierLoveKernels field: y4_loading_degree002
SUCCESS difference: 1.9e-17 <   8e-07 test id: 2085 test name: FourierLoveKernels field: y5_loading_degree002
SUCCESS difference: 3.9e-12 <   2e-07 test id: 2085 test name: FourierLoveKernels field: y6_loading_degree002
SUCCESS difference: 3.2e-17 <   2e-06 test id: 2085 test name: FourierLoveKernels field: y1_loading_degree020
SUCCESS difference: 3e-47   <   1e-07 test id: 2085 test name: FourierLoveKernels field: y2_loading_degree020
SUCCESS difference: 1.4e-48 <   5e-06 test id: 2085 test name: FourierLoveKernels field: y3_loading_degree020
SUCCESS difference: 8.7e-79 <   3e-07 test id: 2085 test name: FourierLoveKernels field: y4_loading_degree020
SUCCESS difference: 1.5e-30 <   2e-07 test id: 2085 test name: FourierLoveKernels field: y5_loading_degree020
SUCCESS difference: 9.8e-37 <   2e-07 test id: 2085 test name: FourierLoveKernels field: y6_loading_degree020
SUCCESS difference: 1.1e-15 <   2e-06 test id: 2085 test name: FourierLoveKernels field: y1_loading_degree200
SUCCESS difference: 6.2e-53 <   9e-10 test id: 2085 test name: FourierLoveKernels field: y2_loading_degree200
SUCCESS difference: 1.4e-15 <   5e-05 test id: 2085 test name: FourierLoveKernels field: y3_loading_degree200
SUCCESS difference: 6.2e-79 <   3e-08 test id: 2085 test name: FourierLoveKernels field: y4_loading_degree200
SUCCESS difference: 4.2e-16 <   5e-07 test id: 2085 test name: FourierLoveKernels field: y5_loading_degree200
SUCCESS difference: 3e-07   <   4e-07 test id: 2085 test name: FourierLoveKernels field: y6_loading_degree200
----------------finished:2085-----------------------
----------------starting:2090-----------------------
gmtmask: num vertices 1286
gmtmask: done
checking model consistency
marshalling file /home/jenkins/workspace/Debian_Linux-Solid_Earth//execution/test2090-07-16-2026-13-22-32-1532735/test2090.bin
launching solution sequence


Ice-sheet and Sea-level System Model (ISSM) version 2026.2
          GitHub: https://github.com/ISSMteam/ISSM/
   Documentation: https://issmteam.github.io/ISSM-Documentation/

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
   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
   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
   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
   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
   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
   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
   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
   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
   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
   updating vertices positions
   computing sea level change
	  computing sea level geometrical kernel and weight updates.
	  computing GRD patterns
	  starting  GRD convolutions
	  converging GRD convolutions
	  deformation GRD convolutions
	  updating GRD fields
   saving results
   saving temporary results
write lock file:

   FemModel initialization elapsed time:   0.702953
   Total Core solution elapsed time:       2.48746
   Linear solver elapsed time:             0.0131699 (0.53%)

   Total elapsed time: 0 hrs 0 min 3 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 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
Fontconfig warning: "/usr/share/fontconfig/conf.avail/05-reset-dirs-sample.conf", line 6: unknown element "reset-dirs"
SUCCESS difference: 5.5e-16 <   1e-13 test id: 2090 test name: ViscoElasticEarthSlc field: Sealevel
SUCCESS difference: 2.3e-16 <   1e-13 test id: 2090 test name: ViscoElasticEarthSlc field: Bed
----------------finished:2090-----------------------
----------------starting:2091-----------------------
Construction of a mesh from a given geometry
checking model consistency
marshalling file /home/jenkins/workspace/Debian_Linux-Solid_Earth//execution/test2091-07-16-2026-13-23-09-1532735/test2091.bin
launching solution sequence


Ice-sheet and Sea-level System Model (ISSM) version 2026.2
          GitHub: https://github.com/ISSMteam/ISSM/
   Documentation: https://issmteam.github.io/ISSM-Documentation/

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
   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
   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
   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
   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
   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
   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
   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
   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
   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
   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
   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
   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:   15.0126
   Total Core solution elapsed time:       0.488925
   Linear solver elapsed time:             0.00123107 (0.25%)

   Total elapsed time: 0 hrs 0 min 15 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
Arrays have incompatible sizes for this operation.

Error in runme (line 241)
					error_diff=full(max(abs(archive(:)-field(:)))/(max(abs(archive(:)))+eps)); %disp test result

Error in matlab_run1 (line 3)
			runme('benchmark','slc','exclude',[2004 2006 2012 2051 2052 2053 2424 2425],'output','nightly','rank',1,'numprocs',1);FAILURE difference: N/A test id: 2091 test name: ViscoElasticEarthSlc field: Sealevel
Arrays have incompatible sizes for this operation.

Error in runme (line 241)
					error_diff=full(max(abs(archive(:)-field(:)))/(max(abs(archive(:)))+eps)); %disp test result

Error in matlab_run1 (line 3)
			runme('benchmark','slc','exclude',[2004 2006 2012 2051 2052 2053 2424 2425],'output','nightly','rank',1,'numprocs',1);FAILURE difference: N/A test id: 2091 test name: ViscoElasticEarthSlc field: Bed
Arrays have incompatible sizes for this operation.

Error in runme (line 241)
					error_diff=full(max(abs(archive(:)-field(:)))/(max(abs(archive(:)))+eps)); %disp test result

Error in matlab_run1 (line 3)
			runme('benchmark','slc','exclude',[2004 2006 2012 2051 2052 2053 2424 2425],'output','nightly','rank',1,'numprocs',1);FAILURE difference: N/A test id: 2091 test name: ViscoElasticEarthSlc field: Horizontals
----------------finished:2091-----------------------
----------------starting:2092-----------------------
Construction of a mesh from a given geometry
checking model consistency
marshalling file /home/jenkins/workspace/Debian_Linux-Solid_Earth//execution/test2092-07-16-2026-13-23-26-1532735/test2092.bin
launching solution sequence


Ice-sheet and Sea-level System Model (ISSM) version 2026.2
          GitHub: https://github.com/ISSMteam/ISSM/
   Documentation: https://issmteam.github.io/ISSM-Documentation/

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
   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
   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
   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
   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
   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
   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
   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
   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
   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
   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
   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:   0.0386079
   Total Core solution elapsed time:       0.353825
   Linear solver elapsed time:             0.00126947 (0.36%)

   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
ERROR   difference: 0.0032  >   4e-05 test id: 2092 test name: PolarMotion field: PolarmotionX
ERROR   difference: 0.00088 >   2e-05 test id: 2092 test name: PolarMotion field: PolarmotionY
ERROR   difference: 0.0027  >   3e-05 test id: 2092 test name: PolarMotion field: PolarmotionZ
----------------finished:2092-----------------------
----------------starting:2101-----------------------
gmtmask: num vertices 1286
gmtmask: done
checking model consistency
marshalling file /home/jenkins/workspace/Debian_Linux-Solid_Earth//execution/test2101-07-16-2026-13-23-29-1532735/test2101.bin
launching solution sequence


Ice-sheet and Sea-level System Model (ISSM) version 2026.2
          GitHub: https://github.com/ISSMteam/ISSM/
   Documentation: https://issmteam.github.io/ISSM-Documentation/

   starting model processor 
   creating datasets for analysis EsaAnalysis
   updating elements and materials for control parameters
   updating elements and materials for uncertainty quantification
   creating output definitions
   done with model processor 
   Processing finite element model of analysis EsaAnalysis:
      toolkits Options set for analysis: EsaAnalysis
      configuring element and loads
      Configuring elements...
      Configuring loads...
      Configuring materials...
      Configuring inputs...
      detecting active vertices
      resolving node constraints
      creating nodal degrees of freedom
   Renumbering degrees of freedom
call computational core:
   computing elastic adjustment
      toolkits Options set for analysis: EsaAnalysis
   computing elastic geodetic core
write lock file:

   FemModel initialization elapsed time:   2.19611
   Total Core solution elapsed time:       0.00442629
   Linear solver elapsed time:             0       (0%)

   Total elapsed time: 0 hrs 0 min 2 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 2.3e-15 <   1e-13 test id: 2101 test name: EarthEsa field: EsaUmotion
SUCCESS difference: 1.5e-15 <   1e-13 test id: 2101 test name: EarthEsa field: EsaNmotion
SUCCESS difference: 1.1e-15 <   1e-13 test id: 2101 test name: EarthEsa field: EsaEmotion
SUCCESS difference: 2.1e-15 <   1e-13 test id: 2101 test name: EarthEsa field: EsaGravitationalAcceleration
----------------finished:2101-----------------------
----------------starting:2110-----------------------
checking model consistency
marshalling file /home/jenkins/workspace/Debian_Linux-Solid_Earth//execution/test2110-07-16-2026-13-23-32-1532735/test2110.bin
launching solution sequence


Ice-sheet and Sea-level System Model (ISSM) version 2026.2
          GitHub: https://github.com/ISSMteam/ISSM/
   Documentation: https://issmteam.github.io/ISSM-Documentation/

   starting model processor 
   creating datasets for analysis EsaAnalysis
   updating elements and materials for control parameters
   updating elements and materials for uncertainty quantification
   creating output definitions
   done with model processor 
   Processing finite element model of analysis EsaAnalysis:
      toolkits Options set for analysis: EsaAnalysis
      configuring element and loads
      Configuring elements...
      Configuring loads...
      Configuring materials...
      Configuring inputs...
      detecting active vertices
      resolving node constraints
      creating nodal degrees of freedom
   Renumbering degrees of freedom
call computational core:
   computing elastic adjustment
      toolkits Options set for analysis: EsaAnalysis
   computing elastic geodetic core
write lock file:

   FemModel initialization elapsed time:   2.18513
   Total Core solution elapsed time:       0.221038
   Linear solver elapsed time:             0       (0%)

   Total elapsed time: 0 hrs 0 min 2 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 3.6e-16 <   1e-13 test id: 2110 test name: Esa2Dsurface field: EsaUmotion
SUCCESS difference: 3e-16   <   2e-12 test id: 2110 test name: Esa2Dsurface field: EsaXmotion
SUCCESS difference: 4e-16   <   2e-12 test id: 2110 test name: Esa2Dsurface field: EsaYmotion
SUCCESS difference: 7e-16   <   9e-12 test id: 2110 test name: Esa2Dsurface field: EsaStrainratexx
SUCCESS difference: 8.5e-16 <   8e-12 test id: 2110 test name: Esa2Dsurface field: EsaStrainratexy
SUCCESS difference: 9.8e-16 <   8e-12 test id: 2110 test name: Esa2Dsurface field: EsaStrainrateyy
SUCCESS difference: 3.4e-15 <   3e-11 test id: 2110 test name: Esa2Dsurface field: EsaRotationrate
SUCCESS difference: 3.6e-16 <   3e-11 test id: 2110 test name: Esa2Dsurface field: EsaGravitationalAcceleration
----------------finished:2110-----------------------
----------------starting:2111-----------------------
checking model consistency
marshalling file /home/jenkins/workspace/Debian_Linux-Solid_Earth//execution/test2111-07-16-2026-13-23-36-1532735/test2111.bin
launching solution sequence


Ice-sheet and Sea-level System Model (ISSM) version 2026.2
          GitHub: https://github.com/ISSMteam/ISSM/
   Documentation: https://issmteam.github.io/ISSM-Documentation/

   starting model processor 
   creating datasets for analysis EsaAnalysis
   updating elements and materials for control parameters
   updating elements and materials for uncertainty quantification
   creating output definitions
   done with model processor 
   Processing finite element model of analysis EsaAnalysis:
      toolkits Options set for analysis: EsaAnalysis
      configuring element and loads
      Configuring elements...
      Configuring loads...
      Configuring materials...
      Configuring inputs...
      detecting active vertices
      resolving node constraints
      creating nodal degrees of freedom
   Renumbering degrees of freedom
call computational core:
   computing elastic adjustment
      toolkits Options set for analysis: EsaAnalysis
   computing elastic geodetic core
write lock file:

   FemModel initialization elapsed time:   2.20964
   Total Core solution elapsed time:       0.017329
   Linear solver elapsed time:             0       (0%)

   Total elapsed time: 0 hrs 0 min 2 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 2.3e-15 <   1e-13 test id: 2111 test name: Esa2Dsurface field: EsaUmotion
SUCCESS difference: 5.3e-15 <   3e-13 test id: 2111 test name: Esa2Dsurface field: EsaNmotion
SUCCESS difference: 3e-15   <   3e-13 test id: 2111 test name: Esa2Dsurface field: EsaEmotion
SUCCESS difference: 3.9e-15 <   2e-13 test id: 2111 test name: Esa2Dsurface field: EsaXmotion
SUCCESS difference: 3.5e-15 <   3e-13 test id: 2111 test name: Esa2Dsurface field: EsaYmotion
SUCCESS difference: 2.1e-15 <   2e-13 test id: 2111 test name: Esa2Dsurface field: EsaGravitationalAcceleration
----------------finished:2111-----------------------
----------------starting:2112-----------------------
checking model consistency
marshalling file /home/jenkins/workspace/Debian_Linux-Solid_Earth//execution/test2112-07-16-2026-13-23-40-1532735/test2112.bin
launching solution sequence


Ice-sheet and Sea-level System Model (ISSM) version 2026.2
          GitHub: https://github.com/ISSMteam/ISSM/
   Documentation: https://issmteam.github.io/ISSM-Documentation/

   starting model processor 
   creating datasets for analysis EsaAnalysis
   updating elements and materials for control parameters
   updating elements and materials for uncertainty quantification
   creating output definitions
   done with model processor 
   Processing finite element model of analysis EsaAnalysis:
      toolkits Options set for analysis: EsaAnalysis
      configuring element and loads
      Configuring elements...
      Configuring loads...
      Configuring materials...
      Configuring inputs...
      detecting active vertices
      resolving node constraints
      creating nodal degrees of freedom
   Renumbering degrees of freedom
call computational core:
   computing elastic adjustment
      toolkits Options set for analysis: EsaAnalysis
   computing elastic geodetic core
write lock file:

   FemModel initialization elapsed time:   2.22584
   Total Core solution elapsed time:       0.0792103
   Linear solver elapsed time:             0       (0%)

   Total elapsed time: 0 hrs 0 min 2 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 9e-16   <   1e-13 test id: 2112 test name: Esa2Dsurface field: EsaUmotion
SUCCESS difference: 1.8e-15 <   4e-13 test id: 2112 test name: Esa2Dsurface field: EsaNmotion
SUCCESS difference: 8.9e-15 <   3e-12 test id: 2112 test name: Esa2Dsurface field: EsaEmotion
SUCCESS difference: 1.2e-15 <   3e-13 test id: 2112 test name: Esa2Dsurface field: EsaXmotion
SUCCESS difference: 1.7e-15 <   3e-13 test id: 2112 test name: Esa2Dsurface field: EsaYmotion
SUCCESS difference: 7.2e-16 <   3e-13 test id: 2112 test name: Esa2Dsurface field: EsaGravitationalAcceleration
----------------finished:2112-----------------------
----------------starting:2113-----------------------
checking model consistency
marshalling file /home/jenkins/workspace/Debian_Linux-Solid_Earth//execution/test2113-07-16-2026-13-23-43-1532735/test2113.bin
launching solution sequence


Ice-sheet and Sea-level System Model (ISSM) version 2026.2
          GitHub: https://github.com/ISSMteam/ISSM/
   Documentation: https://issmteam.github.io/ISSM-Documentation/

   starting model processor 
   creating datasets for analysis EsaAnalysis
   updating elements and materials for control parameters
   updating elements and materials for uncertainty quantification
   creating output definitions
   done with model processor 
   Processing finite element model of analysis EsaAnalysis:
      toolkits Options set for analysis: EsaAnalysis
      configuring element and loads
      Configuring elements...
      Configuring loads...
      Configuring materials...
      Configuring inputs...
      detecting active vertices
      resolving node constraints
      creating nodal degrees of freedom
   Renumbering degrees of freedom
call computational core:
   computing elastic adjustment
      toolkits Options set for analysis: EsaAnalysis
   computing elastic geodetic core
write lock file:

   FemModel initialization elapsed time:   2.20918
   Total Core solution elapsed time:       0.015941
   Linear solver elapsed time:             0       (0%)

   Total elapsed time: 0 hrs 0 min 2 sec
WARNING! There are options you set that were not used!
WARNING! could be spelling mistake, etc!
There are 7 unused database options. They are:
Option left: name:-ksp_type value: preonly source: code
Option left: name:-mat_mumps_icntl_14 value: 120 source: code
Option left: name:-mat_mumps_icntl_28 value: 2 source: code
Option left: name:-mat_mumps_icntl_29 value: 2 source: code
Option left: name:-mat_type value: mpiaij source: code
Option left: name:-pc_factor_mat_solver_type value: mumps source: code
Option left: name:-pc_type value: lu source: code
loading results from cluster
SUCCESS difference: 2e-15   <   1e-13 test id: 2113 test name: Esa2Dsurface field: EsaUmotion
SUCCESS difference: 3.2e-15 <   2e-13 test id: 2113 test name: Esa2Dsurface field: EsaNmotion
SUCCESS difference: 4.2e-15 <   2e-13 test id: 2113 test name: Esa2Dsurface field: EsaEmotion
SUCCESS difference: 1.8e-15 <   2e-13 test id: 2113 test name: Esa2Dsurface field: EsaGravitationalAcceleration
----------------finished:2113-----------------------
MATLABEXITEDCORRECTLY
-----------End of matlab_log.log-----------
Build step 'Execute shell' marked build as failure
Recording test results
Finished: FAILURE