Entering DMUMPS 5.9.0 from C interface with JOB, N, NNZ = 1 1391349 32961525
executing #MPI = 1 and #OMP = 1
=================================================
MUMPS compiled with option -Dmetis
MUMPS compiled with option -Dpord
MUMPS compiled with option -Dptscotch
MUMPS compiled with option -Dscotch
This MUMPS version includes code for mixed precision BLR including memory accessors during solve
=================================================
L D L^T Solver for general symmetric matrices
Type of parallelism: Working host
****** ANALYSIS STEP ********
Processing a graph of size: 1391349
Average density of rows/columns = 45
Ordering based on METIS
ELAPSED TIME SPENT IN METIS reordering = 8.3783
SYMBOLIC based on column counts
ELAPSED TIME IN symbolic factorization = 0.4990
Leaving analysis phase with ...
INFOG(1) = 0
INFOG(2) = 0
-- (20) Number of entries in factors (estim.) = 2796208095
-- (3) Real space for factors (estimated) = 2847298516
-- (4) Integer space for factors (estimated) = 18711200
-- (5) Maximum frontal size (estimated) = 25827
-- (6) Number of nodes in the tree = 32938
-- (32) Type of analysis effectively used = 1
-- (7) Ordering option effectively used = 5
ICNTL (6) Maximum transversal option = 0
ICNTL (7) Pivot order option = 7
ICNTL(12) Ordering symmetric indef. matrices = 1
ICNTL(13) Parallelism/splitting of root node = 0
ICNTL(14) Percentage of memory relaxation = 30
ICNTL(15) Analysis by block effectively used = 0
ICNTL(18) Distributed input matrix (on if >0) = 0
ICNTL(32) Forward elimination during facto. = 0
ICNTL(35) BLR activation = 0
ICNTL(48) Tree based multithreading (effective)= 0
ICNTL(58) Symbolic factorization option = 2
Number of level 2 nodes = 0
Number of split nodes = 0
RINFOG(1) Operations during elimination (estim)= 2.969D+13
MEMORY ESTIMATIONS ...
Estimations with standard Full-Rank (FR) factorization:
Total space in MBytes, IC factorization (INFOG(17)): 35168
Total space in MBytes, OOC factorization (INFOG(27)): 8787
Elapsed time in analysis driver= 9.4849
Analysis time by clock_gettime(): 9.485 s
Entering DMUMPS 5.9.0 from C interface with JOB, N, NNZ = 7 1391349 32961525
executing #MPI = 1 and #OMP = 1
Elapsed time in save structure driver= 0.0003
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
On return from DMUMPS, INFOG(1)= -71
On return from DMUMPS, INFOG(2)= 0
PRE FACTO START LPROF----------------------
Entering DMUMPS 5.9.0 from C interface with JOB, N, NNZ = 2 1391349 32961525
executing #MPI = 1 and #OMP = 1
****** FACTORIZATION STEP ********
GLOBAL STATISTICS PRIOR NUMERICAL FACTORIZATION ...
Number of working processes = 1
ICNTL(22) Out-of-core option = 0
ICNTL(35) BLR activation (eff. choice) = 0
ICNTL(37) BLR CB compression (eff. choice) = 0
ICNTL(40) Mixed/adaptive precision BLR = 0
ICNTL(49) Compact workarray S (end facto.) = 0
ICNTL(56) Effective value during facto. = 0
ICNTL(14) Memory relaxation = 30
INFOG(3) Real space for factors (estimated)= 2847298516
INFOG(4) Integer space for factors (estim.)= 18711200
Maximum frontal size (estimated) = 25827
Number of nodes in the tree = 32938
ICNTL(23) Memory allowed (value on host) = 0
Sum over all procs = 0
Memory provided by user, sum of LWK_USER = 0
Effective threshold for pivoting, CNTL(1) = 0.1000D-01
* [MAQAO] Info: STARTING COUNTERS (kairoscomp35)
[0m
Statistics on the scaling phase
Elapsed time for scaling = 0.5462
Max difference from 1 after scaling the entries for ONE-NORM (option 7/8) = 0.28D+00
Effective size of S (based on INFO(39))= 4325598925
Redistrib: total data local/sent = 0 0
Elapsed time to reformat/distribute matrix = 0.4276
Allocated buffers
------------------
Size of reception buffer in bytes ...... = 237684
Size of async. emission buffer (bytes).. = 953103
Small emission buffer (bytes) .......... = 20
** Memory allocated, total in Mbytes (INFOG(19)): 35168
** Memory effectively used, total in Mbytes (INFOG(22)): 27183
Elapsed time for factorization = 412.5396
Leaving factorization with ...
RINFOG (2) Operations in node assembly = 9.029D+09
------ (3) Operations in node elimination = 2.969D+13
ICNTL (8) Scaling effectively used = 7
INFOG (9) Real space for factors = 2847298516
INFOG (10) Integer space for factors = 18711200
INFOG (11) Maximum front size = 25827
INFOG (29) Number of entries in factors = 2796208095
INFOG (12) Number of negative pivots = 0
INFOG (13) Number of delayed pivots = 0
Number of 2x2 pivots in type 1 nodes = 0
Number of 2x2 pivots in type 2 nodes = 0
RINFOG(19) Smallest pivot WITH perturbed pivots = 1.403D-03
RINFOG(20) Smallest pivot WITHOUT perturbed pivots = 1.403D-03
RINFOG(21) Largest pivot in absolute value = 1.000D+00
INFOG (24) Effective value of ICNTL(12) = 1
INFOG (14) Number of memory compress = 0
Elapsed time in factorization driver = 413.5205
Factorization time by clock_gettime(): 413.5212 s
Entering DMUMPS 5.9.0 from C interface with JOB = -2
executing #MPI = 1 and #OMP = 1
Entering DMUMPS 5.9.0 from C interface with JOB, N, NNZ = 1 1391349 32961525
executing #MPI = 2 and #OMP = 1
=================================================
MUMPS compiled with option -Dmetis
MUMPS compiled with option -Dpord
MUMPS compiled with option -Dptscotch
MUMPS compiled with option -Dscotch
This MUMPS version includes code for mixed precision BLR including memory accessors during solve
=================================================
L D L^T Solver for general symmetric matrices
Type of parallelism: Working host
****** ANALYSIS STEP ********
Processing a graph of size: 1391349
Average density of rows/columns = 45
Ordering based on METIS
ELAPSED TIME SPENT IN METIS reordering = 8.3696
SYMBOLIC based on column counts
ELAPSED TIME IN symbolic factorization = 0.4989
A root of estimated size 15552 has been selected for Scalapack.
Leaving analysis phase with ...
INFOG(1) = 0
INFOG(2) = 0
-- (20) Number of entries in factors (estim.) = 2796208095
-- (3) Real space for factors (estimated) = 2956137604
-- (4) Integer space for factors (estimated) = 18766632
-- (5) Maximum frontal size (estimated) = 25827
-- (6) Number of nodes in the tree = 32938
-- (32) Type of analysis effectively used = 1
-- (7) Ordering option effectively used = 5
ICNTL (6) Maximum transversal option = 0
ICNTL (7) Pivot order option = 7
ICNTL(12) Ordering symmetric indef. matrices = 1
ICNTL(13) Parallelism/splitting of root node = 0
ICNTL(14) Percentage of memory relaxation = 30
ICNTL(15) Analysis by block effectively used = 0
ICNTL(18) Distributed input matrix (on if >0) = 0
ICNTL(32) Forward elimination during facto. = 0
ICNTL(35) BLR activation = 0
ICNTL(48) Tree based multithreading (effective)= 0
ICNTL(58) Symbolic factorization option = 2
Number of level 2 nodes = 3
Number of split nodes = 0
RINFOG(1) Operations during elimination (estim)= 3.095D+13
MEMORY ESTIMATIONS ...
Estimations with standard Full-Rank (FR) factorization:
Maximum estim. space in Mbytes, IC facto. (INFOG(16)): 23229
Total space in MBytes, IC factorization (INFOG(17)): 44887
Maximum estim. space in Mbytes, OOC facto. (INFOG(26)): 10151
Total space in MBytes, OOC factorization (INFOG(27)): 20150
Elapsed time in analysis driver= 9.5802
Analysis time by clock_gettime(): 9.581 s
Entering DMUMPS 5.9.0 from C interface with JOB, N, NNZ = 7 1391349 32961525
executing #MPI = 2 and #OMP = 1
Elapsed time in save structure driver= 0.0004
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
On return from DMUMPS, INFOG(1)= -71
On return from DMUMPS, INFOG(2)= 0
PRE FACTO START LPROF----------------------
Entering DMUMPS 5.9.0 from C interface with JOB, N, NNZ = 2 1391349 32961525
executing #MPI = 2 and #OMP = 1
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
****** FACTORIZATION STEP ********
GLOBAL STATISTICS PRIOR NUMERICAL FACTORIZATION ...
Number of working processes = 2
ICNTL(22) Out-of-core option = 0
ICNTL(35) BLR activation (eff. choice) = 0
ICNTL(37) BLR CB compression (eff. choice) = 0
ICNTL(40) Mixed/adaptive precision BLR = 0
ICNTL(49) Compact workarray S (end facto.) = 0
ICNTL(56) Effective value during facto. = 0
ICNTL(14) Memory relaxation = 30
INFOG(3) Real space for factors (estimated)= 2956137604
INFOG(4) Integer space for factors (estim.)= 18766632
Maximum frontal size (estimated) = 25827
Number of nodes in the tree = 32938
ICNTL(23) Memory allowed (value on host) = 0
Sum over all procs = 0
Memory provided by user, sum of LWK_USER = 0
Effective threshold for pivoting, CNTL(1) = 0.1000D-01
* [MAQAO] Info: STARTING COUNTERS (kairoscomp35)
[0m
Statistics on the scaling phase
Elapsed time for scaling = 0.5476
Max difference from 1 after scaling the entries for ONE-NORM (option 7/8) = 0.28D+00
Average Effective size of S (based on INFO(39))= 2739664588
Elapsed time to reformat/distribute matrix = 0.6483
Allocated buffers
------------------
Size of reception buffer in bytes ...... = 45298052
Size of async. emission buffer (bytes).. = 181645177
Small emission buffer (bytes) .......... = 268
** Memory allocated, max in Mbytes (INFOG(18)): 23245
** Memory allocated, total in Mbytes (INFOG(19)): 44922
** Memory effectively used, max in Mbytes (INFOG(21)): 16800
** Memory effectively used, total in Mbytes (INFOG(22)): 33052
Elapsed time to process root node = 15.9527
Elapsed time for factorization = 231.5824
Leaving factorization with ...
RINFOG (2) Operations in node assembly = 9.029D+09
------ (3) Operations in node elimination = 3.095D+13
ICNTL (8) Scaling effectively used = 7
INFOG (9) Real space for factors = 2956137604
INFOG (10) Integer space for factors = 18766674
INFOG (11) Maximum front size = 25827
INFOG (29) Number of entries in factors = 2796208095
INFOG (12) Number of negative pivots = 0
INFOG (13) Number of delayed pivots = 0
Number of 2x2 pivots in type 1 nodes = 0
Number of 2x2 pivots in type 2 nodes = 0
RINFOG(19) Smallest pivot WITH perturbed pivots = 1.403D-03
RINFOG(20) Smallest pivot WITHOUT perturbed pivots = 1.403D-03
RINFOG(21) Largest pivot in absolute value = 1.000D+00
INFOG (24) Effective value of ICNTL(12) = 1
INFOG (14) Number of memory compress = 0
Elapsed time in factorization driver = 232.7859
Factorization time by clock_gettime(): 232.7866 s
Entering DMUMPS 5.9.0 from C interface with JOB = -2
executing #MPI = 2 and #OMP = 1
Entering DMUMPS 5.9.0 from C interface with JOB, N, NNZ = 1 1391349 32961525
executing #MPI = 4 and #OMP = 1
=================================================
MUMPS compiled with option -Dmetis
MUMPS compiled with option -Dpord
MUMPS compiled with option -Dptscotch
MUMPS compiled with option -Dscotch
This MUMPS version includes code for mixed precision BLR including memory accessors during solve
=================================================
L D L^T Solver for general symmetric matrices
Type of parallelism: Working host
****** ANALYSIS STEP ********
Processing a graph of size: 1391349
Average density of rows/columns = 45
Ordering based on METIS
ELAPSED TIME SPENT IN METIS reordering = 8.3919
SYMBOLIC based on column counts
ELAPSED TIME IN symbolic factorization = 0.5008
A root of estimated size 15552 has been selected for Scalapack.
Leaving analysis phase with ...
INFOG(1) = 0
INFOG(2) = 0
-- (20) Number of entries in factors (estim.) = 2796208095
-- (3) Real space for factors (estimated) = 2956117177
-- (4) Integer space for factors (estimated) = 19240562
-- (5) Maximum frontal size (estimated) = 25827
-- (6) Number of nodes in the tree = 32938
-- (32) Type of analysis effectively used = 1
-- (7) Ordering option effectively used = 5
ICNTL (6) Maximum transversal option = 0
ICNTL (7) Pivot order option = 7
ICNTL(12) Ordering symmetric indef. matrices = 1
ICNTL(13) Parallelism/splitting of root node = 0
ICNTL(14) Percentage of memory relaxation = 30
ICNTL(15) Analysis by block effectively used = 0
ICNTL(18) Distributed input matrix (on if >0) = 0
ICNTL(32) Forward elimination during facto. = 0
ICNTL(35) BLR activation = 0
ICNTL(48) Tree based multithreading (effective)= 0
ICNTL(58) Symbolic factorization option = 2
Number of level 2 nodes = 14
Number of split nodes = 0
RINFOG(1) Operations during elimination (estim)= 3.095D+13
MEMORY ESTIMATIONS ...
Estimations with standard Full-Rank (FR) factorization:
Maximum estim. space in Mbytes, IC facto. (INFOG(16)): 15902
Total space in MBytes, IC factorization (INFOG(17)): 54214
Maximum estim. space in Mbytes, OOC facto. (INFOG(26)): 9567
Total space in MBytes, OOC factorization (INFOG(27)): 31233
Elapsed time in analysis driver= 9.6293
Analysis time by clock_gettime(): 9.630 s
Entering DMUMPS 5.9.0 from C interface with JOB, N, NNZ = 7 1391349 32961525
executing #MPI = 4 and #OMP = 1
Elapsed time in save structure driver= 0.0006
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
On return from DMUMPS, INFOG(1)= -71
On return from DMUMPS, INFOG(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
Entering DMUMPS 5.9.0 from C interface with JOB, N, NNZ = 2 1391349 32961525
executing #MPI = 4 and #OMP = 1
****** FACTORIZATION STEP ********
GLOBAL STATISTICS PRIOR NUMERICAL FACTORIZATION ...
Number of working processes = 4
ICNTL(22) Out-of-core option = 0
ICNTL(35) BLR activation (eff. choice) = 0
ICNTL(37) BLR CB compression (eff. choice) = 0
ICNTL(40) Mixed/adaptive precision BLR = 0
ICNTL(49) Compact workarray S (end facto.) = 0
ICNTL(56) Effective value during facto. = 0
ICNTL(14) Memory relaxation = 30
INFOG(3) Real space for factors (estimated)= 2956117177
INFOG(4) Integer space for factors (estim.)= 19240562
Maximum frontal size (estimated) = 25827
Number of nodes in the tree = 32938
ICNTL(23) Memory allowed (value on host) = 0
Sum over all procs = 0
Memory provided by user, sum of LWK_USER = 0
Effective threshold for pivoting, CNTL(1) = 0.1000D-01
* [MAQAO] Info: STARTING COUNTERS (kairoscomp35)
[0m
Statistics on the scaling phase
Elapsed time for scaling = 0.5496
Max difference from 1 after scaling the entries for ONE-NORM (option 7/8) = 0.28D+00
Average Effective size of S (based on INFO(39))= 1650787221
Elapsed time to reformat/distribute matrix = 0.5957
Allocated buffers
------------------
Size of reception buffer in bytes ...... = 35507528
Size of async. emission buffer (bytes).. = 142385190
Small emission buffer (bytes) .......... = 824
** Memory allocated, max in Mbytes (INFOG(18)): 16078
** Memory allocated, total in Mbytes (INFOG(19)): 54568
** Memory effectively used, max in Mbytes (INFOG(21)): 10231
** Memory effectively used, total in Mbytes (INFOG(22)): 36089
Elapsed time to process root node = 9.5157
Elapsed time for factorization = 175.6883
Leaving factorization with ...
RINFOG (2) Operations in node assembly = 9.041D+09
------ (3) Operations in node elimination = 3.095D+13
ICNTL (8) Scaling effectively used = 7
INFOG (9) Real space for factors = 2956137604
INFOG (10) Integer space for factors = 19065019
INFOG (11) Maximum front size = 25827
INFOG (29) Number of entries in factors = 2796208095
INFOG (12) Number of negative pivots = 0
INFOG (13) Number of delayed pivots = 0
Number of 2x2 pivots in type 1 nodes = 0
Number of 2x2 pivots in type 2 nodes = 0
RINFOG(19) Smallest pivot WITH perturbed pivots = 1.403D-03
RINFOG(20) Smallest pivot WITHOUT perturbed pivots = 1.403D-03
RINFOG(21) Largest pivot in absolute value = 1.000D+00
INFOG (24) Effective value of ICNTL(12) = 1
INFOG (14) Number of memory compress = 2
Elapsed time in factorization driver = 176.8408
Factorization time by clock_gettime(): 176.8483 s
Entering DMUMPS 5.9.0 from C interface with JOB = -2
executing #MPI = 4 and #OMP = 1
Entering DMUMPS 5.9.0 from C interface with JOB, N, NNZ = 1 1391349 32961525
executing #MPI = 8 and #OMP = 1
=================================================
MUMPS compiled with option -Dmetis
MUMPS compiled with option -Dpord
MUMPS compiled with option -Dptscotch
MUMPS compiled with option -Dscotch
This MUMPS version includes code for mixed precision BLR including memory accessors during solve
=================================================
L D L^T Solver for general symmetric matrices
Type of parallelism: Working host
****** ANALYSIS STEP ********
Processing a graph of size: 1391349
Average density of rows/columns = 45
Ordering based on METIS
ELAPSED TIME SPENT IN METIS reordering = 8.4194
SYMBOLIC based on column counts
ELAPSED TIME IN symbolic factorization = 0.4969
A root of estimated size 15552 has been selected for Scalapack.
Leaving analysis phase with ...
INFOG(1) = 0
INFOG(2) = 0
-- (20) Number of entries in factors (estim.) = 2796208095
-- (3) Real space for factors (estimated) = 2956109325
-- (4) Integer space for factors (estimated) = 19689138
-- (5) Maximum frontal size (estimated) = 25827
-- (6) Number of nodes in the tree = 32938
-- (32) Type of analysis effectively used = 1
-- (7) Ordering option effectively used = 5
ICNTL (6) Maximum transversal option = 0
ICNTL (7) Pivot order option = 7
ICNTL(12) Ordering symmetric indef. matrices = 1
ICNTL(13) Parallelism/splitting of root node = 0
ICNTL(14) Percentage of memory relaxation = 30
ICNTL(15) Analysis by block effectively used = 0
ICNTL(18) Distributed input matrix (on if >0) = 0
ICNTL(32) Forward elimination during facto. = 0
ICNTL(35) BLR activation = 0
ICNTL(48) Tree based multithreading (effective)= 0
ICNTL(58) Symbolic factorization option = 2
Number of level 2 nodes = 29
Number of split nodes = 0
RINFOG(1) Operations during elimination (estim)= 3.095D+13
MEMORY ESTIMATIONS ...
Estimations with standard Full-Rank (FR) factorization:
Maximum estim. space in Mbytes, IC facto. (INFOG(16)): 9359
Total space in MBytes, IC factorization (INFOG(17)): 64473
Maximum estim. space in Mbytes, OOC facto. (INFOG(26)): 6856
Total space in MBytes, OOC factorization (INFOG(27)): 44401
Elapsed time in analysis driver= 9.6754
Analysis time by clock_gettime(): 9.676 s
Entering DMUMPS 5.9.0 from C interface with JOB, N, NNZ = 7 1391349 32961525
executing #MPI = 8 and #OMP = 1
Elapsed time in save structure driver= 0.0010
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
On return from DMUMPS, INFOG(1)= -71
On return from DMUMPS, INFOG(2)= 0
PRE FACTO START LPROF----------------------
Entering DMUMPS 5.9.0 from C interface with JOB, N, NNZ = 2 1391349 32961525
executing #MPI = 8 and #OMP = 1
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
* [MAQAO] Info: STARTING COUNTERS (kairoscomp35)
[0m
****** FACTORIZATION STEP ********
GLOBAL STATISTICS PRIOR NUMERICAL FACTORIZATION ...
Number of working processes = 8
ICNTL(22) Out-of-core option = 0
ICNTL(35) BLR activation (eff. choice) = 0
ICNTL(37) BLR CB compression (eff. choice) = 0
ICNTL(40) Mixed/adaptive precision BLR = 0
ICNTL(49) Compact workarray S (end facto.) = 0
ICNTL(56) Effective value during facto. = 0
ICNTL(14) Memory relaxation = 30
INFOG(3) Real space for factors (estimated)= 2956109325
INFOG(4) Integer space for factors (estim.)= 19689138
Maximum frontal size (estimated) = 25827
Number of nodes in the tree = 32938
ICNTL(23) Memory allowed (value on host) = 0
Sum over all procs = 0
Memory provided by user, sum of LWK_USER = 0
Effective threshold for pivoting, CNTL(1) = 0.1000D-01
Statistics on the scaling phase
Elapsed time for scaling = 0.5459
Max difference from 1 after scaling the entries for ONE-NORM (option 7/8) = 0.28D+00
Average Effective size of S (based on INFO(39))= 972375582
Elapsed time to reformat/distribute matrix = 0.5903
Allocated buffers
------------------
Size of reception buffer in bytes ...... = 35507620
Size of async. emission buffer (bytes).. = 142385558
Small emission buffer (bytes) .......... = 2276
** Memory allocated, max in Mbytes (INFOG(18)): 9461
** Memory allocated, total in Mbytes (INFOG(19)): 64737
** Memory effectively used, max in Mbytes (INFOG(21)): 6791
** Memory effectively used, total in Mbytes (INFOG(22)): 39875
Elapsed time to process root node = 4.7921
Elapsed time for factorization = 111.6682
Leaving factorization with ...
RINFOG (2) Operations in node assembly = 9.083D+09
------ (3) Operations in node elimination = 3.095D+13
ICNTL (8) Scaling effectively used = 7
INFOG (9) Real space for factors = 2956137604
INFOG (10) Integer space for factors = 19369177
INFOG (11) Maximum front size = 25827
INFOG (29) Number of entries in factors = 2796208095
INFOG (12) Number of negative pivots = 0
INFOG (13) Number of delayed pivots = 0
Number of 2x2 pivots in type 1 nodes = 0
Number of 2x2 pivots in type 2 nodes = 0
RINFOG(19) Smallest pivot WITH perturbed pivots = 1.403D-03
RINFOG(20) Smallest pivot WITHOUT perturbed pivots = 1.403D-03
RINFOG(21) Largest pivot in absolute value = 1.000D+00
INFOG (24) Effective value of ICNTL(12) = 1
INFOG (14) Number of memory compress = 8
Elapsed time in factorization driver = 112.8257
Factorization time by clock_gettime(): 112.8268 s
Entering DMUMPS 5.9.0 from C interface with JOB = -2
executing #MPI = 8 and #OMP = 1
Entering DMUMPS 5.9.0 from C interface with JOB, N, NNZ = 1 1391349 32961525
executing #MPI = 16 and #OMP = 1
=================================================
MUMPS compiled with option -Dmetis
MUMPS compiled with option -Dpord
MUMPS compiled with option -Dptscotch
MUMPS compiled with option -Dscotch
This MUMPS version includes code for mixed precision BLR including memory accessors during solve
=================================================
L D L^T Solver for general symmetric matrices
Type of parallelism: Working host
****** ANALYSIS STEP ********
Processing a graph of size: 1391349
Average density of rows/columns = 45
Ordering based on METIS
ELAPSED TIME SPENT IN METIS reordering = 8.4358
SYMBOLIC based on column counts
ELAPSED TIME IN symbolic factorization = 0.5050
A root of estimated size 15552 has been selected for Scalapack.
Leaving analysis phase with ...
INFOG(1) = 0
INFOG(2) = 0
-- (20) Number of entries in factors (estim.) = 2796208095
-- (3) Real space for factors (estimated) = 2956055557
-- (4) Integer space for factors (estimated) = 20051299
-- (5) Maximum frontal size (estimated) = 25827
-- (6) Number of nodes in the tree = 32938
-- (32) Type of analysis effectively used = 1
-- (7) Ordering option effectively used = 5
ICNTL (6) Maximum transversal option = 0
ICNTL (7) Pivot order option = 7
ICNTL(12) Ordering symmetric indef. matrices = 1
ICNTL(13) Parallelism/splitting of root node = 0
ICNTL(14) Percentage of memory relaxation = 30
ICNTL(15) Analysis by block effectively used = 0
ICNTL(18) Distributed input matrix (on if >0) = 0
ICNTL(32) Forward elimination during facto. = 0
ICNTL(35) BLR activation = 0
ICNTL(48) Tree based multithreading (effective)= 0
ICNTL(58) Symbolic factorization option = 2
Number of level 2 nodes = 40
Number of split nodes = 0
RINFOG(1) Operations during elimination (estim)= 3.095D+13
MEMORY ESTIMATIONS ...
Estimations with standard Full-Rank (FR) factorization:
Maximum estim. space in Mbytes, IC facto. (INFOG(16)): 7592
Total space in MBytes, IC factorization (INFOG(17)): 84926
Maximum estim. space in Mbytes, OOC facto. (INFOG(26)): 5857
Total space in MBytes, OOC factorization (INFOG(27)): 65414
Elapsed time in analysis driver= 9.6714
Analysis time by clock_gettime(): 9.672 s
Entering DMUMPS 5.9.0 from C interface with JOB, N, NNZ = 7 1391349 32961525
executing #MPI = 16 and #OMP = 1
Elapsed time in save structure driver= 0.0051
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
On return from DMUMPS, INFOG(1)= -71
On return from DMUMPS, INFOG(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
Entering DMUMPS 5.9.0 from C interface with JOB, N, NNZ = 2 1391349 32961525
executing #MPI = 16 and #OMP = 1
* [MAQAO] Info: STARTING COUNTERS (kairoscomp35)
[0m
****** FACTORIZATION STEP ********
GLOBAL STATISTICS PRIOR NUMERICAL FACTORIZATION ...
Number of working processes = 16
ICNTL(22) Out-of-core option = 0
ICNTL(35) BLR activation (eff. choice) = 0
ICNTL(37) BLR CB compression (eff. choice) = 0
ICNTL(40) Mixed/adaptive precision BLR = 0
ICNTL(49) Compact workarray S (end facto.) = 0
ICNTL(56) Effective value during facto. = 0
ICNTL(14) Memory relaxation = 30
INFOG(3) Real space for factors (estimated)= 2956055557
INFOG(4) Integer space for factors (estim.)= 20051299
Maximum frontal size (estimated) = 25827
Number of nodes in the tree = 32938
ICNTL(23) Memory allowed (value on host) = 0
Sum over all procs = 0
Memory provided by user, sum of LWK_USER = 0
Effective threshold for pivoting, CNTL(1) = 0.1000D-01
Statistics on the scaling phase
Elapsed time for scaling = 0.5471
Max difference from 1 after scaling the entries for ONE-NORM (option 7/8) = 0.28D+00
Average Effective size of S (based on INFO(39))= 631147290
Elapsed time to reformat/distribute matrix = 0.6136
Allocated buffers
------------------
Size of reception buffer in bytes ...... = 38100880
Size of async. emission buffer (bytes).. = 152784528
Small emission buffer (bytes) .......... = 6720
** Memory allocated, max in Mbytes (INFOG(18)): 7605
** Memory allocated, total in Mbytes (INFOG(19)): 85136
** Memory effectively used, max in Mbytes (INFOG(21)): 5342
** Memory effectively used, total in Mbytes (INFOG(22)): 49946
Elapsed time to process root node = 2.9687
Elapsed time for factorization = 64.1182
Leaving factorization with ...
RINFOG (2) Operations in node assembly = 9.057D+09
------ (3) Operations in node elimination = 3.095D+13
ICNTL (8) Scaling effectively used = 7
INFOG (9) Real space for factors = 2956137604
INFOG (10) Integer space for factors = 19606438
INFOG (11) Maximum front size = 25827
INFOG (29) Number of entries in factors = 2796208095
INFOG (12) Number of negative pivots = 0
INFOG (13) Number of delayed pivots = 0
Number of 2x2 pivots in type 1 nodes = 0
Number of 2x2 pivots in type 2 nodes = 0
RINFOG(19) Smallest pivot WITH perturbed pivots = 1.403D-03
RINFOG(20) Smallest pivot WITHOUT perturbed pivots = 1.403D-03
RINFOG(21) Largest pivot in absolute value = 1.000D+00
INFOG (24) Effective value of ICNTL(12) = 1
INFOG (14) Number of memory compress = 4
Elapsed time in factorization driver = 65.2917
Factorization time by clock_gettime(): 65.2932 s
Entering DMUMPS 5.9.0 from C interface with JOB = -2
executing #MPI = 16 and #OMP = 1
Entering DMUMPS 5.9.0 from C interface with JOB, N, NNZ = 1 1391349 32961525
executing #MPI = 32 and #OMP = 1
=================================================
MUMPS compiled with option -Dmetis
MUMPS compiled with option -Dpord
MUMPS compiled with option -Dptscotch
MUMPS compiled with option -Dscotch
This MUMPS version includes code for mixed precision BLR including memory accessors during solve
=================================================
L D L^T Solver for general symmetric matrices
Type of parallelism: Working host
****** ANALYSIS STEP ********
Processing a graph of size: 1391349
Average density of rows/columns = 45
Ordering based on METIS
ELAPSED TIME SPENT IN METIS reordering = 8.7021
SYMBOLIC based on column counts
ELAPSED TIME IN symbolic factorization = 0.5694
A root of estimated size 15552 has been selected for Scalapack.
Leaving analysis phase with ...
INFOG(1) = 0
INFOG(2) = 0
-- (20) Number of entries in factors (estim.) = 2796208095
-- (3) Real space for factors (estimated) = 2955751451
-- (4) Integer space for factors (estimated) = 21361546
-- (5) Maximum frontal size (estimated) = 25827
-- (6) Number of nodes in the tree = 32938
-- (32) Type of analysis effectively used = 1
-- (7) Ordering option effectively used = 5
ICNTL (6) Maximum transversal option = 0
ICNTL (7) Pivot order option = 7
ICNTL(12) Ordering symmetric indef. matrices = 1
ICNTL(13) Parallelism/splitting of root node = 0
ICNTL(14) Percentage of memory relaxation = 30
ICNTL(15) Analysis by block effectively used = 0
ICNTL(18) Distributed input matrix (on if >0) = 0
ICNTL(32) Forward elimination during facto. = 0
ICNTL(35) BLR activation = 0
ICNTL(48) Tree based multithreading (effective)= 0
ICNTL(58) Symbolic factorization option = 2
Number of level 2 nodes = 63
Number of split nodes = 0
RINFOG(1) Operations during elimination (estim)= 3.095D+13
MEMORY ESTIMATIONS ...
Estimations with standard Full-Rank (FR) factorization:
Maximum estim. space in Mbytes, IC facto. (INFOG(16)): 4088
Total space in MBytes, IC factorization (INFOG(17)): 84392
Maximum estim. space in Mbytes, OOC facto. (INFOG(26)): 3053
Total space in MBytes, OOC factorization (INFOG(27)): 64791
Elapsed time in analysis driver= 10.1086
Analysis time by clock_gettime(): 10.110 s
Entering DMUMPS 5.9.0 from C interface with JOB, N, NNZ = 7 1391349 32961525
executing #MPI = 32 and #OMP = 1
Elapsed time in save structure driver= 0.0149
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
On return from DMUMPS, INFOG(1)= -71
On return from DMUMPS, INFOG(2)= 0
PRE FACTO START LPROF----------------------
Entering DMUMPS 5.9.0 from C interface with JOB, N, NNZ = 2 1391349 32961525
executing #MPI = 32 and #OMP = 1
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
* [MAQAO] Info: STARTING COUNTERS (kairoscomp35)
[0m
****** FACTORIZATION STEP ********
GLOBAL STATISTICS PRIOR NUMERICAL FACTORIZATION ...
Number of working processes = 32
ICNTL(22) Out-of-core option = 0
ICNTL(35) BLR activation (eff. choice) = 0
ICNTL(37) BLR CB compression (eff. choice) = 0
ICNTL(40) Mixed/adaptive precision BLR = 0
ICNTL(49) Compact workarray S (end facto.) = 0
ICNTL(56) Effective value during facto. = 0
ICNTL(14) Memory relaxation = 30
INFOG(3) Real space for factors (estimated)= 2955751451
INFOG(4) Integer space for factors (estim.)= 21361546
Maximum frontal size (estimated) = 25827
Number of nodes in the tree = 32938
ICNTL(23) Memory allowed (value on host) = 0
Sum over all procs = 0
Memory provided by user, sum of LWK_USER = 0
Effective threshold for pivoting, CNTL(1) = 0.1000D-01
Statistics on the scaling phase
Elapsed time for scaling = 0.5536
Max difference from 1 after scaling the entries for ONE-NORM (option 7/8) = 0.28D+00
Average Effective size of S (based on INFO(39))= 308478260
Elapsed time to reformat/distribute matrix = 0.7492
Allocated buffers
------------------
Size of reception buffer in bytes ...... = 23402444
Size of async. emission buffer (bytes).. = 93843803
Small emission buffer (bytes) .......... = 23308
** Memory allocated, max in Mbytes (INFOG(18)): 4111
** Memory allocated, total in Mbytes (INFOG(19)): 84696
** Memory effectively used, max in Mbytes (INFOG(21)): 2898
** Memory effectively used, total in Mbytes (INFOG(22)): 46138
Elapsed time to process root node = 1.6101
Elapsed time for factorization = 34.6516
Leaving factorization with ...
RINFOG (2) Operations in node assembly = 9.043D+09
------ (3) Operations in node elimination = 3.095D+13
ICNTL (8) Scaling effectively used = 7
INFOG (9) Real space for factors = 2956137604
INFOG (10) Integer space for factors = 20285876
INFOG (11) Maximum front size = 25827
INFOG (29) Number of entries in factors = 2796208095
INFOG (12) Number of negative pivots = 0
INFOG (13) Number of delayed pivots = 0
Number of 2x2 pivots in type 1 nodes = 0
Number of 2x2 pivots in type 2 nodes = 0
RINFOG(19) Smallest pivot WITH perturbed pivots = 1.403D-03
RINFOG(20) Smallest pivot WITHOUT perturbed pivots = 1.403D-03
RINFOG(21) Largest pivot in absolute value = 1.000D+00
INFOG (24) Effective value of ICNTL(12) = 1
INFOG (14) Number of memory compress = 20
Elapsed time in factorization driver = 35.9703
Factorization time by clock_gettime(): 36.0035 s
Entering DMUMPS 5.9.0 from C interface with JOB = -2
executing #MPI = 32 and #OMP = 1
Entering DMUMPS 5.9.0 from C interface with JOB, N, NNZ = 1 1391349 32961525
executing #MPI = 64 and #OMP = 1
=================================================
MUMPS compiled with option -Dmetis
MUMPS compiled with option -Dpord
MUMPS compiled with option -Dptscotch
MUMPS compiled with option -Dscotch
This MUMPS version includes code for mixed precision BLR including memory accessors during solve
=================================================
L D L^T Solver for general symmetric matrices
Type of parallelism: Working host
****** ANALYSIS STEP ********
Processing a graph of size: 1391349
Average density of rows/columns = 45
Ordering based on METIS
ELAPSED TIME SPENT IN METIS reordering = 8.7506
SYMBOLIC based on column counts
ELAPSED TIME IN symbolic factorization = 0.5642
A root of estimated size 15552 has been selected for Scalapack.
Leaving analysis phase with ...
INFOG(1) = 0
INFOG(2) = 0
-- (20) Number of entries in factors (estim.) = 2796208095
-- (3) Real space for factors (estimated) = 2954117075
-- (4) Integer space for factors (estimated) = 23344626
-- (5) Maximum frontal size (estimated) = 25827
-- (6) Number of nodes in the tree = 32939
-- (32) Type of analysis effectively used = 1
-- (7) Ordering option effectively used = 5
ICNTL (6) Maximum transversal option = 0
ICNTL (7) Pivot order option = 7
ICNTL(12) Ordering symmetric indef. matrices = 1
ICNTL(13) Parallelism/splitting of root node = 0
ICNTL(14) Percentage of memory relaxation = 30
ICNTL(15) Analysis by block effectively used = 0
ICNTL(18) Distributed input matrix (on if >0) = 0
ICNTL(32) Forward elimination during facto. = 0
ICNTL(35) BLR activation = 0
ICNTL(48) Tree based multithreading (effective)= 0
ICNTL(58) Symbolic factorization option = 2
Number of level 2 nodes = 118
Number of split nodes = 1
RINFOG(1) Operations during elimination (estim)= 3.095D+13
MEMORY ESTIMATIONS ...
Estimations with standard Full-Rank (FR) factorization:
Maximum estim. space in Mbytes, IC facto. (INFOG(16)): 2136
Total space in MBytes, IC factorization (INFOG(17)): 80876
Maximum estim. space in Mbytes, OOC facto. (INFOG(26)): 1471
Total space in MBytes, OOC factorization (INFOG(27)): 63812
Elapsed time in analysis driver= 10.2114
Analysis time by clock_gettime(): 10.214 s
Entering DMUMPS 5.9.0 from C interface with JOB, N, NNZ = 7 1391349 32961525
executing #MPI = 64 and #OMP = 1
Elapsed time in save structure driver= 0.0323
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
On return from DMUMPS, INFOG(1)= -71
On return from DMUMPS, INFOG(2)= 0
PRE FACTO START LPROF----------------------
Entering DMUMPS 5.9.0 from C interface with JOB, N, NNZ = 2 1391349 32961525
executing #MPI = 64 and #OMP = 1
* [MAQAO] Info: STARTING COUNTERS (kairoscomp35)
[0m
****** FACTORIZATION STEP ********
GLOBAL STATISTICS PRIOR NUMERICAL FACTORIZATION ...
Number of working processes = 64
ICNTL(22) Out-of-core option = 0
ICNTL(35) BLR activation (eff. choice) = 0
ICNTL(37) BLR CB compression (eff. choice) = 0
ICNTL(40) Mixed/adaptive precision BLR = 0
ICNTL(49) Compact workarray S (end facto.) = 0
ICNTL(56) Effective value during facto. = 0
ICNTL(14) Memory relaxation = 30
INFOG(3) Real space for factors (estimated)= 2954117075
INFOG(4) Integer space for factors (estim.)= 23344626
Maximum frontal size (estimated) = 25827
Number of nodes in the tree = 32939
ICNTL(23) Memory allowed (value on host) = 0
Sum over all procs = 0
Memory provided by user, sum of LWK_USER = 0
Effective threshold for pivoting, CNTL(1) = 0.1000D-01
Statistics on the scaling phase
Elapsed time for scaling = 0.5567
Max difference from 1 after scaling the entries for ONE-NORM (option 7/8) = 0.28D+00
Average Effective size of S (based on INFO(39))= 143116552
Elapsed time to reformat/distribute matrix = 0.9944
Allocated buffers
------------------
Size of reception buffer in bytes ...... = 14688536
Size of async. emission buffer (bytes).. = 58901028
Small emission buffer (bytes) .......... = 87384
** Memory allocated, max in Mbytes (INFOG(18)): 2141
** Memory allocated, total in Mbytes (INFOG(19)): 81216
** Memory effectively used, max in Mbytes (INFOG(21)): 1642
** Memory effectively used, total in Mbytes (INFOG(22)): 46359
Elapsed time to process root node = 1.0633
Elapsed time for factorization = 20.1496
Leaving factorization with ...
RINFOG (2) Operations in node assembly = 9.220D+09
------ (3) Operations in node elimination = 3.095D+13
ICNTL (8) Scaling effectively used = 7
INFOG (9) Real space for factors = 2954855606
INFOG (10) Integer space for factors = 21442316
INFOG (11) Maximum front size = 25827
INFOG (29) Number of entries in factors = 2796208095
INFOG (12) Number of negative pivots = 0
INFOG (13) Number of delayed pivots = 0
Number of 2x2 pivots in type 1 nodes = 0
Number of 2x2 pivots in type 2 nodes = 0
RINFOG(19) Smallest pivot WITH perturbed pivots = 1.403D-03
RINFOG(20) Smallest pivot WITHOUT perturbed pivots = 1.403D-03
RINFOG(21) Largest pivot in absolute value = 1.000D+00
INFOG (24) Effective value of ICNTL(12) = 1
INFOG (14) Number of memory compress = 68
Elapsed time in factorization driver = 21.7234
Factorization time by clock_gettime(): 21.7494 s
Entering DMUMPS 5.9.0 from C interface with JOB = -2
executing #MPI = 64 and #OMP = 1
Entering DMUMPS 5.9.0 from C interface with JOB, N, NNZ = 1 1391349 32961525
executing #MPI = 128 and #OMP = 1
=================================================
MUMPS compiled with option -Dmetis
MUMPS compiled with option -Dpord
MUMPS compiled with option -Dptscotch
MUMPS compiled with option -Dscotch
This MUMPS version includes code for mixed precision BLR including memory accessors during solve
=================================================
L D L^T Solver for general symmetric matrices
Type of parallelism: Working host
****** ANALYSIS STEP ********
Processing a graph of size: 1391349
Average density of rows/columns = 45
Ordering based on METIS
ELAPSED TIME SPENT IN METIS reordering = 9.4650
SYMBOLIC based on column counts
ELAPSED TIME IN symbolic factorization = 0.5889
A root of estimated size 15552 has been selected for Scalapack.
Leaving analysis phase with ...
INFOG(1) = 0
INFOG(2) = 0
-- (20) Number of entries in factors (estim.) = 2796208095
-- (3) Real space for factors (estimated) = 2953391992
-- (4) Integer space for factors (estimated) = 26004214
-- (5) Maximum frontal size (estimated) = 25827
-- (6) Number of nodes in the tree = 32939
-- (32) Type of analysis effectively used = 1
-- (7) Ordering option effectively used = 5
ICNTL (6) Maximum transversal option = 0
ICNTL (7) Pivot order option = 7
ICNTL(12) Ordering symmetric indef. matrices = 1
ICNTL(13) Parallelism/splitting of root node = 0
ICNTL(14) Percentage of memory relaxation = 30
ICNTL(15) Analysis by block effectively used = 0
ICNTL(18) Distributed input matrix (on if >0) = 0
ICNTL(32) Forward elimination during facto. = 0
ICNTL(35) BLR activation = 0
ICNTL(48) Tree based multithreading (effective)= 0
ICNTL(58) Symbolic factorization option = 2
Number of level 2 nodes = 204
Number of split nodes = 1
RINFOG(1) Operations during elimination (estim)= 3.095D+13
MEMORY ESTIMATIONS ...
Estimations with standard Full-Rank (FR) factorization:
Maximum estim. space in Mbytes, IC facto. (INFOG(16)): 1541
Total space in MBytes, IC factorization (INFOG(17)): 82634
Maximum estim. space in Mbytes, OOC facto. (INFOG(26)): 941
Total space in MBytes, OOC factorization (INFOG(27)): 69791
Elapsed time in analysis driver= 11.0492
Analysis time by clock_gettime(): 11.055 s
Entering DMUMPS 5.9.0 from C interface with JOB, N, NNZ = 7 1391349 32961525
executing #MPI = 128 and #OMP = 1
Elapsed time in save structure driver= 0.0716
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
PRE FACTO START LPROF----------------------
On return from DMUMPS, INFOG(1)= -71
On return from DMUMPS, INFOG(2)= 0
PRE FACTO START LPROF----------------------
Entering DMUMPS 5.9.0 from C interface with JOB, N, NNZ = 2 1391349 32961525
executing #MPI = 128 and #OMP = 1
PRE FACTO START LPROF----------------------
PRE FACTO START LPROF----------------------
PRE FACTO START LPROF----------------------
PRE FACTO START LPROF----------------------
PRE FACTO START LPROF----------------------
PRE FACTO START LPROF----------------------
* [MAQAO] Info: STARTING COUNTERS (kairoscomp35)
[0mPRE FACTO START LPROF----------------------
PRE FACTO START LPROF----------------------
PRE FACTO START LPROF----------------------
PRE FACTO START LPROF----------------------
PRE FACTO START LPROF----------------------
PRE FACTO START LPROF----------------------
PRE FACTO START LPROF----------------------
PRE FACTO START LPROF----------------------
PRE FACTO START LPROF----------------------
PRE FACTO START LPROF----------------------
PRE FACTO START LPROF----------------------
PRE FACTO START LPROF----------------------
PRE FACTO START LPROF----------------------
PRE FACTO START LPROF----------------------
PRE FACTO START LPROF----------------------
****** FACTORIZATION STEP ********
GLOBAL STATISTICS PRIOR NUMERICAL FACTORIZATION ...
Number of working processes = 128
ICNTL(22) Out-of-core option = 0
ICNTL(35) BLR activation (eff. choice) = 0
ICNTL(37) BLR CB compression (eff. choice) = 0
ICNTL(40) Mixed/adaptive precision BLR = 0
ICNTL(49) Compact workarray S (end facto.) = 0
ICNTL(56) Effective value during facto. = 0
ICNTL(14) Memory relaxation = 30
INFOG(3) Real space for factors (estimated)= 2953391992
INFOG(4) Integer space for factors (estim.)= 26004214
Maximum frontal size (estimated) = 25827
Number of nodes in the tree = 32939
ICNTL(23) Memory allowed (value on host) = 0
Sum over all procs = 0
Memory provided by user, sum of LWK_USER = 0
Effective threshold for pivoting, CNTL(1) = 0.1000D-01
Statistics on the scaling phase
Elapsed time for scaling = 0.6017
Max difference from 1 after scaling the entries for ONE-NORM (option 7/8) = 0.28D+00
Average Effective size of S (based on INFO(39))= 69796363
Elapsed time to reformat/distribute matrix = 1.4626
Allocated buffers
------------------
Size of reception buffer in bytes ...... = 9304420
Size of async. emission buffer (bytes).. = 37310724
Small emission buffer (bytes) .......... = 337936
** Memory allocated, max in Mbytes (INFOG(18)): 1558
** Memory allocated, total in Mbytes (INFOG(19)): 82944
** Memory effectively used, max in Mbytes (INFOG(21)): 1261
** Memory effectively used, total in Mbytes (INFOG(22)): 49574
Elapsed time to process root node = 0.8133
Elapsed time for factorization = 15.0190
Leaving factorization with ...
RINFOG (2) Operations in node assembly = 9.216D+09
------ (3) Operations in node elimination = 3.095D+13
ICNTL (8) Scaling effectively used = 7
INFOG (9) Real space for factors = 2954855606
INFOG (10) Integer space for factors = 23186655
INFOG (11) Maximum front size = 25827
INFOG (29) Number of entries in factors = 2796208095
INFOG (12) Number of negative pivots = 0
INFOG (13) Number of delayed pivots = 0
Number of 2x2 pivots in type 1 nodes = 0
Number of 2x2 pivots in type 2 nodes = 0
RINFOG(19) Smallest pivot WITH perturbed pivots = 1.403D-03
RINFOG(20) Smallest pivot WITHOUT perturbed pivots = 1.403D-03
RINFOG(21) Largest pivot in absolute value = 1.000D+00
INFOG (24) Effective value of ICNTL(12) = 1
INFOG (14) Number of memory compress = 159
Elapsed time in factorization driver = 17.1103
Factorization time by clock_gettime(): 17.1681 s
Entering DMUMPS 5.9.0 from C interface with JOB = -2
executing #MPI = 128 and #OMP = 1
Entering DMUMPS 5.9.0 from C interface with JOB, N, NNZ = 1 1391349 32961525
executing #MPI = 192 and #OMP = 1
=================================================
MUMPS compiled with option -Dmetis
MUMPS compiled with option -Dpord
MUMPS compiled with option -Dptscotch
MUMPS compiled with option -Dscotch
This MUMPS version includes code for mixed precision BLR including memory accessors during solve
=================================================
L D L^T Solver for general symmetric matrices
Type of parallelism: Working host
****** ANALYSIS STEP ********
Processing a graph of size: 1391349
Average density of rows/columns = 45
Ordering based on METIS
ELAPSED TIME SPENT IN METIS reordering = 10.1005
SYMBOLIC based on column counts
ELAPSED TIME IN symbolic factorization = 0.5575
A root of estimated size 15552 has been selected for Scalapack.
Leaving analysis phase with ...
INFOG(1) = 0
INFOG(2) = 0
-- (20) Number of entries in factors (estim.) = 2796208095
-- (3) Real space for factors (estimated) = 2952357017
-- (4) Integer space for factors (estimated) = 28792294
-- (5) Maximum frontal size (estimated) = 25827
-- (6) Number of nodes in the tree = 32940
-- (32) Type of analysis effectively used = 1
-- (7) Ordering option effectively used = 5
ICNTL (6) Maximum transversal option = 0
ICNTL (7) Pivot order option = 7
ICNTL(12) Ordering symmetric indef. matrices = 1
ICNTL(13) Parallelism/splitting of root node = 0
ICNTL(14) Percentage of memory relaxation = 30
ICNTL(15) Analysis by block effectively used = 0
ICNTL(18) Distributed input matrix (on if >0) = 0
ICNTL(32) Forward elimination during facto. = 0
ICNTL(35) BLR activation = 0
ICNTL(48) Tree based multithreading (effective)= 0
ICNTL(58) Symbolic factorization option = 2
Number of level 2 nodes = 293
Number of split nodes = 2
RINFOG(1) Operations during elimination (estim)= 3.095D+13
MEMORY ESTIMATIONS ...
Estimations with standard Full-Rank (FR) factorization:
Maximum estim. space in Mbytes, IC facto. (INFOG(16)): 1241
Total space in MBytes, IC factorization (INFOG(17)): 84969
Maximum estim. space in Mbytes, OOC facto. (INFOG(26)): 765
Total space in MBytes, OOC factorization (INFOG(27)): 75442
Elapsed time in analysis driver= 11.5939
Analysis time by clock_gettime(): 11.600 s
Entering DMUMPS 5.9.0 from C interface with JOB, N, NNZ = 7 1391349 32961525
executing #MPI = 192 and #OMP = 1
Elapsed time in save structure driver= 0.0911
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** ERROR RETURN ** FROM DMUMPS INFO(1)= -71
** INFO(2)= 0
** INFO(2)= 0
** INFO(2)= 0
PRE FACTO START LPROF----------------------
On return from DMUMPS, INFOG(1)= -71
On return from DMUMPS, INFOG(2)= 0
PRE FACTO START LPROF----------------------
PRE FACTO START LPROF----------------------
PRE FACTO START LPROF----------------------
PRE FACTO START LPROF----------------------
PRE FACTO START LPROF----------------------
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PRE FACTO START LPROF----------------------
* [MAQAO] Info: STARTING COUNTERS (kairoscomp35)
[0mPRE FACTO START LPROF----------------------
PRE FACTO START LPROF----------------------
PRE FACTO START LPROF----------------------
PRE FACTO START LPROF----------------------
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Entering DMUMPS 5.9.0 from C interface with JOB, N, NNZ = 2 1391349 32961525
executing #MPI = 192 and #OMP = 1
****** FACTORIZATION STEP ********
GLOBAL STATISTICS PRIOR NUMERICAL FACTORIZATION ...
Number of working processes = 192
ICNTL(22) Out-of-core option = 0
ICNTL(35) BLR activation (eff. choice) = 0
ICNTL(37) BLR CB compression (eff. choice) = 0
ICNTL(40) Mixed/adaptive precision BLR = 0
ICNTL(49) Compact workarray S (end facto.) = 0
ICNTL(56) Effective value during facto. = 0
ICNTL(14) Memory relaxation = 30
INFOG(3) Real space for factors (estimated)= 2952357017
INFOG(4) Integer space for factors (estim.)= 28792294
Maximum frontal size (estimated) = 25827
Number of nodes in the tree = 32940
ICNTL(23) Memory allowed (value on host) = 0
Sum over all procs = 0
Memory provided by user, sum of LWK_USER = 0
Effective threshold for pivoting, CNTL(1) = 0.1000D-01
Statistics on the scaling phase
Elapsed time for scaling = 0.6645
Max difference from 1 after scaling the entries for ONE-NORM (option 7/8) = 0.28D+00
Average Effective size of S (based on INFO(39))= 45566893
Elapsed time to reformat/distribute matrix = 1.5747
Allocated buffers
------------------
Size of reception buffer in bytes ...... = 7725076
Size of async. emission buffer (bytes).. = 30977547
Small emission buffer (bytes) .......... = 752388
** Memory allocated, max in Mbytes (INFOG(18)): 1246
** Memory allocated, total in Mbytes (INFOG(19)): 85255
** Memory effectively used, max in Mbytes (INFOG(21)): 916
** Memory effectively used, total in Mbytes (INFOG(22)): 49465
Elapsed time to process root node = 0.0000
Elapsed time for (failed) factorization = 2.8997
Leaving factorization with ...
RINFOG (2) Operations in node assembly = 4.189D+09
------ (3) Operations in node elimination = 6.378D+12
ICNTL (8) Scaling effectively used = 7
INFOG (9) Real space for factors = 1473520126
INFOG (10) Integer space for factors = 19664359
INFOG (11) Maximum front size = 21834
INFOG (29) Number of entries in factors = 1402778700
INFOG (12) Number of negative pivots = 0
INFOG (13) Number of delayed pivots = 0
Number of 2x2 pivots in type 1 nodes = 0
Number of 2x2 pivots in type 2 nodes = 0
RINFOG(19) Smallest pivot WITH perturbed pivots = 1.403D-03
RINFOG(20) Smallest pivot WITHOUT perturbed pivots = 1.403D-03
RINFOG(21) Largest pivot in absolute value = 1.000D+00
INFOG (24) Effective value of ICNTL(12) = 1
INFOG (14) Number of memory compress = 41
Elapsed time in factorization driver = 5.1618
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -9
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** INFO(2)= 1834326
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** INFO(2)= 50
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
** ERROR RETURN ** FROM DMUMPS INFO(1)= -1
** INFO(2)= 50
On return from DMUMPS, INFOG(1)= -9
On return from DMUMPS, INFOG(2)= 1834326
Entering DMUMPS 5.9.0 from C interface with JOB = -2
executing #MPI = 192 and #OMP = 1