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SRS Standard pair #487515762
details
property
value
status
complete
benchmark
212117.xml
ran by
Akihisa Yamada
cpu timeout
1200 seconds
wallclock timeout
300 seconds
memory limit
137438953472 bytes
execution host
n017.star.cs.uiowa.edu
space
ICFP_2010
run statistics
property
value
solver
MultumNonMulta 3.16 29 June 2020 60G
configuration
default
runtime (wallclock)
3.21483492851 seconds
cpu usage
11.386400884
max memory
2.00843264E9
stage attributes
key
value
output-size
129411
starexec-result
YES
output
/export/starexec/sandbox2/solver/bin/starexec_run_default /export/starexec/sandbox2/benchmark/theBenchmark.xml /export/starexec/sandbox2/output/output_files -------------------------------------------------------------------------------- YES After renaming modulo { 0->0, 1->1, 2->2, 3->3, 4->4, 5->5 }, it remains to prove termination of the 50-rule system { 0 1 1 -> 0 1 2 3 4 1 , 0 1 1 -> 1 3 1 3 4 0 , 0 1 1 -> 5 1 3 0 3 1 , 0 1 4 -> 0 1 3 4 , 0 1 4 -> 1 3 4 2 0 , 0 1 4 -> 1 5 3 4 0 , 0 1 4 -> 3 1 3 4 0 , 0 1 4 -> 1 1 5 3 4 0 , 0 1 4 -> 1 2 3 4 3 0 , 0 1 4 -> 1 3 3 4 4 0 , 0 1 4 -> 1 3 4 5 0 5 , 0 1 4 -> 3 4 5 5 0 1 , 1 2 4 -> 1 2 3 4 1 , 1 2 4 -> 5 3 4 1 2 , 1 2 4 -> 1 5 2 3 4 3 , 1 2 4 -> 2 3 3 4 5 1 , 5 2 1 -> 1 2 2 3 5 4 , 5 2 1 -> 1 3 2 5 3 4 , 5 2 4 -> 0 5 2 3 4 , 5 2 4 -> 5 5 3 4 2 , 5 2 4 -> 0 3 4 4 5 2 , 5 2 4 -> 2 2 5 3 4 4 , 5 2 4 -> 2 3 3 4 5 5 , 5 2 4 -> 2 3 4 3 5 3 , 5 2 4 -> 2 5 3 4 0 5 , 5 2 4 -> 3 1 2 5 3 4 , 5 2 4 -> 5 2 3 4 0 3 , 0 0 2 4 -> 0 4 3 0 2 , 0 1 1 5 -> 0 1 3 5 1 2 , 0 1 2 4 -> 0 1 2 3 3 4 , 0 1 4 5 -> 3 4 0 5 1 , 0 1 4 5 -> 3 4 5 3 0 1 , 0 4 2 1 -> 0 4 1 2 3 4 , 0 5 1 4 -> 0 0 3 5 4 1 , 1 0 1 4 -> 3 4 0 1 2 1 , 1 1 2 4 -> 1 3 4 1 2 , 1 2 2 4 -> 2 2 2 3 4 1 , 1 2 4 2 -> 1 2 3 4 2 3 , 1 5 2 1 -> 1 0 3 5 1 2 , 1 5 2 4 -> 3 2 3 5 1 4 , 1 5 2 4 -> 5 2 3 3 1 4 , 5 0 1 4 -> 3 4 0 5 3 1 , 5 2 5 1 -> 3 5 1 5 2 , 0 1 1 5 4 -> 0 0 5 4 1 1 , 1 0 0 2 4 -> 0 2 0 4 4 1 , 1 0 4 2 1 -> 1 2 3 4 1 0 , 1 2 5 0 1 -> 2 3 5 1 0 1 , 1 5 3 0 4 -> 5 1 3 4 0 4 , 5 0 5 2 4 -> 4 0 0 5 5 2 , 5 3 2 4 2 -> 2 1 5 3 4 2 } Applying sparse tiling TRFC(2) [Geser/Hofbauer/Waldmann, FSCD 2019]. After renaming modulo { (0,0)->0, (0,1)->1, (1,1)->2, (1,0)->3, (1,2)->4, (2,3)->5, (3,4)->6, (4,1)->7, (1,3)->8, (1,4)->9, (1,5)->10, (1,7)->11, (2,0)->12, (3,0)->13, (4,0)->14, (5,0)->15, (6,0)->16, (3,1)->17, (0,2)->18, (0,3)->19, (0,4)->20, (0,5)->21, (0,7)->22, (2,1)->23, (5,1)->24, (6,1)->25, (2,5)->26, (3,5)->27, (4,5)->28, (5,5)->29, (6,5)->30, (4,2)->31, (4,3)->32, (4,4)->33, (4,7)->34, (5,3)->35, (3,3)->36, (6,3)->37, (5,2)->38, (5,4)->39, (5,7)->40, (2,4)->41, (2,2)->42, (2,7)->43, (3,2)->44, (3,7)->45, (6,2)->46, (6,4)->47 }, it remains to prove termination of the 2450-rule system { 0 1 2 3 -> 0 1 4 5 6 7 3 , 0 1 2 2 -> 0 1 4 5 6 7 2 , 0 1 2 4 -> 0 1 4 5 6 7 4 , 0 1 2 8 -> 0 1 4 5 6 7 8 , 0 1 2 9 -> 0 1 4 5 6 7 9 , 0 1 2 10 -> 0 1 4 5 6 7 10 , 0 1 2 11 -> 0 1 4 5 6 7 11 , 3 1 2 3 -> 3 1 4 5 6 7 3 , 3 1 2 2 -> 3 1 4 5 6 7 2 , 3 1 2 4 -> 3 1 4 5 6 7 4 , 3 1 2 8 -> 3 1 4 5 6 7 8 , 3 1 2 9 -> 3 1 4 5 6 7 9 , 3 1 2 10 -> 3 1 4 5 6 7 10 , 3 1 2 11 -> 3 1 4 5 6 7 11 , 12 1 2 3 -> 12 1 4 5 6 7 3 , 12 1 2 2 -> 12 1 4 5 6 7 2 , 12 1 2 4 -> 12 1 4 5 6 7 4 , 12 1 2 8 -> 12 1 4 5 6 7 8 , 12 1 2 9 -> 12 1 4 5 6 7 9 , 12 1 2 10 -> 12 1 4 5 6 7 10 , 12 1 2 11 -> 12 1 4 5 6 7 11 , 13 1 2 3 -> 13 1 4 5 6 7 3 , 13 1 2 2 -> 13 1 4 5 6 7 2 , 13 1 2 4 -> 13 1 4 5 6 7 4 , 13 1 2 8 -> 13 1 4 5 6 7 8 , 13 1 2 9 -> 13 1 4 5 6 7 9 , 13 1 2 10 -> 13 1 4 5 6 7 10 , 13 1 2 11 -> 13 1 4 5 6 7 11 , 14 1 2 3 -> 14 1 4 5 6 7 3 , 14 1 2 2 -> 14 1 4 5 6 7 2 , 14 1 2 4 -> 14 1 4 5 6 7 4 , 14 1 2 8 -> 14 1 4 5 6 7 8 , 14 1 2 9 -> 14 1 4 5 6 7 9 , 14 1 2 10 -> 14 1 4 5 6 7 10 ,
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