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SRS_Standard 2019-03-29 03.29 pair #432291266
details
property
value
status
complete
benchmark
size-12-alpha-2-num-19.xml
ran by
Akihisa Yamada
cpu timeout
1200 seconds
wallclock timeout
300 seconds
memory limit
137438953472 bytes
execution host
n067.star.cs.uiowa.edu
space
Waldmann_07_size12
run statistics
property
value
solver
matchbox-2019-03-17
configuration
std.sh
runtime (wallclock)
1.99125 seconds
cpu usage
7.68386
user time
6.42467
system time
1.25919
max virtual memory
1.1654694E8
max residence set size
375824.0
stage attributes
key
value
starexec-result
YES
output
6.69/1.74 YES 6.69/1.74 property Termination 6.69/1.74 has value True 6.69/1.74 for SRS ( [a] -> [], [a, a, b] -> [a, b, b, a], [b, b, b] -> [a]) 6.69/1.74 reason 6.69/1.74 remap for 3 rules 6.69/1.74 property Termination 6.69/1.74 has value True 6.69/1.74 for SRS ( [0] -> [], [0, 0, 1] -> [0, 1, 1, 0], [1, 1, 1] -> [0]) 6.69/1.74 reason 6.69/1.74 reverse each lhs and rhs 6.69/1.74 property Termination 6.69/1.74 has value True 6.69/1.74 for SRS ( [0] -> [], [1, 0, 0] -> [0, 1, 1, 0], [1, 1, 1] -> [0]) 6.69/1.74 reason 6.69/1.74 DP transform 6.69/1.74 property Termination 6.69/1.74 has value True 6.69/1.74 for SRS ( [0] ->= [], [1, 0, 0] ->= [0, 1, 1, 0], [1, 1, 1] ->= [0], [1#, 0, 0] |-> [0#, 1, 1, 0], [1#, 0, 0] |-> [1#, 1, 0], [1#, 0, 0] |-> [1#, 0], [1#, 1, 1] |-> [0#]) 6.69/1.74 reason 6.69/1.74 remap for 7 rules 6.69/1.74 property Termination 6.69/1.74 has value True 6.69/1.74 for SRS ( [0] ->= [], [1, 0, 0] ->= [0, 1, 1, 0], [1, 1, 1] ->= [0], [2, 0, 0] |-> [3, 1, 1, 0], [2, 0, 0] |-> [2, 1, 0], [2, 0, 0] |-> [2, 0], [2, 1, 1] |-> [3]) 6.69/1.74 reason 6.69/1.74 weights 6.69/1.74 Map [(2, 2/1)] 6.69/1.74 6.69/1.74 property Termination 6.69/1.74 has value True 6.69/1.74 for SRS ( [0] ->= [], [1, 0, 0] ->= [0, 1, 1, 0], [1, 1, 1] ->= [0], [2, 0, 0] |-> [2, 1, 0], [2, 0, 0] |-> [2, 0]) 6.69/1.74 reason 6.69/1.74 EDG has 1 SCCs 6.69/1.74 property Termination 6.69/1.74 has value True 6.69/1.74 for SRS ( [2, 0, 0] |-> [2, 1, 0], [2, 0, 0] |-> [2, 0], [0] ->= [], [1, 0, 0] ->= [0, 1, 1, 0], [1, 1, 1] ->= [0]) 6.69/1.74 reason 6.69/1.74 Matrix { monotone = Weak, domain = Arctic, bits = 4, dim = 3, solver = Minisatapi, verbose = False, tracing = True} 6.69/1.74 interpretation 6.69/1.74 0 / 3A 3A 3A \ 6.69/1.74 | 0A 0A 0A | 6.69/1.74 \ 0A 0A 0A / 6.69/1.74 1 / 0A 0A 3A \ 6.69/1.74 | 0A 0A 0A | 6.69/1.74 \ -3A 0A 0A / 6.69/1.74 2 / 21A 22A 22A \ 6.69/1.74 | 21A 22A 22A | 6.69/1.74 \ 21A 22A 22A / 6.69/1.74 [2, 0, 0] |-> [2, 1, 0] 6.69/1.74 lhs rhs ge gt 6.69/1.74 / 27A 27A 27A \ / 25A 25A 25A \ True True 6.69/1.74 | 27A 27A 27A | | 25A 25A 25A | 6.69/1.74 \ 27A 27A 27A / \ 25A 25A 25A / 6.69/1.74 [2, 0, 0] |-> [2, 0] 6.69/1.74 lhs rhs ge gt 6.69/1.74 / 27A 27A 27A \ / 24A 24A 24A \ True True 6.69/1.74 | 27A 27A 27A | | 24A 24A 24A | 6.69/1.74 \ 27A 27A 27A / \ 24A 24A 24A / 6.69/1.74 [0] ->= [] 6.69/1.74 lhs rhs ge gt 6.69/1.74 / 3A 3A 3A \ / 0A - - \ True False 6.69/1.74 | 0A 0A 0A | | - 0A - | 6.69/1.74 \ 0A 0A 0A / \ - - 0A / 6.69/1.74 [1, 0, 0] ->= [0, 1, 1, 0] 6.69/1.74 lhs rhs ge gt 6.69/1.74 / 6A 6A 6A \ / 6A 6A 6A \ True False 6.69/1.74 | 6A 6A 6A | | 3A 3A 3A | 6.69/1.74 \ 3A 3A 3A / \ 3A 3A 3A / 6.69/1.75 [1, 1, 1] ->= [0] 6.69/1.75 lhs rhs ge gt 6.69/1.75 / 3A 3A 3A \ / 3A 3A 3A \ True False 6.69/1.75 | 0A 3A 3A | | 0A 0A 0A | 6.69/1.75 \ 0A 0A 3A / \ 0A 0A 0A / 6.69/1.75 property Termination 6.69/1.75 has value True 6.69/1.76 for SRS ( [0] ->= [], [1, 0, 0] ->= [0, 1, 1, 0], [1, 1, 1] ->= [0]) 6.69/1.76 reason 6.69/1.76 EDG has 0 SCCs 6.69/1.76 6.69/1.76 ************************************************** 6.69/1.76 summary 6.69/1.76 ************************************************** 6.69/1.77 SRS with 3 rules on 2 letters Remap { tracing = False} 6.69/1.77 SRS with 3 rules on 2 letters reverse each lhs and rhs 6.69/1.77 SRS with 3 rules on 2 letters DP transform 6.98/1.78 SRS with 7 rules on 4 letters Remap { tracing = False} 6.98/1.78 SRS with 7 rules on 4 letters weights 6.98/1.78 SRS with 5 rules on 3 letters EDG 6.99/1.79 SRS with 5 rules on 3 letters Matrix { monotone = Weak, domain = Arctic, bits = 4, dim = 3, solver = Minisatapi, verbose = False, tracing = True} 6.99/1.79 SRS with 3 rules on 2 letters EDG 6.99/1.79 6.99/1.79 ************************************************** 7.06/1.80 (3, 2)\Deepee(7, 4)\Weight(5, 3)\Matrix{\Arctic}{3}(3, 2)\EDG[] 7.06/1.80 ************************************************** 7.47/1.96 let { done = Worker No_Strict_Rules;mo = Pre (Or_Else Count (IfSizeLeq 10000 GLPK Fail));wop = Or_Else (Worker (Weight { modus = mo})) Pass;weighted = \ m -> And_Then m wop;tiling = \ m w -> weighted (And_Then (Worker (Tiling { method = m,width = w})) (Worker Remap));when_small = \ m -> And_Then (Worker (SizeAtmost 100)) m;when_medium = \ m -> And_Then (Worker (SizeAtmost 10000)) m;solver = Minisatapi;qpi = \ dim bits -> weighted (when_small (Worker (QPI { tracing = True,dim = dim,bits = bits,solver = solver})));matrix = \ dom dim bits -> weighted (when_small (Worker (Matrix { monotone = Weak,domain = dom,dim = dim,bits = bits,tracing = False,solver = solver})));kbo = \ b -> weighted (when_small (Worker (KBO { bits = b,solver = solver})));mb = Worker (Matchbound { method = RFC,max_size = 100000});remove = First_Of ([ Worker (Weight { modus = mo})] <> ([ Seq [ qpi 2 4, qpi 3 4, qpi 4 4], Seq [ qpi 5 4, qpi 6 3, qpi 7 3]] <> ([ matrix Arctic 4 3, matrix Natural 4 3] <> [ kbo 1, And_Then (Worker Mirror) (kbo 1)])));remove_tile = Seq [ remove, tiling Overlap 3];dp = As_Transformer (Apply (And_Then (Worker (DP { tracing = False})) (Worker Remap)) (Apply wop (Branch (Worker (EDG { tracing = False})) remove_tile)));noh = [ Timeout 10 (Worker (Enumerate { closure = Forward})), Timeout 10 (Worker (Enumerate { closure = Backward}))];yeah = Tree_Search_Preemptive 0 done [ Worker (Weight { modus = mo}), mb, And_Then (Worker Mirror) mb, dp, And_Then (Worker Mirror) dp]} 7.47/1.96 in Apply (Worker Remap) (First_Of ([ yeah] <> noh)) 7.47/1.99 EOF
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