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SRS Stand 10685 pair #381718639
details
property
value
status
complete
benchmark
11.xml
ran by
Akihisa Yamada
cpu timeout
1200 seconds
wallclock timeout
300 seconds
memory limit
137438953472 bytes
execution host
n025.star.cs.uiowa.edu
space
Zantema_06
run statistics
property
value
solver
muterm 5.18
configuration
default
runtime (wallclock)
0.178275108337 seconds
cpu usage
0.164519601
max memory
4259840.0
stage attributes
key
value
output-size
5003
starexec-result
YES
output
/export/starexec/sandbox/solver/bin/starexec_run_default /export/starexec/sandbox/benchmark/theBenchmark.xml /export/starexec/sandbox/output/output_files -------------------------------------------------------------------------------- YES Problem 1: (VAR x1) (RULES a(c(x1)) -> c(a(x1)) a(l(x1)) -> l(a(x1)) c(a(r(x1))) -> r(a(x1)) l(r(a(x1))) -> a(l(c(c(r(x1))))) ) Problem 1: Dependency Pairs Processor: -> Pairs: A(c(x1)) -> A(x1) A(c(x1)) -> C(a(x1)) A(l(x1)) -> A(x1) A(l(x1)) -> L(a(x1)) C(a(r(x1))) -> A(x1) L(r(a(x1))) -> A(l(c(c(r(x1))))) -> Rules: a(c(x1)) -> c(a(x1)) a(l(x1)) -> l(a(x1)) c(a(r(x1))) -> r(a(x1)) l(r(a(x1))) -> a(l(c(c(r(x1))))) Problem 1: SCC Processor: -> Pairs: A(c(x1)) -> A(x1) A(c(x1)) -> C(a(x1)) A(l(x1)) -> A(x1) A(l(x1)) -> L(a(x1)) C(a(r(x1))) -> A(x1) L(r(a(x1))) -> A(l(c(c(r(x1))))) -> Rules: a(c(x1)) -> c(a(x1)) a(l(x1)) -> l(a(x1)) c(a(r(x1))) -> r(a(x1)) l(r(a(x1))) -> a(l(c(c(r(x1))))) ->Strongly Connected Components: ->->Cycle: ->->-> Pairs: A(c(x1)) -> A(x1) A(c(x1)) -> C(a(x1)) A(l(x1)) -> A(x1) A(l(x1)) -> L(a(x1)) C(a(r(x1))) -> A(x1) L(r(a(x1))) -> A(l(c(c(r(x1))))) ->->-> Rules: a(c(x1)) -> c(a(x1)) a(l(x1)) -> l(a(x1)) c(a(r(x1))) -> r(a(x1)) l(r(a(x1))) -> a(l(c(c(r(x1))))) Problem 1: Reduction Pair Processor: -> Pairs: A(c(x1)) -> A(x1) A(c(x1)) -> C(a(x1)) A(l(x1)) -> A(x1) A(l(x1)) -> L(a(x1)) C(a(r(x1))) -> A(x1) L(r(a(x1))) -> A(l(c(c(r(x1))))) -> Rules: a(c(x1)) -> c(a(x1)) a(l(x1)) -> l(a(x1)) c(a(r(x1))) -> r(a(x1)) l(r(a(x1))) -> a(l(c(c(r(x1))))) -> Usable rules: a(c(x1)) -> c(a(x1)) a(l(x1)) -> l(a(x1)) c(a(r(x1))) -> r(a(x1)) l(r(a(x1))) -> a(l(c(c(r(x1))))) ->Interpretation type: Linear ->Coefficients: Natural Numbers ->Dimension: 1 ->Bound: 2 ->Interpretation: [a](X) = 2.X + 1 [c](X) = X [l](X) = 2.X + 1 [r](X) = 2.X + 1 [A](X) = 2.X + 2 [C](X) = X
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