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TRS Stand 20472 pair #381710938
details
property
value
status
complete
benchmark
filliatre.xml
ran by
Akihisa Yamada
cpu timeout
1200 seconds
wallclock timeout
300 seconds
memory limit
137438953472 bytes
execution host
n112.star.cs.uiowa.edu
space
CiME_04
run statistics
property
value
solver
muterm 5.18
configuration
default
runtime (wallclock)
0.0989010334015 seconds
cpu usage
0.085022358
max memory
6144000.0
stage attributes
key
value
output-size
6362
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 a b c t x y z) (RULES f(t,x) -> f'(t,g(x)) f'(triple(a,b,c),A) -> f''(foldf(triple(cons(A,a),nil,c),b)) f'(triple(a,b,c),B) -> f(triple(a,b,c),A) f'(triple(a,b,c),C) -> triple(a,b,cons(C,c)) f''(triple(a,b,c)) -> foldf(triple(a,b,nil),c) foldf(x,cons(y,z)) -> f(foldf(x,z),y) foldf(x,nil) -> x g(A) -> A g(B) -> A g(B) -> B g(C) -> A g(C) -> B g(C) -> C ) Problem 1: Dependency Pairs Processor: -> Pairs: F(t,x) -> F'(t,g(x)) F(t,x) -> G(x) F'(triple(a,b,c),A) -> F''(foldf(triple(cons(A,a),nil,c),b)) F'(triple(a,b,c),A) -> FOLDF(triple(cons(A,a),nil,c),b) F'(triple(a,b,c),B) -> F(triple(a,b,c),A) F''(triple(a,b,c)) -> FOLDF(triple(a,b,nil),c) FOLDF(x,cons(y,z)) -> F(foldf(x,z),y) FOLDF(x,cons(y,z)) -> FOLDF(x,z) -> Rules: f(t,x) -> f'(t,g(x)) f'(triple(a,b,c),A) -> f''(foldf(triple(cons(A,a),nil,c),b)) f'(triple(a,b,c),B) -> f(triple(a,b,c),A) f'(triple(a,b,c),C) -> triple(a,b,cons(C,c)) f''(triple(a,b,c)) -> foldf(triple(a,b,nil),c) foldf(x,cons(y,z)) -> f(foldf(x,z),y) foldf(x,nil) -> x g(A) -> A g(B) -> A g(B) -> B g(C) -> A g(C) -> B g(C) -> C Problem 1: SCC Processor: -> Pairs: F(t,x) -> F'(t,g(x)) F(t,x) -> G(x) F'(triple(a,b,c),A) -> F''(foldf(triple(cons(A,a),nil,c),b)) F'(triple(a,b,c),A) -> FOLDF(triple(cons(A,a),nil,c),b) F'(triple(a,b,c),B) -> F(triple(a,b,c),A) F''(triple(a,b,c)) -> FOLDF(triple(a,b,nil),c) FOLDF(x,cons(y,z)) -> F(foldf(x,z),y) FOLDF(x,cons(y,z)) -> FOLDF(x,z) -> Rules: f(t,x) -> f'(t,g(x)) f'(triple(a,b,c),A) -> f''(foldf(triple(cons(A,a),nil,c),b)) f'(triple(a,b,c),B) -> f(triple(a,b,c),A) f'(triple(a,b,c),C) -> triple(a,b,cons(C,c)) f''(triple(a,b,c)) -> foldf(triple(a,b,nil),c) foldf(x,cons(y,z)) -> f(foldf(x,z),y) foldf(x,nil) -> x g(A) -> A g(B) -> A g(B) -> B g(C) -> A g(C) -> B g(C) -> C ->Strongly Connected Components: ->->Cycle: ->->-> Pairs: F(t,x) -> F'(t,g(x)) F'(triple(a,b,c),A) -> F''(foldf(triple(cons(A,a),nil,c),b)) F'(triple(a,b,c),A) -> FOLDF(triple(cons(A,a),nil,c),b) F'(triple(a,b,c),B) -> F(triple(a,b,c),A) F''(triple(a,b,c)) -> FOLDF(triple(a,b,nil),c) FOLDF(x,cons(y,z)) -> F(foldf(x,z),y) FOLDF(x,cons(y,z)) -> FOLDF(x,z) ->->-> Rules: f(t,x) -> f'(t,g(x)) f'(triple(a,b,c),A) -> f''(foldf(triple(cons(A,a),nil,c),b)) f'(triple(a,b,c),B) -> f(triple(a,b,c),A) f'(triple(a,b,c),C) -> triple(a,b,cons(C,c)) f''(triple(a,b,c)) -> foldf(triple(a,b,nil),c) foldf(x,cons(y,z)) -> f(foldf(x,z),y) foldf(x,nil) -> x g(A) -> A g(B) -> A
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