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Complexity_C_Integer 2019-03-21 04.38 pair #429989132
details
property
value
status
complete
benchmark
BradleyMannaSipma-CAV2005-Fig1-modified_false-termination.c
ran by
Akihisa Yamada
cpu timeout
1200 seconds
wallclock timeout
300 seconds
memory limit
137438953472 bytes
execution host
n174.star.cs.uiowa.edu
space
Adapted_from_Stroeder_15
run statistics
property
value
solver
AProVE
configuration
c_complexity
runtime (wallclock)
1.91693 seconds
cpu usage
2.79943
user time
2.55679
system time
0.242642
max virtual memory
1.8442088E7
max residence set size
178436.0
stage attributes
key
value
starexec-result
MAYBE
output
2.66/1.88 MAYBE 2.66/1.89 proof of /export/starexec/sandbox/output/output_files/bench.koat 2.66/1.89 # AProVE Commit ID: 48fb2092695e11cc9f56e44b17a92a5f88ffb256 marcel 20180622 unpublished dirty 2.66/1.89 2.66/1.89 2.66/1.89 The runtime complexity of the given CpxIntTrs could be proven to be BOUNDS(1, INF). 2.66/1.89 2.66/1.89 (0) CpxIntTrs 2.66/1.89 2.66/1.89 2.66/1.89 ---------------------------------------- 2.66/1.89 2.66/1.89 (0) 2.66/1.89 Obligation: 2.66/1.89 Complexity Int TRS consisting of the following rules: 2.66/1.89 eval_foo_start(v_.0, v_.01, v_y1, v_y2) -> Com_1(eval_foo_bb0_in(v_.0, v_.01, v_y1, v_y2)) :|: TRUE 2.66/1.89 eval_foo_bb0_in(v_.0, v_.01, v_y1, v_y2) -> Com_1(eval_foo_bb1_in(v_y1, v_y2, v_y1, v_y2)) :|: v_y1 >= 0 && v_y2 >= 0 2.66/1.89 eval_foo_bb0_in(v_.0, v_.01, v_y1, v_y2) -> Com_1(eval_foo_bb3_in(v_.0, v_.01, v_y1, v_y2)) :|: v_y1 < 0 2.66/1.89 eval_foo_bb0_in(v_.0, v_.01, v_y1, v_y2) -> Com_1(eval_foo_bb3_in(v_.0, v_.01, v_y1, v_y2)) :|: v_y2 < 0 2.66/1.89 eval_foo_bb1_in(v_.0, v_.01, v_y1, v_y2) -> Com_1(eval_foo_bb2_in(v_.0, v_.01, v_y1, v_y2)) :|: v_.0 < v_.01 2.66/1.89 eval_foo_bb1_in(v_.0, v_.01, v_y1, v_y2) -> Com_1(eval_foo_bb2_in(v_.0, v_.01, v_y1, v_y2)) :|: v_.0 > v_.01 2.66/1.89 eval_foo_bb1_in(v_.0, v_.01, v_y1, v_y2) -> Com_1(eval_foo_bb3_in(v_.0, v_.01, v_y1, v_y2)) :|: v_.0 >= v_.01 && v_.0 <= v_.01 2.66/1.89 eval_foo_bb2_in(v_.0, v_.01, v_y1, v_y2) -> Com_1(eval_foo_bb1_in(v_.0 - v_.01, v_.01, v_y1, v_y2)) :|: v_.0 > v_.01 2.66/1.89 eval_foo_bb2_in(v_.0, v_.01, v_y1, v_y2) -> Com_1(eval_foo_bb1_in(v_.0, v_.01, v_y1, v_y2)) :|: v_.0 > v_.01 && v_.0 <= v_.01 2.66/1.89 eval_foo_bb2_in(v_.0, v_.01, v_y1, v_y2) -> Com_1(eval_foo_bb1_in(v_.0 - v_.01, v_.01 - v_.0, v_y1, v_y2)) :|: v_.0 <= v_.01 && v_.0 > v_.01 2.66/1.89 eval_foo_bb2_in(v_.0, v_.01, v_y1, v_y2) -> Com_1(eval_foo_bb1_in(v_.0, v_.01 - v_.0, v_y1, v_y2)) :|: v_.0 <= v_.01 2.66/1.89 eval_foo_bb3_in(v_.0, v_.01, v_y1, v_y2) -> Com_1(eval_foo_stop(v_.0, v_.01, v_y1, v_y2)) :|: TRUE 2.66/1.89 2.66/1.89 The start-symbols are:[eval_foo_start_4] 2.66/1.89 2.66/1.91 EOF
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