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Compl Integ Trans Syste 26843 pair #381745175
details
property
value
status
complete
benchmark
two_arrays.koat
ran by
Akihisa Yamada
cpu timeout
1200 seconds
wallclock timeout
300 seconds
memory limit
137438953472 bytes
execution host
n013.star.cs.uiowa.edu
space
T2
run statistics
property
value
solver
CoFloCo 2018
configuration
its
runtime (wallclock)
0.624882936478 seconds
cpu usage
0.53987427
max memory
1.0309632E7
stage attributes
key
value
output-size
11362
starexec-result
WORST_CASE(?,O(1))
output
/export/starexec/sandbox/solver/bin/starexec_run_its /export/starexec/sandbox/benchmark/theBenchmark.koat /export/starexec/sandbox/output/output_files -------------------------------------------------------------------------------- WORST_CASE(?,O(1)) Preprocessing Cost Relations ===================================== #### Computed strongly connected components 0. recursive : [f15/5] 1. non_recursive : [exit_location/1] 2. recursive : [f25/5] 3. recursive : [f33/5] 4. recursive : [f42/5] 5. recursive : [f52/5] 6. recursive : [f60/3] 7. non_recursive : [f69/8] 8. non_recursive : [f60_loop_cont/9] 9. non_recursive : [f52_loop_cont/9] 10. non_recursive : [f42_loop_cont/9] 11. non_recursive : [f33_loop_cont/9] 12. non_recursive : [f25_loop_cont/9] 13. non_recursive : [f15_loop_cont/9] 14. non_recursive : [f0/8] #### Obtained direct recursion through partial evaluation 0. SCC is partially evaluated into f15/5 1. SCC is completely evaluated into other SCCs 2. SCC is partially evaluated into f25/5 3. SCC is partially evaluated into f33/5 4. SCC is partially evaluated into f42/5 5. SCC is partially evaluated into f52/5 6. SCC is partially evaluated into f60/3 7. SCC is completely evaluated into other SCCs 8. SCC is partially evaluated into f60_loop_cont/9 9. SCC is partially evaluated into f52_loop_cont/9 10. SCC is partially evaluated into f42_loop_cont/9 11. SCC is partially evaluated into f33_loop_cont/9 12. SCC is partially evaluated into f25_loop_cont/9 13. SCC is partially evaluated into f15_loop_cont/9 14. SCC is partially evaluated into f0/8 Control-Flow Refinement of Cost Relations ===================================== ### Specialization of cost equations f15/5 * CE 3 is refined into CE [32] * CE 4 is refined into CE [33] * CE 2 is refined into CE [34] ### Cost equations --> "Loop" of f15/5 * CEs [34] --> Loop 32 * CEs [32] --> Loop 33 * CEs [33] --> Loop 34 ### Ranking functions of CR f15(D,E,J,K,L) * RF of phase [32]: [-D+50] #### Partial ranking functions of CR f15(D,E,J,K,L) * Partial RF of phase [32]: - RF of loop [32:1]: -D+50 ### Specialization of cost equations f25/5 * CE 8 is refined into CE [35] * CE 9 is refined into CE [36] * CE 7 is refined into CE [37] ### Cost equations --> "Loop" of f25/5 * CEs [37] --> Loop 35 * CEs [35] --> Loop 36 * CEs [36] --> Loop 37 ### Ranking functions of CR f25(A,E,J,K,L) * RF of phase [35]: [-E+50] #### Partial ranking functions of CR f25(A,E,J,K,L) * Partial RF of phase [35]: - RF of loop [35:1]: -E+50 ### Specialization of cost equations f33/5 * CE 13 is refined into CE [38] * CE 14 is refined into CE [39] * CE 12 is refined into CE [40] ### Cost equations --> "Loop" of f33/5 * CEs [40] --> Loop 38 * CEs [38] --> Loop 39 * CEs [39] --> Loop 40 ### Ranking functions of CR f33(A,F,J,K,L)
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