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Complexity_C_Integer 2019-03-21 04.38 pair #429989639
details
property
value
status
complete
benchmark
rsd.c
ran by
Akihisa Yamada
cpu timeout
1200 seconds
wallclock timeout
300 seconds
memory limit
137438953472 bytes
execution host
n086.star.cs.uiowa.edu
space
WTC_V2
run statistics
property
value
solver
CoFloCo 2018
configuration
C
runtime (wallclock)
0.438225 seconds
cpu usage
0.364636
user time
0.335487
system time
0.029149
max virtual memory
113176.0
max residence set size
11804.0
stage attributes
key
value
starexec-result
WORST_CASE(?,O(n^1))
output
0.05/0.33 WORST_CASE(?,O(n^1)) 0.05/0.33 0.05/0.33 Preprocessing Cost Relations 0.05/0.33 ===================================== 0.05/0.33 0.05/0.33 #### Computed strongly connected components 0.05/0.33 0. recursive : [eval_rsd_3/4,eval_rsd_4/5,eval_rsd_bb2_in/4,eval_rsd_bb3_in/4] 0.05/0.33 1. non_recursive : [eval_rsd_stop/1] 0.05/0.33 2. non_recursive : [eval_rsd_bb4_in/1] 0.05/0.33 3. non_recursive : [eval_rsd_bb2_in_loop_cont/2] 0.05/0.33 4. non_recursive : [eval_rsd_bb1_in/2] 0.05/0.33 5. non_recursive : [eval_rsd_bb0_in/2] 0.05/0.33 6. non_recursive : [eval_rsd_start/2] 0.05/0.33 0.05/0.33 #### Obtained direct recursion through partial evaluation 0.05/0.33 0. SCC is partially evaluated into eval_rsd_bb2_in/4 0.05/0.33 1. SCC is completely evaluated into other SCCs 0.05/0.33 2. SCC is completely evaluated into other SCCs 0.05/0.33 3. SCC is completely evaluated into other SCCs 0.05/0.33 4. SCC is partially evaluated into eval_rsd_bb1_in/2 0.05/0.33 5. SCC is partially evaluated into eval_rsd_bb0_in/2 0.05/0.33 6. SCC is partially evaluated into eval_rsd_start/2 0.05/0.33 0.05/0.33 Control-Flow Refinement of Cost Relations 0.05/0.33 ===================================== 0.05/0.33 0.05/0.33 ### Specialization of cost equations eval_rsd_bb2_in/4 0.05/0.33 * CE 7 is refined into CE [8] 0.05/0.33 * CE 5 is refined into CE [9] 0.05/0.33 * CE 6 is refined into CE [10] 0.05/0.33 0.05/0.33 0.05/0.33 ### Cost equations --> "Loop" of eval_rsd_bb2_in/4 0.05/0.33 * CEs [9] --> Loop 8 0.05/0.33 * CEs [10] --> Loop 9 0.05/0.33 * CEs [8] --> Loop 10 0.05/0.33 0.05/0.33 ### Ranking functions of CR eval_rsd_bb2_in(V_r,V_db_0,V_da_0,B) 0.05/0.33 * RF of phase [8,9]: [V_db_0+V_da_0+1,-2*V_r+V_db_0+V_da_0+1] 0.05/0.33 0.05/0.33 #### Partial ranking functions of CR eval_rsd_bb2_in(V_r,V_db_0,V_da_0,B) 0.05/0.33 * Partial RF of phase [8,9]: 0.05/0.33 - RF of loop [8:1]: 0.05/0.33 V_db_0+V_da_0+1 0.05/0.33 -2*V_r+V_db_0+V_da_0+1 0.05/0.33 - RF of loop [9:1]: 0.05/0.33 V_da_0+1 depends on loops [8:1] 0.05/0.33 -V_db_0/2+V_da_0+1/2 depends on loops [8:1] 0.05/0.33 -V_r+V_da_0+1 depends on loops [8:1] 0.05/0.33 0.05/0.33 0.05/0.33 ### Specialization of cost equations eval_rsd_bb1_in/2 0.05/0.33 * CE 4 is refined into CE [11] 0.05/0.33 0.05/0.33 0.05/0.33 ### Cost equations --> "Loop" of eval_rsd_bb1_in/2 0.05/0.33 * CEs [11] --> Loop 11 0.05/0.33 0.05/0.33 ### Ranking functions of CR eval_rsd_bb1_in(V_r,B) 0.05/0.33 0.05/0.33 #### Partial ranking functions of CR eval_rsd_bb1_in(V_r,B) 0.05/0.33 0.05/0.33 0.05/0.33 ### Specialization of cost equations eval_rsd_bb0_in/2 0.05/0.33 * CE 2 is refined into CE [12] 0.05/0.33 * CE 3 is refined into CE [13] 0.05/0.33 0.05/0.33 0.05/0.33 ### Cost equations --> "Loop" of eval_rsd_bb0_in/2 0.05/0.33 * CEs [12] --> Loop 12 0.05/0.33 * CEs [13] --> Loop 13 0.05/0.33 0.05/0.33 ### Ranking functions of CR eval_rsd_bb0_in(V_r,B) 0.05/0.33 0.05/0.33 #### Partial ranking functions of CR eval_rsd_bb0_in(V_r,B) 0.05/0.33 0.05/0.33 0.05/0.33 ### Specialization of cost equations eval_rsd_start/2 0.05/0.33 * CE 1 is refined into CE [14,15] 0.05/0.33 0.05/0.33 0.05/0.33 ### Cost equations --> "Loop" of eval_rsd_start/2 0.05/0.33 * CEs [15] --> Loop 14 0.05/0.33 * CEs [14] --> Loop 15 0.05/0.33 0.05/0.33 ### Ranking functions of CR eval_rsd_start(V_r,B) 0.05/0.33 0.05/0.33 #### Partial ranking functions of CR eval_rsd_start(V_r,B) 0.05/0.33 0.05/0.33 0.05/0.33 Computing Bounds 0.05/0.33 ===================================== 0.05/0.33 0.05/0.33 #### Cost of chains of eval_rsd_bb2_in(V_r,V_db_0,V_da_0,B): 0.05/0.33 * Chain [[8,9],10]: 1*it(8)+1*it(9)+0 0.05/0.33 Such that:aux(15) =< -2*V_r+V_db_0+V_da_0 0.05/0.33 aux(19) =< -V_r+V_db_0+V_da_0 0.05/0.33 aux(15) =< V_r 0.05/0.33 aux(19) =< 2*V_r 0.05/0.33 aux(21) =< 3*V_r
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