fond
Model Checking Contest @ Petri Nets 2016
6th edition, Toruń, Poland, June 21, 2016
Execution of r089kn-ebro-146369093400129
Last Updated
June 30, 2016

About the Execution of Marcie for PhaseVariation-PT-D05CS010

Execution Summary
Max Memory
Used (MB)
Time wait (ms) CPU Usage (ms) I/O Wait (ms) Computed Result Execution
Status
6330.390 420233.00 420334.00 29.80 TFFTTTFFTTFFTTTF normal

Execution Chart

We display below the execution chart for this examination (boot time has been removed).

Trace from the execution

Waiting for the VM to be ready (probing ssh)
...............
=====================================================================
Generated by BenchKit 2-2979
Executing tool marcie
Input is PhaseVariation-PT-D05CS010, examination is CTLCardinality
Time confinement is 3600 seconds
Memory confinement is 16384 MBytes
Number of cores is 1
Run identifier is r089kn-ebro-146369093400129
=====================================================================


--------------------
content from stdout:

=== Data for post analysis generated by BenchKit (invocation template)

The expected result is a vector of booleans
BOOL_VECTOR

here is the order used to build the result vector(from text file)
FORMULA_NAME PhaseVariation-PT-D05CS010-CTLCardinality-0
FORMULA_NAME PhaseVariation-PT-D05CS010-CTLCardinality-1
FORMULA_NAME PhaseVariation-PT-D05CS010-CTLCardinality-10
FORMULA_NAME PhaseVariation-PT-D05CS010-CTLCardinality-11
FORMULA_NAME PhaseVariation-PT-D05CS010-CTLCardinality-12
FORMULA_NAME PhaseVariation-PT-D05CS010-CTLCardinality-13
FORMULA_NAME PhaseVariation-PT-D05CS010-CTLCardinality-14
FORMULA_NAME PhaseVariation-PT-D05CS010-CTLCardinality-15
FORMULA_NAME PhaseVariation-PT-D05CS010-CTLCardinality-2
FORMULA_NAME PhaseVariation-PT-D05CS010-CTLCardinality-3
FORMULA_NAME PhaseVariation-PT-D05CS010-CTLCardinality-4
FORMULA_NAME PhaseVariation-PT-D05CS010-CTLCardinality-5
FORMULA_NAME PhaseVariation-PT-D05CS010-CTLCardinality-6
FORMULA_NAME PhaseVariation-PT-D05CS010-CTLCardinality-7
FORMULA_NAME PhaseVariation-PT-D05CS010-CTLCardinality-8
FORMULA_NAME PhaseVariation-PT-D05CS010-CTLCardinality-9

=== Now, execution of the tool begins

BK_START 1464106311397


Marcie rev. 8535M (built: crohr on 2016-04-27)
A model checker for Generalized Stochastic Petri nets

authors: Alex Tovchigrechko (IDD package and CTL model checking)

Martin Schwarick (Symbolic numerical analysis and CSL model checking)

Christian Rohr (Simulative and approximative numerical model checking)

marcie@informatik.tu-cottbus.de

called as: marcie --net-file=model.pnml --mcc-file=CTLCardinality.xml --mcc-mode --memory=6 --suppress

parse successfull
net created successfully

Net: PhaseVariation_PT_D05CS010
(NrP: 77 NrTr: 677 NrArc: 4685)

net check time: 0m 0.001sec

parse formulas
formulas created successfully
place and transition orderings generation:0m 0.012sec

init dd package: 0m 7.143sec


RS generation: 3m57.857sec


-> reachability set: #nodes 12269 (1.2e+04) #states 476,385,615,597 (11)



starting MCC model checker
--------------------------

checking: AF [EF [3<=cell___1_5__B_]]
normalized: ~ [EG [~ [E [true U 3<=cell___1_5__B_]]]]

abstracting: (3<=cell___1_5__B_) states: 0

EG iterations: 0
-> the formula is FALSE

FORMULA PhaseVariation-PT-D05CS010-CTLCardinality-1 FALSE TECHNIQUES SEQUENTIAL_PROCESSING DECISION_DIAGRAMS UNFOLDING_TO_PT

MC time: 0m 0.006sec

checking: EX [AG [~ [2<=cell___3_3__A_]]]
normalized: EX [~ [E [true U 2<=cell___3_3__A_]]]

abstracting: (2<=cell___3_3__A_) states: 0
.-> the formula is TRUE

FORMULA PhaseVariation-PT-D05CS010-CTLCardinality-13 TRUE TECHNIQUES SEQUENTIAL_PROCESSING DECISION_DIAGRAMS UNFOLDING_TO_PT

MC time: 0m 0.037sec

checking: AF [pool__3_1_<=cell___2_3__B_]
normalized: ~ [EG [~ [pool__3_1_<=cell___2_3__B_]]]

abstracting: (pool__3_1_<=cell___2_3__B_) states: 376,250,882,473 (11)
.
EG iterations: 1
-> the formula is FALSE

FORMULA PhaseVariation-PT-D05CS010-CTLCardinality-10 FALSE TECHNIQUES SEQUENTIAL_PROCESSING DECISION_DIAGRAMS UNFOLDING_TO_PT

MC time: 0m 7.005sec

checking: EG [~ [~ [[1<=cell___5_5__B_ | cell___3_1__B_<=cell___2_2__B_]]]]
normalized: EG [[1<=cell___5_5__B_ | cell___3_1__B_<=cell___2_2__B_]]

abstracting: (cell___3_1__B_<=cell___2_2__B_) states: 314,374,119,626 (11)
abstracting: (1<=cell___5_5__B_) states: 156,916,848,028 (11)
.
EG iterations: 1
-> the formula is TRUE

FORMULA PhaseVariation-PT-D05CS010-CTLCardinality-3 TRUE TECHNIQUES SEQUENTIAL_PROCESSING DECISION_DIAGRAMS UNFOLDING_TO_PT

MC time: 0m 9.164sec

checking: EG [E [3<=cell___5_2__B_ U cell___4_1__A_<=cell___4_2__B_]]
normalized: EG [E [3<=cell___5_2__B_ U cell___4_1__A_<=cell___4_2__B_]]

abstracting: (cell___4_1__A_<=cell___4_2__B_) states: 368,263,137,255 (11)
abstracting: (3<=cell___5_2__B_) states: 0
.
EG iterations: 1
-> the formula is TRUE

FORMULA PhaseVariation-PT-D05CS010-CTLCardinality-11 TRUE TECHNIQUES SEQUENTIAL_PROCESSING DECISION_DIAGRAMS UNFOLDING_TO_PT

MC time: 0m19.807sec

checking: EF [~ [[[2<=pool__2_5_ | 1<=cell___2_1__B_] | ~ [2<=cell___5_1__B_]]]]
normalized: E [true U ~ [[~ [2<=cell___5_1__B_] | [2<=pool__2_5_ | 1<=cell___2_1__B_]]]]

abstracting: (1<=cell___2_1__B_) states: 158,803,935,823 (11)
abstracting: (2<=pool__2_5_) states: 0
abstracting: (2<=cell___5_1__B_) states: 0
-> the formula is FALSE

FORMULA PhaseVariation-PT-D05CS010-CTLCardinality-15 FALSE TECHNIQUES SEQUENTIAL_PROCESSING DECISION_DIAGRAMS UNFOLDING_TO_PT

MC time: 0m 0.055sec

checking: EG [[[~ [3<=cell___1_4__B_] & ~ [1<=cell___5_5__B_]] | ~ [~ [cell___4_4__B_<=pool__4_2_]]]]
normalized: EG [[cell___4_4__B_<=pool__4_2_ | [~ [3<=cell___1_4__B_] & ~ [1<=cell___5_5__B_]]]]

abstracting: (1<=cell___5_5__B_) states: 156,916,848,028 (11)
abstracting: (3<=cell___1_4__B_) states: 0
abstracting: (cell___4_4__B_<=pool__4_2_) states: 359,025,737,177 (11)
.
EG iterations: 1
-> the formula is TRUE

FORMULA PhaseVariation-PT-D05CS010-CTLCardinality-0 TRUE TECHNIQUES SEQUENTIAL_PROCESSING DECISION_DIAGRAMS UNFOLDING_TO_PT

MC time: 0m 0.293sec

checking: AX [[EG [2<=size_dot] & ~ [[2<=pool__5_4_ & cell___4_3__A_<=size_dot]]]]
normalized: ~ [EX [~ [[~ [[2<=pool__5_4_ & cell___4_3__A_<=size_dot]] & EG [2<=size_dot]]]]]

abstracting: (2<=size_dot) states: 476,385,615,596 (11)
.
EG iterations: 1
abstracting: (cell___4_3__A_<=size_dot) states: 476,385,615,597 (11)
abstracting: (2<=pool__5_4_) states: 0
.-> the formula is TRUE

FORMULA PhaseVariation-PT-D05CS010-CTLCardinality-6 TRUE TECHNIQUES SEQUENTIAL_PROCESSING DECISION_DIAGRAMS UNFOLDING_TO_PT

MC time: 0m 0.102sec

checking: [~ [~ [EF [3<=pool__2_4_]]] | A [[1<=cell___4_5__B_ & cell___1_1__B_<=run_dot] U 3<=pool__3_2_]]
normalized: [E [true U 3<=pool__2_4_] | [~ [EG [~ [3<=pool__3_2_]]] & ~ [E [~ [3<=pool__3_2_] U [~ [3<=pool__3_2_] & ~ [[1<=cell___4_5__B_ & cell___1_1__B_<=run_dot]]]]]]]

abstracting: (cell___1_1__B_<=run_dot) states: 396,986,596,589 (11)
abstracting: (1<=cell___4_5__B_) states: 164,107,927,908 (11)
abstracting: (3<=pool__3_2_) states: 0
abstracting: (3<=pool__3_2_) states: 0
abstracting: (3<=pool__3_2_) states: 0

EG iterations: 0
abstracting: (3<=pool__2_4_) states: 0
-> the formula is FALSE

FORMULA PhaseVariation-PT-D05CS010-CTLCardinality-5 FALSE TECHNIQUES SEQUENTIAL_PROCESSING DECISION_DIAGRAMS UNFOLDING_TO_PT

MC time: 0m16.472sec

checking: E [AF [pool__1_2_<=cell___2_3__A_] U [1<=cell___5_1__A_ & [3<=cell___3_5__B_ | cell___3_2__B_<=pool__3_3_]]]
normalized: E [~ [EG [~ [pool__1_2_<=cell___2_3__A_]]] U [1<=cell___5_1__A_ & [3<=cell___3_5__B_ | cell___3_2__B_<=pool__3_3_]]]

abstracting: (cell___3_2__B_<=pool__3_3_) states: 366,515,047,835 (11)
abstracting: (3<=cell___3_5__B_) states: 0
abstracting: (1<=cell___5_1__A_) states: 156,865,638,348 (11)
abstracting: (pool__1_2_<=cell___2_3__A_) states: 371,785,479,481 (11)
.
EG iterations: 1
-> the formula is FALSE

FORMULA PhaseVariation-PT-D05CS010-CTLCardinality-14 FALSE TECHNIQUES SEQUENTIAL_PROCESSING DECISION_DIAGRAMS UNFOLDING_TO_PT

MC time: 0m52.107sec

checking: AG [[[[pool__2_4_<=cell___4_4__A_ | 1<=cell___2_2__B_] | cell___2_2__B_<=pool__4_5_] | EG [cell___5_1__A_<=cell___1_1__A_]]]
normalized: ~ [E [true U ~ [[EG [cell___5_1__A_<=cell___1_1__A_] | [cell___2_2__B_<=pool__4_5_ | [pool__2_4_<=cell___4_4__A_ | 1<=cell___2_2__B_]]]]]]

abstracting: (1<=cell___2_2__B_) states: 0
abstracting: (pool__2_4_<=cell___4_4__A_) states: 385,154,138,866 (11)
abstracting: (cell___2_2__B_<=pool__4_5_) states: 476,385,615,597 (11)
abstracting: (cell___5_1__A_<=cell___1_1__A_) states: 371,809,342,693 (11)
.
EG iterations: 1
-> the formula is TRUE

FORMULA PhaseVariation-PT-D05CS010-CTLCardinality-2 TRUE TECHNIQUES SEQUENTIAL_PROCESSING DECISION_DIAGRAMS UNFOLDING_TO_PT

MC time: 0m 8.751sec

checking: EG [[[[cell___5_3__A_<=cell___2_4__A_ & pool__2_1_<=cell___4_2__B_] | ~ [3<=cell___3_5__B_]] | cell___4_3__B_<=cell___1_3__A_]]
normalized: EG [[cell___4_3__B_<=cell___1_3__A_ | [~ [3<=cell___3_5__B_] | [cell___5_3__A_<=cell___2_4__A_ & pool__2_1_<=cell___4_2__B_]]]]

abstracting: (pool__2_1_<=cell___4_2__B_) states: 373,351,664,504 (11)
abstracting: (cell___5_3__A_<=cell___2_4__A_) states: 370,832,345,385 (11)
abstracting: (3<=cell___3_5__B_) states: 0
abstracting: (cell___4_3__B_<=cell___1_3__A_) states: 367,418,183,309 (11)

EG iterations: 0
-> the formula is TRUE

FORMULA PhaseVariation-PT-D05CS010-CTLCardinality-7 TRUE TECHNIQUES SEQUENTIAL_PROCESSING DECISION_DIAGRAMS UNFOLDING_TO_PT

MC time: 0m 0.156sec

checking: [[[EX [cell___5_2__A_<=pool__2_1_] & ~ [cell___2_2__A_<=cell___2_2__A_]] & ~ [cell___5_3__B_<=pool__3_3_]] | ~ [AF [2<=cell___2_2__B_]]]
normalized: [EG [~ [2<=cell___2_2__B_]] | [~ [cell___5_3__B_<=pool__3_3_] & [~ [cell___2_2__A_<=cell___2_2__A_] & EX [cell___5_2__A_<=pool__2_1_]]]]

abstracting: (cell___5_2__A_<=pool__2_1_) states: 367,089,060,853 (11)
.abstracting: (cell___2_2__A_<=cell___2_2__A_) states: 476,385,615,597 (11)
abstracting: (cell___5_3__B_<=pool__3_3_) states: 365,821,504,313 (11)
abstracting: (2<=cell___2_2__B_) states: 0

EG iterations: 0
-> the formula is TRUE

FORMULA PhaseVariation-PT-D05CS010-CTLCardinality-12 TRUE TECHNIQUES SEQUENTIAL_PROCESSING DECISION_DIAGRAMS UNFOLDING_TO_PT

MC time: 0m 6.730sec

checking: EG [[[cell___1_4__B_<=cell___1_1__A_ | [cell___5_4__A_<=cell___2_4__A_ & 3<=cell___1_5__B_]] | [pool__4_3_<=cell___4_2__B_ | 1<=cell___3_2__B_]]]
normalized: EG [[[pool__4_3_<=cell___4_2__B_ | 1<=cell___3_2__B_] | [cell___1_4__B_<=cell___1_1__A_ | [cell___5_4__A_<=cell___2_4__A_ & 3<=cell___1_5__B_]]]]

abstracting: (3<=cell___1_5__B_) states: 0
abstracting: (cell___5_4__A_<=cell___2_4__A_) states: 369,818,743,825 (11)
abstracting: (cell___1_4__B_<=cell___1_1__A_) states: 367,138,874,925 (11)
abstracting: (1<=cell___3_2__B_) states: 162,544,018,129 (11)
abstracting: (pool__4_3_<=cell___4_2__B_) states: 383,066,098,554 (11)
.
EG iterations: 1
-> the formula is TRUE

FORMULA PhaseVariation-PT-D05CS010-CTLCardinality-8 TRUE TECHNIQUES SEQUENTIAL_PROCESSING DECISION_DIAGRAMS UNFOLDING_TO_PT

MC time: 0m 7.494sec

checking: [AX [AF [1<=cell___4_1__B_]] & [[~ [~ [cell___3_4__A_<=cell___1_3__A_]] | cell___4_4__B_<=cell___4_2__A_] | [[[pool__4_4_<=cell___3_1__A_ & 3<=cell___2_2__B_] & [1<=cell___1_2__B_ | run_dot<=cell___4_2__A_]] & EX [3<=pool__1_1_]]]]
normalized: [[[EX [3<=pool__1_1_] & [[1<=cell___1_2__B_ | run_dot<=cell___4_2__A_] & [pool__4_4_<=cell___3_1__A_ & 3<=cell___2_2__B_]]] | [cell___3_4__A_<=cell___1_3__A_ | cell___4_4__B_<=cell___4_2__A_]] & ~ [EX [EG [~ [1<=cell___4_1__B_]]]]]

abstracting: (1<=cell___4_1__B_) states: 163,872,054,624 (11)
.
EG iterations: 1
.abstracting: (cell___4_4__B_<=cell___4_2__A_) states: 367,037,428,365 (11)
abstracting: (cell___3_4__A_<=cell___1_3__A_) states: 367,340,795,067 (11)
abstracting: (3<=cell___2_2__B_) states: 0
abstracting: (pool__4_4_<=cell___3_1__A_) states: 383,906,082,323 (11)
abstracting: (run_dot<=cell___4_2__A_) states: 321,796,938,126 (11)
abstracting: (1<=cell___1_2__B_) states: 158,803,935,823 (11)
abstracting: (3<=pool__1_1_) states: 0
.-> the formula is FALSE

FORMULA PhaseVariation-PT-D05CS010-CTLCardinality-4 FALSE TECHNIQUES SEQUENTIAL_PROCESSING DECISION_DIAGRAMS UNFOLDING_TO_PT

MC time: 0m 7.820sec

checking: [[[AF [2<=pool__2_3_] & EF [cell___2_1__B_<=pool__1_5_]] | [[[2<=cell___5_5__A_ & cell___1_3__B_<=pool__1_1_] & 3<=cell___3_1__A_] & EG [cell___4_2__A_<=cell___2_2__B_]]] & [AG [[pool__4_2_<=cell___3_3__A_ | 3<=cell___1_1__A_]] | E [2<=cell___4_3__B_ U cell___3_4__B_<=cell___1_3__A_]]]
normalized: [[[~ [EG [~ [2<=pool__2_3_]]] & E [true U cell___2_1__B_<=pool__1_5_]] | [[3<=cell___3_1__A_ & [2<=cell___5_5__A_ & cell___1_3__B_<=pool__1_1_]] & EG [cell___4_2__A_<=cell___2_2__B_]]] & [~ [E [true U ~ [[pool__4_2_<=cell___3_3__A_ | 3<=cell___1_1__A_]]]] | E [2<=cell___4_3__B_ U cell___3_4__B_<=cell___1_3__A_]]]

abstracting: (cell___3_4__B_<=cell___1_3__A_) states: 367,340,795,067 (11)
abstracting: (2<=cell___4_3__B_) states: 0
abstracting: (3<=cell___1_1__A_) states: 0
abstracting: (pool__4_2_<=cell___3_3__A_) states: 383,264,663,395 (11)
abstracting: (cell___4_2__A_<=cell___2_2__B_) states: 309,142,670,175 (11)
.
EG iterations: 1
abstracting: (cell___1_3__B_<=pool__1_1_) states: 368,374,670,891 (11)
abstracting: (2<=cell___5_5__A_) states: 0
abstracting: (3<=cell___3_1__A_) states: 0
abstracting: (cell___2_1__B_<=pool__1_5_) states: 371,806,884,709 (11)
abstracting: (2<=pool__2_3_) states: 0

EG iterations: 0
-> the formula is FALSE

FORMULA PhaseVariation-PT-D05CS010-CTLCardinality-9 FALSE TECHNIQUES SEQUENTIAL_PROCESSING DECISION_DIAGRAMS UNFOLDING_TO_PT

MC time: 0m23.063sec


Total processing time: 7m 0.122sec


BK_STOP 1464106731630

--------------------
content from stderr:

check for maximal unmarked siphon
found
The net has a maximal unmarked siphon:
cell___2_2__B_
pool__2_2_

The net has transition(s) that can never fire:
division1_mutate_2_2_B
division1_mutate_2_2_A
division1_replicate_2_2_A
division1_replicate_2_2_B
division2_mutate_1_1_B_2_2
division2_mutate_1_2_B_2_2
division2_mutate_1_3_B_2_2
division2_mutate_2_1_B_2_2
division2_mutate_2_2_A_1_1
division2_mutate_2_2_A_1_2
division2_mutate_2_2_A_1_3
division2_mutate_2_2_A_2_1
division2_mutate_2_2_A_2_3
division2_mutate_2_2_A_3_1
division2_mutate_2_2_A_3_2
division2_mutate_2_2_A_3_3
division2_mutate_2_2_B_1_1
division2_mutate_2_2_B_1_2
division2_mutate_2_2_B_1_3
division2_mutate_2_2_B_2_1
division2_mutate_2_2_B_2_3
division2_mutate_2_2_B_3_1
division2_mutate_2_2_B_3_2
division2_mutate_2_2_B_3_3
division2_mutate_2_3_B_2_2
division2_mutate_3_1_B_2_2
division2_mutate_3_2_B_2_2
division2_mutate_3_3_B_2_2
division2_replicate_3_2_B_2_2
division2_replicate_3_3_B_2_2
division2_replicate_1_1_B_2_2
division2_replicate_1_2_B_2_2
division2_replicate_1_3_B_2_2
division2_replicate_2_1_B_2_2
division2_replicate_2_2_A_1_1
division2_replicate_2_2_A_1_2
division2_replicate_2_2_A_1_3
division2_replicate_2_2_A_2_1
division2_replicate_2_2_A_2_3
division2_replicate_2_2_A_3_1
division2_replicate_2_2_A_3_2
division2_replicate_2_2_A_3_3
division2_replicate_2_2_B_1_1
division2_replicate_2_2_B_1_2
division2_replicate_2_2_B_1_3
division2_replicate_2_2_B_2_1
division2_replicate_2_2_B_2_3
division2_replicate_2_2_B_3_1
division2_replicate_2_2_B_3_2
division2_replicate_2_2_B_3_3
division2_replicate_2_3_B_2_2
division2_replicate_3_1_B_2_2

check if there are places and transitions
ok
check if there are transitions without pre-places
ok
check if at least one transition is enabled in m0
ok
check if there are transitions that can never fire
ok


initing FirstDep: 0m 0.002sec

135 146 226 204 263 319 386 382 449 384 417 437 413 679 558 539 502 637 683 702 748 830 733 742 745 820 757 740 743 742 744 774 766 775 754 740 737 838 744 682 1041 948 1003 1078 1108 1112 1090 1172 1185 1164 1189 1238 1104 1093 991 1018 993 986 999 970 1186 1200 1240 1279 1306 1279 1281 1279 1269 1235 1302 1183 1084 998 1077 1050 980 1002 988 939 1172 1246 1204 1841 1235 1945 2035 2127 2044 1733 1655 2371 2512 2363 1837 1829 2288 2493 2793 2498 3124 3440 3745 3469 3466 2702 4409 4427 4439 4551 4558 4761 4533 4691 4709 4697 4591 4533 4563 4550 4673 4524 4517 4572 4492 4565 4419 4772 4754 4597 5304 5403 5487 5599 5671 5736 5966 5566 5825 6023 6042 6132 6001 6021 6013 6085 6154 6124 6077 6154 6181 6159 6082 6040 6183 6210 6053 6440 6096 6046 5833 6035 6039 6048 6112 6216 6161 6136 6212 6228 6228 6151 6209 6140 6137 6260 6127 6122 6163 6105 6162 6094 6208 6369 6564 6700 6889 6839 6842 6995 6813 6481 6540 6636 6682 6790 6844 6910 6790 7015 7102 6998 6835 6781 6789 6640 6777 6838 6998 6887 6534 6820 7163 6649 6086 6162 6304 6358 6470 6324 6126 6968 7065 7106 7219 7240 7280 7252 7618 7614 7606 7464 7350 7354 7362 7384 7296 7330 7407 7306 7416 7652 7302 6914 8089 6816 6908 6866 6858 6917 7027 6909 7038 7158 7134 7073 6920 6880 6864 6879 6886 6947 7043 6903 6942 6953 6758 6954 5949 6053 6122 6147 6023 6468 6003 6018 5735 5847 5884 5906 5907 5804 6045 6284 6075 5881 5673 5688 5602 5462 5420 5531 5546 5427 5627 5241 5129 5217 5214 5289 5183 5212 5198 5270 5303 5256 5198 5241 5254 5229 5165 5123 5243 5270 5141 5410 5159 5156 5069 5121 5198 5182 5152 5167 5111 5234 5311 5317 5290 5153 5127 5182 5067 5113 5098 5121 5079 5011 5095 5005 4997 4749 4801 4801 4801 4826 4800 4804 4880 4924 4930 4914 4856 4818 4794 4782 4811 4827 4819 4813 4757 4807 4820 4932 4759 4809 4795 4793 4809 4852 4813 4853 4896 4885 4861 4809 4803 4799 4811 4809 4843 4869 4831 4815 4818 4766 5015 4851 5162 5194 4816 4522 6231 6369 6328 6467 6321 6427 6351 6510 6534 6521 6414 6339 6451 6433 6484 6344 6339 6385 6314 6387 6625 6407 6227 8018 7006 7104 7248 7303 7377 7450 7443 7344 7396 7395 7399 7427 7592 7428 7424 7501 7530 7490 7428 7496 7399 7342 7498 7345 7402 7390 7292 7366 7349 7634 7026 7336 7348 7355 7448 7363 7338 7408 7572 7452 7414 7426 7334 7407 7422 7336 7292 7357 7341 7250 7364 7341 7410 7288 7834 8178 8120 8015 7909 8181 8014 8181 7925 7959 7787 8012 8067 8120 8404 8435 8398 8247 7931 7916 7988 7966 7954 8051 8001 7881 8030 7795 7839 7622 7267 7343 7430 7542 7452 7476 7310 7721 7733 7805 7859 7909 7869 7869 8232 8183 8158 8002 7863 7859 7855 7861 7783 7883 7859 7688 7904 7870 7830 7339 7498 7034 7023 7031 7140 7147 7354 7161 7293 7317 7302 7168 7126 7113 7094 7074 7059 7036 7102 7000 7107 6917 7002 6738 6087 6196 6258 6275 6146 5846 6110 6100 6100 5916 5950 5967 5963 5862 5919 5888 6135 6031 5734 5732 5625 5482 5440 5453 5565 5450 5660 5260 5146 5146 5179 5203 5234 5217 5217 5284 5381 5364 5217 5196 5189 5181 5178 5140 5202 5190 5210 5166 5149 5176 5086 5138 5141 5105 5245 5258 5128 5196 5250 5236 5202 5125 5113 5137 5199 5131 5117 5140 5102 5030 5508 5016 4908 4754 4806 4806 4808 4831 4916 4834 4832 4882 4900 4872 4834 4820 4818 4782 4814 4785 4822 4814 4760 4810 4798 4996 4901 4814 4816 4794 4842 4858 4869 4943 4943 4929 4895 4815 4811 4825 4822 4815 4814 4828 4804 4820 4770 4798 4752 4856 5175 5199 4842 5283 4931 5574 8057 5551 5602 5600 5566 7602 6147 6464 6464 6208 6634 6762 6369 6693 7279 7115 7176 7181 7123 7167 7212 7222 7157 7228 7555 7436 7388 7236 7244 7202 7179 7145 7146 7204 7242 7369 7145 7197 7254 7253 7197 7485 7250 7276 7276 7355 7566 7576 7588 7699 7577 7536 7796 8126 8312 8192 7972 7822 7751 7740 7825 7691 8089 8064 7586 7706 7809 7835 7813 7919 8072 7872 7960 8038 8035 7990 7903 7900 7937 7935 7940 7881 7955 7901 7835 8574 8034 7983 8005 8248 8305 8477 8352 8412 8312 8442 8816 8854 8847 8611 8464 8371 8385 8433 8416 8546 8370 8436 8382 8494 8368 8383 8615 8329 8398 8881 8555 9476 8379 8238 8388 8395 8469 8496 8492 8517 8247 8181 8121 8119 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8628 9049 9114 9088 9072 9177 9525 10149 9920 9884 9575 9175 9236 9261 9243 9068 9302 9579 9298 8914 8968 9025 9009 9190 9290 9154 9155 9085 9160 9254 9219 9227 9340 9274 9135 9100 9071 9072 9130 9168 9169 9071 9114 9171 9170 9114 9089 9104 8939 8967 9160 9322 9341 9029 9285 9157 8942 9003 9316 9438 9157 9478 9019 9320 9420 9092 8893 8913 9193 9353 8861 9153 9155 8760 8731 8823 8714 8715 8824 8867 9110 8877 8710 8812 9081 9130 9132 8925 8932 9037 8730 8829 8820 8723 8721 8847 8702 8998 9181 8937 8772 8670 9005 8802 8651 8652 8710 8752 8761 8760 8828 8860 9105 8881 8883 8772 8771 8715 8708 8648 8707 8703 8732 8860 8641 8660 8712 8710 8655 8611 8609 8588 8588 8570 8621 8622 8627 8568 8576 8859 8675 8576 8447 8504 8498 8442 8623 8537 8546 8506 8460 8515 8560 8455 8573 8410 8464 8452 8354 8266 8421 8616 8483 8594 8444 8426 8328 8264 8283 8277 8221 8215 8402 8345 8174 8228 8260 8155 8091 8081 8230 8138 8090 8088 8192 8102 8095 8250 8439 8413 8445 8272 8252 8171 8117 8163 8166 8171 8112 8392 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10721 10875 10897 11104 11079 11445 11062 11512 11545 11521 11246 11237 11087 11092 11318 11012 11103 11349 11280 10732 11215 11279 11279 11280 11127 11125 11232 11135 11128 11192 11346 11459 11489 11312 11296 11187 11127 11141 11140 11142 11076 11181 11181 11095 11151 11192 11090 11021 11046 11019 11219 10619 10668 10809 10969 11051 11358 11228 11011 11013 11088 11260 11260 11292 11172 11111 11121 11221 11113 11270 11390 11276 11200 11139 11193 11247 11245 11193 11129 11368 11819 11828 11749 11611 11613 11400 11468 11468 11521 11298 11147 11380 11145 11382 12138 12138 11397 11138 11176 11275 11275 11318 11360 11409 11529 11382 11470 11490 11493 11382 11347 11338 11322 11318 11266 11445 11474 11371 11313 11284 11343 11192 11498 11498 11508 11613 11691 11768 11645 12086 12539 12188 12088 12090 11660 11703 11792 11797 11674 11622 11703 11683 11537 11739 11487 11699 11751 11556 11779 11570 11240 11433 11340 11292 11509 11337 11338 11430 11508 11486 11440 11333 11323 11351 11449 11339 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11925 11926 12130 11913 11927 12386 12505 12134 11895 12016 12225 12225 12330 12418 12702 12518 12510 12915 12967 12980 12623 12342 12560 12516 12623 12340 12452 12663 12406 12161 12390 12401 12519 12375 12448 12737 13123 13252 13039 12929 12272 12250 12322 12285 12270 12274 12554 12332 11839 11877 12031 12053 12260 12475 12335 12218 12668 12701 12677 12402 12171 12389 12394 12208 12168 12441 12815 12254 11866 11996 11942 11964 12013 12381 12035 12361 12649 12583 12487 12045 12023 12008 12082 12297 11964 12332 12128 11674 11719 11733 11792 11788 11733 11731 11839 11742 12008 11808 11863 11964 11922 11928 11912 11803 11743 11798 11797 11892 11892 11837 11838 11792 11848 12020 11943 11787 11742 11745 11744 11717 11717 11865 11853 11716 11714 11941 11724 11712 12083 11737 11792 11791 11793 11728 11736 11839 11839 11792 11849 11894 11792 11726 11883 11993 11884 11775 11712 11977 12443 12515 12366 12228 12801 12288 11711 11834 11833 11843 11687 11893 11657 11822 12157 12275 11883 11602 11515 11568 11569 11574 11513 11521 11626 11515 11579 11633 11740 11697 11699 11681 11579 11513 11532 11526 11468 11462 11741 11567 11482 11538 11581 11472 11406 11400 11265 12236 11028 11003 11005 11158 11229 11245 11244 11005 11244 11731 11731 11790 11503 11502 11264 11027 11000 11151 11324 11432 11199 10982 11219 11426 11424 11207 10936 11005 11128 11129 11133 11183 11386 11197 11193 11295 11334 11279 11197 11162 11157 11074 11253 11081 11162 11142 11000 11129 11100 11569 11025 11164 11135 11130 11169 11379 11179 11308 11468 11617 11582 11538 11310 11300 11343 11338 11255 11319 11392 11470 11417 11181 11166 11156 11172 11175 11360 11537 11331 11383 11143 11242 11100 11203 11241 11302 11446 11451 11424 11352 11151 11141 11169 11152 11145 11237 11172 11118 11151 11146 11005 11133 11134 11133 11188 11272 11226 11275 11426 11459 11394 11279 11283 11131 11263 11157 11101 11288 11489 11323 10952 11073 11074 11073 11128 11076 11086 11144 11244 11287 11344 11144 11115 11061 11031 11087 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11339 11403 11476 11550 11403 11297 11440 11685 11503 11357 11688 11695 11721 11802 12198 11828 12432 12751 12895 12758 12635 12045 12035 12049 12053 11990 12054 11994 12064 12152 11926 12175 12198 12043 12008 12087 12315 12082 12134 11963 11973 12056 11954 11992 11921 12051 12066 12054 11961 12034 12029 12018 11903 11896 11988 12054 11967 11919 11914 11773 11914 11998 12046 12154 12003 12423 12293 12621 12711 12549 12303 12132 12004 11960 12250 11904 12295 12299 12302 11711 11854 11960 11876 11878 12171 12406 12186 11962 12322 12638 12563 12579 12560 12197 12546 11986 11962 11963 12115 12184 12185 12536 12187 12430 12429 12191 18192 12044 12336 12335 12336 12453 12331 12754 12635 12965 13054 12901 12644 12456 12330 12264 12586 12264 12662 12637 12022 12189 12440 12452 12381 12484 12425 12465 13395 13151 13093 12802 12380 12357 12325 12312 12190 12803 12962 12555 11850 12066 12153 12195 12281 12621 12299 12422 12737 12816 12696 12437 12402 12261 12117 12390 12085 12445 12429 11890 12166 12042 12084 12444 12285 12237 12315 12619 12699 12557 12330 12306 12333 12298 12118 11974 12516 12700 12167 11678 11739 11813 11753 11754 11814 11985 11762 11875 11764 11823 11987 12000 12002 11887 11886 11926 11762 11821 11815 11757 11751 11850 11753 11812 12020 12020 11802 11738 11759 12382 11765 12966 11886 11736 11737 11887 11961 11975 11974 12008 11756 11817 11755 11816 11812 11852 11861 11980 11749 11813 11872 11870 11813 11919 11955 11860 11859 11801 11918 12132 12489 12405 12407 12855 12255 12005 11866 11714 11865 11861 11893 11913 12259 11922 12147 12145 11904 11537 11693 11689 11689 11595 11639 11648 11649 11601 11656 11757 11868 11814 11660 11658 11601 11555 11493 11491 11551 11589 11716 11485 11499 11558 11557 11499 11758 11423 11025 11023 11159 11161 11024 11026 11250 11033 11543 11057 11401 11717 11640 11654 11635 11264 11024 11348 11347 11020 11172 11236 11237 11032 11741 12051 11465 11227 10947 11018 11239 11240 11260 11316 11144 11154 11246 11324 11302 11256 11149 11281 11261 11099 11155 11141 11307 11263 11018 11147 11582 11133 11038 11176 11181 11133 11236 11274 11189 11421 11590 11811 11710 11455 11335 11320 11452 11432 11436 11326 11312 11341 11287 11194 11184 11212 11195 11188 11206 11331 11226 11028 11147 11118 11113 11152 11362 11162 11249 11332 11313 11269 11152 11137 11127 11143 11283 11146 11175 11117 11142 11149 11018 11151 11152 11156 11206 11242 11314 11289 11446 11480 11425 11297 11197 11192 11109 11173 11116 11297 11277 10945 10957 11075 11046 11041 11279 11170 11090 11177 11260 11241 11197 11080 11065 11055 11071 11211 11074 11103 11045 11087 11094 10963 11104 11063 11063 11106 11148 11312 11192 11186 11331 11505 11530 11533 11376 11284 11243 11228 11218 11234 11237 11335 11397 11208 11147 11138 11122 11118 11066 11373 11448 11286 11015 11010 11015 11089 11092 11131 11207 11402 11346 11319 11203 11084 11075 11064 11052 10996 11029 11076 11008 10953 11194 10734 10816 10821 10773 10873 10992 10792 10955 11092 11052 11006 10797 10923 10903 10883 10773 10779 11105 11020 10546 11862 12274 12277 12274 12291 12289 12289 18964 12269
iterations count:3318449 (4901), effective:16057 (23)

initing FirstDep: 0m 0.001sec


iterations count:677 (1), effective:0 (0)
22230
iterations count:1806 (2), effective:30 (0)
20327 18932 23451 21308 19321
iterations count:5052 (7), effective:37 (0)

iterations count:677 (1), effective:0 (0)

iterations count:677 (1), effective:0 (0)

iterations count:677 (1), effective:0 (0)

Sequence of Actions to be Executed by the VM

This is useful if one wants to reexecute the tool in the VM from the submitted image disk.

set -x
# this is for BenchKit: configuration of major elements for the test
export BK_INPUT="PhaseVariation-PT-D05CS010"
export BK_EXAMINATION="CTLCardinality"
export BK_TOOL="marcie"
export BK_RESULT_DIR="/users/gast00/fkordon/BK_RESULTS/OUTPUTS"
export BK_TIME_CONFINEMENT="3600"
export BK_MEMORY_CONFINEMENT="16384"

# this is specific to your benchmark or test

export BIN_DIR="$HOME/BenchKit/bin"

# remove the execution directoty if it exists (to avoid increse of .vmdk images)
if [ -d execution ] ; then
rm -rf execution
fi

tar xzf /home/mcc/BenchKit/INPUTS/PhaseVariation-PT-D05CS010.tgz
mv PhaseVariation-PT-D05CS010 execution

# this is for BenchKit: explicit launching of the test

cd execution
echo "====================================================================="
echo " Generated by BenchKit 2-2979"
echo " Executing tool marcie"
echo " Input is PhaseVariation-PT-D05CS010, examination is CTLCardinality"
echo " Time confinement is $BK_TIME_CONFINEMENT seconds"
echo " Memory confinement is 16384 MBytes"
echo " Number of cores is 1"
echo " Run identifier is r089kn-ebro-146369093400129"
echo "====================================================================="
echo
echo "--------------------"
echo "content from stdout:"
echo
echo "=== Data for post analysis generated by BenchKit (invocation template)"
echo
if [ "CTLCardinality" = "UpperBounds" ] ; then
echo "The expected result is a vector of positive values"
echo NUM_VECTOR
elif [ "CTLCardinality" != "StateSpace" ] ; then
echo "The expected result is a vector of booleans"
echo BOOL_VECTOR
else
echo "no data necessary for post analysis"
fi
echo
if [ -f "CTLCardinality.txt" ] ; then
echo "here is the order used to build the result vector(from text file)"
for x in $(grep Property CTLCardinality.txt | cut -d ' ' -f 2 | sort -u) ; do
echo "FORMULA_NAME $x"
done
elif [ -f "CTLCardinality.xml" ] ; then # for cunf (txt files deleted;-)
echo echo "here is the order used to build the result vector(from xml file)"
for x in $(grep '' CTLCardinality.xml | cut -d '>' -f 2 | cut -d '<' -f 1 | sort -u) ; do
echo "FORMULA_NAME $x"
done
fi
echo
echo "=== Now, execution of the tool begins"
echo
echo -n "BK_START "
date -u +%s%3N
echo
timeout -s 9 $BK_TIME_CONFINEMENT bash -c "/home/mcc/BenchKit/BenchKit_head.sh 2> STDERR ; echo ; echo -n \"BK_STOP \" ; date -u +%s%3N"
if [ $? -eq 137 ] ; then
echo
echo "BK_TIME_CONFINEMENT_REACHED"
fi
echo
echo "--------------------"
echo "content from stderr:"
echo
cat STDERR ;