fond
Model Checking Contest 2018
8th edition, Bratislava, Slovakia, June 26, 2018
Execution of r081-blw3-152649948200074
Last Updated
June 26, 2018

About the Execution of ITS-Tools.L for Dekker-PT-010

Execution Summary
Max Memory
Used (MB)
Time wait (ms) CPU Usage (ms) I/O Wait (ms) Computed Result Execution
Status
15757.490 2891.00 6921.00 135.60 TFFTFTTTTFFFFTFF 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)
..................
/home/mcc/execution
total 228K
-rw-r--r-- 1 mcc users 3.4K May 15 18:54 CTLCardinality.txt
-rw-r--r-- 1 mcc users 19K May 15 18:54 CTLCardinality.xml
-rw-r--r-- 1 mcc users 2.8K May 15 18:54 CTLFireability.txt
-rw-r--r-- 1 mcc users 16K May 15 18:54 CTLFireability.xml
-rw-r--r-- 1 mcc users 4.0K May 15 18:50 GenericPropertiesDefinition.xml
-rw-r--r-- 1 mcc users 6.1K May 15 18:50 GenericPropertiesVerdict.xml
-rw-r--r-- 1 mcc users 2.3K May 15 18:54 LTLCardinality.txt
-rw-r--r-- 1 mcc users 9.6K May 15 18:54 LTLCardinality.xml
-rw-r--r-- 1 mcc users 2.0K May 15 18:54 LTLFireability.txt
-rw-r--r-- 1 mcc users 9.6K May 15 18:54 LTLFireability.xml
-rw-r--r-- 1 mcc users 3.2K May 15 18:54 ReachabilityCardinality.txt
-rw-r--r-- 1 mcc users 15K May 15 18:54 ReachabilityCardinality.xml
-rw-r--r-- 1 mcc users 104 May 15 18:54 ReachabilityDeadlock.txt
-rw-r--r-- 1 mcc users 342 May 15 18:54 ReachabilityDeadlock.xml
-rw-r--r-- 1 mcc users 3.9K May 15 18:54 ReachabilityFireability.txt
-rw-r--r-- 1 mcc users 24K May 15 18:54 ReachabilityFireability.xml
-rw-r--r-- 1 mcc users 1.6K May 15 18:54 UpperBounds.txt
-rw-r--r-- 1 mcc users 3.6K May 15 18:54 UpperBounds.xml
-rw-r--r-- 1 mcc users 6 May 15 18:50 equiv_col
-rw-r--r-- 1 mcc users 4 May 15 18:50 instance
-rw-r--r-- 1 mcc users 6 May 15 18:50 iscolored
-rw-r--r-- 1 mcc users 63K May 15 18:50 model.pnml
=====================================================================
Generated by BenchKit 2-3637
Executing tool itstoolsl
Input is Dekker-PT-010, examination is CTLFireability
Time confinement is 3600 seconds
Memory confinement is 16384 MBytes
Number of cores is 4
Run identifier is r081-blw3-152649948200074
=====================================================================


--------------------
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 Dekker-PT-010-CTLFireability-00
FORMULA_NAME Dekker-PT-010-CTLFireability-01
FORMULA_NAME Dekker-PT-010-CTLFireability-02
FORMULA_NAME Dekker-PT-010-CTLFireability-03
FORMULA_NAME Dekker-PT-010-CTLFireability-04
FORMULA_NAME Dekker-PT-010-CTLFireability-05
FORMULA_NAME Dekker-PT-010-CTLFireability-06
FORMULA_NAME Dekker-PT-010-CTLFireability-07
FORMULA_NAME Dekker-PT-010-CTLFireability-08
FORMULA_NAME Dekker-PT-010-CTLFireability-09
FORMULA_NAME Dekker-PT-010-CTLFireability-10
FORMULA_NAME Dekker-PT-010-CTLFireability-11
FORMULA_NAME Dekker-PT-010-CTLFireability-12
FORMULA_NAME Dekker-PT-010-CTLFireability-13
FORMULA_NAME Dekker-PT-010-CTLFireability-14
FORMULA_NAME Dekker-PT-010-CTLFireability-15

=== Now, execution of the tool begins

BK_START 1527247688185

Converted graph to binary with : CommandLine [args=[/home/mcc/BenchKit/itstools/plugins/fr.lip6.move.gal.louvain.binaries_1.0.0.201805241334/bin/convert-linux64, -i, /tmp/graph2339781120759353217.txt, -o, /tmp/graph2339781120759353217.bin, -w, /tmp/graph2339781120759353217.weights], workingDir=null]
Built communities with : CommandLine [args=[/home/mcc/BenchKit/itstools/plugins/fr.lip6.move.gal.louvain.binaries_1.0.0.201805241334/bin/louvain-linux64, /tmp/graph2339781120759353217.bin, -l, -1, -v, -w, /tmp/graph2339781120759353217.weights, -q, 0, -e, 0.001], workingDir=null]
Invoking ITS tools like this :CommandLine [args=[/home/mcc/BenchKit/itstools/plugins/fr.lip6.move.gal.itstools.binaries_1.0.0.201805241334/bin/its-ctl-linux64, --gc-threshold, 2000000, --quiet, -i, /home/mcc/execution/CTLFireability.pnml.gal, -t, CGAL, -ctl, /home/mcc/execution/CTLFireability.ctl], workingDir=/home/mcc/execution]

its-ctl command run as :

/home/mcc/BenchKit/itstools/plugins/fr.lip6.move.gal.itstools.binaries_1.0.0.201805241334/bin/its-ctl-linux64 --gc-threshold 2000000 --quiet -i /home/mcc/execution/CTLFireability.pnml.gal -t CGAL -ctl /home/mcc/execution/CTLFireability.ctl
No direction supplied, using forward translation only.
Parsed 16 CTL formulae.
built 48 ordering constraints for composite.
built 30 ordering constraints for composite.
built 30 ordering constraints for composite.
Model ,|S| ,Time ,Mem(kb) ,fin. SDD ,fin. DDD ,peak SDD ,peak DDD ,SDD Hom ,SDD cache peak ,DDD Hom ,DDD cachepeak ,SHom cache
reachable,6144,0.018507,5140,37,15,297,101,203,273,38,116,0


Converting to forward existential form...Done !
original formula: !(EF(AX(((((u3.flag_1_5>=1)&&(i9.u11.flag_1_7>=1))&&(i9.u5.p1_7>=1))&&(((u1.flag_1_2>=1)&&(u6.flag_1_8>=1))&&(u1.p1_2>=1))))))
=> equivalent forward existential formula: [(FwdU(Init,TRUE) * !(EX(!(((((u3.flag_1_5>=1)&&(i9.u11.flag_1_7>=1))&&(i9.u5.p1_7>=1))&&(((u1.flag_1_2>=1)&&(u6.flag_1_8>=1))&&(u1.p1_2>=1)))))))] = FALSE
Reverse transition relation is NOT exact ! Due to transitions exit_1, exit_7, u1.exit_2, u2.exit_3, u3.exit_5, u4.exit_6, u6.exit_8, u7.exit_9, u8.exit_0, u10.exit_4, Intersection with reachable at each step enabled. (destroyed/reverse/intersect/total) :0/110/10/120
(forward)formula 0,1,0.04066,5708,1,0,1957,101,1076,1380,251,116,3304
FORMULA Dekker-PT-010-CTLFireability-00 TRUE TECHNIQUES DECISION_DIAGRAMS TOPOLOGICAL USE_NUPN
Formula is TRUE !

***************************************

original formula: (((AG((((u8.flag_1_0>=1)&&(i9.u11.flag_1_7>=1))&&(u8.p1_0>=1))) * !(EX((((u2.flag_1_3>=1)&&(i9.u11.flag_1_7>=1))&&(u2.p1_3>=1))))) + (A((((i0.u0.flag_1_1>=1)&&(u1.flag_1_2>=1))&&(i0.u9.p1_1>=1)) U (((u10.flag_1_4>=1)&&(i9.u11.flag_1_7>=1))&&(i9.u5.p1_7>=1))) * (((i0.u0.flag_1_1>=1)&&(u3.flag_1_5>=1))&&(i0.u9.p1_1>=1)))) + EF((AX((((u3.flag_1_5>=1)&&(u6.flag_1_8>=1))&&(u3.p1_5>=1))) * ((!(((u2.flag_1_3>=1)&&(i9.u11.flag_1_7>=1))&&(i9.u5.p1_7>=1)))&&((((u1.flag_1_2>=1)&&(i9.u11.flag_1_7>=1))&&(u1.p1_2>=1))||(((u1.flag_1_2>=1)&&(u4.flag_1_6>=1))&&(u4.p1_6>=1)))))))
=> equivalent forward existential formula: ([(FwdU(((Init * !(E(TRUE U (!(EX(!((((u3.flag_1_5>=1)&&(u6.flag_1_8>=1))&&(u3.p1_5>=1))))) * ((!(((u2.flag_1_3>=1)&&(i9.u11.flag_1_7>=1))&&(i9.u5.p1_7>=1)))&&((((u1.flag_1_2>=1)&&(i9.u11.flag_1_7>=1))&&(u1.p1_2>=1))||(((u1.flag_1_2>=1)&&(u4.flag_1_6>=1))&&(u4.p1_6>=1)))))))) * !((!((E(!((((u10.flag_1_4>=1)&&(i9.u11.flag_1_7>=1))&&(i9.u5.p1_7>=1))) U (!((((i0.u0.flag_1_1>=1)&&(u1.flag_1_2>=1))&&(i0.u9.p1_1>=1))) * !((((u10.flag_1_4>=1)&&(i9.u11.flag_1_7>=1))&&(i9.u5.p1_7>=1))))) + EG(!((((u10.flag_1_4>=1)&&(i9.u11.flag_1_7>=1))&&(i9.u5.p1_7>=1)))))) * (((i0.u0.flag_1_1>=1)&&(u3.flag_1_5>=1))&&(i0.u9.p1_1>=1))))),TRUE) * !((((u8.flag_1_0>=1)&&(i9.u11.flag_1_7>=1))&&(u8.p1_0>=1))))] = FALSE * [(EY(((Init * !(E(TRUE U (!(EX(!((((u3.flag_1_5>=1)&&(u6.flag_1_8>=1))&&(u3.p1_5>=1))))) * ((!(((u2.flag_1_3>=1)&&(i9.u11.flag_1_7>=1))&&(i9.u5.p1_7>=1)))&&((((u1.flag_1_2>=1)&&(i9.u11.flag_1_7>=1))&&(u1.p1_2>=1))||(((u1.flag_1_2>=1)&&(u4.flag_1_6>=1))&&(u4.p1_6>=1)))))))) * !((!((E(!((((u10.flag_1_4>=1)&&(i9.u11.flag_1_7>=1))&&(i9.u5.p1_7>=1))) U (!((((i0.u0.flag_1_1>=1)&&(u1.flag_1_2>=1))&&(i0.u9.p1_1>=1))) * !((((u10.flag_1_4>=1)&&(i9.u11.flag_1_7>=1))&&(i9.u5.p1_7>=1))))) + EG(!((((u10.flag_1_4>=1)&&(i9.u11.flag_1_7>=1))&&(i9.u5.p1_7>=1)))))) * (((i0.u0.flag_1_1>=1)&&(u3.flag_1_5>=1))&&(i0.u9.p1_1>=1)))))) * (((u2.flag_1_3>=1)&&(i9.u11.flag_1_7>=1))&&(u2.p1_3>=1)))] = FALSE)
Using saturation style SCC detection
Fast SCC detection found an SCC at level 2
Fast SCC detection found an SCC at level 3
Fast SCC detection found an SCC at level 4
Fast SCC detection found an SCC at level 5
Fast SCC detection found an SCC at level 6
Fast SCC detection found an SCC at level 7
Fast SCC detection found an SCC at level 8
Fast SCC detection found an SCC at level 9
(forward)formula 1,0,0.065882,6236,1,0,2544,101,1469,2178,266,116,4993
FORMULA Dekker-PT-010-CTLFireability-01 FALSE TECHNIQUES DECISION_DIAGRAMS TOPOLOGICAL USE_NUPN
Formula is FALSE !

***************************************

original formula: EF(AG(((((((((((u8.flag_0_0>=1)&&(i0.u0.flag_0_1>=1))&&(u1.flag_0_2>=1))&&(u2.flag_0_3>=1))&&(u10.flag_0_4>=1))&&(u3.flag_0_5>=1))&&(u4.flag_0_6>=1))&&(u6.flag_0_8>=1))&&(u7.flag_0_9>=1))&&(i9.u5.p1_7>=1))))
=> equivalent forward existential formula: [(FwdU(Init,TRUE) * !(E(TRUE U !(((((((((((u8.flag_0_0>=1)&&(i0.u0.flag_0_1>=1))&&(u1.flag_0_2>=1))&&(u2.flag_0_3>=1))&&(u10.flag_0_4>=1))&&(u3.flag_0_5>=1))&&(u4.flag_0_6>=1))&&(u6.flag_0_8>=1))&&(u7.flag_0_9>=1))&&(i9.u5.p1_7>=1))))))] != FALSE
(forward)formula 2,0,0.069165,6500,1,0,2552,101,1524,2200,266,116,5080
FORMULA Dekker-PT-010-CTLFireability-02 FALSE TECHNIQUES DECISION_DIAGRAMS TOPOLOGICAL USE_NUPN
Formula is FALSE !

***************************************

original formula: AG(((((u10.flag_1_4>=1)&&(i9.u11.flag_1_7>=1))&&(u10.p1_4>=1)) + (EF((((u8.flag_1_0>=1)&&(u6.flag_1_8>=1))&&(u8.p1_0>=1))) + (((((u2.flag_1_3>=1)&&(u6.flag_1_8>=1))&&(u6.p1_8>=1))||(((u2.flag_1_3>=1)&&(u3.flag_1_5>=1))&&(u3.p1_5>=1)))||(((u1.flag_1_2>=1)&&(u6.flag_1_8>=1))&&(u1.p1_2>=1))))))
=> equivalent forward existential formula: [(((FwdU(Init,TRUE) * !((((u10.flag_1_4>=1)&&(i9.u11.flag_1_7>=1))&&(u10.p1_4>=1)))) * !((((((u2.flag_1_3>=1)&&(u6.flag_1_8>=1))&&(u6.p1_8>=1))||(((u2.flag_1_3>=1)&&(u3.flag_1_5>=1))&&(u3.p1_5>=1)))||(((u1.flag_1_2>=1)&&(u6.flag_1_8>=1))&&(u1.p1_2>=1))))) * !(E(TRUE U (((u8.flag_1_0>=1)&&(u6.flag_1_8>=1))&&(u8.p1_0>=1)))))] = FALSE
(forward)formula 3,1,0.071311,6500,1,0,2576,101,1528,2230,266,116,5166
FORMULA Dekker-PT-010-CTLFireability-03 TRUE TECHNIQUES DECISION_DIAGRAMS TOPOLOGICAL USE_NUPN
Formula is TRUE !

***************************************

original formula: (EF(AG(!(((u6.flag_1_8>=1)&&(u6.p3_8>=1))))) + E(AF((((u2.flag_1_3>=1)&&(u4.flag_1_6>=1))&&(u2.p1_3>=1))) U ((((u3.flag_1_5>=1)&&(u4.flag_1_6>=1))&&(u4.p1_6>=1))&&(((((((((((u8.flag_0_0>=1)&&(i0.u0.flag_0_1>=1))&&(u1.flag_0_2>=1))&&(u2.flag_0_3>=1))&&(u10.flag_0_4>=1))&&(u4.flag_0_6>=1))&&(i9.u5.flag_0_7>=1))&&(u6.flag_0_8>=1))&&(u7.flag_0_9>=1))&&(u3.p1_5>=1))&&(((i0.u0.flag_1_1>=1)&&(u7.flag_1_9>=1))&&(u7.p1_9>=1))))))
=> equivalent forward existential formula: ([(FwdU(Init,TRUE) * !(E(TRUE U !(!(((u6.flag_1_8>=1)&&(u6.p3_8>=1)))))))] != FALSE + [(FwdU(Init,!(EG(!((((u2.flag_1_3>=1)&&(u4.flag_1_6>=1))&&(u2.p1_3>=1)))))) * ((((u3.flag_1_5>=1)&&(u4.flag_1_6>=1))&&(u4.p1_6>=1))&&(((((((((((u8.flag_0_0>=1)&&(i0.u0.flag_0_1>=1))&&(u1.flag_0_2>=1))&&(u2.flag_0_3>=1))&&(u10.flag_0_4>=1))&&(u4.flag_0_6>=1))&&(i9.u5.flag_0_7>=1))&&(u6.flag_0_8>=1))&&(u7.flag_0_9>=1))&&(u3.p1_5>=1))&&(((i0.u0.flag_1_1>=1)&&(u7.flag_1_9>=1))&&(u7.p1_9>=1)))))] != FALSE)
(forward)formula 4,0,0.075648,6500,1,0,2738,101,1572,2446,274,116,5685
FORMULA Dekker-PT-010-CTLFireability-04 FALSE TECHNIQUES DECISION_DIAGRAMS TOPOLOGICAL USE_NUPN
Formula is FALSE !

***************************************

original formula: AG((!(AX((((u1.flag_1_2>=1)&&(u3.flag_1_5>=1))&&(u3.p1_5>=1)))) + EX(((((u8.flag_1_0>=1)&&(u4.flag_1_6>=1))&&(u8.p1_0>=1))&&(((u2.flag_1_3>=1)&&(u10.flag_1_4>=1))&&(u10.p1_4>=1))))))
=> equivalent forward existential formula: [((FwdU(Init,TRUE) * !(EX(((((u8.flag_1_0>=1)&&(u4.flag_1_6>=1))&&(u8.p1_0>=1))&&(((u2.flag_1_3>=1)&&(u10.flag_1_4>=1))&&(u10.p1_4>=1)))))) * !(EX(!((((u1.flag_1_2>=1)&&(u3.flag_1_5>=1))&&(u3.p1_5>=1))))))] = FALSE
(forward)formula 5,1,0.078227,6500,1,0,2856,101,1577,2598,274,116,5961
FORMULA Dekker-PT-010-CTLFireability-05 TRUE TECHNIQUES DECISION_DIAGRAMS TOPOLOGICAL USE_NUPN
Formula is TRUE !

***************************************

original formula: (((EF(((((u4.flag_1_6>=1)&&(u6.flag_1_8>=1))&&(u4.p1_6>=1))&&(((u3.flag_1_5>=1)&&(u4.flag_1_6>=1))&&(u3.p1_5>=1)))) + ((i0.u0.flag_0_1>=1)&&(i0.u9.p0_1>=1))) * !(((((u4.flag_1_6>=1)&&(u6.flag_1_8>=1))&&(u4.p1_6>=1))||(((i0.u0.flag_1_1>=1)&&(u10.flag_1_4>=1))&&(u10.p1_4>=1))))) + (((u8.flag_1_0>=1)&&(u6.flag_1_8>=1))&&(u8.p1_0>=1)))
=> equivalent forward existential formula: (([(FwdU((Init * !(((((u4.flag_1_6>=1)&&(u6.flag_1_8>=1))&&(u4.p1_6>=1))||(((i0.u0.flag_1_1>=1)&&(u10.flag_1_4>=1))&&(u10.p1_4>=1))))),TRUE) * ((((u4.flag_1_6>=1)&&(u6.flag_1_8>=1))&&(u4.p1_6>=1))&&(((u3.flag_1_5>=1)&&(u4.flag_1_6>=1))&&(u3.p1_5>=1))))] != FALSE + [((Init * !(((((u4.flag_1_6>=1)&&(u6.flag_1_8>=1))&&(u4.p1_6>=1))||(((i0.u0.flag_1_1>=1)&&(u10.flag_1_4>=1))&&(u10.p1_4>=1))))) * ((i0.u0.flag_0_1>=1)&&(i0.u9.p0_1>=1)))] != FALSE) + [(Init * (((u8.flag_1_0>=1)&&(u6.flag_1_8>=1))&&(u8.p1_0>=1)))] != FALSE)
(forward)formula 6,1,0.080507,6500,1,0,2867,101,1599,2611,277,116,5990
FORMULA Dekker-PT-010-CTLFireability-06 TRUE TECHNIQUES DECISION_DIAGRAMS TOPOLOGICAL USE_NUPN
Formula is TRUE !

***************************************

original formula: EG(AF(!(((i0.u0.flag_1_1>=1)&&(i0.u9.p3_1>=1)))))
=> equivalent forward existential formula: [FwdG(Init,!(EG(!(!(((i0.u0.flag_1_1>=1)&&(i0.u9.p3_1>=1)))))))] != FALSE
(forward)formula 7,1,0.089878,6764,1,0,3747,101,1621,3796,277,116,7938
FORMULA Dekker-PT-010-CTLFireability-07 TRUE TECHNIQUES DECISION_DIAGRAMS TOPOLOGICAL USE_NUPN
Formula is TRUE !

***************************************

original formula: !((EF((((u2.flag_1_3>=1)&&(i9.u11.flag_1_7>=1))&&(i9.u5.p1_7>=1))) * (((u8.flag_1_0>=1)&&(u2.flag_1_3>=1))&&(u8.p1_0>=1))))
=> equivalent forward existential formula: ([(Init * !(E(TRUE U (((u2.flag_1_3>=1)&&(i9.u11.flag_1_7>=1))&&(i9.u5.p1_7>=1)))))] != FALSE + [(Init * !((((u8.flag_1_0>=1)&&(u2.flag_1_3>=1))&&(u8.p1_0>=1))))] != FALSE)
(forward)formula 8,1,0.092718,7292,1,0,3761,101,1626,3814,277,116,8016
FORMULA Dekker-PT-010-CTLFireability-08 TRUE TECHNIQUES DECISION_DIAGRAMS TOPOLOGICAL USE_NUPN
Formula is TRUE !

***************************************

original formula: (((i0.u0.flag_1_1>=1)&&(u2.flag_1_3>=1))&&(u2.p1_3>=1))
=> equivalent forward existential formula: [(Init * (((i0.u0.flag_1_1>=1)&&(u2.flag_1_3>=1))&&(u2.p1_3>=1)))] != FALSE
(forward)formula 9,0,0.093069,7292,1,0,3762,101,1630,3814,277,116,8025
FORMULA Dekker-PT-010-CTLFireability-09 FALSE TECHNIQUES DECISION_DIAGRAMS TOPOLOGICAL USE_NUPN
Formula is FALSE !

***************************************

original formula: (AX((((i9.u11.flag_1_7>=1)&&(u7.flag_1_9>=1))&&(u7.p1_9>=1))) * (EF(AG((((u1.flag_1_2>=1)&&(u4.flag_1_6>=1))&&(u1.p1_2>=1)))) * ((AG((((u4.flag_1_6>=1)&&(i9.u11.flag_1_7>=1))&&(u4.p1_6>=1))) * AX(((u3.flag_1_5>=1)&&(u3.p3_5>=1)))) + ((((u7.flag_1_9>=1)&&(u7.p3_9>=1))&&(((((((((((u8.flag_0_0>=1)&&(i0.u0.flag_0_1>=1))&&(u1.flag_0_2>=1))&&(u2.flag_0_3>=1))&&(u10.flag_0_4>=1))&&(u3.flag_0_5>=1))&&(i9.u5.flag_0_7>=1))&&(u6.flag_0_8>=1))&&(u7.flag_0_9>=1))&&(u4.p1_6>=1))||(((u1.flag_1_2>=1)&&(u4.flag_1_6>=1))&&(u1.p1_2>=1))))||(((u8.flag_1_0>=1)&&(u4.flag_1_6>=1))&&(u4.p1_6>=1))))))
=> equivalent forward existential formula: ([(EY(Init) * !((((i9.u11.flag_1_7>=1)&&(u7.flag_1_9>=1))&&(u7.p1_9>=1))))] = FALSE * ([(Init * !(E(TRUE U !(E(TRUE U !((((u1.flag_1_2>=1)&&(u4.flag_1_6>=1))&&(u1.p1_2>=1))))))))] = FALSE * ([(FwdU((Init * !(((((u7.flag_1_9>=1)&&(u7.p3_9>=1))&&(((((((((((u8.flag_0_0>=1)&&(i0.u0.flag_0_1>=1))&&(u1.flag_0_2>=1))&&(u2.flag_0_3>=1))&&(u10.flag_0_4>=1))&&(u3.flag_0_5>=1))&&(i9.u5.flag_0_7>=1))&&(u6.flag_0_8>=1))&&(u7.flag_0_9>=1))&&(u4.p1_6>=1))||(((u1.flag_1_2>=1)&&(u4.flag_1_6>=1))&&(u1.p1_2>=1))))||(((u8.flag_1_0>=1)&&(u4.flag_1_6>=1))&&(u4.p1_6>=1))))),TRUE) * !((((u4.flag_1_6>=1)&&(i9.u11.flag_1_7>=1))&&(u4.p1_6>=1))))] = FALSE * [(EY((Init * !(((((u7.flag_1_9>=1)&&(u7.p3_9>=1))&&(((((((((((u8.flag_0_0>=1)&&(i0.u0.flag_0_1>=1))&&(u1.flag_0_2>=1))&&(u2.flag_0_3>=1))&&(u10.flag_0_4>=1))&&(u3.flag_0_5>=1))&&(i9.u5.flag_0_7>=1))&&(u6.flag_0_8>=1))&&(u7.flag_0_9>=1))&&(u4.p1_6>=1))||(((u1.flag_1_2>=1)&&(u4.flag_1_6>=1))&&(u1.p1_2>=1))))||(((u8.flag_1_0>=1)&&(u4.flag_1_6>=1))&&(u4.p1_6>=1)))))) * !(((u3.flag_1_5>=1)&&(u3.p3_5>=1))))] = FALSE)))
(forward)formula 10,0,0.096433,7292,1,0,3769,101,1664,3836,280,116,8064
FORMULA Dekker-PT-010-CTLFireability-10 FALSE TECHNIQUES DECISION_DIAGRAMS TOPOLOGICAL USE_NUPN
Formula is FALSE !

***************************************

original formula: (((u8.flag_1_0>=1)&&(u3.flag_1_5>=1))&&(u8.p1_0>=1))
=> equivalent forward existential formula: [(Init * (((u8.flag_1_0>=1)&&(u3.flag_1_5>=1))&&(u8.p1_0>=1)))] != FALSE
(forward)formula 11,0,0.097206,7292,1,0,3770,101,1668,3836,280,116,8067
FORMULA Dekker-PT-010-CTLFireability-11 FALSE TECHNIQUES DECISION_DIAGRAMS TOPOLOGICAL USE_NUPN
Formula is FALSE !

***************************************

original formula: ((((u4.flag_1_6>=1)&&(u7.flag_1_9>=1))&&(u4.p1_6>=1)) * ((((i0.u0.flag_1_1>=1)&&(u1.flag_1_2>=1))&&(u1.p1_2>=1)) + EF((((((u8.flag_1_0>=1)&&(u7.flag_1_9>=1))&&(u8.p1_0>=1))||(((u8.flag_1_0>=1)&&(u4.flag_1_6>=1))&&(u8.p1_0>=1)))||((((u2.flag_1_3>=1)&&(u10.flag_1_4>=1))&&(u10.p1_4>=1))||(((u8.flag_1_0>=1)&&(u6.flag_1_8>=1))&&(u6.p1_8>=1)))))))
=> equivalent forward existential formula: ([((Init * (((u4.flag_1_6>=1)&&(u7.flag_1_9>=1))&&(u4.p1_6>=1))) * (((i0.u0.flag_1_1>=1)&&(u1.flag_1_2>=1))&&(u1.p1_2>=1)))] != FALSE + [(FwdU((Init * (((u4.flag_1_6>=1)&&(u7.flag_1_9>=1))&&(u4.p1_6>=1))),TRUE) * (((((u8.flag_1_0>=1)&&(u7.flag_1_9>=1))&&(u8.p1_0>=1))||(((u8.flag_1_0>=1)&&(u4.flag_1_6>=1))&&(u8.p1_0>=1)))||((((u2.flag_1_3>=1)&&(u10.flag_1_4>=1))&&(u10.p1_4>=1))||(((u8.flag_1_0>=1)&&(u6.flag_1_8>=1))&&(u6.p1_8>=1)))))] != FALSE)
(forward)formula 12,0,0.102042,7292,1,0,3797,101,1698,3870,280,116,8110
FORMULA Dekker-PT-010-CTLFireability-12 FALSE TECHNIQUES DECISION_DIAGRAMS TOPOLOGICAL USE_NUPN
Formula is FALSE !

***************************************

original formula: AF((((((i0.u0.flag_1_1>=1)&&(u3.flag_1_5>=1))&&(i0.u9.p1_1>=1))&&((!(((u1.flag_1_2>=1)&&(i9.u11.flag_1_7>=1))&&(u1.p1_2>=1)))&&((((u6.flag_1_8>=1)&&(u7.flag_1_9>=1))&&(u7.p1_9>=1))&&((((((((((u8.flag_0_0>=1)&&(i0.u0.flag_0_1>=1))&&(u1.flag_0_2>=1))&&(u10.flag_0_4>=1))&&(u3.flag_0_5>=1))&&(u4.flag_0_6>=1))&&(i9.u5.flag_0_7>=1))&&(u6.flag_0_8>=1))&&(u7.flag_0_9>=1))&&(u2.p1_3>=1)))))||(!(((((u3.flag_1_5>=1)&&(u6.flag_1_8>=1))&&(u6.p1_8>=1))&&(((u1.flag_1_2>=1)&&(u6.flag_1_8>=1))&&(u6.p1_8>=1)))&&((((u1.flag_1_2>=1)&&(u4.flag_1_6>=1))&&(u4.p1_6>=1))||((i0.u0.flag_0_1>=1)&&(i0.u9.p0_1>=1)))))))
=> equivalent forward existential formula: [FwdG(Init,!((((((i0.u0.flag_1_1>=1)&&(u3.flag_1_5>=1))&&(i0.u9.p1_1>=1))&&((!(((u1.flag_1_2>=1)&&(i9.u11.flag_1_7>=1))&&(u1.p1_2>=1)))&&((((u6.flag_1_8>=1)&&(u7.flag_1_9>=1))&&(u7.p1_9>=1))&&((((((((((u8.flag_0_0>=1)&&(i0.u0.flag_0_1>=1))&&(u1.flag_0_2>=1))&&(u10.flag_0_4>=1))&&(u3.flag_0_5>=1))&&(u4.flag_0_6>=1))&&(i9.u5.flag_0_7>=1))&&(u6.flag_0_8>=1))&&(u7.flag_0_9>=1))&&(u2.p1_3>=1)))))||(!(((((u3.flag_1_5>=1)&&(u6.flag_1_8>=1))&&(u6.p1_8>=1))&&(((u1.flag_1_2>=1)&&(u6.flag_1_8>=1))&&(u6.p1_8>=1)))&&((((u1.flag_1_2>=1)&&(u4.flag_1_6>=1))&&(u4.p1_6>=1))||((i0.u0.flag_0_1>=1)&&(i0.u9.p0_1>=1))))))))] = FALSE
(forward)formula 13,1,0.106503,7292,1,0,3847,101,1765,3932,284,116,8191
FORMULA Dekker-PT-010-CTLFireability-13 TRUE TECHNIQUES DECISION_DIAGRAMS TOPOLOGICAL USE_NUPN
Formula is TRUE !

***************************************

original formula: ((((u4.flag_1_6>=1)&&(i9.u11.flag_1_7>=1))&&(i9.u5.p1_7>=1)) * AF(EX((((((((((((u8.flag_0_0>=1)&&(i0.u0.flag_0_1>=1))&&(u1.flag_0_2>=1))&&(u2.flag_0_3>=1))&&(u3.flag_0_5>=1))&&(u4.flag_0_6>=1))&&(i9.u5.flag_0_7>=1))&&(u6.flag_0_8>=1))&&(u7.flag_0_9>=1))&&(u10.p1_4>=1))||((u1.flag_1_2>=1)&&(u1.p3_2>=1))))))
=> equivalent forward existential formula: ([(Init * !((((u4.flag_1_6>=1)&&(i9.u11.flag_1_7>=1))&&(i9.u5.p1_7>=1))))] = FALSE * [FwdG(Init,!(EX((((((((((((u8.flag_0_0>=1)&&(i0.u0.flag_0_1>=1))&&(u1.flag_0_2>=1))&&(u2.flag_0_3>=1))&&(u3.flag_0_5>=1))&&(u4.flag_0_6>=1))&&(i9.u5.flag_0_7>=1))&&(u6.flag_0_8>=1))&&(u7.flag_0_9>=1))&&(u10.p1_4>=1))||((u1.flag_1_2>=1)&&(u1.p3_2>=1))))))] = FALSE)
(forward)formula 14,0,0.11133,7292,1,0,4010,101,1791,4132,284,116,8529
FORMULA Dekker-PT-010-CTLFireability-14 FALSE TECHNIQUES DECISION_DIAGRAMS TOPOLOGICAL USE_NUPN
Formula is FALSE !

***************************************

original formula: (((i9.u11.flag_1_7>=1)&&(u7.flag_1_9>=1))&&(i9.u5.p1_7>=1))
=> equivalent forward existential formula: [(Init * (((i9.u11.flag_1_7>=1)&&(u7.flag_1_9>=1))&&(i9.u5.p1_7>=1)))] != FALSE
(forward)formula 15,0,0.11185,7292,1,0,4011,101,1795,4132,284,116,8531
FORMULA Dekker-PT-010-CTLFireability-15 FALSE TECHNIQUES DECISION_DIAGRAMS TOPOLOGICAL USE_NUPN
Formula is FALSE !

***************************************


BK_STOP 1527247691076

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

+ export BINDIR=/home/mcc/BenchKit/
+ BINDIR=/home/mcc/BenchKit/
++ pwd
+ export MODEL=/home/mcc/execution
+ MODEL=/home/mcc/execution
+ /home/mcc/BenchKit//runeclipse.sh /home/mcc/execution CTLFireability -its -ltsminpath /home/mcc/BenchKit//lts_install_dir/ -louvain -smt
+ ulimit -s 65536
+ [[ -z '' ]]
+ export LTSMIN_MEM_SIZE=8589934592
+ LTSMIN_MEM_SIZE=8589934592
+ /home/mcc/BenchKit//itstools/its-tools -consoleLog -data /home/mcc/execution/workspace -pnfolder /home/mcc/execution -examination CTLFireability -z3path /home/mcc/BenchKit//z3/bin/z3 -yices2path /home/mcc/BenchKit//yices/bin/yices -its -ltsminpath /home/mcc/BenchKit//lts_install_dir/ -louvain -smt -vmargs -Dosgi.locking=none -Declipse.stateSaveDelayInterval=-1 -Dosgi.configuration.area=/tmp/.eclipse -Xss8m -Xms40m -Xmx8192m -Dfile.encoding=UTF-8 -Dosgi.requiredJavaVersion=1.6
May 25, 2018 11:28:09 AM fr.lip6.move.gal.application.Application start
INFO: Running its-tools with arguments : [-pnfolder, /home/mcc/execution, -examination, CTLFireability, -z3path, /home/mcc/BenchKit//z3/bin/z3, -yices2path, /home/mcc/BenchKit//yices/bin/yices, -its, -ltsminpath, /home/mcc/BenchKit//lts_install_dir/, -louvain, -smt]
May 25, 2018 11:28:09 AM fr.lip6.move.gal.application.MccTranslator transformPNML
INFO: Parsing pnml file : /home/mcc/execution/model.pnml
May 25, 2018 11:28:10 AM fr.lip6.move.gal.nupn.PTNetReader loadFromXML
INFO: Load time of PNML (sax parser for PT used): 57 ms
May 25, 2018 11:28:10 AM fr.lip6.move.gal.pnml.togal.PTGALTransformer handlePage
INFO: Transformed 50 places.
May 25, 2018 11:28:10 AM fr.lip6.move.gal.pnml.togal.PTGALTransformer handlePage
INFO: Transformed 120 transitions.
May 25, 2018 11:28:10 AM fr.lip6.move.serialization.SerializationUtil systemToFile
INFO: Time to serialize gal into /home/mcc/execution/model.pnml.img.gal : 12 ms
May 25, 2018 11:28:10 AM fr.lip6.move.gal.application.MccTranslator applyOrder
INFO: Applying decomposition
May 25, 2018 11:28:10 AM fr.lip6.move.gal.instantiate.GALRewriter flatten
INFO: Flatten gal took : 66 ms
May 25, 2018 11:28:10 AM fr.lip6.move.gal.instantiate.GALRewriter flatten
INFO: Flatten gal took : 29 ms
Begin: Fri May 25 11:28:10 2018

Computation of communities with the Newman-Girvan Modularity quality function

level 0:
start computation: Fri May 25 11:28:10 2018
network size: 50 nodes, 680 links, 240 weight
quality increased from -0.0235104 to 0.518257
end computation: Fri May 25 11:28:10 2018
level 1:
start computation: Fri May 25 11:28:10 2018
network size: 12 nodes, 144 links, 240 weight
quality increased from 0.518257 to 0.575
end computation: Fri May 25 11:28:10 2018
level 2:
start computation: Fri May 25 11:28:10 2018
network size: 10 nodes, 100 links, 240 weight
quality increased from 0.575 to 0.575
end computation: Fri May 25 11:28:10 2018
End: Fri May 25 11:28:10 2018
Total duration: 0 sec
0.575
May 25, 2018 11:28:10 AM fr.lip6.move.gal.instantiate.CompositeBuilder decomposeWithOrder
INFO: Decomposing Gal with order
May 25, 2018 11:28:10 AM fr.lip6.move.gal.instantiate.GALRewriter flatten
INFO: Flatten gal took : 31 ms
May 25, 2018 11:28:10 AM fr.lip6.move.gal.instantiate.CompositeBuilder rewriteArraysToAllowPartition
INFO: Rewriting arrays to variables to allow decomposition.
May 25, 2018 11:28:10 AM fr.lip6.move.gal.instantiate.Instantiator fuseIsomorphicEffects
INFO: Removed a total of 258 redundant transitions.
May 25, 2018 11:28:10 AM fr.lip6.move.serialization.SerializationUtil systemToFile
INFO: Time to serialize gal into /home/mcc/execution/CTLFireability.pnml.gal : 4 ms
May 25, 2018 11:28:10 AM fr.lip6.move.serialization.SerializationUtil serializePropertiesForITSCTLTools
INFO: Time to serialize properties into /home/mcc/execution/CTLFireability.ctl : 3 ms

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="Dekker-PT-010"
export BK_EXAMINATION="CTLFireability"
export BK_TOOL="itstoolsl"
export BK_RESULT_DIR="/tmp/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/Dekker-PT-010.tgz
mv Dekker-PT-010 execution
cd execution
pwd
ls -lh

# this is for BenchKit: explicit launching of the test
echo "====================================================================="
echo " Generated by BenchKit 2-3637"
echo " Executing tool itstoolsl"
echo " Input is Dekker-PT-010, examination is CTLFireability"
echo " Time confinement is $BK_TIME_CONFINEMENT seconds"
echo " Memory confinement is 16384 MBytes"
echo " Number of cores is 4"
echo " Run identifier is r081-blw3-152649948200074"
echo "====================================================================="
echo
echo "--------------------"
echo "content from stdout:"
echo
echo "=== Data for post analysis generated by BenchKit (invocation template)"
echo
if [ "CTLFireability" = "UpperBounds" ] ; then
echo "The expected result is a vector of positive values"
echo NUM_VECTOR
elif [ "CTLFireability" != "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 "CTLFireability.txt" ] ; then
echo "here is the order used to build the result vector(from text file)"
for x in $(grep Property CTLFireability.txt | cut -d ' ' -f 2 | sort -u) ; do
echo "FORMULA_NAME $x"
done
elif [ -f "CTLFireability.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 '' CTLFireability.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 ;