fond
Model Checking Contest 2021
11th edition, Paris, France, June 23, 2021
Execution of r121-tall-162075407300698
Last Updated
Jun 28, 2021

About the Execution of ITS-Tools for MAPK-PT-00008

Execution Summary
Max Memory
Used (MB)
Time wait (ms) CPU Usage (ms) I/O Wait (ms) Computed Result Execution
Status
373.111 25181.00 24243.00 4201.40 FFTFTTTTFTFTFTTF normal

Execution Chart

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

Trace from the execution

Formatting '/data/fkordon/mcc2021-input.r121-tall-162075407300698.qcow2', fmt=qcow2 size=4294967296 backing_file='/data/fkordon/mcc2021-input.qcow2' encryption=off cluster_size=65536 lazy_refcounts=off
Waiting for the VM to be ready (probing ssh)
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=====================================================================
Generated by BenchKit 2-4028
Executing tool itstools
Input is MAPK-PT-00008, examination is CTLFireability
Time confinement is 3600 seconds
Memory confinement is 16384 MBytes
Number of cores is 4
Run identifier is r121-tall-162075407300698
=====================================================================

--------------------
preparation of the directory to be used:
/home/mcc/execution
total 448K
-rw-r--r-- 1 mcc users 19K May 5 16:58 CTLCardinality.txt
-rw-r--r-- 1 mcc users 151K May 10 09:43 CTLCardinality.xml
-rw-r--r-- 1 mcc users 9.4K May 5 16:58 CTLFireability.txt
-rw-r--r-- 1 mcc users 92K May 10 09:43 CTLFireability.xml
-rw-r--r-- 1 mcc users 4.2K May 6 14:48 GenericPropertiesDefinition.xml
-rw-r--r-- 1 mcc users 6.2K May 6 14:48 GenericPropertiesVerdict.xml
-rw-r--r-- 1 mcc users 3.5K Mar 28 16:19 LTLCardinality.txt
-rw-r--r-- 1 mcc users 25K Mar 28 16:19 LTLCardinality.xml
-rw-r--r-- 1 mcc users 1.8K Mar 28 16:19 LTLFireability.txt
-rw-r--r-- 1 mcc users 16K Mar 28 16:19 LTLFireability.xml
-rw-r--r-- 1 mcc users 4.1K Mar 27 06:04 ReachabilityCardinality.txt
-rw-r--r-- 1 mcc users 21K Mar 27 06:04 ReachabilityCardinality.xml
-rw-r--r-- 1 mcc users 2.9K Mar 25 07:14 ReachabilityFireability.txt
-rw-r--r-- 1 mcc users 20K Mar 25 07:14 ReachabilityFireability.xml
-rw-r--r-- 1 mcc users 1.6K Mar 22 09:15 UpperBounds.txt
-rw-r--r-- 1 mcc users 3.6K Mar 22 09:15 UpperBounds.xml
-rw-r--r-- 1 mcc users 6 May 5 16:51 equiv_col
-rw-r--r-- 1 mcc users 6 May 5 16:51 instance
-rw-r--r-- 1 mcc users 6 May 5 16:51 iscolored
-rw-r--r-- 1 mcc users 25K May 5 16:51 model.pnml

--------------------
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 MAPK-PT-00008-CTLFireability-00
FORMULA_NAME MAPK-PT-00008-CTLFireability-01
FORMULA_NAME MAPK-PT-00008-CTLFireability-02
FORMULA_NAME MAPK-PT-00008-CTLFireability-03
FORMULA_NAME MAPK-PT-00008-CTLFireability-04
FORMULA_NAME MAPK-PT-00008-CTLFireability-05
FORMULA_NAME MAPK-PT-00008-CTLFireability-06
FORMULA_NAME MAPK-PT-00008-CTLFireability-07
FORMULA_NAME MAPK-PT-00008-CTLFireability-08
FORMULA_NAME MAPK-PT-00008-CTLFireability-09
FORMULA_NAME MAPK-PT-00008-CTLFireability-10
FORMULA_NAME MAPK-PT-00008-CTLFireability-11
FORMULA_NAME MAPK-PT-00008-CTLFireability-12
FORMULA_NAME MAPK-PT-00008-CTLFireability-13
FORMULA_NAME MAPK-PT-00008-CTLFireability-14
FORMULA_NAME MAPK-PT-00008-CTLFireability-15

=== Now, execution of the tool begins

BK_START 1620888090039

Running Version 0
[2021-05-13 06:41:31] [INFO ] Running its-tools with arguments : [-pnfolder, /home/mcc/execution, -examination, CTLFireability, -spotpath, /home/mcc/BenchKit/bin//..//ltlfilt, -z3path, /home/mcc/BenchKit/bin//..//z3/bin/z3, -yices2path, /home/mcc/BenchKit/bin//..//yices/bin/yices, -its, -ltsmin, -greatspnpath, /home/mcc/BenchKit/bin//..//greatspn/, -order, META, -manyOrder, -smt, -timeout, 3600]
[2021-05-13 06:41:31] [INFO ] Parsing pnml file : /home/mcc/execution/model.pnml
[2021-05-13 06:41:31] [INFO ] Load time of PNML (sax parser for PT used): 31 ms
[2021-05-13 06:41:31] [INFO ] Transformed 22 places.
[2021-05-13 06:41:31] [INFO ] Transformed 30 transitions.
[2021-05-13 06:41:31] [INFO ] Parsed PT model containing 22 places and 30 transitions in 70 ms.
Parsed 16 properties from file /home/mcc/execution/CTLFireability.xml in 15 ms.
[2021-05-13 06:41:31] [INFO ] Reduced 1 identical enabling conditions.
[2021-05-13 06:41:31] [INFO ] Reduced 1 identical enabling conditions.
[2021-05-13 06:41:31] [INFO ] Reduced 1 identical enabling conditions.
[2021-05-13 06:41:31] [INFO ] Reduced 1 identical enabling conditions.
[2021-05-13 06:41:31] [INFO ] Reduced 1 identical enabling conditions.
[2021-05-13 06:41:31] [INFO ] Reduced 1 identical enabling conditions.
[2021-05-13 06:41:31] [INFO ] Reduced 1 identical enabling conditions.
[2021-05-13 06:41:31] [INFO ] Reduced 1 identical enabling conditions.
[2021-05-13 06:41:31] [INFO ] Reduced 1 identical enabling conditions.
[2021-05-13 06:41:31] [INFO ] Reduced 1 identical enabling conditions.
[2021-05-13 06:41:31] [INFO ] Reduced 2 identical enabling conditions.
[2021-05-13 06:41:31] [INFO ] Reduced 1 identical enabling conditions.
[2021-05-13 06:41:31] [INFO ] Reduced 1 identical enabling conditions.
[2021-05-13 06:41:31] [INFO ] Reduced 1 identical enabling conditions.
[2021-05-13 06:41:31] [INFO ] Reduced 1 identical enabling conditions.
[2021-05-13 06:41:31] [INFO ] Reduced 1 identical enabling conditions.
[2021-05-13 06:41:31] [INFO ] Reduced 1 identical enabling conditions.
[2021-05-13 06:41:31] [INFO ] Reduced 1 identical enabling conditions.
[2021-05-13 06:41:31] [INFO ] Reduced 1 identical enabling conditions.
[2021-05-13 06:41:31] [INFO ] Reduced 1 identical enabling conditions.
[2021-05-13 06:41:31] [INFO ] Reduced 1 identical enabling conditions.
[2021-05-13 06:41:31] [INFO ] Reduced 1 identical enabling conditions.
[2021-05-13 06:41:31] [INFO ] Reduced 1 identical enabling conditions.
[2021-05-13 06:41:31] [INFO ] Reduced 2 identical enabling conditions.
[2021-05-13 06:41:31] [INFO ] Reduced 1 identical enabling conditions.
[2021-05-13 06:41:31] [INFO ] Reduced 1 identical enabling conditions.
[2021-05-13 06:41:31] [INFO ] Reduced 2 identical enabling conditions.
[2021-05-13 06:41:31] [INFO ] Reduced 1 identical enabling conditions.
[2021-05-13 06:41:31] [INFO ] Reduced 1 identical enabling conditions.
[2021-05-13 06:41:31] [INFO ] Reduced 1 identical enabling conditions.
[2021-05-13 06:41:31] [INFO ] Reduced 2 identical enabling conditions.
[2021-05-13 06:41:31] [INFO ] Reduced 1 identical enabling conditions.
[2021-05-13 06:41:31] [INFO ] Reduced 1 identical enabling conditions.
[2021-05-13 06:41:31] [INFO ] Reduced 1 identical enabling conditions.
[2021-05-13 06:41:31] [INFO ] Reduced 1 identical enabling conditions.
[2021-05-13 06:41:31] [INFO ] Reduced 1 identical enabling conditions.
[2021-05-13 06:41:31] [INFO ] Reduced 2 identical enabling conditions.
[2021-05-13 06:41:31] [INFO ] Reduced 2 identical enabling conditions.
[2021-05-13 06:41:31] [INFO ] Reduced 2 identical enabling conditions.
[2021-05-13 06:41:31] [INFO ] Reduced 2 identical enabling conditions.
[2021-05-13 06:41:31] [INFO ] Reduced 1 identical enabling conditions.
[2021-05-13 06:41:31] [INFO ] Reduced 1 identical enabling conditions.
[2021-05-13 06:41:31] [INFO ] Reduced 1 identical enabling conditions.
Support contains 22 out of 22 places. Attempting structural reductions.
Starting structural reductions, iteration 0 : 22/22 places, 30/30 transitions.
Applied a total of 0 rules in 8 ms. Remains 22 /22 variables (removed 0) and now considering 30/30 (removed 0) transitions.
// Phase 1: matrix 30 rows 22 cols
[2021-05-13 06:41:31] [INFO ] Computed 7 place invariants in 5 ms
[2021-05-13 06:41:31] [INFO ] Implicit Places using invariants in 74 ms returned []
// Phase 1: matrix 30 rows 22 cols
[2021-05-13 06:41:31] [INFO ] Computed 7 place invariants in 8 ms
[2021-05-13 06:41:31] [INFO ] Implicit Places using invariants and state equation in 37 ms returned []
Implicit Place search using SMT with State Equation took 137 ms to find 0 implicit places.
// Phase 1: matrix 30 rows 22 cols
[2021-05-13 06:41:31] [INFO ] Computed 7 place invariants in 2 ms
[2021-05-13 06:41:31] [INFO ] Dead Transitions using invariants and state equation in 35 ms returned []
Finished structural reductions, in 1 iterations. Remains : 22/22 places, 30/30 transitions.
[2021-05-13 06:41:32] [INFO ] Initial state reduction rules for CTL removed 1 formulas.
[2021-05-13 06:41:32] [INFO ] Flatten gal took : 40 ms
FORMULA MAPK-PT-00008-CTLFireability-13 TRUE TECHNIQUES TOPOLOGICAL INITIAL_STATE
[2021-05-13 06:41:32] [INFO ] Flatten gal took : 9 ms
[2021-05-13 06:41:32] [INFO ] Input system was already deterministic with 30 transitions.
Incomplete random walk after 100000 steps, including 2 resets, run finished after 246 ms. (steps per millisecond=406 ) properties (out of 87) seen :86
Running SMT prover for 1 properties.
// Phase 1: matrix 30 rows 22 cols
[2021-05-13 06:41:32] [INFO ] Computed 7 place invariants in 1 ms
Successfully simplified 1 atomic propositions for a total of 15 simplifications.
Performed 1 Pre agglomeration using Quasi-Persistent + Divergent Free condition..
Pre-agglomeration after 0 with 1 Pre rules applied. Total rules applied 0 place count 22 transition count 29
Deduced a syphon composed of 1 places in 0 ms
Reduce places removed 2 places and 0 transitions.
Iterating global reduction 0 with 3 rules applied. Total rules applied 3 place count 20 transition count 29
Performed 3 Post agglomeration using F-continuation condition.Transition count delta: 3
Deduced a syphon composed of 3 places in 0 ms
Reduce places removed 4 places and 0 transitions.
Iterating global reduction 0 with 7 rules applied. Total rules applied 10 place count 16 transition count 26
Graph (trivial) has 4 edges and 16 vertex of which 2 / 16 are part of one of the 1 SCC in 1 ms
Free SCC test removed 1 places
Iterating global reduction 0 with 1 rules applied. Total rules applied 11 place count 15 transition count 26
Ensure Unique test removed 3 transitions
Reduce isomorphic transitions removed 3 transitions.
Iterating post reduction 0 with 3 rules applied. Total rules applied 14 place count 15 transition count 23
Drop transitions removed 1 transitions
Redundant transition composition rules discarded 1 transitions
Iterating global reduction 1 with 1 rules applied. Total rules applied 15 place count 15 transition count 22
Partial Post-agglomeration rule applied 2 times.
Drop transitions removed 2 transitions
Iterating global reduction 1 with 2 rules applied. Total rules applied 17 place count 15 transition count 22
Drop transitions removed 1 transitions
Redundant transition composition rules discarded 1 transitions
Iterating global reduction 1 with 1 rules applied. Total rules applied 18 place count 15 transition count 21
Applied a total of 18 rules in 17 ms. Remains 15 /22 variables (removed 7) and now considering 21/30 (removed 9) transitions.
[2021-05-13 06:41:32] [INFO ] Flatten gal took : 2 ms
[2021-05-13 06:41:32] [INFO ] Flatten gal took : 2 ms
[2021-05-13 06:41:32] [INFO ] Input system was already deterministic with 21 transitions.
[2021-05-13 06:41:32] [INFO ] Flatten gal took : 2 ms
[2021-05-13 06:41:32] [INFO ] Flatten gal took : 2 ms
[2021-05-13 06:41:32] [INFO ] Time to serialize gal into /tmp/CTLFireability6128854357153342017.gal : 1 ms
[2021-05-13 06:41:32] [INFO ] Time to serialize properties into /tmp/CTLFireability16047940038508229565.ctl : 0 ms
Invoking ITS tools like this :CommandLine [args=[/home/mcc/BenchKit/itstools/plugins/fr.lip6.move.gal.itstools.binaries_1.0.0.202104292328/bin/its-ctl-linux64, --gc-threshold, 2000000, --quiet, -i, /tmp/CTLFireability6128854357153342017.gal, -t, CGAL, -ctl, /tmp/CTLFireability16047940038508229565.ctl, --gen-order, FOLLOW], workingDir=/home/mcc/execution]

its-ctl command run as :

/home/mcc/BenchKit/itstools/plugins/fr.lip6.move.gal.itstools.binaries_1.0.0.202104292328/bin/its-ctl-linux64 --gc-threshold 2000000 --quiet -i /tmp/CTLFireability6128854357153342017.gal -t CGAL -ctl /tmp/CTLFireability16047940038508229565.ctl --gen-order FOLLOW
No direction supplied, using forward translation only.
Parsed 1 CTL formulae.
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,27445,0.014397,4632,2,123,5,1746,6,0,83,1633,0


Converting to forward existential form...Done !
original formula: AF(AG(EF((((ERKP_Phase3>=1)||((ERKP>=1)&&(Phase3>=1)))||((MEKPP>=1)&&(ERK>=1))))))
=> equivalent forward existential formula: [FwdG(Init,!(!(E(TRUE U !(E(TRUE U (((ERKP_Phase3>=1)||((ERKP>=1)&&(Phase3>=1)))||((MEKPP>=1)&&(ERK>=1)))))))))] = FALSE
Reverse transition relation is exact ! Faster fixpoint algorithm enabled.
(forward)formula 0,1,0.024706,4952,1,0,6,2399,20,0,456,1803,7
FORMULA MAPK-PT-00008-CTLFireability-06 TRUE TECHNIQUES DECISION_DIAGRAMS TOPOLOGICAL
Formula is TRUE !

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

Applied a total of 0 rules in 1 ms. Remains 22 /22 variables (removed 0) and now considering 30/30 (removed 0) transitions.
[2021-05-13 06:41:32] [INFO ] Flatten gal took : 2 ms
[2021-05-13 06:41:32] [INFO ] Flatten gal took : 3 ms
[2021-05-13 06:41:32] [INFO ] Input system was already deterministic with 30 transitions.
[2021-05-13 06:41:32] [INFO ] Flatten gal took : 2 ms
[2021-05-13 06:41:32] [INFO ] Flatten gal took : 2 ms
[2021-05-13 06:41:32] [INFO ] Time to serialize gal into /tmp/CTLFireability3623780279818020815.gal : 1 ms
[2021-05-13 06:41:32] [INFO ] Time to serialize properties into /tmp/CTLFireability7770201353014200920.ctl : 1 ms
Invoking ITS tools like this :CommandLine [args=[/home/mcc/BenchKit/itstools/plugins/fr.lip6.move.gal.itstools.binaries_1.0.0.202104292328/bin/its-ctl-linux64, --gc-threshold, 2000000, --quiet, -i, /tmp/CTLFireability3623780279818020815.gal, -t, CGAL, -ctl, /tmp/CTLFireability7770201353014200920.ctl, --gen-order, FOLLOW], workingDir=/home/mcc/execution]

its-ctl command run as :

/home/mcc/BenchKit/itstools/plugins/fr.lip6.move.gal.itstools.binaries_1.0.0.202104292328/bin/its-ctl-linux64 --gc-threshold 2000000 --quiet -i /tmp/CTLFireability3623780279818020815.gal -t CGAL -ctl /tmp/CTLFireability7770201353014200920.ctl --gen-order FOLLOW
No direction supplied, using forward translation only.
Parsed 1 CTL formulae.
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,6.11064e+06,0.110901,8448,2,2639,5,23385,6,0,121,23413,0


Converting to forward existential form...Done !
original formula: (A(((((ERK_MEKPP>=1)||(ERKP_MEKPP>=1))||(MEK_RafP>=1))||(MEKP_RafP>=1)) U AF(((((((((((((((((ERK_MEKPP>=1)||(RafP_Phase1>=1))||((ERKP>=1)&&(MEKPP>=1)))||((RasGTP>=1)&&(Raf>=1)))||((MEKP>=1)&&(RafP>=1)))||(MEKP_RafP>=1))||(MEKP_Phase2>=1)) * AF((((((((((Raf_RasGTP>=1)||(ERKP_MEKPP>=1))||(MEK_RafP>=1))||((Phase1>=1)&&(RafP>=1)))||(ERKPP_Phase3>=1))||(ERKP_Phase3>=1))||((MEKPP>=1)&&(Phase2>=1)))||((MEKP>=1)&&(RafP>=1)))||(MEKP_RafP>=1)))) + (ERKP_MEKPP>=1)) + ((Phase2>=1)&&(MEKP>=1))) + (ERKPP_Phase3>=1)) + ((ERKP>=1)&&(MEKPP>=1))) + (ERKP_Phase3>=1)) + ((ERKP>=1)&&(Phase3>=1))) + ((MEKPP>=1)&&(ERK>=1))) + (MEKPP_Phase2>=1)))) * AG(((((((A((((((((Raf_RasGTP>=1)||(MEK_RafP>=1))||((ERKP>=1)&&(MEKPP>=1)))||(ERKP_Phase3>=1))||((RasGTP>=1)&&(Raf>=1)))||(MEKP_RafP>=1))||((MEK>=1)&&(RafP>=1))) U ((((((ERKP_MEKPP>=1)||(ERKPP_Phase3>=1))||(ERKP_Phase3>=1))||((ERKP>=1)&&(Phase3>=1)))||((MEKPP>=1)&&(Phase2>=1)))||(MEKP_RafP>=1))) * EG((((((((((ERK_MEKPP>=1)||(Raf_RasGTP>=1))||(ERKP_MEKPP>=1))||(MEK_RafP>=1))||(ERKPP_Phase3>=1))||((ERKP>=1)&&(Phase3>=1)))||((MEKPP>=1)&&(Phase2>=1)))||(MEKP_RafP>=1))||(MEKPP_Phase2>=1)))) + ((((((((((E(((((Phase3>=1)&&(ERKPP>=1))||(MEKP_RafP>=1))||(MEKPP_Phase2>=1)) U (((((((ERK_MEKPP>=1)||(Raf_RasGTP>=1))||(MEK_RafP>=1))||(RafP_Phase1>=1))||((ERKP>=1)&&(Phase3>=1)))||((MEKPP>=1)&&(Phase2>=1)))||(MEKP_RafP>=1))) * (ERK_MEKPP<1)) * ((Phase3<1)||(ERKPP<1))) * (ERKP_MEKPP<1)) * (RafP_Phase1<1)) * ((Phase1<1)||(RafP<1))) * (ERKP_Phase3<1)) * ((ERKP<1)||(Phase3<1))) * ((MEKPP<1)||(Phase2<1))) * (MEKP_RafP<1)) * ((MEKPP<1)||(ERK<1)))) + !(E(((((ERK_MEKPP>=1)||(RafP_Phase1>=1))||(MEKP_RafP>=1))||(MEKP_Phase2>=1)) U (((((((((ERK_MEKPP>=1)||(MEK_RafP>=1))||(RafP_Phase1>=1))||((ERKP>=1)&&(MEKPP>=1)))||(ERKPP_Phase3>=1))||((Phase2>=1)&&(MEKP>=1)))||((MEK>=1)&&(RafP>=1)))||(MEKP_Phase2>=1))||(MEKPP_Phase2>=1))))) + ((((((((ERK_MEKPP<1)&&(ERKP_MEKPP<1))&&(MEK_RafP<1))&&(RafP_Phase1<1))&&(ERKPP_Phase3<1))&&(MEKP_RafP<1))&&(MEKPP_Phase2<1))&&((MEKPP<1)||(ERK<1)))) + (!(AF(((ERK_MEKPP>=1)||(Raf_RasGTP>=1)))) * ((ERKP_MEKPP<1)||((((ERKP_MEKPP<1)&&(Raf_RasGTP<1))&&((MEKPP<1)||(Phase2<1)))&&(MEKP_RafP<1))))) + EF((((((((ERK_MEKPP>=1)||((Phase3>=1)&&(ERKPP>=1)))||(Raf_RasGTP>=1))||(ERKPP_Phase3>=1))||((RasGTP>=1)&&(Raf>=1)))||((MEKP>=1)&&(RafP>=1)))||(MEKP_RafP>=1))))))
=> equivalent forward existential formula: (([FwdG((FwdU(Init,!(!(EG(!(((((((((((((((((ERK_MEKPP>=1)||(RafP_Phase1>=1))||((ERKP>=1)&&(MEKPP>=1)))||((RasGTP>=1)&&(Raf>=1)))||((MEKP>=1)&&(RafP>=1)))||(MEKP_RafP>=1))||(MEKP_Phase2>=1)) * !(EG(!((((((((((Raf_RasGTP>=1)||(ERKP_MEKPP>=1))||(MEK_RafP>=1))||((Phase1>=1)&&(RafP>=1)))||(ERKPP_Phase3>=1))||(ERKP_Phase3>=1))||((MEKPP>=1)&&(Phase2>=1)))||((MEKP>=1)&&(RafP>=1)))||(MEKP_RafP>=1)))))) + (ERKP_MEKPP>=1)) + ((Phase2>=1)&&(MEKP>=1))) + (ERKPP_Phase3>=1)) + ((ERKP>=1)&&(MEKPP>=1))) + (ERKP_Phase3>=1)) + ((ERKP>=1)&&(Phase3>=1))) + ((MEKPP>=1)&&(ERK>=1))) + (MEKPP_Phase2>=1))))))) * !(((((ERK_MEKPP>=1)||(ERKP_MEKPP>=1))||(MEK_RafP>=1))||(MEKP_RafP>=1)))),!(((((((((((((((((ERK_MEKPP>=1)||(RafP_Phase1>=1))||((ERKP>=1)&&(MEKPP>=1)))||((RasGTP>=1)&&(Raf>=1)))||((MEKP>=1)&&(RafP>=1)))||(MEKP_RafP>=1))||(MEKP_Phase2>=1)) * !(EG(!((((((((((Raf_RasGTP>=1)||(ERKP_MEKPP>=1))||(MEK_RafP>=1))||((Phase1>=1)&&(RafP>=1)))||(ERKPP_Phase3>=1))||(ERKP_Phase3>=1))||((MEKPP>=1)&&(Phase2>=1)))||((MEKP>=1)&&(RafP>=1)))||(MEKP_RafP>=1)))))) + (ERKP_MEKPP>=1)) + ((Phase2>=1)&&(MEKP>=1))) + (ERKPP_Phase3>=1)) + ((ERKP>=1)&&(MEKPP>=1))) + (ERKP_Phase3>=1)) + ((ERKP>=1)&&(Phase3>=1))) + ((MEKPP>=1)&&(ERK>=1))) + (MEKPP_Phase2>=1))))] = FALSE * [FwdG(Init,!(!(EG(!(((((((((((((((((ERK_MEKPP>=1)||(RafP_Phase1>=1))||((ERKP>=1)&&(MEKPP>=1)))||((RasGTP>=1)&&(Raf>=1)))||((MEKP>=1)&&(RafP>=1)))||(MEKP_RafP>=1))||(MEKP_Phase2>=1)) * !(EG(!((((((((((Raf_RasGTP>=1)||(ERKP_MEKPP>=1))||(MEK_RafP>=1))||((Phase1>=1)&&(RafP>=1)))||(ERKPP_Phase3>=1))||(ERKP_Phase3>=1))||((MEKPP>=1)&&(Phase2>=1)))||((MEKP>=1)&&(RafP>=1)))||(MEKP_RafP>=1)))))) + (ERKP_MEKPP>=1)) + ((Phase2>=1)&&(MEKP>=1))) + (ERKPP_Phase3>=1)) + ((ERKP>=1)&&(MEKPP>=1))) + (ERKP_Phase3>=1)) + ((ERKP>=1)&&(Phase3>=1))) + ((MEKPP>=1)&&(ERK>=1))) + (MEKPP_Phase2>=1)))))))] = FALSE) * [(FwdU(((((FwdU(Init,TRUE) * !(E(TRUE U (((((((ERK_MEKPP>=1)||((Phase3>=1)&&(ERKPP>=1)))||(Raf_RasGTP>=1))||(ERKPP_Phase3>=1))||((RasGTP>=1)&&(Raf>=1)))||((MEKP>=1)&&(RafP>=1)))||(MEKP_RafP>=1))))) * !((!(!(EG(!(((ERK_MEKPP>=1)||(Raf_RasGTP>=1)))))) * ((ERKP_MEKPP<1)||((((ERKP_MEKPP<1)&&(Raf_RasGTP<1))&&((MEKPP<1)||(Phase2<1)))&&(MEKP_RafP<1)))))) * !(((((((((ERK_MEKPP<1)&&(ERKP_MEKPP<1))&&(MEK_RafP<1))&&(RafP_Phase1<1))&&(ERKPP_Phase3<1))&&(MEKP_RafP<1))&&(MEKPP_Phase2<1))&&((MEKPP<1)||(ERK<1))))) * !(((!((E(!(((((((ERKP_MEKPP>=1)||(ERKPP_Phase3>=1))||(ERKP_Phase3>=1))||((ERKP>=1)&&(Phase3>=1)))||((MEKPP>=1)&&(Phase2>=1)))||(MEKP_RafP>=1))) U (!((((((((Raf_RasGTP>=1)||(MEK_RafP>=1))||((ERKP>=1)&&(MEKPP>=1)))||(ERKP_Phase3>=1))||((RasGTP>=1)&&(Raf>=1)))||(MEKP_RafP>=1))||((MEK>=1)&&(RafP>=1)))) * !(((((((ERKP_MEKPP>=1)||(ERKPP_Phase3>=1))||(ERKP_Phase3>=1))||((ERKP>=1)&&(Phase3>=1)))||((MEKPP>=1)&&(Phase2>=1)))||(MEKP_RafP>=1))))) + EG(!(((((((ERKP_MEKPP>=1)||(ERKPP_Phase3>=1))||(ERKP_Phase3>=1))||((ERKP>=1)&&(Phase3>=1)))||((MEKPP>=1)&&(Phase2>=1)))||(MEKP_RafP>=1)))))) * EG((((((((((ERK_MEKPP>=1)||(Raf_RasGTP>=1))||(ERKP_MEKPP>=1))||(MEK_RafP>=1))||(ERKPP_Phase3>=1))||((ERKP>=1)&&(Phase3>=1)))||((MEKPP>=1)&&(Phase2>=1)))||(MEKP_RafP>=1))||(MEKPP_Phase2>=1)))) + ((((((((((E(((((Phase3>=1)&&(ERKPP>=1))||(MEKP_RafP>=1))||(MEKPP_Phase2>=1)) U (((((((ERK_MEKPP>=1)||(Raf_RasGTP>=1))||(MEK_RafP>=1))||(RafP_Phase1>=1))||((ERKP>=1)&&(Phase3>=1)))||((MEKPP>=1)&&(Phase2>=1)))||(MEKP_RafP>=1))) * (ERK_MEKPP<1)) * ((Phase3<1)||(ERKPP<1))) * (ERKP_MEKPP<1)) * (RafP_Phase1<1)) * ((Phase1<1)||(RafP<1))) * (ERKP_Phase3<1)) * ((ERKP<1)||(Phase3<1))) * ((MEKPP<1)||(Phase2<1))) * (MEKP_RafP<1)) * ((MEKPP<1)||(ERK<1)))))),((((ERK_MEKPP>=1)||(RafP_Phase1>=1))||(MEKP_RafP>=1))||(MEKP_Phase2>=1))) * (((((((((ERK_MEKPP>=1)||(MEK_RafP>=1))||(RafP_Phase1>=1))||((ERKP>=1)&&(MEKPP>=1)))||(ERKPP_Phase3>=1))||((Phase2>=1)&&(MEKP>=1)))||((MEK>=1)&&(RafP>=1)))||(MEKP_Phase2>=1))||(MEKPP_Phase2>=1)))] = FALSE)
Reverse transition relation is exact ! Faster fixpoint algorithm enabled.
Hit Full ! (commute/partial/dont) 9/86/21
Hit Full ! (commute/partial/dont) 17/0/13
Using saturation style SCC detection
(forward)formula 0,1,1.05032,34724,1,0,69,151537,107,32,901,182242,50
FORMULA MAPK-PT-00008-CTLFireability-07 TRUE TECHNIQUES DECISION_DIAGRAMS TOPOLOGICAL
Formula is TRUE !

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

Performed 1 Pre agglomeration using Quasi-Persistent + Divergent Free condition..
Pre-agglomeration after 0 with 1 Pre rules applied. Total rules applied 0 place count 22 transition count 29
Deduced a syphon composed of 1 places in 0 ms
Reduce places removed 2 places and 0 transitions.
Iterating global reduction 0 with 3 rules applied. Total rules applied 3 place count 20 transition count 29
Performed 6 Post agglomeration using F-continuation condition.Transition count delta: 6
Deduced a syphon composed of 6 places in 0 ms
Reduce places removed 7 places and 0 transitions.
Iterating global reduction 0 with 13 rules applied. Total rules applied 16 place count 13 transition count 23
Drop transitions removed 3 transitions
Redundant transition composition rules discarded 3 transitions
Iterating global reduction 0 with 3 rules applied. Total rules applied 19 place count 13 transition count 20
Applied a total of 19 rules in 32 ms. Remains 13 /22 variables (removed 9) and now considering 20/30 (removed 10) transitions.
[2021-05-13 06:41:33] [INFO ] Flatten gal took : 2 ms
[2021-05-13 06:41:33] [INFO ] Flatten gal took : 1 ms
[2021-05-13 06:41:33] [INFO ] Input system was already deterministic with 20 transitions.
Finished random walk after 16 steps, including 0 resets, run visited all 1 properties in 2 ms. (steps per millisecond=8 )
FORMULA MAPK-PT-00008-CTLFireability-11 TRUE TECHNIQUES TOPOLOGICAL RANDOM_WALK
Applied a total of 0 rules in 1 ms. Remains 22 /22 variables (removed 0) and now considering 30/30 (removed 0) transitions.
[2021-05-13 06:41:33] [INFO ] Flatten gal took : 2 ms
[2021-05-13 06:41:33] [INFO ] Flatten gal took : 2 ms
[2021-05-13 06:41:33] [INFO ] Input system was already deterministic with 30 transitions.
[2021-05-13 06:41:33] [INFO ] Flatten gal took : 2 ms
[2021-05-13 06:41:33] [INFO ] Flatten gal took : 15 ms
[2021-05-13 06:41:33] [INFO ] Time to serialize gal into /tmp/CTLFireability1377904387308061733.gal : 1 ms
[2021-05-13 06:41:33] [INFO ] Time to serialize properties into /tmp/CTLFireability11165958064661637854.ctl : 0 ms
Invoking ITS tools like this :CommandLine [args=[/home/mcc/BenchKit/itstools/plugins/fr.lip6.move.gal.itstools.binaries_1.0.0.202104292328/bin/its-ctl-linux64, --gc-threshold, 2000000, --quiet, -i, /tmp/CTLFireability1377904387308061733.gal, -t, CGAL, -ctl, /tmp/CTLFireability11165958064661637854.ctl, --gen-order, FOLLOW], workingDir=/home/mcc/execution]

its-ctl command run as :

/home/mcc/BenchKit/itstools/plugins/fr.lip6.move.gal.itstools.binaries_1.0.0.202104292328/bin/its-ctl-linux64 --gc-threshold 2000000 --quiet -i /tmp/CTLFireability1377904387308061733.gal -t CGAL -ctl /tmp/CTLFireability11165958064661637854.ctl --gen-order FOLLOW
No direction supplied, using forward translation only.
Parsed 1 CTL formulae.
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,6.11064e+06,0.108386,8168,2,2639,5,23385,6,0,121,23413,0


Converting to forward existential form...Done !
original formula: AF((A(AG(((((((ERK_MEKPP<1)&&(Raf_RasGTP<1))&&(ERKP_MEKPP<1))&&(ERKP_Phase3<1))&&(MEKP_Phase2<1))||((RafP_Phase1<1)&&((MEKP<1)||(RafP<1))))) U ((((((((((ERK_MEKPP<1)&&(Raf_RasGTP<1))&&(ERKP_MEKPP<1))||((((((((((Phase3<1)||(ERKPP<1))&&(ERK_MEKPP<1))&&(Raf_RasGTP<1))&&(MEK_RafP<1))&&((ERKP<1)||(MEKPP<1)))&&((ERKP<1)||(Phase3<1)))&&((MEKP<1)||(RafP<1)))&&(MEKP_RafP<1))&&((MEK<1)||(RafP<1))))||((((((((((ERK_MEKPP<1)&&(ERKP_MEKPP<1))&&(Raf_RasGTP<1))&&(RafP_Phase1<1))&&((Phase2<1)||(MEKP<1)))&&(ERKP_Phase3<1))&&((RasGTP<1)||(Raf<1)))&&((MEKPP<1)||(Phase2<1)))&&(MEKP_Phase2<1))&&(MEKPP_Phase2<1)))&&(ERK_MEKPP<1))&&(RafP_Phase1<1))&&(ERKPP_Phase3<1))&&(MEKP_RafP<1))&&(MEKPP_Phase2<1))) * AF((((((ERKPP_Phase3>=1)||(MEKP_Phase2>=1))&&(((((Raf_RasGTP>=1)||((MEKP>=1)&&(RafP>=1)))||(MEKP_RafP>=1))||((MEK>=1)&&(RafP>=1)))||(MEKP_Phase2>=1)))&&((((ERKP_MEKPP>=1)||(ERKPP_Phase3>=1))||((MEKP>=1)&&(RafP>=1)))||((MEKPP>=1)&&(ERK>=1))))&&((((((((Raf_RasGTP>=1)||(ERKP_MEKPP>=1))||(RafP_Phase1>=1))||((Phase2>=1)&&(MEKP>=1)))||(ERKPP_Phase3>=1))||((ERKP>=1)&&(MEKPP>=1)))||((RasGTP>=1)&&(Raf>=1)))||(MEKP_RafP>=1))))))
=> equivalent forward existential formula: [FwdG(Init,!((!((E(!(((((((((((ERK_MEKPP<1)&&(Raf_RasGTP<1))&&(ERKP_MEKPP<1))||((((((((((Phase3<1)||(ERKPP<1))&&(ERK_MEKPP<1))&&(Raf_RasGTP<1))&&(MEK_RafP<1))&&((ERKP<1)||(MEKPP<1)))&&((ERKP<1)||(Phase3<1)))&&((MEKP<1)||(RafP<1)))&&(MEKP_RafP<1))&&((MEK<1)||(RafP<1))))||((((((((((ERK_MEKPP<1)&&(ERKP_MEKPP<1))&&(Raf_RasGTP<1))&&(RafP_Phase1<1))&&((Phase2<1)||(MEKP<1)))&&(ERKP_Phase3<1))&&((RasGTP<1)||(Raf<1)))&&((MEKPP<1)||(Phase2<1)))&&(MEKP_Phase2<1))&&(MEKPP_Phase2<1)))&&(ERK_MEKPP<1))&&(RafP_Phase1<1))&&(ERKPP_Phase3<1))&&(MEKP_RafP<1))&&(MEKPP_Phase2<1))) U (!(!(E(TRUE U !(((((((ERK_MEKPP<1)&&(Raf_RasGTP<1))&&(ERKP_MEKPP<1))&&(ERKP_Phase3<1))&&(MEKP_Phase2<1))||((RafP_Phase1<1)&&((MEKP<1)||(RafP<1)))))))) * !(((((((((((ERK_MEKPP<1)&&(Raf_RasGTP<1))&&(ERKP_MEKPP<1))||((((((((((Phase3<1)||(ERKPP<1))&&(ERK_MEKPP<1))&&(Raf_RasGTP<1))&&(MEK_RafP<1))&&((ERKP<1)||(MEKPP<1)))&&((ERKP<1)||(Phase3<1)))&&((MEKP<1)||(RafP<1)))&&(MEKP_RafP<1))&&((MEK<1)||(RafP<1))))||((((((((((ERK_MEKPP<1)&&(ERKP_MEKPP<1))&&(Raf_RasGTP<1))&&(RafP_Phase1<1))&&((Phase2<1)||(MEKP<1)))&&(ERKP_Phase3<1))&&((RasGTP<1)||(Raf<1)))&&((MEKPP<1)||(Phase2<1)))&&(MEKP_Phase2<1))&&(MEKPP_Phase2<1)))&&(ERK_MEKPP<1))&&(RafP_Phase1<1))&&(ERKPP_Phase3<1))&&(MEKP_RafP<1))&&(MEKPP_Phase2<1))))) + EG(!(((((((((((ERK_MEKPP<1)&&(Raf_RasGTP<1))&&(ERKP_MEKPP<1))||((((((((((Phase3<1)||(ERKPP<1))&&(ERK_MEKPP<1))&&(Raf_RasGTP<1))&&(MEK_RafP<1))&&((ERKP<1)||(MEKPP<1)))&&((ERKP<1)||(Phase3<1)))&&((MEKP<1)||(RafP<1)))&&(MEKP_RafP<1))&&((MEK<1)||(RafP<1))))||((((((((((ERK_MEKPP<1)&&(ERKP_MEKPP<1))&&(Raf_RasGTP<1))&&(RafP_Phase1<1))&&((Phase2<1)||(MEKP<1)))&&(ERKP_Phase3<1))&&((RasGTP<1)||(Raf<1)))&&((MEKPP<1)||(Phase2<1)))&&(MEKP_Phase2<1))&&(MEKPP_Phase2<1)))&&(ERK_MEKPP<1))&&(RafP_Phase1<1))&&(ERKPP_Phase3<1))&&(MEKP_RafP<1))&&(MEKPP_Phase2<1)))))) * !(EG(!((((((ERKPP_Phase3>=1)||(MEKP_Phase2>=1))&&(((((Raf_RasGTP>=1)||((MEKP>=1)&&(RafP>=1)))||(MEKP_RafP>=1))||((MEK>=1)&&(RafP>=1)))||(MEKP_Phase2>=1)))&&((((ERKP_MEKPP>=1)||(ERKPP_Phase3>=1))||((MEKP>=1)&&(RafP>=1)))||((MEKPP>=1)&&(ERK>=1))))&&((((((((Raf_RasGTP>=1)||(ERKP_MEKPP>=1))||(RafP_Phase1>=1))||((Phase2>=1)&&(MEKP>=1)))||(ERKPP_Phase3>=1))||((ERKP>=1)&&(MEKPP>=1)))||((RasGTP>=1)&&(Raf>=1)))||(MEKP_RafP>=1)))))))))] = FALSE
Reverse transition relation is exact ! Faster fixpoint algorithm enabled.
Hit Full ! (commute/partial/dont) 0/0/30
(forward)formula 0,0,4.30327,108632,1,0,149,505248,38,151,790,759125,162
FORMULA MAPK-PT-00008-CTLFireability-15 FALSE TECHNIQUES DECISION_DIAGRAMS TOPOLOGICAL
Formula is FALSE !

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

[2021-05-13 06:41:38] [INFO ] Flatten gal took : 14 ms
[2021-05-13 06:41:38] [INFO ] Flatten gal took : 4 ms
[2021-05-13 06:41:38] [INFO ] Applying decomposition
[2021-05-13 06:41:38] [INFO ] Flatten gal took : 4 ms
Converted graph to binary with : CommandLine [args=[/home/mcc/BenchKit/itstools/plugins/fr.lip6.move.gal.louvain.binaries_1.0.0.202104292328/bin/convert-linux64, -i, /tmp/graph13934779096493834282.txt, -o, /tmp/graph13934779096493834282.bin, -w, /tmp/graph13934779096493834282.weights], workingDir=null]
Built communities with : CommandLine [args=[/home/mcc/BenchKit/itstools/plugins/fr.lip6.move.gal.louvain.binaries_1.0.0.202104292328/bin/louvain-linux64, /tmp/graph13934779096493834282.bin, -l, -1, -v, -w, /tmp/graph13934779096493834282.weights, -q, 0, -e, 0.001], workingDir=null]
[2021-05-13 06:41:38] [INFO ] Decomposing Gal with order
[2021-05-13 06:41:38] [INFO ] Rewriting arrays to variables to allow decomposition.
[2021-05-13 06:41:38] [INFO ] Removed a total of 7 redundant transitions.
[2021-05-13 06:41:38] [INFO ] Flatten gal took : 27 ms
[2021-05-13 06:41:38] [INFO ] Fuse similar labels procedure discarded/fused a total of 0 labels/synchronizations in 1 ms.
[2021-05-13 06:41:38] [INFO ] Time to serialize gal into /tmp/CTLFireability6432933348268041371.gal : 1 ms
[2021-05-13 06:41:38] [INFO ] Time to serialize properties into /tmp/CTLFireability13559012721677775328.ctl : 4 ms
Invoking ITS tools like this :CommandLine [args=[/home/mcc/BenchKit/itstools/plugins/fr.lip6.move.gal.itstools.binaries_1.0.0.202104292328/bin/its-ctl-linux64, --gc-threshold, 2000000, --quiet, -i, /tmp/CTLFireability6432933348268041371.gal, -t, CGAL, -ctl, /tmp/CTLFireability13559012721677775328.ctl], workingDir=/home/mcc/execution]

its-ctl command run as :

/home/mcc/BenchKit/itstools/plugins/fr.lip6.move.gal.itstools.binaries_1.0.0.202104292328/bin/its-ctl-linux64 --gc-threshold 2000000 --quiet -i /tmp/CTLFireability6432933348268041371.gal -t CGAL -ctl /tmp/CTLFireability13559012721677775328.ctl
No direction supplied, using forward translation only.
Parsed 11 CTL formulae.
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,6.11064e+06,0.062042,7052,163,200,3228,2037,87,9487,47,12528,0


Converting to forward existential form...Done !
original formula: AX(EF(AG((u4.Raf_RasGTP>=1))))
=> equivalent forward existential formula: [(EY(Init) * !(E(TRUE U !(E(TRUE U !((u4.Raf_RasGTP>=1)))))))] = FALSE
Reverse transition relation is exact ! Faster fixpoint algorithm enabled.
(forward)formula 0,0,0.143609,9284,1,0,4188,3995,327,20251,270,29063,4549
FORMULA MAPK-PT-00008-CTLFireability-00 FALSE TECHNIQUES DECISION_DIAGRAMS TOPOLOGICAL USE_NUPN
Formula is FALSE !

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

original formula: !(AG(EF((((((((AG(((i4.u0.RafP_Phase1>=1)||((u3.Phase2>=1)&&(u3.MEKP>=1)))) + (u4.Raf_RasGTP>=1)) + (i4.u0.RafP_Phase1>=1)) + ((u3.Phase2>=1)&&(u3.MEKP>=1))) + (u1.ERKP_Phase3>=1)) + ((u1.ERKP>=1)&&(u1.Phase3>=1))) + (u3.MEKP_Phase2>=1)) * ((((((((EX(((((i4.u5.MEK_RafP>=1)||(u1.ERKPP_Phase3>=1))||((u3.Phase2>=1)&&(u3.MEKP>=1)))||(u1.ERKP_Phase3>=1))) + EF(((((((u2.ERK_MEKPP>=1)||(u2.ERKP_MEKPP>=1))||(i4.u5.MEK_RafP>=1))||((u3.Phase2>=1)&&(u3.MEKP>=1)))||((u1.ERKP>=1)&&(u2.MEKPP>=1)))||(i4.u5.MEKP_RafP>=1)))) + EX(((((u4.Raf_RasGTP>=1)||(u1.ERKPP_Phase3>=1))||(u1.ERKP_Phase3>=1))||(i4.u5.MEKP_RafP>=1)))) + (u2.ERK_MEKPP>=1)) + (u4.Raf_RasGTP>=1)) + (u2.ERKP_MEKPP>=1)) + (i4.u0.RafP_Phase1>=1)) + (u1.ERKP_Phase3>=1)) + ((u3.MEKP>=1)&&(i4.u5.RafP>=1)))))))
=> equivalent forward existential formula: [(FwdU(Init,TRUE) * !(E(TRUE U (((((((!(E(TRUE U !(((i4.u0.RafP_Phase1>=1)||((u3.Phase2>=1)&&(u3.MEKP>=1)))))) + (u4.Raf_RasGTP>=1)) + (i4.u0.RafP_Phase1>=1)) + ((u3.Phase2>=1)&&(u3.MEKP>=1))) + (u1.ERKP_Phase3>=1)) + ((u1.ERKP>=1)&&(u1.Phase3>=1))) + (u3.MEKP_Phase2>=1)) * ((((((((EX(((((i4.u5.MEK_RafP>=1)||(u1.ERKPP_Phase3>=1))||((u3.Phase2>=1)&&(u3.MEKP>=1)))||(u1.ERKP_Phase3>=1))) + E(TRUE U ((((((u2.ERK_MEKPP>=1)||(u2.ERKP_MEKPP>=1))||(i4.u5.MEK_RafP>=1))||((u3.Phase2>=1)&&(u3.MEKP>=1)))||((u1.ERKP>=1)&&(u2.MEKPP>=1)))||(i4.u5.MEKP_RafP>=1)))) + EX(((((u4.Raf_RasGTP>=1)||(u1.ERKPP_Phase3>=1))||(u1.ERKP_Phase3>=1))||(i4.u5.MEKP_RafP>=1)))) + (u2.ERK_MEKPP>=1)) + (u4.Raf_RasGTP>=1)) + (u2.ERKP_MEKPP>=1)) + (i4.u0.RafP_Phase1>=1)) + (u1.ERKP_Phase3>=1)) + ((u3.MEKP>=1)&&(i4.u5.RafP>=1)))))))] != FALSE
(forward)formula 1,0,0.329403,16940,1,0,10191,6281,379,70156,276,77992,9977
FORMULA MAPK-PT-00008-CTLFireability-01 FALSE TECHNIQUES DECISION_DIAGRAMS TOPOLOGICAL USE_NUPN
Formula is FALSE !

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

original formula: A(AG(AX(EX(((((((((((i4.u5.MEK_RafP>=1)||(u2.ERK_MEKPP>=1))||(i4.u0.RafP_Phase1>=1))||(u1.ERKPP_Phase3>=1))||(u1.ERKP_Phase3>=1))||(u3.MEKP_Phase2>=1))||((i4.u0.Phase1>=1)&&(i4.u5.RafP>=1)))||((u3.Phase2>=1)&&(u3.MEKP>=1)))||((u1.ERKP>=1)&&(u1.Phase3>=1)))||((u2.MEKPP>=1)&&(u2.ERK>=1)))))) U AG((((((((((((EF(((i4.u5.MEK_RafP>=1)||(i4.u5.MEKP_RafP>=1))) + AF((((((((((((((i4.u5.MEK_RafP>=1)||(i4.u0.RafP_Phase1>=1))||((u3.MEKP>=1)&&(i4.u5.RafP>=1)))||(i4.u5.MEKP_RafP>=1))||((u1.Phase3>=1)&&(u1.ERKPP>=1)))||(u2.ERKP_MEKPP>=1))||(i4.u5.MEK_RafP>=1))||(i4.u0.RafP_Phase1>=1))||(u1.ERKPP_Phase3>=1))||(u1.ERKP_Phase3>=1))||(u3.MEKPP_Phase2>=1))||((u2.MEKPP>=1)&&(u2.ERK>=1)))&&((((u2.ERK_MEKPP>=1)||(i4.u0.RafP_Phase1>=1))||((u4.RasGTP>=1)&&(u4.Raf>=1)))||(u3.MEKP_Phase2>=1))))) + (u4.Raf_RasGTP>=1)) + (i4.u5.MEK_RafP>=1)) + (i4.u0.RafP_Phase1>=1)) + (u1.ERKPP_Phase3>=1)) + (i4.u5.MEKP_RafP>=1)) + (u3.MEKPP_Phase2>=1)) + (EF((u1.ERKP_Phase3>=1)) * ((((((((u1.ERKPP_Phase3>=1)||(u1.ERKP_Phase3>=1))||(u3.MEKP_Phase2>=1))||(u3.MEKPP_Phase2>=1))||((u3.Phase2>=1)&&(u3.MEKP>=1)))||((u1.ERKP>=1)&&(u1.Phase3>=1)))||((u2.MEKPP>=1)&&(u2.ERK>=1)))||((u4.RasGTP>=1)&&(u4.Raf>=1))))) + ((u1.ERKP>=1)&&(u2.MEKPP>=1))) + ((u1.ERKP>=1)&&(u1.Phase3>=1))) + ((u2.MEKPP>=1)&&(u3.Phase2>=1)))))
=> equivalent forward existential formula: [((Init * !(EG(!(!(E(TRUE U !((((((((((((E(TRUE U ((i4.u5.MEK_RafP>=1)||(i4.u5.MEKP_RafP>=1))) + !(EG(!((((((((((((((i4.u5.MEK_RafP>=1)||(i4.u0.RafP_Phase1>=1))||((u3.MEKP>=1)&&(i4.u5.RafP>=1)))||(i4.u5.MEKP_RafP>=1))||((u1.Phase3>=1)&&(u1.ERKPP>=1)))||(u2.ERKP_MEKPP>=1))||(i4.u5.MEK_RafP>=1))||(i4.u0.RafP_Phase1>=1))||(u1.ERKPP_Phase3>=1))||(u1.ERKP_Phase3>=1))||(u3.MEKPP_Phase2>=1))||((u2.MEKPP>=1)&&(u2.ERK>=1)))&&((((u2.ERK_MEKPP>=1)||(i4.u0.RafP_Phase1>=1))||((u4.RasGTP>=1)&&(u4.Raf>=1)))||(u3.MEKP_Phase2>=1))))))) + (u4.Raf_RasGTP>=1)) + (i4.u5.MEK_RafP>=1)) + (i4.u0.RafP_Phase1>=1)) + (u1.ERKPP_Phase3>=1)) + (i4.u5.MEKP_RafP>=1)) + (u3.MEKPP_Phase2>=1)) + (E(TRUE U (u1.ERKP_Phase3>=1)) * ((((((((u1.ERKPP_Phase3>=1)||(u1.ERKP_Phase3>=1))||(u3.MEKP_Phase2>=1))||(u3.MEKPP_Phase2>=1))||((u3.Phase2>=1)&&(u3.MEKP>=1)))||((u1.ERKP>=1)&&(u1.Phase3>=1)))||((u2.MEKPP>=1)&&(u2.ERK>=1)))||((u4.RasGTP>=1)&&(u4.Raf>=1))))) + ((u1.ERKP>=1)&&(u2.MEKPP>=1))) + ((u1.ERKP>=1)&&(u1.Phase3>=1))) + ((u2.MEKPP>=1)&&(u3.Phase2>=1)))))))))) * !(E(!(!(E(TRUE U !((((((((((((E(TRUE U ((i4.u5.MEK_RafP>=1)||(i4.u5.MEKP_RafP>=1))) + !(EG(!((((((((((((((i4.u5.MEK_RafP>=1)||(i4.u0.RafP_Phase1>=1))||((u3.MEKP>=1)&&(i4.u5.RafP>=1)))||(i4.u5.MEKP_RafP>=1))||((u1.Phase3>=1)&&(u1.ERKPP>=1)))||(u2.ERKP_MEKPP>=1))||(i4.u5.MEK_RafP>=1))||(i4.u0.RafP_Phase1>=1))||(u1.ERKPP_Phase3>=1))||(u1.ERKP_Phase3>=1))||(u3.MEKPP_Phase2>=1))||((u2.MEKPP>=1)&&(u2.ERK>=1)))&&((((u2.ERK_MEKPP>=1)||(i4.u0.RafP_Phase1>=1))||((u4.RasGTP>=1)&&(u4.Raf>=1)))||(u3.MEKP_Phase2>=1))))))) + (u4.Raf_RasGTP>=1)) + (i4.u5.MEK_RafP>=1)) + (i4.u0.RafP_Phase1>=1)) + (u1.ERKPP_Phase3>=1)) + (i4.u5.MEKP_RafP>=1)) + (u3.MEKPP_Phase2>=1)) + (E(TRUE U (u1.ERKP_Phase3>=1)) * ((((((((u1.ERKPP_Phase3>=1)||(u1.ERKP_Phase3>=1))||(u3.MEKP_Phase2>=1))||(u3.MEKPP_Phase2>=1))||((u3.Phase2>=1)&&(u3.MEKP>=1)))||((u1.ERKP>=1)&&(u1.Phase3>=1)))||((u2.MEKPP>=1)&&(u2.ERK>=1)))||((u4.RasGTP>=1)&&(u4.Raf>=1))))) + ((u1.ERKP>=1)&&(u2.MEKPP>=1))) + ((u1.ERKP>=1)&&(u1.Phase3>=1))) + ((u2.MEKPP>=1)&&(u3.Phase2>=1))))))) U (!(!(E(TRUE U !(!(EX(!(EX(((((((((((i4.u5.MEK_RafP>=1)||(u2.ERK_MEKPP>=1))||(i4.u0.RafP_Phase1>=1))||(u1.ERKPP_Phase3>=1))||(u1.ERKP_Phase3>=1))||(u3.MEKP_Phase2>=1))||((i4.u0.Phase1>=1)&&(i4.u5.RafP>=1)))||((u3.Phase2>=1)&&(u3.MEKP>=1)))||((u1.ERKP>=1)&&(u1.Phase3>=1)))||((u2.MEKPP>=1)&&(u2.ERK>=1))))))))))) * !(!(E(TRUE U !((((((((((((E(TRUE U ((i4.u5.MEK_RafP>=1)||(i4.u5.MEKP_RafP>=1))) + !(EG(!((((((((((((((i4.u5.MEK_RafP>=1)||(i4.u0.RafP_Phase1>=1))||((u3.MEKP>=1)&&(i4.u5.RafP>=1)))||(i4.u5.MEKP_RafP>=1))||((u1.Phase3>=1)&&(u1.ERKPP>=1)))||(u2.ERKP_MEKPP>=1))||(i4.u5.MEK_RafP>=1))||(i4.u0.RafP_Phase1>=1))||(u1.ERKPP_Phase3>=1))||(u1.ERKP_Phase3>=1))||(u3.MEKPP_Phase2>=1))||((u2.MEKPP>=1)&&(u2.ERK>=1)))&&((((u2.ERK_MEKPP>=1)||(i4.u0.RafP_Phase1>=1))||((u4.RasGTP>=1)&&(u4.Raf>=1)))||(u3.MEKP_Phase2>=1))))))) + (u4.Raf_RasGTP>=1)) + (i4.u5.MEK_RafP>=1)) + (i4.u0.RafP_Phase1>=1)) + (u1.ERKPP_Phase3>=1)) + (i4.u5.MEKP_RafP>=1)) + (u3.MEKPP_Phase2>=1)) + (E(TRUE U (u1.ERKP_Phase3>=1)) * ((((((((u1.ERKPP_Phase3>=1)||(u1.ERKP_Phase3>=1))||(u3.MEKP_Phase2>=1))||(u3.MEKPP_Phase2>=1))||((u3.Phase2>=1)&&(u3.MEKP>=1)))||((u1.ERKP>=1)&&(u1.Phase3>=1)))||((u2.MEKPP>=1)&&(u2.ERK>=1)))||((u4.RasGTP>=1)&&(u4.Raf>=1))))) + ((u1.ERKP>=1)&&(u2.MEKPP>=1))) + ((u1.ERKP>=1)&&(u1.Phase3>=1))) + ((u2.MEKPP>=1)&&(u3.Phase2>=1)))))))))))] != FALSE
Fast SCC detection found an SCC at level 1
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
(forward)formula 2,1,0.495842,21956,1,0,15782,8481,480,94200,290,97219,17973
FORMULA MAPK-PT-00008-CTLFireability-02 TRUE TECHNIQUES DECISION_DIAGRAMS TOPOLOGICAL USE_NUPN
Formula is TRUE !

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

original formula: E((((((!(AF(((((((((((((u2.ERK_MEKPP>=1)||((u1.ERKP>=1)&&(u2.MEKPP>=1)))||(i4.u5.MEKP_RafP>=1))||(u2.ERK_MEKPP>=1))||((u1.Phase3>=1)&&(u1.ERKPP>=1)))||(u2.ERKP_MEKPP>=1))||(u4.Raf_RasGTP>=1))||(i4.u5.MEK_RafP>=1))||((u1.ERKP>=1)&&(u2.MEKPP>=1)))||(i4.u5.MEKP_RafP>=1))||(u3.MEKP_Phase2>=1))||((u2.MEKPP>=1)&&(u2.ERK>=1))))) + !(EF((((((AG((i4.u5.MEK_RafP>=1)) * (i4.u0.RafP_Phase1<1)) * (u1.ERKP_Phase3<1)) * (i4.u5.MEKP_RafP<1)) * ((i4.u5.MEK<1)||(i4.u5.RafP<1))) * ((u2.MEKPP<1)||(u2.ERK<1)))))) + (u3.MEKP_Phase2>=1)) + (u1.ERKP_Phase3>=1)) + ((u2.MEKPP>=1)&&(u2.ERK>=1))) + (((((((((i4.u5.MEK_RafP>=1)||(u1.ERKPP_Phase3>=1))||(u1.ERKP_Phase3>=1))||(u3.MEKP_Phase2>=1))||(u3.MEKPP_Phase2>=1))||((u1.Phase3>=1)&&(u1.ERKPP>=1)))||((u2.MEKPP>=1)&&(u3.Phase2>=1)))||((u3.MEKP>=1)&&(i4.u5.RafP>=1)))&&((((((u2.ERK_MEKPP>=1)||(u1.ERKP_Phase3>=1))||(i4.u5.MEKP_RafP>=1))||(u3.MEKP_Phase2>=1))||((u1.ERKP>=1)&&(u2.MEKPP>=1)))||((u1.ERKP>=1)&&(u1.Phase3>=1))))) U AG(AX(AX(((((i4.u0.RafP_Phase1>=1)||(u1.ERKPP_Phase3>=1))||((u1.Phase3>=1)&&(u1.ERKPP>=1)))&&((((((((u2.ERKP_MEKPP>=1)||(u4.Raf_RasGTP>=1))||(i4.u5.MEK_RafP>=1))||(i4.u0.RafP_Phase1>=1))||(u3.MEKP_Phase2>=1))||(u3.MEKPP_Phase2>=1))||((u3.Phase2>=1)&&(u3.MEKP>=1)))||((u1.ERKP>=1)&&(u1.Phase3>=1))))))))
=> equivalent forward existential formula: [(FwdU(Init,(((((!(!(EG(!(((((((((((((u2.ERK_MEKPP>=1)||((u1.ERKP>=1)&&(u2.MEKPP>=1)))||(i4.u5.MEKP_RafP>=1))||(u2.ERK_MEKPP>=1))||((u1.Phase3>=1)&&(u1.ERKPP>=1)))||(u2.ERKP_MEKPP>=1))||(u4.Raf_RasGTP>=1))||(i4.u5.MEK_RafP>=1))||((u1.ERKP>=1)&&(u2.MEKPP>=1)))||(i4.u5.MEKP_RafP>=1))||(u3.MEKP_Phase2>=1))||((u2.MEKPP>=1)&&(u2.ERK>=1))))))) + !(E(TRUE U (((((!(E(TRUE U !((i4.u5.MEK_RafP>=1)))) * (i4.u0.RafP_Phase1<1)) * (u1.ERKP_Phase3<1)) * (i4.u5.MEKP_RafP<1)) * ((i4.u5.MEK<1)||(i4.u5.RafP<1))) * ((u2.MEKPP<1)||(u2.ERK<1)))))) + (u3.MEKP_Phase2>=1)) + (u1.ERKP_Phase3>=1)) + ((u2.MEKPP>=1)&&(u2.ERK>=1))) + (((((((((i4.u5.MEK_RafP>=1)||(u1.ERKPP_Phase3>=1))||(u1.ERKP_Phase3>=1))||(u3.MEKP_Phase2>=1))||(u3.MEKPP_Phase2>=1))||((u1.Phase3>=1)&&(u1.ERKPP>=1)))||((u2.MEKPP>=1)&&(u3.Phase2>=1)))||((u3.MEKP>=1)&&(i4.u5.RafP>=1)))&&((((((u2.ERK_MEKPP>=1)||(u1.ERKP_Phase3>=1))||(i4.u5.MEKP_RafP>=1))||(u3.MEKP_Phase2>=1))||((u1.ERKP>=1)&&(u2.MEKPP>=1)))||((u1.ERKP>=1)&&(u1.Phase3>=1)))))) * !(E(TRUE U !(!(EX(!(!(EX(!(((((i4.u0.RafP_Phase1>=1)||(u1.ERKPP_Phase3>=1))||((u1.Phase3>=1)&&(u1.ERKPP>=1)))&&((((((((u2.ERKP_MEKPP>=1)||(u4.Raf_RasGTP>=1))||(i4.u5.MEK_RafP>=1))||(i4.u0.RafP_Phase1>=1))||(u3.MEKP_Phase2>=1))||(u3.MEKPP_Phase2>=1))||((u3.Phase2>=1)&&(u3.MEKP>=1)))||((u1.ERKP>=1)&&(u1.Phase3>=1))))))))))))))] != FALSE
(forward)formula 3,0,0.699155,27236,1,0,22421,10487,495,130669,290,116791,23499
FORMULA MAPK-PT-00008-CTLFireability-03 FALSE TECHNIQUES DECISION_DIAGRAMS TOPOLOGICAL USE_NUPN
Formula is FALSE !

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

original formula: A(AX((!(EX(AG(((((((((u1.Phase3>=1)&&(u1.ERKPP>=1))||(u2.ERK_MEKPP>=1))||(u4.Raf_RasGTP>=1))||(i4.u0.RafP_Phase1>=1))||((u3.Phase2>=1)&&(u3.MEKP>=1)))||(u1.ERKPP_Phase3>=1))||(i4.u5.MEKP_RafP>=1))))) * !(E(A((((u2.ERKP_MEKPP>=1)||(u4.Raf_RasGTP>=1))||((u2.MEKPP>=1)&&(u3.Phase2>=1))) U (((((((((u2.ERKP_MEKPP>=1)||(i4.u0.RafP_Phase1>=1))||((u1.ERKP>=1)&&(u2.MEKPP>=1)))||(u1.ERKPP_Phase3>=1))||(u1.ERKP_Phase3>=1))||((i4.u5.MEK>=1)&&(i4.u5.RafP>=1)))||(i4.u5.MEKP_RafP>=1))||(u3.MEKPP_Phase2>=1))||((u2.MEKPP>=1)&&(u2.ERK>=1)))) U ((((((((((u1.ERKP>=1)&&(u2.MEKPP>=1))||(u3.MEKPP_Phase2>=1))||(u2.ERK_MEKPP>=1))||(i4.u5.MEK_RafP>=1))||(u1.ERKPP_Phase3>=1))||(u1.ERKP_Phase3>=1))||((u3.MEKP>=1)&&(i4.u5.RafP>=1)))||(i4.u5.MEKP_RafP>=1))||(u3.MEKP_Phase2>=1)))))) U (AG((((((((((((((((EG(((((((u4.Raf_RasGTP>=1)||(i4.u5.MEK_RafP>=1))||(i4.u0.RafP_Phase1>=1))||((u4.RasGTP>=1)&&(u4.Raf>=1)))||((i4.u5.MEK>=1)&&(i4.u5.RafP>=1)))||(u3.MEKP_Phase2>=1))) + ((((EF(((((((((u2.ERKP_MEKPP>=1)||(i4.u5.MEK_RafP>=1))||(i4.u0.RafP_Phase1>=1))||(u1.ERKPP_Phase3>=1))||(u1.ERKP_Phase3>=1))||((u3.MEKP>=1)&&(i4.u5.RafP>=1)))||(u3.MEKP_Phase2>=1))||((u2.MEKPP>=1)&&(u2.ERK>=1)))) * AG((((((((((u4.Raf_RasGTP>=1)||(u2.ERKP_MEKPP>=1))||(i4.u5.MEK_RafP>=1))||((u1.ERKP>=1)&&(u2.MEKPP>=1)))||(u1.ERKPP_Phase3>=1))||(i4.u5.MEKP_RafP>=1))||((i4.u5.MEK>=1)&&(i4.u5.RafP>=1)))||(u3.MEKP_Phase2>=1))||((u2.MEKPP>=1)&&(u2.ERK>=1))))) * ((u1.ERKP<1)||(u2.MEKPP<1))) * ((u3.MEKP<1)||(i4.u5.RafP<1))) * (((((u2.ERKP_MEKPP>=1)||((i4.u0.Phase1>=1)&&(i4.u5.RafP>=1)))||(u1.ERKPP_Phase3>=1))||(u1.ERKP_Phase3>=1))||((u1.ERKP>=1)&&(u1.Phase3>=1))))) + (u2.ERK_MEKPP>=1)) + ((u1.Phase3>=1)&&(u1.ERKPP>=1))) + (u2.ERKP_MEKPP>=1)) + (i4.u0.RafP_Phase1>=1)) + ((u1.ERKP>=1)&&(u2.MEKPP>=1))) + ((i4.u5.MEK>=1)&&(i4.u5.RafP>=1))) + (u3.MEKP_Phase2>=1)) + (i4.u5.MEK_RafP>=1)) + (u4.Raf_RasGTP>=1)) + (i4.u5.MEK_RafP>=1)) + ((i4.u0.Phase1>=1)&&(i4.u5.RafP>=1))) + ((u2.MEKPP>=1)&&(u3.Phase2>=1))) + (u3.MEKP_Phase2>=1)) + (u3.MEKPP_Phase2>=1))) + E(((u4.Raf_RasGTP>=1)&&((((((i4.u5.MEK_RafP>=1)||(i4.u0.RafP_Phase1>=1))||((i4.u0.Phase1>=1)&&(i4.u5.RafP>=1)))||((u4.RasGTP>=1)&&(u4.Raf>=1)))||(u3.MEKP_Phase2>=1))||(u3.MEKPP_Phase2>=1))) U (((((u1.Phase3>=1)&&(u1.ERKPP>=1))||(u1.ERKPP_Phase3>=1))||((u2.MEKPP>=1)&&(u3.Phase2>=1)))||(i4.u5.MEKP_RafP>=1)))))
=> equivalent forward existential formula: [((Init * !(EG(!((!(E(TRUE U !((((((((((((((((EG(((((((u4.Raf_RasGTP>=1)||(i4.u5.MEK_RafP>=1))||(i4.u0.RafP_Phase1>=1))||((u4.RasGTP>=1)&&(u4.Raf>=1)))||((i4.u5.MEK>=1)&&(i4.u5.RafP>=1)))||(u3.MEKP_Phase2>=1))) + ((((E(TRUE U ((((((((u2.ERKP_MEKPP>=1)||(i4.u5.MEK_RafP>=1))||(i4.u0.RafP_Phase1>=1))||(u1.ERKPP_Phase3>=1))||(u1.ERKP_Phase3>=1))||((u3.MEKP>=1)&&(i4.u5.RafP>=1)))||(u3.MEKP_Phase2>=1))||((u2.MEKPP>=1)&&(u2.ERK>=1)))) * !(E(TRUE U !((((((((((u4.Raf_RasGTP>=1)||(u2.ERKP_MEKPP>=1))||(i4.u5.MEK_RafP>=1))||((u1.ERKP>=1)&&(u2.MEKPP>=1)))||(u1.ERKPP_Phase3>=1))||(i4.u5.MEKP_RafP>=1))||((i4.u5.MEK>=1)&&(i4.u5.RafP>=1)))||(u3.MEKP_Phase2>=1))||((u2.MEKPP>=1)&&(u2.ERK>=1))))))) * ((u1.ERKP<1)||(u2.MEKPP<1))) * ((u3.MEKP<1)||(i4.u5.RafP<1))) * (((((u2.ERKP_MEKPP>=1)||((i4.u0.Phase1>=1)&&(i4.u5.RafP>=1)))||(u1.ERKPP_Phase3>=1))||(u1.ERKP_Phase3>=1))||((u1.ERKP>=1)&&(u1.Phase3>=1))))) + (u2.ERK_MEKPP>=1)) + ((u1.Phase3>=1)&&(u1.ERKPP>=1))) + (u2.ERKP_MEKPP>=1)) + (i4.u0.RafP_Phase1>=1)) + ((u1.ERKP>=1)&&(u2.MEKPP>=1))) + ((i4.u5.MEK>=1)&&(i4.u5.RafP>=1))) + (u3.MEKP_Phase2>=1)) + (i4.u5.MEK_RafP>=1)) + (u4.Raf_RasGTP>=1)) + (i4.u5.MEK_RafP>=1)) + ((i4.u0.Phase1>=1)&&(i4.u5.RafP>=1))) + ((u2.MEKPP>=1)&&(u3.Phase2>=1))) + (u3.MEKP_Phase2>=1)) + (u3.MEKPP_Phase2>=1))))) + E(((u4.Raf_RasGTP>=1)&&((((((i4.u5.MEK_RafP>=1)||(i4.u0.RafP_Phase1>=1))||((i4.u0.Phase1>=1)&&(i4.u5.RafP>=1)))||((u4.RasGTP>=1)&&(u4.Raf>=1)))||(u3.MEKP_Phase2>=1))||(u3.MEKPP_Phase2>=1))) U (((((u1.Phase3>=1)&&(u1.ERKPP>=1))||(u1.ERKPP_Phase3>=1))||((u2.MEKPP>=1)&&(u3.Phase2>=1)))||(i4.u5.MEKP_RafP>=1)))))))) * !(E(!((!(E(TRUE U !((((((((((((((((EG(((((((u4.Raf_RasGTP>=1)||(i4.u5.MEK_RafP>=1))||(i4.u0.RafP_Phase1>=1))||((u4.RasGTP>=1)&&(u4.Raf>=1)))||((i4.u5.MEK>=1)&&(i4.u5.RafP>=1)))||(u3.MEKP_Phase2>=1))) + ((((E(TRUE U ((((((((u2.ERKP_MEKPP>=1)||(i4.u5.MEK_RafP>=1))||(i4.u0.RafP_Phase1>=1))||(u1.ERKPP_Phase3>=1))||(u1.ERKP_Phase3>=1))||((u3.MEKP>=1)&&(i4.u5.RafP>=1)))||(u3.MEKP_Phase2>=1))||((u2.MEKPP>=1)&&(u2.ERK>=1)))) * !(E(TRUE U !((((((((((u4.Raf_RasGTP>=1)||(u2.ERKP_MEKPP>=1))||(i4.u5.MEK_RafP>=1))||((u1.ERKP>=1)&&(u2.MEKPP>=1)))||(u1.ERKPP_Phase3>=1))||(i4.u5.MEKP_RafP>=1))||((i4.u5.MEK>=1)&&(i4.u5.RafP>=1)))||(u3.MEKP_Phase2>=1))||((u2.MEKPP>=1)&&(u2.ERK>=1))))))) * ((u1.ERKP<1)||(u2.MEKPP<1))) * ((u3.MEKP<1)||(i4.u5.RafP<1))) * (((((u2.ERKP_MEKPP>=1)||((i4.u0.Phase1>=1)&&(i4.u5.RafP>=1)))||(u1.ERKPP_Phase3>=1))||(u1.ERKP_Phase3>=1))||((u1.ERKP>=1)&&(u1.Phase3>=1))))) + (u2.ERK_MEKPP>=1)) + ((u1.Phase3>=1)&&(u1.ERKPP>=1))) + (u2.ERKP_MEKPP>=1)) + (i4.u0.RafP_Phase1>=1)) + ((u1.ERKP>=1)&&(u2.MEKPP>=1))) + ((i4.u5.MEK>=1)&&(i4.u5.RafP>=1))) + (u3.MEKP_Phase2>=1)) + (i4.u5.MEK_RafP>=1)) + (u4.Raf_RasGTP>=1)) + (i4.u5.MEK_RafP>=1)) + ((i4.u0.Phase1>=1)&&(i4.u5.RafP>=1))) + ((u2.MEKPP>=1)&&(u3.Phase2>=1))) + (u3.MEKP_Phase2>=1)) + (u3.MEKPP_Phase2>=1))))) + E(((u4.Raf_RasGTP>=1)&&((((((i4.u5.MEK_RafP>=1)||(i4.u0.RafP_Phase1>=1))||((i4.u0.Phase1>=1)&&(i4.u5.RafP>=1)))||((u4.RasGTP>=1)&&(u4.Raf>=1)))||(u3.MEKP_Phase2>=1))||(u3.MEKPP_Phase2>=1))) U (((((u1.Phase3>=1)&&(u1.ERKPP>=1))||(u1.ERKPP_Phase3>=1))||((u2.MEKPP>=1)&&(u3.Phase2>=1)))||(i4.u5.MEKP_RafP>=1))))) U (!(!(EX(!((!(EX(!(E(TRUE U !(((((((((u1.Phase3>=1)&&(u1.ERKPP>=1))||(u2.ERK_MEKPP>=1))||(u4.Raf_RasGTP>=1))||(i4.u0.RafP_Phase1>=1))||((u3.Phase2>=1)&&(u3.MEKP>=1)))||(u1.ERKPP_Phase3>=1))||(i4.u5.MEKP_RafP>=1))))))) * !(E(!((E(!((((((((((u2.ERKP_MEKPP>=1)||(i4.u0.RafP_Phase1>=1))||((u1.ERKP>=1)&&(u2.MEKPP>=1)))||(u1.ERKPP_Phase3>=1))||(u1.ERKP_Phase3>=1))||((i4.u5.MEK>=1)&&(i4.u5.RafP>=1)))||(i4.u5.MEKP_RafP>=1))||(u3.MEKPP_Phase2>=1))||((u2.MEKPP>=1)&&(u2.ERK>=1)))) U (!((((u2.ERKP_MEKPP>=1)||(u4.Raf_RasGTP>=1))||((u2.MEKPP>=1)&&(u3.Phase2>=1)))) * !((((((((((u2.ERKP_MEKPP>=1)||(i4.u0.RafP_Phase1>=1))||((u1.ERKP>=1)&&(u2.MEKPP>=1)))||(u1.ERKPP_Phase3>=1))||(u1.ERKP_Phase3>=1))||((i4.u5.MEK>=1)&&(i4.u5.RafP>=1)))||(i4.u5.MEKP_RafP>=1))||(u3.MEKPP_Phase2>=1))||((u2.MEKPP>=1)&&(u2.ERK>=1)))))) + EG(!((((((((((u2.ERKP_MEKPP>=1)||(i4.u0.RafP_Phase1>=1))||((u1.ERKP>=1)&&(u2.MEKPP>=1)))||(u1.ERKPP_Phase3>=1))||(u1.ERKP_Phase3>=1))||((i4.u5.MEK>=1)&&(i4.u5.RafP>=1)))||(i4.u5.MEKP_RafP>=1))||(u3.MEKPP_Phase2>=1))||((u2.MEKPP>=1)&&(u2.ERK>=1))))))) U ((((((((((u1.ERKP>=1)&&(u2.MEKPP>=1))||(u3.MEKPP_Phase2>=1))||(u2.ERK_MEKPP>=1))||(i4.u5.MEK_RafP>=1))||(u1.ERKPP_Phase3>=1))||(u1.ERKP_Phase3>=1))||((u3.MEKP>=1)&&(i4.u5.RafP>=1)))||(i4.u5.MEKP_RafP>=1))||(u3.MEKP_Phase2>=1))))))))) * !((!(E(TRUE U !((((((((((((((((EG(((((((u4.Raf_RasGTP>=1)||(i4.u5.MEK_RafP>=1))||(i4.u0.RafP_Phase1>=1))||((u4.RasGTP>=1)&&(u4.Raf>=1)))||((i4.u5.MEK>=1)&&(i4.u5.RafP>=1)))||(u3.MEKP_Phase2>=1))) + ((((E(TRUE U ((((((((u2.ERKP_MEKPP>=1)||(i4.u5.MEK_RafP>=1))||(i4.u0.RafP_Phase1>=1))||(u1.ERKPP_Phase3>=1))||(u1.ERKP_Phase3>=1))||((u3.MEKP>=1)&&(i4.u5.RafP>=1)))||(u3.MEKP_Phase2>=1))||((u2.MEKPP>=1)&&(u2.ERK>=1)))) * !(E(TRUE U !((((((((((u4.Raf_RasGTP>=1)||(u2.ERKP_MEKPP>=1))||(i4.u5.MEK_RafP>=1))||((u1.ERKP>=1)&&(u2.MEKPP>=1)))||(u1.ERKPP_Phase3>=1))||(i4.u5.MEKP_RafP>=1))||((i4.u5.MEK>=1)&&(i4.u5.RafP>=1)))||(u3.MEKP_Phase2>=1))||((u2.MEKPP>=1)&&(u2.ERK>=1))))))) * ((u1.ERKP<1)||(u2.MEKPP<1))) * ((u3.MEKP<1)||(i4.u5.RafP<1))) * (((((u2.ERKP_MEKPP>=1)||((i4.u0.Phase1>=1)&&(i4.u5.RafP>=1)))||(u1.ERKPP_Phase3>=1))||(u1.ERKP_Phase3>=1))||((u1.ERKP>=1)&&(u1.Phase3>=1))))) + (u2.ERK_MEKPP>=1)) + ((u1.Phase3>=1)&&(u1.ERKPP>=1))) + (u2.ERKP_MEKPP>=1)) + (i4.u0.RafP_Phase1>=1)) + ((u1.ERKP>=1)&&(u2.MEKPP>=1))) + ((i4.u5.MEK>=1)&&(i4.u5.RafP>=1))) + (u3.MEKP_Phase2>=1)) + (i4.u5.MEK_RafP>=1)) + (u4.Raf_RasGTP>=1)) + (i4.u5.MEK_RafP>=1)) + ((i4.u0.Phase1>=1)&&(i4.u5.RafP>=1))) + ((u2.MEKPP>=1)&&(u3.Phase2>=1))) + (u3.MEKP_Phase2>=1)) + (u3.MEKPP_Phase2>=1))))) + E(((u4.Raf_RasGTP>=1)&&((((((i4.u5.MEK_RafP>=1)||(i4.u0.RafP_Phase1>=1))||((i4.u0.Phase1>=1)&&(i4.u5.RafP>=1)))||((u4.RasGTP>=1)&&(u4.Raf>=1)))||(u3.MEKP_Phase2>=1))||(u3.MEKPP_Phase2>=1))) U (((((u1.Phase3>=1)&&(u1.ERKPP>=1))||(u1.ERKPP_Phase3>=1))||((u2.MEKPP>=1)&&(u3.Phase2>=1)))||(i4.u5.MEKP_RafP>=1)))))))))] != FALSE
(forward)formula 4,1,0.912878,32780,1,0,27548,11518,587,160056,296,137172,31788
FORMULA MAPK-PT-00008-CTLFireability-04 TRUE TECHNIQUES DECISION_DIAGRAMS TOPOLOGICAL USE_NUPN
Formula is TRUE !

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original formula: AX((AG((EG((((((((((((u2.ERK_MEKPP>=1)||(u4.Raf_RasGTP>=1))||(i4.u5.MEK_RafP>=1))||((i4.u0.Phase1>=1)&&(i4.u5.RafP>=1)))||((u3.Phase2>=1)&&(u3.MEKP>=1)))||(u1.ERKPP_Phase3>=1))||(u1.ERKP_Phase3>=1))||((u4.RasGTP>=1)&&(u4.Raf>=1)))||((u2.MEKPP>=1)&&(u3.Phase2>=1)))||(u3.MEKP_Phase2>=1))&&(((u4.Raf_RasGTP>=1)||(u1.ERKPP_Phase3>=1))||(u3.MEKPP_Phase2>=1)))) + EF((((((u1.ERKP_Phase3>=1)||(u3.MEKP_Phase2>=1))||(u1.ERKP_Phase3>=1))||((u4.RasGTP>=1)&&(u4.Raf>=1)))||((u2.MEKPP>=1)&&(u2.ERK>=1)))))) * (AX(((((((((EG(((((u2.ERK_MEKPP>=1)||(u1.ERKP_Phase3>=1))||((u1.ERKP>=1)&&(u1.Phase3>=1)))||((u4.RasGTP>=1)&&(u4.Raf>=1)))) + (u2.ERK_MEKPP>=1)) + ((u1.Phase3>=1)&&(u1.ERKPP>=1))) + (u1.ERKPP_Phase3>=1)) + ((u3.Phase2>=1)&&(u3.MEKP>=1))) + ((u1.ERKP>=1)&&(u2.MEKPP>=1))) + ((u4.RasGTP>=1)&&(u4.Raf>=1))) + ((i4.u5.MEK>=1)&&(i4.u5.RafP>=1))) + (u3.MEKP_Phase2>=1))) + (!(AX(AX((((((((((u2.ERK_MEKPP>=1)||(i4.u0.RafP_Phase1>=1))||(u1.ERKPP_Phase3>=1))||((u1.ERKP>=1)&&(u2.MEKPP>=1)))||((u3.Phase2>=1)&&(u3.MEKP>=1)))||(u1.ERKP_Phase3>=1))||((u1.ERKP>=1)&&(u1.Phase3>=1)))||(u3.MEKP_Phase2>=1))||((u2.MEKPP>=1)&&(u2.ERK>=1)))))) * (!(AX(((i4.u5.MEK>=1)&&(i4.u5.RafP>=1)))) + !(EX((((((((u2.ERK_MEKPP>=1)||(u4.Raf_RasGTP>=1))||(u1.ERKPP_Phase3>=1))||((u2.MEKPP>=1)&&(u3.Phase2>=1)))||((u3.MEKP>=1)&&(i4.u5.RafP>=1)))||(i4.u5.MEKP_RafP>=1))||(u3.MEKP_Phase2>=1)))))))))
=> equivalent forward existential formula: ([((FwdU(EY(Init),TRUE) * !(E(TRUE U (((((u1.ERKP_Phase3>=1)||(u3.MEKP_Phase2>=1))||(u1.ERKP_Phase3>=1))||((u4.RasGTP>=1)&&(u4.Raf>=1)))||((u2.MEKPP>=1)&&(u2.ERK>=1)))))) * !(EG((((((((((((u2.ERK_MEKPP>=1)||(u4.Raf_RasGTP>=1))||(i4.u5.MEK_RafP>=1))||((i4.u0.Phase1>=1)&&(i4.u5.RafP>=1)))||((u3.Phase2>=1)&&(u3.MEKP>=1)))||(u1.ERKPP_Phase3>=1))||(u1.ERKP_Phase3>=1))||((u4.RasGTP>=1)&&(u4.Raf>=1)))||((u2.MEKPP>=1)&&(u3.Phase2>=1)))||(u3.MEKP_Phase2>=1))&&(((u4.Raf_RasGTP>=1)||(u1.ERKPP_Phase3>=1))||(u3.MEKPP_Phase2>=1))))))] = FALSE * ([((EY(Init) * !(!(EX(!(((((((((EG(((((u2.ERK_MEKPP>=1)||(u1.ERKP_Phase3>=1))||((u1.ERKP>=1)&&(u1.Phase3>=1)))||((u4.RasGTP>=1)&&(u4.Raf>=1)))) + (u2.ERK_MEKPP>=1)) + ((u1.Phase3>=1)&&(u1.ERKPP>=1))) + (u1.ERKPP_Phase3>=1)) + ((u3.Phase2>=1)&&(u3.MEKP>=1))) + ((u1.ERKP>=1)&&(u2.MEKPP>=1))) + ((u4.RasGTP>=1)&&(u4.Raf>=1))) + ((i4.u5.MEK>=1)&&(i4.u5.RafP>=1))) + (u3.MEKP_Phase2>=1))))))) * !(EX(!(!(EX(!((((((((((u2.ERK_MEKPP>=1)||(i4.u0.RafP_Phase1>=1))||(u1.ERKPP_Phase3>=1))||((u1.ERKP>=1)&&(u2.MEKPP>=1)))||((u3.Phase2>=1)&&(u3.MEKP>=1)))||(u1.ERKP_Phase3>=1))||((u1.ERKP>=1)&&(u1.Phase3>=1)))||(u3.MEKP_Phase2>=1))||((u2.MEKPP>=1)&&(u2.ERK>=1))))))))))] = FALSE * [(EY(((EY(Init) * !(!(EX(!(((((((((EG(((((u2.ERK_MEKPP>=1)||(u1.ERKP_Phase3>=1))||((u1.ERKP>=1)&&(u1.Phase3>=1)))||((u4.RasGTP>=1)&&(u4.Raf>=1)))) + (u2.ERK_MEKPP>=1)) + ((u1.Phase3>=1)&&(u1.ERKPP>=1))) + (u1.ERKPP_Phase3>=1)) + ((u3.Phase2>=1)&&(u3.MEKP>=1))) + ((u1.ERKP>=1)&&(u2.MEKPP>=1))) + ((u4.RasGTP>=1)&&(u4.Raf>=1))) + ((i4.u5.MEK>=1)&&(i4.u5.RafP>=1))) + (u3.MEKP_Phase2>=1))))))) * !(!(!(EX(!(((i4.u5.MEK>=1)&&(i4.u5.RafP>=1))))))))) * (((((((u2.ERK_MEKPP>=1)||(u4.Raf_RasGTP>=1))||(u1.ERKPP_Phase3>=1))||((u2.MEKPP>=1)&&(u3.Phase2>=1)))||((u3.MEKP>=1)&&(i4.u5.RafP>=1)))||(i4.u5.MEKP_RafP>=1))||(u3.MEKP_Phase2>=1)))] = FALSE))
(forward)formula 5,1,1.06472,37796,1,0,34691,13651,652,186689,298,160395,36167
FORMULA MAPK-PT-00008-CTLFireability-05 TRUE TECHNIQUES DECISION_DIAGRAMS TOPOLOGICAL USE_NUPN
Formula is TRUE !

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

original formula: (EX(AG((((u2.ERK_MEKPP>=1)||(u1.ERKPP_Phase3>=1))||(u3.MEKPP_Phase2>=1)))) * ((A(E(((((((((u1.Phase3>=1)&&(u1.ERKPP>=1))||(u2.ERK_MEKPP>=1))||(i4.u0.RafP_Phase1>=1))||((u3.Phase2>=1)&&(u3.MEKP>=1)))||(u1.ERKPP_Phase3>=1))||((i4.u5.MEK>=1)&&(i4.u5.RafP>=1))) * AF(((((u2.ERK_MEKPP>=1)||(u1.ERKP_Phase3>=1))||(u3.MEKP_Phase2>=1))||(u3.MEKPP_Phase2>=1)))) U !(AF((u2.ERK_MEKPP>=1)))) U ((((((((u4.Raf_RasGTP<1)&&(u2.ERKP_MEKPP<1))&&(i4.u5.MEK_RafP<1))&&(u1.ERKPP_Phase3<1))&&(u1.ERKP_Phase3<1))&&((u4.RasGTP<1)||(u4.Raf<1)))&&(i4.u5.MEKP_RafP<1))&&((u2.MEKPP<1)||(u2.ERK<1)))) + AF(EX(((((((((((((((u2.ERK_MEKPP>=1)||(u2.ERKP_MEKPP>=1))||(i4.u5.MEK_RafP>=1))||((i4.u0.Phase1>=1)&&(i4.u5.RafP>=1)))||(u1.ERKPP_Phase3>=1))||((u1.ERKP>=1)&&(u2.MEKPP>=1)))||(u3.MEKP_Phase2>=1))||(u4.Raf_RasGTP>=1))||(i4.u0.RafP_Phase1>=1))||((u3.Phase2>=1)&&(u3.MEKP>=1)))||(u3.MEKP_Phase2>=1))||((u2.MEKPP>=1)&&(u2.ERK>=1)))&&(((((((((u1.Phase3>=1)&&(u1.ERKPP>=1))||(u2.ERKP_MEKPP>=1))||(u4.Raf_RasGTP>=1))||(i4.u0.RafP_Phase1>=1))||((u4.RasGTP>=1)&&(u4.Raf>=1)))||((u2.MEKPP>=1)&&(u3.Phase2>=1)))||(i4.u5.MEKP_RafP>=1))||(u3.MEKP_Phase2>=1)))&&((((((((((u1.Phase3>=1)&&(u1.ERKPP>=1))||(u4.Raf_RasGTP>=1))||(i4.u0.RafP_Phase1>=1))||((i4.u0.Phase1>=1)&&(i4.u5.RafP>=1)))||(u1.ERKPP_Phase3>=1))||((u1.ERKP>=1)&&(u1.Phase3>=1)))||((u3.MEKP>=1)&&(i4.u5.RafP>=1)))||(i4.u5.MEKP_RafP>=1))||((u2.MEKPP>=1)&&(u2.ERK>=1))))))) + EF((((((u2.ERK_MEKPP>=1)||(u1.ERKPP_Phase3>=1))||(i4.u5.MEKP_RafP>=1))||((i4.u5.MEK>=1)&&(i4.u5.RafP>=1))) * EG(((i4.u5.MEK_RafP>=1)||((i4.u5.MEK>=1)&&(i4.u5.RafP>=1))))))))
=> equivalent forward existential formula: ([(Init * !(EX(!(E(TRUE U !((((u2.ERK_MEKPP>=1)||(u1.ERKPP_Phase3>=1))||(u3.MEKPP_Phase2>=1))))))))] = FALSE * [FwdG(((Init * !(E(TRUE U (((((u2.ERK_MEKPP>=1)||(u1.ERKPP_Phase3>=1))||(i4.u5.MEKP_RafP>=1))||((i4.u5.MEK>=1)&&(i4.u5.RafP>=1))) * EG(((i4.u5.MEK_RafP>=1)||((i4.u5.MEK>=1)&&(i4.u5.RafP>=1)))))))) * !(!((E(!(((((((((u4.Raf_RasGTP<1)&&(u2.ERKP_MEKPP<1))&&(i4.u5.MEK_RafP<1))&&(u1.ERKPP_Phase3<1))&&(u1.ERKP_Phase3<1))&&((u4.RasGTP<1)||(u4.Raf<1)))&&(i4.u5.MEKP_RafP<1))&&((u2.MEKPP<1)||(u2.ERK<1)))) U (!(E(((((((((u1.Phase3>=1)&&(u1.ERKPP>=1))||(u2.ERK_MEKPP>=1))||(i4.u0.RafP_Phase1>=1))||((u3.Phase2>=1)&&(u3.MEKP>=1)))||(u1.ERKPP_Phase3>=1))||((i4.u5.MEK>=1)&&(i4.u5.RafP>=1))) * !(EG(!(((((u2.ERK_MEKPP>=1)||(u1.ERKP_Phase3>=1))||(u3.MEKP_Phase2>=1))||(u3.MEKPP_Phase2>=1)))))) U !(!(EG(!((u2.ERK_MEKPP>=1))))))) * !(((((((((u4.Raf_RasGTP<1)&&(u2.ERKP_MEKPP<1))&&(i4.u5.MEK_RafP<1))&&(u1.ERKPP_Phase3<1))&&(u1.ERKP_Phase3<1))&&((u4.RasGTP<1)||(u4.Raf<1)))&&(i4.u5.MEKP_RafP<1))&&((u2.MEKPP<1)||(u2.ERK<1)))))) + EG(!(((((((((u4.Raf_RasGTP<1)&&(u2.ERKP_MEKPP<1))&&(i4.u5.MEK_RafP<1))&&(u1.ERKPP_Phase3<1))&&(u1.ERKP_Phase3<1))&&((u4.RasGTP<1)||(u4.Raf<1)))&&(i4.u5.MEKP_RafP<1))&&((u2.MEKPP<1)||(u2.ERK<1))))))))),!(EX(((((((((((((((u2.ERK_MEKPP>=1)||(u2.ERKP_MEKPP>=1))||(i4.u5.MEK_RafP>=1))||((i4.u0.Phase1>=1)&&(i4.u5.RafP>=1)))||(u1.ERKPP_Phase3>=1))||((u1.ERKP>=1)&&(u2.MEKPP>=1)))||(u3.MEKP_Phase2>=1))||(u4.Raf_RasGTP>=1))||(i4.u0.RafP_Phase1>=1))||((u3.Phase2>=1)&&(u3.MEKP>=1)))||(u3.MEKP_Phase2>=1))||((u2.MEKPP>=1)&&(u2.ERK>=1)))&&(((((((((u1.Phase3>=1)&&(u1.ERKPP>=1))||(u2.ERKP_MEKPP>=1))||(u4.Raf_RasGTP>=1))||(i4.u0.RafP_Phase1>=1))||((u4.RasGTP>=1)&&(u4.Raf>=1)))||((u2.MEKPP>=1)&&(u3.Phase2>=1)))||(i4.u5.MEKP_RafP>=1))||(u3.MEKP_Phase2>=1)))&&((((((((((u1.Phase3>=1)&&(u1.ERKPP>=1))||(u4.Raf_RasGTP>=1))||(i4.u0.RafP_Phase1>=1))||((i4.u0.Phase1>=1)&&(i4.u5.RafP>=1)))||(u1.ERKPP_Phase3>=1))||((u1.ERKP>=1)&&(u1.Phase3>=1)))||((u3.MEKP>=1)&&(i4.u5.RafP>=1)))||(i4.u5.MEKP_RafP>=1))||((u2.MEKPP>=1)&&(u2.ERK>=1)))))))] = FALSE)
(forward)formula 6,0,1.20243,42020,1,0,40016,15158,809,207249,310,177954,41471
FORMULA MAPK-PT-00008-CTLFireability-08 FALSE TECHNIQUES DECISION_DIAGRAMS TOPOLOGICAL USE_NUPN
Formula is FALSE !

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

original formula: EG((((!(A(((((u2.ERK_MEKPP>=1)||(u2.ERKP_MEKPP>=1))||((u1.ERKP>=1)&&(u1.Phase3>=1)))||((i4.u0.Phase1>=1)&&(i4.u5.RafP>=1))) U (((((((u2.ERKP_MEKPP>=1)||(i4.u0.RafP_Phase1>=1))||(u1.ERKP_Phase3>=1))||((u4.RasGTP>=1)&&(u4.Raf>=1)))||((u2.MEKPP>=1)&&(u3.Phase2>=1)))||((u1.Phase3>=1)&&(u1.ERKPP>=1)))||(i4.u0.RafP_Phase1>=1)))) + !(EX((i4.u0.RafP_Phase1>=1)))) + ((u4.RasGTP>=1)&&(u4.Raf>=1))) + ((u2.MEKPP>=1)&&(u2.ERK>=1))))
=> equivalent forward existential formula: [FwdG(Init,(((!(!((E(!((((((((u2.ERKP_MEKPP>=1)||(i4.u0.RafP_Phase1>=1))||(u1.ERKP_Phase3>=1))||((u4.RasGTP>=1)&&(u4.Raf>=1)))||((u2.MEKPP>=1)&&(u3.Phase2>=1)))||((u1.Phase3>=1)&&(u1.ERKPP>=1)))||(i4.u0.RafP_Phase1>=1))) U (!(((((u2.ERK_MEKPP>=1)||(u2.ERKP_MEKPP>=1))||((u1.ERKP>=1)&&(u1.Phase3>=1)))||((i4.u0.Phase1>=1)&&(i4.u5.RafP>=1)))) * !((((((((u2.ERKP_MEKPP>=1)||(i4.u0.RafP_Phase1>=1))||(u1.ERKP_Phase3>=1))||((u4.RasGTP>=1)&&(u4.Raf>=1)))||((u2.MEKPP>=1)&&(u3.Phase2>=1)))||((u1.Phase3>=1)&&(u1.ERKPP>=1)))||(i4.u0.RafP_Phase1>=1))))) + EG(!((((((((u2.ERKP_MEKPP>=1)||(i4.u0.RafP_Phase1>=1))||(u1.ERKP_Phase3>=1))||((u4.RasGTP>=1)&&(u4.Raf>=1)))||((u2.MEKPP>=1)&&(u3.Phase2>=1)))||((u1.Phase3>=1)&&(u1.ERKPP>=1)))||(i4.u0.RafP_Phase1>=1))))))) + !(EX((i4.u0.RafP_Phase1>=1)))) + ((u4.RasGTP>=1)&&(u4.Raf>=1))) + ((u2.MEKPP>=1)&&(u2.ERK>=1))))] != FALSE
(forward)formula 7,1,8.51479,165532,1,0,201127,27085,832,980523,311,578503,95108
FORMULA MAPK-PT-00008-CTLFireability-09 TRUE TECHNIQUES DECISION_DIAGRAMS TOPOLOGICAL USE_NUPN
Formula is TRUE !

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

original formula: (EX(!(A(A(((((i4.u5.MEK_RafP>=1)||((u1.ERKP>=1)&&(u2.MEKPP>=1)))||((u3.Phase2>=1)&&(u3.MEKP>=1)))||(u3.MEKPP_Phase2>=1)) U (((((((u2.ERK_MEKPP>=1)||((u3.Phase2>=1)&&(u3.MEKP>=1)))||(u1.ERKPP_Phase3>=1))||(u1.ERKP_Phase3>=1))||((u4.RasGTP>=1)&&(u4.Raf>=1)))||(u3.MEKPP_Phase2>=1))&&(((((((i4.u0.RafP_Phase1>=1)||((i4.u0.Phase1>=1)&&(i4.u5.RafP>=1)))||((u1.ERKP>=1)&&(u1.Phase3>=1)))||((u3.MEKP>=1)&&(i4.u5.RafP>=1)))||(i4.u5.MEKP_RafP>=1))||(u3.MEKP_Phase2>=1))||(u3.MEKPP_Phase2>=1)))) U !(AF((((((i4.u5.MEK_RafP>=1)||(i4.u5.MEKP_RafP>=1))||((i4.u5.MEK>=1)&&(i4.u5.RafP>=1)))||(u3.MEKP_Phase2>=1))||((u2.MEKPP>=1)&&(u2.ERK>=1)))))))) + !(AX(((EX(((((((((((u1.Phase3<1)||(u1.ERKPP<1))&&(u4.Raf_RasGTP<1))&&(u2.ERKP_MEKPP<1))&&(i4.u0.RafP_Phase1<1))&&((u1.ERKP<1)||(u2.MEKPP<1)))&&(u1.ERKP_Phase3<1))&&((u4.RasGTP<1)||(u4.Raf<1)))&&((i4.u5.MEK<1)||(i4.u5.RafP<1)))&&(i4.u5.MEKP_RafP<1))) + ((EG((((u4.Raf_RasGTP>=1)||(i4.u5.MEKP_RafP>=1))||(u3.MEKPP_Phase2>=1))) * (u1.ERKP_Phase3<1)) * ((u2.MEKPP<1)||(u3.Phase2<1)))) * !(AG((((u2.ERKP_MEKPP>=1)||(i4.u5.MEKP_RafP>=1))||(u4.Raf_RasGTP>=1))))))))
=> equivalent forward existential formula: (([((FwdU(EY(Init),!(!(!(EG(!((((((i4.u5.MEK_RafP>=1)||(i4.u5.MEKP_RafP>=1))||((i4.u5.MEK>=1)&&(i4.u5.RafP>=1)))||(u3.MEKP_Phase2>=1))||((u2.MEKPP>=1)&&(u2.ERK>=1))))))))) * !(!((E(!((((((((u2.ERK_MEKPP>=1)||((u3.Phase2>=1)&&(u3.MEKP>=1)))||(u1.ERKPP_Phase3>=1))||(u1.ERKP_Phase3>=1))||((u4.RasGTP>=1)&&(u4.Raf>=1)))||(u3.MEKPP_Phase2>=1))&&(((((((i4.u0.RafP_Phase1>=1)||((i4.u0.Phase1>=1)&&(i4.u5.RafP>=1)))||((u1.ERKP>=1)&&(u1.Phase3>=1)))||((u3.MEKP>=1)&&(i4.u5.RafP>=1)))||(i4.u5.MEKP_RafP>=1))||(u3.MEKP_Phase2>=1))||(u3.MEKPP_Phase2>=1)))) U (!(((((i4.u5.MEK_RafP>=1)||((u1.ERKP>=1)&&(u2.MEKPP>=1)))||((u3.Phase2>=1)&&(u3.MEKP>=1)))||(u3.MEKPP_Phase2>=1))) * !((((((((u2.ERK_MEKPP>=1)||((u3.Phase2>=1)&&(u3.MEKP>=1)))||(u1.ERKPP_Phase3>=1))||(u1.ERKP_Phase3>=1))||((u4.RasGTP>=1)&&(u4.Raf>=1)))||(u3.MEKPP_Phase2>=1))&&(((((((i4.u0.RafP_Phase1>=1)||((i4.u0.Phase1>=1)&&(i4.u5.RafP>=1)))||((u1.ERKP>=1)&&(u1.Phase3>=1)))||((u3.MEKP>=1)&&(i4.u5.RafP>=1)))||(i4.u5.MEKP_RafP>=1))||(u3.MEKP_Phase2>=1))||(u3.MEKPP_Phase2>=1)))))) + EG(!((((((((u2.ERK_MEKPP>=1)||((u3.Phase2>=1)&&(u3.MEKP>=1)))||(u1.ERKPP_Phase3>=1))||(u1.ERKP_Phase3>=1))||((u4.RasGTP>=1)&&(u4.Raf>=1)))||(u3.MEKPP_Phase2>=1))&&(((((((i4.u0.RafP_Phase1>=1)||((i4.u0.Phase1>=1)&&(i4.u5.RafP>=1)))||((u1.ERKP>=1)&&(u1.Phase3>=1)))||((u3.MEKP>=1)&&(i4.u5.RafP>=1)))||(i4.u5.MEKP_RafP>=1))||(u3.MEKP_Phase2>=1))||(u3.MEKPP_Phase2>=1))))))))) * !(EG(!((((((i4.u5.MEK_RafP>=1)||(i4.u5.MEKP_RafP>=1))||((i4.u5.MEK>=1)&&(i4.u5.RafP>=1)))||(u3.MEKP_Phase2>=1))||((u2.MEKPP>=1)&&(u2.ERK>=1)))))))] != FALSE + [FwdG(EY(Init),!(!(!(EG(!((((((i4.u5.MEK_RafP>=1)||(i4.u5.MEKP_RafP>=1))||((i4.u5.MEK>=1)&&(i4.u5.RafP>=1)))||(u3.MEKP_Phase2>=1))||((u2.MEKPP>=1)&&(u2.ERK>=1)))))))))] != FALSE) + ([((EY(Init) * !(((EG((((u4.Raf_RasGTP>=1)||(i4.u5.MEKP_RafP>=1))||(u3.MEKPP_Phase2>=1))) * (u1.ERKP_Phase3<1)) * ((u2.MEKPP<1)||(u3.Phase2<1))))) * !(EX(((((((((((u1.Phase3<1)||(u1.ERKPP<1))&&(u4.Raf_RasGTP<1))&&(u2.ERKP_MEKPP<1))&&(i4.u0.RafP_Phase1<1))&&((u1.ERKP<1)||(u2.MEKPP<1)))&&(u1.ERKP_Phase3<1))&&((u4.RasGTP<1)||(u4.Raf<1)))&&((i4.u5.MEK<1)||(i4.u5.RafP<1)))&&(i4.u5.MEKP_RafP<1)))))] != FALSE + [(EY(Init) * !(E(TRUE U !((((u2.ERKP_MEKPP>=1)||(i4.u5.MEKP_RafP>=1))||(u4.Raf_RasGTP>=1))))))] != FALSE))
(forward)formula 8,0,9.07148,179260,1,0,219768,31544,937,1.04085e+06,318,629699,110728
FORMULA MAPK-PT-00008-CTLFireability-10 FALSE TECHNIQUES DECISION_DIAGRAMS TOPOLOGICAL USE_NUPN
Formula is FALSE !

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

original formula: AX((((i4.u0.RafP_Phase1>=1) * !(AG(((((((((i4.u5.MEK_RafP>=1)||(i4.u0.RafP_Phase1>=1))||((i4.u0.Phase1>=1)&&(i4.u5.RafP>=1)))||((u1.ERKP>=1)&&(u2.MEKPP>=1)))||(u1.ERKPP_Phase3>=1))||(u1.ERKP_Phase3>=1))||((u2.MEKPP>=1)&&(u2.ERK>=1)))||(u3.MEKPP_Phase2>=1))))) * (!(E((((((((((((u2.ERK_MEKPP>=1)||(u2.ERKP_MEKPP>=1))||(i4.u5.MEK_RafP>=1))||(u1.ERKPP_Phase3>=1))||((u3.Phase2>=1)&&(u3.MEKP>=1)))||((u2.MEKPP>=1)&&(u3.Phase2>=1)))||(i4.u5.MEKP_RafP>=1))||(u3.MEKP_Phase2>=1))||(u3.MEKPP_Phase2>=1))||((u2.MEKPP>=1)&&(u2.ERK>=1)))&&((((((((i4.u0.RafP_Phase1>=1)||((u1.ERKP>=1)&&(u2.MEKPP>=1)))||(u1.ERKP_Phase3>=1))||((u1.ERKP>=1)&&(u1.Phase3>=1)))||((u2.MEKPP>=1)&&(u3.Phase2>=1)))||((i4.u5.MEK>=1)&&(i4.u5.RafP>=1)))||(i4.u5.MEKP_RafP>=1))||(u3.MEKPP_Phase2>=1))) U ((u2.ERK_MEKPP>=1)&&((((((((u2.ERK_MEKPP>=1)||(u4.Raf_RasGTP>=1))||(i4.u5.MEK_RafP>=1))||(i4.u0.RafP_Phase1>=1))||((u1.ERKP>=1)&&(u2.MEKPP>=1)))||((u4.RasGTP>=1)&&(u4.Raf>=1)))||(u3.MEKP_Phase2>=1))||((u2.MEKPP>=1)&&(u2.ERK>=1)))))) + (((u1.ERKPP_Phase3<1)&&((u3.MEKP<1)||(i4.u5.RafP<1)))&&((i4.u5.MEK<1)||(i4.u5.RafP<1))))))
=> equivalent forward existential formula: (([(EY(Init) * !((i4.u0.RafP_Phase1>=1)))] = FALSE * [(EY(Init) * !(E(TRUE U !(((((((((i4.u5.MEK_RafP>=1)||(i4.u0.RafP_Phase1>=1))||((i4.u0.Phase1>=1)&&(i4.u5.RafP>=1)))||((u1.ERKP>=1)&&(u2.MEKPP>=1)))||(u1.ERKPP_Phase3>=1))||(u1.ERKP_Phase3>=1))||((u2.MEKPP>=1)&&(u2.ERK>=1)))||(u3.MEKPP_Phase2>=1))))))] = FALSE) * [(FwdU((EY(Init) * !((((u1.ERKPP_Phase3<1)&&((u3.MEKP<1)||(i4.u5.RafP<1)))&&((i4.u5.MEK<1)||(i4.u5.RafP<1))))),(((((((((((u2.ERK_MEKPP>=1)||(u2.ERKP_MEKPP>=1))||(i4.u5.MEK_RafP>=1))||(u1.ERKPP_Phase3>=1))||((u3.Phase2>=1)&&(u3.MEKP>=1)))||((u2.MEKPP>=1)&&(u3.Phase2>=1)))||(i4.u5.MEKP_RafP>=1))||(u3.MEKP_Phase2>=1))||(u3.MEKPP_Phase2>=1))||((u2.MEKPP>=1)&&(u2.ERK>=1)))&&((((((((i4.u0.RafP_Phase1>=1)||((u1.ERKP>=1)&&(u2.MEKPP>=1)))||(u1.ERKP_Phase3>=1))||((u1.ERKP>=1)&&(u1.Phase3>=1)))||((u2.MEKPP>=1)&&(u3.Phase2>=1)))||((i4.u5.MEK>=1)&&(i4.u5.RafP>=1)))||(i4.u5.MEKP_RafP>=1))||(u3.MEKPP_Phase2>=1)))) * ((u2.ERK_MEKPP>=1)&&((((((((u2.ERK_MEKPP>=1)||(u4.Raf_RasGTP>=1))||(i4.u5.MEK_RafP>=1))||(i4.u0.RafP_Phase1>=1))||((u1.ERKP>=1)&&(u2.MEKPP>=1)))||((u4.RasGTP>=1)&&(u4.Raf>=1)))||(u3.MEKP_Phase2>=1))||((u2.MEKPP>=1)&&(u2.ERK>=1)))))] = FALSE)
(forward)formula 9,0,9.09543,179788,1,0,220541,31853,996,1.04273e+06,318,631135,112062
FORMULA MAPK-PT-00008-CTLFireability-12 FALSE TECHNIQUES DECISION_DIAGRAMS TOPOLOGICAL USE_NUPN
Formula is FALSE !

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

original formula: AF((AF(AX((((((((((u2.ERK_MEKPP>=1)||(u4.Raf_RasGTP>=1))||(i4.u5.MEK_RafP>=1))||(i4.u0.RafP_Phase1>=1))||((i4.u0.Phase1>=1)&&(i4.u5.RafP>=1)))||(u1.ERKPP_Phase3>=1))||(u1.ERKP_Phase3>=1))||((u2.MEKPP>=1)&&(u3.Phase2>=1)))||(u3.MEKPP_Phase2>=1)))) + !(E(AF(((((((((((u4.Raf_RasGTP>=1)||(u3.MEKP_Phase2>=1))||(u2.ERK_MEKPP>=1))||(u2.ERKP_MEKPP>=1))||(i4.u5.MEK_RafP>=1))||(u1.ERKPP_Phase3>=1))||((u1.ERKP>=1)&&(u2.MEKPP>=1)))||(u1.ERKP_Phase3>=1))||(i4.u5.MEKP_RafP>=1))||(u3.MEKPP_Phase2>=1))) U E(((((((((u4.Raf_RasGTP<1)&&(i4.u5.MEK_RafP<1))&&((i4.u0.Phase1<1)||(i4.u5.RafP<1)))&&(u1.ERKPP_Phase3<1))&&(u1.ERKP_Phase3<1))&&((u1.ERKP<1)||(u1.Phase3<1)))&&(u3.MEKP_Phase2<1))&&((u2.MEKPP<1)||(u2.ERK<1))) U ((((((((((u1.Phase3>=1)&&(u1.ERKPP>=1))||(u2.ERK_MEKPP>=1))||(u4.Raf_RasGTP>=1))||(i4.u5.MEK_RafP>=1))||(u1.ERKPP_Phase3>=1))||((u1.ERKP>=1)&&(u2.MEKPP>=1)))||(u1.ERKP_Phase3>=1))||(u3.MEKP_Phase2>=1))&&((((((((u1.Phase3>=1)&&(u1.ERKPP>=1))||(u2.ERK_MEKPP>=1))||(i4.u0.RafP_Phase1>=1))||((u3.Phase2>=1)&&(u3.MEKP>=1)))||((u4.RasGTP>=1)&&(u4.Raf>=1)))||(u3.MEKP_Phase2>=1))||((u2.MEKPP>=1)&&(u2.ERK>=1)))))))))
=> equivalent forward existential formula: [FwdG(Init,!((!(EG(!(!(EX(!((((((((((u2.ERK_MEKPP>=1)||(u4.Raf_RasGTP>=1))||(i4.u5.MEK_RafP>=1))||(i4.u0.RafP_Phase1>=1))||((i4.u0.Phase1>=1)&&(i4.u5.RafP>=1)))||(u1.ERKPP_Phase3>=1))||(u1.ERKP_Phase3>=1))||((u2.MEKPP>=1)&&(u3.Phase2>=1)))||(u3.MEKPP_Phase2>=1)))))))) + !(E(!(EG(!(((((((((((u4.Raf_RasGTP>=1)||(u3.MEKP_Phase2>=1))||(u2.ERK_MEKPP>=1))||(u2.ERKP_MEKPP>=1))||(i4.u5.MEK_RafP>=1))||(u1.ERKPP_Phase3>=1))||((u1.ERKP>=1)&&(u2.MEKPP>=1)))||(u1.ERKP_Phase3>=1))||(i4.u5.MEKP_RafP>=1))||(u3.MEKPP_Phase2>=1))))) U E(((((((((u4.Raf_RasGTP<1)&&(i4.u5.MEK_RafP<1))&&((i4.u0.Phase1<1)||(i4.u5.RafP<1)))&&(u1.ERKPP_Phase3<1))&&(u1.ERKP_Phase3<1))&&((u1.ERKP<1)||(u1.Phase3<1)))&&(u3.MEKP_Phase2<1))&&((u2.MEKPP<1)||(u2.ERK<1))) U ((((((((((u1.Phase3>=1)&&(u1.ERKPP>=1))||(u2.ERK_MEKPP>=1))||(u4.Raf_RasGTP>=1))||(i4.u5.MEK_RafP>=1))||(u1.ERKPP_Phase3>=1))||((u1.ERKP>=1)&&(u2.MEKPP>=1)))||(u1.ERKP_Phase3>=1))||(u3.MEKP_Phase2>=1))&&((((((((u1.Phase3>=1)&&(u1.ERKPP>=1))||(u2.ERK_MEKPP>=1))||(i4.u0.RafP_Phase1>=1))||((u3.Phase2>=1)&&(u3.MEKP>=1)))||((u4.RasGTP>=1)&&(u4.Raf>=1)))||(u3.MEKP_Phase2>=1))||((u2.MEKPP>=1)&&(u2.ERK>=1))))))))))] = FALSE
Using saturation style SCC detection
Using saturation style SCC detection
Using saturation style SCC detection
Using saturation style SCC detection
Using saturation style SCC detection
Using saturation style SCC detection
Using saturation style SCC detection
Using saturation style SCC detection
Using saturation style SCC detection
Fast SCC detection found a local SCC at level 2
Fast SCC detection found an SCC at level 3
Fast SCC detection found an SCC at level 4
(forward)formula 10,1,9.38632,187708,1,0,228377,34026,1093,1.0953e+06,327,667054,118347
FORMULA MAPK-PT-00008-CTLFireability-14 TRUE TECHNIQUES DECISION_DIAGRAMS TOPOLOGICAL USE_NUPN
Formula is TRUE !

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

ITS tools runner thread asked to quit. Dying gracefully.

BK_STOP 1620888115220

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

+ export BINDIR=/home/mcc/BenchKit/bin//../
+ BINDIR=/home/mcc/BenchKit/bin//../
++ pwd
+ export MODEL=/home/mcc/execution
+ MODEL=/home/mcc/execution
+ [[ CTLFireability = StateSpace ]]
+ /home/mcc/BenchKit/bin//..//runeclipse.sh /home/mcc/execution CTLFireability -its -ltsmin -greatspnpath /home/mcc/BenchKit/bin//..//greatspn/ -order META -manyOrder -smt -timeout 3600
+ ulimit -s 65536
+ [[ -z '' ]]
+ export LTSMIN_MEM_SIZE=8589934592
+ LTSMIN_MEM_SIZE=8589934592
++ cut -d . -f 9
++ ls /home/mcc/BenchKit/bin//..//itstools/plugins/fr.lip6.move.gal.application.pnmcc_1.0.0.202104292328.jar
+ VERSION=0
+ echo 'Running Version 0'
+ /home/mcc/BenchKit/bin//..//itstools/its-tools -data /home/mcc/execution/workspace -pnfolder /home/mcc/execution -examination CTLFireability -spotpath /home/mcc/BenchKit/bin//..//ltlfilt -z3path /home/mcc/BenchKit/bin//..//z3/bin/z3 -yices2path /home/mcc/BenchKit/bin//..//yices/bin/yices -its -ltsmin -greatspnpath /home/mcc/BenchKit/bin//..//greatspn/ -order META -manyOrder -smt -timeout 3600 -vmargs -Dosgi.locking=none -Declipse.stateSaveDelayInterval=-1 -Dosgi.configuration.area=/tmp/.eclipse -Xss128m -Xms40m -Xmx16000m

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="MAPK-PT-00008"
export BK_EXAMINATION="CTLFireability"
export BK_TOOL="itstools"
export BK_RESULT_DIR="/tmp/BK_RESULTS/OUTPUTS"
export BK_TIME_CONFINEMENT="3600"
export BK_MEMORY_CONFINEMENT="16384"
export BK_BIN_PATH="/home/mcc/BenchKit/bin/"

# 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

# this is for BenchKit: explicit launching of the test
echo "====================================================================="
echo " Generated by BenchKit 2-4028"
echo " Executing tool itstools"
echo " Input is MAPK-PT-00008, 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 r121-tall-162075407300698"
echo "====================================================================="
echo
echo "--------------------"
echo "preparation of the directory to be used:"

tar xzf /home/mcc/BenchKit/INPUTS/MAPK-PT-00008.tgz
mv MAPK-PT-00008 execution
cd execution
if [ "CTLFireability" = "ReachabilityDeadlock" ] || [ "CTLFireability" = "UpperBounds" ] || [ "CTLFireability" = "QuasiLiveness" ] || [ "CTLFireability" = "StableMarking" ] || [ "CTLFireability" = "Liveness" ] || [ "CTLFireability" = "OneSafe" ] || [ "CTLFireability" = "StateSpace" ]; then
rm -f GenericPropertiesVerdict.xml
fi
pwd
ls -lh

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
elif [ "CTLFireability" = "ReachabilityDeadlock" ] || [ "CTLFireability" = "QuasiLiveness" ] || [ "CTLFireability" = "StableMarking" ] || [ "CTLFireability" = "Liveness" ] || [ "CTLFireability" = "OneSafe" ] ; then
echo "FORMULA_NAME CTLFireability"
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 ;