fond
Model Checking Contest 2020
10th edition, Paris, France, June 23, 2020
Execution of r030-oct2-158897741200083
Last Updated
Jun 28, 2020

About the Execution of 2019-Gold for BridgeAndVehicles-PT-V20P20N10

Execution Summary
Max Memory
Used (MB)
Time wait (ms) CPU Usage (ms) I/O Wait (ms) Computed Result Execution
Status
4283.550 276659.00 265292.00 47.20 TTTTTFFFTFFTFFTT normal

Execution Chart

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

Trace from the execution

Formatting '/data/fko/mcc2020-input.r030-oct2-158897741200083.qcow2', fmt=qcow2 size=4294967296 backing_file=/data/fko/mcc2020-input.qcow2 cluster_size=65536 lazy_refcounts=off refcount_bits=16
Waiting for the VM to be ready (probing ssh)
...............................................................
=====================================================================
Generated by BenchKit 2-4028
Executing tool win2019
Input is BridgeAndVehicles-PT-V20P20N10, examination is LTLCardinality
Time confinement is 3600 seconds
Memory confinement is 16384 MBytes
Number of cores is 4
Run identifier is r030-oct2-158897741200083
=====================================================================

--------------------
preparation of the directory to be used:
/home/mcc/execution
total 1.2M
-rw-r--r-- 1 mcc users 6.4K Mar 26 02:25 CTLCardinality.txt
-rw-r--r-- 1 mcc users 26K Mar 26 02:25 CTLCardinality.xml
-rw-r--r-- 1 mcc users 32K Mar 25 20:56 CTLFireability.txt
-rw-r--r-- 1 mcc users 99K Mar 25 20:56 CTLFireability.xml
-rw-r--r-- 1 mcc users 4.0K Mar 24 05:37 GenericPropertiesDefinition.xml
-rw-r--r-- 1 mcc users 6.1K Mar 24 05:37 GenericPropertiesVerdict.xml
-rw-r--r-- 1 mcc users 6.1K Apr 8 14:42 LTLCardinality.txt
-rw-r--r-- 1 mcc users 31K Apr 28 14:00 LTLCardinality.xml
-rw-r--r-- 1 mcc users 32K Apr 8 14:42 LTLFireability.txt
-rw-r--r-- 1 mcc users 105K Apr 28 14:00 LTLFireability.xml
-rw-r--r-- 1 mcc users 7.3K Mar 25 17:23 ReachabilityCardinality.txt
-rw-r--r-- 1 mcc users 29K Mar 25 17:23 ReachabilityCardinality.xml
-rw-r--r-- 1 mcc users 50K Mar 25 12:24 ReachabilityFireability.txt
-rw-r--r-- 1 mcc users 150K Mar 25 12:24 ReachabilityFireability.xml
-rw-r--r-- 1 mcc users 1.9K Mar 25 17:54 UpperBounds.txt
-rw-r--r-- 1 mcc users 4.0K Mar 25 17:54 UpperBounds.xml
-rw-r--r-- 1 mcc users 5 Mar 24 05:37 equiv_col
-rw-r--r-- 1 mcc users 10 Mar 24 05:37 instance
-rw-r--r-- 1 mcc users 6 Mar 24 05:37 iscolored
-rw-r--r-- 1 mcc users 598K Mar 24 05:37 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 BridgeAndVehicles-PT-V20P20N10-00
FORMULA_NAME BridgeAndVehicles-PT-V20P20N10-01
FORMULA_NAME BridgeAndVehicles-PT-V20P20N10-02
FORMULA_NAME BridgeAndVehicles-PT-V20P20N10-03
FORMULA_NAME BridgeAndVehicles-PT-V20P20N10-04
FORMULA_NAME BridgeAndVehicles-PT-V20P20N10-05
FORMULA_NAME BridgeAndVehicles-PT-V20P20N10-06
FORMULA_NAME BridgeAndVehicles-PT-V20P20N10-07
FORMULA_NAME BridgeAndVehicles-PT-V20P20N10-08
FORMULA_NAME BridgeAndVehicles-PT-V20P20N10-09
FORMULA_NAME BridgeAndVehicles-PT-V20P20N10-10
FORMULA_NAME BridgeAndVehicles-PT-V20P20N10-11
FORMULA_NAME BridgeAndVehicles-PT-V20P20N10-12
FORMULA_NAME BridgeAndVehicles-PT-V20P20N10-13
FORMULA_NAME BridgeAndVehicles-PT-V20P20N10-14
FORMULA_NAME BridgeAndVehicles-PT-V20P20N10-15

=== Now, execution of the tool begins

BK_START 1589306152542

info: Time: 3600 - MCC
vrfy: Checking LTLCardinality @ BridgeAndVehicles-PT-V20P20N10 @ 3570 seconds

FORMULA BridgeAndVehicles-PT-V20P20N10-14 TRUE TECHNIQUES COLLATERAL_PROCESSING EXPLICIT TOPOLOGICAL STATE_COMPRESSION STUBBORN_SETS USE_NUPN UNFOLDING_TO_PT

FORMULA BridgeAndVehicles-PT-V20P20N10-02 TRUE TECHNIQUES COLLATERAL_PROCESSING EXPLICIT TOPOLOGICAL STATE_COMPRESSION STUBBORN_SETS USE_NUPN UNFOLDING_TO_PT

FORMULA BridgeAndVehicles-PT-V20P20N10-03 TRUE TECHNIQUES COLLATERAL_PROCESSING EXPLICIT TOPOLOGICAL STATE_COMPRESSION STUBBORN_SETS USE_NUPN UNFOLDING_TO_PT

FORMULA BridgeAndVehicles-PT-V20P20N10-04 TRUE TECHNIQUES COLLATERAL_PROCESSING EXPLICIT TOPOLOGICAL STATE_COMPRESSION STUBBORN_SETS USE_NUPN UNFOLDING_TO_PT

FORMULA BridgeAndVehicles-PT-V20P20N10-06 FALSE TECHNIQUES COLLATERAL_PROCESSING EXPLICIT TOPOLOGICAL STATE_COMPRESSION STUBBORN_SETS USE_NUPN UNFOLDING_TO_PT

FORMULA BridgeAndVehicles-PT-V20P20N10-07 FALSE TECHNIQUES COLLATERAL_PROCESSING EXPLICIT TOPOLOGICAL STATE_COMPRESSION STUBBORN_SETS USE_NUPN UNFOLDING_TO_PT

FORMULA BridgeAndVehicles-PT-V20P20N10-08 TRUE TECHNIQUES COLLATERAL_PROCESSING EXPLICIT TOPOLOGICAL STATE_COMPRESSION STUBBORN_SETS USE_NUPN UNFOLDING_TO_PT

FORMULA BridgeAndVehicles-PT-V20P20N10-09 FALSE TECHNIQUES COLLATERAL_PROCESSING EXPLICIT TOPOLOGICAL STATE_COMPRESSION STUBBORN_SETS USE_NUPN UNFOLDING_TO_PT

FORMULA BridgeAndVehicles-PT-V20P20N10-10 FALSE TECHNIQUES COLLATERAL_PROCESSING EXPLICIT TOPOLOGICAL STATE_COMPRESSION STUBBORN_SETS USE_NUPN UNFOLDING_TO_PT

FORMULA BridgeAndVehicles-PT-V20P20N10-11 TRUE TECHNIQUES COLLATERAL_PROCESSING EXPLICIT TOPOLOGICAL STATE_COMPRESSION STUBBORN_SETS USE_NUPN UNFOLDING_TO_PT

FORMULA BridgeAndVehicles-PT-V20P20N10-13 FALSE TECHNIQUES COLLATERAL_PROCESSING EXPLICIT TOPOLOGICAL STATE_COMPRESSION STUBBORN_SETS USE_NUPN UNFOLDING_TO_PT

FORMULA BridgeAndVehicles-PT-V20P20N10-01 TRUE TECHNIQUES COLLATERAL_PROCESSING EXPLICIT TOPOLOGICAL STATE_COMPRESSION STUBBORN_SETS USE_NUPN UNFOLDING_TO_PT

FORMULA BridgeAndVehicles-PT-V20P20N10-00 TRUE TECHNIQUES COLLATERAL_PROCESSING EXPLICIT TOPOLOGICAL STATE_COMPRESSION STUBBORN_SETS USE_NUPN UNFOLDING_TO_PT

FORMULA BridgeAndVehicles-PT-V20P20N10-12 FALSE TECHNIQUES COLLATERAL_PROCESSING EXPLICIT TOPOLOGICAL STATE_COMPRESSION STUBBORN_SETS USE_NUPN UNFOLDING_TO_PT

FORMULA BridgeAndVehicles-PT-V20P20N10-05 FALSE TECHNIQUES COLLATERAL_PROCESSING EXPLICIT TOPOLOGICAL STATE_COMPRESSION STUBBORN_SETS USE_NUPN UNFOLDING_TO_PT

FORMULA BridgeAndVehicles-PT-V20P20N10-15 TRUE TECHNIQUES COLLATERAL_PROCESSING EXPLICIT TOPOLOGICAL STATE_COMPRESSION STUBBORN_SETS USE_NUPN UNFOLDING_TO_PT
vrfy: finished
info: timeLeft: 3293
rslt: Output for LTLCardinality @ BridgeAndVehicles-PT-V20P20N10

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lola: LoLA will run for 3570 seconds at most (--timelimit)
lola: NET
lola: input: PNML file (--pnml)
lola: reading net from model.pnml
lola: reading pnml
lola: PNML file contains place/transition net
lola: finished parsing
lola: closed net file model.pnml
lola: 616/268435456 symbol table entries, 0 collisions
lola: preprocessing...
lola: Size of bit vector: 2176
lola: finding significant places
lola: 68 places, 548 transitions, 61 significant places
lola: compute conflict clusters
lola: computed conflict clusters
lola: Computing conflicting sets
lola: Computing back conflicting sets
lola: TASK
lola: Reading formula in XML format (--xmlformula)
lola: reading pnml
lola: reading formula from LTLCardinality.xml
lola: LP says that atomic proposition is always false: (2 <= CHOIX_1 + CHOIX_2)
lola: place invariant simplifies atomic proposition
lola: before: (NB_ATTENTE_A_10 + NB_ATTENTE_A_11 + NB_ATTENTE_A_12 + NB_ATTENTE_A_13 + NB_ATTENTE_A_14 + NB_ATTENTE_A_15 + NB_ATTENTE_A_16 + NB_ATTENTE_A_17 + NB_ATTENTE_A_18 + NB_ATTENTE_A_19 + NB_ATTENTE_A_20 + NB_ATTENTE_A_0 + NB_ATTENTE_A_1 + NB_ATTENTE_A_2 + NB_ATTENTE_A_3 + NB_ATTENTE_A_4 + NB_ATTENTE_A_5 + NB_ATTENTE_A_6 + NB_ATTENTE_A_7 + NB_ATTENTE_A_8 + NB_ATTENTE_A_9 <= CAPACITE)
lola: after: (1 <= CAPACITE)
lola: place invariant simplifies atomic proposition
lola: before: (0 <= NB_ATTENTE_A_10 + NB_ATTENTE_A_11 + NB_ATTENTE_A_12 + NB_ATTENTE_A_13 + NB_ATTENTE_A_14 + NB_ATTENTE_A_15 + NB_ATTENTE_A_16 + NB_ATTENTE_A_17 + NB_ATTENTE_A_18 + NB_ATTENTE_A_19 + NB_ATTENTE_A_20 + NB_ATTENTE_A_0 + NB_ATTENTE_A_1 + NB_ATTENTE_A_2 + NB_ATTENTE_A_3 + NB_ATTENTE_A_4 + NB_ATTENTE_A_5 + NB_ATTENTE_A_6 + NB_ATTENTE_A_7 + NB_ATTENTE_A_8 + NB_ATTENTE_A_9)
lola: after: (0 <= 1)
lola: place invariant simplifies atomic proposition
lola: before: (1 <= NB_ATTENTE_A_10 + NB_ATTENTE_A_11 + NB_ATTENTE_A_12 + NB_ATTENTE_A_13 + NB_ATTENTE_A_14 + NB_ATTENTE_A_15 + NB_ATTENTE_A_16 + NB_ATTENTE_A_17 + NB_ATTENTE_A_18 + NB_ATTENTE_A_19 + NB_ATTENTE_A_20 + NB_ATTENTE_A_0 + NB_ATTENTE_A_1 + NB_ATTENTE_A_2 + NB_ATTENTE_A_3 + NB_ATTENTE_A_4 + NB_ATTENTE_A_5 + NB_ATTENTE_A_6 + NB_ATTENTE_A_7 + NB_ATTENTE_A_8 + NB_ATTENTE_A_9)
lola: after: (0 <= 0)
lola: place invariant simplifies atomic proposition
lola: before: (COMPTEUR_0 + COMPTEUR_1 + COMPTEUR_2 + COMPTEUR_3 + COMPTEUR_4 + COMPTEUR_5 + COMPTEUR_6 + COMPTEUR_7 + COMPTEUR_8 + COMPTEUR_9 + COMPTEUR_10 <= ROUTE_A)
lola: after: (1 <= ROUTE_A)
lola: place invariant simplifies atomic proposition
lola: before: (COMPTEUR_0 + COMPTEUR_1 + COMPTEUR_2 + COMPTEUR_3 + COMPTEUR_4 + COMPTEUR_5 + COMPTEUR_6 + COMPTEUR_7 + COMPTEUR_8 + COMPTEUR_9 + COMPTEUR_10 <= ROUTE_A)
lola: after: (1 <= ROUTE_A)
lola: place invariant simplifies atomic proposition
lola: before: (2 <= NB_ATTENTE_A_10 + NB_ATTENTE_A_11 + NB_ATTENTE_A_12 + NB_ATTENTE_A_13 + NB_ATTENTE_A_14 + NB_ATTENTE_A_15 + NB_ATTENTE_A_16 + NB_ATTENTE_A_17 + NB_ATTENTE_A_18 + NB_ATTENTE_A_19 + NB_ATTENTE_A_20 + NB_ATTENTE_A_0 + NB_ATTENTE_A_1 + NB_ATTENTE_A_2 + NB_ATTENTE_A_3 + NB_ATTENTE_A_4 + NB_ATTENTE_A_5 + NB_ATTENTE_A_6 + NB_ATTENTE_A_7 + NB_ATTENTE_A_8 + NB_ATTENTE_A_9)
lola: after: (1 <= 0)
lola: place invariant simplifies atomic proposition
lola: before: (SUR_PONT_B <= NB_ATTENTE_B_19 + NB_ATTENTE_B_18 + NB_ATTENTE_B_17 + NB_ATTENTE_B_0 + NB_ATTENTE_B_1 + NB_ATTENTE_B_2 + NB_ATTENTE_B_3 + NB_ATTENTE_B_4 + NB_ATTENTE_B_5 + NB_ATTENTE_B_6 + NB_ATTENTE_B_7 + NB_ATTENTE_B_8 + NB_ATTENTE_B_9 + NB_ATTENTE_B_16 + NB_ATTENTE_B_10 + NB_ATTENTE_B_11 + NB_ATTENTE_B_12 + NB_ATTENTE_B_13 + NB_ATTENTE_B_14 + NB_ATTENTE_B_15 + NB_ATTENTE_B_20)
lola: after: (SUR_PONT_B <= 1)
lola: A (G (X (G (F ((VIDANGE_1 + VIDANGE_2 <= ROUTE_B)))))) : A (NOT(X (((ROUTE_A <= 1) OR G (((2 <= ROUTE_A) AND (SORTI_A <= SUR_PONT_B))))))) : A (G (X ((((SORTI_A <= SUR_PONT_B) U G ((2 <= ROUTE_B))) OR F (X (((SUR_PONT_B + 1 <= SORTI_A) U F ((SUR_PONT_A <= ATTENTE_B))))))))) : A (X (X (((2 <= CHOIX_1 + CHOIX_2) U (1 <= CAPACITE))))) : A (G ((((1 <= ROUTE_B) U (0 <= 1)) U F (X (((VIDANGE_1 + VIDANGE_2 <= ATTENTE_B) AND X (G ((0 <= 0))))))))) : A (NOT(G (F (((CHOIX_1 + CHOIX_2 <= VIDANGE_1 + VIDANGE_2) OR (CAPACITE <= SORTI_A)))))) : A (X (((ATTENTE_B + 1 <= CAPACITE) U (G ((CAPACITE <= ATTENTE_B)) AND (G ((1 <= ROUTE_A)) OR X (((1 <= ROUTE_A)))))))) : A (X (NOT(((0 <= CHOIX_1 + CHOIX_2) AND F (X ((SUR_PONT_B <= 1))))))) : A (X ((((NB_ATTENTE_B_18 <= CAPACITE) OR G ((1 <= SORTI_B))) AND (G ((1 <= ROUTE_B)) U X ((((ROUTE_B <= SUR_PONT_B) OR (NB_ATTENTE_B_18 <= CAPACITE)) U (1 <= SORTI_B))))))) : A (F (NOT(G (((((CONTROLEUR_2 <= VIDANGE_2) AND F (X (X ((1 <= VIDANGE_1))))) U X (X ((NB_ATTENTE_B_18 <= ATTENTE_A)))) U (CONTROLEUR_2 <= VIDANGE_2)))))) : A (G (X (G (((ROUTE_B + 1 <= ROUTE_A) U (ATTENTE_B <= CONTROLEUR_1)))))) : A (X ((F ((CHOIX_2 <= SUR_PONT_A)) OR (X ((CHOIX_2 <= SUR_PONT_A)) U NOT(X (F (NOT(G ((SUR_PONT_A <= CHOIX_1)))))))))) : A (G ((((SUR_PONT_B <= ROUTE_B) OR (CHOIX_2 <= ATTENTE_A)) OR ((COMPTEUR_6 <= ATTENTE_A) AND ((CHOIX_2 <= ATTENTE_A) U (2 <= ATTENTE_A)))))) : A (X (G (X (NOT(((X ((0 <= SUR_PONT_A)) U F (((0 <= SUR_PONT_A) OR X ((COMPTEUR_6 <= NB_ATTENTE_B_15))))) U (CAPACITE <= ATTENTE_A))))))) : A ((F (G ((0 <= CHOIX_1))) AND F ((0 <= CHOIX_1)))) : A (((COMPTEUR_8 <= CHOIX_2) AND ((ATTENTE_A <= CHOIX_1) OR F ((ATTENTE_A <= CHOIX_1)))))
lola: rewrite Frontend/Parser/formula_rewrite.k:377
lola: rewrite Frontend/Parser/formula_rewrite.k:350
lola: rewrite Frontend/Parser/formula_rewrite.k:335
lola: rewrite Frontend/Parser/formula_rewrite.k:318
lola: rewrite Frontend/Parser/formula_rewrite.k:297
lola: rewrite Frontend/Parser/formula_rewrite.k:329
lola: rewrite Frontend/Parser/formula_rewrite.k:297
lola: rewrite Frontend/Parser/formula_rewrite.k:551
lola: rewrite Frontend/Parser/formula_rewrite.k:422
lola: rewrite Frontend/Parser/formula_rewrite.k:356
lola: rewrite Frontend/Parser/formula_rewrite.k:347
lola: rewrite Frontend/Parser/formula_rewrite.k:353
lola: rewrite Frontend/Parser/formula_rewrite.k:98
lola: rewrite Frontend/Parser/formula_rewrite.k:185
lola: rewrite Frontend/Parser/formula_rewrite.k:100
lola: rewrite Frontend/Parser/formula_rewrite.k:166
lola: rewrite Frontend/Parser/formula_rewrite.k:100
lola: rewrite Frontend/Parser/formula_rewrite.k:160
lola: rewrite Frontend/Parser/formula_rewrite.k:356
lola: rewrite Frontend/Parser/formula_rewrite.k:169
lola: rewrite Frontend/Parser/formula_rewrite.k:356
lola: rewrite Frontend/Parser/formula_rewrite.k:347
lola: rewrite Frontend/Parser/formula_rewrite.k:353
lola: rewrite Frontend/Parser/formula_rewrite.k:377
lola: rewrite Frontend/Parser/formula_rewrite.k:329
lola: rewrite Frontend/Parser/formula_rewrite.k:332
lola: rewrite Frontend/Parser/formula_rewrite.k:297
lola: rewrite Frontend/Parser/formula_rewrite.k:100
lola: rewrite Frontend/Parser/formula_rewrite.k:356
lola: rewrite Frontend/Parser/formula_rewrite.k:116
lola: rewrite Frontend/Parser/formula_rewrite.k:335
lola: rewrite Frontend/Parser/formula_rewrite.k:332
lola: rewrite Frontend/Parser/formula_rewrite.k:297
lola: rewrite Frontend/Parser/formula_rewrite.k:431
lola: rewrite Frontend/Parser/formula_rewrite.k:356
lola: rewrite Frontend/Parser/formula_rewrite.k:434
lola: rewrite Frontend/Parser/formula_rewrite.k:551
lola: rewrite Frontend/Parser/formula_rewrite.k:356
lola: rewrite Frontend/Parser/formula_rewrite.k:356
lola: rewrite Frontend/Parser/formula_rewrite.k:437
lola: rewrite Frontend/Parser/formula_rewrite.k:522
lola: rewrite Frontend/Parser/formula_rewrite.k:329
lola: rewrite Frontend/Parser/formula_rewrite.k:315
lola: rewrite Frontend/Parser/formula_rewrite.k:332
lola: rewrite Frontend/Parser/formula_rewrite.k:297
lola: rewrite Frontend/Parser/formula_rewrite.k:318
lola: rewrite Frontend/Parser/formula_rewrite.k:338
lola: rewrite Frontend/Parser/formula_rewrite.k:315
lola: rewrite Frontend/Parser/formula_rewrite.k:297
lola: rewrite Frontend/Parser/formula_rewrite.k:335
lola: rewrite Frontend/Parser/formula_rewrite.k:335
lola: rewrite Frontend/Parser/formula_rewrite.k:332
lola: rewrite Frontend/Parser/formula_rewrite.k:297
lola: rewrite Frontend/Parser/formula_rewrite.k:335
lola: rewrite Frontend/Parser/formula_rewrite.k:335
lola: rewrite Frontend/Parser/formula_rewrite.k:297
lola: rewrite Frontend/Parser/formula_rewrite.k:297
lola: rewrite Frontend/Parser/formula_rewrite.k:347
lola: rewrite Frontend/Parser/formula_rewrite.k:437
lola: rewrite Frontend/Parser/formula_rewrite.k:522
lola: rewrite Frontend/Parser/formula_rewrite.k:353
lola: rewrite Frontend/Parser/formula_rewrite.k:350
lola: rewrite Frontend/Parser/formula_rewrite.k:329
lola: rewrite Frontend/Parser/formula_rewrite.k:297
lola: rewrite Frontend/Parser/formula_rewrite.k:347
lola: rewrite Frontend/Parser/formula_rewrite.k:335
lola: rewrite Frontend/Parser/formula_rewrite.k:332
lola: rewrite Frontend/Parser/formula_rewrite.k:300
lola: rewrite Frontend/Parser/formula_rewrite.k:410
lola: rewrite Frontend/Parser/formula_rewrite.k:100
lola: rewrite Frontend/Parser/formula_rewrite.k:100
lola: rewrite Frontend/Parser/formula_rewrite.k:124
lola: rewrite Frontend/Parser/formula_rewrite.k:154
lola: rewrite Frontend/Parser/formula_rewrite.k:166
lola: rewrite Frontend/Parser/formula_rewrite.k:169
lola: rewrite Frontend/Parser/formula_rewrite.k:332
lola: rewrite Frontend/Parser/formula_rewrite.k:297
lola: rewrite Frontend/Parser/formula_rewrite.k:353
lola: rewrite Frontend/Parser/formula_rewrite.k:350
lola: rewrite Frontend/Parser/formula_rewrite.k:100
lola: rewrite Frontend/Parser/formula_rewrite.k:160
lola: rewrite Frontend/Parser/formula_rewrite.k:154
lola: rewrite Frontend/Parser/formula_rewrite.k:100
lola: rewrite Frontend/Parser/formula_rewrite.k:154
lola: rewrite Frontend/Parser/formula_rewrite.k:116
lola: rewrite Frontend/Parser/formula_rewrite.k:151
lola: rewrite Frontend/Parser/formula_rewrite.k:536
lola: rewrite Frontend/Parser/formula_rewrite.k:151
lola: computing a collection of formulas
lola: RUNNING
lola: subprocess 0 will run for 219 seconds at most (--localtimelimit=0)
lola: ========================================
lola: ...considering subproblem: TRUE
lola: ========================================
lola: SUBTASK
lola: checking initial satisfaction
lola: processed formula: TRUE
lola: processed formula length: 4
lola: 88 rewrites
lola: closed formula file LTLCardinality.xml
lola: processed formula with 0 atomic propositions
lola: RUNNING
lola: SUBRESULT
lola: result: yes
lola: produced by: preprocessing
lola: The net satisfies the property already in its initial state.
lola: 0 markings, 0 edges
lola: subprocess 1 will run for 233 seconds at most (--localtimelimit=0)
lola: ========================================
lola: ...considering subproblem: A (X (G ((((SORTI_A <= SUR_PONT_B) U G ((2 <= ROUTE_B))) OR X (F ((SUR_PONT_A <= ATTENTE_B)))))))
lola: ========================================
lola: SUBTASK
lola: checking LTL
lola: transforming LTL-Formula into a Büchi-Automaton
lola: processed formula: A (X (G ((((SORTI_A <= SUR_PONT_B) U G ((2 <= ROUTE_B))) OR X (F ((SUR_PONT_A <= ATTENTE_B)))))))
lola: processed formula length: 97
lola: 88 rewrites
lola: closed formula file LTLCardinality.xml
lola: the resulting Büchi automaton has 6 states
lola: STORE
lola: using a simple compression encoder (--encoder=simplecompressed)
lola: using a prefix tree store (--store=prefix)
lola: Formula contains X operator; stubborn sets not applicable
lola: Formula contains X operator; stubborn sets not applicable
lola: SEARCH
lola: RUNNING
lola: ========================================
lola: 1167214 markings, 4497464 edges, 233443 markings/sec, 0 secs
lola: 2181889 markings, 8931103 edges, 202935 markings/sec, 5 secs
lola: 3133392 markings, 13276759 edges, 190301 markings/sec, 10 secs
lola: 4122565 markings, 17890303 edges, 197835 markings/sec, 15 secs
lola: 5154438 markings, 22683466 edges, 206375 markings/sec, 20 secs
lola: 6166342 markings, 27457793 edges, 202381 markings/sec, 25 secs
lola: 7282622 markings, 31840507 edges, 223256 markings/sec, 30 secs
lola: 8398934 markings, 36092741 edges, 223262 markings/sec, 35 secs
lola: 9520285 markings, 40402047 edges, 224270 markings/sec, 40 secs
lola: 10636627 markings, 44701068 edges, 223268 markings/sec, 45 secs
lola: 11758062 markings, 49122397 edges, 224287 markings/sec, 50 secs
lola: 12895476 markings, 53418271 edges, 227483 markings/sec, 55 secs
lola: 14045409 markings, 57769479 edges, 229987 markings/sec, 60 secs
lola: 15186602 markings, 62246785 edges, 228239 markings/sec, 65 secs
lola: 16333227 markings, 66532062 edges, 229325 markings/sec, 70 secs
lola: 17481186 markings, 70884369 edges, 229592 markings/sec, 75 secs
lola: 18643255 markings, 75388464 edges, 232414 markings/sec, 80 secs
lola: 19810074 markings, 79758643 edges, 233364 markings/sec, 85 secs
lola: 20984427 markings, 84321479 edges, 234871 markings/sec, 90 secs
lola: SUBRESULT
lola: result: yes
lola: produced by: LTL model checker
lola: The net satisfies the given formula (language of the product automaton is empty).
lola: 21582323 markings, 86502043 edges
lola: ========================================
lola: subprocess 2 will run for 243 seconds at most (--localtimelimit=0)
lola: ========================================
lola: ...considering subproblem: A (X (X ((1 <= CAPACITE))))
lola: ========================================
lola: SUBTASK
lola: checking LTL
lola: transforming LTL-Formula into a Büchi-Automaton
lola: processed formula: A (X (X ((1 <= CAPACITE))))
lola: processed formula length: 27
lola: 88 rewrites
lola: closed formula file LTLCardinality.xml
lola: the resulting Büchi automaton has 4 states
lola: STORE
lola: using a simple compression encoder (--encoder=simplecompressed)
lola: using a prefix tree store (--store=prefix)
lola: Formula contains X operator; stubborn sets not applicable
lola: Formula contains X operator; stubborn sets not applicable
lola: SEARCH
lola: RUNNING
lola: SUBRESULT
lola: result: yes
lola: produced by: LTL model checker
lola: The net satisfies the given formula (language of the product automaton is empty).
lola: 9 markings, 11 edges
lola: ========================================
lola: subprocess 3 will run for 262 seconds at most (--localtimelimit=0)
lola: ========================================
lola: ...considering subproblem: A (G (F (((VIDANGE_1 + VIDANGE_2 <= ATTENTE_B) AND X (TRUE)))))
lola: ========================================
lola: SUBTASK
lola: checking LTL
lola: transforming LTL-Formula into a Büchi-Automaton
lola: processed formula: A (G (F (((VIDANGE_1 + VIDANGE_2 <= ATTENTE_B) AND X (TRUE)))))
lola: processed formula length: 63
lola: 88 rewrites
lola: closed formula file LTLCardinality.xml
lola: the resulting Büchi automaton has 3 states
lola: STORE
lola: using a simple compression encoder (--encoder=simplecompressed)
lola: using a prefix tree store (--store=prefix)
lola: Formula contains X operator; stubborn sets not applicable
lola: Formula contains X operator; stubborn sets not applicable
lola: SEARCH
lola: RUNNING
lola: 1212204 markings, 4030751 edges, 242441 markings/sec, 0 secs
lola: 2379566 markings, 8067425 edges, 233472 markings/sec, 5 secs
lola: 3538012 markings, 12111338 edges, 231689 markings/sec, 10 secs
lola: 4702119 markings, 16154887 edges, 232821 markings/sec, 15 secs
lola: 5850723 markings, 20182017 edges, 229721 markings/sec, 20 secs
lola: 6987057 markings, 24183320 edges, 227267 markings/sec, 25 secs
lola: 8145740 markings, 28278246 edges, 231737 markings/sec, 30 secs
lola: 9309214 markings, 32402175 edges, 232695 markings/sec, 35 secs
lola: 10487013 markings, 36582466 edges, 235560 markings/sec, 40 secs
lola: 11667045 markings, 40783406 edges, 236006 markings/sec, 45 secs
lola: 12872334 markings, 45082632 edges, 241058 markings/sec, 50 secs
lola: SUBRESULT
lola: result: yes
lola: produced by: LTL model checker
lola: The net satisfies the given formula (language of the product automaton is empty).
lola: 13572910 markings, 47580061 edges
lola: ========================================
lola: subprocess 4 will run for 279 seconds at most (--localtimelimit=0)
lola: ========================================
lola: ...considering subproblem: A (X (((ATTENTE_B + 1 <= CAPACITE) U (G ((CAPACITE <= ATTENTE_B)) AND (G ((1 <= ROUTE_A)) OR X (((1 <= ROUTE_A))))))))
lola: ========================================
lola: SUBTASK
lola: checking LTL
lola: transforming LTL-Formula into a Büchi-Automaton
lola: processed formula: A (X (((ATTENTE_B + 1 <= CAPACITE) U (G ((CAPACITE <= ATTENTE_B)) AND (G ((1 <= ROUTE_A)) OR X (((1 <= ROUTE_A))))))))
lola: processed formula length: 118
lola: 88 rewrites
lola: closed formula file LTLCardinality.xml
lola: the resulting Büchi automaton has 19 states
lola: STORE
lola: using a simple compression encoder (--encoder=simplecompressed)
lola: using a prefix tree store (--store=prefix)
lola: Formula contains X operator; stubborn sets not applicable
lola: Formula contains X operator; stubborn sets not applicable
lola: SEARCH
lola: RUNNING
lola: SUBRESULT
lola: result: no
lola: produced by: LTL model checker
lola: The net does not satisfy the given formula (language of the product automaton is nonempty).
lola: 170 markings, 170 edges
lola: ========================================
lola: subprocess 5 will run for 304 seconds at most (--localtimelimit=0)
lola: ========================================
lola: ...considering subproblem: A (X (X (G ((2 <= SUR_PONT_B)))))
lola: ========================================
lola: SUBTASK
lola: checking LTL
lola: transforming LTL-Formula into a Büchi-Automaton
lola: processed formula: A (X (X (G ((2 <= SUR_PONT_B)))))
lola: processed formula length: 33
lola: 88 rewrites
lola: closed formula file LTLCardinality.xml
lola: the resulting Büchi automaton has 4 states
lola: STORE
lola: using a simple compression encoder (--encoder=simplecompressed)
lola: using a prefix tree store (--store=prefix)
lola: Formula contains X operator; stubborn sets not applicable
lola: Formula contains X operator; stubborn sets not applicable
lola: SEARCH
lola: RUNNING
lola: SUBRESULT
lola: result: no
lola: produced by: LTL model checker
lola: The net does not satisfy the given formula (language of the product automaton is nonempty).
lola: 170 markings, 170 edges
lola: ========================================
lola: subprocess 6 will run for 335 seconds at most (--localtimelimit=0)
lola: ========================================
lola: ...considering subproblem: (A (X (((NB_ATTENTE_B_18 <= CAPACITE) OR G ((1 <= SORTI_B))))) AND A (X ((X ((((ROUTE_B <= SUR_PONT_B) OR (NB_ATTENTE_B_18 <= CAPACITE)) U (1 <= SORTI_B))) OR (G ((1 <= ROUTE_B)) AND X (F ((1 <= SORTI_B))))))))
lola: ========================================
lola: SUBTASK
lola: checking a Boolean combination of formulas
lola: RUNNING
lola: subprocess 6 will run for 335 seconds at most (--localtimelimit=0)
lola: ========================================
lola: ...considering subproblem: A (X (((NB_ATTENTE_B_18 <= CAPACITE) OR G ((1 <= SORTI_B)))))
lola: ========================================
lola: SUBTASK
lola: checking LTL
lola: transforming LTL-Formula into a Büchi-Automaton
lola: processed formula: A (X (((NB_ATTENTE_B_18 <= CAPACITE) OR G ((1 <= SORTI_B)))))
lola: processed formula length: 61
lola: 88 rewrites
lola: closed formula file LTLCardinality.xml
lola: the resulting Büchi automaton has 4 states
lola: STORE
lola: using a simple compression encoder (--encoder=simplecompressed)
lola: using a prefix tree store (--store=prefix)
lola: Formula contains X operator; stubborn sets not applicable
lola: Formula contains X operator; stubborn sets not applicable
lola: SEARCH
lola: RUNNING
lola: SUBRESULT
lola: result: yes
lola: produced by: LTL model checker
lola: The net satisfies the given formula (language of the product automaton is empty).
lola: 4 markings, 3 edges
lola: ========================================
lola: subprocess 7 will run for 372 seconds at most (--localtimelimit=0)
lola: ========================================
lola: ...considering subproblem: A (X ((X ((((ROUTE_B <= SUR_PONT_B) OR (NB_ATTENTE_B_18 <= CAPACITE)) U (1 <= SORTI_B))) OR (G ((1 <= ROUTE_B)) AND X (F ((1 <= SORTI_B)))))))
lola: ========================================
lola: SUBTASK
lola: checking LTL
lola: transforming LTL-Formula into a Büchi-Automaton
lola: processed formula: A (X ((X ((((ROUTE_B <= SUR_PONT_B) OR (NB_ATTENTE_B_18 <= CAPACITE)) U (1 <= SORTI_B))) OR (G ((1 <= ROUTE_B)) AND X (F ((1 <= SORTI_B)))))))
lola: processed formula length: 143
lola: 88 rewrites
lola: closed formula file LTLCardinality.xml
lola: the resulting Büchi automaton has 9 states
lola: STORE
lola: using a simple compression encoder (--encoder=simplecompressed)
lola: using a prefix tree store (--store=prefix)
lola: Formula contains X operator; stubborn sets not applicable
lola: Formula contains X operator; stubborn sets not applicable
lola: SEARCH
lola: RUNNING
lola: SUBRESULT
lola: result: yes
lola: produced by: LTL model checker
lola: The net satisfies the given formula (language of the product automaton is empty).
lola: 590172 markings, 1319713 edges
lola: ========================================
lola: SUBRESULT
lola: result: yes
lola: The Boolean predicate is true.
lola: ========================================
lola: subprocess 7 will run for 372 seconds at most (--localtimelimit=0)
lola: ========================================
lola: ...considering subproblem: A (F ((G ((VIDANGE_2 + 1 <= CONTROLEUR_2)) OR ((((VIDANGE_2 + 1 <= CONTROLEUR_2) OR X (X (G ((VIDANGE_1 <= 0))))) R X (X ((ATTENTE_A + 1 <= NB_ATTENTE_B_18)))) AND (VIDANGE_2 + 1 <= CONTROLEUR_2)))))
lola: ========================================
lola: SUBTASK
lola: checking LTL
lola: transforming LTL-Formula into a Büchi-Automaton
lola: processed formula: A (F ((G ((VIDANGE_2 + 1 <= CONTROLEUR_2)) OR ((((VIDANGE_2 + 1 <= CONTROLEUR_2) OR X (X (G ((VIDANGE_1 <= 0))))) R X (X ((ATTENTE_A + 1 <= NB_ATTENTE_B_18)))) AND (VIDANGE_2 + 1 <= CONTROLEUR_2)))))
lola: processed formula length: 199
lola: 88 rewrites
lola: closed formula file LTLCardinality.xml
lola: the resulting Büchi automaton has 25 states
lola: STORE
lola: using a simple compression encoder (--encoder=simplecompressed)
lola: using a prefix tree store (--store=prefix)
lola: Formula contains X operator; stubborn sets not applicable
lola: Formula contains X operator; stubborn sets not applicable
lola: SEARCH
lola: RUNNING
lola: SUBRESULT
lola: result: no
lola: produced by: LTL model checker
lola: The net does not satisfy the given formula (language of the product automaton is nonempty).
lola: 170 markings, 170 edges
lola: ========================================
lola: subprocess 8 will run for 418 seconds at most (--localtimelimit=0)
lola: ========================================
lola: ...considering subproblem: A (X (G ((F ((ATTENTE_B <= CONTROLEUR_1)) AND ((ROUTE_B + 1 <= ROUTE_A) OR (ATTENTE_B <= CONTROLEUR_1))))))
lola: ========================================
lola: SUBTASK
lola: checking LTL
lola: transforming LTL-Formula into a Büchi-Automaton
lola: processed formula: A (X (G ((F ((ATTENTE_B <= CONTROLEUR_1)) AND ((ROUTE_B + 1 <= ROUTE_A) OR (ATTENTE_B <= CONTROLEUR_1))))))
lola: processed formula length: 107
lola: 88 rewrites
lola: closed formula file LTLCardinality.xml
lola: the resulting Büchi automaton has 4 states
lola: STORE
lola: using a simple compression encoder (--encoder=simplecompressed)
lola: using a prefix tree store (--store=prefix)
lola: Formula contains X operator; stubborn sets not applicable
lola: Formula contains X operator; stubborn sets not applicable
lola: SEARCH
lola: RUNNING
lola: SUBRESULT
lola: result: no
lola: produced by: LTL model checker
lola: The net does not satisfy the given formula (language of the product automaton is nonempty).
lola: 614102 markings, 2093675 edges
lola: ========================================
lola: subprocess 9 will run for 477 seconds at most (--localtimelimit=0)
lola: ========================================
lola: ...considering subproblem: A (X ((F ((CHOIX_2 <= SUR_PONT_A)) OR X (((CHOIX_2 <= SUR_PONT_A) U G ((SUR_PONT_A <= CHOIX_1)))))))
lola: ========================================
lola: SUBTASK
lola: checking LTL
lola: transforming LTL-Formula into a Büchi-Automaton
lola: processed formula: A (X ((F ((CHOIX_2 <= SUR_PONT_A)) OR X (((CHOIX_2 <= SUR_PONT_A) U G ((SUR_PONT_A <= CHOIX_1)))))))
lola: processed formula length: 100
lola: 88 rewrites
lola: closed formula file LTLCardinality.xml
lola: the resulting Büchi automaton has 6 states
lola: STORE
lola: using a simple compression encoder (--encoder=simplecompressed)
lola: using a prefix tree store (--store=prefix)
lola: Formula contains X operator; stubborn sets not applicable
lola: Formula contains X operator; stubborn sets not applicable
lola: SEARCH
lola: RUNNING
lola: SUBRESULT
lola: result: yes
lola: produced by: LTL model checker
lola: The net satisfies the given formula (language of the product automaton is empty).
lola: 4 markings, 3 edges
lola: ========================================
lola: subprocess 10 will run for 557 seconds at most (--localtimelimit=0)
lola: ========================================
lola: ...considering subproblem: A (X (X (G ((ATTENTE_A + 1 <= CAPACITE)))))
lola: ========================================
lola: SUBTASK
lola: checking LTL
lola: transforming LTL-Formula into a Büchi-Automaton
lola: processed formula: A (X (X (G ((ATTENTE_A + 1 <= CAPACITE)))))
lola: processed formula length: 43
lola: 88 rewrites
lola: closed formula file LTLCardinality.xml
lola: the resulting Büchi automaton has 4 states
lola: STORE
lola: using a simple compression encoder (--encoder=simplecompressed)
lola: using a prefix tree store (--store=prefix)
lola: Formula contains X operator; stubborn sets not applicable
lola: Formula contains X operator; stubborn sets not applicable
lola: SEARCH
lola: RUNNING
lola: SUBRESULT
lola: result: no
lola: produced by: LTL model checker
lola: The net does not satisfy the given formula (language of the product automaton is nonempty).
lola: 546 markings, 833 edges
lola: ========================================
lola: subprocess 11 will run for 669 seconds at most (--localtimelimit=0)
lola: ========================================
lola: ...considering subproblem: (A (X ((2 <= ROUTE_A))) AND A (X (F (((ROUTE_A <= 1) OR (SUR_PONT_B + 1 <= SORTI_A))))))
lola: ========================================
lola: SUBTASK
lola: checking a Boolean combination of formulas
lola: RUNNING
lola: subprocess 11 will run for 669 seconds at most (--localtimelimit=0)
lola: ========================================
lola: ...considering subproblem: A (X ((2 <= ROUTE_A)))
lola: ========================================
lola: SUBTASK
lola: checking LTL
lola: transforming LTL-Formula into a Büchi-Automaton
lola: processed formula: A (X ((2 <= ROUTE_A)))
lola: processed formula length: 22
lola: 88 rewrites
lola: closed formula file LTLCardinality.xml
lola: the resulting Büchi automaton has 3 states
lola: STORE
lola: using a simple compression encoder (--encoder=simplecompressed)
lola: using a prefix tree store (--store=prefix)
lola: Formula contains X operator; stubborn sets not applicable
lola: Formula contains X operator; stubborn sets not applicable
lola: SEARCH
lola: RUNNING
lola: SUBRESULT
lola: result: yes
lola: produced by: LTL model checker
lola: The net satisfies the given formula (language of the product automaton is empty).
lola: 4 markings, 3 edges
lola: subprocess 12 will run for 836 seconds at most (--localtimelimit=0)
lola: ========================================
lola: ...considering subproblem: A (X (F (((ROUTE_A <= 1) OR (SUR_PONT_B + 1 <= SORTI_A)))))
lola: ========================================
lola: SUBTASK
lola: checking LTL
lola: transforming LTL-Formula into a Büchi-Automaton
lola: processed formula: A (X (F (((ROUTE_A <= 1) OR (SUR_PONT_B + 1 <= SORTI_A)))))
lola: processed formula length: 60
lola: 88 rewrites
lola: closed formula file LTLCardinality.xml
lola: the resulting Büchi automaton has 2 states
lola: STORE
lola: using a simple compression encoder (--encoder=simplecompressed)
lola: using a prefix tree store (--store=prefix)
lola: Formula contains X operator; stubborn sets not applicable
lola: Formula contains X operator; stubborn sets not applicable
lola: SEARCH
lola: RUNNING
lola: ========================================
lola: SUBRESULT
lola: result: yes
lola: produced by: LTL model checker
lola: The net satisfies the given formula (language of the product automaton is empty).
lola: 263106 markings, 570619 edges
lola: SUBRESULT
lola: result: yes
lola: The Boolean predicate is true.
lola: ========================================
lola: ========================================
lola: subprocess 12 will run for 836 seconds at most (--localtimelimit=0)
lola: ========================================
lola: ...considering subproblem: A (G (F ((VIDANGE_1 + VIDANGE_2 <= ROUTE_B))))
lola: ========================================
lola: SUBTASK
lola: checking LTL
lola: transforming LTL-Formula into a Büchi-Automaton
lola: processed formula: A (G (F ((VIDANGE_1 + VIDANGE_2 <= ROUTE_B))))
lola: processed formula length: 46
lola: 88 rewrites
lola: closed formula file LTLCardinality.xml
lola: the resulting Büchi automaton has 2 states
lola: STORE
lola: using a simple compression encoder (--encoder=simplecompressed)
lola: using a prefix tree store (--store=prefix)
lola: using ltl preserving stubborn set method with deletion algorithm (--stubborn=deletion)
lola: using ltl preserving stubborn set method with insertion algorithm(--stubborn=tarjan)
lola: SEARCH
lola: RUNNING
lola: 709029 markings, 2141772 edges, 141806 markings/sec, 0 secs
lola: 1467149 markings, 4629808 edges, 151624 markings/sec, 5 secs
lola: 2252271 markings, 7358082 edges, 157024 markings/sec, 10 secs
lola: 3041609 markings, 10205872 edges, 157868 markings/sec, 15 secs
lola: 3820465 markings, 13087033 edges, 155771 markings/sec, 20 secs
lola: SUBRESULT
lola: result: yes
lola: produced by: LTL model checker
lola: The net satisfies the given formula (language of the product automaton is empty).
lola: 4143399 markings, 14316835 edges
lola: ========================================
lola: subprocess 13 will run for 1106 seconds at most (--localtimelimit=0)
lola: ========================================
lola: ...considering subproblem: A (G ((((SUR_PONT_B <= ROUTE_B) OR (CHOIX_2 <= ATTENTE_A)) OR ((COMPTEUR_6 <= ATTENTE_A) AND ((CHOIX_2 <= ATTENTE_A) U (2 <= ATTENTE_A))))))
lola: ========================================
lola: SUBTASK
lola: checking LTL
lola: transforming LTL-Formula into a Büchi-Automaton
lola: processed formula: A (G ((((SUR_PONT_B <= ROUTE_B) OR (CHOIX_2 <= ATTENTE_A)) OR ((COMPTEUR_6 <= ATTENTE_A) AND ((CHOIX_2 <= ATTENTE_A) U (2 <= ATTENTE_A))))))
lola: processed formula length: 141
lola: 88 rewrites
lola: closed formula file LTLCardinality.xml
lola: the resulting Büchi automaton has 3 states
lola: STORE
lola: using a simple compression encoder (--encoder=simplecompressed)
lola: using a prefix tree store (--store=prefix)
lola: using ltl preserving stubborn set method with deletion algorithm (--stubborn=deletion)
lola: using ltl preserving stubborn set method with insertion algorithm(--stubborn=tarjan)
lola: SEARCH
lola: RUNNING
lola: SUBRESULT
lola: result: no
lola: produced by: LTL model checker
lola: The net does not satisfy the given formula (language of the product automaton is nonempty).
lola: 170 markings, 170 edges
lola: subprocess 14 will run for 1659 seconds at most (--localtimelimit=0)
lola: ========================================
lola: ...considering subproblem: A (F (G (((VIDANGE_1 + VIDANGE_2 + 1 <= CHOIX_1 + CHOIX_2) AND (SORTI_A + 1 <= CAPACITE)))))
lola: ========================================
lola: SUBTASK
lola: checking LTL
lola: transforming LTL-Formula into a Büchi-Automaton
lola: processed formula: A (F (G (((VIDANGE_1 + VIDANGE_2 + 1 <= CHOIX_1 + CHOIX_2) AND (SORTI_A + 1 <= CAPACITE)))))
lola: processed formula length: 92
lola: 88 rewrites
lola: closed formula file LTLCardinality.xml
lola: the resulting Büchi automaton has 2 states
lola: STORE
lola: using a simple compression encoder (--encoder=simplecompressed)
lola: using a prefix tree store (--store=prefix)
lola: using ltl preserving stubborn set method with deletion algorithm (--stubborn=deletion)
lola: using ltl preserving stubborn set method with insertion algorithm(--stubborn=tarjan)
lola: SEARCH
lola: RUNNING
lola: ========================================
lola: SUBRESULT
lola: result: no
lola: produced by: LTL model checker
lola: The net does not satisfy the given formula (language of the product automaton is nonempty).
lola: 171 markings, 172 edges
lola: ========================================
lola: subprocess 15 will run for 3318 seconds at most (--localtimelimit=0)
lola: ========================================
lola: ...considering subproblem: ((COMPTEUR_8 <= CHOIX_2) AND A (((ATTENTE_A <= CHOIX_1) OR F ((ATTENTE_A <= CHOIX_1)))))
lola: ========================================
lola: SUBTASK
lola: checking a Boolean combination of formulas
lola: RUNNING
lola: subprocess 15 will run for 3318 seconds at most (--localtimelimit=0)
lola: ========================================
lola: ...considering subproblem: (COMPTEUR_8 <= CHOIX_2)
lola: ========================================
lola: SUBTASK
lola: checking initial satisfaction
lola: processed formula: (COMPTEUR_8 <= CHOIX_2)
lola: processed formula length: 23
lola: 88 rewrites
lola: closed formula file LTLCardinality.xml
lola: processed formula with 1 atomic propositions
lola: RUNNING
lola: SUBRESULT
lola: result: yes
lola: produced by: preprocessing
lola: The net satisfies the property already in its initial state.
lola: 0 markings, 0 edges
lola: ========================================
lola: Child process aborted or communication problem between parent and child process
lola: SUBRESULT
lola: result: unknown
lola: The Boolean predicate may be true or false.
lola: ========================================
lola: ========================================
lola: ...considering subproblem: ((COMPTEUR_8 <= CHOIX_2) AND A (((ATTENTE_A <= CHOIX_1) OR F ((ATTENTE_A <= CHOIX_1)))))
lola: ========================================
lola: SUBTASK
lola: checking a Boolean combination of formulas
lola: RUNNING
lola: ========================================
lola: ...considering subproblem: (COMPTEUR_8 <= CHOIX_2)
lola: ========================================
lola: SUBTASK
lola: checking initial satisfaction
lola: processed formula: (COMPTEUR_8 <= CHOIX_2)
lola: processed formula length: 23
lola: 88 rewrites
lola: closed formula file LTLCardinality.xml
lola: processed formula with 1 atomic propositions
lola: RUNNING
lola: SUBRESULT
lola: result: yes
lola: produced by: preprocessing
lola: The net satisfies the property already in its initial state.
lola: 0 markings, 0 edges
lola: ========================================
lola: ========================================
lola: ...considering subproblem: A (((ATTENTE_A <= CHOIX_1) OR F ((ATTENTE_A <= CHOIX_1))))
lola: ========================================
lola: SUBTASK
lola: checking LTL
lola: transforming LTL-Formula into a Büchi-Automaton
lola: processed formula: A (((ATTENTE_A <= CHOIX_1) OR F ((ATTENTE_A <= CHOIX_1))))
lola: processed formula length: 58
lola: 88 rewrites
lola: closed formula file LTLCardinality.xml
lola: the resulting Büchi automaton has 2 states
lola: STORE
lola: using a simple compression encoder (--encoder=simplecompressed)
lola: using a prefix tree store (--store=prefix)
lola: using ltl preserving stubborn set method with deletion algorithm (--stubborn=deletion)
lola: using ltl preserving stubborn set method with insertion algorithm(--stubborn=tarjan)
lola: SEARCH
lola: RUNNING
lola: SUBRESULT
lola: result: yes
lola: produced by: LTL model checker
lola: The net satisfies the given formula (language of the product automaton is empty).
lola: 1 markings, 0 edges
lola: ========================================
lola: SUBRESULT
lola: result: yes
lola: The Boolean predicate is true.
lola: RESULT
lola:
SUMMARY: yes yes yes yes yes no no no yes no no yes no no yes yes
lola:
preliminary result: yes yes yes yes yes no no no yes no no yes no no yes yes
lola: ========================================
lola: memory consumption: 32456 KB
lola: time consumption: 253 seconds
lola: print data as JSON (--json)
lola: writing JSON to LTLCardinality.json
lola: closed JSON file LTLCardinality.json
rslt: finished

BK_STOP 1589306429201

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

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="BridgeAndVehicles-PT-V20P20N10"
export BK_EXAMINATION="LTLCardinality"
export BK_TOOL="win2019"
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

# this is for BenchKit: explicit launching of the test
echo "====================================================================="
echo " Generated by BenchKit 2-4028"
echo " Executing tool win2019"
echo " Input is BridgeAndVehicles-PT-V20P20N10, examination is LTLCardinality"
echo " Time confinement is $BK_TIME_CONFINEMENT seconds"
echo " Memory confinement is 16384 MBytes"
echo " Number of cores is 4"
echo " Run identifier is r030-oct2-158897741200083"
echo "====================================================================="
echo
echo "--------------------"
echo "preparation of the directory to be used:"

tar xzf /home/mcc/BenchKit/INPUTS/BridgeAndVehicles-PT-V20P20N10.tgz
mv BridgeAndVehicles-PT-V20P20N10 execution
cd execution
if [ "LTLCardinality" = "ReachabilityDeadlock" ] || [ "LTLCardinality" = "UpperBounds" ] || [ "LTLCardinality" = "QuasiLiveness" ] || [ "LTLCardinality" = "StableMarking" ] || [ "LTLCardinality" = "Liveness" ] || [ "LTLCardinality" = "OneSafe" ] || [ "LTLCardinality" = "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 [ "LTLCardinality" = "UpperBounds" ] ; then
echo "The expected result is a vector of positive values"
echo NUM_VECTOR
elif [ "LTLCardinality" != "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 "LTLCardinality.txt" ] ; then
echo "here is the order used to build the result vector(from text file)"
for x in $(grep Property LTLCardinality.txt | cut -d ' ' -f 2 | sort -u) ; do
echo "FORMULA_NAME $x"
done
elif [ -f "LTLCardinality.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 '' LTLCardinality.xml | cut -d '>' -f 2 | cut -d '<' -f 1 | sort -u) ; do
echo "FORMULA_NAME $x"
done
elif [ "LTLCardinality" = "ReachabilityDeadlock" ] || [ "LTLCardinality" = "QuasiLiveness" ] || [ "LTLCardinality" = "StableMarking" ] || [ "LTLCardinality" = "Liveness" ] || [ "LTLCardinality" = "OneSafe" ] ; then
echo "FORMULA_NAME LTLCardinality"
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 ;