About the Execution of Marcie for Murphy-COL-D3N050
Execution Summary | |||||
Max Memory Used (MB) |
Time wait (ms) | CPU Usage (ms) | I/O Wait (ms) | Computed Result | Execution Status |
16219.836 | 3600000.00 | 3575771.00 | 24023.10 | ??TT?FT???????T? | normal |
Execution Chart
We display below the execution chart for this examination (boot time has been removed).
Trace from the execution
Formatting '/data/fkordon/mcc2023-input.r513-tall-167987240900310.qcow2', fmt=qcow2 size=4294967296 backing_file=/data/fkordon/mcc2023-input.qcow2 cluster_size=65536 lazy_refcounts=off refcount_bits=16
Waiting for the VM to be ready (probing ssh)
...................
=====================================================================
Generated by BenchKit 2-5348
Executing tool marcie
Input is Murphy-COL-D3N050, examination is ReachabilityCardinality
Time confinement is 3600 seconds
Memory confinement is 16384 MBytes
Number of cores is 1
Run identifier is r513-tall-167987240900310
=====================================================================
--------------------
preparation of the directory to be used:
/home/mcc/execution
total 436K
-rw-r--r-- 1 mcc users 7.3K Mar 23 15:21 CTLCardinality.txt
-rw-r--r-- 1 mcc users 82K Mar 23 15:21 CTLCardinality.xml
-rw-r--r-- 1 mcc users 5.4K Mar 23 15:20 CTLFireability.txt
-rw-r--r-- 1 mcc users 52K Mar 23 15:20 CTLFireability.xml
-rw-r--r-- 1 mcc users 3.6K Mar 23 07:07 LTLCardinality.txt
-rw-r--r-- 1 mcc users 26K Mar 23 07:07 LTLCardinality.xml
-rw-r--r-- 1 mcc users 2.1K Mar 23 07:07 LTLFireability.txt
-rw-r--r-- 1 mcc users 19K Mar 23 07:07 LTLFireability.xml
-rw-r--r-- 1 mcc users 1 Mar 26 22:42 NewModel
-rw-r--r-- 1 mcc users 9.1K Mar 23 15:22 ReachabilityCardinality.txt
-rw-r--r-- 1 mcc users 98K Mar 23 15:22 ReachabilityCardinality.xml
-rw-r--r-- 1 mcc users 6.3K Mar 23 15:22 ReachabilityFireability.txt
-rw-r--r-- 1 mcc users 54K Mar 23 15:22 ReachabilityFireability.xml
-rw-r--r-- 1 mcc users 1.6K Mar 23 07:07 UpperBounds.txt
-rw-r--r-- 1 mcc users 3.6K Mar 23 07:07 UpperBounds.xml
-rw-r--r-- 1 mcc users 5 Mar 26 22:42 equiv_pt
-rw-r--r-- 1 mcc users 7 Mar 26 22:42 instance
-rw-r--r-- 1 mcc users 5 Mar 26 22:42 iscolored
-rw-r--r-- 1 mcc users 28K Mar 26 22:42 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 Murphy-COL-D3N050-ReachabilityCardinality-00
FORMULA_NAME Murphy-COL-D3N050-ReachabilityCardinality-01
FORMULA_NAME Murphy-COL-D3N050-ReachabilityCardinality-02
FORMULA_NAME Murphy-COL-D3N050-ReachabilityCardinality-03
FORMULA_NAME Murphy-COL-D3N050-ReachabilityCardinality-04
FORMULA_NAME Murphy-COL-D3N050-ReachabilityCardinality-05
FORMULA_NAME Murphy-COL-D3N050-ReachabilityCardinality-06
FORMULA_NAME Murphy-COL-D3N050-ReachabilityCardinality-07
FORMULA_NAME Murphy-COL-D3N050-ReachabilityCardinality-08
FORMULA_NAME Murphy-COL-D3N050-ReachabilityCardinality-09
FORMULA_NAME Murphy-COL-D3N050-ReachabilityCardinality-10
FORMULA_NAME Murphy-COL-D3N050-ReachabilityCardinality-11
FORMULA_NAME Murphy-COL-D3N050-ReachabilityCardinality-12
FORMULA_NAME Murphy-COL-D3N050-ReachabilityCardinality-13
FORMULA_NAME Murphy-COL-D3N050-ReachabilityCardinality-14
FORMULA_NAME Murphy-COL-D3N050-ReachabilityCardinality-15
=== Now, execution of the tool begins
BK_START 1679892666014
bash -c /home/mcc/BenchKit/BenchKit_head.sh 2> STDERR ; echo ; echo -n "BK_STOP " ; date -u +%s%3N
Invoking MCC driver with
BK_TOOL=marcie
BK_EXAMINATION=ReachabilityCardinality
BK_BIN_PATH=/home/mcc/BenchKit/bin/
BK_TIME_CONFINEMENT=3600
BK_INPUT=Murphy-COL-D3N050
Not applying reductions.
Model is COL
ReachabilityCardinality COL
timeout --kill-after=10s --signal=SIGINT 1m for testing only
Marcie built on Linux at 2019-11-18.
A model checker for Generalized Stochastic Petri nets
authors: Alex Tovchigrechko (IDD package and CTL model checking)
Martin Schwarick (Symbolic numerical analysis and CSL model checking)
Christian Rohr (Simulative and approximative numerical model checking)
marcie@informatik.tu-cottbus.de
called as: /home/mcc/BenchKit/bin//../marcie/bin/marcie --net-file=model.pnml --mcc-file=ReachabilityCardinality.xml --memory=6 --mcc-mode
parse successfull
net created successfully
Unfolding complete |P|=24|T|=28|A|=108
Time for unfolding: 0m 0.417sec
Net: PGCD_COL_D3_N50
(NrP: 24 NrTr: 28 NrArc: 108)
parse formulas
formulas created successfully
place and transition orderings generation:0m 0.000sec
net check time: 0m 0.000sec
init dd package: 0m 2.801sec
RS generation: 0m17.127sec
-> reachability set: #nodes 39729 (4.0e+04) #states 540,710,084,330,928 (14)
starting MCC model checker
--------------------------
checking: EF [sum(p1_c3, p1_c2, p1_c1, p1_c0)<=73]
normalized: E [true U sum(p1_c3, p1_c2, p1_c1, p1_c0)<=73]
abstracting: (sum(p1_c3, p1_c2, p1_c1, p1_c0)<=73)
states: 119,880,930,796,272 (14)
MC time: 3m44.391sec
checking: AG [sum(p3_c3, p3_c2, p3_c1, p3_c0)<=82]
normalized: ~ [E [true U ~ [sum(p3_c3, p3_c2, p3_c1, p3_c0)<=82]]]
abstracting: (sum(p3_c3, p3_c2, p3_c1, p3_c0)<=82)
states: 540,710,084,330,928 (14)
-> the formula is TRUE
FORMULA Murphy-COL-D3N050-ReachabilityCardinality-03 TRUE TECHNIQUES SEQUENTIAL_PROCESSING DECISION_DIAGRAMS UNFOLDING_TO_PT
MC time: 0m 0.058sec
checking: AG [sum(p5_c3, p5_c2, p5_c1, p5_c0)<=4]
normalized: ~ [E [true U ~ [sum(p5_c3, p5_c2, p5_c1, p5_c0)<=4]]]
abstracting: (sum(p5_c3, p5_c2, p5_c1, p5_c0)<=4)
states: 118,906,152,804,255 (14)
-> the formula is FALSE
FORMULA Murphy-COL-D3N050-ReachabilityCardinality-05 FALSE TECHNIQUES SEQUENTIAL_PROCESSING DECISION_DIAGRAMS UNFOLDING_TO_PT
MC time: 0m 2.701sec
checking: AG [~ [100<=sum(p4_c3, p4_c2, p4_c1, p4_c0)]]
normalized: ~ [E [true U 100<=sum(p4_c3, p4_c2, p4_c1, p4_c0)]]
abstracting: (100<=sum(p4_c3, p4_c2, p4_c1, p4_c0))
states: 0
-> the formula is TRUE
FORMULA Murphy-COL-D3N050-ReachabilityCardinality-14 TRUE TECHNIQUES SEQUENTIAL_PROCESSING DECISION_DIAGRAMS UNFOLDING_TO_PT
MC time: 0m 0.022sec
checking: EF [sum(p4_c3, p4_c2, p4_c1, p4_c0)<=sum(p5_c3, p5_c2, p5_c1, p5_c0)]
normalized: E [true U sum(p4_c3, p4_c2, p4_c1, p4_c0)<=sum(p5_c3, p5_c2, p5_c1, p5_c0)]
abstracting: (sum(p4_c3, p4_c2, p4_c1, p4_c0)<=sum(p5_c3, p5_c2, p5_c1, p5_c0))
states: 411,373,567,245,598 (14)
-> the formula is TRUE
FORMULA Murphy-COL-D3N050-ReachabilityCardinality-06 TRUE TECHNIQUES SEQUENTIAL_PROCESSING DECISION_DIAGRAMS UNFOLDING_TO_PT
MC time: 0m 1.984sec
checking: EF [[~ [sum(p2_c3, p2_c2, p2_c1, p2_c0)<=sum(p0_c3, p0_c2, p0_c1, p0_c0)] & sum(p2_c3, p2_c2, p2_c1, p2_c0)<=97]]
normalized: E [true U [sum(p2_c3, p2_c2, p2_c1, p2_c0)<=97 & ~ [sum(p2_c3, p2_c2, p2_c1, p2_c0)<=sum(p0_c3, p0_c2, p0_c1, p0_c0)]]]
abstracting: (sum(p2_c3, p2_c2, p2_c1, p2_c0)<=sum(p0_c3, p0_c2, p0_c1, p0_c0))
MC time: 4m40.002sec
checking: AG [~ [[sum(p4_c3, p4_c2, p4_c1, p4_c0)<=sum(p1_c3, p1_c2, p1_c1, p1_c0) & sum(p0_c3, p0_c2, p0_c1, p0_c0)<=sum(p3_c3, p3_c2, p3_c1, p3_c0)]]]
normalized: ~ [E [true U [sum(p4_c3, p4_c2, p4_c1, p4_c0)<=sum(p1_c3, p1_c2, p1_c1, p1_c0) & sum(p0_c3, p0_c2, p0_c1, p0_c0)<=sum(p3_c3, p3_c2, p3_c1, p3_c0)]]]
abstracting: (sum(p0_c3, p0_c2, p0_c1, p0_c0)<=sum(p3_c3, p3_c2, p3_c1, p3_c0))
MC time: 4m16.000sec
checking: EF [[sum(p3_c3, p3_c2, p3_c1, p3_c0)<=34 | ~ [[[[sum(p0_c3, p0_c2, p0_c1, p0_c0)<=22 | sum(p1_c3, p1_c2, p1_c1, p1_c0)<=12] | [97<=sum(p1_c3, p1_c2, p1_c1, p1_c0) | 62<=sum(p0_c3, p0_c2, p0_c1, p0_c0)]] & ~ [59<=sum(p0_c3, p0_c2, p0_c1, p0_c0)]]]]]
normalized: E [true U [sum(p3_c3, p3_c2, p3_c1, p3_c0)<=34 | ~ [[~ [59<=sum(p0_c3, p0_c2, p0_c1, p0_c0)] & [[97<=sum(p1_c3, p1_c2, p1_c1, p1_c0) | 62<=sum(p0_c3, p0_c2, p0_c1, p0_c0)] | [sum(p0_c3, p0_c2, p0_c1, p0_c0)<=22 | sum(p1_c3, p1_c2, p1_c1, p1_c0)<=12]]]]]]
abstracting: (sum(p1_c3, p1_c2, p1_c1, p1_c0)<=12)
states: 370,834,785,792 (11)
abstracting: (sum(p0_c3, p0_c2, p0_c1, p0_c0)<=22)
MC time: 3m55.000sec
checking: AG [[sum(p2_c3, p2_c2, p2_c1, p2_c0)<=sum(p4_c3, p4_c2, p4_c1, p4_c0) | [74<=sum(p2_c3, p2_c2, p2_c1, p2_c0) | ~ [[80<=sum(p0_c3, p0_c2, p0_c1, p0_c0) & ~ [sum(p3_c3, p3_c2, p3_c1, p3_c0)<=sum(p4_c3, p4_c2, p4_c1, p4_c0)]]]]]]
normalized: ~ [E [true U ~ [[sum(p2_c3, p2_c2, p2_c1, p2_c0)<=sum(p4_c3, p4_c2, p4_c1, p4_c0) | [74<=sum(p2_c3, p2_c2, p2_c1, p2_c0) | ~ [[80<=sum(p0_c3, p0_c2, p0_c1, p0_c0) & ~ [sum(p3_c3, p3_c2, p3_c1, p3_c0)<=sum(p4_c3, p4_c2, p4_c1, p4_c0)]]]]]]]]
abstracting: (sum(p3_c3, p3_c2, p3_c1, p3_c0)<=sum(p4_c3, p4_c2, p4_c1, p4_c0))
states: 488,558,262,925,553 (14)
abstracting: (80<=sum(p0_c3, p0_c2, p0_c1, p0_c0))
states: 392,515,030,407,168 (14)
abstracting: (74<=sum(p2_c3, p2_c2, p2_c1, p2_c0))
MC time: 3m36.009sec
checking: AG [[[sum(p3_c3, p3_c2, p3_c1, p3_c0)<=sum(p5_c3, p5_c2, p5_c1, p5_c0) | 47<=sum(p1_c3, p1_c2, p1_c1, p1_c0)] & [[[[88<=sum(p0_c3, p0_c2, p0_c1, p0_c0) | sum(p2_c3, p2_c2, p2_c1, p2_c0)<=90] & ~ [[~ [[sum(p4_c3, p4_c2, p4_c1, p4_c0)<=sum(p3_c3, p3_c2, p3_c1, p3_c0) & sum(p0_c3, p0_c2, p0_c1, p0_c0)<=56]] & ~ [sum(p0_c3, p0_c2, p0_c1, p0_c0)<=48]]]] & sum(p3_c3, p3_c2, p3_c1, p3_c0)<=86] | 23<=sum(p4_c3, p4_c2, p4_c1, p4_c0)]]]
normalized: ~ [E [true U ~ [[[23<=sum(p4_c3, p4_c2, p4_c1, p4_c0) | [sum(p3_c3, p3_c2, p3_c1, p3_c0)<=86 & [~ [[~ [[sum(p4_c3, p4_c2, p4_c1, p4_c0)<=sum(p3_c3, p3_c2, p3_c1, p3_c0) & sum(p0_c3, p0_c2, p0_c1, p0_c0)<=56]] & ~ [sum(p0_c3, p0_c2, p0_c1, p0_c0)<=48]]] & [88<=sum(p0_c3, p0_c2, p0_c1, p0_c0) | sum(p2_c3, p2_c2, p2_c1, p2_c0)<=90]]]] & [sum(p3_c3, p3_c2, p3_c1, p3_c0)<=sum(p5_c3, p5_c2, p5_c1, p5_c0) | 47<=sum(p1_c3, p1_c2, p1_c1, p1_c0)]]]]]
abstracting: (47<=sum(p1_c3, p1_c2, p1_c1, p1_c0))
states: 510,435,630,499,248 (14)
abstracting: (sum(p3_c3, p3_c2, p3_c1, p3_c0)<=sum(p5_c3, p5_c2, p5_c1, p5_c0))
states: 519,432,141,197,535 (14)
abstracting: (sum(p2_c3, p2_c2, p2_c1, p2_c0)<=90)
MC time: 3m18.000sec
checking: AG [[[sum(p0_c3, p0_c2, p0_c1, p0_c0)<=17 | ~ [[[36<=sum(p5_c3, p5_c2, p5_c1, p5_c0) & sum(p4_c3, p4_c2, p4_c1, p4_c0)<=sum(p0_c3, p0_c2, p0_c1, p0_c0)] | [~ [[[sum(p1_c3, p1_c2, p1_c1, p1_c0)<=sum(p0_c3, p0_c2, p0_c1, p0_c0) | 51<=sum(p2_c3, p2_c2, p2_c1, p2_c0)] & ~ [21<=sum(p5_c3, p5_c2, p5_c1, p5_c0)]]] | ~ [sum(p3_c3, p3_c2, p3_c1, p3_c0)<=sum(p0_c3, p0_c2, p0_c1, p0_c0)]]]]] & ~ [sum(p1_c3, p1_c2, p1_c1, p1_c0)<=sum(p1_c3, p1_c2, p1_c1, p1_c0)]]]
normalized: ~ [E [true U ~ [[[sum(p0_c3, p0_c2, p0_c1, p0_c0)<=17 | ~ [[[~ [sum(p3_c3, p3_c2, p3_c1, p3_c0)<=sum(p0_c3, p0_c2, p0_c1, p0_c0)] | ~ [[~ [21<=sum(p5_c3, p5_c2, p5_c1, p5_c0)] & [sum(p1_c3, p1_c2, p1_c1, p1_c0)<=sum(p0_c3, p0_c2, p0_c1, p0_c0) | 51<=sum(p2_c3, p2_c2, p2_c1, p2_c0)]]]] | [36<=sum(p5_c3, p5_c2, p5_c1, p5_c0) & sum(p4_c3, p4_c2, p4_c1, p4_c0)<=sum(p0_c3, p0_c2, p0_c1, p0_c0)]]]] & ~ [sum(p1_c3, p1_c2, p1_c1, p1_c0)<=sum(p1_c3, p1_c2, p1_c1, p1_c0)]]]]]
abstracting: (sum(p1_c3, p1_c2, p1_c1, p1_c0)<=sum(p1_c3, p1_c2, p1_c1, p1_c0))
states: 540,710,084,330,928 (14)
abstracting: (sum(p4_c3, p4_c2, p4_c1, p4_c0)<=sum(p0_c3, p0_c2, p0_c1, p0_c0))
MC time: 3m 1.001sec
checking: EF [[[[sum(p3_c3, p3_c2, p3_c1, p3_c0)<=99 | ~ [[50<=sum(p3_c3, p3_c2, p3_c1, p3_c0) & [[[~ [sum(p4_c3, p4_c2, p4_c1, p4_c0)<=sum(p2_c3, p2_c2, p2_c1, p2_c0)] & [sum(p1_c3, p1_c2, p1_c1, p1_c0)<=sum(p2_c3, p2_c2, p2_c1, p2_c0) & sum(p5_c3, p5_c2, p5_c1, p5_c0)<=15]] & 100<=sum(p5_c3, p5_c2, p5_c1, p5_c0)] & [sum(p2_c3, p2_c2, p2_c1, p2_c0)<=24 | sum(p4_c3, p4_c2, p4_c1, p4_c0)<=50]]]]] & [sum(p2_c3, p2_c2, p2_c1, p2_c0)<=sum(p4_c3, p4_c2, p4_c1, p4_c0) & 96<=sum(p4_c3, p4_c2, p4_c1, p4_c0)]] & [sum(p3_c3, p3_c2, p3_c1, p3_c0)<=69 | sum(p4_c3, p4_c2, p4_c1, p4_c0)<=sum(p5_c3, p5_c2, p5_c1, p5_c0)]]]
normalized: E [true U [[[sum(p2_c3, p2_c2, p2_c1, p2_c0)<=sum(p4_c3, p4_c2, p4_c1, p4_c0) & 96<=sum(p4_c3, p4_c2, p4_c1, p4_c0)] & [sum(p3_c3, p3_c2, p3_c1, p3_c0)<=99 | ~ [[50<=sum(p3_c3, p3_c2, p3_c1, p3_c0) & [[sum(p2_c3, p2_c2, p2_c1, p2_c0)<=24 | sum(p4_c3, p4_c2, p4_c1, p4_c0)<=50] & [100<=sum(p5_c3, p5_c2, p5_c1, p5_c0) & [[sum(p1_c3, p1_c2, p1_c1, p1_c0)<=sum(p2_c3, p2_c2, p2_c1, p2_c0) & sum(p5_c3, p5_c2, p5_c1, p5_c0)<=15] & ~ [sum(p4_c3, p4_c2, p4_c1, p4_c0)<=sum(p2_c3, p2_c2, p2_c1, p2_c0)]]]]]]]] & [sum(p3_c3, p3_c2, p3_c1, p3_c0)<=69 | sum(p4_c3, p4_c2, p4_c1, p4_c0)<=sum(p5_c3, p5_c2, p5_c1, p5_c0)]]]
abstracting: (sum(p4_c3, p4_c2, p4_c1, p4_c0)<=sum(p5_c3, p5_c2, p5_c1, p5_c0))
states: 411,373,567,245,598 (14)
abstracting: (sum(p3_c3, p3_c2, p3_c1, p3_c0)<=69)
states: 540,710,084,330,928 (14)
abstracting: (sum(p4_c3, p4_c2, p4_c1, p4_c0)<=sum(p2_c3, p2_c2, p2_c1, p2_c0))
MC time: 2m46.000sec
checking: AG [~ [[[[[[~ [[[sum(p5_c3, p5_c2, p5_c1, p5_c0)<=100 & sum(p5_c3, p5_c2, p5_c1, p5_c0)<=sum(p5_c3, p5_c2, p5_c1, p5_c0)] & [sum(p1_c3, p1_c2, p1_c1, p1_c0)<=89 | sum(p2_c3, p2_c2, p2_c1, p2_c0)<=46]]] & [~ [sum(p0_c3, p0_c2, p0_c1, p0_c0)<=sum(p3_c3, p3_c2, p3_c1, p3_c0)] & [[sum(p0_c3, p0_c2, p0_c1, p0_c0)<=sum(p3_c3, p3_c2, p3_c1, p3_c0) & 71<=sum(p1_c3, p1_c2, p1_c1, p1_c0)] & [sum(p3_c3, p3_c2, p3_c1, p3_c0)<=sum(p5_c3, p5_c2, p5_c1, p5_c0) & sum(p3_c3, p3_c2, p3_c1, p3_c0)<=sum(p0_c3, p0_c2, p0_c1, p0_c0)]]]] & [~ [sum(p4_c3, p4_c2, p4_c1, p4_c0)<=81] | ~ [[~ [sum(p0_c3, p0_c2, p0_c1, p0_c0)<=sum(p4_c3, p4_c2, p4_c1, p4_c0)] | sum(p4_c3, p4_c2, p4_c1, p4_c0)<=sum(p2_c3, p2_c2, p2_c1, p2_c0)]]]] & ~ [[[~ [sum(p5_c3, p5_c2, p5_c1, p5_c0)<=67] & [sum(p5_c3, p5_c2, p5_c1, p5_c0)<=sum(p2_c3, p2_c2, p2_c1, p2_c0) & 47<=sum(p4_c3, p4_c2, p4_c1, p4_c0)]] & [~ [sum(p4_c3, p4_c2, p4_c1, p4_c0)<=sum(p2_c3, p2_c2, p2_c1, p2_c0)] & 70<=sum(p3_c3, p3_c2, p3_c1, p3_c0)]]]] & ~ [[[[sum(p2_c3, p2_c2, p2_c1, p2_c0)<=sum(p5_c3, p5_c2, p5_c1, p5_c0) | [sum(p1_c3, p1_c2, p1_c1, p1_c0)<=sum(p1_c3, p1_c2, p1_c1, p1_c0) | 69<=sum(p5_c3, p5_c2, p5_c1, p5_c0)]] | [sum(p5_c3, p5_c2, p5_c1, p5_c0)<=sum(p3_c3, p3_c2, p3_c1, p3_c0) | 100<=sum(p4_c3, p4_c2, p4_c1, p4_c0)]] | [sum(p1_c3, p1_c2, p1_c1, p1_c0)<=sum(p2_c3, p2_c2, p2_c1, p2_c0) & [sum(p2_c3, p2_c2, p2_c1, p2_c0)<=75 & [89<=sum(p5_c3, p5_c2, p5_c1, p5_c0) | sum(p1_c3, p1_c2, p1_c1, p1_c0)<=91]]]]]] | 38<=sum(p4_c3, p4_c2, p4_c1, p4_c0)]]]
normalized: ~ [E [true U [38<=sum(p4_c3, p4_c2, p4_c1, p4_c0) | [~ [[[sum(p1_c3, p1_c2, p1_c1, p1_c0)<=sum(p2_c3, p2_c2, p2_c1, p2_c0) & [sum(p2_c3, p2_c2, p2_c1, p2_c0)<=75 & [89<=sum(p5_c3, p5_c2, p5_c1, p5_c0) | sum(p1_c3, p1_c2, p1_c1, p1_c0)<=91]]] | [[sum(p5_c3, p5_c2, p5_c1, p5_c0)<=sum(p3_c3, p3_c2, p3_c1, p3_c0) | 100<=sum(p4_c3, p4_c2, p4_c1, p4_c0)] | [sum(p2_c3, p2_c2, p2_c1, p2_c0)<=sum(p5_c3, p5_c2, p5_c1, p5_c0) | [sum(p1_c3, p1_c2, p1_c1, p1_c0)<=sum(p1_c3, p1_c2, p1_c1, p1_c0) | 69<=sum(p5_c3, p5_c2, p5_c1, p5_c0)]]]]] & [~ [[[70<=sum(p3_c3, p3_c2, p3_c1, p3_c0) & ~ [sum(p4_c3, p4_c2, p4_c1, p4_c0)<=sum(p2_c3, p2_c2, p2_c1, p2_c0)]] & [[sum(p5_c3, p5_c2, p5_c1, p5_c0)<=sum(p2_c3, p2_c2, p2_c1, p2_c0) & 47<=sum(p4_c3, p4_c2, p4_c1, p4_c0)] & ~ [sum(p5_c3, p5_c2, p5_c1, p5_c0)<=67]]]] & [[~ [[sum(p4_c3, p4_c2, p4_c1, p4_c0)<=sum(p2_c3, p2_c2, p2_c1, p2_c0) | ~ [sum(p0_c3, p0_c2, p0_c1, p0_c0)<=sum(p4_c3, p4_c2, p4_c1, p4_c0)]]] | ~ [sum(p4_c3, p4_c2, p4_c1, p4_c0)<=81]] & [[[[sum(p3_c3, p3_c2, p3_c1, p3_c0)<=sum(p5_c3, p5_c2, p5_c1, p5_c0) & sum(p3_c3, p3_c2, p3_c1, p3_c0)<=sum(p0_c3, p0_c2, p0_c1, p0_c0)] & [sum(p0_c3, p0_c2, p0_c1, p0_c0)<=sum(p3_c3, p3_c2, p3_c1, p3_c0) & 71<=sum(p1_c3, p1_c2, p1_c1, p1_c0)]] & ~ [sum(p0_c3, p0_c2, p0_c1, p0_c0)<=sum(p3_c3, p3_c2, p3_c1, p3_c0)]] & ~ [[[sum(p1_c3, p1_c2, p1_c1, p1_c0)<=89 | sum(p2_c3, p2_c2, p2_c1, p2_c0)<=46] & [sum(p5_c3, p5_c2, p5_c1, p5_c0)<=100 & sum(p5_c3, p5_c2, p5_c1, p5_c0)<=sum(p5_c3, p5_c2, p5_c1, p5_c0)]]]]]]]]]]
abstracting: (sum(p5_c3, p5_c2, p5_c1, p5_c0)<=sum(p5_c3, p5_c2, p5_c1, p5_c0))
states: 540,710,084,330,928 (14)
abstracting: (sum(p5_c3, p5_c2, p5_c1, p5_c0)<=100)
states: 540,710,084,330,928 (14)
abstracting: (sum(p2_c3, p2_c2, p2_c1, p2_c0)<=46)
MC time: 2m32.000sec
checking: AG [[~ [[[[[[sum(p4_c3, p4_c2, p4_c1, p4_c0)<=sum(p1_c3, p1_c2, p1_c1, p1_c0) | [~ [sum(p5_c3, p5_c2, p5_c1, p5_c0)<=24] & sum(p5_c3, p5_c2, p5_c1, p5_c0)<=sum(p0_c3, p0_c2, p0_c1, p0_c0)]] & [sum(p0_c3, p0_c2, p0_c1, p0_c0)<=2 & ~ [sum(p0_c3, p0_c2, p0_c1, p0_c0)<=24]]] & [sum(p0_c3, p0_c2, p0_c1, p0_c0)<=sum(p3_c3, p3_c2, p3_c1, p3_c0) | [~ [[sum(p0_c3, p0_c2, p0_c1, p0_c0)<=sum(p2_c3, p2_c2, p2_c1, p2_c0) & 65<=sum(p0_c3, p0_c2, p0_c1, p0_c0)]] | ~ [[65<=sum(p2_c3, p2_c2, p2_c1, p2_c0) & sum(p3_c3, p3_c2, p3_c1, p3_c0)<=40]]]]] & [[[[[sum(p3_c3, p3_c2, p3_c1, p3_c0)<=8 | sum(p4_c3, p4_c2, p4_c1, p4_c0)<=81] | [95<=sum(p3_c3, p3_c2, p3_c1, p3_c0) | 12<=sum(p2_c3, p2_c2, p2_c1, p2_c0)]] | [[sum(p4_c3, p4_c2, p4_c1, p4_c0)<=sum(p5_c3, p5_c2, p5_c1, p5_c0) & sum(p3_c3, p3_c2, p3_c1, p3_c0)<=sum(p4_c3, p4_c2, p4_c1, p4_c0)] & [sum(p2_c3, p2_c2, p2_c1, p2_c0)<=sum(p1_c3, p1_c2, p1_c1, p1_c0) | 15<=sum(p3_c3, p3_c2, p3_c1, p3_c0)]]] & [sum(p3_c3, p3_c2, p3_c1, p3_c0)<=98 | [[6<=sum(p4_c3, p4_c2, p4_c1, p4_c0) & 70<=sum(p1_c3, p1_c2, p1_c1, p1_c0)] & ~ [sum(p3_c3, p3_c2, p3_c1, p3_c0)<=sum(p3_c3, p3_c2, p3_c1, p3_c0)]]]] | [[sum(p3_c3, p3_c2, p3_c1, p3_c0)<=sum(p0_c3, p0_c2, p0_c1, p0_c0) & [~ [sum(p2_c3, p2_c2, p2_c1, p2_c0)<=sum(p5_c3, p5_c2, p5_c1, p5_c0)] | [12<=sum(p1_c3, p1_c2, p1_c1, p1_c0) | sum(p3_c3, p3_c2, p3_c1, p3_c0)<=32]]] | sum(p5_c3, p5_c2, p5_c1, p5_c0)<=sum(p2_c3, p2_c2, p2_c1, p2_c0)]]] & ~ [[sum(p2_c3, p2_c2, p2_c1, p2_c0)<=14 & [sum(p3_c3, p3_c2, p3_c1, p3_c0)<=sum(p0_c3, p0_c2, p0_c1, p0_c0) & [~ [[sum(p2_c3, p2_c2, p2_c1, p2_c0)<=21 | sum(p0_c3, p0_c2, p0_c1, p0_c0)<=95]] & 28<=sum(p4_c3, p4_c2, p4_c1, p4_c0)]]]]]] & sum(p4_c3, p4_c2, p4_c1, p4_c0)<=96]]
normalized: ~ [E [true U ~ [[sum(p4_c3, p4_c2, p4_c1, p4_c0)<=96 & ~ [[~ [[sum(p2_c3, p2_c2, p2_c1, p2_c0)<=14 & [sum(p3_c3, p3_c2, p3_c1, p3_c0)<=sum(p0_c3, p0_c2, p0_c1, p0_c0) & [28<=sum(p4_c3, p4_c2, p4_c1, p4_c0) & ~ [[sum(p2_c3, p2_c2, p2_c1, p2_c0)<=21 | sum(p0_c3, p0_c2, p0_c1, p0_c0)<=95]]]]]] & [[[sum(p5_c3, p5_c2, p5_c1, p5_c0)<=sum(p2_c3, p2_c2, p2_c1, p2_c0) | [sum(p3_c3, p3_c2, p3_c1, p3_c0)<=sum(p0_c3, p0_c2, p0_c1, p0_c0) & [[12<=sum(p1_c3, p1_c2, p1_c1, p1_c0) | sum(p3_c3, p3_c2, p3_c1, p3_c0)<=32] | ~ [sum(p2_c3, p2_c2, p2_c1, p2_c0)<=sum(p5_c3, p5_c2, p5_c1, p5_c0)]]]] | [[sum(p3_c3, p3_c2, p3_c1, p3_c0)<=98 | [~ [sum(p3_c3, p3_c2, p3_c1, p3_c0)<=sum(p3_c3, p3_c2, p3_c1, p3_c0)] & [6<=sum(p4_c3, p4_c2, p4_c1, p4_c0) & 70<=sum(p1_c3, p1_c2, p1_c1, p1_c0)]]] & [[[sum(p2_c3, p2_c2, p2_c1, p2_c0)<=sum(p1_c3, p1_c2, p1_c1, p1_c0) | 15<=sum(p3_c3, p3_c2, p3_c1, p3_c0)] & [sum(p4_c3, p4_c2, p4_c1, p4_c0)<=sum(p5_c3, p5_c2, p5_c1, p5_c0) & sum(p3_c3, p3_c2, p3_c1, p3_c0)<=sum(p4_c3, p4_c2, p4_c1, p4_c0)]] | [[95<=sum(p3_c3, p3_c2, p3_c1, p3_c0) | 12<=sum(p2_c3, p2_c2, p2_c1, p2_c0)] | [sum(p3_c3, p3_c2, p3_c1, p3_c0)<=8 | sum(p4_c3, p4_c2, p4_c1, p4_c0)<=81]]]]] & [[sum(p0_c3, p0_c2, p0_c1, p0_c0)<=sum(p3_c3, p3_c2, p3_c1, p3_c0) | [~ [[65<=sum(p2_c3, p2_c2, p2_c1, p2_c0) & sum(p3_c3, p3_c2, p3_c1, p3_c0)<=40]] | ~ [[sum(p0_c3, p0_c2, p0_c1, p0_c0)<=sum(p2_c3, p2_c2, p2_c1, p2_c0) & 65<=sum(p0_c3, p0_c2, p0_c1, p0_c0)]]]] & [[sum(p0_c3, p0_c2, p0_c1, p0_c0)<=2 & ~ [sum(p0_c3, p0_c2, p0_c1, p0_c0)<=24]] & [sum(p4_c3, p4_c2, p4_c1, p4_c0)<=sum(p1_c3, p1_c2, p1_c1, p1_c0) | [sum(p5_c3, p5_c2, p5_c1, p5_c0)<=sum(p0_c3, p0_c2, p0_c1, p0_c0) & ~ [sum(p5_c3, p5_c2, p5_c1, p5_c0)<=24]]]]]]]]]]]]
abstracting: (sum(p5_c3, p5_c2, p5_c1, p5_c0)<=24)
states: 540,710,084,330,928 (14)
abstracting: (sum(p5_c3, p5_c2, p5_c1, p5_c0)<=sum(p0_c3, p0_c2, p0_c1, p0_c0))
MC time: 2m19.000sec
checking: AG [[~ [sum(p3_c3, p3_c2, p3_c1, p3_c0)<=sum(p4_c3, p4_c2, p4_c1, p4_c0)] & [[[[[[[sum(p3_c3, p3_c2, p3_c1, p3_c0)<=54 | [sum(p1_c3, p1_c2, p1_c1, p1_c0)<=sum(p1_c3, p1_c2, p1_c1, p1_c0) | sum(p5_c3, p5_c2, p5_c1, p5_c0)<=60]] | [[sum(p0_c3, p0_c2, p0_c1, p0_c0)<=sum(p1_c3, p1_c2, p1_c1, p1_c0) | sum(p2_c3, p2_c2, p2_c1, p2_c0)<=sum(p5_c3, p5_c2, p5_c1, p5_c0)] & ~ [sum(p0_c3, p0_c2, p0_c1, p0_c0)<=92]]] & [[[33<=sum(p5_c3, p5_c2, p5_c1, p5_c0) | 68<=sum(p0_c3, p0_c2, p0_c1, p0_c0)] | [sum(p2_c3, p2_c2, p2_c1, p2_c0)<=39 & sum(p1_c3, p1_c2, p1_c1, p1_c0)<=25]] & [[sum(p1_c3, p1_c2, p1_c1, p1_c0)<=sum(p2_c3, p2_c2, p2_c1, p2_c0) | sum(p5_c3, p5_c2, p5_c1, p5_c0)<=sum(p4_c3, p4_c2, p4_c1, p4_c0)] | ~ [sum(p4_c3, p4_c2, p4_c1, p4_c0)<=86]]]] & ~ [sum(p3_c3, p3_c2, p3_c1, p3_c0)<=25]] & [~ [[16<=sum(p0_c3, p0_c2, p0_c1, p0_c0) & [[sum(p4_c3, p4_c2, p4_c1, p4_c0)<=sum(p4_c3, p4_c2, p4_c1, p4_c0) & sum(p1_c3, p1_c2, p1_c1, p1_c0)<=68] & [sum(p2_c3, p2_c2, p2_c1, p2_c0)<=8 & 81<=sum(p0_c3, p0_c2, p0_c1, p0_c0)]]]] & [[sum(p0_c3, p0_c2, p0_c1, p0_c0)<=98 | [~ [sum(p3_c3, p3_c2, p3_c1, p3_c0)<=56] & ~ [50<=sum(p4_c3, p4_c2, p4_c1, p4_c0)]]] | [sum(p5_c3, p5_c2, p5_c1, p5_c0)<=54 | ~ [56<=sum(p5_c3, p5_c2, p5_c1, p5_c0)]]]]] | [sum(p2_c3, p2_c2, p2_c1, p2_c0)<=sum(p1_c3, p1_c2, p1_c1, p1_c0) | 37<=sum(p0_c3, p0_c2, p0_c1, p0_c0)]] | [sum(p3_c3, p3_c2, p3_c1, p3_c0)<=58 & ~ [[[[81<=sum(p3_c3, p3_c2, p3_c1, p3_c0) & [~ [sum(p3_c3, p3_c2, p3_c1, p3_c0)<=18] | [97<=sum(p4_c3, p4_c2, p4_c1, p4_c0) & 9<=sum(p3_c3, p3_c2, p3_c1, p3_c0)]]] & [~ [[sum(p0_c3, p0_c2, p0_c1, p0_c0)<=sum(p1_c3, p1_c2, p1_c1, p1_c0) & 65<=sum(p1_c3, p1_c2, p1_c1, p1_c0)]] & [~ [66<=sum(p4_c3, p4_c2, p4_c1, p4_c0)] | [sum(p2_c3, p2_c2, p2_c1, p2_c0)<=82 & sum(p2_c3, p2_c2, p2_c1, p2_c0)<=sum(p2_c3, p2_c2, p2_c1, p2_c0)]]]] | sum(p2_c3, p2_c2, p2_c1, p2_c0)<=45]]]]]]
normalized: ~ [E [true U ~ [[[[sum(p3_c3, p3_c2, p3_c1, p3_c0)<=58 & ~ [[sum(p2_c3, p2_c2, p2_c1, p2_c0)<=45 | [[[[sum(p2_c3, p2_c2, p2_c1, p2_c0)<=82 & sum(p2_c3, p2_c2, p2_c1, p2_c0)<=sum(p2_c3, p2_c2, p2_c1, p2_c0)] | ~ [66<=sum(p4_c3, p4_c2, p4_c1, p4_c0)]] & ~ [[sum(p0_c3, p0_c2, p0_c1, p0_c0)<=sum(p1_c3, p1_c2, p1_c1, p1_c0) & 65<=sum(p1_c3, p1_c2, p1_c1, p1_c0)]]] & [81<=sum(p3_c3, p3_c2, p3_c1, p3_c0) & [[97<=sum(p4_c3, p4_c2, p4_c1, p4_c0) & 9<=sum(p3_c3, p3_c2, p3_c1, p3_c0)] | ~ [sum(p3_c3, p3_c2, p3_c1, p3_c0)<=18]]]]]]] | [[sum(p2_c3, p2_c2, p2_c1, p2_c0)<=sum(p1_c3, p1_c2, p1_c1, p1_c0) | 37<=sum(p0_c3, p0_c2, p0_c1, p0_c0)] | [[[[sum(p5_c3, p5_c2, p5_c1, p5_c0)<=54 | ~ [56<=sum(p5_c3, p5_c2, p5_c1, p5_c0)]] | [sum(p0_c3, p0_c2, p0_c1, p0_c0)<=98 | [~ [50<=sum(p4_c3, p4_c2, p4_c1, p4_c0)] & ~ [sum(p3_c3, p3_c2, p3_c1, p3_c0)<=56]]]] & ~ [[16<=sum(p0_c3, p0_c2, p0_c1, p0_c0) & [[sum(p2_c3, p2_c2, p2_c1, p2_c0)<=8 & 81<=sum(p0_c3, p0_c2, p0_c1, p0_c0)] & [sum(p4_c3, p4_c2, p4_c1, p4_c0)<=sum(p4_c3, p4_c2, p4_c1, p4_c0) & sum(p1_c3, p1_c2, p1_c1, p1_c0)<=68]]]]] & [~ [sum(p3_c3, p3_c2, p3_c1, p3_c0)<=25] & [[[~ [sum(p4_c3, p4_c2, p4_c1, p4_c0)<=86] | [sum(p1_c3, p1_c2, p1_c1, p1_c0)<=sum(p2_c3, p2_c2, p2_c1, p2_c0) | sum(p5_c3, p5_c2, p5_c1, p5_c0)<=sum(p4_c3, p4_c2, p4_c1, p4_c0)]] & [[sum(p2_c3, p2_c2, p2_c1, p2_c0)<=39 & sum(p1_c3, p1_c2, p1_c1, p1_c0)<=25] | [33<=sum(p5_c3, p5_c2, p5_c1, p5_c0) | 68<=sum(p0_c3, p0_c2, p0_c1, p0_c0)]]] & [[~ [sum(p0_c3, p0_c2, p0_c1, p0_c0)<=92] & [sum(p0_c3, p0_c2, p0_c1, p0_c0)<=sum(p1_c3, p1_c2, p1_c1, p1_c0) | sum(p2_c3, p2_c2, p2_c1, p2_c0)<=sum(p5_c3, p5_c2, p5_c1, p5_c0)]] | [sum(p3_c3, p3_c2, p3_c1, p3_c0)<=54 | [sum(p1_c3, p1_c2, p1_c1, p1_c0)<=sum(p1_c3, p1_c2, p1_c1, p1_c0) | sum(p5_c3, p5_c2, p5_c1, p5_c0)<=60]]]]]]]] & ~ [sum(p3_c3, p3_c2, p3_c1, p3_c0)<=sum(p4_c3, p4_c2, p4_c1, p4_c0)]]]]]
abstracting: (sum(p3_c3, p3_c2, p3_c1, p3_c0)<=sum(p4_c3, p4_c2, p4_c1, p4_c0))
states: 488,558,262,925,553 (14)
abstracting: (sum(p5_c3, p5_c2, p5_c1, p5_c0)<=60)
states: 540,710,084,330,928 (14)
abstracting: (sum(p1_c3, p1_c2, p1_c1, p1_c0)<=sum(p1_c3, p1_c2, p1_c1, p1_c0))
states: 540,710,084,330,928 (14)
abstracting: (sum(p3_c3, p3_c2, p3_c1, p3_c0)<=54)
states: 540,710,084,330,928 (14)
abstracting: (sum(p2_c3, p2_c2, p2_c1, p2_c0)<=sum(p5_c3, p5_c2, p5_c1, p5_c0))
MC time: 2m 8.000sec
checking: EF [[[[~ [[[~ [sum(p1_c3, p1_c2, p1_c1, p1_c0)<=15] | [78<=sum(p0_c3, p0_c2, p0_c1, p0_c0) & ~ [[sum(p5_c3, p5_c2, p5_c1, p5_c0)<=57 & sum(p4_c3, p4_c2, p4_c1, p4_c0)<=31]]]] | ~ [[[sum(p4_c3, p4_c2, p4_c1, p4_c0)<=5 | 74<=sum(p1_c3, p1_c2, p1_c1, p1_c0)] | [54<=sum(p1_c3, p1_c2, p1_c1, p1_c0) | sum(p5_c3, p5_c2, p5_c1, p5_c0)<=sum(p2_c3, p2_c2, p2_c1, p2_c0)]]]]] & [~ [[93<=sum(p4_c3, p4_c2, p4_c1, p4_c0) | ~ [[[73<=sum(p5_c3, p5_c2, p5_c1, p5_c0) | sum(p4_c3, p4_c2, p4_c1, p4_c0)<=27] & [sum(p4_c3, p4_c2, p4_c1, p4_c0)<=sum(p1_c3, p1_c2, p1_c1, p1_c0) & sum(p0_c3, p0_c2, p0_c1, p0_c0)<=6]]]]] & [[sum(p0_c3, p0_c2, p0_c1, p0_c0)<=22 | ~ [[sum(p2_c3, p2_c2, p2_c1, p2_c0)<=57 & 33<=sum(p1_c3, p1_c2, p1_c1, p1_c0)]]] & [sum(p4_c3, p4_c2, p4_c1, p4_c0)<=sum(p3_c3, p3_c2, p3_c1, p3_c0) & ~ [[[sum(p2_c3, p2_c2, p2_c1, p2_c0)<=45 & 54<=sum(p2_c3, p2_c2, p2_c1, p2_c0)] | ~ [93<=sum(p4_c3, p4_c2, p4_c1, p4_c0)]]]]]]] & [[[[[~ [22<=sum(p2_c3, p2_c2, p2_c1, p2_c0)] & [[sum(p1_c3, p1_c2, p1_c1, p1_c0)<=sum(p1_c3, p1_c2, p1_c1, p1_c0) | sum(p1_c3, p1_c2, p1_c1, p1_c0)<=23] & [sum(p3_c3, p3_c2, p3_c1, p3_c0)<=71 & sum(p5_c3, p5_c2, p5_c1, p5_c0)<=66]]] & 79<=sum(p5_c3, p5_c2, p5_c1, p5_c0)] | ~ [100<=sum(p1_c3, p1_c2, p1_c1, p1_c0)]] & ~ [[[sum(p2_c3, p2_c2, p2_c1, p2_c0)<=sum(p4_c3, p4_c2, p4_c1, p4_c0) & [[57<=sum(p1_c3, p1_c2, p1_c1, p1_c0) | sum(p0_c3, p0_c2, p0_c1, p0_c0)<=21] | [sum(p3_c3, p3_c2, p3_c1, p3_c0)<=65 & sum(p3_c3, p3_c2, p3_c1, p3_c0)<=78]]] & [[~ [9<=sum(p2_c3, p2_c2, p2_c1, p2_c0)] & ~ [46<=sum(p1_c3, p1_c2, p1_c1, p1_c0)]] & ~ [sum(p1_c3, p1_c2, p1_c1, p1_c0)<=sum(p2_c3, p2_c2, p2_c1, p2_c0)]]]]] & sum(p0_c3, p0_c2, p0_c1, p0_c0)<=30]] | ~ [[~ [sum(p0_c3, p0_c2, p0_c1, p0_c0)<=sum(p5_c3, p5_c2, p5_c1, p5_c0)] | [[[~ [[sum(p3_c3, p3_c2, p3_c1, p3_c0)<=sum(p3_c3, p3_c2, p3_c1, p3_c0) & 24<=sum(p5_c3, p5_c2, p5_c1, p5_c0)]] & [~ [[sum(p5_c3, p5_c2, p5_c1, p5_c0)<=4 | sum(p4_c3, p4_c2, p4_c1, p4_c0)<=sum(p5_c3, p5_c2, p5_c1, p5_c0)]] & ~ [sum(p0_c3, p0_c2, p0_c1, p0_c0)<=87]]] & [~ [42<=sum(p3_c3, p3_c2, p3_c1, p3_c0)] | [[sum(p3_c3, p3_c2, p3_c1, p3_c0)<=23 | [sum(p1_c3, p1_c2, p1_c1, p1_c0)<=86 & sum(p5_c3, p5_c2, p5_c1, p5_c0)<=13]] & [16<=sum(p1_c3, p1_c2, p1_c1, p1_c0) & [sum(p0_c3, p0_c2, p0_c1, p0_c0)<=63 & sum(p3_c3, p3_c2, p3_c1, p3_c0)<=35]]]]] | sum(p5_c3, p5_c2, p5_c1, p5_c0)<=78]]]]]
normalized: E [true U [~ [[[sum(p5_c3, p5_c2, p5_c1, p5_c0)<=78 | [[[[16<=sum(p1_c3, p1_c2, p1_c1, p1_c0) & [sum(p0_c3, p0_c2, p0_c1, p0_c0)<=63 & sum(p3_c3, p3_c2, p3_c1, p3_c0)<=35]] & [sum(p3_c3, p3_c2, p3_c1, p3_c0)<=23 | [sum(p1_c3, p1_c2, p1_c1, p1_c0)<=86 & sum(p5_c3, p5_c2, p5_c1, p5_c0)<=13]]] | ~ [42<=sum(p3_c3, p3_c2, p3_c1, p3_c0)]] & [[~ [sum(p0_c3, p0_c2, p0_c1, p0_c0)<=87] & ~ [[sum(p5_c3, p5_c2, p5_c1, p5_c0)<=4 | sum(p4_c3, p4_c2, p4_c1, p4_c0)<=sum(p5_c3, p5_c2, p5_c1, p5_c0)]]] & ~ [[sum(p3_c3, p3_c2, p3_c1, p3_c0)<=sum(p3_c3, p3_c2, p3_c1, p3_c0) & 24<=sum(p5_c3, p5_c2, p5_c1, p5_c0)]]]]] | ~ [sum(p0_c3, p0_c2, p0_c1, p0_c0)<=sum(p5_c3, p5_c2, p5_c1, p5_c0)]]] | [[sum(p0_c3, p0_c2, p0_c1, p0_c0)<=30 & [~ [[[~ [sum(p1_c3, p1_c2, p1_c1, p1_c0)<=sum(p2_c3, p2_c2, p2_c1, p2_c0)] & [~ [46<=sum(p1_c3, p1_c2, p1_c1, p1_c0)] & ~ [9<=sum(p2_c3, p2_c2, p2_c1, p2_c0)]]] & [sum(p2_c3, p2_c2, p2_c1, p2_c0)<=sum(p4_c3, p4_c2, p4_c1, p4_c0) & [[sum(p3_c3, p3_c2, p3_c1, p3_c0)<=65 & sum(p3_c3, p3_c2, p3_c1, p3_c0)<=78] | [57<=sum(p1_c3, p1_c2, p1_c1, p1_c0) | sum(p0_c3, p0_c2, p0_c1, p0_c0)<=21]]]]] & [~ [100<=sum(p1_c3, p1_c2, p1_c1, p1_c0)] | [79<=sum(p5_c3, p5_c2, p5_c1, p5_c0) & [[[sum(p3_c3, p3_c2, p3_c1, p3_c0)<=71 & sum(p5_c3, p5_c2, p5_c1, p5_c0)<=66] & [sum(p1_c3, p1_c2, p1_c1, p1_c0)<=sum(p1_c3, p1_c2, p1_c1, p1_c0) | sum(p1_c3, p1_c2, p1_c1, p1_c0)<=23]] & ~ [22<=sum(p2_c3, p2_c2, p2_c1, p2_c0)]]]]]] & [[[[sum(p4_c3, p4_c2, p4_c1, p4_c0)<=sum(p3_c3, p3_c2, p3_c1, p3_c0) & ~ [[~ [93<=sum(p4_c3, p4_c2, p4_c1, p4_c0)] | [sum(p2_c3, p2_c2, p2_c1, p2_c0)<=45 & 54<=sum(p2_c3, p2_c2, p2_c1, p2_c0)]]]] & [sum(p0_c3, p0_c2, p0_c1, p0_c0)<=22 | ~ [[sum(p2_c3, p2_c2, p2_c1, p2_c0)<=57 & 33<=sum(p1_c3, p1_c2, p1_c1, p1_c0)]]]] & ~ [[93<=sum(p4_c3, p4_c2, p4_c1, p4_c0) | ~ [[[sum(p4_c3, p4_c2, p4_c1, p4_c0)<=sum(p1_c3, p1_c2, p1_c1, p1_c0) & sum(p0_c3, p0_c2, p0_c1, p0_c0)<=6] & [73<=sum(p5_c3, p5_c2, p5_c1, p5_c0) | sum(p4_c3, p4_c2, p4_c1, p4_c0)<=27]]]]]] & ~ [[~ [[[54<=sum(p1_c3, p1_c2, p1_c1, p1_c0) | sum(p5_c3, p5_c2, p5_c1, p5_c0)<=sum(p2_c3, p2_c2, p2_c1, p2_c0)] | [sum(p4_c3, p4_c2, p4_c1, p4_c0)<=5 | 74<=sum(p1_c3, p1_c2, p1_c1, p1_c0)]]] | [[78<=sum(p0_c3, p0_c2, p0_c1, p0_c0) & ~ [[sum(p5_c3, p5_c2, p5_c1, p5_c0)<=57 & sum(p4_c3, p4_c2, p4_c1, p4_c0)<=31]]] | ~ [sum(p1_c3, p1_c2, p1_c1, p1_c0)<=15]]]]]]]]
abstracting: (sum(p1_c3, p1_c2, p1_c1, p1_c0)<=15)
MC time: 1m57.000sec
checking: EF [sum(p1_c3, p1_c2, p1_c1, p1_c0)<=73]
normalized: E [true U sum(p1_c3, p1_c2, p1_c1, p1_c0)<=73]
abstracting: (sum(p1_c3, p1_c2, p1_c1, p1_c0)<=73)
states: 119,880,930,796,272 (14)
before gc: list nodes free: 1878938
after gc: idd nodes used:2658125, unused:61341875; list nodes free:660032272
-> the formula is TRUE
FORMULA Murphy-COL-D3N050-ReachabilityCardinality-02 TRUE TECHNIQUES SEQUENTIAL_PROCESSING DECISION_DIAGRAMS UNFOLDING_TO_PT
TIME LIMIT: Killed by timeout after 3600 seconds
MemTotal: 16393916 kB
MemFree: 172036 kB
After kill :
MemTotal: 16393916 kB
MemFree: 15597896 kB
BK_TIME_CONFINEMENT_REACHED
--------------------
content from stderr:
check for maximal unmarked siphon
ok
check for constant places
ok
check if there are places and transitions
ok
check if there are transitions without pre-places
ok
check if at least one transition is enabled in m0
ok
check if there are transitions that can never fire
ok
initing FirstDep: 0m 0.000sec
iterations count:20755 (741), effective:4264 (152)
initing FirstDep: 0m 0.000sec
sat_reach.icc:155: Timeout: after 223 sec
iterations count:48 (1), effective:5 (0)
iterations count:48 (1), effective:5 (0)
idd.h:1025: Timeout: after 279 sec
idd.h:1025: Timeout: after 255 sec
idd.h:1025: Timeout: after 234 sec
idd.h:1025: Timeout: after 215 sec
idd.h:1025: Timeout: after 197 sec
idd.h:1025: Timeout: after 180 sec
idd.h:1025: Timeout: after 165 sec
idd.h:1025: Timeout: after 151 sec
idd.h:1025: Timeout: after 138 sec
idd.h:1025: Timeout: after 127 sec
idd.h:1025: Timeout: after 116 sec
iterations count:5001 (178), effective:1086 (38)
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="Murphy-COL-D3N050"
export BK_EXAMINATION="ReachabilityCardinality"
export BK_TOOL="marcie"
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 2-5348"
echo " Executing tool marcie"
echo " Input is Murphy-COL-D3N050, examination is ReachabilityCardinality"
echo " Time confinement is $BK_TIME_CONFINEMENT seconds"
echo " Memory confinement is 16384 MBytes"
echo " Number of cores is 1"
echo " Run identifier is r513-tall-167987240900310"
echo "====================================================================="
echo
echo "--------------------"
echo "preparation of the directory to be used:"
tar xzf /home/mcc/BenchKit/INPUTS/Murphy-COL-D3N050.tgz
mv Murphy-COL-D3N050 execution
cd execution
if [ "ReachabilityCardinality" = "ReachabilityDeadlock" ] || [ "ReachabilityCardinality" = "UpperBounds" ] || [ "ReachabilityCardinality" = "QuasiLiveness" ] || [ "ReachabilityCardinality" = "StableMarking" ] || [ "ReachabilityCardinality" = "Liveness" ] || [ "ReachabilityCardinality" = "OneSafe" ] || [ "ReachabilityCardinality" = "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 [ "ReachabilityCardinality" = "UpperBounds" ] ; then
echo "The expected result is a vector of positive values"
echo NUM_VECTOR
elif [ "ReachabilityCardinality" != "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 "ReachabilityCardinality.txt" ] ; then
echo "here is the order used to build the result vector(from text file)"
for x in $(grep Property ReachabilityCardinality.txt | cut -d ' ' -f 2 | sort -u) ; do
echo "FORMULA_NAME $x"
done
elif [ -f "ReachabilityCardinality.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 '
echo "FORMULA_NAME $x"
done
elif [ "ReachabilityCardinality" = "ReachabilityDeadlock" ] || [ "ReachabilityCardinality" = "QuasiLiveness" ] || [ "ReachabilityCardinality" = "StableMarking" ] || [ "ReachabilityCardinality" = "Liveness" ] || [ "ReachabilityCardinality" = "OneSafe" ] ; then
echo "FORMULA_NAME ReachabilityCardinality"
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 ;