About the Execution of Marcie for CryptoMiner-PT-D03N010
Execution Summary | |||||
Max Memory Used (MB) |
Time wait (ms) | CPU Usage (ms) | I/O Wait (ms) | Computed Result | Execution Status |
5448.840 | 14726.00 | 14799.00 | 321.60 | FFTFFTFFTFTFTFFF | 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-167987240700153.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 CryptoMiner-PT-D03N010, examination is CTLCardinality
Time confinement is 3600 seconds
Memory confinement is 16384 MBytes
Number of cores is 1
Run identifier is r513-tall-167987240700153
=====================================================================
--------------------
preparation of the directory to be used:
/home/mcc/execution
total 604K
-rw-r--r-- 1 mcc users 13K Mar 23 15:23 CTLCardinality.txt
-rw-r--r-- 1 mcc users 103K Mar 23 15:23 CTLCardinality.xml
-rw-r--r-- 1 mcc users 7.8K Mar 23 15:21 CTLFireability.txt
-rw-r--r-- 1 mcc users 63K Mar 23 15:21 CTLFireability.xml
-rw-r--r-- 1 mcc users 5.7K Mar 23 07:06 LTLCardinality.txt
-rw-r--r-- 1 mcc users 32K Mar 23 07:06 LTLCardinality.xml
-rw-r--r-- 1 mcc users 3.0K Mar 23 07:06 LTLFireability.txt
-rw-r--r-- 1 mcc users 18K Mar 23 07:06 LTLFireability.xml
-rw-r--r-- 1 mcc users 1 Mar 26 22:42 NewModel
-rw-r--r-- 1 mcc users 19K Mar 23 15:24 ReachabilityCardinality.txt
-rw-r--r-- 1 mcc users 157K Mar 23 15:24 ReachabilityCardinality.xml
-rw-r--r-- 1 mcc users 16K Mar 23 15:24 ReachabilityFireability.txt
-rw-r--r-- 1 mcc users 116K Mar 23 15:24 ReachabilityFireability.xml
-rw-r--r-- 1 mcc users 2.1K Mar 23 07:06 UpperBounds.txt
-rw-r--r-- 1 mcc users 4.6K Mar 23 07:06 UpperBounds.xml
-rw-r--r-- 1 mcc users 5 Mar 26 22:42 equiv_col
-rw-r--r-- 1 mcc users 8 Mar 26 22:42 instance
-rw-r--r-- 1 mcc users 6 Mar 26 22:42 iscolored
-rw-r--r-- 1 mcc users 5.5K 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 CryptoMiner-PT-D03N010-CTLCardinality-00
FORMULA_NAME CryptoMiner-PT-D03N010-CTLCardinality-01
FORMULA_NAME CryptoMiner-PT-D03N010-CTLCardinality-02
FORMULA_NAME CryptoMiner-PT-D03N010-CTLCardinality-03
FORMULA_NAME CryptoMiner-PT-D03N010-CTLCardinality-04
FORMULA_NAME CryptoMiner-PT-D03N010-CTLCardinality-05
FORMULA_NAME CryptoMiner-PT-D03N010-CTLCardinality-06
FORMULA_NAME CryptoMiner-PT-D03N010-CTLCardinality-07
FORMULA_NAME CryptoMiner-PT-D03N010-CTLCardinality-08
FORMULA_NAME CryptoMiner-PT-D03N010-CTLCardinality-09
FORMULA_NAME CryptoMiner-PT-D03N010-CTLCardinality-10
FORMULA_NAME CryptoMiner-PT-D03N010-CTLCardinality-11
FORMULA_NAME CryptoMiner-PT-D03N010-CTLCardinality-12
FORMULA_NAME CryptoMiner-PT-D03N010-CTLCardinality-13
FORMULA_NAME CryptoMiner-PT-D03N010-CTLCardinality-14
FORMULA_NAME CryptoMiner-PT-D03N010-CTLCardinality-15
=== Now, execution of the tool begins
BK_START 1679884483787
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=CTLCardinality
BK_BIN_PATH=/home/mcc/BenchKit/bin/
BK_TIME_CONFINEMENT=3600
BK_INPUT=CryptoMiner-PT-D03N010
Not applying reductions.
Model is PT
CTLCardinality PT
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=CTLCardinality.xml --memory=6 --mcc-mode
parse successfull
net created successfully
Net: CryptoMinerB_COL_D3_N10
(NrP: 12 NrTr: 12 NrArc: 34)
parse formulas
formulas created successfully
place and transition orderings generation:0m 0.000sec
net check time: 0m 0.000sec
init dd package: 0m 3.074sec
RS generation: 0m 0.001sec
-> reachability set: #nodes 121 (1.2e+02) #states 10,636 (4)
starting MCC model checker
--------------------------
checking: ~ [AX [EF [~ [state_c0<=3]]]]
normalized: EX [~ [E [true U ~ [state_c0<=3]]]]
abstracting: (state_c0<=3)
states: 10,636 (4)
.-> the formula is TRUE
FORMULA CryptoMiner-PT-D03N010-CTLCardinality-08 TRUE TECHNIQUES SEQUENTIAL_PROCESSING DECISION_DIAGRAMS UNFOLDING_TO_PT
MC time: 0m 0.008sec
checking: AG [EG [[EF [4<=state_c2] & ~ [EX [EX [8<=capacity_c3]]]]]]
normalized: ~ [E [true U ~ [EG [[E [true U 4<=state_c2] & ~ [EX [EX [8<=capacity_c3]]]]]]]]
abstracting: (8<=capacity_c3)
states: 79
..abstracting: (4<=state_c2)
states: 0
.
EG iterations: 1
-> the formula is FALSE
FORMULA CryptoMiner-PT-D03N010-CTLCardinality-11 FALSE TECHNIQUES SEQUENTIAL_PROCESSING DECISION_DIAGRAMS UNFOLDING_TO_PT
MC time: 0m 0.001sec
checking: EX [~ [EF [EF [41<=sum(resource_c3, resource_c2, resource_c1, resource_c0)]]]]
normalized: EX [~ [E [true U E [true U 41<=sum(resource_c3, resource_c2, resource_c1, resource_c0)]]]]
abstracting: (41<=sum(resource_c3, resource_c2, resource_c1, resource_c0))
states: 0
.-> the formula is TRUE
FORMULA CryptoMiner-PT-D03N010-CTLCardinality-05 TRUE TECHNIQUES SEQUENTIAL_PROCESSING DECISION_DIAGRAMS UNFOLDING_TO_PT
MC time: 0m 0.022sec
checking: ~ [[AG [[AF [[state_c0<=0 & E [resource_c1<=7 U resource_c3<=state_c0]]] | [EX [EX [state_c0<=5]] | 1<=state_c2]]] | AG [~ [resource_c2<=4]]]]
normalized: ~ [[~ [E [true U resource_c2<=4]] | ~ [E [true U ~ [[[EX [EX [state_c0<=5]] | 1<=state_c2] | ~ [EG [~ [[E [resource_c1<=7 U resource_c3<=state_c0] & state_c0<=0]]]]]]]]]]
abstracting: (state_c0<=0)
states: 9,635 (3)
abstracting: (resource_c3<=state_c0)
states: 8,793 (3)
abstracting: (resource_c1<=7)
states: 10,557 (4)
..
EG iterations: 2
abstracting: (1<=state_c2)
states: 2,379 (3)
abstracting: (state_c0<=5)
states: 10,636 (4)
..abstracting: (resource_c2<=4)
states: 10,632 (4)
-> the formula is TRUE
FORMULA CryptoMiner-PT-D03N010-CTLCardinality-10 TRUE TECHNIQUES SEQUENTIAL_PROCESSING DECISION_DIAGRAMS UNFOLDING_TO_PT
MC time: 0m 0.005sec
checking: E [1<=state_c0 U AG [AF [[AG [7<=resource_c2] & [[4<=resource_c3 | 5<=capacity_c1] | [state_c3<=resource_c2 & state_c0<=resource_c2]]]]]]
normalized: E [1<=state_c0 U ~ [E [true U EG [~ [[[[4<=resource_c3 | 5<=capacity_c1] | [state_c3<=resource_c2 & state_c0<=resource_c2]] & ~ [E [true U ~ [7<=resource_c2]]]]]]]]]
abstracting: (7<=resource_c2)
states: 0
abstracting: (state_c0<=resource_c2)
states: 9,635 (3)
abstracting: (state_c3<=resource_c2)
states: 8,969 (3)
abstracting: (5<=capacity_c1)
states: 848
abstracting: (4<=resource_c3)
states: 0
EG iterations: 0
abstracting: (1<=state_c0)
states: 1,001 (3)
-> the formula is FALSE
FORMULA CryptoMiner-PT-D03N010-CTLCardinality-09 FALSE TECHNIQUES SEQUENTIAL_PROCESSING DECISION_DIAGRAMS UNFOLDING_TO_PT
MC time: 0m 0.001sec
checking: EF [[EX [AG [EX [resource_c2<=state_c1]]] | [[[~ [[[state_c2<=resource_c0 | resource_c3<=capacity_c1] & EG [resource_c1<=capacity_c2]]] & capacity_c0<=state_c1] & [[capacity_c3<=2 & [AG [1<=resource_c1] | capacity_c2<=6]] | 5<=resource_c2]] & AX [AG [~ [resource_c2<=state_c2]]]]]]
normalized: E [true U [EX [~ [E [true U ~ [EX [resource_c2<=state_c1]]]]] | [~ [EX [E [true U resource_c2<=state_c2]]] & [[[[~ [E [true U ~ [1<=resource_c1]]] | capacity_c2<=6] & capacity_c3<=2] | 5<=resource_c2] & [~ [[EG [resource_c1<=capacity_c2] & [state_c2<=resource_c0 | resource_c3<=capacity_c1]]] & capacity_c0<=state_c1]]]]]
abstracting: (capacity_c0<=state_c1)
states: 4,112 (3)
abstracting: (resource_c3<=capacity_c1)
states: 9,761 (3)
abstracting: (state_c2<=resource_c0)
states: 8,257 (3)
abstracting: (resource_c1<=capacity_c2)
states: 6,405 (3)
......
EG iterations: 6
abstracting: (5<=resource_c2)
states: 4
abstracting: (capacity_c3<=2)
states: 7,967 (3)
abstracting: (capacity_c2<=6)
states: 10,438 (4)
abstracting: (1<=resource_c1)
states: 6,944 (3)
abstracting: (resource_c2<=state_c2)
states: 7,378 (3)
.abstracting: (resource_c2<=state_c1)
states: 7,237 (3)
..-> the formula is TRUE
FORMULA CryptoMiner-PT-D03N010-CTLCardinality-12 TRUE TECHNIQUES SEQUENTIAL_PROCESSING DECISION_DIAGRAMS UNFOLDING_TO_PT
MC time: 0m 0.011sec
checking: [EX [[state_c2<=10 | [~ [AX [AX [resource_c1<=8]]] & [EX [[resource_c1<=capacity_c1 & resource_c0<=resource_c0]] & [AF [5<=capacity_c0] | AF [1<=capacity_c3]]]]]] & ~ [[AG [AF [~ [[10<=state_c0 & 7<=state_c1]]]] & E [AF [~ [5<=resource_c2]] U [~ [[resource_c3<=7 & [state_c1<=resource_c0 | state_c3<=1]]] | AG [EF [resource_c1<=6]]]]]]]
normalized: [~ [[E [~ [EG [5<=resource_c2]] U [~ [E [true U ~ [E [true U resource_c1<=6]]]] | ~ [[[state_c1<=resource_c0 | state_c3<=1] & resource_c3<=7]]]] & ~ [E [true U EG [[10<=state_c0 & 7<=state_c1]]]]]] & EX [[[[[~ [EG [~ [1<=capacity_c3]]] | ~ [EG [~ [5<=capacity_c0]]]] & EX [[resource_c1<=capacity_c1 & resource_c0<=resource_c0]]] & EX [EX [~ [resource_c1<=8]]]] | state_c2<=10]]]
abstracting: (state_c2<=10)
states: 10,636 (4)
abstracting: (resource_c1<=8)
states: 10,611 (4)
..abstracting: (resource_c0<=resource_c0)
states: 10,636 (4)
abstracting: (resource_c1<=capacity_c1)
states: 6,405 (3)
.abstracting: (5<=capacity_c0)
states: 848
.
EG iterations: 1
abstracting: (1<=capacity_c3)
states: 6,944 (3)
.........................
EG iterations: 25
.abstracting: (7<=state_c1)
states: 0
abstracting: (10<=state_c0)
states: 0
.
EG iterations: 1
abstracting: (resource_c3<=7)
states: 10,636 (4)
abstracting: (state_c3<=1)
states: 10,636 (4)
abstracting: (state_c1<=resource_c0)
states: 8,844 (3)
abstracting: (resource_c1<=6)
states: 10,438 (4)
abstracting: (5<=resource_c2)
states: 4
.
EG iterations: 1
-> the formula is FALSE
FORMULA CryptoMiner-PT-D03N010-CTLCardinality-13 FALSE TECHNIQUES SEQUENTIAL_PROCESSING DECISION_DIAGRAMS UNFOLDING_TO_PT
MC time: 0m 0.015sec
checking: [[[[EF [AX [~ [capacity_c0<=2]]] & A [[[EF [state_c0<=9] & ~ [resource_c1<=resource_c2]] & ~ [AF [8<=state_c2]]] U [~ [capacity_c2<=0] | capacity_c1<=10]]] & [EX [AF [~ [state_c0<=2]]] & EG [[[EX [9<=capacity_c0] & [capacity_c0<=2 | resource_c2<=0]] | AG [resource_c1<=capacity_c3]]]]] | AX [~ [AG [resource_c1<=1]]]] & E [3<=resource_c0 U AF [AF [[[resource_c1<=capacity_c1 | 7<=capacity_c1] | capacity_c0<=6]]]]]
normalized: [[[[[~ [EG [~ [[~ [capacity_c2<=0] | capacity_c1<=10]]]] & ~ [E [~ [[~ [capacity_c2<=0] | capacity_c1<=10]] U [~ [[EG [~ [8<=state_c2]] & [~ [resource_c1<=resource_c2] & E [true U state_c0<=9]]]] & ~ [[~ [capacity_c2<=0] | capacity_c1<=10]]]]]] & E [true U ~ [EX [capacity_c0<=2]]]] & [EG [[~ [E [true U ~ [resource_c1<=capacity_c3]]] | [[capacity_c0<=2 | resource_c2<=0] & EX [9<=capacity_c0]]]] & EX [~ [EG [state_c0<=2]]]]] | ~ [EX [~ [E [true U ~ [resource_c1<=1]]]]]] & E [3<=resource_c0 U ~ [EG [EG [~ [[[resource_c1<=capacity_c1 | 7<=capacity_c1] | capacity_c0<=6]]]]]]]
abstracting: (capacity_c0<=6)
states: 10,438 (4)
abstracting: (7<=capacity_c1)
states: 198
abstracting: (resource_c1<=capacity_c1)
states: 6,405 (3)
.........
EG iterations: 9
.
EG iterations: 1
abstracting: (3<=resource_c0)
states: 0
abstracting: (resource_c1<=1)
states: 6,247 (3)
.abstracting: (state_c0<=2)
states: 10,636 (4)
EG iterations: 0
.abstracting: (9<=capacity_c0)
states: 25
.abstracting: (resource_c2<=0)
states: 6,742 (3)
abstracting: (capacity_c0<=2)
states: 7,967 (3)
abstracting: (resource_c1<=capacity_c3)
states: 6,405 (3)
......
EG iterations: 6
abstracting: (capacity_c0<=2)
states: 7,967 (3)
.abstracting: (capacity_c1<=10)
states: 10,636 (4)
abstracting: (capacity_c2<=0)
states: 3,692 (3)
abstracting: (state_c0<=9)
states: 10,636 (4)
abstracting: (resource_c1<=resource_c2)
states: 4,906 (3)
abstracting: (8<=state_c2)
states: 0
EG iterations: 0
abstracting: (capacity_c1<=10)
states: 10,636 (4)
abstracting: (capacity_c2<=0)
states: 3,692 (3)
abstracting: (capacity_c1<=10)
states: 10,636 (4)
abstracting: (capacity_c2<=0)
states: 3,692 (3)
.
EG iterations: 1
-> the formula is FALSE
FORMULA CryptoMiner-PT-D03N010-CTLCardinality-15 FALSE TECHNIQUES SEQUENTIAL_PROCESSING DECISION_DIAGRAMS UNFOLDING_TO_PT
MC time: 0m 0.010sec
checking: EF [E [E [~ [[AF [sum(state_c3, state_c2, state_c1, state_c0)<=47] | EX [sum(resource_c3, resource_c2, resource_c1, resource_c0)<=1]]] U ~ [[~ [sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=89] & EG [45<=sum(state_c3, state_c2, state_c1, state_c0)]]]] U 65<=sum(state_c3, state_c2, state_c1, state_c0)]]
normalized: E [true U E [E [~ [[EX [sum(resource_c3, resource_c2, resource_c1, resource_c0)<=1] | ~ [EG [~ [sum(state_c3, state_c2, state_c1, state_c0)<=47]]]]] U ~ [[~ [sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=89] & EG [45<=sum(state_c3, state_c2, state_c1, state_c0)]]]] U 65<=sum(state_c3, state_c2, state_c1, state_c0)]]
abstracting: (65<=sum(state_c3, state_c2, state_c1, state_c0))
states: 0
abstracting: (45<=sum(state_c3, state_c2, state_c1, state_c0))
states: 0
.
EG iterations: 1
abstracting: (sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=89)
states: 10,636 (4)
abstracting: (sum(state_c3, state_c2, state_c1, state_c0)<=47)
states: 10,636 (4)
.
EG iterations: 1
abstracting: (sum(resource_c3, resource_c2, resource_c1, resource_c0)<=1)
states: 3,718 (3)
.-> the formula is FALSE
FORMULA CryptoMiner-PT-D03N010-CTLCardinality-03 FALSE TECHNIQUES SEQUENTIAL_PROCESSING DECISION_DIAGRAMS UNFOLDING_TO_PT
MC time: 0m 0.118sec
checking: A [[E [state_c1<=resource_c3 U AF [EG [9<=state_c1]]] & [[~ [resource_c0<=0] & [[A [resource_c0<=capacity_c0 U 9<=capacity_c2] & EX [2<=state_c1]] | [[[state_c0<=capacity_c2 & state_c2<=state_c2] | AX [capacity_c3<=resource_c2]] | [resource_c1<=resource_c1 | EX [capacity_c1<=resource_c1]]]]] & ~ [state_c2<=resource_c1]]] U AG [[[EF [state_c2<=capacity_c0] & EF [resource_c1<=state_c1]] & EF [AG [resource_c1<=6]]]]]
normalized: [~ [EG [E [true U ~ [[E [true U ~ [E [true U ~ [resource_c1<=6]]]] & [E [true U resource_c1<=state_c1] & E [true U state_c2<=capacity_c0]]]]]]] & ~ [E [E [true U ~ [[E [true U ~ [E [true U ~ [resource_c1<=6]]]] & [E [true U resource_c1<=state_c1] & E [true U state_c2<=capacity_c0]]]]] U [~ [[[[[[[~ [E [~ [9<=capacity_c2] U [~ [resource_c0<=capacity_c0] & ~ [9<=capacity_c2]]]] & ~ [EG [~ [9<=capacity_c2]]]] & EX [2<=state_c1]] | [[EX [capacity_c1<=resource_c1] | resource_c1<=resource_c1] | [~ [EX [~ [capacity_c3<=resource_c2]]] | [state_c0<=capacity_c2 & state_c2<=state_c2]]]] & ~ [resource_c0<=0]] & ~ [state_c2<=resource_c1]] & E [state_c1<=resource_c3 U ~ [EG [~ [EG [9<=state_c1]]]]]]] & E [true U ~ [[E [true U ~ [E [true U ~ [resource_c1<=6]]]] & [E [true U resource_c1<=state_c1] & E [true U state_c2<=capacity_c0]]]]]]]]]
abstracting: (state_c2<=capacity_c0)
states: 9,805 (3)
abstracting: (resource_c1<=state_c1)
states: 4,112 (3)
abstracting: (resource_c1<=6)
states: 10,438 (4)
abstracting: (9<=state_c1)
states: 0
.
EG iterations: 1
EG iterations: 0
abstracting: (state_c1<=resource_c3)
states: 8,844 (3)
abstracting: (state_c2<=resource_c1)
states: 9,805 (3)
abstracting: (resource_c0<=0)
states: 9,930 (3)
abstracting: (state_c2<=state_c2)
states: 10,636 (4)
abstracting: (state_c0<=capacity_c2)
states: 10,350 (4)
abstracting: (capacity_c3<=resource_c2)
states: 4,906 (3)
.abstracting: (resource_c1<=resource_c1)
states: 10,636 (4)
abstracting: (capacity_c1<=resource_c1)
states: 6,405 (3)
.abstracting: (2<=state_c1)
states: 0
.abstracting: (9<=capacity_c2)
states: 25
.
EG iterations: 1
abstracting: (9<=capacity_c2)
states: 25
abstracting: (resource_c0<=capacity_c0)
states: 10,296 (4)
abstracting: (9<=capacity_c2)
states: 25
abstracting: (state_c2<=capacity_c0)
states: 9,805 (3)
abstracting: (resource_c1<=state_c1)
states: 4,112 (3)
abstracting: (resource_c1<=6)
states: 10,438 (4)
abstracting: (state_c2<=capacity_c0)
states: 9,805 (3)
abstracting: (resource_c1<=state_c1)
states: 4,112 (3)
abstracting: (resource_c1<=6)
states: 10,438 (4)
.
EG iterations: 1
-> the formula is FALSE
FORMULA CryptoMiner-PT-D03N010-CTLCardinality-14 FALSE TECHNIQUES SEQUENTIAL_PROCESSING DECISION_DIAGRAMS UNFOLDING_TO_PT
MC time: 0m 0.013sec
checking: EF [EX [[~ [A [[sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=sum(resource_c3, resource_c2, resource_c1, resource_c0) | sum(state_c3, state_c2, state_c1, state_c0)<=sum(state_c3, state_c2, state_c1, state_c0)] U [sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=sum(state_c3, state_c2, state_c1, state_c0) | sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=34]]] | 89<=sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)]]]
normalized: E [true U EX [[~ [[~ [EG [~ [[sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=sum(state_c3, state_c2, state_c1, state_c0) | sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=34]]]] & ~ [E [~ [[sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=sum(state_c3, state_c2, state_c1, state_c0) | sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=34]] U [~ [[sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=sum(resource_c3, resource_c2, resource_c1, resource_c0) | sum(state_c3, state_c2, state_c1, state_c0)<=sum(state_c3, state_c2, state_c1, state_c0)]] & ~ [[sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=sum(state_c3, state_c2, state_c1, state_c0) | sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=34]]]]]]] | 89<=sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)]]]
abstracting: (89<=sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0))
states: 0
abstracting: (sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=34)
states: 10,636 (4)
abstracting: (sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=sum(state_c3, state_c2, state_c1, state_c0))
states: 211
abstracting: (sum(state_c3, state_c2, state_c1, state_c0)<=sum(state_c3, state_c2, state_c1, state_c0))
states: 10,636 (4)
abstracting: (sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=sum(resource_c3, resource_c2, resource_c1, resource_c0))
states: 2,243 (3)
abstracting: (sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=34)
states: 10,636 (4)
abstracting: (sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=sum(state_c3, state_c2, state_c1, state_c0))
states: 211
abstracting: (sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=34)
states: 10,636 (4)
abstracting: (sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=sum(state_c3, state_c2, state_c1, state_c0))
states: 211
.
EG iterations: 1
.-> the formula is FALSE
FORMULA CryptoMiner-PT-D03N010-CTLCardinality-01 FALSE TECHNIQUES SEQUENTIAL_PROCESSING DECISION_DIAGRAMS UNFOLDING_TO_PT
MC time: 0m 4.458sec
checking: ~ [E [EF [~ [[A [sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=20 U sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=sum(state_c3, state_c2, state_c1, state_c0)] | [~ [sum(resource_c3, resource_c2, resource_c1, resource_c0)<=98] & sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=sum(state_c3, state_c2, state_c1, state_c0)]]]] U [[~ [A [sum(resource_c3, resource_c2, resource_c1, resource_c0)<=24 U 17<=sum(resource_c3, resource_c2, resource_c1, resource_c0)]] & 37<=sum(resource_c3, resource_c2, resource_c1, resource_c0)] | AG [75<=sum(resource_c3, resource_c2, resource_c1, resource_c0)]]]]
normalized: ~ [E [E [true U ~ [[[~ [sum(resource_c3, resource_c2, resource_c1, resource_c0)<=98] & sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=sum(state_c3, state_c2, state_c1, state_c0)] | [~ [EG [~ [sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=sum(state_c3, state_c2, state_c1, state_c0)]]] & ~ [E [~ [sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=sum(state_c3, state_c2, state_c1, state_c0)] U [~ [sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=20] & ~ [sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=sum(state_c3, state_c2, state_c1, state_c0)]]]]]]]] U [~ [E [true U ~ [75<=sum(resource_c3, resource_c2, resource_c1, resource_c0)]]] | [~ [[~ [EG [~ [17<=sum(resource_c3, resource_c2, resource_c1, resource_c0)]]] & ~ [E [~ [17<=sum(resource_c3, resource_c2, resource_c1, resource_c0)] U [~ [sum(resource_c3, resource_c2, resource_c1, resource_c0)<=24] & ~ [17<=sum(resource_c3, resource_c2, resource_c1, resource_c0)]]]]]] & 37<=sum(resource_c3, resource_c2, resource_c1, resource_c0)]]]]
abstracting: (37<=sum(resource_c3, resource_c2, resource_c1, resource_c0))
states: 0
abstracting: (17<=sum(resource_c3, resource_c2, resource_c1, resource_c0))
states: 0
abstracting: (sum(resource_c3, resource_c2, resource_c1, resource_c0)<=24)
states: 10,636 (4)
abstracting: (17<=sum(resource_c3, resource_c2, resource_c1, resource_c0))
states: 0
abstracting: (17<=sum(resource_c3, resource_c2, resource_c1, resource_c0))
states: 0
EG iterations: 0
abstracting: (75<=sum(resource_c3, resource_c2, resource_c1, resource_c0))
states: 0
abstracting: (sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=sum(state_c3, state_c2, state_c1, state_c0))
states: 211
abstracting: (sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=20)
states: 10,636 (4)
abstracting: (sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=sum(state_c3, state_c2, state_c1, state_c0))
states: 211
abstracting: (sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=sum(state_c3, state_c2, state_c1, state_c0))
states: 211
.
EG iterations: 1
abstracting: (sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=sum(state_c3, state_c2, state_c1, state_c0))
states: 211
abstracting: (sum(resource_c3, resource_c2, resource_c1, resource_c0)<=98)
states: 10,636 (4)
-> the formula is TRUE
FORMULA CryptoMiner-PT-D03N010-CTLCardinality-02 TRUE TECHNIQUES SEQUENTIAL_PROCESSING DECISION_DIAGRAMS UNFOLDING_TO_PT
MC time: 0m 0.139sec
checking: EF [[~ [sum(resource_c3, resource_c2, resource_c1, resource_c0)<=sum(resource_c3, resource_c2, resource_c1, resource_c0)] & A [AG [[[sum(state_c3, state_c2, state_c1, state_c0)<=sum(state_c3, state_c2, state_c1, state_c0) & sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=sum(resource_c3, resource_c2, resource_c1, resource_c0)] & A [48<=sum(state_c3, state_c2, state_c1, state_c0) U 52<=sum(resource_c3, resource_c2, resource_c1, resource_c0)]]] U [~ [EX [sum(resource_c3, resource_c2, resource_c1, resource_c0)<=34]] & ~ [sum(state_c3, state_c2, state_c1, state_c0)<=64]]]]]
normalized: E [true U [[~ [EG [~ [[~ [sum(state_c3, state_c2, state_c1, state_c0)<=64] & ~ [EX [sum(resource_c3, resource_c2, resource_c1, resource_c0)<=34]]]]]] & ~ [E [~ [[~ [sum(state_c3, state_c2, state_c1, state_c0)<=64] & ~ [EX [sum(resource_c3, resource_c2, resource_c1, resource_c0)<=34]]]] U [E [true U ~ [[[~ [EG [~ [52<=sum(resource_c3, resource_c2, resource_c1, resource_c0)]]] & ~ [E [~ [52<=sum(resource_c3, resource_c2, resource_c1, resource_c0)] U [~ [48<=sum(state_c3, state_c2, state_c1, state_c0)] & ~ [52<=sum(resource_c3, resource_c2, resource_c1, resource_c0)]]]]] & [sum(state_c3, state_c2, state_c1, state_c0)<=sum(state_c3, state_c2, state_c1, state_c0) & sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=sum(resource_c3, resource_c2, resource_c1, resource_c0)]]]] & ~ [[~ [sum(state_c3, state_c2, state_c1, state_c0)<=64] & ~ [EX [sum(resource_c3, resource_c2, resource_c1, resource_c0)<=34]]]]]]]] & ~ [sum(resource_c3, resource_c2, resource_c1, resource_c0)<=sum(resource_c3, resource_c2, resource_c1, resource_c0)]]]
abstracting: (sum(resource_c3, resource_c2, resource_c1, resource_c0)<=sum(resource_c3, resource_c2, resource_c1, resource_c0))
states: 10,636 (4)
abstracting: (sum(resource_c3, resource_c2, resource_c1, resource_c0)<=34)
states: 10,636 (4)
.abstracting: (sum(state_c3, state_c2, state_c1, state_c0)<=64)
states: 10,636 (4)
abstracting: (sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=sum(resource_c3, resource_c2, resource_c1, resource_c0))
states: 2,243 (3)
abstracting: (sum(state_c3, state_c2, state_c1, state_c0)<=sum(state_c3, state_c2, state_c1, state_c0))
states: 10,636 (4)
abstracting: (52<=sum(resource_c3, resource_c2, resource_c1, resource_c0))
states: 0
abstracting: (48<=sum(state_c3, state_c2, state_c1, state_c0))
states: 0
abstracting: (52<=sum(resource_c3, resource_c2, resource_c1, resource_c0))
states: 0
abstracting: (52<=sum(resource_c3, resource_c2, resource_c1, resource_c0))
states: 0
EG iterations: 0
abstracting: (sum(resource_c3, resource_c2, resource_c1, resource_c0)<=34)
states: 10,636 (4)
.abstracting: (sum(state_c3, state_c2, state_c1, state_c0)<=64)
states: 10,636 (4)
abstracting: (sum(resource_c3, resource_c2, resource_c1, resource_c0)<=34)
states: 10,636 (4)
.abstracting: (sum(state_c3, state_c2, state_c1, state_c0)<=64)
states: 10,636 (4)
EG iterations: 0
-> the formula is FALSE
FORMULA CryptoMiner-PT-D03N010-CTLCardinality-07 FALSE TECHNIQUES SEQUENTIAL_PROCESSING DECISION_DIAGRAMS UNFOLDING_TO_PT
MC time: 0m 0.087sec
checking: [EF [EX [[E [AX [sum(resource_c3, resource_c2, resource_c1, resource_c0)<=40] U 23<=sum(state_c3, state_c2, state_c1, state_c0)] | [A [sum(state_c3, state_c2, state_c1, state_c0)<=5 U 70<=sum(resource_c3, resource_c2, resource_c1, resource_c0)] & [A [sum(resource_c3, resource_c2, resource_c1, resource_c0)<=sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0) U sum(resource_c3, resource_c2, resource_c1, resource_c0)<=32] & ~ [sum(state_c3, state_c2, state_c1, state_c0)<=29]]]]]] | A [EX [[sum(state_c3, state_c2, state_c1, state_c0)<=sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0) & 21<=sum(state_c3, state_c2, state_c1, state_c0)]] U ~ [[A [~ [AF [sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=sum(state_c3, state_c2, state_c1, state_c0)]] U sum(resource_c3, resource_c2, resource_c1, resource_c0)<=13] | [EG [~ [sum(resource_c3, resource_c2, resource_c1, resource_c0)<=39]] | 61<=sum(resource_c3, resource_c2, resource_c1, resource_c0)]]]]]
normalized: [[~ [EG [[[EG [~ [sum(resource_c3, resource_c2, resource_c1, resource_c0)<=39]] | 61<=sum(resource_c3, resource_c2, resource_c1, resource_c0)] | [~ [EG [~ [sum(resource_c3, resource_c2, resource_c1, resource_c0)<=13]]] & ~ [E [~ [sum(resource_c3, resource_c2, resource_c1, resource_c0)<=13] U [~ [EG [~ [sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=sum(state_c3, state_c2, state_c1, state_c0)]]] & ~ [sum(resource_c3, resource_c2, resource_c1, resource_c0)<=13]]]]]]]] & ~ [E [[[EG [~ [sum(resource_c3, resource_c2, resource_c1, resource_c0)<=39]] | 61<=sum(resource_c3, resource_c2, resource_c1, resource_c0)] | [~ [EG [~ [sum(resource_c3, resource_c2, resource_c1, resource_c0)<=13]]] & ~ [E [~ [sum(resource_c3, resource_c2, resource_c1, resource_c0)<=13] U [~ [EG [~ [sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=sum(state_c3, state_c2, state_c1, state_c0)]]] & ~ [sum(resource_c3, resource_c2, resource_c1, resource_c0)<=13]]]]]] U [~ [EX [[sum(state_c3, state_c2, state_c1, state_c0)<=sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0) & 21<=sum(state_c3, state_c2, state_c1, state_c0)]]] & [[EG [~ [sum(resource_c3, resource_c2, resource_c1, resource_c0)<=39]] | 61<=sum(resource_c3, resource_c2, resource_c1, resource_c0)] | [~ [EG [~ [sum(resource_c3, resource_c2, resource_c1, resource_c0)<=13]]] & ~ [E [~ [sum(resource_c3, resource_c2, resource_c1, resource_c0)<=13] U [~ [EG [~ [sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=sum(state_c3, state_c2, state_c1, state_c0)]]] & ~ [sum(resource_c3, resource_c2, resource_c1, resource_c0)<=13]]]]]]]]]] | E [true U EX [[[[~ [sum(state_c3, state_c2, state_c1, state_c0)<=29] & [~ [EG [~ [sum(resource_c3, resource_c2, resource_c1, resource_c0)<=32]]] & ~ [E [~ [sum(resource_c3, resource_c2, resource_c1, resource_c0)<=32] U [~ [sum(resource_c3, resource_c2, resource_c1, resource_c0)<=sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)] & ~ [sum(resource_c3, resource_c2, resource_c1, resource_c0)<=32]]]]]] & [~ [EG [~ [70<=sum(resource_c3, resource_c2, resource_c1, resource_c0)]]] & ~ [E [~ [70<=sum(resource_c3, resource_c2, resource_c1, resource_c0)] U [~ [sum(state_c3, state_c2, state_c1, state_c0)<=5] & ~ [70<=sum(resource_c3, resource_c2, resource_c1, resource_c0)]]]]]] | E [~ [EX [~ [sum(resource_c3, resource_c2, resource_c1, resource_c0)<=40]]] U 23<=sum(state_c3, state_c2, state_c1, state_c0)]]]]]
abstracting: (23<=sum(state_c3, state_c2, state_c1, state_c0))
states: 0
abstracting: (sum(resource_c3, resource_c2, resource_c1, resource_c0)<=40)
states: 10,636 (4)
.abstracting: (70<=sum(resource_c3, resource_c2, resource_c1, resource_c0))
states: 0
abstracting: (sum(state_c3, state_c2, state_c1, state_c0)<=5)
states: 10,636 (4)
abstracting: (70<=sum(resource_c3, resource_c2, resource_c1, resource_c0))
states: 0
abstracting: (70<=sum(resource_c3, resource_c2, resource_c1, resource_c0))
states: 0
EG iterations: 0
abstracting: (sum(resource_c3, resource_c2, resource_c1, resource_c0)<=32)
states: 10,636 (4)
abstracting: (sum(resource_c3, resource_c2, resource_c1, resource_c0)<=sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0))
states: 9,098 (3)
abstracting: (sum(resource_c3, resource_c2, resource_c1, resource_c0)<=32)
states: 10,636 (4)
abstracting: (sum(resource_c3, resource_c2, resource_c1, resource_c0)<=32)
states: 10,636 (4)
.
EG iterations: 1
abstracting: (sum(state_c3, state_c2, state_c1, state_c0)<=29)
states: 10,636 (4)
.abstracting: (sum(resource_c3, resource_c2, resource_c1, resource_c0)<=13)
states: 10,636 (4)
abstracting: (sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=sum(state_c3, state_c2, state_c1, state_c0))
states: 211
.
EG iterations: 1
abstracting: (sum(resource_c3, resource_c2, resource_c1, resource_c0)<=13)
states: 10,636 (4)
abstracting: (sum(resource_c3, resource_c2, resource_c1, resource_c0)<=13)
states: 10,636 (4)
.
EG iterations: 1
abstracting: (61<=sum(resource_c3, resource_c2, resource_c1, resource_c0))
states: 0
abstracting: (sum(resource_c3, resource_c2, resource_c1, resource_c0)<=39)
states: 10,636 (4)
.
EG iterations: 1
abstracting: (21<=sum(state_c3, state_c2, state_c1, state_c0))
states: 0
abstracting: (sum(state_c3, state_c2, state_c1, state_c0)<=sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0))
states: 10,592 (4)
.abstracting: (sum(resource_c3, resource_c2, resource_c1, resource_c0)<=13)
states: 10,636 (4)
abstracting: (sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=sum(state_c3, state_c2, state_c1, state_c0))
states: 211
.
EG iterations: 1
abstracting: (sum(resource_c3, resource_c2, resource_c1, resource_c0)<=13)
states: 10,636 (4)
abstracting: (sum(resource_c3, resource_c2, resource_c1, resource_c0)<=13)
states: 10,636 (4)
.
EG iterations: 1
abstracting: (61<=sum(resource_c3, resource_c2, resource_c1, resource_c0))
states: 0
abstracting: (sum(resource_c3, resource_c2, resource_c1, resource_c0)<=39)
states: 10,636 (4)
.
EG iterations: 1
abstracting: (sum(resource_c3, resource_c2, resource_c1, resource_c0)<=13)
states: 10,636 (4)
abstracting: (sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=sum(state_c3, state_c2, state_c1, state_c0))
states: 211
.
EG iterations: 1
abstracting: (sum(resource_c3, resource_c2, resource_c1, resource_c0)<=13)
states: 10,636 (4)
abstracting: (sum(resource_c3, resource_c2, resource_c1, resource_c0)<=13)
states: 10,636 (4)
.
EG iterations: 1
abstracting: (61<=sum(resource_c3, resource_c2, resource_c1, resource_c0))
states: 0
abstracting: (sum(resource_c3, resource_c2, resource_c1, resource_c0)<=39)
states: 10,636 (4)
.
EG iterations: 1
EG iterations: 0
-> the formula is FALSE
FORMULA CryptoMiner-PT-D03N010-CTLCardinality-00 FALSE TECHNIQUES SEQUENTIAL_PROCESSING DECISION_DIAGRAMS UNFOLDING_TO_PT
MC time: 0m 4.621sec
checking: E [[[[EG [[~ [95<=sum(resource_c3, resource_c2, resource_c1, resource_c0)] | sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=sum(state_c3, state_c2, state_c1, state_c0)]] & EG [[[sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=sum(resource_c3, resource_c2, resource_c1, resource_c0) & sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=sum(resource_c3, resource_c2, resource_c1, resource_c0)] & [sum(resource_c3, resource_c2, resource_c1, resource_c0)<=sum(state_c3, state_c2, state_c1, state_c0) & 80<=sum(state_c3, state_c2, state_c1, state_c0)]]]] & [sum(state_c3, state_c2, state_c1, state_c0)<=24 | [55<=sum(resource_c3, resource_c2, resource_c1, resource_c0) | [EX [sum(state_c3, state_c2, state_c1, state_c0)<=94] | 72<=sum(resource_c3, resource_c2, resource_c1, resource_c0)]]]] | AG [EX [EX [sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)]]]] U sum(state_c3, state_c2, state_c1, state_c0)<=sum(resource_c3, resource_c2, resource_c1, resource_c0)]
normalized: E [[~ [E [true U ~ [EX [EX [sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)]]]]] | [[[[EX [sum(state_c3, state_c2, state_c1, state_c0)<=94] | 72<=sum(resource_c3, resource_c2, resource_c1, resource_c0)] | 55<=sum(resource_c3, resource_c2, resource_c1, resource_c0)] | sum(state_c3, state_c2, state_c1, state_c0)<=24] & [EG [[[sum(resource_c3, resource_c2, resource_c1, resource_c0)<=sum(state_c3, state_c2, state_c1, state_c0) & 80<=sum(state_c3, state_c2, state_c1, state_c0)] & [sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=sum(resource_c3, resource_c2, resource_c1, resource_c0) & sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=sum(resource_c3, resource_c2, resource_c1, resource_c0)]]] & EG [[~ [95<=sum(resource_c3, resource_c2, resource_c1, resource_c0)] | sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=sum(state_c3, state_c2, state_c1, state_c0)]]]]] U sum(state_c3, state_c2, state_c1, state_c0)<=sum(resource_c3, resource_c2, resource_c1, resource_c0)]
abstracting: (sum(state_c3, state_c2, state_c1, state_c0)<=sum(resource_c3, resource_c2, resource_c1, resource_c0))
states: 9,492 (3)
abstracting: (sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=sum(state_c3, state_c2, state_c1, state_c0))
states: 211
abstracting: (95<=sum(resource_c3, resource_c2, resource_c1, resource_c0))
states: 0
EG iterations: 0
abstracting: (sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=sum(resource_c3, resource_c2, resource_c1, resource_c0))
states: 2,243 (3)
abstracting: (sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=sum(resource_c3, resource_c2, resource_c1, resource_c0))
states: 2,243 (3)
abstracting: (80<=sum(state_c3, state_c2, state_c1, state_c0))
states: 0
abstracting: (sum(resource_c3, resource_c2, resource_c1, resource_c0)<=sum(state_c3, state_c2, state_c1, state_c0))
states: 3,129 (3)
.
EG iterations: 1
abstracting: (sum(state_c3, state_c2, state_c1, state_c0)<=24)
states: 10,636 (4)
abstracting: (55<=sum(resource_c3, resource_c2, resource_c1, resource_c0))
states: 0
abstracting: (72<=sum(resource_c3, resource_c2, resource_c1, resource_c0))
states: 0
abstracting: (sum(state_c3, state_c2, state_c1, state_c0)<=94)
states: 10,636 (4)
.abstracting: (sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0))
states: 10,636 (4)
..-> the formula is FALSE
FORMULA CryptoMiner-PT-D03N010-CTLCardinality-04 FALSE TECHNIQUES SEQUENTIAL_PROCESSING DECISION_DIAGRAMS UNFOLDING_TO_PT
MC time: 0m 0.212sec
checking: EF [[[[[EF [40<=sum(state_c3, state_c2, state_c1, state_c0)] & sum(resource_c3, resource_c2, resource_c1, resource_c0)<=sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)] | E [~ [[sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0) | sum(resource_c3, resource_c2, resource_c1, resource_c0)<=sum(state_c3, state_c2, state_c1, state_c0)]] U AG [72<=sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)]]] | ~ [sum(state_c3, state_c2, state_c1, state_c0)<=sum(state_c3, state_c2, state_c1, state_c0)]] | ~ [[[sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=11 | AX [[sum(resource_c3, resource_c2, resource_c1, resource_c0)<=81 | sum(state_c3, state_c2, state_c1, state_c0)<=27]]] | E [E [sum(resource_c3, resource_c2, resource_c1, resource_c0)<=sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0) U 57<=sum(state_c3, state_c2, state_c1, state_c0)] U E [sum(resource_c3, resource_c2, resource_c1, resource_c0)<=sum(resource_c3, resource_c2, resource_c1, resource_c0) U 51<=sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)]]]]]]
normalized: E [true U [~ [[E [E [sum(resource_c3, resource_c2, resource_c1, resource_c0)<=sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0) U 57<=sum(state_c3, state_c2, state_c1, state_c0)] U E [sum(resource_c3, resource_c2, resource_c1, resource_c0)<=sum(resource_c3, resource_c2, resource_c1, resource_c0) U 51<=sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)]] | [~ [EX [~ [[sum(resource_c3, resource_c2, resource_c1, resource_c0)<=81 | sum(state_c3, state_c2, state_c1, state_c0)<=27]]]] | sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=11]]] | [~ [sum(state_c3, state_c2, state_c1, state_c0)<=sum(state_c3, state_c2, state_c1, state_c0)] | [E [~ [[sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0) | sum(resource_c3, resource_c2, resource_c1, resource_c0)<=sum(state_c3, state_c2, state_c1, state_c0)]] U ~ [E [true U ~ [72<=sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)]]]] | [E [true U 40<=sum(state_c3, state_c2, state_c1, state_c0)] & sum(resource_c3, resource_c2, resource_c1, resource_c0)<=sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)]]]]]
abstracting: (sum(resource_c3, resource_c2, resource_c1, resource_c0)<=sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0))
states: 9,098 (3)
abstracting: (40<=sum(state_c3, state_c2, state_c1, state_c0))
states: 0
abstracting: (72<=sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0))
states: 0
abstracting: (sum(resource_c3, resource_c2, resource_c1, resource_c0)<=sum(state_c3, state_c2, state_c1, state_c0))
states: 3,129 (3)
abstracting: (sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0))
states: 10,636 (4)
abstracting: (sum(state_c3, state_c2, state_c1, state_c0)<=sum(state_c3, state_c2, state_c1, state_c0))
states: 10,636 (4)
abstracting: (sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0)<=11)
states: 10,636 (4)
abstracting: (sum(state_c3, state_c2, state_c1, state_c0)<=27)
states: 10,636 (4)
abstracting: (sum(resource_c3, resource_c2, resource_c1, resource_c0)<=81)
states: 10,636 (4)
.abstracting: (51<=sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0))
states: 0
abstracting: (sum(resource_c3, resource_c2, resource_c1, resource_c0)<=sum(resource_c3, resource_c2, resource_c1, resource_c0))
states: 10,636 (4)
abstracting: (57<=sum(state_c3, state_c2, state_c1, state_c0))
states: 0
abstracting: (sum(resource_c3, resource_c2, resource_c1, resource_c0)<=sum(capacity_c3, capacity_c2, capacity_c1, capacity_c0))
states: 9,098 (3)
-> the formula is FALSE
FORMULA CryptoMiner-PT-D03N010-CTLCardinality-06 FALSE TECHNIQUES SEQUENTIAL_PROCESSING DECISION_DIAGRAMS UNFOLDING_TO_PT
MC time: 0m 0.156sec
totally nodes used: 27121 (2.7e+04)
number of garbage collections: 0
fire ops cache: hits/miss/sum: 71783 52020 123803
used/not used/entry size/cache size: 63987 67044877 16 1024MB
basic ops cache: hits/miss/sum: 42680 31091 73771
used/not used/entry size/cache size: 60175 16717041 12 192MB
unary ops cache: hits/miss/sum: 0 0 0
used/not used/entry size/cache size: 0 16777216 8 128MB
abstract ops cache: hits/miss/sum: 0 2392737 2392737
used/not used/entry size/cache size: 1 16777215 12 192MB
state nr cache: hits/miss/sum: 3807 2123 5930
used/not used/entry size/cache size: 2123 8386485 32 256MB
max state cache: hits/miss/sum: 0 0 0
used/not used/entry size/cache size: 0 8388608 32 256MB
uniqueHash elements/entry size/size: 67108864 4 256MB
0 67084233
1 22957
2 1399
3 138
4 64
5 20
6 9
7 4
8 3
9 4
>= 10 33
Total processing time: 0m14.678sec
BK_STOP 1679884498513
--------------------
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 0.001sec
iterations count:223 (18), effective:54 (4)
initing FirstDep: 0m 0.000sec
iterations count:12 (1), effective:0 (0)
iterations count:52 (4), effective:9 (0)
iterations count:288 (24), effective:93 (7)
iterations count:12 (1), effective:0 (0)
iterations count:12 (1), effective:0 (0)
iterations count:12 (1), effective:0 (0)
iterations count:77 (6), effective:25 (2)
iterations count:51 (4), effective:11 (0)
iterations count:213 (17), effective:70 (5)
iterations count:216 (18), effective:71 (5)
iterations count:38 (3), effective:10 (0)
iterations count:114 (9), effective:37 (3)
iterations count:40 (3), effective:11 (0)
iterations count:12 (1), effective:0 (0)
iterations count:34 (2), effective:8 (0)
iterations count:32 (2), effective:13 (1)
iterations count:194 (16), effective:61 (5)
iterations count:12 (1), effective:0 (0)
iterations count:12 (1), effective:0 (0)
iterations count:22 (1), effective:4 (0)
iterations count:66 (5), effective:21 (1)
iterations count:89 (7), effective:28 (2)
iterations count:40 (3), effective:11 (0)
iterations count:81 (6), effective:25 (2)
iterations count:94 (7), effective:25 (2)
iterations count:22 (1), effective:4 (0)
iterations count:66 (5), effective:21 (1)
iterations count:89 (7), effective:28 (2)
iterations count:40 (3), effective:11 (0)
iterations count:81 (6), effective:25 (2)
iterations count:12 (1), effective:0 (0)
iterations count:22 (1), effective:4 (0)
iterations count:66 (5), effective:21 (1)
iterations count:89 (7), effective:28 (2)
iterations count:40 (3), effective:11 (0)
iterations count:81 (6), effective:25 (2)
iterations count:12 (1), effective:0 (0)
iterations count:24 (2), effective:4 (0)
iterations count:12 (1), effective:0 (0)
iterations count:12 (1), effective:0 (0)
iterations count:12 (1), effective:0 (0)
iterations count:12 (1), effective:0 (0)
iterations count:335 (27), effective:109 (9)
iterations count:22 (1), effective:3 (0)
iterations count:12 (1), effective:0 (0)
Sequence of Actions to be Executed by the VM
This is useful if one wants to reexecute the tool in the VM from the submitted image disk.
set -x
# this is for BenchKit: configuration of major elements for the test
export BK_INPUT="CryptoMiner-PT-D03N010"
export BK_EXAMINATION="CTLCardinality"
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 CryptoMiner-PT-D03N010, examination is CTLCardinality"
echo " Time confinement is $BK_TIME_CONFINEMENT seconds"
echo " Memory confinement is 16384 MBytes"
echo " Number of cores is 1"
echo " Run identifier is r513-tall-167987240700153"
echo "====================================================================="
echo
echo "--------------------"
echo "preparation of the directory to be used:"
tar xzf /home/mcc/BenchKit/INPUTS/CryptoMiner-PT-D03N010.tgz
mv CryptoMiner-PT-D03N010 execution
cd execution
if [ "CTLCardinality" = "ReachabilityDeadlock" ] || [ "CTLCardinality" = "UpperBounds" ] || [ "CTLCardinality" = "QuasiLiveness" ] || [ "CTLCardinality" = "StableMarking" ] || [ "CTLCardinality" = "Liveness" ] || [ "CTLCardinality" = "OneSafe" ] || [ "CTLCardinality" = "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 [ "CTLCardinality" = "UpperBounds" ] ; then
echo "The expected result is a vector of positive values"
echo NUM_VECTOR
elif [ "CTLCardinality" != "StateSpace" ] ; then
echo "The expected result is a vector of booleans"
echo BOOL_VECTOR
else
echo "no data necessary for post analysis"
fi
echo
if [ -f "CTLCardinality.txt" ] ; then
echo "here is the order used to build the result vector(from text file)"
for x in $(grep Property CTLCardinality.txt | cut -d ' ' -f 2 | sort -u) ; do
echo "FORMULA_NAME $x"
done
elif [ -f "CTLCardinality.xml" ] ; then # for cunf (txt files deleted;-)
echo echo "here is the order used to build the result vector(from xml file)"
for x in $(grep '
echo "FORMULA_NAME $x"
done
elif [ "CTLCardinality" = "ReachabilityDeadlock" ] || [ "CTLCardinality" = "QuasiLiveness" ] || [ "CTLCardinality" = "StableMarking" ] || [ "CTLCardinality" = "Liveness" ] || [ "CTLCardinality" = "OneSafe" ] ; then
echo "FORMULA_NAME CTLCardinality"
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 ;