About the Execution of M4M.full for Peterson-COL-2
| Execution Summary | |||||
| Max Memory Used (MB)  | 
      Time wait (ms) | CPU Usage (ms) | I/O Wait (ms) | Computed Result | Execution Status  | 
   
| 432.230 | 44518.00 | 7017.00 | 167.10 | 3 3 3 1 3 3 3 2 3 1 2 3 3 2 3 2 | normal | 
Execution Chart
We display below the execution chart for this examination (boot time has been removed).

Trace from the execution
Waiting for the VM to be ready (probing ssh)
.................
/home/mcc/execution
total 208K
-rw-r--r-- 1 mcc users 3.4K May 15 18:54 CTLCardinality.txt
-rw-r--r-- 1 mcc users  18K May 15 18:54 CTLCardinality.xml
-rw-r--r-- 1 mcc users 2.4K May 15 18:54 CTLFireability.txt
-rw-r--r-- 1 mcc users  15K May 15 18:54 CTLFireability.xml
-rw-r--r-- 1 mcc users 4.0K May 15 18:50 GenericPropertiesDefinition.xml
-rw-r--r-- 1 mcc users 6.0K May 15 18:50 GenericPropertiesVerdict.xml
-rw-r--r-- 1 mcc users 2.3K May 15 18:54 LTLCardinality.txt
-rw-r--r-- 1 mcc users 9.8K May 15 18:54 LTLCardinality.xml
-rw-r--r-- 1 mcc users 1.9K May 15 18:54 LTLFireability.txt
-rw-r--r-- 1 mcc users 7.9K May 15 18:54 LTLFireability.xml
-rw-r--r-- 1 mcc users 3.6K May 15 18:54 ReachabilityCardinality.txt
-rw-r--r-- 1 mcc users  17K May 15 18:54 ReachabilityCardinality.xml
-rw-r--r-- 1 mcc users  105 May 15 18:54 ReachabilityDeadlock.txt
-rw-r--r-- 1 mcc users  343 May 15 18:54 ReachabilityDeadlock.xml
-rw-r--r-- 1 mcc users 3.4K May 15 18:54 ReachabilityFireability.txt
-rw-r--r-- 1 mcc users  21K May 15 18:54 ReachabilityFireability.xml
-rw-r--r-- 1 mcc users 1.6K May 15 18:54 UpperBounds.txt
-rw-r--r-- 1 mcc users 3.7K May 15 18:54 UpperBounds.xml
-rw-r--r-- 1 mcc users    5 May 15 18:50 equiv_pt
-rw-r--r-- 1 mcc users    2 May 15 18:50 instance
-rw-r--r-- 1 mcc users    5 May 15 18:50 iscolored
-rw-r--r-- 1 mcc users  42K May 15 18:50 model.pnml
=====================================================================
 Generated by BenchKit 2-3637
    Executing tool mcc4mcc-full
    Input is Peterson-COL-2, examination is UpperBounds
    Time confinement is 3600 seconds
    Memory confinement is 16384 MBytes
    Number of cores is 4
    Run identifier is r118-csrt-152666478600513
=====================================================================
--------------------
content from stdout:
=== Data for post analysis generated by BenchKit (invocation template)
The expected result is a vector of positive values
NUM_VECTOR
here is the order used to build the result vector(from text file)
FORMULA_NAME Peterson-COL-2-UpperBounds-00
FORMULA_NAME Peterson-COL-2-UpperBounds-01
FORMULA_NAME Peterson-COL-2-UpperBounds-02
FORMULA_NAME Peterson-COL-2-UpperBounds-03
FORMULA_NAME Peterson-COL-2-UpperBounds-04
FORMULA_NAME Peterson-COL-2-UpperBounds-05
FORMULA_NAME Peterson-COL-2-UpperBounds-06
FORMULA_NAME Peterson-COL-2-UpperBounds-07
FORMULA_NAME Peterson-COL-2-UpperBounds-08
FORMULA_NAME Peterson-COL-2-UpperBounds-09
FORMULA_NAME Peterson-COL-2-UpperBounds-10
FORMULA_NAME Peterson-COL-2-UpperBounds-11
FORMULA_NAME Peterson-COL-2-UpperBounds-12
FORMULA_NAME Peterson-COL-2-UpperBounds-13
FORMULA_NAME Peterson-COL-2-UpperBounds-14
FORMULA_NAME Peterson-COL-2-UpperBounds-15
=== Now, execution of the tool begins
BK_START 1527296578683
BK_STOP 1527296623201
--------------------
content from stderr:
Prefix is 65b80f64.
Reading known information in /usr/share/mcc4mcc/65b80f64-known.json.
Reading learned information in /usr/share/mcc4mcc/65b80f64-learned.json.
Reading value translations in /usr/share/mcc4mcc/65b80f64-values.json.
Using directory /home/mcc/execution for input, as it contains a model.pnml file.
Using Peterson-COL-2 as instance name.
Using Peterson as model name.
Using algorithm or tool decision-tree.
Model characteristics are: {'Examination': 'UpperBounds', 'Place/Transition': True, 'Colored': True, 'Relative-Time': 1, 'Relative-Memory': 1, 'Ordinary': True, 'Simple Free Choice': False, 'Extended Free Choice': False, 'State Machine': False, 'Marked Graph': False, 'Connected': True, 'Strongly Connected': True, 'Source Place': False, 'Sink Place': False, 'Source Transition': False, 'Sink Transition': False, 'Loop Free': False, 'Conservative': True, 'Sub-Conservative': True, 'Nested Units': False, 'Safe': True, 'Deadlock': False, 'Reversible': True, 'Quasi Live': None, 'Live': None}.
Known tools are: [{'Time': 803, 'Memory': 101.64, 'Tool': 'gspn'}, {'Time': 2162, 'Memory': 119.36, 'Tool': 'lola'}, {'Time': 2229, 'Memory': 114.24, 'Tool': 'lola'}, {'Time': 3401, 'Memory': 167.41, 'Tool': 'gspn'}, {'Time': 3700, 'Memory': 2228.01, 'Tool': 'marcie'}, {'Time': 3861, 'Memory': 2228.5, 'Tool': 'marcie'}, {'Time': 6006, 'Memory': 268.25, 'Tool': 'itstools'}, {'Time': 6351, 'Memory': 286.19, 'Tool': 'itstools'}].
Learned tools are: [{'Tool': 'lola'}].
Learned tool lola is 2.692403486924035x far from the best tool gspn.
UpperBounds lola Peterson-COL-2...
Time: 3600 - MCC
----- Start make prepare stdout -----
----- Start make prepare stderr -----
===========================================================================================
Peterson-COL-2: translating COL Petri net model.pnml into LoLA format
===========================================================================================
translating COL Petri net complete
checking for too many tokens
===========================================================================================
Peterson-COL-2: translating COL formula UpperBounds into LoLA format
===========================================================================================
translating formula complete
----- Start make result stdout -----
----- Start make result stderr -----
UpperBounds @ Peterson-COL-2 @ 3540 seconds
----- Start make result stderr -----
----- Start make result stdout -----
lola: LoLA will run for 3540 seconds at most (--timelimit)
lola: NET
lola:   reading net from model.pnml.lola
lola:   finished parsing
lola:   closed net file model.pnml.lola
lola:   246/65536 symbol table entries, 0 collisions
lola:   preprocessing...
lola:   finding significant places
lola:   108 places, 138 transitions, 97 significant places
lola:   computing forward-conflicting sets
lola:   computing back-conflicting sets
lola:   213 transition conflict sets
lola: TASK
lola:   reading formula from Peterson-COL-2-UpperBounds.task
lola:   MAX(p89 + p90 + p91 + p92 + p88 + p87) : MAX(p97 + p95 + p94 + p93 + p96 + p98) : MAX(p84 + p85 + p86) : MAX(p105 + p106 + p107) : MAX(p12 + p13 + p14 + p15 + p16 + p17 + p18 + p19 + p20 + p21 + p22 + p23 + p24 + p25 + p26 + p27 + p28 + p29) : MAX(p89 + p90 + p91 + p92 + p88 + p87) : MAX(p66 + p67 + p68 + p69 + p70 + p71 + p72 + p73 + p74 + p75 + p76 + p77 + p78 + p79 + p80 + p81 + p82 + p83) : MAX(p6 + p7 + p9 + p10 + p11 + p8) : MAX(p48 + p49 + p50 + p51 + p52 + p53 + p54 + p55 + p56 + p57 + p58 + p59 + p60 + p61 + p62 + p63 + p64 + p65) : MAX(p105 + p106 + p107) : MAX(p6 + p7 + p9 + p10 + p11 + p8) : MAX(p0 + p1 + p2 + p3 + p4 + p5) : MAX(p12 + p13 + p14 + p15 + p16 + p17 + p18 + p19 + p20 + p21 + p22 + p23 + p24 + p25 + p26 + p27 + p28 + p29) : MAX(p6 + p7 + p9 + p10 + p11 + p8) : MAX(p97 + p95 + p94 + p93 + p96 + p98) : MAX(p6 + p7 + p9 + p10 + p11 + p8)
lola:   computing a collection of formulas
lola: RUNNING
lola:   subprocess 0 will run for 221 seconds at most (--localtimelimit=-1)
lola:   ========================================
lola:   ...considering subproblem: MAX(p89 + p90 + p91 + p92 + p88 + p87)
lola:   ========================================
lola:   SUBTASK
lola:     computing bound of an expression
lola:   STORE
lola:     using a bit-perfect encoder (--encoder=bit)
lola:     using 16 bytes per marking, with 31 unused bits
lola:     using a prefix tree store (--store=prefix)
lola:   SEARCH
lola:   using bound preserving stubborn set method with insertion algorithm(--stubborn=tarjan)
lola: RUNNING
lola: SUBRESULT
lola:   result: 3
lola:   produced by: state space
lola:   The maximum value of the given expression is 3
lola:   1 markings, 0 edges
lola: ========================================
lola:   subprocess 1 will run for 236 seconds at most (--localtimelimit=-1)
lola:   ========================================
lola:   ...considering subproblem: MAX(p97 + p95 + p94 + p93 + p96 + p98)
lola:   ========================================
lola:   SUBTASK
lola:     computing bound of an expression
lola:   STORE
lola:     using a bit-perfect encoder (--encoder=bit)
lola:     using 16 bytes per marking, with 31 unused bits
lola:     using a prefix tree store (--store=prefix)
lola:   SEARCH
lola:   using bound preserving stubborn set method with insertion algorithm(--stubborn=tarjan)
lola: RUNNING
lola: SUBRESULT
lola:   result: 3
lola:   produced by: state space
lola:   The maximum value of the given expression is 3
lola:   20754 markings, 62262 edges
lola: ========================================
lola:   subprocess 2 will run for 252 seconds at most (--localtimelimit=-1)
lola:   ========================================
lola:   ...considering subproblem: MAX(p84 + p85 + p86)
lola:   ========================================
lola:   SUBTASK
lola:     computing bound of an expression
lola:   STORE
lola:     using a bit-perfect encoder (--encoder=bit)
lola:     using 16 bytes per marking, with 31 unused bits
lola:     using a prefix tree store (--store=prefix)
lola:   SEARCH
lola:   using bound preserving stubborn set method with insertion algorithm(--stubborn=tarjan)
lola: RUNNING
lola: SUBRESULT
lola:   result: 3
lola:   produced by: state space
lola:   The maximum value of the given expression is 3
lola:   13519 markings, 37538 edges
lola: ========================================
lola:   subprocess 3 will run for 272 seconds at most (--localtimelimit=-1)
lola:   ========================================
lola:   ...considering subproblem: MAX(p105 + p106 + p107)
lola:   ========================================
lola:   SUBTASK
lola:     computing bound of an expression
lola:   STORE
lola:     using a bit-perfect encoder (--encoder=bit)
lola:     using 16 bytes per marking, with 31 unused bits
lola:     using a prefix tree store (--store=prefix)
lola:   SEARCH
lola:   using bound preserving stubborn set method with insertion algorithm(--stubborn=tarjan)
lola: RUNNING
lola: SUBRESULT
lola:   result: 1
lola:   produced by: state space
lola:   The maximum value of the given expression is 1
lola:   13519 markings, 37538 edges
lola: ========================================
lola:   subprocess 4 will run for 295 seconds at most (--localtimelimit=-1)
lola:   ========================================
lola:   ...considering subproblem: MAX(p12 + p13 + p14 + p15 + p16 + p17 + p18 + p19 + p20 + p21 + p22 + p23 + p24 + p25 + p26 + p27 + p28 + p29)
lola:   ========================================
lola:   SUBTASK
lola:     computing bound of an expression
lola:   STORE
lola:     using a bit-perfect encoder (--encoder=bit)
lola:     using 16 bytes per marking, with 31 unused bits
lola:     using a prefix tree store (--store=prefix)
lola:   SEARCH
lola:   using bound preserving stubborn set method with insertion algorithm(--stubborn=tarjan)
lola: RUNNING
lola: SUBRESULT
lola:   result: 3
lola:   produced by: state space
lola:   The maximum value of the given expression is 3
lola:   20754 markings, 62262 edges
lola: ========================================
lola:   subprocess 5 will run for 321 seconds at most (--localtimelimit=-1)
lola:   ========================================
lola:   ...considering subproblem: MAX(p89 + p90 + p91 + p92 + p88 + p87)
lola:   ========================================
lola:   SUBTASK
lola:     computing bound of an expression
lola:   STORE
lola:     using a bit-perfect encoder (--encoder=bit)
lola:     using 16 bytes per marking, with 31 unused bits
lola:     using a prefix tree store (--store=prefix)
lola:   SEARCH
lola:   using bound preserving stubborn set method with insertion algorithm(--stubborn=tarjan)
lola: RUNNING
lola: SUBRESULT
lola:   result: 3
lola:   produced by: state space
lola:   The maximum value of the given expression is 3
lola:   1 markings, 0 edges
lola: ========================================
lola:   subprocess 6 will run for 354 seconds at most (--localtimelimit=-1)
lola:   ========================================
lola:   ...considering subproblem: MAX(p66 + p67 + p68 + p69 + p70 + p71 + p72 + p73 + p74 + p75 + p76 + p77 + p78 + p79 + p80 + p81 + p82 + p83)
lola:   ========================================
lola:   SUBTASK
lola:     computing bound of an expression
lola:   STORE
lola:     using a bit-perfect encoder (--encoder=bit)
lola:     using 16 bytes per marking, with 31 unused bits
lola:     using a prefix tree store (--store=prefix)
lola:   SEARCH
lola:   using bound preserving stubborn set method with insertion algorithm(--stubborn=tarjan)
lola: RUNNING
lola: SUBRESULT
lola:   result: 3
lola:   produced by: state space
lola:   The maximum value of the given expression is 3
lola:   17019 markings, 44401 edges
lola: ========================================
lola:   subprocess 7 will run for 393 seconds at most (--localtimelimit=-1)
lola:   ========================================
lola:   ...considering subproblem: MAX(p6 + p7 + p9 + p10 + p11 + p8)
lola:   ========================================
lola:   SUBTASK
lola:     computing bound of an expression
lola:   STORE
lola:     using a bit-perfect encoder (--encoder=bit)
lola:     using 16 bytes per marking, with 31 unused bits
lola:     using a prefix tree store (--store=prefix)
lola:   SEARCH
lola:   using bound preserving stubborn set method with insertion algorithm(--stubborn=tarjan)
lola: RUNNING
lola: SUBRESULT
lola:   result: 2
lola:   produced by: state space
lola:   The maximum value of the given expression is 2
lola:   1 markings, 0 edges
lola: ========================================
lola:   subprocess 8 will run for 442 seconds at most (--localtimelimit=-1)
lola:   ========================================
lola:   ...considering subproblem: MAX(p48 + p49 + p50 + p51 + p52 + p53 + p54 + p55 + p56 + p57 + p58 + p59 + p60 + p61 + p62 + p63 + p64 + p65)
lola:   ========================================
lola:   SUBTASK
lola:     computing bound of an expression
lola:   STORE
lola:     using a bit-perfect encoder (--encoder=bit)
lola:     using 16 bytes per marking, with 31 unused bits
lola:     using a prefix tree store (--store=prefix)
lola:   SEARCH
lola:   using bound preserving stubborn set method with insertion algorithm(--stubborn=tarjan)
lola: RUNNING
lola: SUBRESULT
lola:   result: 3
lola:   produced by: state space
lola:   The maximum value of the given expression is 3
lola:   20754 markings, 62262 edges
lola: ========================================
lola:   subprocess 9 will run for 505 seconds at most (--localtimelimit=-1)
lola:   ========================================
lola:   ...considering subproblem: MAX(p105 + p106 + p107)
lola:   ========================================
lola:   SUBTASK
lola:     computing bound of an expression
lola:   STORE
lola:     using a bit-perfect encoder (--encoder=bit)
lola:     using 16 bytes per marking, with 31 unused bits
lola:     using a prefix tree store (--store=prefix)
lola:   SEARCH
lola:   using bound preserving stubborn set method with insertion algorithm(--stubborn=tarjan)
lola: RUNNING
lola: SUBRESULT
lola:   result: 1
lola:   produced by: state space
lola:   The maximum value of the given expression is 1
lola:   13519 markings, 37538 edges
lola: ========================================
lola:   subprocess 10 will run for 589 seconds at most (--localtimelimit=-1)
lola:   ========================================
lola:   ...considering subproblem: MAX(p6 + p7 + p9 + p10 + p11 + p8)
lola:   ========================================
lola:   SUBTASK
lola:     computing bound of an expression
lola:   STORE
lola:     using a bit-perfect encoder (--encoder=bit)
lola:     using 16 bytes per marking, with 31 unused bits
lola:     using a prefix tree store (--store=prefix)
lola:   SEARCH
lola:   using bound preserving stubborn set method with insertion algorithm(--stubborn=tarjan)
lola: RUNNING
lola: SUBRESULT
lola:   result: 2
lola:   produced by: state space
lola:   The maximum value of the given expression is 2
lola:   1 markings, 0 edges
lola: ========================================
lola:   subprocess 11 will run for 707 seconds at most (--localtimelimit=-1)
lola:   ========================================
lola:   ...considering subproblem: MAX(p0 + p1 + p2 + p3 + p4 + p5)
lola:   ========================================
lola:   SUBTASK
lola:     computing bound of an expression
lola:   STORE
lola:     using a bit-perfect encoder (--encoder=bit)
lola:     using 16 bytes per marking, with 31 unused bits
lola:     using a prefix tree store (--store=prefix)
lola:   SEARCH
lola:   using bound preserving stubborn set method with insertion algorithm(--stubborn=tarjan)
lola: RUNNING
lola: SUBRESULT
lola:   result: 3
lola:   produced by: state space
lola:   The maximum value of the given expression is 3
lola:   13519 markings, 37538 edges
lola: ========================================
lola:   subprocess 12 will run for 884 seconds at most (--localtimelimit=-1)
lola:   ========================================
lola:   ...considering subproblem: MAX(p12 + p13 + p14 + p15 + p16 + p17 + p18 + p19 + p20 + p21 + p22 + p23 + p24 + p25 + p26 + p27 + p28 + p29)
lola:   ========================================
lola:   SUBTASK
lola:     computing bound of an expression
lola:   STORE
lola:     using a bit-perfect encoder (--encoder=bit)
lola:     using 16 bytes per marking, with 31 unused bits
lola:     using a prefix tree store (--store=prefix)
lola:   SEARCH
lola:   using bound preserving stubborn set method with insertion algorithm(--stubborn=tarjan)
lola: RUNNING
lola: SUBRESULT
lola:   result: 3
lola:   produced by: state space
lola:   The maximum value of the given expression is 3
lola:   20754 markings, 62262 edges
lola: ========================================
lola:   subprocess 13 will run for 1179 seconds at most (--localtimelimit=-1)
lola:   ========================================
lola:   ...considering subproblem: MAX(p6 + p7 + p9 + p10 + p11 + p8)
lola:   ========================================
lola:   SUBTASK
lola:     computing bound of an expression
lola:   STORE
lola:     using a bit-perfect encoder (--encoder=bit)
lola:     using 16 bytes per marking, with 31 unused bits
lola:     using a prefix tree store (--store=prefix)
lola:   SEARCH
lola:   using bound preserving stubborn set method with insertion algorithm(--stubborn=tarjan)
lola: RUNNING
lola: SUBRESULT
lola:   result: 2
lola:   produced by: state space
lola:   The maximum value of the given expression is 2
lola:   1 markings, 0 edges
lola: ========================================
lola:   subprocess 14 will run for 1769 seconds at most (--localtimelimit=-1)
lola:   ========================================
lola:   ...considering subproblem: MAX(p97 + p95 + p94 + p93 + p96 + p98)
lola:   ========================================
lola:   SUBTASK
lola:     computing bound of an expression
lola:   STORE
lola:     using a bit-perfect encoder (--encoder=bit)
lola:     using 16 bytes per marking, with 31 unused bits
lola:     using a prefix tree store (--store=prefix)
lola:   SEARCH
lola:   using bound preserving stubborn set method with insertion algorithm(--stubborn=tarjan)
lola: RUNNING
lola: SUBRESULT
lola:   result: 3
lola:   produced by: state space
lola:   The maximum value of the given expression is 3
lola:   20754 markings, 62262 edges
lola: ========================================
lola:   subprocess 15 will run for 3539 seconds at most (--localtimelimit=-1)
lola:   ========================================
lola:   ...considering subproblem: MAX(p6 + p7 + p9 + p10 + p11 + p8)
lola:   ========================================
lola:   SUBTASK
lola:     computing bound of an expression
lola:   STORE
lola:     using a bit-perfect encoder (--encoder=bit)
lola:     using 16 bytes per marking, with 31 unused bits
lola:     using a prefix tree store (--store=prefix)
lola:   SEARCH
lola:   using bound preserving stubborn set method with insertion algorithm(--stubborn=tarjan)
lola: RUNNING
lola: SUBRESULT
lola:   result: 2
lola:   produced by: state space
lola:   The maximum value of the given expression is 2
lola:   1 markings, 0 edges
lola: ========================================
lola: RESULT
lola:
SUMMARY:  3 3 3 1 3 3 3 2 3 1 2 3 3 2 3 2
FORMULA Peterson-COL-2-UpperBounds-0 3 TECHNIQUES SEQUENTIAL_PROCESSING EXPLICIT STATE_COMPRESSION STUBBORN_SETS USE_NUPN
FORMULA Peterson-COL-2-UpperBounds-1 3 TECHNIQUES SEQUENTIAL_PROCESSING EXPLICIT STATE_COMPRESSION STUBBORN_SETS USE_NUPN
FORMULA Peterson-COL-2-UpperBounds-2 3 TECHNIQUES SEQUENTIAL_PROCESSING EXPLICIT STATE_COMPRESSION STUBBORN_SETS USE_NUPN
FORMULA Peterson-COL-2-UpperBounds-3 1 TECHNIQUES SEQUENTIAL_PROCESSING EXPLICIT STATE_COMPRESSION STUBBORN_SETS USE_NUPN
FORMULA Peterson-COL-2-UpperBounds-4 3 TECHNIQUES SEQUENTIAL_PROCESSING EXPLICIT STATE_COMPRESSION STUBBORN_SETS USE_NUPN
FORMULA Peterson-COL-2-UpperBounds-5 3 TECHNIQUES SEQUENTIAL_PROCESSING EXPLICIT STATE_COMPRESSION STUBBORN_SETS USE_NUPN
FORMULA Peterson-COL-2-UpperBounds-6 3 TECHNIQUES SEQUENTIAL_PROCESSING EXPLICIT STATE_COMPRESSION STUBBORN_SETS USE_NUPN
FORMULA Peterson-COL-2-UpperBounds-7 2 TECHNIQUES SEQUENTIAL_PROCESSING EXPLICIT STATE_COMPRESSION STUBBORN_SETS USE_NUPN
FORMULA Peterson-COL-2-UpperBounds-8 3 TECHNIQUES SEQUENTIAL_PROCESSING EXPLICIT STATE_COMPRESSION STUBBORN_SETS USE_NUPN
FORMULA Peterson-COL-2-UpperBounds-9 1 TECHNIQUES SEQUENTIAL_PROCESSING EXPLICIT STATE_COMPRESSION STUBBORN_SETS USE_NUPN
FORMULA Peterson-COL-2-UpperBounds-10 2 TECHNIQUES SEQUENTIAL_PROCESSING EXPLICIT STATE_COMPRESSION STUBBORN_SETS USE_NUPN
FORMULA Peterson-COL-2-UpperBounds-11 3 TECHNIQUES SEQUENTIAL_PROCESSING EXPLICIT STATE_COMPRESSION STUBBORN_SETS USE_NUPN
FORMULA Peterson-COL-2-UpperBounds-12 3 TECHNIQUES SEQUENTIAL_PROCESSING EXPLICIT STATE_COMPRESSION STUBBORN_SETS USE_NUPN
FORMULA Peterson-COL-2-UpperBounds-13 2 TECHNIQUES SEQUENTIAL_PROCESSING EXPLICIT STATE_COMPRESSION STUBBORN_SETS USE_NUPN
FORMULA Peterson-COL-2-UpperBounds-14 3 TECHNIQUES SEQUENTIAL_PROCESSING EXPLICIT STATE_COMPRESSION STUBBORN_SETS USE_NUPN
FORMULA Peterson-COL-2-UpperBounds-15 2 TECHNIQUES SEQUENTIAL_PROCESSING EXPLICIT STATE_COMPRESSION STUBBORN_SETS USE_NUPN
----- Kill lola and sara stdout -----
----- Kill lola and sara stderr -----
----- Finished stdout -----
----- Finished 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="Peterson-COL-2"
export BK_EXAMINATION="UpperBounds"
export BK_TOOL="mcc4mcc-full"
export BK_RESULT_DIR="/tmp/BK_RESULTS/OUTPUTS"
export BK_TIME_CONFINEMENT="3600"
export BK_MEMORY_CONFINEMENT="16384"
# this is specific to your benchmark or test
export BIN_DIR="$HOME/BenchKit/bin"
# remove the execution directoty if it exists (to avoid increse of .vmdk images)
if [ -d execution ] ; then
	rm -rf execution
fi
tar xzf /home/mcc/BenchKit/INPUTS/Peterson-COL-2.tgz
mv Peterson-COL-2 execution
cd execution
pwd
ls -lh
# this is for BenchKit: explicit launching of the test
echo "====================================================================="
echo " Generated by BenchKit 2-3637"
echo "    Executing tool mcc4mcc-full"
echo "    Input is Peterson-COL-2, examination is UpperBounds"
echo "    Time confinement is $BK_TIME_CONFINEMENT seconds"
echo "    Memory confinement is 16384 MBytes"
echo "    Number of cores is 4"
echo "    Run identifier is r118-csrt-152666478600513"
echo "====================================================================="
echo
echo "--------------------"
echo "content from stdout:"
echo
echo "=== Data for post analysis generated by BenchKit (invocation template)"
echo
if [ "UpperBounds" = "UpperBounds" ] ; then
	echo "The expected result is a vector of positive values"
	echo NUM_VECTOR
elif [ "UpperBounds" != "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 "UpperBounds.txt" ] ; then
	echo "here is the order used to build the result vector(from text file)"
	for x in $(grep Property UpperBounds.txt | cut -d ' ' -f 2 | sort -u) ; do
		echo "FORMULA_NAME $x"
	done
elif [ -f "UpperBounds.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
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 ;
