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Model Checking Contest @ Petri Nets 2017
7th edition, Zaragoza, Spain, June 27, 2017
Execution of r118-blw7-149441649700016
Last Updated
June 27, 2017

About the Execution of LoLA for S_HypercubeGrid-PT-C4K3P3B12

Execution Summary
Max Memory
Used (MB)
Time wait (ms) CPU Usage (ms) I/O Wait (ms) Computed Result Execution
Status
859.290 38046.00 89424.00 10.10 TFTTTFTTTFFTTFFT 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)
......
=====================================================================
Generated by BenchKit 2-3254
Executing tool lola
Input is S_HypercubeGrid-PT-C4K3P3B12, examination is ReachabilityCardinality
Time confinement is 3600 seconds
Memory confinement is 16384 MBytes
Number of cores is 4
Run identifier is r118-blw7-149441649700016
=====================================================================


--------------------
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 HypercubeGrid-PT-C4K3P3B12-ReachabilityCardinality-0
FORMULA_NAME HypercubeGrid-PT-C4K3P3B12-ReachabilityCardinality-1
FORMULA_NAME HypercubeGrid-PT-C4K3P3B12-ReachabilityCardinality-10
FORMULA_NAME HypercubeGrid-PT-C4K3P3B12-ReachabilityCardinality-11
FORMULA_NAME HypercubeGrid-PT-C4K3P3B12-ReachabilityCardinality-12
FORMULA_NAME HypercubeGrid-PT-C4K3P3B12-ReachabilityCardinality-13
FORMULA_NAME HypercubeGrid-PT-C4K3P3B12-ReachabilityCardinality-14
FORMULA_NAME HypercubeGrid-PT-C4K3P3B12-ReachabilityCardinality-15
FORMULA_NAME HypercubeGrid-PT-C4K3P3B12-ReachabilityCardinality-2
FORMULA_NAME HypercubeGrid-PT-C4K3P3B12-ReachabilityCardinality-3
FORMULA_NAME HypercubeGrid-PT-C4K3P3B12-ReachabilityCardinality-4
FORMULA_NAME HypercubeGrid-PT-C4K3P3B12-ReachabilityCardinality-5
FORMULA_NAME HypercubeGrid-PT-C4K3P3B12-ReachabilityCardinality-6
FORMULA_NAME HypercubeGrid-PT-C4K3P3B12-ReachabilityCardinality-7
FORMULA_NAME HypercubeGrid-PT-C4K3P3B12-ReachabilityCardinality-8
FORMULA_NAME HypercubeGrid-PT-C4K3P3B12-ReachabilityCardinality-9

=== Now, execution of the tool begins

BK_START 1496347011124


Time: 3600 - MCC
----- Start make prepare stdout -----
===========================================================================================
S_HypercubeGrid-PT-C4K3P3B12: translating PT Petri net model.pnml into LoLA format
===========================================================================================
translating PT Petri net complete


checking for too many tokens
===========================================================================================
S_HypercubeGrid-PT-C4K3P3B12: translating PT formula ReachabilityCardinality into LoLA format
===========================================================================================
translating formula complete
touch formulae;
----- Start make result stdout -----
ReachabilityCardinality @ S_HypercubeGrid-PT-C4K3P3B12 @ 3540 seconds
----- 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: 7857/65536 symbol table entries, 1827 collisions
lola: preprocessing...
lola: finding significant places
lola: 2457 places, 5400 transitions, 1511 significant places
lola: computing forward-conflicting sets
lola: computing back-conflicting sets
lola: 6345 transition conflict sets
lola: TASK
lola: reading formula from HypercubeGrid-PT-C4K3P3B12-ReachabilityCardinality.task
lola: E (F ((((pb_d1_n1_3_3_2_2 <= pil_d1_n1_4_1_3_1) AND (pi_d4_n1_1_3_2_2 <= pb_d1_n2_1_1_3_1) AND (po_d1_n1_4_2_2_2 + 1 <= pb_d3_n2_1_1_3_1)) OR ((pil_d1_n1_1_2_2_3 + 1 <= po_d1_n1_3_3_3_1) AND (po_d2_n1_3_2_1_2 <= 1))))) : E (F (((2 <= pol_d4_n1_3_2_1_3) OR (3 <= pol_d4_n1_3_2_3_1)))) : E (F ((pb_d3_n1_1_2_3_2 <= pil_d2_n1_1_1_3_1))) : A (G ((po_d4_n1_3_3_3_4 <= po_d2_n1_1_4_2_3))) : E (F (((3 <= pi_d4_n1_3_3_1_4) AND (pil_d3_n1_3_3_2_3 <= pil_d3_n1_1_3_2_1)))) : E (F (((pb_d1_n1_1_2_2_1 <= 2) AND (pi_d4_n1_2_2_2_2 <= 0) AND (pb_d4_n2_3_3_2_3 <= pi_d4_n1_3_2_3_4)))) : E (F ((((pil_d3_n1_3_2_4_2 <= 0) OR (pol_d1_n1_2_2_2_3 + 1 <= pil_d1_n1_1_2_2_3)) AND (pil_d2_n1_1_1_1_1 <= pi_d4_n1_2_3_3_1)))) : E (F (((2 <= pil_d2_n1_2_2_2_1) AND (po_d3_n1_1_1_4_3 <= po_d1_n1_3_2_1_2) AND ((1 <= pi_d4_n1_3_2_3_3) OR (1 <= pb_d4_n2_1_1_2_2)) AND (pb_d3_n1_2_1_2_3 <= pi_d3_n1_2_3_3_1) AND (po_d4_n1_1_3_3_4 <= pi_d3_n1_2_2_4_2) AND (pi_d4_n1_2_1_3_2 <= pol_d3_n1_3_1_2_1)))) : A (G (((pol_d2_n1_2_3_2_2 <= pb_d3_n2_2_3_1_3) OR (pil_d2_n1_2_1_2_1 <= pb_d3_n2_3_1_1_1) OR (pi_d4_n1_2_2_3_3 <= pb_d1_n1_2_1_1_3) OR ((pil_d2_n1_3_1_3_2 + 1 <= pol_d2_n1_2_1_2_1) AND (pol_d4_n1_1_3_3_3 + 1 <= pil_d2_n1_3_3_3_3))))) : A (G ((po_d1_n1_3_1_2_1 <= 1))) : A (G (((3 <= pi_d2_n1_1_4_3_1) OR (po_d3_n1_3_2_2_3 <= 1) OR ((pil_d1_n1_3_3_2_3 <= po_d2_n1_3_2_3_2) AND (pi_d3_n1_3_3_2_3 <= 1))))) : E (F (((pol_d3_n1_1_2_3_2 + 1 <= pil_d3_n1_2_3_3_2) AND (pil_d1_n1_3_1_3_1 + 1 <= pil_d4_n1_1_2_1_2)))) : A (G (((po_d1_n1_4_1_2_2 + 1 <= pol_d1_n1_2_1_1_2) OR (pil_d1_n1_3_2_1_3 <= 1) OR (po_d3_n1_1_3_1_1 <= pb_d2_n1_1_1_2_3) OR (pol_d4_n1_1_2_2_4 <= pbl_3_3_2_1) OR (1 <= pb_d1_n1_1_2_1_1) OR (pol_d2_n1_2_3_2_2 <= pi_d3_n1_1_1_4_1)))) : E (F (((3 <= pi_d3_n1_2_3_2_1) AND (1 <= pbl_1_1_3_2)))) : E (F (((2 <= po_d3_n1_2_3_1_3) OR (pb_d3_n2_3_3_3_2 <= pi_d4_n1_3_3_3_1)))) : E (F ((pb_d2_n1_2_1_3_1 + 1 <= pil_d4_n1_2_2_3_4)))
lola: computing a collection of formulas
lola: RUNNING
lola: subprocess 0 will run for 221 seconds at most (--localtimelimit=-1)
lola: ========================================
lola: ...considering subproblem: E (F ((((pb_d1_n1_3_3_2_2 <= pil_d1_n1_4_1_3_1) AND (pi_d4_n1_1_3_2_2 <= pb_d1_n2_1_1_3_1) AND (po_d1_n1_4_2_2_2 + 1 <= pb_d3_n2_1_1_3_1)) OR ((pil_d1_n1_1_2_2_3 + 1 <= po_d1_n1_3_3_3_1) AND (po_d2_n1_3_2_1_2 <= 1)))))
lola: ========================================
lola: SUBTASK
lola: checking reachability
lola: Planning: workflow for reachability check: stateequation||search (--findpath=off)
lola: STORE
lola: using a bit-perfect encoder (--encoder=bit)
lola: using 6044 bytes per marking, with 0 unused bits
lola: using a prefix tree store (--store=prefix)
lola: SEARCH (state space)
lola: state space: using reachability graph (--search=depth)
lola: state space: using reachability preserving stubborn set method with insertion algorithm (--stubborn=tarjan)
lola: RUNNING
lola: state equation: Generated DNF with 5 literals and 2 conjunctive subformulas
lola: state equation: write sara problem file to HypercubeGrid-PT-C4K3P3B12-ReachabilityCardinality.sara
lola: SUBRESULT
lola: result: yes
lola: produced by: state space
lola: The predicate is reachable.
lola: ========================================
lola: subprocess 1 will run for 236 seconds at most (--localtimelimit=-1)
lola: ========================================
lola: ...considering subproblem: E (F (((2 <= pol_d4_n1_3_2_1_3) OR (3 <= pol_d4_n1_3_2_3_1))))
lola: ========================================
lola: SUBTASK
lola: checking reachability
lola: Planning: workflow for reachability check: stateequation||search (--findpath=off)
lola: STORE
lola: using a bit-perfect encoder (--encoder=bit)
lola: using 6044 bytes per marking, with 0 unused bits
lola: using a prefix tree store (--store=prefix)
lola: SEARCH (state space)
lola: state space: using reachability graph (--search=depth)
lola: state space: using reachability preserving stubborn set method with insertion algorithm (--stubborn=tarjan)
lola: RUNNING
lola: state equation: Generated DNF with 2 literals and 2 conjunctive subformulas
lola: state equation: write sara problem file to HypercubeGrid-PT-C4K3P3B12-ReachabilityCardinality.sara
lola: state equation: calling and running sara
sara: try reading problem file HypercubeGrid-PT-C4K3P3B12-ReachabilityCardinality.sara.
sara: place or transition ordering is non-deterministic
lola: sara is running 0 secs || 105733 markings, 115733 edges, 21147 markings/sec, 0 secs

lola: state equation: solution impossible
lola: SUBRESULT
lola: result: no
lola: produced by: state equation
lola: The predicate is unreachable.
lola: ========================================
lola: subprocess 2 will run for 252 seconds at most (--localtimelimit=-1)
lola: ========================================
lola: ...considering subproblem: E (F ((pb_d3_n1_1_2_3_2 <= pil_d2_n1_1_1_3_1)))
lola: ========================================
lola: SUBTASK
lola: checking reachability
lola: Planning: workflow for reachability check: stateequation||search (--findpath=off)
lola: STORE
lola: using a bit-perfect encoder (--encoder=bit)
lola: using 6044 bytes per marking, with 0 unused bits
lola: using a prefix tree store (--store=prefix)
lola: SEARCH (state space)
lola: state space: using reachability graph (--search=depth)
lola: state space: using reachability preserving stubborn set method with insertion algorithm (--stubborn=tarjan)
lola: RUNNING
lola: state equation: Generated DNF with 1 literals and 1 conjunctive subformulas
lola: state equation: write sara problem file to HypercubeGrid-PT-C4K3P3B12-ReachabilityCardinality-2.sara
lola: SUBRESULT
lola: result: yes
lola: produced by: state space
lola: The predicate is reachable.
lola: state equation: calling and running sara
lola: ========================================
lola: subprocess 3 will run for 271 seconds at most (--localtimelimit=-1)
lola: ========================================
lola: ...considering subproblem: A (G ((po_d4_n1_3_3_3_4 <= po_d2_n1_1_4_2_3)))
lola: ========================================
lola: SUBTASK
lola: checking invariance
lola: Planning: workflow for reachability check: stateequation||search (--findpath=off)
sara: try reading problem file HypercubeGrid-PT-C4K3P3B12-ReachabilityCardinality-2.sara.
lola: STORE
lola: using a bit-perfect encoder (--encoder=bit)
lola: using 6044 bytes per marking, with 0 unused bits
lola: using a prefix tree store (--store=prefix)
lola: SEARCH (state space)
lola: state space: using reachability graph (--search=depth)
lola: state space: using reachability preserving stubborn set method with insertion algorithm (--stubborn=tarjan)
lola: RUNNING
lola: state equation: Generated DNF with 1 literals and 1 conjunctive subformulas
lola: SUBRESULT
lola: result: no
lola: produced by: state space
lola: The predicate is not invariant.
lola: state equation: write sara problem file to HypercubeGrid-PT-C4K3P3B12-ReachabilityCardinality-3.sara
lola: ========================================
lola: subprocess 4 will run for 294 seconds at most (--localtimelimit=-1)
lola: ========================================
lola: ...considering subproblem: E (F (((3 <= pi_d4_n1_3_3_1_4) AND (pil_d3_n1_3_3_2_3 <= pil_d3_n1_1_3_2_1))))
lola: ========================================
lola: SUBTASK
lola: checking reachability
lola: Planning: workflow for reachability check: stateequation||search (--findpath=off)
lola: STORE
lola: using a bit-perfect encoder (--encoder=bit)
lola: using 6044 bytes per marking, with 0 unused bits
lola: using a prefix tree store (--store=prefix)
lola: SEARCH (state space)
lola: state space: using reachability graph (--search=depth)
lola: state space: using reachability preserving stubborn set method with insertion algorithm (--stubborn=tarjan)
lola: RUNNING
lola: state equation: Generated DNF with 2 literals and 1 conjunctive subformulas
lola: state equation: write sara problem file to HypercubeGrid-PT-C4K3P3B12-ReachabilityCardinality-4.sara
lola: state equation: calling and running sara
sara: try reading problem file HypercubeGrid-PT-C4K3P3B12-ReachabilityCardinality-4.sara.
sara: place or transition ordering is non-deterministic
sara: place or transition ordering is non-deterministic


lola: sara is running 0 secs || 173496 markings, 182542 edges, 34699 markings/sec, 0 secs
lola: state equation: solution impossible
lola: SUBRESULT
lola: result: no
lola: produced by: state equation
lola: The predicate is unreachable.
lola: ========================================
lola: subprocess 5 will run for 320 seconds at most (--localtimelimit=-1)
lola: ========================================
lola: ...considering subproblem: E (F (((pb_d1_n1_1_2_2_1 <= 2) AND (pi_d4_n1_2_2_2_2 <= 0) AND (pb_d4_n2_3_3_2_3 <= pi_d4_n1_3_2_3_4))))
lola: ========================================
lola: SUBTASK
lola: checking reachability
lola: Planning: workflow for reachability check: stateequation||search (--findpath=off)
lola: STORE
lola: using a bit-perfect encoder (--encoder=bit)
lola: using 6044 bytes per marking, with 0 unused bits
lola: using a prefix tree store (--store=prefix)
lola: SEARCH (state space)
lola: state space: using reachability graph (--search=depth)
lola: state space: using reachability preserving stubborn set method with insertion algorithm (--stubborn=tarjan)
lola: RUNNING
lola: state equation: Generated DNF with 3 literals and 1 conjunctive subformulas
lola: state equation: write sara problem file to HypercubeGrid-PT-C4K3P3B12-ReachabilityCardinality-5.sara
lola: SUBRESULT
lola: result: yes
lola: produced by: state space
lola: The predicate is reachable.
lola: ========================================
lola: state equation: calling and running sara
lola: subprocess 6 will run for 352 seconds at most (--localtimelimit=-1)
lola: ========================================
lola: ...considering subproblem: E (F ((((pil_d3_n1_3_2_4_2 <= 0) OR (pol_d1_n1_2_2_2_3 + 1 <= pil_d1_n1_1_2_2_3)) AND (pil_d2_n1_1_1_1_1 <= pi_d4_n1_2_3_3_1))))
lola: ========================================
lola: SUBTASK
lola: checking reachability
lola: Planning: workflow for reachability check: stateequation||search (--findpath=off)
sara: try reading problem file HypercubeGrid-PT-C4K3P3B12-ReachabilityCardinality-5.sara.
lola: STORE
lola: using a bit-perfect encoder (--encoder=bit)
lola: using 6044 bytes per marking, with 0 unused bits
lola: using a prefix tree store (--store=prefix)
lola: SEARCH (state space)
lola: state space: using reachability graph (--search=depth)
lola: state space: using reachability preserving stubborn set method with insertion algorithm (--stubborn=tarjan)
lola: RUNNING
lola: state equation: Generated DNF with 4 literals and 2 conjunctive subformulas
lola: state equation: write sara problem file to HypercubeGrid-PT-C4K3P3B12-ReachabilityCardinality-6.sara
lola: SUBRESULT
lola: result: yes
lola: produced by: state space
lola: The predicate is reachable.
lola: subprocess 7 will run for 392 seconds at most (--localtimelimit=-1)
lola: ========================================
lola: ...considering subproblem: E (F (((2 <= pil_d2_n1_2_2_2_1) AND (po_d3_n1_1_1_4_3 <= po_d1_n1_3_2_1_2) AND ((1 <= pi_d4_n1_3_2_3_3) OR (1 <= pb_d4_n2_1_1_2_2)) AND (pb_d3_n1_2_1_2_3 <= pi_d3_n1_2_3_3_1) AND (po_d4_n1_1_3_3_4 <= pi_d3_n1_2_2_4_2) AND (pi_d4_n1_2_1_3_2 <= pol_d3_n1_3_1_2_1))))
lola: ========================================
lola: SUBTASK
lola: checking reachability
lola: Planning: workflow for reachability check: stateequation||search (--findpath=off)
lola: ========================================
lola: state equation: calling and running sara
lola: STORE
lola: using a bit-perfect encoder (--encoder=bit)
lola: using 6044 bytes per marking, with 0 unused bits
lola: using a prefix tree store (--store=prefix)
lola: SEARCH (state space)
lola: state space: using reachability graph (--search=depth)
sara: try reading problem file HypercubeGrid-PT-C4K3P3B12-ReachabilityCardinality-6.sara.
lola: state space: using reachability preserving stubborn set method with insertion algorithm (--stubborn=tarjan)
lola: RUNNING
lola: state equation: Generated DNF with 12 literals and 2 conjunctive subformulas
lola: state equation: write sara problem file to HypercubeGrid-PT-C4K3P3B12-ReachabilityCardinality-7.sara
lola: state equation: calling and running sara
sara: try reading problem file HypercubeGrid-PT-C4K3P3B12-ReachabilityCardinality-7.sara.
sara: place or transition ordering is non-deterministic
sara: place or transition ordering is non-deterministic
sara: place or transition ordering is non-deterministic



lola: sara is running 0 secs || 194645 markings, 199488 edges, 38929 markings/sec, 0 secs
lola: state equation: solution impossible
lola: SUBRESULT
lola: result: no
lola: produced by: state equation
lola: The predicate is unreachable.
lola: ========================================
lola: subprocess 8 will run for 440 seconds at most (--localtimelimit=-1)
lola: ========================================
lola: ...considering subproblem: A (G (((pol_d2_n1_2_3_2_2 <= pb_d3_n2_2_3_1_3) OR (pil_d2_n1_2_1_2_1 <= pb_d3_n2_3_1_1_1) OR (pi_d4_n1_2_2_3_3 <= pb_d1_n1_2_1_1_3) OR ((pil_d2_n1_3_1_3_2 + 1 <= pol_d2_n1_2_1_2_1) AND (pol_d4_n1_1_3_3_3 + 1 <= pil_d2_n1_3_3_3_3)))))
lola: ========================================
lola: SUBTASK
lola: checking invariance
lola: Planning: workflow for reachability check: stateequation||search (--findpath=off)
lola: STORE
lola: using a bit-perfect encoder (--encoder=bit)
lola: using 6044 bytes per marking, with 0 unused bits
lola: using a prefix tree store (--store=prefix)
lola: SEARCH (state space)
lola: state space: using reachability graph (--search=depth)
lola: state space: using reachability preserving stubborn set method with insertion algorithm (--stubborn=tarjan)
lola: RUNNING
lola: state equation: Generated DNF with 8 literals and 2 conjunctive subformulas
lola: SUBRESULT
lola: result: no
lola: produced by: state space
lola: The predicate is not invariant.
lola: ========================================
lola: subprocess 9 will run for 503 seconds at most (--localtimelimit=-1)
lola: ========================================
lola: ...considering subproblem: A (G ((po_d1_n1_3_1_2_1 <= 1)))
lola: ========================================
lola: SUBTASK
lola: checking invariance
lola: Planning: workflow for reachability check: stateequation||search (--findpath=off)
lola: STORE
lola: using a bit-perfect encoder (--encoder=bit)
lola: using 6044 bytes per marking, with 0 unused bits
lola: using a prefix tree store (--store=prefix)
lola: SEARCH (state space)
lola: state space: using reachability graph (--search=depth)
lola: state space: using reachability preserving stubborn set method with insertion algorithm (--stubborn=tarjan)
lola: RUNNING
lola: state equation: Generated DNF with 1 literals and 1 conjunctive subformulas
lola: state equation: write sara problem file to HypercubeGrid-PT-C4K3P3B12-ReachabilityCardinality-9.sara
lola: state equation: calling and running sara
sara: try reading problem file HypercubeGrid-PT-C4K3P3B12-ReachabilityCardinality-9.sara.
sara: place or transition ordering is non-deterministic

lola: sara is running 0 secs || 189813 markings, 193418 edges, 37963 markings/sec, 0 secs
lola: state equation: solution impossible
lola: SUBRESULT
lola: result: yes
lola: produced by: state equation
lola: The predicate is invariant.
lola: ========================================
lola: subprocess 10 will run for 586 seconds at most (--localtimelimit=-1)
lola: ========================================
lola: ...considering subproblem: A (G (((3 <= pi_d2_n1_1_4_3_1) OR (po_d3_n1_3_2_2_3 <= 1) OR ((pil_d1_n1_3_3_2_3 <= po_d2_n1_3_2_3_2) AND (pi_d3_n1_3_3_2_3 <= 1)))))
lola: ========================================
lola: SUBTASK
lola: checking invariance
lola: Planning: workflow for reachability check: stateequation||search (--findpath=off)
lola: STORE
lola: using a bit-perfect encoder (--encoder=bit)
lola: using 6044 bytes per marking, with 0 unused bits
lola: using a prefix tree store (--store=prefix)
lola: SEARCH (state space)
lola: state space: using reachability graph (--search=depth)
lola: state space: using reachability preserving stubborn set method with insertion algorithm (--stubborn=tarjan)
lola: RUNNING
lola: state equation: Generated DNF with 6 literals and 2 conjunctive subformulas
lola: state equation: write sara problem file to HypercubeGrid-PT-C4K3P3B12-ReachabilityCardinality-10.sara
lola: state equation: calling and running sara
sara: try reading problem file HypercubeGrid-PT-C4K3P3B12-ReachabilityCardinality-10.sara.
sara: place or transition ordering is non-deterministic

lola: sara is running 0 secs || 333542 markings, 335347 edges, 66708 markings/sec, 0 secs
lola: state equation: solution impossible
lola: SUBRESULT
lola: result: yes
lola: produced by: state equation
lola: The predicate is invariant.
lola: ========================================
lola: subprocess 11 will run for 702 seconds at most (--localtimelimit=-1)
lola: ========================================
lola: ...considering subproblem: E (F (((pol_d3_n1_1_2_3_2 + 1 <= pil_d3_n1_2_3_3_2) AND (pil_d1_n1_3_1_3_1 + 1 <= pil_d4_n1_1_2_1_2))))
lola: ========================================
lola: SUBTASK
lola: checking reachability
lola: Planning: workflow for reachability check: stateequation||search (--findpath=off)
lola: STORE
lola: using a bit-perfect encoder (--encoder=bit)
lola: using 6044 bytes per marking, with 0 unused bits
lola: using a prefix tree store (--store=prefix)
lola: SEARCH (state space)
lola: state space: using reachability graph (--search=depth)
lola: state space: using reachability preserving stubborn set method with insertion algorithm (--stubborn=tarjan)
lola: RUNNING
lola: state equation: Generated DNF with 2 literals and 1 conjunctive subformulas
lola: SUBRESULT
lola: result: yes
lola: produced by: state space
lola: The predicate is reachable.
lola: ========================================
lola: subprocess 12 will run for 878 seconds at most (--localtimelimit=-1)
lola: ========================================
lola: ...considering subproblem: A (G (((po_d1_n1_4_1_2_2 + 1 <= pol_d1_n1_2_1_1_2) OR (pil_d1_n1_3_2_1_3 <= 1) OR (po_d3_n1_1_3_1_1 <= pb_d2_n1_1_1_2_3) OR (pol_d4_n1_1_2_2_4 <= pbl_3_3_2_1) OR (1 <= pb_d1_n1_1_2_1_1) OR (pol_d2_n1_2_3_2_2 <= pi_d3_n1_1_1_4_1))))
lola: ========================================
lola: SUBTASK
lola: checking invariance
lola: Planning: workflow for reachability check: stateequation||search (--findpath=off)
lola: STORE
lola: using a bit-perfect encoder (--encoder=bit)
lola: using 6044 bytes per marking, with 0 unused bits
lola: using a prefix tree store (--store=prefix)
lola: SEARCH (state space)
lola: state space: using reachability graph (--search=depth)
lola: state space: using reachability preserving stubborn set method with insertion algorithm (--stubborn=tarjan)
lola: RUNNING
lola: state equation: Generated DNF with 6 literals and 1 conjunctive subformulas
lola: state equation: write sara problem file to HypercubeGrid-PT-C4K3P3B12-ReachabilityCardinality-12.sara
lola: state equation: calling and running sara
sara: try reading problem file HypercubeGrid-PT-C4K3P3B12-ReachabilityCardinality-12.sara.
sara: place or transition ordering is non-deterministic

lola: sara is running 0 secs || 202481 markings, 209161 edges, 40496 markings/sec, 0 secs
lola: state equation: solution impossible
lola: SUBRESULT
lola: result: yes
lola: produced by: state equation
lola: The predicate is invariant.
lola: ========================================
lola: subprocess 13 will run for 1169 seconds at most (--localtimelimit=-1)
lola: ========================================
lola: ...considering subproblem: E (F (((3 <= pi_d3_n1_2_3_2_1) AND (1 <= pbl_1_1_3_2))))
lola: ========================================
lola: SUBTASK
lola: checking reachability
lola: Planning: workflow for reachability check: stateequation||search (--findpath=off)
lola: STORE
lola: using a bit-perfect encoder (--encoder=bit)
lola: using 6044 bytes per marking, with 0 unused bits
lola: using a prefix tree store (--store=prefix)
lola: SEARCH (state space)
lola: state space: using reachability graph (--search=depth)
lola: state space: using reachability preserving stubborn set method with insertion algorithm (--stubborn=tarjan)
lola: RUNNING
lola: state equation: Generated DNF with 2 literals and 1 conjunctive subformulas
lola: state equation: write sara problem file to HypercubeGrid-PT-C4K3P3B12-ReachabilityCardinality-13.sara
lola: state equation: calling and running sara
sara: try reading problem file HypercubeGrid-PT-C4K3P3B12-ReachabilityCardinality-13.sara.
sara: place or transition ordering is non-deterministic

lola: sara is running 0 secs || 401504 markings, 435202 edges, 80301 markings/sec, 0 secs
lola: state equation: solution impossible
lola: SUBRESULT
lola: result: no
lola: produced by: state equation
lola: The predicate is unreachable.
lola: ========================================
lola: subprocess 14 will run for 1751 seconds at most (--localtimelimit=-1)
lola: ========================================
lola: ...considering subproblem: E (F (((2 <= po_d3_n1_2_3_1_3) OR (pb_d3_n2_3_3_3_2 <= pi_d4_n1_3_3_3_1))))
lola: ========================================
lola: SUBTASK
lola: checking reachability
lola: Planning: workflow for reachability check: stateequation||search (--findpath=off)
lola: STORE
lola: using a bit-perfect encoder (--encoder=bit)
lola: using 6044 bytes per marking, with 0 unused bits
lola: using a prefix tree store (--store=prefix)
lola: SEARCH (state space)
lola: state space: using reachability graph (--search=depth)
lola: state space: using reachability preserving stubborn set method with insertion algorithm (--stubborn=tarjan)
lola: RUNNING
lola: state equation: Generated DNF with 2 literals and 2 conjunctive subformulas
lola: state equation: write sara problem file to HypercubeGrid-PT-C4K3P3B12-ReachabilityCardinality-14.sara
lola: state equation: calling and running sara
lola: SUBRESULT
lola: result: yes
lola: produced by: state space
lola: The predicate is reachable.
lola: ========================================
lola: subprocess 15 will run for 3502 seconds at most (--localtimelimit=-1)
lola: ========================================
lola: ...considering subproblem: E (F ((pb_d2_n1_2_1_3_1 + 1 <= pil_d4_n1_2_2_3_4)))
lola: ========================================
lola: SUBTASK
lola: checking reachability
lola: Planning: workflow for reachability check: stateequation||search (--findpath=off)
lola: STORE
lola: using a bit-perfect encoder (--encoder=bit)
lola: using 6044 bytes per marking, with 0 unused bits
lola: using a prefix tree store (--store=prefix)
lola: SEARCH (state space)
lola: state space: using reachability graph (--search=depth)
lola: state space: using reachability preserving stubborn set method with insertion algorithm (--stubborn=tarjan)
lola: RUNNING
lola: state equation: Generated DNF with 1 literals and 1 conjunctive subformulas
lola: state equation: write sara problem file to HypercubeGrid-PT-C4K3P3B12-ReachabilityCardinality-15.sara
lola: SUBRESULT
lola: result: yes
lola: produced by: state space
lola: The predicate is reachable.
lola: RESULT
lola:
SUMMARY: yes no yes no no yes yes no no yes yes yes yes no yes yes
lola: ========================================
FORMULA HypercubeGrid-PT-C4K3P3B12-ReachabilityCardinality-0 TRUE TECHNIQUES COLLATERAL_PROCESSING EXPLICIT STATE_COMPRESSION STUBBORN_SETS TOPOLOGICAL USE_NUPN
FORMULA HypercubeGrid-PT-C4K3P3B12-ReachabilityCardinality-1 FALSE TECHNIQUES COLLATERAL_PROCESSING EXPLICIT STATE_COMPRESSION STUBBORN_SETS TOPOLOGICAL USE_NUPN
FORMULA HypercubeGrid-PT-C4K3P3B12-ReachabilityCardinality-2 TRUE TECHNIQUES COLLATERAL_PROCESSING EXPLICIT STATE_COMPRESSION STUBBORN_SETS TOPOLOGICAL USE_NUPN
FORMULA HypercubeGrid-PT-C4K3P3B12-ReachabilityCardinality-3 FALSE TECHNIQUES COLLATERAL_PROCESSING EXPLICIT STATE_COMPRESSION STUBBORN_SETS TOPOLOGICAL USE_NUPN
FORMULA HypercubeGrid-PT-C4K3P3B12-ReachabilityCardinality-4 FALSE TECHNIQUES COLLATERAL_PROCESSING EXPLICIT STATE_COMPRESSION STUBBORN_SETS TOPOLOGICAL USE_NUPN
FORMULA HypercubeGrid-PT-C4K3P3B12-ReachabilityCardinality-5 TRUE TECHNIQUES COLLATERAL_PROCESSING EXPLICIT STATE_COMPRESSION STUBBORN_SETS TOPOLOGICAL USE_NUPN
FORMULA HypercubeGrid-PT-C4K3P3B12-ReachabilityCardinality-6 TRUE TECHNIQUES COLLATERAL_PROCESSING EXPLICIT STATE_COMPRESSION STUBBORN_SETS TOPOLOGICAL USE_NUPN
FORMULA HypercubeGrid-PT-C4K3P3B12-ReachabilityCardinality-7 FALSE TECHNIQUES COLLATERAL_PROCESSING EXPLICIT STATE_COMPRESSION STUBBORN_SETS TOPOLOGICAL USE_NUPN
FORMULA HypercubeGrid-PT-C4K3P3B12-ReachabilityCardinality-8 FALSE TECHNIQUES COLLATERAL_PROCESSING EXPLICIT STATE_COMPRESSION STUBBORN_SETS TOPOLOGICAL USE_NUPN
FORMULA HypercubeGrid-PT-C4K3P3B12-ReachabilityCardinality-9 TRUE TECHNIQUES COLLATERAL_PROCESSING EXPLICIT STATE_COMPRESSION STUBBORN_SETS TOPOLOGICAL USE_NUPN
FORMULA HypercubeGrid-PT-C4K3P3B12-ReachabilityCardinality-10 TRUE TECHNIQUES COLLATERAL_PROCESSING EXPLICIT STATE_COMPRESSION STUBBORN_SETS TOPOLOGICAL USE_NUPN
FORMULA HypercubeGrid-PT-C4K3P3B12-ReachabilityCardinality-11 TRUE TECHNIQUES COLLATERAL_PROCESSING EXPLICIT STATE_COMPRESSION STUBBORN_SETS TOPOLOGICAL USE_NUPN
FORMULA HypercubeGrid-PT-C4K3P3B12-ReachabilityCardinality-12 TRUE TECHNIQUES COLLATERAL_PROCESSING EXPLICIT STATE_COMPRESSION STUBBORN_SETS TOPOLOGICAL USE_NUPN
FORMULA HypercubeGrid-PT-C4K3P3B12-ReachabilityCardinality-13 FALSE TECHNIQUES COLLATERAL_PROCESSING EXPLICIT STATE_COMPRESSION STUBBORN_SETS TOPOLOGICAL USE_NUPN
FORMULA HypercubeGrid-PT-C4K3P3B12-ReachabilityCardinality-14 TRUE TECHNIQUES COLLATERAL_PROCESSING EXPLICIT STATE_COMPRESSION STUBBORN_SETS TOPOLOGICAL USE_NUPN
FORMULA HypercubeGrid-PT-C4K3P3B12-ReachabilityCardinality-15 TRUE TECHNIQUES COLLATERAL_PROCESSING EXPLICIT STATE_COMPRESSION STUBBORN_SETS TOPOLOGICAL USE_NUPN
----- Kill lola and sara stdout -----
----- Finished stdout -----

BK_STOP 1496347049170

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

----- Start make prepare stderr -----
----- Start make result stderr -----
----- Start make result stderr -----
----- Kill lola and sara stderr -----
----- 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="S_HypercubeGrid-PT-C4K3P3B12"
export BK_EXAMINATION="ReachabilityCardinality"
export BK_TOOL="lola"
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/S_HypercubeGrid-PT-C4K3P3B12.tgz
mv S_HypercubeGrid-PT-C4K3P3B12 execution

# this is for BenchKit: explicit launching of the test

cd execution
echo "====================================================================="
echo " Generated by BenchKit 2-3254"
echo " Executing tool lola"
echo " Input is S_HypercubeGrid-PT-C4K3P3B12, examination is ReachabilityCardinality"
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-blw7-149441649700016"
echo "====================================================================="
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 '' ReachabilityCardinality.xml | cut -d '>' -f 2 | cut -d '<' -f 1 | sort -u) ; do
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 ;