About the Execution of Marcie for S_CircadianClock-PT-000010
| Execution Summary | |||||
| Max Memory Used (MB)  | 
      Time wait (ms) | CPU Usage (ms) | I/O Wait (ms) | Computed Result | Execution Status  | 
   
| 3958.440 | 8253.00 | 7505.00 | 544.70 | 10 10 10 1 10 10 10 1 1 10 10 1 10 10 10 10 | 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 2-2265
    Executing tool marcie
    Input is S_CircadianClock-PT-000010, examination is ReachabilityComputeBounds
    Time confinement is 3600 seconds
    Memory confinement is 16384 MBytes
    Number of cores is 1
    Run identifier is r120st-ebro-143297419500283
=====================================================================
--------------------
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 CircadianClock-PT-000010-ReachabilityComputeBounds-0
FORMULA_NAME CircadianClock-PT-000010-ReachabilityComputeBounds-1
FORMULA_NAME CircadianClock-PT-000010-ReachabilityComputeBounds-10
FORMULA_NAME CircadianClock-PT-000010-ReachabilityComputeBounds-11
FORMULA_NAME CircadianClock-PT-000010-ReachabilityComputeBounds-12
FORMULA_NAME CircadianClock-PT-000010-ReachabilityComputeBounds-13
FORMULA_NAME CircadianClock-PT-000010-ReachabilityComputeBounds-14
FORMULA_NAME CircadianClock-PT-000010-ReachabilityComputeBounds-15
FORMULA_NAME CircadianClock-PT-000010-ReachabilityComputeBounds-2
FORMULA_NAME CircadianClock-PT-000010-ReachabilityComputeBounds-3
FORMULA_NAME CircadianClock-PT-000010-ReachabilityComputeBounds-4
FORMULA_NAME CircadianClock-PT-000010-ReachabilityComputeBounds-5
FORMULA_NAME CircadianClock-PT-000010-ReachabilityComputeBounds-6
FORMULA_NAME CircadianClock-PT-000010-ReachabilityComputeBounds-7
FORMULA_NAME CircadianClock-PT-000010-ReachabilityComputeBounds-8
FORMULA_NAME CircadianClock-PT-000010-ReachabilityComputeBounds-9
=== Now, execution of the tool begins
BK_START 1433162862002
Model: S_CircadianClock-PT-000010
reachability algorithm:
	Saturation-based algorithm
variable ordering algorithm:
	Calculated like in [Noa99]
 --memory=6 --suppress --rs-algorithm=3 --place-order=5
Marcie rev. 1429:1432M (built: crohr on 2014-10-22)
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: marcie --net-file=model.pnml --mcc-file=ReachabilityComputeBounds.xml --memory=6 --suppress --rs-algorithm=3 --place-order=5 
parse successfull
net created successfully
(NrP: 14  NrTr: 16 NrArc: 58)
net check time: 0m0sec
parse formulas successfull
formulas created successfully
place and transition orderings generation:0m0sec
init dd package: 0m5sec
RS generation: 0m0sec
-> reachability set: #nodes 66 (6.6e+01) #states 644,204 (5)
starting MCC model checker
--------------------------
checking: maxVal(a)
normalized: maxVal(a)
-> the formula is 10
FORMULA CircadianClock-PT-000010-ReachabilityComputeBounds-0 10 TECHNIQUES SEQUENTIAL_PROCESSING DECISION_DIAGRAMS UNFOLDING_TO_PT
MC time: 0m0sec
checking: maxVal(a)
normalized: maxVal(a)
-> the formula is 10
FORMULA CircadianClock-PT-000010-ReachabilityComputeBounds-1 10 TECHNIQUES SEQUENTIAL_PROCESSING DECISION_DIAGRAMS UNFOLDING_TO_PT
MC time: 0m0sec
checking: maxVal(da_a)
normalized: maxVal(da_a)
-> the formula is 1
FORMULA CircadianClock-PT-000010-ReachabilityComputeBounds-2 1 TECHNIQUES SEQUENTIAL_PROCESSING DECISION_DIAGRAMS UNFOLDING_TO_PT
MC time: 0m0sec
checking: maxVal(ma_cap)
normalized: maxVal(ma_cap)
-> the formula is 10
FORMULA CircadianClock-PT-000010-ReachabilityComputeBounds-3 10 TECHNIQUES SEQUENTIAL_PROCESSING DECISION_DIAGRAMS UNFOLDING_TO_PT
MC time: 0m0sec
checking: maxVal(mr)
normalized: maxVal(mr)
-> the formula is 10
FORMULA CircadianClock-PT-000010-ReachabilityComputeBounds-4 10 TECHNIQUES SEQUENTIAL_PROCESSING DECISION_DIAGRAMS UNFOLDING_TO_PT
MC time: 0m0sec
checking: maxVal(dr)
normalized: maxVal(dr)
-> the formula is 1
FORMULA CircadianClock-PT-000010-ReachabilityComputeBounds-5 1 TECHNIQUES SEQUENTIAL_PROCESSING DECISION_DIAGRAMS UNFOLDING_TO_PT
MC time: 0m0sec
checking: maxVal(c)
normalized: maxVal(c)
-> the formula is 10
FORMULA CircadianClock-PT-000010-ReachabilityComputeBounds-6 10 TECHNIQUES SEQUENTIAL_PROCESSING DECISION_DIAGRAMS UNFOLDING_TO_PT
MC time: 0m0sec
checking: maxVal(a_cap)
normalized: maxVal(a_cap)
-> the formula is 10
FORMULA CircadianClock-PT-000010-ReachabilityComputeBounds-7 10 TECHNIQUES SEQUENTIAL_PROCESSING DECISION_DIAGRAMS UNFOLDING_TO_PT
MC time: 0m0sec
checking: maxVal(c_cap)
normalized: maxVal(c_cap)
-> the formula is 10
FORMULA CircadianClock-PT-000010-ReachabilityComputeBounds-8 10 TECHNIQUES SEQUENTIAL_PROCESSING DECISION_DIAGRAMS UNFOLDING_TO_PT
MC time: 0m0sec
checking: maxVal(ma_cap)
normalized: maxVal(ma_cap)
-> the formula is 10
FORMULA CircadianClock-PT-000010-ReachabilityComputeBounds-9 10 TECHNIQUES SEQUENTIAL_PROCESSING DECISION_DIAGRAMS UNFOLDING_TO_PT
MC time: 0m0sec
checking: maxVal(c_cap)
normalized: maxVal(c_cap)
-> the formula is 10
FORMULA CircadianClock-PT-000010-ReachabilityComputeBounds-10 10 TECHNIQUES SEQUENTIAL_PROCESSING DECISION_DIAGRAMS UNFOLDING_TO_PT
MC time: 0m0sec
checking: maxVal(da_a)
normalized: maxVal(da_a)
-> the formula is 1
FORMULA CircadianClock-PT-000010-ReachabilityComputeBounds-11 1 TECHNIQUES SEQUENTIAL_PROCESSING DECISION_DIAGRAMS UNFOLDING_TO_PT
MC time: 0m0sec
checking: maxVal(c_cap)
normalized: maxVal(c_cap)
-> the formula is 10
FORMULA CircadianClock-PT-000010-ReachabilityComputeBounds-12 10 TECHNIQUES SEQUENTIAL_PROCESSING DECISION_DIAGRAMS UNFOLDING_TO_PT
MC time: 0m0sec
checking: maxVal(ma)
normalized: maxVal(ma)
-> the formula is 10
FORMULA CircadianClock-PT-000010-ReachabilityComputeBounds-13 10 TECHNIQUES SEQUENTIAL_PROCESSING DECISION_DIAGRAMS UNFOLDING_TO_PT
MC time: 0m0sec
checking: maxVal(ma_cap)
normalized: maxVal(ma_cap)
-> the formula is 10
FORMULA CircadianClock-PT-000010-ReachabilityComputeBounds-14 10 TECHNIQUES SEQUENTIAL_PROCESSING DECISION_DIAGRAMS UNFOLDING_TO_PT
MC time: 0m0sec
checking: maxVal(dr_a)
normalized: maxVal(dr_a)
-> the formula is 1
FORMULA CircadianClock-PT-000010-ReachabilityComputeBounds-15 1 TECHNIQUES SEQUENTIAL_PROCESSING DECISION_DIAGRAMS UNFOLDING_TO_PT
MC time: 0m0sec
Total processing time: 0m8sec
BK_STOP 1433162870255
--------------------
content from stderr:
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: 0m0sec
iterations count:653 (40), effective:136 (8)
initing FirstDep: 0m0sec
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_CircadianClock-PT-000010"
export BK_EXAMINATION="ReachabilityComputeBounds"
export BK_TOOL="marcie"
export BK_RESULT_DIR="/users/gast00/fkordon/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_CircadianClock-PT-000010.tgz
mv S_CircadianClock-PT-000010 execution
# this is for BenchKit: explicit launching of the test
cd execution
echo "====================================================================="
echo " Generated by BenchKit 2-2265"
echo "    Executing tool marcie"
echo "    Input is S_CircadianClock-PT-000010, examination is ReachabilityComputeBounds"
echo "    Time confinement is $BK_TIME_CONFINEMENT seconds"
echo "    Memory confinement is 16384 MBytes"
echo "    Number of cores is 1"
echo "    Run identifier is r120st-ebro-143297419500283"
echo "====================================================================="
echo
echo "--------------------"
echo "content from stdout:"
echo
echo "=== Data for post analysis generated by BenchKit (invocation template)"
echo
if [ "ReachabilityComputeBounds" = "ReachabilityComputeBounds" ] ; then
	echo "The expected result is a vector of positive values"
	echo NUM_VECTOR
elif [ "ReachabilityComputeBounds" != "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 "ReachabilityComputeBounds.txt" ] ; then
	echo "here is the order used to build the result vector(from text file)"
	for x in $(grep Property ReachabilityComputeBounds.txt | cut -d ' ' -f 2 | sort -u) ; do
		echo "FORMULA_NAME $x"
	done
elif [ -f "ReachabilityComputeBounds.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 ;
