fond
Model Checking Contest @ Petri Nets 2015
Bruxelles, Belgium, June 23, 2015
LoLA2.0 compared to other tools («Known» models, ReachabilityCardinality)
Last Updated
August 19, 2015

Introduction

This page presents how LoLA2.0 do cope efficiently with the ReachabilityCardinality examination face to the other participating tools. In this page, we consider «Known» models.

The next sections will show chart comparing performances in termsof both memory and execution time.The x-axis corresponds to the challenging tool where the y-axes represents LoLA2.0' performances. Thus, points below the diagonal of a chart denote comparisons favorables to the tool whileothers corresponds to situations where the challenging tool performs better.

You might also find plots out of the range that denote the case were at least one tool could not answer appropriately (error, time-out, could not compute or did not competed).

LoLA2.0 versus GreatSPN-Meddly

Some statistics are displayed below, based on 808 runs (404 for LoLA2.0 and 404 for GreatSPN-Meddly, so there are 404 plots on each of the two charts). Each execution was allowed 1 hour and 16 GByte of memory. Then performance charts comparing LoLA2.0 to GreatSPN-Meddly are shown (you may click on one graph to enlarge it).

Statistics on the execution
  LoLA2.0 GreatSPN-Meddly Both tools   LoLA2.0 GreatSPN-Meddly
Computed OK 170 2 81   Smallest Memory Footprint
Do not compete 23 0 114 Times tool wins 240 13
Error detected 14 46 2   Shortest Execution Time
Cannot Compute + Time-out 0 159 0 Times tool wins 232 21


On the chart below, denote cases where the two tools did computed a result, denote the cases where at least one tool did not competed, denote the cases where at least one tool did a mistake and denote the cases where at least one tool stated it could not compute a result or timed-out.

memory chart time chart

LoLA2.0 versus ITS-Tools

Some statistics are displayed below, based on 808 runs (404 for LoLA2.0 and 404 for ITS-Tools, so there are 404 plots on each of the two charts). Each execution was allowed 1 hour and 16 GByte of memory. Then performance charts comparing LoLA2.0 to ITS-Tools are shown (you may click on one graph to enlarge it).

Statistics on the execution
  LoLA2.0 ITS-Tools Both tools   LoLA2.0 ITS-Tools
Computed OK 141 114 110   Smallest Memory Footprint
Do not compete 137 0 0 Times tool wins 226 139
Error detected 9 118 7   Shortest Execution Time
Cannot Compute + Time-out 0 55 0 Times tool wins 205 160


On the chart below, denote cases where the two tools did computed a result, denote the cases where at least one tool did not competed, denote the cases where at least one tool did a mistake and denote the cases where at least one tool stated it could not compute a result or timed-out.

memory chart time chart

LoLA2.0 versus LTSMin

Some statistics are displayed below, based on 808 runs (404 for LoLA2.0 and 404 for LTSMin, so there are 404 plots on each of the two charts). Each execution was allowed 1 hour and 16 GByte of memory. Then performance charts comparing LoLA2.0 to LTSMin are shown (you may click on one graph to enlarge it).

Statistics on the execution
  LoLA2.0 LTSMin Both tools   LoLA2.0 LTSMin
Computed OK 112 10 139   Smallest Memory Footprint
Do not compete 137 0 0 Times tool wins 228 33
Error detected 10 109 6   Shortest Execution Time
Cannot Compute + Time-out 0 140 0 Times tool wins 226 35


On the chart below, denote cases where the two tools did computed a result, denote the cases where at least one tool did not competed, denote the cases where at least one tool did a mistake and denote the cases where at least one tool stated it could not compute a result or timed-out.

memory chart time chart

LoLA2.0 versus Marcie

Some statistics are displayed below, based on 808 runs (404 for LoLA2.0 and 404 for Marcie, so there are 404 plots on each of the two charts). Each execution was allowed 1 hour and 16 GByte of memory. Then performance charts comparing LoLA2.0 to Marcie are shown (you may click on one graph to enlarge it).

Statistics on the execution
  LoLA2.0 Marcie Both tools   LoLA2.0 Marcie
Computed OK 191 13 60   Smallest Memory Footprint
Do not compete 137 0 0 Times tool wins 250 14
Error detected 14 34 2   Shortest Execution Time
Cannot Compute + Time-out 0 295 0 Times tool wins 246 18


On the chart below, denote cases where the two tools did computed a result, denote the cases where at least one tool did not competed, denote the cases where at least one tool did a mistake and denote the cases where at least one tool stated it could not compute a result or timed-out.

memory chart time chart

LoLA2.0 versus TAPAAL(MC)

Some statistics are displayed below, based on 808 runs (404 for LoLA2.0 and 404 for TAPAAL(MC), so there are 404 plots on each of the two charts). Each execution was allowed 1 hour and 16 GByte of memory. Then performance charts comparing LoLA2.0 to TAPAAL(MC) are shown (you may click on one graph to enlarge it).

Statistics on the execution
  LoLA2.0 TAPAAL(MC) Both tools   LoLA2.0 TAPAAL(MC)
Computed OK 29 14 222   Smallest Memory Footprint
Do not compete 0 0 137 Times tool wins 227 38
Error detected 15 3 1   Shortest Execution Time
Cannot Compute + Time-out 0 27 0 Times tool wins 207 58


On the chart below, denote cases where the two tools did computed a result, denote the cases where at least one tool did not competed, denote the cases where at least one tool did a mistake and denote the cases where at least one tool stated it could not compute a result or timed-out.

memory chart time chart

LoLA2.0 versus TAPAAL(SEQ)

Some statistics are displayed below, based on 808 runs (404 for LoLA2.0 and 404 for TAPAAL(SEQ), so there are 404 plots on each of the two charts). Each execution was allowed 1 hour and 16 GByte of memory. Then performance charts comparing LoLA2.0 to TAPAAL(SEQ) are shown (you may click on one graph to enlarge it).

Statistics on the execution
  LoLA2.0 TAPAAL(SEQ) Both tools   LoLA2.0 TAPAAL(SEQ)
Computed OK 6 15 245   Smallest Memory Footprint
Do not compete 0 0 137 Times tool wins 146 120
Error detected 15 1 1   Shortest Execution Time
Cannot Compute + Time-out 0 5 0 Times tool wins 219 47


On the chart below, denote cases where the two tools did computed a result, denote the cases where at least one tool did not competed, denote the cases where at least one tool did a mistake and denote the cases where at least one tool stated it could not compute a result or timed-out.

memory chart time chart

LoLA2.0 versus TAPAAL-OTF(PAR)

Some statistics are displayed below, based on 808 runs (404 for LoLA2.0 and 404 for TAPAAL-OTF(PAR), so there are 404 plots on each of the two charts). Each execution was allowed 1 hour and 16 GByte of memory. Then performance charts comparing LoLA2.0 to TAPAAL-OTF(PAR) are shown (you may click on one graph to enlarge it).

Statistics on the execution
  LoLA2.0 TAPAAL-OTF(PAR) Both tools   LoLA2.0 TAPAAL-OTF(PAR)
Computed OK 188 0 63   Smallest Memory Footprint
Do not compete 0 0 137 Times tool wins 242 9
Error detected 10 18 6   Shortest Execution Time
Cannot Compute + Time-out 0 180 0 Times tool wins 250 1


On the chart below, denote cases where the two tools did computed a result, denote the cases where at least one tool did not competed, denote the cases where at least one tool did a mistake and denote the cases where at least one tool stated it could not compute a result or timed-out.

memory chart time chart

LoLA2.0 versus TAPAAL-OTF(SEQ)

Some statistics are displayed below, based on 808 runs (404 for LoLA2.0 and 404 for TAPAAL-OTF(SEQ), so there are 404 plots on each of the two charts). Each execution was allowed 1 hour and 16 GByte of memory. Then performance charts comparing LoLA2.0 to TAPAAL-OTF(SEQ) are shown (you may click on one graph to enlarge it).

Statistics on the execution
  LoLA2.0 TAPAAL-OTF(SEQ) Both tools   LoLA2.0 TAPAAL-OTF(SEQ)
Computed OK 120 8 131   Smallest Memory Footprint
Do not compete 0 0 137 Times tool wins 213 46
Error detected 16 0 0   Shortest Execution Time
Cannot Compute + Time-out 0 128 0 Times tool wins 222 37


On the chart below, denote cases where the two tools did computed a result, denote the cases where at least one tool did not competed, denote the cases where at least one tool did a mistake and denote the cases where at least one tool stated it could not compute a result or timed-out.

memory chart time chart