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Model Checking Contest 2018
8th edition, Bratislava, Slovakia, June 26, 2018
M4M.full compared to other tools («Known» models, UpperBounds)
Last Updated
June 26, 2018

Introduction

This page presents how M4M.full do cope efficiently with the UpperBounds examination face to the other participating tools. In this page, we consider «Known» models.

The next sections will show chart comparing performances in terms of both memory and execution time.The x-axis corresponds to the challenging tool where the y-axes represents M4M.full' performances. Thus, points below the diagonal of a chart denote comparisons favorables to the tool while others 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).

M4M.full versus LTSMin

Some statistics are displayed below, based on 1616 runs (808 for M4M.full and 808 for LTSMin, so there are 808 plots on each of the two charts). Each execution was allowed 1 hour and 16 GByte of memory. Then performance charts comparing M4M.full to LTSMin are shown (you may click on one graph to enlarge it).

Statistics on the executions
  M4M.full LTSMin Both tools   M4M.full LTSMin
All computed OK 116 328 137   Smallest Memory Footprint
M4M.full = LTSMin 81 Times tool wins 385 359
M4M.full > LTSMin 70   Shortest Execution Time
M4M.full < LTSMin 12 Times tool wins 331 413
Do not compete 0 180 0
Error detected 1 0 0  
Cannot Compute + Time-out 391 0 0


On the chart below, denote cases where the two tools did computed all results without error, denote cases where the two tool did computed the same number of values (but not al values in the examination), denote cases where M4M.full computed more values than LTSMin, denote cases where M4M.full computed less values than LTSMin, denote the cases where at least one tool did not competed, denote the cases where at least one tool computed a bad value and denote the cases where at least one tool stated it could not compute a result or timed-out.

M4M.full wins when points are below the diagonal, LTSMin wins when points are above the diagonal.

memory chart time chart

M4M.full versus Tapaal

Some statistics are displayed below, based on 1616 runs (808 for M4M.full and 808 for Tapaal, so there are 808 plots on each of the two charts). Each execution was allowed 1 hour and 16 GByte of memory. Then performance charts comparing M4M.full to Tapaal are shown (you may click on one graph to enlarge it).

Statistics on the executions
  M4M.full Tapaal Both tools   M4M.full Tapaal
All computed OK 112 271 166   Smallest Memory Footprint
M4M.full = Tapaal 10 Times tool wins 213 474
M4M.full > Tapaal 47   Shortest Execution Time
M4M.full < Tapaal 81 Times tool wins 273 414
Do not compete 0 0 0
Error detected 1 2 0  
Cannot Compute + Time-out 272 112 119


On the chart below, denote cases where the two tools did computed all results without error, denote cases where the two tool did computed the same number of values (but not al values in the examination), denote cases where M4M.full computed more values than Tapaal, denote cases where M4M.full computed less values than Tapaal, denote the cases where at least one tool did not competed, denote the cases where at least one tool computed a bad value and denote the cases where at least one tool stated it could not compute a result or timed-out.

M4M.full wins when points are below the diagonal, Tapaal wins when points are above the diagonal.

memory chart time chart

M4M.full versus LoLA

Some statistics are displayed below, based on 1616 runs (808 for M4M.full and 808 for LoLA, so there are 808 plots on each of the two charts). Each execution was allowed 1 hour and 16 GByte of memory. Then performance charts comparing M4M.full to LoLA are shown (you may click on one graph to enlarge it).

Statistics on the executions
  M4M.full LoLA Both tools   M4M.full LoLA
All computed OK 37 362 191   Smallest Memory Footprint
M4M.full = LoLA 5 Times tool wins 91 687
M4M.full > LoLA 36   Shortest Execution Time
M4M.full < LoLA 147 Times tool wins 200 578
Do not compete 0 0 0
Error detected 1 0 0  
Cannot Compute + Time-out 361 37 30


On the chart below, denote cases where the two tools did computed all results without error, denote cases where the two tool did computed the same number of values (but not al values in the examination), denote cases where M4M.full computed more values than LoLA, denote cases where M4M.full computed less values than LoLA, denote the cases where at least one tool did not competed, denote the cases where at least one tool computed a bad value and denote the cases where at least one tool stated it could not compute a result or timed-out.

M4M.full wins when points are below the diagonal, LoLA wins when points are above the diagonal.

memory chart time chart

M4M.full versus M4M.struct

Some statistics are displayed below, based on 1616 runs (808 for M4M.full and 808 for M4M.struct, so there are 808 plots on each of the two charts). Each execution was allowed 1 hour and 16 GByte of memory. Then performance charts comparing M4M.full to M4M.struct are shown (you may click on one graph to enlarge it).

Statistics on the executions
  M4M.full M4M.struct Both tools   M4M.full M4M.struct
All computed OK 167 12 205   Smallest Memory Footprint
M4M.full = M4M.struct 1 Times tool wins 379 49
M4M.full > M4M.struct 17   Shortest Execution Time
M4M.full < M4M.struct 26 Times tool wins 306 122
Do not compete 0 0 0
Error detected 0 0 1  
Cannot Compute + Time-out 12 167 379


On the chart below, denote cases where the two tools did computed all results without error, denote cases where the two tool did computed the same number of values (but not al values in the examination), denote cases where M4M.full computed more values than M4M.struct, denote cases where M4M.full computed less values than M4M.struct, denote the cases where at least one tool did not competed, denote the cases where at least one tool computed a bad value and denote the cases where at least one tool stated it could not compute a result or timed-out.

M4M.full wins when points are below the diagonal, M4M.struct wins when points are above the diagonal.

memory chart time chart

M4M.full versus ITS-Tools

Some statistics are displayed below, based on 1616 runs (808 for M4M.full and 808 for ITS-Tools, so there are 808 plots on each of the two charts). Each execution was allowed 1 hour and 16 GByte of memory. Then performance charts comparing M4M.full to ITS-Tools are shown (you may click on one graph to enlarge it).

Statistics on the executions
  M4M.full ITS-Tools Both tools   M4M.full ITS-Tools
All computed OK 182 221 197   Smallest Memory Footprint
M4M.full = ITS-Tools 1 Times tool wins 408 229
M4M.full > ITS-Tools 0   Shortest Execution Time
M4M.full < ITS-Tools 36 Times tool wins 235 402
Do not compete 0 0 0
Error detected 1 0 0  
Cannot Compute + Time-out 220 182 171


On the chart below, denote cases where the two tools did computed all results without error, denote cases where the two tool did computed the same number of values (but not al values in the examination), denote cases where M4M.full computed more values than ITS-Tools, denote cases where M4M.full computed less values than ITS-Tools, denote the cases where at least one tool did not competed, denote the cases where at least one tool computed a bad value and denote the cases where at least one tool stated it could not compute a result or timed-out.

M4M.full wins when points are below the diagonal, ITS-Tools wins when points are above the diagonal.

memory chart time chart

M4M.full versus ITS-Tools.L

Some statistics are displayed below, based on 1616 runs (808 for M4M.full and 808 for ITS-Tools.L, so there are 808 plots on each of the two charts). Each execution was allowed 1 hour and 16 GByte of memory. Then performance charts comparing M4M.full to ITS-Tools.L are shown (you may click on one graph to enlarge it).

Statistics on the executions
  M4M.full ITS-Tools.L Both tools   M4M.full ITS-Tools.L
All computed OK 194 205 186   Smallest Memory Footprint
M4M.full = ITS-Tools.L 1 Times tool wins 408 213
M4M.full > ITS-Tools.L 2   Shortest Execution Time
M4M.full < ITS-Tools.L 33 Times tool wins 242 379
Do not compete 0 0 0
Error detected 1 0 0  
Cannot Compute + Time-out 204 194 187


On the chart below, denote cases where the two tools did computed all results without error, denote cases where the two tool did computed the same number of values (but not al values in the examination), denote cases where M4M.full computed more values than ITS-Tools.L, denote cases where M4M.full computed less values than ITS-Tools.L, denote the cases where at least one tool did not competed, denote the cases where at least one tool computed a bad value and denote the cases where at least one tool stated it could not compute a result or timed-out.

M4M.full wins when points are below the diagonal, ITS-Tools.L wins when points are above the diagonal.

memory chart time chart

M4M.full versus GreatSPN

Some statistics are displayed below, based on 1616 runs (808 for M4M.full and 808 for GreatSPN, so there are 808 plots on each of the two charts). Each execution was allowed 1 hour and 16 GByte of memory. Then performance charts comparing M4M.full to GreatSPN are shown (you may click on one graph to enlarge it).

Statistics on the executions
  M4M.full GreatSPN Both tools   M4M.full GreatSPN
All computed OK 138 224 223   Smallest Memory Footprint
M4M.full = GreatSPN 1 Times tool wins 179 461
M4M.full > GreatSPN 0   Shortest Execution Time
M4M.full < GreatSPN 54 Times tool wins 165 475
Do not compete 0 0 0
Error detected 1 0 0  
Cannot Compute + Time-out 223 138 168


On the chart below, denote cases where the two tools did computed all results without error, denote cases where the two tool did computed the same number of values (but not al values in the examination), denote cases where M4M.full computed more values than GreatSPN, denote cases where M4M.full computed less values than GreatSPN, denote the cases where at least one tool did not competed, denote the cases where at least one tool computed a bad value and denote the cases where at least one tool stated it could not compute a result or timed-out.

M4M.full wins when points are below the diagonal, GreatSPN wins when points are above the diagonal.

memory chart time chart

M4M.full versus smart

Some statistics are displayed below, based on 1616 runs (808 for M4M.full and 808 for smart, so there are 808 plots on each of the two charts). Each execution was allowed 1 hour and 16 GByte of memory. Then performance charts comparing M4M.full to smart are shown (you may click on one graph to enlarge it).

Statistics on the executions
  M4M.full smart Both tools   M4M.full smart
All computed OK 280 144 130   Smallest Memory Footprint
M4M.full = smart 1 Times tool wins 297 263
M4M.full > smart 0   Shortest Execution Time
M4M.full < smart 5 Times tool wins 320 240
Do not compete 0 180 0
Error detected 1 0 0  
Cannot Compute + Time-out 207 164 184


On the chart below, denote cases where the two tools did computed all results without error, denote cases where the two tool did computed the same number of values (but not al values in the examination), denote cases where M4M.full computed more values than smart, denote cases where M4M.full computed less values than smart, denote the cases where at least one tool did not competed, denote the cases where at least one tool computed a bad value and denote the cases where at least one tool stated it could not compute a result or timed-out.

M4M.full wins when points are below the diagonal, smart wins when points are above the diagonal.

memory chart time chart

M4M.full versus Irma.full

Some statistics are displayed below, based on 1616 runs (808 for M4M.full and 808 for Irma.full, so there are 808 plots on each of the two charts). Each execution was allowed 1 hour and 16 GByte of memory. Then performance charts comparing M4M.full to Irma.full are shown (you may click on one graph to enlarge it).

Statistics on the executions
  M4M.full Irma.full Both tools   M4M.full Irma.full
All computed OK 9 145 220   Smallest Memory Footprint
M4M.full = Irma.full 130 Times tool wins 217 344
M4M.full > Irma.full 8   Shortest Execution Time
M4M.full < Irma.full 49 Times tool wins 198 363
Do not compete 0 0 0
Error detected 1 0 0  
Cannot Compute + Time-out 144 9 247


On the chart below, denote cases where the two tools did computed all results without error, denote cases where the two tool did computed the same number of values (but not al values in the examination), denote cases where M4M.full computed more values than Irma.full, denote cases where M4M.full computed less values than Irma.full, denote the cases where at least one tool did not competed, denote the cases where at least one tool computed a bad value and denote the cases where at least one tool stated it could not compute a result or timed-out.

M4M.full wins when points are below the diagonal, Irma.full wins when points are above the diagonal.

memory chart time chart

M4M.full versus Irma.struct

Some statistics are displayed below, based on 1616 runs (808 for M4M.full and 808 for Irma.struct, so there are 808 plots on each of the two charts). Each execution was allowed 1 hour and 16 GByte of memory. Then performance charts comparing M4M.full to Irma.struct are shown (you may click on one graph to enlarge it).

Statistics on the executions
  M4M.full Irma.struct Both tools   M4M.full Irma.struct
All computed OK 10 146 218   Smallest Memory Footprint
M4M.full = Irma.struct 129 Times tool wins 281 281
M4M.full > Irma.struct 9   Shortest Execution Time
M4M.full < Irma.struct 50 Times tool wins 191 371
Do not compete 0 0 0
Error detected 1 0 0  
Cannot Compute + Time-out 145 10 246


On the chart below, denote cases where the two tools did computed all results without error, denote cases where the two tool did computed the same number of values (but not al values in the examination), denote cases where M4M.full computed more values than Irma.struct, denote cases where M4M.full computed less values than Irma.struct, denote the cases where at least one tool did not competed, denote the cases where at least one tool computed a bad value and denote the cases where at least one tool stated it could not compute a result or timed-out.

M4M.full wins when points are below the diagonal, Irma.struct wins when points are above the diagonal.

memory chart time chart