Introduction
This page presents how Tapaal do cope efficiently with the StateSpace 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 Tapaal' 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).
Tapaal versus LTSMin
Some statistics are displayed below, based on 1616 runs (808 for Tapaal 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 Tapaal to LTSMin are shown (you may click on one graph to enlarge it).
Statistics on the executions | ||||||
Tapaal | LTSMin | Both tools | Tapaal | LTSMin | ||
All computed OK | 48 | 131 | 0 | Smallest Memory Footprint | ||
Tapaal = LTSMin | — | — | 153 | Times tool wins | 190 | 142 |
Tapaal > LTSMin | — | — | 0 | Shortest Execution Time | ||
Tapaal < LTSMin | — | — | 0 | Times tool wins | 147 | 185 |
Do not compete | 0 | 180 | 0 | |||
Error detected | 0 | 1 | 0 | |||
Cannot Compute + Time-out | 271 | 7 | 336 |
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 Tapaal
computed more values than LTSMin,
denote cases where Tapaal
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.
Tapaal wins when points are below the diagonal, LTSMin wins when points are above the diagonal.
Tapaal versus LoLA
Some statistics are displayed below, based on 1616 runs (808 for Tapaal 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 Tapaal to LoLA are shown (you may click on one graph to enlarge it).
Statistics on the executions | ||||||
Tapaal | LoLA | Both tools | Tapaal | LoLA | ||
All computed OK | 201 | 0 | 0 | Smallest Memory Footprint | ||
Tapaal = LoLA | — | — | 0 | Times tool wins | 201 | 0 |
Tapaal > LoLA | — | — | 0 | Shortest Execution Time | ||
Tapaal < LoLA | — | — | 0 | Times tool wins | 201 | 0 |
Do not compete | 0 | 0 | 0 | |||
Error detected | 0 | 0 | 0 | |||
Cannot Compute + Time-out | 0 | 201 | 607 |
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 Tapaal
computed more values than LoLA,
denote cases where Tapaal
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.
Tapaal wins when points are below the diagonal, LoLA wins when points are above the diagonal.
Tapaal versus M4M.full
Some statistics are displayed below, based on 1616 runs (808 for Tapaal and 808 for M4M.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 Tapaal to M4M.full are shown (you may click on one graph to enlarge it).
Statistics on the executions | ||||||
Tapaal | M4M.full | Both tools | Tapaal | M4M.full | ||
All computed OK | 108 | 151 | 0 | Smallest Memory Footprint | ||
Tapaal = M4M.full | — | — | 18 | Times tool wins | 184 | 168 |
Tapaal > M4M.full | — | — | 5 | Shortest Execution Time | ||
Tapaal < M4M.full | — | — | 70 | Times tool wins | 173 | 179 |
Do not compete | 0 | 0 | 0 | |||
Error detected | 0 | 0 | 0 | |||
Cannot Compute + Time-out | 151 | 108 | 456 |
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 Tapaal
computed more values than M4M.full,
denote cases where Tapaal
computed less values than M4M.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.
Tapaal wins when points are below the diagonal, M4M.full wins when points are above the diagonal.
Tapaal versus M4M.struct
Some statistics are displayed below, based on 1616 runs (808 for Tapaal 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 Tapaal to M4M.struct are shown (you may click on one graph to enlarge it).
Statistics on the executions | ||||||
Tapaal | M4M.struct | Both tools | Tapaal | M4M.struct | ||
All computed OK | 107 | 152 | 0 | Smallest Memory Footprint | ||
Tapaal = M4M.struct | — | — | 29 | Times tool wins | 183 | 170 |
Tapaal > M4M.struct | — | — | 5 | Shortest Execution Time | ||
Tapaal < M4M.struct | — | — | 60 | Times tool wins | 173 | 180 |
Do not compete | 0 | 0 | 0 | |||
Error detected | 0 | 0 | 0 | |||
Cannot Compute + Time-out | 152 | 107 | 455 |
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 Tapaal
computed more values than M4M.struct,
denote cases where Tapaal
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.
Tapaal wins when points are below the diagonal, M4M.struct wins when points are above the diagonal.
Tapaal versus ITS-Tools
Some statistics are displayed below, based on 1616 runs (808 for Tapaal 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 Tapaal to ITS-Tools are shown (you may click on one graph to enlarge it).
Statistics on the executions | ||||||
Tapaal | ITS-Tools | Both tools | Tapaal | ITS-Tools | ||
All computed OK | 13 | 271 | 0 | Smallest Memory Footprint | ||
Tapaal = ITS-Tools | — | — | 188 | Times tool wins | 201 | 271 |
Tapaal > ITS-Tools | — | — | 0 | Shortest Execution Time | ||
Tapaal < ITS-Tools | — | — | 0 | Times tool wins | 120 | 352 |
Do not compete | 0 | 0 | 0 | |||
Error detected | 0 | 0 | 0 | |||
Cannot Compute + Time-out | 271 | 13 | 336 |
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 Tapaal
computed more values than ITS-Tools,
denote cases where Tapaal
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.
Tapaal wins when points are below the diagonal, ITS-Tools wins when points are above the diagonal.
Tapaal versus ITS-Tools.L
Some statistics are displayed below, based on 1616 runs (808 for Tapaal 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 Tapaal to ITS-Tools.L are shown (you may click on one graph to enlarge it).
Statistics on the executions | ||||||
Tapaal | ITS-Tools.L | Both tools | Tapaal | ITS-Tools.L | ||
All computed OK | 14 | 253 | 0 | Smallest Memory Footprint | ||
Tapaal = ITS-Tools.L | — | — | 187 | Times tool wins | 201 | 253 |
Tapaal > ITS-Tools.L | — | — | 0 | Shortest Execution Time | ||
Tapaal < ITS-Tools.L | — | — | 0 | Times tool wins | 134 | 320 |
Do not compete | 0 | 0 | 0 | |||
Error detected | 0 | 0 | 0 | |||
Cannot Compute + Time-out | 253 | 14 | 354 |
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 Tapaal
computed more values than ITS-Tools.L,
denote cases where Tapaal
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.
Tapaal wins when points are below the diagonal, ITS-Tools.L wins when points are above the diagonal.
Tapaal versus GreatSPN
Some statistics are displayed below, based on 1616 runs (808 for Tapaal 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 Tapaal to GreatSPN are shown (you may click on one graph to enlarge it).
Statistics on the executions | ||||||
Tapaal | GreatSPN | Both tools | Tapaal | GreatSPN | ||
All computed OK | 6 | 332 | 0 | Smallest Memory Footprint | ||
Tapaal = GreatSPN | — | — | 0 | Times tool wins | 75 | 458 |
Tapaal > GreatSPN | — | — | 0 | Shortest Execution Time | ||
Tapaal < GreatSPN | — | — | 195 | Times tool wins | 74 | 459 |
Do not compete | 0 | 0 | 0 | |||
Error detected | 0 | 0 | 0 | |||
Cannot Compute + Time-out | 332 | 6 | 275 |
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 Tapaal
computed more values than GreatSPN,
denote cases where Tapaal
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.
Tapaal wins when points are below the diagonal, GreatSPN wins when points are above the diagonal.
Tapaal versus smart
Some statistics are displayed below, based on 1616 runs (808 for Tapaal 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 Tapaal to smart are shown (you may click on one graph to enlarge it).
Statistics on the executions | ||||||
Tapaal | smart | Both tools | Tapaal | smart | ||
All computed OK | 59 | 136 | 0 | Smallest Memory Footprint | ||
Tapaal = smart | — | — | 0 | Times tool wins | 157 | 180 |
Tapaal > smart | — | — | 0 | Shortest Execution Time | ||
Tapaal < smart | — | — | 142 | Times tool wins | 145 | 192 |
Do not compete | 0 | 180 | 0 | |||
Error detected | 0 | 0 | 0 | |||
Cannot Compute + Time-out | 275 | 18 | 332 |
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 Tapaal
computed more values than smart,
denote cases where Tapaal
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.
Tapaal wins when points are below the diagonal, smart wins when points are above the diagonal.
Tapaal versus TINA.tedd
Some statistics are displayed below, based on 1616 runs (808 for Tapaal and 808 for TINA.tedd, 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 Tapaal to TINA.tedd are shown (you may click on one graph to enlarge it).
Statistics on the executions | ||||||
Tapaal | TINA.tedd | Both tools | Tapaal | TINA.tedd | ||
All computed OK | 6 | 335 | 0 | Smallest Memory Footprint | ||
Tapaal = TINA.tedd | — | — | 0 | Times tool wins | 189 | 347 |
Tapaal > TINA.tedd | — | — | 0 | Shortest Execution Time | ||
Tapaal < TINA.tedd | — | — | 195 | Times tool wins | 126 | 410 |
Do not compete | 0 | 0 | 0 | |||
Error detected | 0 | 0 | 0 | |||
Cannot Compute + Time-out | 335 | 6 | 272 |
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 Tapaal
computed more values than TINA.tedd,
denote cases where Tapaal
computed less values than TINA.tedd,
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.
Tapaal wins when points are below the diagonal, TINA.tedd wins when points are above the diagonal.
Tapaal versus Irma.full
Some statistics are displayed below, based on 1616 runs (808 for Tapaal 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 Tapaal to Irma.full are shown (you may click on one graph to enlarge it).
Statistics on the executions | ||||||
Tapaal | Irma.full | Both tools | Tapaal | Irma.full | ||
All computed OK | 99 | 191 | 0 | Smallest Memory Footprint | ||
Tapaal = Irma.full | — | — | 5 | Times tool wins | 184 | 208 |
Tapaal > Irma.full | — | — | 14 | Shortest Execution Time | ||
Tapaal < Irma.full | — | — | 83 | Times tool wins | 168 | 224 |
Do not compete | 0 | 8 | 0 | |||
Error detected | 0 | 0 | 0 | |||
Cannot Compute + Time-out | 197 | 97 | 410 |
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 Tapaal
computed more values than Irma.full,
denote cases where Tapaal
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.
Tapaal wins when points are below the diagonal, Irma.full wins when points are above the diagonal.
Tapaal versus Irma.struct
Some statistics are displayed below, based on 1616 runs (808 for Tapaal 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 Tapaal to Irma.struct are shown (you may click on one graph to enlarge it).
Statistics on the executions | ||||||
Tapaal | Irma.struct | Both tools | Tapaal | Irma.struct | ||
All computed OK | 99 | 190 | 0 | Smallest Memory Footprint | ||
Tapaal = Irma.struct | — | — | 5 | Times tool wins | 184 | 207 |
Tapaal > Irma.struct | — | — | 14 | Shortest Execution Time | ||
Tapaal < Irma.struct | — | — | 83 | Times tool wins | 168 | 223 |
Do not compete | 0 | 8 | 0 | |||
Error detected | 0 | 0 | 0 | |||
Cannot Compute + Time-out | 196 | 97 | 411 |
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 Tapaal
computed more values than Irma.struct,
denote cases where Tapaal
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.
Tapaal wins when points are below the diagonal, Irma.struct wins when points are above the diagonal.