Tool Bounds
stdout:
YES(?,O(n^1))
We consider the following Problem:
Strict Trs:
{ 5(4(1(0(4(2(0(x1))))))) -> 5(1(0(0(0(1(4(2(4(1(x1))))))))))
, 5(3(2(2(0(1(3(x1))))))) -> 0(0(5(5(5(5(3(3(3(1(x1))))))))))
, 5(3(1(1(3(5(3(x1))))))) -> 0(0(5(5(4(2(4(2(4(1(x1))))))))))
, 4(5(0(4(3(0(0(x1))))))) -> 4(2(2(1(1(3(3(0(1(0(x1))))))))))
, 4(5(0(3(0(3(0(x1))))))) -> 4(1(4(1(0(0(0(2(5(1(x1))))))))))
, 4(4(5(5(3(2(4(x1))))))) -> 5(2(1(4(5(4(2(1(2(1(x1))))))))))
, 4(4(4(5(3(4(0(x1))))))) -> 1(5(2(4(2(4(2(4(0(0(x1))))))))))
, 4(2(0(1(1(3(0(x1))))))) -> 4(2(5(2(2(3(1(4(2(0(x1))))))))))
, 3(5(4(0(3(3(4(x1))))))) -> 1(3(1(3(3(2(2(4(2(1(x1))))))))))
, 3(5(0(0(3(2(4(x1))))))) -> 2(1(0(0(0(5(5(5(3(4(x1))))))))))
, 3(4(4(4(4(3(5(x1))))))) -> 3(3(4(5(1(4(2(1(1(5(x1))))))))))
, 3(4(3(0(4(4(0(x1))))))) -> 3(4(2(2(1(2(0(3(4(0(x1))))))))))
, 3(2(0(1(3(3(0(x1))))))) -> 2(2(5(0(2(4(2(1(2(0(x1))))))))))
, 3(0(4(4(4(0(2(x1))))))) -> 3(1(3(3(1(1(2(2(2(2(x1))))))))))
, 3(0(3(2(0(1(2(x1))))))) -> 1(3(5(2(4(3(4(2(1(2(x1))))))))))
, 3(0(2(3(0(5(4(x1))))))) -> 2(2(3(0(0(0(5(2(2(4(x1))))))))))
, 2(3(5(1(0(0(5(x1))))))) -> 1(2(0(0(0(5(0(5(2(2(x1))))))))))
, 2(3(0(2(0(3(4(x1))))))) -> 2(3(5(0(0(0(1(4(2(1(x1))))))))))
, 2(0(3(4(4(4(4(x1))))))) -> 5(2(2(2(3(1(3(4(3(4(x1))))))))))
, 2(0(3(0(5(4(4(x1))))))) -> 2(5(2(2(1(1(0(3(3(1(x1))))))))))
, 1(5(4(4(5(3(2(x1))))))) -> 1(2(0(5(2(2(2(0(5(2(x1))))))))))
, 1(5(3(2(5(3(5(x1))))))) -> 2(4(4(3(5(2(2(0(0(5(x1))))))))))
, 1(5(2(3(0(5(0(x1))))))) -> 1(5(2(4(2(4(2(1(3(0(x1))))))))))
, 1(5(1(5(2(3(2(x1))))))) -> 5(2(0(2(3(3(1(1(1(2(x1))))))))))
, 1(3(4(0(4(0(2(x1))))))) -> 3(4(4(1(4(2(5(2(2(2(x1))))))))))
, 1(3(0(0(1(1(5(x1))))))) -> 1(1(4(2(2(5(5(2(5(5(x1))))))))))
, 1(2(0(3(2(5(4(x1))))))) -> 1(1(5(5(0(0(2(1(2(4(x1))))))))))
, 0(5(0(4(3(4(5(x1))))))) -> 0(5(2(0(5(4(2(2(3(5(x1))))))))))
, 0(4(0(1(2(5(3(x1))))))) -> 0(5(2(1(3(3(3(3(4(1(x1))))))))))
, 0(3(5(1(1(3(0(x1))))))) -> 5(5(0(5(5(1(4(1(1(0(x1))))))))))
, 0(3(0(3(0(5(4(x1))))))) -> 0(2(0(0(5(3(3(3(3(4(x1))))))))))
, 0(3(0(2(5(1(3(x1))))))) -> 5(5(0(5(4(1(1(3(2(3(x1))))))))))
, 0(1(1(2(0(3(2(x1))))))) -> 0(2(2(0(5(2(4(1(3(2(x1))))))))))
, 4(5(3(2(0(2(x1)))))) -> 4(2(1(2(1(2(5(1(3(1(x1))))))))))
, 4(3(2(0(3(3(x1)))))) -> 1(5(3(4(1(3(1(1(3(1(x1))))))))))
, 4(1(0(4(4(2(x1)))))) -> 4(2(3(2(3(3(1(4(2(2(x1))))))))))
, 3(5(3(1(1(0(x1)))))) -> 4(1(4(2(1(2(3(1(3(0(x1))))))))))
, 3(5(1(5(1(2(x1)))))) -> 3(4(2(2(1(1(4(3(2(2(x1))))))))))
, 3(3(5(4(3(1(x1)))))) -> 3(2(4(2(1(5(1(3(1(3(x1))))))))))
, 3(3(0(3(5(4(x1)))))) -> 3(3(4(2(2(2(4(1(5(4(x1))))))))))
, 2(1(4(4(3(2(x1)))))) -> 2(2(3(3(4(1(4(2(3(2(x1))))))))))
, 2(0(3(0(2(3(x1)))))) -> 2(4(1(0(0(0(5(0(2(3(x1))))))))))
, 1(2(3(2(0(3(x1)))))) -> 2(4(3(1(3(3(3(1(3(1(x1))))))))))
, 1(1(5(0(1(2(x1)))))) -> 2(2(2(2(5(0(5(4(5(2(x1))))))))))
, 0(4(4(4(0(4(x1)))))) -> 0(5(4(5(3(4(1(4(2(4(x1))))))))))
, 0(4(3(2(3(5(x1)))))) -> 5(5(0(5(2(1(2(2(4(5(x1))))))))))
, 0(4(0(1(1(2(x1)))))) -> 0(0(4(2(4(2(4(2(3(2(x1))))))))))
, 0(2(0(4(0(3(x1)))))) -> 0(2(2(3(4(2(2(3(1(1(x1))))))))))
, 3(5(0(4(5(x1))))) -> 0(3(3(3(1(3(1(1(3(4(x1))))))))))
, 4(0(1(4(x1)))) -> 4(2(3(1(1(3(3(3(2(4(x1))))))))))
, 0(1(1(2(x1)))) -> 0(1(3(4(2(2(4(2(2(2(x1))))))))))}
StartTerms: all
Strategy: none
Certificate: YES(?,O(n^1))
Proof:
The problem is match-bounded by 2.
The enriched problem is compatible with the following automaton:
{ 2_0(1) -> 1
, 2_1(1) -> 56
, 2_1(2) -> 56
, 2_1(7) -> 19
, 2_1(9) -> 8
, 2_1(10) -> 42
, 2_1(11) -> 20
, 2_1(13) -> 56
, 2_1(20) -> 99
, 2_1(21) -> 20
, 2_1(22) -> 21
, 2_1(28) -> 56
, 2_1(35) -> 34
, 2_1(36) -> 2
, 2_1(41) -> 40
, 2_1(43) -> 167
, 2_1(45) -> 44
, 2_1(47) -> 46
, 2_1(49) -> 48
, 2_1(50) -> 137
, 2_1(52) -> 51
, 2_1(53) -> 52
, 2_1(56) -> 99
, 2_1(61) -> 60
, 2_1(62) -> 61
, 2_1(63) -> 1
, 2_1(63) -> 10
, 2_1(63) -> 42
, 2_1(63) -> 56
, 2_1(63) -> 70
, 2_1(63) -> 78
, 2_1(63) -> 79
, 2_1(63) -> 84
, 2_1(63) -> 92
, 2_1(63) -> 140
, 2_1(63) -> 167
, 2_1(63) -> 168
, 2_1(63) -> 193
, 2_1(70) -> 167
, 2_1(71) -> 108
, 2_1(78) -> 77
, 2_1(82) -> 81
, 2_1(83) -> 82
, 2_1(85) -> 84
, 2_1(86) -> 209
, 2_1(87) -> 63
, 2_1(90) -> 89
, 2_1(92) -> 91
, 2_1(98) -> 97
, 2_1(99) -> 98
, 2_1(101) -> 100
, 2_1(106) -> 148
, 2_1(108) -> 107
, 2_1(109) -> 43
, 2_1(118) -> 36
, 2_1(119) -> 118
, 2_1(124) -> 123
, 2_1(125) -> 124
, 2_1(129) -> 128
, 2_1(130) -> 129
, 2_1(131) -> 130
, 2_1(137) -> 136
, 2_1(138) -> 137
, 2_1(139) -> 130
, 2_1(142) -> 141
, 2_1(149) -> 148
, 2_1(152) -> 151
, 2_1(153) -> 152
, 2_1(156) -> 155
, 2_1(161) -> 160
, 2_1(162) -> 20
, 2_1(163) -> 162
, 2_1(165) -> 278
, 2_1(167) -> 166
, 2_1(168) -> 167
, 2_1(179) -> 11
, 2_1(188) -> 179
, 2_1(191) -> 190
, 2_1(193) -> 226
, 2_1(195) -> 194
, 2_1(197) -> 196
, 2_1(204) -> 203
, 2_1(207) -> 278
, 2_1(208) -> 30
, 2_1(213) -> 72
, 2_1(215) -> 214
, 2_1(218) -> 74
, 2_1(219) -> 218
, 2_1(220) -> 219
, 2_1(225) -> 252
, 2_1(236) -> 87
, 2_1(237) -> 236
, 2_1(246) -> 175
, 2_1(248) -> 247
, 2_1(249) -> 248
, 2_1(251) -> 250
, 2_1(255) -> 254
, 2_1(256) -> 255
, 2_1(278) -> 277
, 2_1(279) -> 278
, 2_1(340) -> 1
, 2_2(11) -> 338
, 2_2(21) -> 338
, 2_2(109) -> 288
, 2_2(162) -> 338
, 2_2(284) -> 283
, 2_2(285) -> 284
, 2_2(287) -> 286
, 2_2(288) -> 287
, 2_2(308) -> 307
, 2_2(310) -> 309
, 2_2(312) -> 311
, 2_2(335) -> 334
, 2_2(337) -> 336
, 2_2(338) -> 337
, 2_2(340) -> 339
, 2_2(347) -> 346
, 2_2(439) -> 438
, 2_2(441) -> 440
, 1_0(1) -> 1
, 1_1(1) -> 10
, 1_1(2) -> 10
, 1_1(3) -> 2
, 1_1(7) -> 6
, 1_1(10) -> 78
, 1_1(11) -> 10
, 1_1(12) -> 10
, 1_1(18) -> 198
, 1_1(20) -> 10
, 1_1(23) -> 22
, 1_1(24) -> 23
, 1_1(27) -> 178
, 1_1(28) -> 27
, 1_1(29) -> 20
, 1_1(31) -> 30
, 1_1(37) -> 36
, 1_1(42) -> 41
, 1_1(43) -> 1
, 1_1(43) -> 10
, 1_1(43) -> 49
, 1_1(43) -> 56
, 1_1(43) -> 70
, 1_1(43) -> 71
, 1_1(43) -> 79
, 1_1(43) -> 83
, 1_1(43) -> 92
, 1_1(43) -> 122
, 1_1(43) -> 140
, 1_1(43) -> 150
, 1_1(43) -> 167
, 1_1(43) -> 168
, 1_1(43) -> 221
, 1_1(49) -> 261
, 1_1(55) -> 54
, 1_1(56) -> 92
, 1_1(57) -> 10
, 1_1(58) -> 57
, 1_1(62) -> 117
, 1_1(63) -> 10
, 1_1(64) -> 63
, 1_1(70) -> 49
, 1_1(72) -> 10
, 1_1(73) -> 10
, 1_1(74) -> 10
, 1_1(76) -> 75
, 1_1(78) -> 144
, 1_1(79) -> 78
, 1_1(80) -> 79
, 1_1(81) -> 10
, 1_1(84) -> 83
, 1_1(86) -> 217
, 1_1(92) -> 145
, 1_1(93) -> 72
, 1_1(96) -> 95
, 1_1(97) -> 96
, 1_1(98) -> 96
, 1_1(107) -> 246
, 1_1(108) -> 161
, 1_1(121) -> 120
, 1_1(126) -> 125
, 1_1(127) -> 126
, 1_1(133) -> 10
, 1_1(140) -> 49
, 1_1(141) -> 10
, 1_1(145) -> 144
, 1_1(147) -> 146
, 1_1(150) -> 43
, 1_1(169) -> 163
, 1_1(173) -> 10
, 1_1(177) -> 176
, 1_1(179) -> 10
, 1_1(186) -> 185
, 1_1(187) -> 186
, 1_1(193) -> 192
, 1_1(194) -> 21
, 1_1(196) -> 195
, 1_1(198) -> 202
, 1_1(199) -> 10
, 1_1(201) -> 200
, 1_1(207) -> 206
, 1_1(209) -> 208
, 1_1(214) -> 10
, 1_1(216) -> 215
, 1_1(222) -> 221
, 1_1(225) -> 224
, 1_1(227) -> 133
, 1_1(233) -> 232
, 1_1(245) -> 244
, 1_1(247) -> 246
, 1_1(257) -> 10
, 1_1(258) -> 10
, 1_1(260) -> 259
, 1_1(262) -> 203
, 1_1(263) -> 262
, 1_1(275) -> 11
, 1_1(276) -> 10
, 1_1(339) -> 10
, 1_1(340) -> 10
, 1_1(341) -> 10
, 1_2(73) -> 324
, 1_2(142) -> 315
, 1_2(199) -> 442
, 1_2(258) -> 324
, 1_2(281) -> 280
, 1_2(309) -> 308
, 1_2(311) -> 310
, 1_2(314) -> 313
, 1_2(316) -> 150
, 1_2(320) -> 319
, 1_2(322) -> 321
, 1_2(323) -> 322
, 1_2(333) -> 332
, 1_2(342) -> 341
, 1_2(343) -> 342
, 0_0(1) -> 1
, 0_1(1) -> 28
, 0_1(4) -> 3
, 0_1(5) -> 4
, 0_1(6) -> 5
, 0_1(10) -> 26
, 0_1(11) -> 1
, 0_1(11) -> 26
, 0_1(11) -> 28
, 0_1(11) -> 69
, 0_1(11) -> 70
, 0_1(11) -> 80
, 0_1(11) -> 85
, 0_1(11) -> 139
, 0_1(11) -> 168
, 0_1(12) -> 11
, 0_1(17) -> 127
, 0_1(20) -> 20
, 0_1(27) -> 26
, 0_1(28) -> 50
, 0_1(32) -> 31
, 0_1(33) -> 32
, 0_1(34) -> 33
, 0_1(65) -> 64
, 0_1(66) -> 65
, 0_1(67) -> 66
, 0_1(70) -> 85
, 0_1(80) -> 139
, 0_1(86) -> 85
, 0_1(89) -> 88
, 0_1(91) -> 159
, 0_1(104) -> 103
, 0_1(105) -> 104
, 0_1(106) -> 105
, 0_1(110) -> 109
, 0_1(111) -> 110
, 0_1(112) -> 111
, 0_1(115) -> 114
, 0_1(116) -> 115
, 0_1(117) -> 116
, 0_1(132) -> 131
, 0_1(139) -> 138
, 0_1(141) -> 36
, 0_1(159) -> 158
, 0_1(160) -> 159
, 0_1(164) -> 163
, 0_1(167) -> 231
, 0_1(173) -> 20
, 0_1(174) -> 173
, 0_1(180) -> 179
, 0_1(181) -> 180
, 0_1(189) -> 188
, 0_1(228) -> 227
, 0_1(229) -> 228
, 0_1(230) -> 229
, 0_1(239) -> 238
, 0_2(280) -> 26
, 0_2(434) -> 35
, 0_2(435) -> 434
, 4_0(1) -> 1
, 4_1(1) -> 71
, 4_1(2) -> 1
, 4_1(8) -> 7
, 4_1(10) -> 9
, 4_1(19) -> 14
, 4_1(20) -> 1
, 4_1(20) -> 9
, 4_1(20) -> 49
, 4_1(20) -> 55
, 4_1(20) -> 70
, 4_1(20) -> 71
, 4_1(20) -> 168
, 4_1(20) -> 249
, 4_1(28) -> 49
, 4_1(30) -> 29
, 4_1(35) -> 240
, 4_1(38) -> 37
, 4_1(40) -> 39
, 4_1(42) -> 62
, 4_1(46) -> 45
, 4_1(48) -> 47
, 4_1(49) -> 9
, 4_1(50) -> 49
, 4_1(54) -> 243
, 4_1(56) -> 55
, 4_1(70) -> 122
, 4_1(74) -> 73
, 4_1(77) -> 76
, 4_1(79) -> 220
, 4_1(80) -> 249
, 4_1(81) -> 72
, 4_1(91) -> 90
, 4_1(98) -> 279
, 4_1(99) -> 207
, 4_1(102) -> 101
, 4_1(108) -> 245
, 4_1(113) -> 71
, 4_1(117) -> 223
, 4_1(132) -> 240
, 4_1(133) -> 63
, 4_1(134) -> 133
, 4_1(146) -> 81
, 4_1(148) -> 147
, 4_1(151) -> 150
, 4_1(166) -> 165
, 4_1(167) -> 225
, 4_1(173) -> 1
, 4_1(178) -> 177
, 4_1(185) -> 175
, 4_1(187) -> 150
, 4_1(192) -> 191
, 4_1(193) -> 150
, 4_1(200) -> 199
, 4_1(214) -> 213
, 4_1(221) -> 220
, 4_1(224) -> 223
, 4_1(226) -> 225
, 4_1(241) -> 162
, 4_1(244) -> 243
, 4_1(250) -> 12
, 4_1(252) -> 251
, 4_1(254) -> 253
, 4_1(277) -> 276
, 4_1(339) -> 1
, 4_2(30) -> 347
, 4_2(283) -> 282
, 4_2(286) -> 285
, 4_2(307) -> 240
, 4_2(319) -> 318
, 4_2(331) -> 330
, 4_2(332) -> 331
, 4_2(334) -> 333
, 4_2(339) -> 1
, 4_2(339) -> 9
, 4_2(339) -> 49
, 4_2(339) -> 55
, 4_2(339) -> 70
, 4_2(339) -> 71
, 4_2(339) -> 168
, 4_2(339) -> 249
, 4_2(438) -> 437
, 4_2(440) -> 439
, 4_2(442) -> 441
, 3_0(1) -> 1
, 3_1(1) -> 70
, 3_1(2) -> 43
, 3_1(9) -> 172
, 3_1(10) -> 18
, 3_1(17) -> 16
, 3_1(18) -> 17
, 3_1(25) -> 24
, 3_1(26) -> 25
, 3_1(28) -> 140
, 3_1(43) -> 43
, 3_1(49) -> 86
, 3_1(53) -> 204
, 3_1(54) -> 53
, 3_1(56) -> 193
, 3_1(57) -> 43
, 3_1(59) -> 58
, 3_1(60) -> 59
, 3_1(62) -> 102
, 3_1(63) -> 70
, 3_1(70) -> 184
, 3_1(71) -> 70
, 3_1(72) -> 1
, 3_1(72) -> 10
, 3_1(72) -> 49
, 3_1(72) -> 70
, 3_1(72) -> 121
, 3_1(72) -> 140
, 3_1(72) -> 184
, 3_1(72) -> 217
, 3_1(73) -> 72
, 3_1(78) -> 256
, 3_1(80) -> 168
, 3_1(90) -> 102
, 3_1(93) -> 43
, 3_1(94) -> 93
, 3_1(95) -> 94
, 3_1(99) -> 151
, 3_1(103) -> 87
, 3_1(108) -> 268
, 3_1(113) -> 63
, 3_1(120) -> 119
, 3_1(122) -> 121
, 3_1(135) -> 134
, 3_1(143) -> 142
, 3_1(144) -> 143
, 3_1(162) -> 70
, 3_1(167) -> 187
, 3_1(170) -> 169
, 3_1(171) -> 170
, 3_1(172) -> 171
, 3_1(183) -> 182
, 3_1(184) -> 183
, 3_1(193) -> 267
, 3_1(198) -> 235
, 3_1(199) -> 44
, 3_1(202) -> 201
, 3_1(203) -> 21
, 3_1(205) -> 204
, 3_1(206) -> 205
, 3_1(207) -> 168
, 3_1(213) -> 70
, 3_1(223) -> 103
, 3_1(232) -> 133
, 3_1(234) -> 233
, 3_1(235) -> 234
, 3_1(243) -> 242
, 3_1(253) -> 188
, 3_1(257) -> 11
, 3_1(258) -> 257
, 3_1(259) -> 258
, 3_1(261) -> 260
, 3_1(267) -> 263
, 3_1(268) -> 267
, 3_1(276) -> 275
, 3_1(341) -> 43
, 3_2(282) -> 281
, 3_2(315) -> 314
, 3_2(318) -> 317
, 3_2(321) -> 320
, 3_2(324) -> 323
, 3_2(330) -> 217
, 3_2(341) -> 340
, 3_2(344) -> 343
, 3_2(345) -> 344
, 3_2(346) -> 345
, 5_0(1) -> 1
, 5_1(1) -> 80
, 5_1(2) -> 1
, 5_1(2) -> 10
, 5_1(2) -> 28
, 5_1(2) -> 56
, 5_1(2) -> 71
, 5_1(2) -> 79
, 5_1(2) -> 80
, 5_1(2) -> 84
, 5_1(2) -> 85
, 5_1(2) -> 222
, 5_1(8) -> 189
, 5_1(10) -> 35
, 5_1(13) -> 12
, 5_1(14) -> 13
, 5_1(15) -> 14
, 5_1(16) -> 15
, 5_1(34) -> 154
, 5_1(39) -> 38
, 5_1(43) -> 35
, 5_1(44) -> 43
, 5_1(51) -> 21
, 5_1(56) -> 132
, 5_1(68) -> 67
, 5_1(69) -> 68
, 5_1(70) -> 69
, 5_1(71) -> 222
, 5_1(72) -> 132
, 5_1(75) -> 74
, 5_1(80) -> 156
, 5_1(85) -> 230
, 5_1(88) -> 87
, 5_1(98) -> 149
, 5_1(99) -> 106
, 5_1(100) -> 57
, 5_1(105) -> 112
, 5_1(107) -> 106
, 5_1(114) -> 113
, 5_1(123) -> 63
, 5_1(128) -> 110
, 5_1(136) -> 135
, 5_1(150) -> 35
, 5_1(154) -> 153
, 5_1(155) -> 154
, 5_1(157) -> 150
, 5_1(158) -> 157
, 5_1(162) -> 11
, 5_1(165) -> 164
, 5_1(173) -> 2
, 5_1(175) -> 174
, 5_1(176) -> 175
, 5_1(181) -> 14
, 5_1(182) -> 181
, 5_1(190) -> 189
, 5_1(198) -> 197
, 5_1(217) -> 216
, 5_1(231) -> 230
, 5_1(238) -> 237
, 5_1(240) -> 239
, 5_1(242) -> 241
, 5_1(249) -> 239
, 5_2(313) -> 312
, 5_2(317) -> 316
, 5_2(336) -> 335
, 5_2(436) -> 435
, 5_2(437) -> 436}
Hurray, we answered YES(?,O(n^1))Tool CDI
stdout:
TIMEOUT
Statistics:
Number of monomials: 0
Last formula building started for bound 0
Last SAT solving started for bound 0Tool EDA
stdout:
TIMEOUT
We consider the following Problem:
Strict Trs:
{ 5(4(1(0(4(2(0(x1))))))) -> 5(1(0(0(0(1(4(2(4(1(x1))))))))))
, 5(3(2(2(0(1(3(x1))))))) -> 0(0(5(5(5(5(3(3(3(1(x1))))))))))
, 5(3(1(1(3(5(3(x1))))))) -> 0(0(5(5(4(2(4(2(4(1(x1))))))))))
, 4(5(0(4(3(0(0(x1))))))) -> 4(2(2(1(1(3(3(0(1(0(x1))))))))))
, 4(5(0(3(0(3(0(x1))))))) -> 4(1(4(1(0(0(0(2(5(1(x1))))))))))
, 4(4(5(5(3(2(4(x1))))))) -> 5(2(1(4(5(4(2(1(2(1(x1))))))))))
, 4(4(4(5(3(4(0(x1))))))) -> 1(5(2(4(2(4(2(4(0(0(x1))))))))))
, 4(2(0(1(1(3(0(x1))))))) -> 4(2(5(2(2(3(1(4(2(0(x1))))))))))
, 3(5(4(0(3(3(4(x1))))))) -> 1(3(1(3(3(2(2(4(2(1(x1))))))))))
, 3(5(0(0(3(2(4(x1))))))) -> 2(1(0(0(0(5(5(5(3(4(x1))))))))))
, 3(4(4(4(4(3(5(x1))))))) -> 3(3(4(5(1(4(2(1(1(5(x1))))))))))
, 3(4(3(0(4(4(0(x1))))))) -> 3(4(2(2(1(2(0(3(4(0(x1))))))))))
, 3(2(0(1(3(3(0(x1))))))) -> 2(2(5(0(2(4(2(1(2(0(x1))))))))))
, 3(0(4(4(4(0(2(x1))))))) -> 3(1(3(3(1(1(2(2(2(2(x1))))))))))
, 3(0(3(2(0(1(2(x1))))))) -> 1(3(5(2(4(3(4(2(1(2(x1))))))))))
, 3(0(2(3(0(5(4(x1))))))) -> 2(2(3(0(0(0(5(2(2(4(x1))))))))))
, 2(3(5(1(0(0(5(x1))))))) -> 1(2(0(0(0(5(0(5(2(2(x1))))))))))
, 2(3(0(2(0(3(4(x1))))))) -> 2(3(5(0(0(0(1(4(2(1(x1))))))))))
, 2(0(3(4(4(4(4(x1))))))) -> 5(2(2(2(3(1(3(4(3(4(x1))))))))))
, 2(0(3(0(5(4(4(x1))))))) -> 2(5(2(2(1(1(0(3(3(1(x1))))))))))
, 1(5(4(4(5(3(2(x1))))))) -> 1(2(0(5(2(2(2(0(5(2(x1))))))))))
, 1(5(3(2(5(3(5(x1))))))) -> 2(4(4(3(5(2(2(0(0(5(x1))))))))))
, 1(5(2(3(0(5(0(x1))))))) -> 1(5(2(4(2(4(2(1(3(0(x1))))))))))
, 1(5(1(5(2(3(2(x1))))))) -> 5(2(0(2(3(3(1(1(1(2(x1))))))))))
, 1(3(4(0(4(0(2(x1))))))) -> 3(4(4(1(4(2(5(2(2(2(x1))))))))))
, 1(3(0(0(1(1(5(x1))))))) -> 1(1(4(2(2(5(5(2(5(5(x1))))))))))
, 1(2(0(3(2(5(4(x1))))))) -> 1(1(5(5(0(0(2(1(2(4(x1))))))))))
, 0(5(0(4(3(4(5(x1))))))) -> 0(5(2(0(5(4(2(2(3(5(x1))))))))))
, 0(4(0(1(2(5(3(x1))))))) -> 0(5(2(1(3(3(3(3(4(1(x1))))))))))
, 0(3(5(1(1(3(0(x1))))))) -> 5(5(0(5(5(1(4(1(1(0(x1))))))))))
, 0(3(0(3(0(5(4(x1))))))) -> 0(2(0(0(5(3(3(3(3(4(x1))))))))))
, 0(3(0(2(5(1(3(x1))))))) -> 5(5(0(5(4(1(1(3(2(3(x1))))))))))
, 0(1(1(2(0(3(2(x1))))))) -> 0(2(2(0(5(2(4(1(3(2(x1))))))))))
, 4(5(3(2(0(2(x1)))))) -> 4(2(1(2(1(2(5(1(3(1(x1))))))))))
, 4(3(2(0(3(3(x1)))))) -> 1(5(3(4(1(3(1(1(3(1(x1))))))))))
, 4(1(0(4(4(2(x1)))))) -> 4(2(3(2(3(3(1(4(2(2(x1))))))))))
, 3(5(3(1(1(0(x1)))))) -> 4(1(4(2(1(2(3(1(3(0(x1))))))))))
, 3(5(1(5(1(2(x1)))))) -> 3(4(2(2(1(1(4(3(2(2(x1))))))))))
, 3(3(5(4(3(1(x1)))))) -> 3(2(4(2(1(5(1(3(1(3(x1))))))))))
, 3(3(0(3(5(4(x1)))))) -> 3(3(4(2(2(2(4(1(5(4(x1))))))))))
, 2(1(4(4(3(2(x1)))))) -> 2(2(3(3(4(1(4(2(3(2(x1))))))))))
, 2(0(3(0(2(3(x1)))))) -> 2(4(1(0(0(0(5(0(2(3(x1))))))))))
, 1(2(3(2(0(3(x1)))))) -> 2(4(3(1(3(3(3(1(3(1(x1))))))))))
, 1(1(5(0(1(2(x1)))))) -> 2(2(2(2(5(0(5(4(5(2(x1))))))))))
, 0(4(4(4(0(4(x1)))))) -> 0(5(4(5(3(4(1(4(2(4(x1))))))))))
, 0(4(3(2(3(5(x1)))))) -> 5(5(0(5(2(1(2(2(4(5(x1))))))))))
, 0(4(0(1(1(2(x1)))))) -> 0(0(4(2(4(2(4(2(3(2(x1))))))))))
, 0(2(0(4(0(3(x1)))))) -> 0(2(2(3(4(2(2(3(1(1(x1))))))))))
, 3(5(0(4(5(x1))))) -> 0(3(3(3(1(3(1(1(3(4(x1))))))))))
, 4(0(1(4(x1)))) -> 4(2(3(1(1(3(3(3(2(4(x1))))))))))
, 0(1(1(2(x1)))) -> 0(1(3(4(2(2(4(2(2(2(x1))))))))))}
StartTerms: all
Strategy: none
Certificate: TIMEOUT
Proof:
Computation stopped due to timeout after 60.0 seconds.
Arrrr..Tool IDA
stdout:
TIMEOUT
We consider the following Problem:
Strict Trs:
{ 5(4(1(0(4(2(0(x1))))))) -> 5(1(0(0(0(1(4(2(4(1(x1))))))))))
, 5(3(2(2(0(1(3(x1))))))) -> 0(0(5(5(5(5(3(3(3(1(x1))))))))))
, 5(3(1(1(3(5(3(x1))))))) -> 0(0(5(5(4(2(4(2(4(1(x1))))))))))
, 4(5(0(4(3(0(0(x1))))))) -> 4(2(2(1(1(3(3(0(1(0(x1))))))))))
, 4(5(0(3(0(3(0(x1))))))) -> 4(1(4(1(0(0(0(2(5(1(x1))))))))))
, 4(4(5(5(3(2(4(x1))))))) -> 5(2(1(4(5(4(2(1(2(1(x1))))))))))
, 4(4(4(5(3(4(0(x1))))))) -> 1(5(2(4(2(4(2(4(0(0(x1))))))))))
, 4(2(0(1(1(3(0(x1))))))) -> 4(2(5(2(2(3(1(4(2(0(x1))))))))))
, 3(5(4(0(3(3(4(x1))))))) -> 1(3(1(3(3(2(2(4(2(1(x1))))))))))
, 3(5(0(0(3(2(4(x1))))))) -> 2(1(0(0(0(5(5(5(3(4(x1))))))))))
, 3(4(4(4(4(3(5(x1))))))) -> 3(3(4(5(1(4(2(1(1(5(x1))))))))))
, 3(4(3(0(4(4(0(x1))))))) -> 3(4(2(2(1(2(0(3(4(0(x1))))))))))
, 3(2(0(1(3(3(0(x1))))))) -> 2(2(5(0(2(4(2(1(2(0(x1))))))))))
, 3(0(4(4(4(0(2(x1))))))) -> 3(1(3(3(1(1(2(2(2(2(x1))))))))))
, 3(0(3(2(0(1(2(x1))))))) -> 1(3(5(2(4(3(4(2(1(2(x1))))))))))
, 3(0(2(3(0(5(4(x1))))))) -> 2(2(3(0(0(0(5(2(2(4(x1))))))))))
, 2(3(5(1(0(0(5(x1))))))) -> 1(2(0(0(0(5(0(5(2(2(x1))))))))))
, 2(3(0(2(0(3(4(x1))))))) -> 2(3(5(0(0(0(1(4(2(1(x1))))))))))
, 2(0(3(4(4(4(4(x1))))))) -> 5(2(2(2(3(1(3(4(3(4(x1))))))))))
, 2(0(3(0(5(4(4(x1))))))) -> 2(5(2(2(1(1(0(3(3(1(x1))))))))))
, 1(5(4(4(5(3(2(x1))))))) -> 1(2(0(5(2(2(2(0(5(2(x1))))))))))
, 1(5(3(2(5(3(5(x1))))))) -> 2(4(4(3(5(2(2(0(0(5(x1))))))))))
, 1(5(2(3(0(5(0(x1))))))) -> 1(5(2(4(2(4(2(1(3(0(x1))))))))))
, 1(5(1(5(2(3(2(x1))))))) -> 5(2(0(2(3(3(1(1(1(2(x1))))))))))
, 1(3(4(0(4(0(2(x1))))))) -> 3(4(4(1(4(2(5(2(2(2(x1))))))))))
, 1(3(0(0(1(1(5(x1))))))) -> 1(1(4(2(2(5(5(2(5(5(x1))))))))))
, 1(2(0(3(2(5(4(x1))))))) -> 1(1(5(5(0(0(2(1(2(4(x1))))))))))
, 0(5(0(4(3(4(5(x1))))))) -> 0(5(2(0(5(4(2(2(3(5(x1))))))))))
, 0(4(0(1(2(5(3(x1))))))) -> 0(5(2(1(3(3(3(3(4(1(x1))))))))))
, 0(3(5(1(1(3(0(x1))))))) -> 5(5(0(5(5(1(4(1(1(0(x1))))))))))
, 0(3(0(3(0(5(4(x1))))))) -> 0(2(0(0(5(3(3(3(3(4(x1))))))))))
, 0(3(0(2(5(1(3(x1))))))) -> 5(5(0(5(4(1(1(3(2(3(x1))))))))))
, 0(1(1(2(0(3(2(x1))))))) -> 0(2(2(0(5(2(4(1(3(2(x1))))))))))
, 4(5(3(2(0(2(x1)))))) -> 4(2(1(2(1(2(5(1(3(1(x1))))))))))
, 4(3(2(0(3(3(x1)))))) -> 1(5(3(4(1(3(1(1(3(1(x1))))))))))
, 4(1(0(4(4(2(x1)))))) -> 4(2(3(2(3(3(1(4(2(2(x1))))))))))
, 3(5(3(1(1(0(x1)))))) -> 4(1(4(2(1(2(3(1(3(0(x1))))))))))
, 3(5(1(5(1(2(x1)))))) -> 3(4(2(2(1(1(4(3(2(2(x1))))))))))
, 3(3(5(4(3(1(x1)))))) -> 3(2(4(2(1(5(1(3(1(3(x1))))))))))
, 3(3(0(3(5(4(x1)))))) -> 3(3(4(2(2(2(4(1(5(4(x1))))))))))
, 2(1(4(4(3(2(x1)))))) -> 2(2(3(3(4(1(4(2(3(2(x1))))))))))
, 2(0(3(0(2(3(x1)))))) -> 2(4(1(0(0(0(5(0(2(3(x1))))))))))
, 1(2(3(2(0(3(x1)))))) -> 2(4(3(1(3(3(3(1(3(1(x1))))))))))
, 1(1(5(0(1(2(x1)))))) -> 2(2(2(2(5(0(5(4(5(2(x1))))))))))
, 0(4(4(4(0(4(x1)))))) -> 0(5(4(5(3(4(1(4(2(4(x1))))))))))
, 0(4(3(2(3(5(x1)))))) -> 5(5(0(5(2(1(2(2(4(5(x1))))))))))
, 0(4(0(1(1(2(x1)))))) -> 0(0(4(2(4(2(4(2(3(2(x1))))))))))
, 0(2(0(4(0(3(x1)))))) -> 0(2(2(3(4(2(2(3(1(1(x1))))))))))
, 3(5(0(4(5(x1))))) -> 0(3(3(3(1(3(1(1(3(4(x1))))))))))
, 4(0(1(4(x1)))) -> 4(2(3(1(1(3(3(3(2(4(x1))))))))))
, 0(1(1(2(x1)))) -> 0(1(3(4(2(2(4(2(2(2(x1))))))))))}
StartTerms: all
Strategy: none
Certificate: TIMEOUT
Proof:
Computation stopped due to timeout after 60.0 seconds.
Arrrr..Tool TRI
stdout:
TIMEOUT
We consider the following Problem:
Strict Trs:
{ 5(4(1(0(4(2(0(x1))))))) -> 5(1(0(0(0(1(4(2(4(1(x1))))))))))
, 5(3(2(2(0(1(3(x1))))))) -> 0(0(5(5(5(5(3(3(3(1(x1))))))))))
, 5(3(1(1(3(5(3(x1))))))) -> 0(0(5(5(4(2(4(2(4(1(x1))))))))))
, 4(5(0(4(3(0(0(x1))))))) -> 4(2(2(1(1(3(3(0(1(0(x1))))))))))
, 4(5(0(3(0(3(0(x1))))))) -> 4(1(4(1(0(0(0(2(5(1(x1))))))))))
, 4(4(5(5(3(2(4(x1))))))) -> 5(2(1(4(5(4(2(1(2(1(x1))))))))))
, 4(4(4(5(3(4(0(x1))))))) -> 1(5(2(4(2(4(2(4(0(0(x1))))))))))
, 4(2(0(1(1(3(0(x1))))))) -> 4(2(5(2(2(3(1(4(2(0(x1))))))))))
, 3(5(4(0(3(3(4(x1))))))) -> 1(3(1(3(3(2(2(4(2(1(x1))))))))))
, 3(5(0(0(3(2(4(x1))))))) -> 2(1(0(0(0(5(5(5(3(4(x1))))))))))
, 3(4(4(4(4(3(5(x1))))))) -> 3(3(4(5(1(4(2(1(1(5(x1))))))))))
, 3(4(3(0(4(4(0(x1))))))) -> 3(4(2(2(1(2(0(3(4(0(x1))))))))))
, 3(2(0(1(3(3(0(x1))))))) -> 2(2(5(0(2(4(2(1(2(0(x1))))))))))
, 3(0(4(4(4(0(2(x1))))))) -> 3(1(3(3(1(1(2(2(2(2(x1))))))))))
, 3(0(3(2(0(1(2(x1))))))) -> 1(3(5(2(4(3(4(2(1(2(x1))))))))))
, 3(0(2(3(0(5(4(x1))))))) -> 2(2(3(0(0(0(5(2(2(4(x1))))))))))
, 2(3(5(1(0(0(5(x1))))))) -> 1(2(0(0(0(5(0(5(2(2(x1))))))))))
, 2(3(0(2(0(3(4(x1))))))) -> 2(3(5(0(0(0(1(4(2(1(x1))))))))))
, 2(0(3(4(4(4(4(x1))))))) -> 5(2(2(2(3(1(3(4(3(4(x1))))))))))
, 2(0(3(0(5(4(4(x1))))))) -> 2(5(2(2(1(1(0(3(3(1(x1))))))))))
, 1(5(4(4(5(3(2(x1))))))) -> 1(2(0(5(2(2(2(0(5(2(x1))))))))))
, 1(5(3(2(5(3(5(x1))))))) -> 2(4(4(3(5(2(2(0(0(5(x1))))))))))
, 1(5(2(3(0(5(0(x1))))))) -> 1(5(2(4(2(4(2(1(3(0(x1))))))))))
, 1(5(1(5(2(3(2(x1))))))) -> 5(2(0(2(3(3(1(1(1(2(x1))))))))))
, 1(3(4(0(4(0(2(x1))))))) -> 3(4(4(1(4(2(5(2(2(2(x1))))))))))
, 1(3(0(0(1(1(5(x1))))))) -> 1(1(4(2(2(5(5(2(5(5(x1))))))))))
, 1(2(0(3(2(5(4(x1))))))) -> 1(1(5(5(0(0(2(1(2(4(x1))))))))))
, 0(5(0(4(3(4(5(x1))))))) -> 0(5(2(0(5(4(2(2(3(5(x1))))))))))
, 0(4(0(1(2(5(3(x1))))))) -> 0(5(2(1(3(3(3(3(4(1(x1))))))))))
, 0(3(5(1(1(3(0(x1))))))) -> 5(5(0(5(5(1(4(1(1(0(x1))))))))))
, 0(3(0(3(0(5(4(x1))))))) -> 0(2(0(0(5(3(3(3(3(4(x1))))))))))
, 0(3(0(2(5(1(3(x1))))))) -> 5(5(0(5(4(1(1(3(2(3(x1))))))))))
, 0(1(1(2(0(3(2(x1))))))) -> 0(2(2(0(5(2(4(1(3(2(x1))))))))))
, 4(5(3(2(0(2(x1)))))) -> 4(2(1(2(1(2(5(1(3(1(x1))))))))))
, 4(3(2(0(3(3(x1)))))) -> 1(5(3(4(1(3(1(1(3(1(x1))))))))))
, 4(1(0(4(4(2(x1)))))) -> 4(2(3(2(3(3(1(4(2(2(x1))))))))))
, 3(5(3(1(1(0(x1)))))) -> 4(1(4(2(1(2(3(1(3(0(x1))))))))))
, 3(5(1(5(1(2(x1)))))) -> 3(4(2(2(1(1(4(3(2(2(x1))))))))))
, 3(3(5(4(3(1(x1)))))) -> 3(2(4(2(1(5(1(3(1(3(x1))))))))))
, 3(3(0(3(5(4(x1)))))) -> 3(3(4(2(2(2(4(1(5(4(x1))))))))))
, 2(1(4(4(3(2(x1)))))) -> 2(2(3(3(4(1(4(2(3(2(x1))))))))))
, 2(0(3(0(2(3(x1)))))) -> 2(4(1(0(0(0(5(0(2(3(x1))))))))))
, 1(2(3(2(0(3(x1)))))) -> 2(4(3(1(3(3(3(1(3(1(x1))))))))))
, 1(1(5(0(1(2(x1)))))) -> 2(2(2(2(5(0(5(4(5(2(x1))))))))))
, 0(4(4(4(0(4(x1)))))) -> 0(5(4(5(3(4(1(4(2(4(x1))))))))))
, 0(4(3(2(3(5(x1)))))) -> 5(5(0(5(2(1(2(2(4(5(x1))))))))))
, 0(4(0(1(1(2(x1)))))) -> 0(0(4(2(4(2(4(2(3(2(x1))))))))))
, 0(2(0(4(0(3(x1)))))) -> 0(2(2(3(4(2(2(3(1(1(x1))))))))))
, 3(5(0(4(5(x1))))) -> 0(3(3(3(1(3(1(1(3(4(x1))))))))))
, 4(0(1(4(x1)))) -> 4(2(3(1(1(3(3(3(2(4(x1))))))))))
, 0(1(1(2(x1)))) -> 0(1(3(4(2(2(4(2(2(2(x1))))))))))}
StartTerms: all
Strategy: none
Certificate: TIMEOUT
Proof:
Computation stopped due to timeout after 60.0 seconds.
Arrrr..Tool TRI2
stdout:
TIMEOUT
We consider the following Problem:
Strict Trs:
{ 5(4(1(0(4(2(0(x1))))))) -> 5(1(0(0(0(1(4(2(4(1(x1))))))))))
, 5(3(2(2(0(1(3(x1))))))) -> 0(0(5(5(5(5(3(3(3(1(x1))))))))))
, 5(3(1(1(3(5(3(x1))))))) -> 0(0(5(5(4(2(4(2(4(1(x1))))))))))
, 4(5(0(4(3(0(0(x1))))))) -> 4(2(2(1(1(3(3(0(1(0(x1))))))))))
, 4(5(0(3(0(3(0(x1))))))) -> 4(1(4(1(0(0(0(2(5(1(x1))))))))))
, 4(4(5(5(3(2(4(x1))))))) -> 5(2(1(4(5(4(2(1(2(1(x1))))))))))
, 4(4(4(5(3(4(0(x1))))))) -> 1(5(2(4(2(4(2(4(0(0(x1))))))))))
, 4(2(0(1(1(3(0(x1))))))) -> 4(2(5(2(2(3(1(4(2(0(x1))))))))))
, 3(5(4(0(3(3(4(x1))))))) -> 1(3(1(3(3(2(2(4(2(1(x1))))))))))
, 3(5(0(0(3(2(4(x1))))))) -> 2(1(0(0(0(5(5(5(3(4(x1))))))))))
, 3(4(4(4(4(3(5(x1))))))) -> 3(3(4(5(1(4(2(1(1(5(x1))))))))))
, 3(4(3(0(4(4(0(x1))))))) -> 3(4(2(2(1(2(0(3(4(0(x1))))))))))
, 3(2(0(1(3(3(0(x1))))))) -> 2(2(5(0(2(4(2(1(2(0(x1))))))))))
, 3(0(4(4(4(0(2(x1))))))) -> 3(1(3(3(1(1(2(2(2(2(x1))))))))))
, 3(0(3(2(0(1(2(x1))))))) -> 1(3(5(2(4(3(4(2(1(2(x1))))))))))
, 3(0(2(3(0(5(4(x1))))))) -> 2(2(3(0(0(0(5(2(2(4(x1))))))))))
, 2(3(5(1(0(0(5(x1))))))) -> 1(2(0(0(0(5(0(5(2(2(x1))))))))))
, 2(3(0(2(0(3(4(x1))))))) -> 2(3(5(0(0(0(1(4(2(1(x1))))))))))
, 2(0(3(4(4(4(4(x1))))))) -> 5(2(2(2(3(1(3(4(3(4(x1))))))))))
, 2(0(3(0(5(4(4(x1))))))) -> 2(5(2(2(1(1(0(3(3(1(x1))))))))))
, 1(5(4(4(5(3(2(x1))))))) -> 1(2(0(5(2(2(2(0(5(2(x1))))))))))
, 1(5(3(2(5(3(5(x1))))))) -> 2(4(4(3(5(2(2(0(0(5(x1))))))))))
, 1(5(2(3(0(5(0(x1))))))) -> 1(5(2(4(2(4(2(1(3(0(x1))))))))))
, 1(5(1(5(2(3(2(x1))))))) -> 5(2(0(2(3(3(1(1(1(2(x1))))))))))
, 1(3(4(0(4(0(2(x1))))))) -> 3(4(4(1(4(2(5(2(2(2(x1))))))))))
, 1(3(0(0(1(1(5(x1))))))) -> 1(1(4(2(2(5(5(2(5(5(x1))))))))))
, 1(2(0(3(2(5(4(x1))))))) -> 1(1(5(5(0(0(2(1(2(4(x1))))))))))
, 0(5(0(4(3(4(5(x1))))))) -> 0(5(2(0(5(4(2(2(3(5(x1))))))))))
, 0(4(0(1(2(5(3(x1))))))) -> 0(5(2(1(3(3(3(3(4(1(x1))))))))))
, 0(3(5(1(1(3(0(x1))))))) -> 5(5(0(5(5(1(4(1(1(0(x1))))))))))
, 0(3(0(3(0(5(4(x1))))))) -> 0(2(0(0(5(3(3(3(3(4(x1))))))))))
, 0(3(0(2(5(1(3(x1))))))) -> 5(5(0(5(4(1(1(3(2(3(x1))))))))))
, 0(1(1(2(0(3(2(x1))))))) -> 0(2(2(0(5(2(4(1(3(2(x1))))))))))
, 4(5(3(2(0(2(x1)))))) -> 4(2(1(2(1(2(5(1(3(1(x1))))))))))
, 4(3(2(0(3(3(x1)))))) -> 1(5(3(4(1(3(1(1(3(1(x1))))))))))
, 4(1(0(4(4(2(x1)))))) -> 4(2(3(2(3(3(1(4(2(2(x1))))))))))
, 3(5(3(1(1(0(x1)))))) -> 4(1(4(2(1(2(3(1(3(0(x1))))))))))
, 3(5(1(5(1(2(x1)))))) -> 3(4(2(2(1(1(4(3(2(2(x1))))))))))
, 3(3(5(4(3(1(x1)))))) -> 3(2(4(2(1(5(1(3(1(3(x1))))))))))
, 3(3(0(3(5(4(x1)))))) -> 3(3(4(2(2(2(4(1(5(4(x1))))))))))
, 2(1(4(4(3(2(x1)))))) -> 2(2(3(3(4(1(4(2(3(2(x1))))))))))
, 2(0(3(0(2(3(x1)))))) -> 2(4(1(0(0(0(5(0(2(3(x1))))))))))
, 1(2(3(2(0(3(x1)))))) -> 2(4(3(1(3(3(3(1(3(1(x1))))))))))
, 1(1(5(0(1(2(x1)))))) -> 2(2(2(2(5(0(5(4(5(2(x1))))))))))
, 0(4(4(4(0(4(x1)))))) -> 0(5(4(5(3(4(1(4(2(4(x1))))))))))
, 0(4(3(2(3(5(x1)))))) -> 5(5(0(5(2(1(2(2(4(5(x1))))))))))
, 0(4(0(1(1(2(x1)))))) -> 0(0(4(2(4(2(4(2(3(2(x1))))))))))
, 0(2(0(4(0(3(x1)))))) -> 0(2(2(3(4(2(2(3(1(1(x1))))))))))
, 3(5(0(4(5(x1))))) -> 0(3(3(3(1(3(1(1(3(4(x1))))))))))
, 4(0(1(4(x1)))) -> 4(2(3(1(1(3(3(3(2(4(x1))))))))))
, 0(1(1(2(x1)))) -> 0(1(3(4(2(2(4(2(2(2(x1))))))))))}
StartTerms: all
Strategy: none
Certificate: TIMEOUT
Proof:
Computation stopped due to timeout after 60.0 seconds.
Arrrr..