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| author | Sebastiano Tronto <sebastiano.tronto@gmail.com> | 2021-11-11 21:37:34 +0100 |
|---|---|---|
| committer | Sebastiano Tronto <sebastiano.tronto@gmail.com> | 2021-11-11 21:37:34 +0100 |
| commit | 3568412f8f230774d0d11d7ed1c897424f95d3ef (patch) | |
| tree | 77223792d8c925a9b1fc32b3f4341e943b5f8209 /old/2021-02-06/cube.c | |
| parent | 67e1b5e6e6a2c917a2fe58a37a1382c982b1e5c5 (diff) | |
| download | nissy-3568412f8f230774d0d11d7ed1c897424f95d3ef.tar.gz nissy-3568412f8f230774d0d11d7ed1c897424f95d3ef.zip | |
Rewritten from scratch. Welocme nissy 2.0!
Diffstat (limited to '')
| -rw-r--r-- | old/2021-02-06/cube.c | 664 |
1 files changed, 664 insertions, 0 deletions
diff --git a/old/2021-02-06/cube.c b/old/2021-02-06/cube.c new file mode 100644 index 0000000..9185281 --- /dev/null +++ b/old/2021-02-06/cube.c | |||
| @@ -0,0 +1,664 @@ | |||
| 1 | #include "cube.h" | ||
| 2 | |||
| 3 | typedef struct { | ||
| 4 | int ep[12], eofb[12], eorl[12], eoud[12], | ||
| 5 | cp[8], coud[8], corl[8], cofb[8], cpos[6]; | ||
| 6 | } CubeArray; | ||
| 7 | |||
| 8 | typedef struct { | ||
| 9 | bool epose, eposs, eposm, eofb, eorl, eoud, cp, coud, cofb, corl, cpos; | ||
| 10 | } PieceFilter; | ||
| 11 | |||
| 12 | PieceFilter fAll = {true,true,true,true,true,true,true,true,true,true,true}; | ||
| 13 | PieceFilter cpos_only = { .cpos = true }; | ||
| 14 | |||
| 15 | void cube_to_arrays(Cube cube, CubeArray *arr, PieceFilter f); | ||
| 16 | Cube arrays_to_cube(CubeArray arr, PieceFilter f); | ||
| 17 | void move_cubearray(Move m, CubeArray *arr, PieceFilter f); | ||
| 18 | Cube move_via_array(Move m, Cube cube, PieceFilter f); | ||
| 19 | void sort_cancel_rotate(NissMove *alg, int n, bool inv, int top, int front); | ||
| 20 | bool read_ttables_file(); | ||
| 21 | bool write_ttables_file(); | ||
| 22 | |||
| 23 | /* Transition tables */ | ||
| 24 | uint16_t epose_ttable[NMOVES][factorial12/factorial8]; | ||
| 25 | uint16_t eposs_ttable[NMOVES][factorial12/factorial8]; | ||
| 26 | uint16_t eposm_ttable[NMOVES][factorial12/factorial8]; | ||
| 27 | uint16_t eofb_ttable[NMOVES][pow2to11]; | ||
| 28 | uint16_t eorl_ttable[NMOVES][pow2to11]; | ||
| 29 | uint16_t eoud_ttable[NMOVES][pow2to11]; | ||
| 30 | uint16_t cp_ttable[NMOVES][factorial8]; | ||
| 31 | uint16_t coud_ttable[NMOVES][pow3to7]; | ||
| 32 | uint16_t cofb_ttable[NMOVES][pow3to7]; | ||
| 33 | uint16_t corl_ttable[NMOVES][pow3to7]; | ||
| 34 | uint16_t cpos_ttable[NMOVES][factorial6]; | ||
| 35 | |||
| 36 | bool commute[NMOVES][NMOVES]; | ||
| 37 | bool possible_next[NMOVES][NMOVES][NMOVES]; | ||
| 38 | Move inverse[NMOVES]; | ||
| 39 | |||
| 40 | char edge_string[12][5] = | ||
| 41 | { "UF", "UL", "UB", "UR", "DF", "DL", "DB", "DR", "FR", "FL", "BL", "BR" }; | ||
| 42 | char corner_string[8][5] = { "UFR","UFL","UBL","UBR","DFR","DFL","DBL","DBR" }; | ||
| 43 | char center_string[6][5] = { "U", "D", "R", "L", "F", "B" }; | ||
| 44 | char move_string[NMOVES][5] = | ||
| 45 | { "-", | ||
| 46 | "U", "U2", "U\'", "D", "D2", "D\'", "R", "R2", "R\'", | ||
| 47 | "L", "L2", "L\'", "F", "F2", "F\'", "B", "B2", "B\'", | ||
| 48 | "Uw", "Uw2", "Uw\'", "Dw", "Dw2", "Dw\'", "Rw", "Rw2", "Rw\'", | ||
| 49 | "Lw", "Lw2", "Lw\'", "Fw", "Fw2", "Fw\'", "Bw", "Bw2", "Bw\'", | ||
| 50 | "M", "M2", "M\'", "S", "S2", "S\'", "E", "E2", "E\'", | ||
| 51 | "x", "x2", "x\'", "y", "y2", "y\'", "z", "z2", "z\'" }; | ||
| 52 | |||
| 53 | /* For each type of pieces only the effects of U, x and y are described */ | ||
| 54 | int edge_cycle[NMOVES][12] = | ||
| 55 | { [U] = {UR, UF, UL, UB, DF, DL, DB, DR, FR, FL, BL, BR}, | ||
| 56 | [x] = {DF, FL, UF, FR, DB, BL, UB, BR, DR, DL, UL, UR}, | ||
| 57 | [y] = {UR, UF, UL, UB, DR, DF, DL, DB, BR, FR, FL, BL} }; | ||
| 58 | int eofb_flipped[NMOVES][12] = | ||
| 59 | { [x] = { [UF] = 1, [UB] = 1, [DF] = 1, [DB] = 1 }, | ||
| 60 | [y] = { [FR] = 1, [FL] = 1, [BL] = 1, [BR] = 1 } }; | ||
| 61 | int eorl_flipped[NMOVES][12] = | ||
| 62 | { [x] = { 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1 }, | ||
| 63 | [y] = { [FR] = 1, [FL] = 1, [BL] = 1, [BR] = 1 } }; | ||
| 64 | int eoud_flipped[NMOVES][12] = | ||
| 65 | { [U] = { [UF] = 1, [UL] = 1, [UB] = 1, [UR] = 1 }, | ||
| 66 | [x] = { [UF] = 1, [UB] = 1, [DF] = 1, [DB] = 1 }, | ||
| 67 | [y] = { 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1 } }; | ||
| 68 | int corner_cycle[NMOVES][8] = | ||
| 69 | { [U] = {UBR, UFR, UFL, UBL, DFR, DFL, DBL, DBR}, | ||
| 70 | [x] = {DFR, DFL, UFL, UFR, DBR, DBL, UBL, UBR}, | ||
| 71 | [y] = {UBR, UFR, UFL, UBL, DBR, DFR, DFL, DBL} }; | ||
| 72 | int coud_flipped[NMOVES][8] = | ||
| 73 | { [x] = {[UFR]=2,[UBR]=1,[DBR]=2,[DFR]=1,[UFL]=1,[UBL]=2,[DBL]=1,[DFL]=2} }; | ||
| 74 | int corl_flipped[NMOVES][8] = | ||
| 75 | { [U] = { [UFR] = 1, [UBR] = 2, [UBL] = 1, [UFL] = 2 }, | ||
| 76 | [y] = {[UFR]=1,[UBR]=2,[UBL]=1,[UFL]=2,[DFR]=2,[DBR]=1,[DBL]=2,[DFL]=1} }; | ||
| 77 | int cofb_flipped[NMOVES][8] = | ||
| 78 | { [U] = { [UFR] = 2, [UBR] = 1, [UBL] = 2, [UFL] = 1 }, | ||
| 79 | [x] = {[UFR]=1,[UBR]=2,[DFR]=2,[DBR]=1,[UBL]=2,[UFL]=1,[DBL]=1,[DFL]=2}, | ||
| 80 | [y] = {[UFR]=2,[UBR]=1,[UBL]=2,[UFL]=1,[DFR]=1,[DBR]=2,[DBL]=1,[DFL]=2} }; | ||
| 81 | int center_cycle[NMOVES][6] = | ||
| 82 | { [x] = {F_center, B_center, R_center, L_center, D_center, U_center}, | ||
| 83 | [y] = {U_center, D_center, B_center, F_center, R_center, L_center} }; | ||
| 84 | |||
| 85 | /* Each move is reduced to a combination of U, x and y using this table */ | ||
| 86 | Move equiv_moves[NMOVES][14] = { | ||
| 87 | [U] = { U, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 }, | ||
| 88 | [U2] = { U, U, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 }, | ||
| 89 | [U3] = { U, U, U, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 }, | ||
| 90 | [D] = { x, x, U, x, x, 0, 0, 0, 0, 0, 0, 0, 0, 0 }, | ||
| 91 | [D2] = { x, x, U, U, x, x, 0, 0, 0, 0, 0, 0, 0, 0 }, | ||
| 92 | [D3] = { x, x, U, U, U, x, x, 0, 0, 0, 0, 0, 0, 0 }, | ||
| 93 | [R] = { y, x, U, x, x, x, y, y, y, 0, 0, 0, 0, 0 }, | ||
| 94 | [R2] = { y, x, U, U, x, x, x, y, y, y, 0, 0, 0, 0 }, | ||
| 95 | [R3] = { y, x, U, U, U, x, x, x, y, y, y, 0, 0, 0 }, | ||
| 96 | [L] = { y, y, y, x, U, x, x, x, y, 0, 0, 0, 0, 0 }, | ||
| 97 | [L2] = { y, y, y, x, U, U, x, x, x, y, 0, 0, 0, 0 }, | ||
| 98 | [L3] = { y, y, y, x, U, U, U, x, x, x, y, 0, 0, 0 }, | ||
| 99 | [F] = { x, U, x, x, x, 0, 0, 0, 0, 0, 0, 0, 0, 0 }, | ||
| 100 | [F2] = { x, U, U, x, x, x, 0, 0, 0, 0, 0, 0, 0, 0 }, | ||
| 101 | [F3] = { x, U, U, U, x, x, x, 0, 0, 0, 0, 0, 0, 0 }, | ||
| 102 | [B] = { x, x, x, U, x, 0, 0, 0, 0, 0, 0, 0, 0, 0 }, | ||
| 103 | [B2] = { x, x, x, U, U, x, 0, 0, 0, 0, 0, 0, 0, 0 }, | ||
| 104 | [B3] = { x, x, x, U, U, U, x, 0, 0, 0, 0, 0, 0, 0 }, | ||
| 105 | |||
| 106 | [Uw] = { x, x, U, x, x, y, 0, 0, 0, 0, 0, 0, 0, 0 }, | ||
| 107 | [Uw2] = { x, x, U, U, x, x, y, y, 0, 0, 0, 0, 0, 0 }, | ||
| 108 | [Uw3] = { x, x, U, U, U, x, x, y, y, y, 0, 0, 0, 0 }, | ||
| 109 | [Dw] = { U, y, y, y, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 }, | ||
| 110 | [Dw2] = { U, U, y, y, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 }, | ||
| 111 | [Dw3] = { U, U, U, y, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 }, | ||
| 112 | [Rw] = { y, y, y, x, U, x, x, x, y, x, 0, 0, 0, 0 }, | ||
| 113 | [Rw2] = { y, y, y, x, U, U, x, x, x, y, x, x, 0, 0 }, | ||
| 114 | [Rw3] = { y, y, y, x, U, U, U, y, x, x, x, y, 0, 0 }, | ||
| 115 | [Lw] = { y, x, U, x, x, x, y, y, y, x, x, x, 0, 0 }, | ||
| 116 | [Lw2] = { y, x, U, U, x, x, x, y, y, y, x, x, 0, 0 }, | ||
| 117 | [Lw3] = { y, x, U, U, U, x, x, x, y, y, y, x, 0, 0 }, | ||
| 118 | [Fw] = { x, x, x, U, y, y, y, x, 0, 0, 0, 0, 0, 0 }, | ||
| 119 | [Fw2] = { x, x, x, U, U, y, y, x, 0, 0, 0, 0, 0, 0 }, | ||
| 120 | [Fw3] = { x, x, x, U, U, U, y, x, 0, 0, 0, 0, 0, 0 }, | ||
| 121 | [Bw] = { x, U, y, y, y, x, x, x, 0, 0, 0, 0, 0, 0 }, | ||
| 122 | [Bw2] = { x, U, U, y, y, x, x, x, 0, 0, 0, 0, 0, 0 }, | ||
| 123 | [Bw3] = { x, U, U, U, y, x, x, x, 0, 0, 0, 0, 0, 0 }, | ||
| 124 | |||
| 125 | [M] = { y, x, U, x, x, U, U, U, y, x, y, y, y, 0 }, | ||
| 126 | [M2] = { y, x, U, U, x, x, U, U, x, x, x, y, 0, 0 }, | ||
| 127 | [M3] = { y, x, U, U, U, x, x, U, y, x, x, x, y, 0 }, | ||
| 128 | [S] = { x, U, U, U, x, x, U, y, y, y, x, 0, 0, 0 }, | ||
| 129 | [S2] = { x, U, U, x, x, U, U, y, y, x, 0, 0, 0, 0 }, | ||
| 130 | [S3] = { x, U, x, x, U, U, U, y, x, 0, 0, 0, 0, 0 }, | ||
| 131 | [E] = { U, x, x, U, U, U, x, x, y, y, y, 0, 0, 0 }, | ||
| 132 | [E2] = { U, U, x, x, U, U, x, x, y, y, 0, 0, 0, 0 }, | ||
| 133 | [E3] = { U, U, U, x, x, U, x, x, y, 0, 0, 0, 0, 0 }, | ||
| 134 | |||
| 135 | [x] = { x, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 }, | ||
| 136 | [x2] = { x, x, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 }, | ||
| 137 | [x3] = { x, x, x, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 }, | ||
| 138 | [y] = { y, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 }, | ||
| 139 | [y2] = { y, y, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 }, | ||
| 140 | [y3] = { y, y, y, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 }, | ||
| 141 | [z] = { y, y, y, x, y, 0, 0, 0, 0, 0, 0, 0, 0, 0 }, | ||
| 142 | [z2] = { y, y, x, x, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 }, | ||
| 143 | [z3] = { y, x, y, y, y, 0, 0, 0, 0, 0, 0, 0, 0, 0 }, | ||
| 144 | }; | ||
| 145 | |||
| 146 | /* Movesets */ | ||
| 147 | bool standard_moveset[NMOVES] = { | ||
| 148 | [U] = true, [U2] = true, [U3] = true, [D] = true, [D2] = true, [D3] = true, | ||
| 149 | [R] = true, [R2] = true, [R3] = true, [L] = true, [L2] = true, [L3] = true, | ||
| 150 | [F] = true, [F2] = true, [F3] = true, [B] = true, [B2] = true, [B3] = true, | ||
| 151 | }; | ||
| 152 | |||
| 153 | int epe_solved[] = {FR, FL, BL, BR}; | ||
| 154 | int eps_solved[] = {UL, UR, DL, DR}; | ||
| 155 | int epm_solved[] = {UF, UB, DF, DB}; | ||
| 156 | |||
| 157 | Cube blank_cube() { | ||
| 158 | Cube c = {0}; | ||
| 159 | return c; | ||
| 160 | } | ||
| 161 | |||
| 162 | void cube_to_arrays(Cube cube, CubeArray *arr, PieceFilter f) { | ||
| 163 | /* ep is the hardest */ | ||
| 164 | if (f.epose || f.eposs || f.eposm) | ||
| 165 | for (int i = 0; i < 12; i++) arr->ep[i] = -1; | ||
| 166 | if (f.epose) { | ||
| 167 | int epe[4], epose[12]; | ||
| 168 | index_to_perm(cube.epose % factorial(4), 4, epe); | ||
| 169 | index_to_subset(cube.epose / factorial(4), 12, 4, epose); | ||
| 170 | for (int i = 0, ie = 0; i < 12; i++) | ||
| 171 | if (epose[i]) arr->ep[i] = epe_solved[epe[ie++]]; | ||
| 172 | } | ||
| 173 | if (f.eposs) { | ||
| 174 | int eps[4], eposs[12]; | ||
| 175 | index_to_perm(cube.eposs % factorial(4), 4, eps); | ||
| 176 | index_to_subset(cube.eposs / factorial(4), 12, 4, eposs); | ||
| 177 | for (int i = 0; i < 4; i++) swap(&eposs[eps_solved[i]], &eposs[i+8]); | ||
| 178 | for (int i = 0, is = 0; i < 12; i++) | ||
| 179 | if (eposs[i]) arr->ep[i] = eps_solved[eps[is++]]; | ||
| 180 | } | ||
| 181 | if (f.eposm) { | ||
| 182 | int epm[4], eposm[12]; | ||
| 183 | index_to_perm(cube.eposm % factorial(4), 4, epm); | ||
| 184 | index_to_subset(cube.eposm / factorial(4), 12, 4, eposm); | ||
| 185 | for (int i = 0; i < 4; i++) swap(&eposm[epm_solved[i]], &eposm[i+8]); | ||
| 186 | for (int i = 0, im = 0; i < 12; i++) | ||
| 187 | if (eposm[i]) arr->ep[i] = epm_solved[epm[im++]]; | ||
| 188 | } | ||
| 189 | |||
| 190 | /* All the others */ | ||
| 191 | if (f.eofb) int_to_sum_zero_array(cube.eofb, 2, 12, arr->eofb); | ||
| 192 | if (f.eorl) int_to_sum_zero_array(cube.eorl, 2, 12, arr->eorl); | ||
| 193 | if (f.eoud) int_to_sum_zero_array(cube.eoud, 2, 12, arr->eoud); | ||
| 194 | if (f.cp) index_to_perm( cube.cp, 8, arr->cp); | ||
| 195 | if (f.coud) int_to_sum_zero_array(cube.coud, 3, 8, arr->coud); | ||
| 196 | if (f.corl) int_to_sum_zero_array(cube.corl, 3, 8, arr->corl); | ||
| 197 | if (f.cofb) int_to_sum_zero_array(cube.cofb, 3, 8, arr->cofb); | ||
| 198 | if (f.cpos) index_to_perm( cube.cpos, 6, arr->cpos); | ||
| 199 | } | ||
| 200 | |||
| 201 | Cube arrays_to_cube(CubeArray arr, PieceFilter f) { | ||
| 202 | Cube ret = {0}; | ||
| 203 | |||
| 204 | /* Again, ep is the hardest part */ | ||
| 205 | if (f.epose) { | ||
| 206 | int epe[4], epose[12] = {0,0,0,0,0,0,0,0,0,0,0,0}; | ||
| 207 | for (int i = 0, ie = 0; i < 12; i++) | ||
| 208 | for (int j = 0; j < 4; j++) | ||
| 209 | if (arr.ep[i] == epe_solved[j]) | ||
| 210 | { epe[ie++] = j; epose[i] = 1; } | ||
| 211 | ret.epose = factorial(4)*subset_to_index(epose,12,4)+perm_to_index(epe,4); | ||
| 212 | } | ||
| 213 | if (f.eposs) { | ||
| 214 | int eps[4], eposs[12] = {0,0,0,0,0,0,0,0,0,0,0,0}; | ||
| 215 | for (int i = 0, is = 0; i < 12; i++) | ||
| 216 | for (int j = 0; j < 4; j++) | ||
| 217 | if (arr.ep[i] == eps_solved[j]) | ||
| 218 | { eps[is++] = j; eposs[i] = 1; } | ||
| 219 | for (int i = 0; i < 4; i++) swap(&eposs[eps_solved[i]], &eposs[i+8]); | ||
| 220 | ret.eposs = factorial(4)*subset_to_index(eposs,12,4)+perm_to_index(eps,4); | ||
| 221 | } | ||
| 222 | if (f.eposm) { | ||
| 223 | int epm[4], eposm[12] = {0,0,0,0,0,0,0,0,0,0,0,0}; | ||
| 224 | for (int i = 0, im = 0; i < 12; i++) | ||
| 225 | for (int j = 0; j < 4; j++) | ||
| 226 | if (arr.ep[i] == epm_solved[j]) | ||
| 227 | { epm[im++] = j; eposm[i] = 1; } | ||
| 228 | for (int i = 0; i < 4; i++) swap(&eposm[epm_solved[i]], &eposm[i+8]); | ||
| 229 | ret.eposm = factorial(4)*subset_to_index(eposm,12,4)+perm_to_index(epm,4); | ||
| 230 | } | ||
| 231 | if (f.eofb) ret.eofb = digit_array_to_int(arr.eofb, 11, 2); | ||
| 232 | if (f.eorl) ret.eorl = digit_array_to_int(arr.eorl, 11, 2); | ||
| 233 | if (f.eoud) ret.eoud = digit_array_to_int(arr.eoud, 11, 2); | ||
| 234 | if (f.cp) ret.cp = perm_to_index( arr.cp, 8 ); | ||
| 235 | if (f.coud) ret.coud = digit_array_to_int(arr.coud, 7, 3); | ||
| 236 | if (f.corl) ret.corl = digit_array_to_int(arr.corl, 7, 3); | ||
| 237 | if (f.cofb) ret.cofb = digit_array_to_int(arr.cofb, 7, 3); | ||
| 238 | if (f.cpos) ret.cpos = perm_to_index( arr.cpos, 6 ); | ||
| 239 | |||
| 240 | return ret; | ||
| 241 | } | ||
| 242 | |||
| 243 | void move_cubearray(Move m, CubeArray *arr, PieceFilter f) { | ||
| 244 | if (f.epose || f.eposs || f.eposm) | ||
| 245 | apply_permutation(edge_cycle[m], arr->ep, 12); | ||
| 246 | if (f.eofb) { | ||
| 247 | apply_permutation(edge_cycle[m], arr->eofb, 12); | ||
| 248 | sum_arrays_mod(eofb_flipped[m], arr->eofb, 12, 2); | ||
| 249 | } | ||
| 250 | if (f.eofb) { | ||
| 251 | apply_permutation(edge_cycle[m], arr->eorl, 12); | ||
| 252 | sum_arrays_mod(eorl_flipped[m], arr->eorl, 12, 2); | ||
| 253 | } | ||
| 254 | if (f.eofb) { | ||
| 255 | apply_permutation(edge_cycle[m], arr->eoud, 12); | ||
| 256 | sum_arrays_mod(eoud_flipped[m], arr->eoud, 12, 2); | ||
| 257 | } | ||
| 258 | if (f.cp) | ||
| 259 | apply_permutation(corner_cycle[m], arr->cp, 8); | ||
| 260 | if (f.coud) { | ||
| 261 | apply_permutation(corner_cycle[m], arr->coud, 8); | ||
| 262 | sum_arrays_mod(coud_flipped[m], arr->coud, 8, 3); | ||
| 263 | } | ||
| 264 | if (f.corl) { | ||
| 265 | apply_permutation(corner_cycle[m], arr->corl, 8); | ||
| 266 | sum_arrays_mod(corl_flipped[m], arr->corl, 8, 3); | ||
| 267 | } | ||
| 268 | if (f.cofb) { | ||
| 269 | apply_permutation(corner_cycle[m], arr->cofb, 8); | ||
| 270 | sum_arrays_mod(cofb_flipped[m], arr->cofb, 8, 3); | ||
| 271 | } | ||
| 272 | if (f.cpos) | ||
| 273 | apply_permutation(center_cycle[m], arr->cpos, 6); | ||
| 274 | } | ||
| 275 | |||
| 276 | Cube move_via_array(Move m, Cube cube, PieceFilter f) { | ||
| 277 | CubeArray arr = {0}; | ||
| 278 | cube_to_arrays(cube, &arr, f); | ||
| 279 | move_cubearray(m, &arr, f); | ||
| 280 | return arrays_to_cube(arr, f); | ||
| 281 | } | ||
| 282 | |||
| 283 | int copy_alg(NissMove *src, NissMove *dest) { | ||
| 284 | int i; | ||
| 285 | for (i = 0; src[i].m != NULLMOVE; i++) | ||
| 286 | dest[i] = src[i]; | ||
| 287 | dest[i].m = NULLMOVE; | ||
| 288 | return i; | ||
| 289 | } | ||
| 290 | |||
| 291 | bool equal(Cube c1, Cube c2) { | ||
| 292 | return c1.eofb == c2.eofb && c1.epose == c2.epose && | ||
| 293 | c1.eposs == c2.eposs && c1.eposm == c2.eposm && | ||
| 294 | c1.coud == c2.coud && c1.cp == c2.cp && | ||
| 295 | c1.cpos == c2.cpos; | ||
| 296 | } | ||
| 297 | |||
| 298 | bool solvable(Cube cube) { | ||
| 299 | /* Since we memorize orientation truncating the last digit, we only need to | ||
| 300 | * check that the permutations have the correct sign. */ | ||
| 301 | CubeArray arr = {0}; | ||
| 302 | cube_to_arrays(cube, &arr, fAll); | ||
| 303 | return (perm_sign(arr.ep,12) ^ perm_sign(arr.cpos,6)) == perm_sign(arr.cp,8); | ||
| 304 | } | ||
| 305 | |||
| 306 | bool is_solved(Cube cube, bool reorient) { | ||
| 307 | if (!reorient || !cube.cpos) | ||
| 308 | return !cube.eofb && !cube.coud && !cube.cp && | ||
| 309 | !cube.epose && !cube.eposs && !cube.eposm; | ||
| 310 | |||
| 311 | bool ret = false; | ||
| 312 | for (int i = x; i <= z3; i++) { | ||
| 313 | ret = ret || is_solved(move_cube(i, cube), false); | ||
| 314 | for (int j = x; j <= z3; j++) | ||
| 315 | ret = ret || is_solved(move_cube(i, move_cube(j, cube)), false); | ||
| 316 | } | ||
| 317 | return ret; | ||
| 318 | } | ||
| 319 | |||
| 320 | void print_cube(Cube cube) { | ||
| 321 | CubeArray arr = {0}; | ||
| 322 | cube_to_arrays(cube, &arr, fAll); | ||
| 323 | |||
| 324 | for (int i = 0; i < 12; i++) printf(" %s ", edge_string[arr.ep[i]]); | ||
| 325 | printf("\n"); | ||
| 326 | for (int i = 0; i < 12; i++) printf(" %c ", arr.eofb[i] + '0'); | ||
| 327 | printf("\n"); | ||
| 328 | for (int i = 0; i < 8; i++) printf("%s ", corner_string[arr.cp[i]]); | ||
| 329 | printf("\n"); | ||
| 330 | for (int i = 0; i < 8; i++) printf(" %c ", arr.coud[i] + '0'); | ||
| 331 | printf("\n"); | ||
| 332 | for (int i = 0; i < 6; i++) printf(" %s ", center_string[arr.cpos[i]]); | ||
| 333 | printf("\n"); | ||
| 334 | } | ||
| 335 | |||
| 336 | /* TODO: all strings start with space?? */ | ||
| 337 | void print_moves(NissMove *alg) { | ||
| 338 | bool niss = false; | ||
| 339 | for (int i = 0; alg[i].m != NULLMOVE; i++) { | ||
| 340 | char *fill = !niss && alg[i].inverse ? " (" : | ||
| 341 | (niss && !alg[i].inverse ? ") " : " "); | ||
| 342 | printf("%s%s", fill, move_string[alg[i].m]); | ||
| 343 | niss = alg[i].inverse; | ||
| 344 | } | ||
| 345 | printf("%s\n", niss ? ")" : ""); | ||
| 346 | } | ||
| 347 | |||
| 348 | int read_moves(char *str, NissMove *alg, int n) { | ||
| 349 | bool niss = false; | ||
| 350 | int c = 0; | ||
| 351 | |||
| 352 | for (int i = 0; str[i] && c < n; i++) { | ||
| 353 | if (str[i] == ' ' || str[i] == '\t' || str[i] == '\n') | ||
| 354 | continue; | ||
| 355 | |||
| 356 | if (str[i] == '(' || str[i] == ')') { | ||
| 357 | if ((niss && str[i] == '(') || (!niss && str[i] == ')')) | ||
| 358 | return -1; | ||
| 359 | niss = !niss; | ||
| 360 | continue; | ||
| 361 | } | ||
| 362 | |||
| 363 | alg[c].inverse = niss; alg[c].m = NULLMOVE; | ||
| 364 | for (Move j = 0; j < NMOVES; j++) { | ||
| 365 | if (str[i] == move_string[j][0]) { | ||
| 366 | alg[c].m = j; | ||
| 367 | if (alg[c].m <= B && str[i+1]=='w') { alg[c].m += Uw - U; i++; } | ||
| 368 | if (str[i+1]=='2') { alg[c].m += 1; i++; } | ||
| 369 | else if (str[i+1]=='\'' || str[i+1]=='3') { alg[c].m += 2; i++; } | ||
| 370 | c++; | ||
| 371 | break; | ||
| 372 | } | ||
| 373 | } | ||
| 374 | } | ||
| 375 | |||
| 376 | alg[c].m = NULLMOVE; | ||
| 377 | return c; | ||
| 378 | } | ||
| 379 | |||
| 380 | /* Helper function for cleanup. alg must contain only basic moves, no 2 or '. | ||
| 381 | top and front describe an admissible orientation of the cube. */ | ||
| 382 | void sort_cancel_rotate(NissMove *alg, int n, bool inv, int top, int front) { | ||
| 383 | int c = 0, i = 0; | ||
| 384 | NissMove aux[n+3]; | ||
| 385 | aux[0].m = NULLMOVE; | ||
| 386 | |||
| 387 | while (i < n && alg[i].m != NULLMOVE) { | ||
| 388 | int j = i; | ||
| 389 | while (j < n && commute[alg[i].m][alg[j].m]) j++; | ||
| 390 | Move base = 6*((alg[i].m-1)/6); | ||
| 391 | int t1 = 0, t2 = 0; | ||
| 392 | for (int k = i; k < j; k++) | ||
| 393 | if (alg[k].m == base+1) t1 = (t1+1)%4; | ||
| 394 | else t2 = (t2+1)%4; | ||
| 395 | if (t1) { aux[c].inverse = inv; aux[c].m = base+t1; c++; } | ||
| 396 | if (t2) { aux[c].inverse = inv; aux[c].m = base+t2+3; c++; } | ||
| 397 | i = j; | ||
| 398 | } | ||
| 399 | aux[c].m = NULLMOVE; | ||
| 400 | |||
| 401 | CubeArray q; | ||
| 402 | cube_to_arrays(blank_cube(), &q, cpos_only); | ||
| 403 | /* First we try to rotate in one move, then we try an x or y rotation | ||
| 404 | followed by a z rotation */ | ||
| 405 | for (int r = x; r <= z3; r++) { | ||
| 406 | move_cubearray(r, &q, cpos_only); | ||
| 407 | if (q.cpos[F_center] == front && q.cpos[U_center] == top) { | ||
| 408 | aux[c].inverse = inv; aux[c].m = r; | ||
| 409 | |||
| 410 | aux[++c].m = NULLMOVE; | ||
| 411 | copy_alg(aux, alg); | ||
| 412 | return; | ||
| 413 | } | ||
| 414 | move_cubearray(inverse[r], &q, cpos_only); | ||
| 415 | } | ||
| 416 | for (int r = x; r <= y3; r++) { | ||
| 417 | move_cubearray(r, &q, cpos_only); | ||
| 418 | if (q.cpos[F_center] == front) { | ||
| 419 | aux[c].inverse = inv; aux[c++].m = r; | ||
| 420 | break; | ||
| 421 | } | ||
| 422 | move_cubearray(inverse[r], &q, cpos_only); | ||
| 423 | } | ||
| 424 | for (int r = z; r <= z3; r++) { | ||
| 425 | move_cubearray(r, &q, cpos_only); | ||
| 426 | if (q.cpos[U_center] == top) { | ||
| 427 | aux[c].inverse = inv; aux[c++].m = r; | ||
| 428 | break; | ||
| 429 | } | ||
| 430 | move_cubearray(inverse[r], &q, cpos_only); | ||
| 431 | } | ||
| 432 | |||
| 433 | aux[c].m = NULLMOVE; | ||
| 434 | copy_alg(aux, alg); | ||
| 435 | } | ||
| 436 | |||
| 437 | void cleanup(NissMove *alg, int n) { | ||
| 438 | int count_n = 0, count_i = 0, *count; | ||
| 439 | NissMove aux_n[n+1], aux_i[n+1], *aux; | ||
| 440 | CubeArray cube_n, cube_i, *cube; | ||
| 441 | cube_to_arrays(blank_cube(), &cube_n, cpos_only); | ||
| 442 | cube_to_arrays(blank_cube(), &cube_i, cpos_only); | ||
| 443 | |||
| 444 | for (int i = 0; count_n + count_i < n && alg[i].m != NULLMOVE; i++) { | ||
| 445 | if (alg[i].inverse) { count = &count_i; aux = aux_i; cube = &cube_i; } | ||
| 446 | else { count = &count_n; aux = aux_n; cube = &cube_n; } | ||
| 447 | |||
| 448 | for (int j = 0; equiv_moves[alg[i].m][j]; j++) { | ||
| 449 | Move m = equiv_moves[alg[i].m][j]; | ||
| 450 | aux[*count].inverse = alg[i].inverse; | ||
| 451 | move_cubearray(m, cube, cpos_only); | ||
| 452 | if (m == U) aux[(*count)++].m = 3 * cube->cpos[0] + 1; | ||
| 453 | } | ||
| 454 | } | ||
| 455 | |||
| 456 | aux_n[count_n].m = NULLMOVE; | ||
| 457 | aux_i[count_i].m = NULLMOVE; | ||
| 458 | sort_cancel_rotate(aux_n, count_n, false, cube_n.cpos[0], cube_n.cpos[4]); | ||
| 459 | sort_cancel_rotate(aux_i, count_i, true, cube_i.cpos[0], cube_n.cpos[4]); | ||
| 460 | copy_alg(aux_n, alg); | ||
| 461 | copy_alg(aux_i, alg+count_n); | ||
| 462 | } | ||
| 463 | |||
| 464 | Cube inverse_cube(Cube cube) { | ||
| 465 | CubeArray arr = {0}, inv = {0}; | ||
| 466 | cube_to_arrays(cube, &arr, fAll); | ||
| 467 | |||
| 468 | for (int i = 0; i < 12; i++) { | ||
| 469 | inv.ep[arr.ep[i]] = i; | ||
| 470 | inv.eofb[arr.ep[i]] = arr.eofb[i]; | ||
| 471 | inv.eorl[arr.ep[i]] = arr.eorl[i]; | ||
| 472 | inv.eoud[arr.ep[i]] = arr.eoud[i]; | ||
| 473 | } | ||
| 474 | for (int i = 0; i < 8; i++) { | ||
| 475 | inv.cp[arr.cp[i]] = i; | ||
| 476 | inv.coud[arr.cp[i]] = arr.coud[i]; | ||
| 477 | inv.corl[arr.cp[i]] = arr.corl[i]; | ||
| 478 | inv.cofb[arr.cp[i]] = arr.cofb[i]; | ||
| 479 | } | ||
| 480 | for (int i = 0; i < 6; i++) | ||
| 481 | inv.cpos[arr.cpos[i]] = i; | ||
| 482 | |||
| 483 | return arrays_to_cube(inv, fAll); | ||
| 484 | } | ||
| 485 | |||
| 486 | bool read_ttables_file() { | ||
| 487 | FILE *ttf; | ||
| 488 | if ((ttf = fopen("ttables", "rb")) != NULL) { | ||
| 489 | for (int m = 0; m < NMOVES; m++) { | ||
| 490 | fread(epose_ttable[m], sizeof(uint16_t), factorial12/factorial8, ttf); | ||
| 491 | fread(eposs_ttable[m], sizeof(uint16_t), factorial12/factorial8, ttf); | ||
| 492 | fread(eposm_ttable[m], sizeof(uint16_t), factorial12/factorial8, ttf); | ||
| 493 | fread(eofb_ttable[m], sizeof(uint16_t), pow2to11, ttf); | ||
| 494 | fread(eorl_ttable[m], sizeof(uint16_t), pow2to11, ttf); | ||
| 495 | fread(eoud_ttable[m], sizeof(uint16_t), pow2to11, ttf); | ||
| 496 | fread(cp_ttable[m], sizeof(uint16_t), factorial8, ttf); | ||
| 497 | fread(coud_ttable[m], sizeof(uint16_t), pow3to7, ttf); | ||
| 498 | fread(corl_ttable[m], sizeof(uint16_t), pow3to7, ttf); | ||
| 499 | fread(cofb_ttable[m], sizeof(uint16_t), pow3to7, ttf); | ||
| 500 | fread(cpos_ttable[m], sizeof(uint16_t), factorial6, ttf); | ||
| 501 | } | ||
| 502 | fclose(ttf); | ||
| 503 | return true; | ||
| 504 | } else return false; | ||
| 505 | } | ||
| 506 | |||
| 507 | bool write_ttables_file() { | ||
| 508 | FILE *ttf; | ||
| 509 | if ((ttf = fopen("ttables", "wb")) != NULL) { | ||
| 510 | for (int m = 0; m < NMOVES; m++) { | ||
| 511 | fwrite(epose_ttable[m], sizeof(uint16_t), factorial12/factorial8, ttf); | ||
| 512 | fwrite(eposs_ttable[m], sizeof(uint16_t), factorial12/factorial8, ttf); | ||
| 513 | fwrite(eposm_ttable[m], sizeof(uint16_t), factorial12/factorial8, ttf); | ||
| 514 | fwrite(eofb_ttable[m], sizeof(uint16_t), pow2to11, ttf); | ||
| 515 | fwrite(eorl_ttable[m], sizeof(uint16_t), pow2to11, ttf); | ||
| 516 | fwrite(eoud_ttable[m], sizeof(uint16_t), pow2to11, ttf); | ||
| 517 | fwrite(cp_ttable[m], sizeof(uint16_t), factorial8, ttf); | ||
| 518 | fwrite(coud_ttable[m], sizeof(uint16_t), pow3to7, ttf); | ||
| 519 | fwrite(corl_ttable[m], sizeof(uint16_t), pow3to7, ttf); | ||
| 520 | fwrite(cofb_ttable[m], sizeof(uint16_t), pow3to7, ttf); | ||
| 521 | fwrite(cpos_ttable[m], sizeof(uint16_t), factorial6, ttf); | ||
| 522 | } | ||
| 523 | fclose(ttf); | ||
| 524 | return true; | ||
| 525 | } else return false; | ||
| 526 | } | ||
| 527 | |||
| 528 | void init_ttables(bool read, bool write) { | ||
| 529 | /* Generate all move cycles and flips; I do this regardless */ | ||
| 530 | for (int i = 0; i < NMOVES; i++) { | ||
| 531 | if (i == U || i == x || i == y) | ||
| 532 | continue; | ||
| 533 | |||
| 534 | CubeArray arr = {0}; | ||
| 535 | cube_to_arrays(blank_cube(), &arr, fAll); | ||
| 536 | for (int j = 0; equiv_moves[i][j]; j++) | ||
| 537 | move_cubearray(equiv_moves[i][j], &arr, fAll); | ||
| 538 | |||
| 539 | intarrcopy(arr.ep, edge_cycle[i], 12); | ||
| 540 | intarrcopy(arr.eofb, eofb_flipped[i], 12); | ||
| 541 | intarrcopy(arr.eorl, eorl_flipped[i], 12); | ||
| 542 | intarrcopy(arr.eoud, eoud_flipped[i], 12); | ||
| 543 | intarrcopy(arr.cp, corner_cycle[i], 8); | ||
| 544 | intarrcopy(arr.coud, coud_flipped[i], 8); | ||
| 545 | intarrcopy(arr.corl, corl_flipped[i], 8); | ||
| 546 | intarrcopy(arr.cofb, cofb_flipped[i], 8); | ||
| 547 | intarrcopy(arr.cpos, center_cycle[i], 6); | ||
| 548 | } | ||
| 549 | |||
| 550 | if (read) | ||
| 551 | if (read_ttables_file()) | ||
| 552 | return; | ||
| 553 | |||
| 554 | /* Initialize transition tables */ | ||
| 555 | Cube c = {0}; | ||
| 556 | PieceFilter fe = {.epose=true}, fs = {.eposs=true}, fm = {.eposm=true}; | ||
| 557 | PieceFilter feo = { .eofb = true, .eorl = true, .eoud = true }; | ||
| 558 | PieceFilter fcp = { .cp = true }; | ||
| 559 | PieceFilter fco = { .cofb = true, .corl = true, .coud = true }; | ||
| 560 | PieceFilter fcc = { .cpos = true }; | ||
| 561 | for (int m = 0; m < NMOVES; m++) { | ||
| 562 | for (uint16_t i = 0; i < factorial12/factorial8; i++) { | ||
| 563 | c.epose = i; epose_ttable[m][i] = move_via_array(m, c, fe).epose; | ||
| 564 | c.eposs = i; eposs_ttable[m][i] = move_via_array(m, c, fs).eposs; | ||
| 565 | c.eposm = i; eposm_ttable[m][i] = move_via_array(m, c, fm).eposm; | ||
| 566 | } | ||
| 567 | for (uint16_t i = 0; i < pow2to11; i++ ) { | ||
| 568 | c.eofb = i; eofb_ttable[m][i] = move_via_array(m, c, feo).eofb; | ||
| 569 | c.eorl = i; eorl_ttable[m][i] = move_via_array(m, c, feo).eorl; | ||
| 570 | c.eoud = i; eoud_ttable[m][i] = move_via_array(m, c, feo).eoud; | ||
| 571 | } | ||
| 572 | for (uint16_t i = 0; i < factorial8; i++) { | ||
| 573 | c.cp = i; cp_ttable[m][i] = move_via_array(m, c, fcp).cp; | ||
| 574 | } | ||
| 575 | for (uint16_t i = 0; i < pow3to7; i++) { | ||
| 576 | c.coud = i; coud_ttable[m][i] = move_via_array(m, c, fco).coud; | ||
| 577 | c.corl = i; corl_ttable[m][i] = move_via_array(m, c, fco).corl; | ||
| 578 | c.cofb = i; cofb_ttable[m][i] = move_via_array(m, c, fco).cofb; | ||
| 579 | } | ||
| 580 | for (uint16_t i = 0; i < factorial6; i++) { | ||
| 581 | c.cpos = i; cpos_ttable[m][i] = move_via_array(m, c, fcc).cpos; | ||
| 582 | } | ||
| 583 | } | ||
| 584 | |||
| 585 | if (write) write_ttables_file(); | ||
| 586 | } | ||
| 587 | |||
| 588 | Cube move_cube(Move m, Cube cube) { | ||
| 589 | Cube moved = cube; | ||
| 590 | |||
| 591 | moved.epose = epose_ttable[m][cube.epose]; | ||
| 592 | moved.eposs = eposs_ttable[m][cube.eposs]; | ||
| 593 | moved.eposm = eposm_ttable[m][cube.eposm]; | ||
| 594 | moved.eofb = eofb_ttable[m][cube.eofb]; | ||
| 595 | moved.eorl = eorl_ttable[m][cube.eorl]; | ||
| 596 | moved.eoud = eoud_ttable[m][cube.eoud]; | ||
| 597 | moved.coud = coud_ttable[m][cube.coud]; | ||
| 598 | moved.cofb = cofb_ttable[m][cube.cofb]; | ||
| 599 | moved.corl = corl_ttable[m][cube.corl]; | ||
| 600 | moved.cp = cp_ttable[m][cube.cp]; | ||
| 601 | moved.cpos = cpos_ttable[m][cube.cpos]; | ||
| 602 | |||
| 603 | return moved; | ||
| 604 | } | ||
| 605 | |||
| 606 | Cube compose(Cube c2, Cube c1) { | ||
| 607 | /* This is basically the same as the move_cubearray function above */ | ||
| 608 | CubeArray arr2 = {0}, arr1 = {0}; | ||
| 609 | cube_to_arrays(c2, &arr2, fAll); | ||
| 610 | cube_to_arrays(c1, &arr1, fAll); | ||
| 611 | |||
| 612 | apply_permutation(arr2.ep, arr1.ep, 12); | ||
| 613 | apply_permutation(arr2.ep, arr1.eofb, 12); | ||
| 614 | apply_permutation(arr2.ep, arr1.eorl, 12); | ||
| 615 | apply_permutation(arr2.ep, arr1.eoud, 12); | ||
| 616 | sum_arrays_mod(arr2.eofb, arr1.eofb, 12, 2); | ||
| 617 | sum_arrays_mod(arr2.eorl, arr1.eorl, 12, 2); | ||
| 618 | sum_arrays_mod(arr2.eoud, arr1.eoud, 12, 2); | ||
| 619 | apply_permutation(arr2.cp, arr1.cp, 8); | ||
| 620 | apply_permutation(arr2.cp, arr1.coud, 8); | ||
| 621 | apply_permutation(arr2.cp, arr1.corl, 8); | ||
| 622 | apply_permutation(arr2.cp, arr1.cofb, 8); | ||
| 623 | sum_arrays_mod(arr2.coud, arr1.coud, 8, 3); | ||
| 624 | sum_arrays_mod(arr2.corl, arr1.corl, 8, 3); | ||
| 625 | sum_arrays_mod(arr2.cofb, arr1.cofb, 8, 3); | ||
| 626 | apply_permutation(arr2.cpos, arr1.cpos, 6); | ||
| 627 | |||
| 628 | return arrays_to_cube(arr1, fAll); | ||
| 629 | } | ||
| 630 | |||
| 631 | Cube apply_alg(NissMove *alg, Cube cube) { | ||
| 632 | Cube ret = {0}; | ||
| 633 | for (int i = 0; alg[i].m != NULLMOVE; i++) | ||
| 634 | if (alg[i].inverse) | ||
| 635 | ret = move_cube(alg[i].m, ret); | ||
| 636 | ret = compose(cube, inverse_cube(ret)); | ||
| 637 | |||
| 638 | for (int i = 0; alg[i].m != NULLMOVE; i++) | ||
| 639 | if (!alg[i].inverse) | ||
| 640 | ret = move_cube(alg[i].m, ret); | ||
| 641 | return ret; | ||
| 642 | } | ||
| 643 | |||
| 644 | void init_aux_tables() { | ||
| 645 | /* Commute */ | ||
| 646 | for (int i = 0; i < NMOVES; i++) | ||
| 647 | for (int j = 0; j < NMOVES; j++) | ||
| 648 | commute[i][j] = equal(move_cube(i, move_cube(j, blank_cube())), | ||
| 649 | move_cube(j, move_cube(i, blank_cube()))); | ||
| 650 | |||
| 651 | /* Possible next (if the sequence i j k is valid) */ | ||
| 652 | for (int i = 0; i < NMOVES; i++) | ||
| 653 | for (int j = 0; j < NMOVES; j++) | ||
| 654 | for (int k = 0; k < NMOVES; k++) | ||
| 655 | possible_next[i][j][k] = | ||
| 656 | (j == 0) || | ||
| 657 | (j != 0 && (j-(j-1)%3) != (k-(k-1)%3) && | ||
| 658 | !(i != 0 && commute[i][j] && (i-(i-1)%3) == (k-(k-1)%3))); | ||
| 659 | |||
| 660 | /* Inverse */ | ||
| 661 | for (int i = 0; i < NMOVES; i++) | ||
| 662 | inverse[i] = i == 0 ? 0 : i + 2 - 2*((i-1)%3); | ||
| 663 | } | ||
| 664 | |||
