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STATIC uint64_t coordinate_htr_coord(cube_t, const unsigned char *);
STATIC cube_t coordinate_htr_cube(uint64_t, const unsigned char *);
STATIC bool coordinate_htr_isnasty(uint64_t, const unsigned char *);
STATIC size_t coordinate_htr_gendata(unsigned char *);
STATIC bool htr_checkmoves(bool *, uint8_t, const uint8_t *);
STATIC bool htr_solution_prune(const solution_moves_t [static 1]);
STATIC bool is_cp_htr(uint64_t, const unsigned char *);
STATIC coord_t coordinate_htr = {
.name = "HTR",
.coord = &coordinate_htr_coord,
.cube = &coordinate_htr_cube,
.isnasty = &coordinate_htr_isnasty,
.gendata = coordinate_htr_gendata,
.max = CLASSES_CP_16 * COMB_8_4,
.trans_mask = TM_UDFIX,
.moves_mask_gendata = MM18_DR,
.moves_mask_solve = MM18_DRHTR,
.is_admissible = &solution_lastqt_cw,
.solution_prune = &htr_solution_prune,
.is_solvable = &is_drfinnoe_solvable,
.is_solved = &is_cp_htr,
.allow_niss = true,
.pruning_distribution = {
[0] = 22,
[1] = 18,
[2] = 86,
[3] = 268,
[4] = 920,
[5] = 4042,
[6] = 12716,
[7] = 24852,
[8] = 33116,
[9] = 45032,
[10] = 47144,
[11] = 21676,
[12] = 3692,
[13] = 176
},
.pruning_max = 13,
.sym = {
.classes = CLASSES_CP_16,
.max = FACT_8,
.coord = &coord_cp,
.cube = &invcoord_cp,
.max2 = COMB_8_4,
.coord2 = &coord_epudsep,
.cube2 = &invcoord_epudsep,
.merge = &coordinate_merge_ce,
},
};
STATIC uint64_t
coordinate_htr_coord(cube_t cube, const unsigned char *data)
{
return coord_coord_generic(&coordinate_htr, cube, data);
}
STATIC cube_t
coordinate_htr_cube(uint64_t i, const unsigned char *data)
{
return coord_cube_generic(&coordinate_htr, i, data);
}
STATIC bool
coordinate_htr_isnasty(uint64_t i, const unsigned char *data)
{
return coord_isnasty_generic(&coordinate_htr, i, data);
}
STATIC size_t
coordinate_htr_gendata(unsigned char *data)
{
return coord_gendata_generic(&coordinate_htr, data);
}
STATIC bool
htr_checkmoves(bool *f, uint8_t n, const uint8_t *moves)
{
uint8_t i;
bool is_d, is_u;
for (i = 0; i < n; i++) {
is_d = moves[i] == MOVE_D || moves[i] == MOVE_D3;
is_u = moves[i] == MOVE_U || moves[i] == MOVE_U3;
if (is_d && *f)
return true;
*f = *f || is_d || is_u;
if (i < n-1 && moveaxis(moves[i]) == 0 &&
parallel(moves[i], moves[i+1]))
return true;
}
return false;
}
STATIC bool
htr_solution_prune(const solution_moves_t s[static 1])
{
bool f;
f = false;
return htr_checkmoves(&f, s->nmoves, s->moves) ||
htr_checkmoves(&f, s->npremoves, s->premoves);
}
STATIC bool
is_cp_htr(uint64_t i, const unsigned char *data)
{
static uint8_t is_cp16_htr_table[DIV_ROUND_UP(CLASSES_CP_16, 8)] = {
[0] = 81, [7] = 144, [8] = 16, [25] = 130, [26] = 34,
[37] = 64, [38] = 48, [39] = 8, [212] = 20, [226] = 32,
[227] = 2, [298] = 160, [300] = 128, [301] = 1
};
uint64_t e, c;
e = i % COMB_8_4;
c = i / COMB_8_4;
return e == 0 && is_cp16_htr_table[c / 8] & (UINT8_C(1) << (c % 8));
}
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