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#define DREOESEP_CLASSES UINT64_C(64430)
#define DREOESEP_MAX (POW_2_11 * COMB_12_4)
STATIC uint64_t coord_dreoesep_nosym(cube_t);
STATIC cube_t invcoord_dreoesep_nosym(uint64_t);
STATIC cube_t coordinate_dr_merge(cube_t, cube_t);
STATIC uint64_t coordinate_dr_coord(cube_t, const void *);
STATIC cube_t coordinate_dr_cube(uint64_t, const void *);
STATIC bool coordinate_dr_isnasty(uint64_t, const void *);
STATIC size_t coordinate_dr_gendata(void *);
STATIC bool is_eoco_solvable(cube_t);
/* TODO: remove the following two when all coordinates are converted to unsigned */
STATIC uint64_t coord_co_u(cube_t c) { return (uint64_t)coord_co(c); }
STATIC cube_t invcoord_co_u(uint64_t i) { return invcoord_co((int64_t)i); }
STATIC coord_t coordinate_dr = {
.name = "DR",
.coord = &coordinate_dr_coord,
.cube = &coordinate_dr_cube,
.isnasty = &coordinate_dr_isnasty,
.gendata = coordinate_dr_gendata,
.max = DREOESEP_CLASSES * POW_3_7,
.trans_mask = TM_UDFIX,
.moves_mask = MM_ALLMOVES,
.axistrans = {
[AXIS_UD] = TRANS_UFr,
[AXIS_RL] = TRANS_RFr,
[AXIS_FB] = TRANS_FDr,
},
.is_admissible = &solution_lastqt_cw,
.is_solvable = &is_eoco_solvable,
.sym = {
.classes = DREOESEP_CLASSES,
.max = DREOESEP_MAX,
.coord = &coord_dreoesep_nosym,
.cube = &invcoord_dreoesep_nosym,
.max2 = POW_3_7,
.coord2 = &coord_co_u,
.cube2 = &invcoord_co_u,
.merge = &coordinate_dr_merge,
},
};
STATIC uint64_t
coord_dreoesep_nosym(cube_t cube)
{
uint64_t eo, esep;
esep = coord_esep(cube) / COMB_8_4;
eo = coord_eo(cube);
return esep * POW_2_11 + eo;
}
STATIC cube_t
invcoord_dreoesep_nosym(uint64_t coord)
{
uint64_t eo, esep;
cube_t cube;
eo = coord % POW_2_11;
esep = (coord / POW_2_11) * COMB_8_4;
cube = invcoord_esep(esep);
set_eo(&cube, eo);
return cube;
}
STATIC cube_t
coordinate_dr_merge(cube_t c1, cube_t c2)
{
cube_t merged;
merged = c1;
copy_corners(&merged, c2);
return merged;
}
STATIC uint64_t
coordinate_dr_coord(cube_t cube, const void *data)
{
return coord_coord_generic(&coordinate_dr, cube, data);
}
STATIC cube_t
coordinate_dr_cube(uint64_t i, const void *data)
{
return coord_cube_generic(&coordinate_dr, i, data);
}
STATIC bool
coordinate_dr_isnasty(uint64_t i, const void *data)
{
return coord_isnasty_generic(&coordinate_dr, i, data);
}
STATIC size_t
coordinate_dr_gendata(void *data)
{
return coord_gendata_generic(&coordinate_dr, data);
}
STATIC bool
is_eoco_solvable(cube_t cube) {
uint8_t c[8], e[12], i, cocount, eocount;
pieces(&cube, c, e);
for (i = 0, cocount = 0; i < 8; i++)
cocount += (c[i] & COBITS_2) >> COSHIFT;
for (i = 0, eocount = 0; i < 12; i++)
eocount += (e[i] & EOBIT) >> EOSHIFT;
return cocount % 3 == 0 && eocount % 2 == 0;
}
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