dc_fixpt_from_int
gamma->entries.red[i] = dc_fixpt_from_int(r);
gamma->entries.green[i] = dc_fixpt_from_int(g);
gamma->entries.blue[i] = dc_fixpt_from_int(b);
dc_fixpt_from_int(
dc_fixpt_from_int(
struct fixed31_32 mbps = dc_fixpt_from_int(
struct fixed31_32 avg_time_slots_per_mtp = dc_fixpt_from_int(0);
dc_fixpt_from_int(ds_data->feedback_amount));
dc_fixpt_from_int(ds_data->nfrac_amount));
dc_fixpt_from_int(data->taps.h_taps + 1)),
dc_fixpt_from_int(data->taps.v_taps + 1)),
arr_points[0].x = dc_fixpt_pow(dc_fixpt_from_int(2),
dc_fixpt_from_int(region_start));
arr_points[1].x = dc_fixpt_pow(dc_fixpt_from_int(2),
dc_fixpt_from_int(region_end));
const struct fixed31_32 end_value = dc_fixpt_from_int(125);
arr_points[0].x = dc_fixpt_pow(dc_fixpt_from_int(2),
dc_fixpt_from_int(region_start));
arr_points[1].x = dc_fixpt_pow(dc_fixpt_from_int(2),
dc_fixpt_from_int(region_end));
dc_fixpt_from_int(125);
arr_points[0].x = dc_fixpt_pow(dc_fixpt_from_int(2),
dc_fixpt_from_int(region_start));
arr_points[1].x = dc_fixpt_pow(dc_fixpt_from_int(2),
dc_fixpt_from_int(region_end));
dc_fixpt_from_int(125);
dc_fixpt_from_int(dst_x_offset),
dc_fixpt_from_int(
dc_fixpt_from_int(
return dc_fixpt_add(arg1, dc_fixpt_from_int(arg2));
return dc_fixpt_sub(arg1, dc_fixpt_from_int(arg2));
return dc_fixpt_mul(arg1, dc_fixpt_from_int(arg2));
return dc_fixpt_from_fraction(arg1.value, dc_fixpt_from_int(arg2).value);
dc_fixpt_from_int(max_lut_index);
index_f = dc_fixpt_from_int(index);
dc_fixpt_from_int(255);
index_f = dc_fixpt_from_int(index);
dividers.divider2 = dc_fixpt_from_int(2);
dividers.divider2 = dc_fixpt_from_int(2);
dividers.divider2 = dc_fixpt_from_int(2);
struct fixed31_32 scaling_factor = dc_fixpt_from_int(125);
const struct fixed31_32 one = dc_fixpt_from_int(1);
struct fixed31_32 region_size = dc_fixpt_from_int(128);
point->coeff = dc_fixpt_from_int(2);
struct fixed31_32 scaling_factor = dc_fixpt_from_int(125);
const struct fixed31_32 max_driver = dc_fixpt_from_int(0xFFFF);
const struct fixed31_32 max_os = dc_fixpt_from_int(0xFF00);