}
}
-static void set_block_index(MACROBLOCKD *xd, int idx,
- BLOCK_SIZE_TYPE bsize) {
- if (bsize >= BLOCK_SIZE_SB32X32) {
- xd->sb_index = idx;
- } else if (bsize >= BLOCK_SIZE_MB16X16) {
- xd->mb_index = idx;
- } else {
-#if CONFIG_AB4X4
- if (bsize >= BLOCK_SIZE_SB8X8)
- xd->b_index = idx;
- else
- xd->ab_index = idx;
-#else
- xd->b_index = idx;
-#endif
- }
-}
-
// TODO(jingning): the variables used here are little complicated. need further
// refactoring on organizing the the temporary buffers, when recursive
// partition down to 4x4 block size is enabled.
return;
if (sub_index != -1)
- set_block_index(xd, sub_index, bsize);
+ *(get_sb_index(xd, bsize)) = sub_index;
set_offsets(cpi, mi_row, mi_col, bsize);
update_state(cpi, get_block_context(x, bsize), bsize, output_enabled);
encode_superblock(cpi, tp, output_enabled, mi_row, mi_col, bsize);
MACROBLOCK *const x = &cpi->mb;
MACROBLOCKD *const xd = &x->e_mbd;
BLOCK_SIZE_TYPE c1 = BLOCK_SIZE_SB8X8;
- const int bsl = mi_width_log2(bsize), bs = (1 << bsl) / 2;
+ const int bsl = b_width_log2(bsize), bs = (1 << bsl) / 4;
int bwl, bhl;
int UNINITIALIZED_IS_SAFE(pl);
c1 = *(get_sb_partitioning(x, bsize));
}
- bwl = mi_width_log2(c1), bhl = mi_height_log2(c1);
+ bwl = b_width_log2(c1), bhl = b_height_log2(c1);
if (bsl == bwl && bsl == bhl) {
#if CONFIG_AB4X4
for (i = 0; i < 4; i++) {
const int x_idx = i & 1, y_idx = i >> 1;
- set_block_index(xd, i, subsize);
+ *(get_sb_index(xd, subsize)) = i;
encode_sb(cpi, tp, mi_row + y_idx * bs, mi_col + x_idx * bs,
output_enabled, subsize);
}