1 /*
2 * Copyright (c) 2016, Alliance for Open Media. All rights reserved.
3 *
4 * This source code is subject to the terms of the BSD 2 Clause License and
5 * the Alliance for Open Media Patent License 1.0. If the BSD 2 Clause License
6 * was not distributed with this source code in the LICENSE file, you can
7 * obtain it at www.aomedia.org/license/software. If the Alliance for Open
8 * Media Patent License 1.0 was not distributed with this source code in the
9 * PATENTS file, you can obtain it at www.aomedia.org/license/patent.
10 */
11
12 #include <stdbool.h>
13
14 #include "av1/common/av1_common_int.h"
15 #include "av1/common/resize.h"
16 #include "av1/common/tile_common.h"
17 #include "aom_dsp/aom_dsp_common.h"
18
av1_tile_init(TileInfo * tile,const AV1_COMMON * cm,int row,int col)19 void av1_tile_init(TileInfo *tile, const AV1_COMMON *cm, int row, int col) {
20 av1_tile_set_row(tile, cm, row);
21 av1_tile_set_col(tile, cm, col);
22 }
23
24 // Find smallest k>=0 such that (blk_size << k) >= target
tile_log2(int blk_size,int target)25 static int tile_log2(int blk_size, int target) {
26 int k;
27 for (k = 0; (blk_size << k) < target; k++) {
28 }
29 return k;
30 }
31
av1_get_tile_limits(AV1_COMMON * const cm)32 void av1_get_tile_limits(AV1_COMMON *const cm) {
33 const SequenceHeader *const seq_params = cm->seq_params;
34 CommonTileParams *const tiles = &cm->tiles;
35 const int sb_cols =
36 CEIL_POWER_OF_TWO(cm->mi_params.mi_cols, seq_params->mib_size_log2);
37 const int sb_rows =
38 CEIL_POWER_OF_TWO(cm->mi_params.mi_rows, seq_params->mib_size_log2);
39
40 const int sb_size_log2 = seq_params->mib_size_log2 + MI_SIZE_LOG2;
41 tiles->max_width_sb = MAX_TILE_WIDTH >> sb_size_log2;
42
43 #if CONFIG_CWG_C013
44 bool use_level_7_above = false;
45 for (int i = 0; i < seq_params->operating_points_cnt_minus_1 + 1; i++) {
46 if (seq_params->seq_level_idx[i] >= SEQ_LEVEL_7_0 &&
47 seq_params->seq_level_idx[i] <= SEQ_LEVEL_8_3) {
48 // Currently it is assumed that levels 7.x and 8.x are either used for all
49 // operating points, or none of them.
50 if (i != 0 && !use_level_7_above) {
51 aom_internal_error(cm->error, AOM_CODEC_UNSUP_BITSTREAM,
52 "Either all the operating points are levels 7.x or "
53 "8.x, or none of them are.");
54 }
55 use_level_7_above = true;
56 }
57 }
58 const int max_tile_area_sb =
59 (use_level_7_above ? MAX_TILE_AREA_LEVEL_7_AND_ABOVE : MAX_TILE_AREA) >>
60 (2 * sb_size_log2);
61 #else
62 const int max_tile_area_sb = MAX_TILE_AREA >> (2 * sb_size_log2);
63 #endif
64
65 tiles->min_log2_cols = tile_log2(tiles->max_width_sb, sb_cols);
66 tiles->max_log2_cols = tile_log2(1, AOMMIN(sb_cols, MAX_TILE_COLS));
67 tiles->max_log2_rows = tile_log2(1, AOMMIN(sb_rows, MAX_TILE_ROWS));
68 tiles->min_log2 = tile_log2(max_tile_area_sb, sb_cols * sb_rows);
69 tiles->min_log2 = AOMMAX(tiles->min_log2, tiles->min_log2_cols);
70 }
71
av1_calculate_tile_cols(const SequenceHeader * const seq_params,int cm_mi_rows,int cm_mi_cols,CommonTileParams * const tiles)72 void av1_calculate_tile_cols(const SequenceHeader *const seq_params,
73 int cm_mi_rows, int cm_mi_cols,
74 CommonTileParams *const tiles) {
75 int sb_cols = CEIL_POWER_OF_TWO(cm_mi_cols, seq_params->mib_size_log2);
76 int sb_rows = CEIL_POWER_OF_TWO(cm_mi_rows, seq_params->mib_size_log2);
77 int i;
78
79 // This will be overridden if there is at least two columns of tiles
80 // (otherwise there is no inner tile width)
81 tiles->min_inner_width = -1;
82
83 if (tiles->uniform_spacing) {
84 int start_sb;
85 int size_sb = CEIL_POWER_OF_TWO(sb_cols, tiles->log2_cols);
86 assert(size_sb > 0);
87 for (i = 0, start_sb = 0; start_sb < sb_cols; i++) {
88 tiles->col_start_sb[i] = start_sb;
89 start_sb += size_sb;
90 }
91 tiles->cols = i;
92 tiles->col_start_sb[i] = sb_cols;
93 tiles->min_log2_rows = AOMMAX(tiles->min_log2 - tiles->log2_cols, 0);
94 tiles->max_height_sb = sb_rows >> tiles->min_log2_rows;
95
96 tiles->width = size_sb << seq_params->mib_size_log2;
97 tiles->width = AOMMIN(tiles->width, cm_mi_cols);
98 if (tiles->cols > 1) {
99 tiles->min_inner_width = tiles->width;
100 }
101 } else {
102 int max_tile_area_sb = (sb_rows * sb_cols);
103 int widest_tile_sb = 1;
104 int narrowest_inner_tile_sb = 65536;
105 tiles->log2_cols = tile_log2(1, tiles->cols);
106 for (i = 0; i < tiles->cols; i++) {
107 int size_sb = tiles->col_start_sb[i + 1] - tiles->col_start_sb[i];
108 widest_tile_sb = AOMMAX(widest_tile_sb, size_sb);
109 // ignore the rightmost tile in frame for determining the narrowest
110 if (i < tiles->cols - 1)
111 narrowest_inner_tile_sb = AOMMIN(narrowest_inner_tile_sb, size_sb);
112 }
113 if (tiles->min_log2) {
114 max_tile_area_sb >>= (tiles->min_log2 + 1);
115 }
116 tiles->max_height_sb = AOMMAX(max_tile_area_sb / widest_tile_sb, 1);
117 if (tiles->cols > 1) {
118 tiles->min_inner_width = narrowest_inner_tile_sb
119 << seq_params->mib_size_log2;
120 }
121 }
122 }
123
av1_calculate_tile_rows(const SequenceHeader * const seq_params,int cm_mi_rows,CommonTileParams * const tiles)124 void av1_calculate_tile_rows(const SequenceHeader *const seq_params,
125 int cm_mi_rows, CommonTileParams *const tiles) {
126 int sb_rows = CEIL_POWER_OF_TWO(cm_mi_rows, seq_params->mib_size_log2);
127 int start_sb, size_sb, i;
128
129 if (tiles->uniform_spacing) {
130 size_sb = CEIL_POWER_OF_TWO(sb_rows, tiles->log2_rows);
131 assert(size_sb > 0);
132 for (i = 0, start_sb = 0; start_sb < sb_rows; i++) {
133 tiles->row_start_sb[i] = start_sb;
134 start_sb += size_sb;
135 }
136 tiles->rows = i;
137 tiles->row_start_sb[i] = sb_rows;
138
139 tiles->height = size_sb << seq_params->mib_size_log2;
140 tiles->height = AOMMIN(tiles->height, cm_mi_rows);
141 } else {
142 tiles->log2_rows = tile_log2(1, tiles->rows);
143 }
144 }
145
av1_tile_set_row(TileInfo * tile,const AV1_COMMON * cm,int row)146 void av1_tile_set_row(TileInfo *tile, const AV1_COMMON *cm, int row) {
147 assert(row < cm->tiles.rows);
148 int mi_row_start = cm->tiles.row_start_sb[row]
149 << cm->seq_params->mib_size_log2;
150 int mi_row_end = cm->tiles.row_start_sb[row + 1]
151 << cm->seq_params->mib_size_log2;
152 tile->tile_row = row;
153 tile->mi_row_start = mi_row_start;
154 tile->mi_row_end = AOMMIN(mi_row_end, cm->mi_params.mi_rows);
155 assert(tile->mi_row_end > tile->mi_row_start);
156 }
157
av1_tile_set_col(TileInfo * tile,const AV1_COMMON * cm,int col)158 void av1_tile_set_col(TileInfo *tile, const AV1_COMMON *cm, int col) {
159 assert(col < cm->tiles.cols);
160 int mi_col_start = cm->tiles.col_start_sb[col]
161 << cm->seq_params->mib_size_log2;
162 int mi_col_end = cm->tiles.col_start_sb[col + 1]
163 << cm->seq_params->mib_size_log2;
164 tile->tile_col = col;
165 tile->mi_col_start = mi_col_start;
166 tile->mi_col_end = AOMMIN(mi_col_end, cm->mi_params.mi_cols);
167 assert(tile->mi_col_end > tile->mi_col_start);
168 }
169
av1_get_sb_rows_in_tile(const AV1_COMMON * cm,const TileInfo * tile)170 int av1_get_sb_rows_in_tile(const AV1_COMMON *cm, const TileInfo *tile) {
171 return CEIL_POWER_OF_TWO(tile->mi_row_end - tile->mi_row_start,
172 cm->seq_params->mib_size_log2);
173 }
174
av1_get_sb_cols_in_tile(const AV1_COMMON * cm,const TileInfo * tile)175 int av1_get_sb_cols_in_tile(const AV1_COMMON *cm, const TileInfo *tile) {
176 return CEIL_POWER_OF_TWO(tile->mi_col_end - tile->mi_col_start,
177 cm->seq_params->mib_size_log2);
178 }
179
180 // Section 7.3.1 of the AV1 spec says, on pages 200-201:
181 // It is a requirement of bitstream conformance that the following conditions
182 // are met:
183 // ...
184 // * TileHeight is equal to (use_128x128_superblock ? 128 : 64) for all
185 // tiles (i.e. the tile is exactly one superblock high)
186 // * TileWidth is identical for all tiles and is an integer multiple of
187 // TileHeight (i.e. the tile is an integer number of superblocks wide)
188 // ...
av1_get_uniform_tile_size(const AV1_COMMON * cm,int * w,int * h)189 bool av1_get_uniform_tile_size(const AV1_COMMON *cm, int *w, int *h) {
190 const CommonTileParams *const tiles = &cm->tiles;
191 if (tiles->uniform_spacing) {
192 *w = tiles->width;
193 *h = tiles->height;
194 } else {
195 for (int i = 0; i < tiles->cols; ++i) {
196 const int tile_width_sb =
197 tiles->col_start_sb[i + 1] - tiles->col_start_sb[i];
198 const int tile_w = tile_width_sb * cm->seq_params->mib_size;
199 // ensure all tiles have same dimension
200 if (i != 0 && tile_w != *w) {
201 return false;
202 }
203 *w = tile_w;
204 }
205
206 for (int i = 0; i < tiles->rows; ++i) {
207 const int tile_height_sb =
208 tiles->row_start_sb[i + 1] - tiles->row_start_sb[i];
209 const int tile_h = tile_height_sb * cm->seq_params->mib_size;
210 // ensure all tiles have same dimension
211 if (i != 0 && tile_h != *h) {
212 return false;
213 }
214 *h = tile_h;
215 }
216 }
217 return true;
218 }
219
av1_is_min_tile_width_satisfied(const AV1_COMMON * cm)220 int av1_is_min_tile_width_satisfied(const AV1_COMMON *cm) {
221 // Disable check if there is a single tile col in the frame
222 if (cm->tiles.cols == 1) return 1;
223
224 return ((cm->tiles.min_inner_width << MI_SIZE_LOG2) >=
225 (64 << av1_superres_scaled(cm)));
226 }
227