Coverage Report

Created: 2026-06-13 06:29

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/libavif/ext/aom/av1/encoder/encoder_utils.c
Line
Count
Source
1
/*
2
 * Copyright (c) 2020, 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 <assert.h>
13
#include <string.h>
14
15
#include "aom/aomcx.h"
16
17
#include "av1/common/av1_common_int.h"
18
#include "av1/encoder/bitstream.h"
19
#include "av1/encoder/encodeframe.h"
20
#include "av1/encoder/encoder.h"
21
#include "av1/encoder/encoder_alloc.h"
22
#include "av1/encoder/encodetxb.h"
23
#include "av1/encoder/encoder_utils.h"
24
#include "av1/encoder/firstpass.h"
25
#include "av1/encoder/grain_test_vectors.h"
26
#include "av1/encoder/mv_prec.h"
27
#include "av1/encoder/pass2_strategy.h"
28
#include "av1/encoder/ratectrl.h"
29
#include "av1/encoder/rc_utils.h"
30
#include "av1/encoder/rd.h"
31
#include "av1/encoder/rdopt.h"
32
#include "av1/encoder/segmentation.h"
33
#include "av1/encoder/superres_scale.h"
34
#include "av1/encoder/tpl_model.h"
35
#include "av1/encoder/var_based_part.h"
36
37
#if CONFIG_TUNE_VMAF
38
#include "av1/encoder/tune_vmaf.h"
39
#endif
40
41
0
#define MIN_BOOST_COMBINE_FACTOR 4.0
42
11.1k
#define MAX_BOOST_COMBINE_FACTOR 12.0
43
44
const int default_tx_type_probs[FRAME_UPDATE_TYPES][TX_SIZES_ALL][TX_TYPES] = {
45
  { { 221, 189, 214, 292, 0, 0, 0, 0, 0, 2, 38, 68, 0, 0, 0, 0 },
46
    { 262, 203, 216, 239, 0, 0, 0, 0, 0, 1, 37, 66, 0, 0, 0, 0 },
47
    { 315, 231, 239, 226, 0, 0, 0, 0, 0, 13, 0, 0, 0, 0, 0, 0 },
48
    { 1024, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 },
49
    { 1024, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 },
50
    { 222, 188, 214, 287, 0, 0, 0, 0, 0, 2, 50, 61, 0, 0, 0, 0 },
51
    { 256, 182, 205, 282, 0, 0, 0, 0, 0, 2, 21, 76, 0, 0, 0, 0 },
52
    { 281, 214, 217, 222, 0, 0, 0, 0, 0, 1, 48, 41, 0, 0, 0, 0 },
53
    { 263, 194, 225, 225, 0, 0, 0, 0, 0, 2, 15, 100, 0, 0, 0, 0 },
54
    { 1024, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 },
55
    { 1024, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 },
56
    { 1024, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 },
57
    { 1024, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 },
58
    { 170, 192, 242, 293, 0, 0, 0, 0, 0, 1, 68, 58, 0, 0, 0, 0 },
59
    { 199, 210, 213, 291, 0, 0, 0, 0, 0, 1, 14, 96, 0, 0, 0, 0 },
60
    { 1024, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 },
61
    { 1024, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 },
62
    { 1024, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 },
63
    { 1024, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 } },
64
  { { 106, 69, 107, 278, 9, 15, 20, 45, 49, 23, 23, 88, 36, 74, 25, 57 },
65
    { 105, 72, 81, 98, 45, 49, 47, 50, 56, 72, 30, 81, 33, 95, 27, 83 },
66
    { 211, 105, 109, 120, 57, 62, 43, 49, 52, 58, 42, 116, 0, 0, 0, 0 },
67
    { 1008, 0, 0, 0, 0, 0, 0, 0, 0, 16, 0, 0, 0, 0, 0, 0 },
68
    { 1024, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 },
69
    { 131, 57, 98, 172, 19, 40, 37, 64, 69, 22, 41, 52, 51, 77, 35, 59 },
70
    { 176, 83, 93, 202, 22, 24, 28, 47, 50, 16, 12, 93, 26, 76, 17, 59 },
71
    { 136, 72, 89, 95, 46, 59, 47, 56, 61, 68, 35, 51, 32, 82, 26, 69 },
72
    { 122, 80, 87, 105, 49, 47, 46, 46, 57, 52, 13, 90, 19, 103, 15, 93 },
73
    { 1009, 0, 0, 0, 0, 0, 0, 0, 0, 15, 0, 0, 0, 0, 0, 0 },
74
    { 1011, 0, 0, 0, 0, 0, 0, 0, 0, 13, 0, 0, 0, 0, 0, 0 },
75
    { 1024, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 },
76
    { 1024, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 },
77
    { 202, 20, 84, 114, 14, 60, 41, 79, 99, 21, 41, 15, 50, 84, 34, 66 },
78
    { 196, 44, 23, 72, 30, 22, 28, 57, 67, 13, 4, 165, 15, 148, 9, 131 },
79
    { 882, 0, 0, 0, 0, 0, 0, 0, 0, 142, 0, 0, 0, 0, 0, 0 },
80
    { 840, 0, 0, 0, 0, 0, 0, 0, 0, 184, 0, 0, 0, 0, 0, 0 },
81
    { 1024, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 },
82
    { 1024, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 } },
83
  { { 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64 },
84
    { 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64 },
85
    { 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64 },
86
    { 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64 },
87
    { 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64 },
88
    { 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64 },
89
    { 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64 },
90
    { 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64 },
91
    { 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64 },
92
    { 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64 },
93
    { 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64 },
94
    { 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64 },
95
    { 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64 },
96
    { 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64 },
97
    { 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64 },
98
    { 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64 },
99
    { 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64 },
100
    { 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64 },
101
    { 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64 } },
102
  { { 213, 110, 141, 269, 12, 16, 15, 19, 21, 11, 38, 68, 22, 29, 16, 24 },
103
    { 216, 119, 128, 143, 38, 41, 26, 30, 31, 30, 42, 70, 23, 36, 19, 32 },
104
    { 367, 149, 154, 154, 38, 35, 17, 21, 21, 10, 22, 36, 0, 0, 0, 0 },
105
    { 1022, 0, 0, 0, 0, 0, 0, 0, 0, 2, 0, 0, 0, 0, 0, 0 },
106
    { 1024, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 },
107
    { 219, 96, 127, 191, 21, 40, 25, 32, 34, 18, 45, 45, 33, 39, 26, 33 },
108
    { 296, 99, 122, 198, 23, 21, 19, 24, 25, 13, 20, 64, 23, 32, 18, 27 },
109
    { 275, 128, 142, 143, 35, 48, 23, 30, 29, 18, 42, 36, 18, 23, 14, 20 },
110
    { 239, 132, 166, 175, 36, 27, 19, 21, 24, 14, 13, 85, 9, 31, 8, 25 },
111
    { 1022, 0, 0, 0, 0, 0, 0, 0, 0, 2, 0, 0, 0, 0, 0, 0 },
112
    { 1022, 0, 0, 0, 0, 0, 0, 0, 0, 2, 0, 0, 0, 0, 0, 0 },
113
    { 1024, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 },
114
    { 1024, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 },
115
    { 309, 25, 79, 59, 25, 80, 34, 53, 61, 25, 49, 23, 43, 64, 36, 59 },
116
    { 270, 57, 40, 54, 50, 42, 41, 53, 56, 28, 17, 81, 45, 86, 34, 70 },
117
    { 1005, 0, 0, 0, 0, 0, 0, 0, 0, 19, 0, 0, 0, 0, 0, 0 },
118
    { 992, 0, 0, 0, 0, 0, 0, 0, 0, 32, 0, 0, 0, 0, 0, 0 },
119
    { 1024, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 },
120
    { 1024, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 } },
121
  { { 133, 63, 55, 83, 57, 87, 58, 72, 68, 16, 24, 35, 29, 105, 25, 114 },
122
    { 131, 75, 74, 60, 71, 77, 65, 66, 73, 33, 21, 79, 20, 83, 18, 78 },
123
    { 276, 95, 82, 58, 86, 93, 63, 60, 64, 17, 38, 92, 0, 0, 0, 0 },
124
    { 1006, 0, 0, 0, 0, 0, 0, 0, 0, 18, 0, 0, 0, 0, 0, 0 },
125
    { 1024, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 },
126
    { 147, 49, 75, 78, 50, 97, 60, 67, 76, 17, 42, 35, 31, 93, 27, 80 },
127
    { 157, 49, 58, 75, 61, 52, 56, 67, 69, 12, 15, 79, 24, 119, 11, 120 },
128
    { 178, 69, 83, 77, 69, 85, 72, 77, 77, 20, 35, 40, 25, 48, 23, 46 },
129
    { 174, 55, 64, 57, 73, 68, 62, 61, 75, 15, 12, 90, 17, 99, 16, 86 },
130
    { 1008, 0, 0, 0, 0, 0, 0, 0, 0, 16, 0, 0, 0, 0, 0, 0 },
131
    { 1018, 0, 0, 0, 0, 0, 0, 0, 0, 6, 0, 0, 0, 0, 0, 0 },
132
    { 1024, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 },
133
    { 1024, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 },
134
    { 266, 31, 63, 64, 21, 52, 39, 54, 63, 30, 52, 31, 48, 89, 46, 75 },
135
    { 272, 26, 32, 44, 29, 31, 32, 53, 51, 13, 13, 88, 22, 153, 16, 149 },
136
    { 923, 0, 0, 0, 0, 0, 0, 0, 0, 101, 0, 0, 0, 0, 0, 0 },
137
    { 969, 0, 0, 0, 0, 0, 0, 0, 0, 55, 0, 0, 0, 0, 0, 0 },
138
    { 1024, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 },
139
    { 1024, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 } },
140
  { { 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64 },
141
    { 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64 },
142
    { 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64 },
143
    { 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64 },
144
    { 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64 },
145
    { 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64 },
146
    { 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64 },
147
    { 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64 },
148
    { 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64 },
149
    { 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64 },
150
    { 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64 },
151
    { 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64 },
152
    { 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64 },
153
    { 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64 },
154
    { 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64 },
155
    { 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64 },
156
    { 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64 },
157
    { 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64 },
158
    { 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64, 64 } },
159
  { { 158, 92, 125, 298, 12, 15, 20, 29, 31, 12, 29, 67, 34, 44, 23, 35 },
160
    { 147, 94, 103, 123, 45, 48, 38, 41, 46, 48, 37, 78, 33, 63, 27, 53 },
161
    { 268, 126, 125, 136, 54, 53, 31, 38, 38, 33, 35, 87, 0, 0, 0, 0 },
162
    { 1018, 0, 0, 0, 0, 0, 0, 0, 0, 6, 0, 0, 0, 0, 0, 0 },
163
    { 1024, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 },
164
    { 159, 72, 103, 194, 20, 35, 37, 50, 56, 21, 39, 40, 51, 61, 38, 48 },
165
    { 259, 86, 95, 188, 32, 20, 25, 34, 37, 13, 12, 85, 25, 53, 17, 43 },
166
    { 189, 99, 113, 123, 45, 59, 37, 46, 48, 44, 39, 41, 31, 47, 26, 37 },
167
    { 175, 110, 113, 128, 58, 38, 33, 33, 43, 29, 13, 100, 14, 68, 12, 57 },
168
    { 1017, 0, 0, 0, 0, 0, 0, 0, 0, 7, 0, 0, 0, 0, 0, 0 },
169
    { 1019, 0, 0, 0, 0, 0, 0, 0, 0, 5, 0, 0, 0, 0, 0, 0 },
170
    { 1024, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 },
171
    { 1024, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 },
172
    { 208, 22, 84, 101, 21, 59, 44, 70, 90, 25, 59, 13, 64, 67, 49, 48 },
173
    { 277, 52, 32, 63, 43, 26, 33, 48, 54, 11, 6, 130, 18, 119, 11, 101 },
174
    { 963, 0, 0, 0, 0, 0, 0, 0, 0, 61, 0, 0, 0, 0, 0, 0 },
175
    { 979, 0, 0, 0, 0, 0, 0, 0, 0, 45, 0, 0, 0, 0, 0, 0 },
176
    { 1024, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 },
177
    { 1024, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 } }
178
};
179
180
const int default_obmc_probs[FRAME_UPDATE_TYPES][BLOCK_SIZES_ALL] = {
181
  { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 },
182
  { 0,  0,  0,  106, 90, 90, 97, 67, 59, 70, 28,
183
    30, 38, 16, 16,  16, 0,  0,  44, 50, 26, 25 },
184
  { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 },
185
  { 0,  0,  0,  98, 93, 97, 68, 82, 85, 33, 30,
186
    33, 16, 16, 16, 16, 0,  0,  43, 37, 26, 16 },
187
  { 0,  0,  0,  91, 80, 76, 78, 55, 49, 24, 16,
188
    16, 16, 16, 16, 16, 0,  0,  29, 45, 16, 38 },
189
  { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 },
190
  { 0,  0,  0,  103, 89, 89, 89, 62, 63, 76, 34,
191
    35, 32, 19, 16,  16, 0,  0,  49, 55, 29, 19 }
192
};
193
194
const int default_warped_probs[FRAME_UPDATE_TYPES] = { 64, 64, 64, 64,
195
                                                       64, 64, 64 };
196
197
// TODO(yunqing): the default probs can be trained later from better
198
// performance.
199
const int default_switchable_interp_probs[FRAME_UPDATE_TYPES]
200
                                         [SWITCHABLE_FILTER_CONTEXTS]
201
                                         [SWITCHABLE_FILTERS] = {
202
                                           { { 512, 512, 512 },
203
                                             { 512, 512, 512 },
204
                                             { 512, 512, 512 },
205
                                             { 512, 512, 512 },
206
                                             { 512, 512, 512 },
207
                                             { 512, 512, 512 },
208
                                             { 512, 512, 512 },
209
                                             { 512, 512, 512 },
210
                                             { 512, 512, 512 },
211
                                             { 512, 512, 512 },
212
                                             { 512, 512, 512 },
213
                                             { 512, 512, 512 },
214
                                             { 512, 512, 512 },
215
                                             { 512, 512, 512 },
216
                                             { 512, 512, 512 },
217
                                             { 512, 512, 512 } },
218
                                           { { 512, 512, 512 },
219
                                             { 512, 512, 512 },
220
                                             { 512, 512, 512 },
221
                                             { 512, 512, 512 },
222
                                             { 512, 512, 512 },
223
                                             { 512, 512, 512 },
224
                                             { 512, 512, 512 },
225
                                             { 512, 512, 512 },
226
                                             { 512, 512, 512 },
227
                                             { 512, 512, 512 },
228
                                             { 512, 512, 512 },
229
                                             { 512, 512, 512 },
230
                                             { 512, 512, 512 },
231
                                             { 512, 512, 512 },
232
                                             { 512, 512, 512 },
233
                                             { 512, 512, 512 } },
234
                                           { { 512, 512, 512 },
235
                                             { 512, 512, 512 },
236
                                             { 512, 512, 512 },
237
                                             { 512, 512, 512 },
238
                                             { 512, 512, 512 },
239
                                             { 512, 512, 512 },
240
                                             { 512, 512, 512 },
241
                                             { 512, 512, 512 },
242
                                             { 512, 512, 512 },
243
                                             { 512, 512, 512 },
244
                                             { 512, 512, 512 },
245
                                             { 512, 512, 512 },
246
                                             { 512, 512, 512 },
247
                                             { 512, 512, 512 },
248
                                             { 512, 512, 512 },
249
                                             { 512, 512, 512 } },
250
                                           { { 512, 512, 512 },
251
                                             { 512, 512, 512 },
252
                                             { 512, 512, 512 },
253
                                             { 512, 512, 512 },
254
                                             { 512, 512, 512 },
255
                                             { 512, 512, 512 },
256
                                             { 512, 512, 512 },
257
                                             { 512, 512, 512 },
258
                                             { 512, 512, 512 },
259
                                             { 512, 512, 512 },
260
                                             { 512, 512, 512 },
261
                                             { 512, 512, 512 },
262
                                             { 512, 512, 512 },
263
                                             { 512, 512, 512 },
264
                                             { 512, 512, 512 },
265
                                             { 512, 512, 512 } },
266
                                           { { 512, 512, 512 },
267
                                             { 512, 512, 512 },
268
                                             { 512, 512, 512 },
269
                                             { 512, 512, 512 },
270
                                             { 512, 512, 512 },
271
                                             { 512, 512, 512 },
272
                                             { 512, 512, 512 },
273
                                             { 512, 512, 512 },
274
                                             { 512, 512, 512 },
275
                                             { 512, 512, 512 },
276
                                             { 512, 512, 512 },
277
                                             { 512, 512, 512 },
278
                                             { 512, 512, 512 },
279
                                             { 512, 512, 512 },
280
                                             { 512, 512, 512 },
281
                                             { 512, 512, 512 } },
282
                                           { { 512, 512, 512 },
283
                                             { 512, 512, 512 },
284
                                             { 512, 512, 512 },
285
                                             { 512, 512, 512 },
286
                                             { 512, 512, 512 },
287
                                             { 512, 512, 512 },
288
                                             { 512, 512, 512 },
289
                                             { 512, 512, 512 },
290
                                             { 512, 512, 512 },
291
                                             { 512, 512, 512 },
292
                                             { 512, 512, 512 },
293
                                             { 512, 512, 512 },
294
                                             { 512, 512, 512 },
295
                                             { 512, 512, 512 },
296
                                             { 512, 512, 512 },
297
                                             { 512, 512, 512 } },
298
                                           { { 512, 512, 512 },
299
                                             { 512, 512, 512 },
300
                                             { 512, 512, 512 },
301
                                             { 512, 512, 512 },
302
                                             { 512, 512, 512 },
303
                                             { 512, 512, 512 },
304
                                             { 512, 512, 512 },
305
                                             { 512, 512, 512 },
306
                                             { 512, 512, 512 },
307
                                             { 512, 512, 512 },
308
                                             { 512, 512, 512 },
309
                                             { 512, 512, 512 },
310
                                             { 512, 512, 512 },
311
                                             { 512, 512, 512 },
312
                                             { 512, 512, 512 },
313
                                             { 512, 512, 512 } }
314
                                         };
315
316
0
static void configure_static_seg_features(AV1_COMP *cpi) {
317
0
  AV1_COMMON *const cm = &cpi->common;
318
0
  const RATE_CONTROL *const rc = &cpi->rc;
319
0
  struct segmentation *const seg = &cm->seg;
320
321
0
  double avg_q;
322
#if CONFIG_FPMT_TEST
323
  avg_q = ((cpi->ppi->gf_group.frame_parallel_level[cpi->gf_frame_index] > 0) &&
324
           (cpi->ppi->fpmt_unit_test_cfg == PARALLEL_SIMULATION_ENCODE))
325
              ? cpi->ppi->p_rc.temp_avg_q
326
              : cpi->ppi->p_rc.avg_q;
327
#else
328
0
  avg_q = cpi->ppi->p_rc.avg_q;
329
0
#endif
330
331
0
  int high_q = (int)(avg_q > 48.0);
332
0
  int qi_delta;
333
334
  // Disable and clear down for KF
335
0
  if (cm->current_frame.frame_type == KEY_FRAME) {
336
    // Clear down the global segmentation map
337
0
    memset(cpi->enc_seg.map, 0, cm->mi_params.mi_rows * cm->mi_params.mi_cols);
338
0
    seg->update_map = 0;
339
0
    seg->update_data = 0;
340
341
    // Disable segmentation
342
0
    av1_disable_segmentation(seg);
343
344
    // Clear down the segment features.
345
0
    av1_clearall_segfeatures(seg);
346
0
  } else if (cpi->refresh_frame.alt_ref_frame) {
347
    // If this is an alt ref frame
348
    // Clear down the global segmentation map
349
0
    memset(cpi->enc_seg.map, 0, cm->mi_params.mi_rows * cm->mi_params.mi_cols);
350
0
    seg->update_map = 0;
351
0
    seg->update_data = 0;
352
353
    // Disable segmentation and individual segment features by default
354
0
    av1_disable_segmentation(seg);
355
0
    av1_clearall_segfeatures(seg);
356
357
    // If segmentation was enabled set those features needed for the
358
    // arf itself.
359
0
    if (seg->enabled) {
360
0
      seg->update_map = 1;
361
0
      seg->update_data = 1;
362
363
0
      qi_delta = av1_compute_qdelta(rc, avg_q, avg_q * 0.875,
364
0
                                    cm->seq_params->bit_depth);
365
0
      av1_set_segdata(seg, 1, SEG_LVL_ALT_Q, qi_delta - 2);
366
0
      av1_set_segdata(seg, 1, SEG_LVL_ALT_LF_Y_H, -2);
367
0
      av1_set_segdata(seg, 1, SEG_LVL_ALT_LF_Y_V, -2);
368
0
      av1_set_segdata(seg, 1, SEG_LVL_ALT_LF_U, -2);
369
0
      av1_set_segdata(seg, 1, SEG_LVL_ALT_LF_V, -2);
370
371
0
      av1_enable_segfeature(seg, 1, SEG_LVL_ALT_LF_Y_H);
372
0
      av1_enable_segfeature(seg, 1, SEG_LVL_ALT_LF_Y_V);
373
0
      av1_enable_segfeature(seg, 1, SEG_LVL_ALT_LF_U);
374
0
      av1_enable_segfeature(seg, 1, SEG_LVL_ALT_LF_V);
375
376
0
      av1_enable_segfeature(seg, 1, SEG_LVL_ALT_Q);
377
0
    }
378
0
  } else if (seg->enabled) {
379
    // All other frames if segmentation has been enabled
380
381
    // First normal frame in a valid gf or alt ref group
382
0
    if (rc->frames_since_golden == 0) {
383
      // Set up segment features for normal frames in an arf group
384
      // Disable segmentation and clear down features if alt ref
385
      // is not active for this group
386
387
0
      av1_disable_segmentation(seg);
388
389
0
      memset(cpi->enc_seg.map, 0,
390
0
             cm->mi_params.mi_rows * cm->mi_params.mi_cols);
391
392
0
      seg->update_map = 0;
393
0
      seg->update_data = 0;
394
395
0
      av1_clearall_segfeatures(seg);
396
0
    } else if (rc->is_src_frame_alt_ref) {
397
      // Special case where we are coding over the top of a previous
398
      // alt ref frame.
399
      // Segment coding disabled for compred testing
400
401
      // Enable ref frame features for segment 0 as well
402
0
      av1_enable_segfeature(seg, 0, SEG_LVL_REF_FRAME);
403
0
      av1_enable_segfeature(seg, 1, SEG_LVL_REF_FRAME);
404
405
      // All mbs should use ALTREF_FRAME
406
0
      av1_clear_segdata(seg, 0, SEG_LVL_REF_FRAME);
407
0
      av1_set_segdata(seg, 0, SEG_LVL_REF_FRAME, ALTREF_FRAME);
408
0
      av1_clear_segdata(seg, 1, SEG_LVL_REF_FRAME);
409
0
      av1_set_segdata(seg, 1, SEG_LVL_REF_FRAME, ALTREF_FRAME);
410
411
      // Skip all MBs if high Q (0,0 mv and skip coeffs)
412
0
      if (high_q) {
413
0
        av1_enable_segfeature(seg, 0, SEG_LVL_SKIP);
414
0
        av1_enable_segfeature(seg, 1, SEG_LVL_SKIP);
415
0
      }
416
      // Enable data update
417
0
      seg->update_data = 1;
418
0
    } else {
419
      // All other frames.
420
421
      // No updates.. leave things as they are.
422
0
      seg->update_map = 0;
423
0
      seg->update_data = 0;
424
0
    }
425
0
  }
426
0
}
427
428
0
void av1_apply_roi_map(AV1_COMP *cpi) {
429
0
  AV1_COMMON *cm = &cpi->common;
430
0
  struct segmentation *const seg = &cm->seg;
431
0
  unsigned char *const seg_map = cpi->enc_seg.map;
432
0
  aom_roi_map_t *roi = &cpi->roi;
433
0
  const int *delta_q = roi->delta_q;
434
0
  const int *delta_lf = roi->delta_lf;
435
0
  const int *skip = roi->skip;
436
0
  int ref_frame[8];
437
0
  int internal_delta_q[MAX_SEGMENTS];
438
0
  int skip_enabled = 0;
439
0
  int qindex = cm->quant_params.base_qindex;
440
441
  // Force disable of ROI if active_map is enabled. ROI for now
442
  // only supported/tested for realtime mode with speed >= 7.
443
0
  if (!roi->enabled || cpi->active_map.enabled || cpi->oxcf.speed < 7 ||
444
0
      cpi->oxcf.mode != REALTIME) {
445
0
    roi->enabled = 0;
446
0
    roi->delta_qp_enabled = 0;
447
0
    roi->reference_enabled = 0;
448
0
    return;
449
0
  }
450
451
0
  memcpy(&ref_frame, roi->ref_frame, sizeof(ref_frame));
452
0
  roi->reference_enabled = 0;
453
0
  roi->delta_qp_enabled = 0;
454
455
0
  av1_enable_segmentation(seg);
456
0
  av1_clearall_segfeatures(seg);
457
458
0
  memcpy(seg_map, roi->roi_map,
459
0
         (cm->mi_params.mi_rows * cm->mi_params.mi_cols));
460
461
0
  for (int i = 0; i < MAX_SEGMENTS; ++i) {
462
    // Default: disable all feautures.
463
0
    av1_disable_segfeature(seg, i, SEG_LVL_ALT_Q);
464
0
    av1_disable_segfeature(seg, i, SEG_LVL_SKIP);
465
0
    av1_disable_segfeature(seg, i, SEG_LVL_REF_FRAME);
466
0
    av1_disable_segfeature(seg, i, SEG_LVL_ALT_LF_Y_H);
467
0
    av1_disable_segfeature(seg, i, SEG_LVL_ALT_LF_Y_V);
468
0
    av1_disable_segfeature(seg, i, SEG_LVL_ALT_LF_U);
469
0
    av1_disable_segfeature(seg, i, SEG_LVL_ALT_LF_V);
470
    // Translate the external delta q values to internal values.
471
0
    internal_delta_q[i] = av1_quantizer_to_qindex(abs(delta_q[i]));
472
0
    if (delta_q[i] < 0) internal_delta_q[i] = -internal_delta_q[i];
473
    // Clamp to allowed best/worst quality. For best quality clamp to 1
474
    // to avoid qindex = 0 case (lossless segment) which can happen for
475
    // best_quality = 0.
476
0
    if (qindex + internal_delta_q[i] <= cpi->rc.best_quality)
477
0
      internal_delta_q[i] = AOMMAX(1, cpi->rc.best_quality) - qindex;
478
0
    if (qindex + internal_delta_q[i] > cpi->rc.worst_quality)
479
0
      internal_delta_q[i] =
480
0
          cpi->rc.worst_quality - cm->quant_params.base_qindex;
481
0
    if (internal_delta_q[i] != 0) {
482
0
      av1_enable_segfeature(seg, i, SEG_LVL_ALT_Q);
483
0
      av1_set_segdata(seg, i, SEG_LVL_ALT_Q, internal_delta_q[i]);
484
0
      roi->delta_qp_enabled = 1;
485
0
      qindex = cm->quant_params.base_qindex + internal_delta_q[i];
486
0
    }
487
0
    if (delta_lf[i] != 0) {
488
      // Disable loopfilter delta from ROI, as it requires
489
      // additional changes and settings: DELTAQ_MODE and DELTALF_MODE
490
      // are needed to be enabled, along with additional internal fix.
491
0
      return;
492
0
    }
493
    // Skip only allowed on delta frames.
494
0
    if (skip[i] != 0 && !frame_is_intra_only(cm)) {
495
0
      av1_enable_segfeature(seg, i, SEG_LVL_SKIP);
496
      // Also force skip on loopfilter.
497
0
      av1_enable_segfeature(seg, i, SEG_LVL_ALT_LF_Y_H);
498
0
      av1_enable_segfeature(seg, i, SEG_LVL_ALT_LF_Y_V);
499
0
      av1_enable_segfeature(seg, i, SEG_LVL_ALT_LF_U);
500
0
      av1_enable_segfeature(seg, i, SEG_LVL_ALT_LF_V);
501
0
      av1_set_segdata(seg, i, SEG_LVL_ALT_LF_Y_H, -MAX_LOOP_FILTER);
502
0
      av1_set_segdata(seg, i, SEG_LVL_ALT_LF_Y_V, -MAX_LOOP_FILTER);
503
0
      av1_set_segdata(seg, i, SEG_LVL_ALT_LF_U, -MAX_LOOP_FILTER);
504
0
      av1_set_segdata(seg, i, SEG_LVL_ALT_LF_V, -MAX_LOOP_FILTER);
505
0
      skip_enabled = 1;
506
0
    }
507
0
    if (ref_frame[i] >= 0 && !frame_is_intra_only(cm)) {
508
      // Only allowed for LAST, GOLDEN, and ALTREF, and check that if either
509
      // is set as a reference.
510
0
      if ((ref_frame[i] == LAST_FRAME &&
511
0
           cpi->ref_frame_flags & AOM_LAST_FLAG) ||
512
0
          (ref_frame[i] == GOLDEN_FRAME &&
513
0
           cpi->ref_frame_flags & AOM_GOLD_FLAG) ||
514
0
          (ref_frame[i] == ALTREF_FRAME &&
515
0
           cpi->ref_frame_flags & AOM_ALT_FLAG)) {
516
0
        av1_enable_segfeature(seg, i, SEG_LVL_REF_FRAME);
517
0
        av1_set_segdata(seg, i, SEG_LVL_REF_FRAME, ref_frame[i]);
518
0
        roi->reference_enabled = 1;
519
0
      }
520
0
    }
521
0
  }
522
0
  if (roi->delta_qp_enabled || skip_enabled || roi->reference_enabled) {
523
0
    roi->enabled = 1;
524
0
    if (roi->delta_qp_enabled) {
525
0
      roi->rdmult_delta_qp = av1_compute_rd_mult(
526
0
          qindex, cm->seq_params->bit_depth,
527
0
          cpi->ppi->gf_group.update_type[cpi->gf_frame_index], 0, 15,
528
0
          INTER_FRAME, cpi->oxcf.q_cfg.use_fixed_qp_offsets,
529
0
          is_stat_consumption_stage(cpi), cpi->oxcf.tune_cfg.tuning,
530
0
          cpi->oxcf.mode);
531
0
    }
532
0
  } else {
533
0
    av1_disable_segmentation(seg);
534
0
    roi->enabled = 0;
535
0
  }
536
0
}
537
538
110k
void av1_apply_active_map(AV1_COMP *cpi) {
539
110k
  struct segmentation *const seg = &cpi->common.seg;
540
110k
  unsigned char *const seg_map = cpi->enc_seg.map;
541
110k
  const unsigned char *const active_map = cpi->active_map.map;
542
543
110k
  assert(AM_SEGMENT_ID_ACTIVE == CR_SEGMENT_ID_BASE);
544
545
  // Disable the active_maps on intra_only frames or if the
546
  // input map for the current frame has no inactive blocks.
547
110k
  if (frame_is_intra_only(&cpi->common) ||
548
110k
      cpi->rc.percent_blocks_inactive == 0) {
549
110k
    cpi->active_map.enabled = 0;
550
110k
    cpi->active_map.update = 1;
551
110k
  }
552
553
110k
  if (cpi->active_map.update) {
554
110k
    if (cpi->active_map.enabled) {
555
0
      const int num_mis =
556
0
          cpi->common.mi_params.mi_rows * cpi->common.mi_params.mi_cols;
557
0
      memcpy(seg_map, active_map, sizeof(active_map[0]) * num_mis);
558
0
      av1_enable_segmentation(seg);
559
0
      av1_enable_segfeature(seg, AM_SEGMENT_ID_INACTIVE, SEG_LVL_SKIP);
560
0
      av1_enable_segfeature(seg, AM_SEGMENT_ID_INACTIVE, SEG_LVL_ALT_LF_Y_H);
561
0
      av1_enable_segfeature(seg, AM_SEGMENT_ID_INACTIVE, SEG_LVL_ALT_LF_Y_V);
562
0
      av1_enable_segfeature(seg, AM_SEGMENT_ID_INACTIVE, SEG_LVL_ALT_LF_U);
563
0
      av1_enable_segfeature(seg, AM_SEGMENT_ID_INACTIVE, SEG_LVL_ALT_LF_V);
564
565
0
      av1_set_segdata(seg, AM_SEGMENT_ID_INACTIVE, SEG_LVL_ALT_LF_Y_H,
566
0
                      -MAX_LOOP_FILTER);
567
0
      av1_set_segdata(seg, AM_SEGMENT_ID_INACTIVE, SEG_LVL_ALT_LF_Y_V,
568
0
                      -MAX_LOOP_FILTER);
569
0
      av1_set_segdata(seg, AM_SEGMENT_ID_INACTIVE, SEG_LVL_ALT_LF_U,
570
0
                      -MAX_LOOP_FILTER);
571
0
      av1_set_segdata(seg, AM_SEGMENT_ID_INACTIVE, SEG_LVL_ALT_LF_V,
572
0
                      -MAX_LOOP_FILTER);
573
110k
    } else {
574
110k
      av1_disable_segfeature(seg, AM_SEGMENT_ID_INACTIVE, SEG_LVL_SKIP);
575
110k
      av1_disable_segfeature(seg, AM_SEGMENT_ID_INACTIVE, SEG_LVL_ALT_LF_Y_H);
576
110k
      av1_disable_segfeature(seg, AM_SEGMENT_ID_INACTIVE, SEG_LVL_ALT_LF_Y_V);
577
110k
      av1_disable_segfeature(seg, AM_SEGMENT_ID_INACTIVE, SEG_LVL_ALT_LF_U);
578
110k
      av1_disable_segfeature(seg, AM_SEGMENT_ID_INACTIVE, SEG_LVL_ALT_LF_V);
579
110k
      if (seg->enabled) {
580
0
        seg->update_data = 1;
581
0
        seg->update_map = 1;
582
0
      }
583
110k
    }
584
110k
    cpi->active_map.update = 0;
585
110k
  }
586
110k
}
587
588
#if !CONFIG_REALTIME_ONLY
589
17.3k
static void process_tpl_stats_frame(AV1_COMP *cpi) {
590
17.3k
  GF_GROUP *const gf_group = &cpi->ppi->gf_group;
591
17.3k
  AV1_COMMON *const cm = &cpi->common;
592
593
17.3k
  assert(IMPLIES(gf_group->size > 0, cpi->gf_frame_index < gf_group->size));
594
595
17.3k
  const int tpl_idx = cpi->gf_frame_index;
596
17.3k
  TplParams *const tpl_data = &cpi->ppi->tpl_data;
597
17.3k
  TplDepFrame *tpl_frame = &tpl_data->tpl_frame[tpl_idx];
598
17.3k
  TplDepStats *tpl_stats = tpl_frame->tpl_stats_ptr;
599
600
17.3k
  if (tpl_frame->is_valid) {
601
17.3k
    int tpl_stride = tpl_frame->stride;
602
17.3k
    double intra_cost_base = 0;
603
17.3k
    double mc_dep_cost_base = 0;
604
17.3k
    double cbcmp_base = 1;
605
17.3k
    const int step = 1 << tpl_data->tpl_stats_block_mis_log2;
606
17.3k
    const int row_step = step;
607
17.3k
    const int col_step_sr =
608
17.3k
        coded_to_superres_mi(step, cm->superres_scale_denominator);
609
17.3k
    const int mi_cols_sr = av1_pixels_to_mi(cm->superres_upscaled_width);
610
611
84.8k
    for (int row = 0; row < cm->mi_params.mi_rows; row += row_step) {
612
324k
      for (int col = 0; col < mi_cols_sr; col += col_step_sr) {
613
257k
        TplDepStats *this_stats = &tpl_stats[av1_tpl_ptr_pos(
614
257k
            row, col, tpl_stride, tpl_data->tpl_stats_block_mis_log2)];
615
257k
        double cbcmp = (double)(this_stats->srcrf_dist);
616
257k
        int64_t mc_dep_delta =
617
257k
            RDCOST(tpl_frame->base_rdmult, this_stats->mc_dep_rate,
618
257k
                   this_stats->mc_dep_dist);
619
257k
        double dist_scaled = (double)(this_stats->recrf_dist << RDDIV_BITS);
620
257k
        intra_cost_base += log(dist_scaled) * cbcmp;
621
257k
        mc_dep_cost_base += log(dist_scaled + mc_dep_delta) * cbcmp;
622
257k
        cbcmp_base += cbcmp;
623
257k
      }
624
67.4k
    }
625
626
17.3k
    if (mc_dep_cost_base == 0) {
627
0
      tpl_frame->is_valid = 0;
628
17.3k
    } else {
629
17.3k
      cpi->rd.r0 = exp((intra_cost_base - mc_dep_cost_base) / cbcmp_base);
630
17.3k
      if (is_frame_tpl_eligible(gf_group, cpi->gf_frame_index)) {
631
11.1k
        if (cpi->ppi->lap_enabled) {
632
11.1k
          double min_boost_factor = sqrt(cpi->ppi->p_rc.baseline_gf_interval);
633
11.1k
          const int gfu_boost = get_gfu_boost_from_r0_lap(
634
11.1k
              min_boost_factor, MAX_GFUBOOST_FACTOR, cpi->rd.r0,
635
11.1k
              cpi->ppi->p_rc.num_stats_required_for_gfu_boost);
636
11.1k
          cpi->ppi->p_rc.gfu_boost = combine_prior_with_tpl_boost(
637
11.1k
              min_boost_factor, MAX_BOOST_COMBINE_FACTOR,
638
11.1k
              cpi->ppi->p_rc.gfu_boost, gfu_boost,
639
11.1k
              cpi->ppi->p_rc.num_stats_used_for_gfu_boost);
640
11.1k
        } else {
641
          // TPL may only look at a subset of frame in the gf group when the
642
          // speed feature 'reduce_num_frames' is on, which affects the r0
643
          // calcuation. Thus, to compensate for TPL not using all frames a
644
          // factor to adjust r0 is used.
645
0
          const int gfu_boost =
646
0
              (int)(200.0 * cpi->ppi->tpl_data.r0_adjust_factor / cpi->rd.r0);
647
648
0
          if (cpi->oxcf.algo_cfg.sharpness == 3 &&
649
0
              gf_group->update_type[cpi->gf_frame_index] != KF_UPDATE) {
650
0
            cpi->ppi->p_rc.gfu_boost = gfu_boost;
651
652
0
            RATE_CONTROL *const rc = &cpi->rc;
653
0
            PRIMARY_RATE_CONTROL *const p_rc = &cpi->ppi->p_rc;
654
0
            av1_gop_bit_allocation(cpi, rc, gf_group, rc->frames_since_key == 0,
655
0
                                   gf_group->arf_index != -1,
656
0
                                   p_rc->gf_group_bits);
657
0
            av1_setup_target_rate(cpi);
658
0
          } else {
659
0
            cpi->ppi->p_rc.gfu_boost = combine_prior_with_tpl_boost(
660
0
                MIN_BOOST_COMBINE_FACTOR, MAX_BOOST_COMBINE_FACTOR,
661
0
                cpi->ppi->p_rc.gfu_boost, gfu_boost, cpi->rc.frames_to_key);
662
0
          }
663
0
        }
664
11.1k
      }
665
17.3k
    }
666
17.3k
  }
667
17.3k
}
668
#endif  // !CONFIG_REALTIME_ONLY
669
670
void av1_set_size_dependent_vars(AV1_COMP *cpi, int *q, int *bottom_index,
671
128k
                                 int *top_index) {
672
128k
  AV1_COMMON *const cm = &cpi->common;
673
674
  // Setup variables that depend on the dimensions of the frame.
675
128k
  av1_set_speed_features_framesize_dependent(cpi, cpi->speed);
676
677
128k
#if !CONFIG_REALTIME_ONLY
678
128k
  GF_GROUP *gf_group = &cpi->ppi->gf_group;
679
128k
  if (cpi->oxcf.algo_cfg.enable_tpl_model &&
680
128k
      av1_tpl_stats_ready(&cpi->ppi->tpl_data, cpi->gf_frame_index)) {
681
17.3k
    process_tpl_stats_frame(cpi);
682
17.3k
    av1_tpl_rdmult_setup(cpi);
683
17.3k
  }
684
128k
#endif
685
686
128k
  if (cpi->oxcf.q_cfg.use_fixed_qp_offsets == 2 &&
687
0
      cpi->oxcf.rc_cfg.mode == AOM_Q) {
688
    // Disable scaling, and use the same q for all frames of the pyramid
689
0
    *q = cpi->oxcf.rc_cfg.cq_level;
690
0
    *top_index = *bottom_index = *q;
691
0
    cpi->ppi->p_rc.arf_q = *q;
692
128k
  } else {
693
    // Decide q and q bounds.
694
128k
    *q = av1_rc_pick_q_and_bounds(cpi, cm->width, cm->height,
695
128k
                                  cpi->gf_frame_index, bottom_index, top_index);
696
697
128k
    if (cpi->oxcf.rc_cfg.mode == AOM_CBR && cpi->rc.force_max_q) {
698
0
      *q = cpi->rc.worst_quality;
699
0
      cpi->rc.force_max_q = 0;
700
0
    }
701
702
128k
#if !CONFIG_REALTIME_ONLY
703
128k
    if (cpi->oxcf.rc_cfg.mode == AOM_Q &&
704
107k
        cpi->ppi->tpl_data.tpl_frame[cpi->gf_frame_index].is_valid &&
705
17.3k
        !is_lossless_requested(&cpi->oxcf.rc_cfg)) {
706
16.9k
      const RateControlCfg *const rc_cfg = &cpi->oxcf.rc_cfg;
707
16.9k
      const int tpl_q = av1_tpl_get_q_index(
708
16.9k
          &cpi->ppi->tpl_data, cpi->gf_frame_index,
709
16.9k
          cpi->rc.active_worst_quality, cm->seq_params->bit_depth);
710
16.9k
      *q = clamp(tpl_q, rc_cfg->best_allowed_q, rc_cfg->worst_allowed_q);
711
16.9k
      *top_index = *bottom_index = *q;
712
16.9k
      if (gf_group->update_type[cpi->gf_frame_index] == ARF_UPDATE)
713
1.15k
        cpi->ppi->p_rc.arf_q = *q;
714
16.9k
    }
715
716
128k
    if (cpi->oxcf.q_cfg.use_fixed_qp_offsets == 1 &&
717
0
        cpi->oxcf.rc_cfg.mode == AOM_Q) {
718
0
      if (is_frame_tpl_eligible(gf_group, cpi->gf_frame_index)) {
719
0
        const double qratio_grad =
720
0
            cpi->ppi->p_rc.baseline_gf_interval > 20 ? 0.2 : 0.3;
721
0
        const double qstep_ratio =
722
0
            0.2 +
723
0
            (1.0 - (double)cpi->rc.active_worst_quality / MAXQ) * qratio_grad;
724
0
        *q = av1_get_q_index_from_qstep_ratio(cpi->rc.active_worst_quality,
725
0
                                              qstep_ratio,
726
0
                                              cm->seq_params->bit_depth);
727
0
        *top_index = *bottom_index = *q;
728
0
        if (gf_group->update_type[cpi->gf_frame_index] == ARF_UPDATE ||
729
0
            gf_group->update_type[cpi->gf_frame_index] == KF_UPDATE ||
730
0
            gf_group->update_type[cpi->gf_frame_index] == GF_UPDATE)
731
0
          cpi->ppi->p_rc.arf_q = *q;
732
0
      } else if (gf_group->layer_depth[cpi->gf_frame_index] <
733
0
                 gf_group->max_layer_depth) {
734
0
        int this_height = gf_group->layer_depth[cpi->gf_frame_index];
735
0
        int arf_q = cpi->ppi->p_rc.arf_q;
736
0
        while (this_height > 1) {
737
0
          arf_q = (arf_q + cpi->oxcf.rc_cfg.cq_level + 1) / 2;
738
0
          --this_height;
739
0
        }
740
0
        *top_index = *bottom_index = *q = arf_q;
741
0
      }
742
0
    }
743
128k
#endif
744
128k
  }
745
746
  // Configure experimental use of segmentation for enhanced coding of
747
  // static regions if indicated.
748
  // Only allowed in the second pass of a two pass encode, as it requires
749
  // lagged coding, and if the relevant speed feature flag is set.
750
128k
  if (is_stat_consumption_stage_twopass(cpi) &&
751
0
      cpi->sf.hl_sf.static_segmentation)
752
0
    configure_static_seg_features(cpi);
753
754
128k
  if (cpi->oxcf.rc_cfg.over_shoot_pct == 0) *top_index = MAXQ;
755
128k
  if (cpi->oxcf.rc_cfg.under_shoot_pct == 0) *bottom_index = MINQ;
756
128k
}
757
758
#if !CONFIG_REALTIME_ONLY
759
0
static void reset_film_grain_chroma_params(aom_film_grain_t *pars) {
760
0
  pars->num_cr_points = 0;
761
0
  pars->cr_mult = 0;
762
0
  pars->cr_luma_mult = 0;
763
0
  memset(pars->scaling_points_cr, 0, sizeof(pars->scaling_points_cr));
764
0
  memset(pars->ar_coeffs_cr, 0, sizeof(pars->ar_coeffs_cr));
765
0
  pars->num_cb_points = 0;
766
0
  pars->cb_mult = 0;
767
0
  pars->cb_luma_mult = 0;
768
0
  pars->chroma_scaling_from_luma = 0;
769
0
  memset(pars->scaling_points_cb, 0, sizeof(pars->scaling_points_cb));
770
0
  memset(pars->ar_coeffs_cb, 0, sizeof(pars->ar_coeffs_cb));
771
0
}
772
773
void av1_update_film_grain_parameters_seq(struct AV1_PRIMARY *ppi,
774
680k
                                          const AV1EncoderConfig *oxcf) {
775
680k
  SequenceHeader *const seq_params = &ppi->seq_params;
776
680k
  const TuneCfg *const tune_cfg = &oxcf->tune_cfg;
777
778
680k
  if (tune_cfg->film_grain_test_vector || tune_cfg->film_grain_table_filename ||
779
680k
      tune_cfg->content == AOM_CONTENT_FILM) {
780
0
    seq_params->film_grain_params_present = 1;
781
680k
  } else {
782
680k
#if CONFIG_DENOISE
783
680k
    seq_params->film_grain_params_present = (oxcf->noise_level > 0);
784
#else
785
    seq_params->film_grain_params_present = 0;
786
#endif
787
680k
  }
788
680k
}
789
790
void av1_update_film_grain_parameters(struct AV1_COMP *cpi,
791
723k
                                      const AV1EncoderConfig *oxcf) {
792
723k
  AV1_COMMON *const cm = &cpi->common;
793
723k
  const TuneCfg *const tune_cfg = &oxcf->tune_cfg;
794
795
723k
  if (cpi->film_grain_table) {
796
0
    aom_film_grain_table_free(cpi->film_grain_table);
797
0
    aom_free(cpi->film_grain_table);
798
0
    cpi->film_grain_table = NULL;
799
0
  }
800
801
723k
  if (tune_cfg->film_grain_test_vector) {
802
0
    if (cm->current_frame.frame_type == KEY_FRAME) {
803
0
      cm->film_grain_params =
804
0
          film_grain_test_vectors[tune_cfg->film_grain_test_vector - 1];
805
0
      if (oxcf->tool_cfg.enable_monochrome)
806
0
        reset_film_grain_chroma_params(&cm->film_grain_params);
807
0
      cm->film_grain_params.bit_depth = cm->seq_params->bit_depth;
808
0
      if (cm->seq_params->color_range == AOM_CR_FULL_RANGE) {
809
0
        cm->film_grain_params.clip_to_restricted_range = 0;
810
0
      }
811
0
    }
812
723k
  } else if (tune_cfg->film_grain_table_filename) {
813
0
    CHECK_MEM_ERROR(cm, cpi->film_grain_table,
814
0
                    aom_calloc(1, sizeof(*cpi->film_grain_table)));
815
816
0
    aom_film_grain_table_read(cpi->film_grain_table,
817
0
                              tune_cfg->film_grain_table_filename, cm->error);
818
723k
  } else if (tune_cfg->content == AOM_CONTENT_FILM) {
819
0
    cm->film_grain_params.bit_depth = cm->seq_params->bit_depth;
820
0
    if (oxcf->tool_cfg.enable_monochrome)
821
0
      reset_film_grain_chroma_params(&cm->film_grain_params);
822
0
    if (cm->seq_params->color_range == AOM_CR_FULL_RANGE)
823
0
      cm->film_grain_params.clip_to_restricted_range = 0;
824
723k
  } else {
825
723k
    memset(&cm->film_grain_params, 0, sizeof(cm->film_grain_params));
826
723k
  }
827
723k
}
828
#endif  // !CONFIG_REALTIME_ONLY
829
830
void av1_scale_references(AV1_COMP *cpi, const InterpFilter filter,
831
34.7k
                          const int phase, const int use_optimized_scaler) {
832
34.7k
  AV1_COMMON *cm = &cpi->common;
833
34.7k
  const int num_planes = av1_num_planes(cm);
834
34.7k
  MV_REFERENCE_FRAME ref_frame;
835
836
277k
  for (ref_frame = LAST_FRAME; ref_frame <= ALTREF_FRAME; ++ref_frame) {
837
    // Need to convert from AOM_REFFRAME to index into ref_mask (subtract 1).
838
242k
    if (cpi->ref_frame_flags & av1_ref_frame_flag_list[ref_frame]) {
839
72.9k
      BufferPool *const pool = cm->buffer_pool;
840
72.9k
      const YV12_BUFFER_CONFIG *const ref =
841
72.9k
          get_ref_frame_yv12_buf(cm, ref_frame);
842
843
72.9k
      if (ref == NULL) {
844
0
        cpi->scaled_ref_buf[ref_frame - 1] = NULL;
845
0
        continue;
846
0
      }
847
848
      // For RTC-SVC: if force_zero_mode_spatial_ref is enabled, check if the
849
      // motion search can be skipped for the references: last, golden,
850
      // altref. If so, we can skip scaling that reference.
851
72.9k
      if (cpi->ppi->use_svc && cpi->svc.force_zero_mode_spatial_ref &&
852
0
          cpi->ppi->rtc_ref.set_ref_frame_config) {
853
0
        if (ref_frame == LAST_FRAME && cpi->svc.skip_mvsearch_last) continue;
854
0
        if (ref_frame == GOLDEN_FRAME && cpi->svc.skip_mvsearch_gf) continue;
855
0
        if (ref_frame == ALTREF_FRAME && cpi->svc.skip_mvsearch_altref)
856
0
          continue;
857
0
      }
858
      // For RTC with superres on: golden reference only needs to be scaled
859
      // if it was refreshed in previous frame.
860
72.9k
      if (is_one_pass_rt_params(cpi) &&
861
17.3k
          cpi->oxcf.superres_cfg.enable_superres && ref_frame == GOLDEN_FRAME &&
862
0
          cpi->rc.frame_num_last_gf_refresh <
863
0
              (int)cm->current_frame.frame_number - 1) {
864
0
        continue;
865
0
      }
866
867
72.9k
      if (ref->y_crop_width != cm->width || ref->y_crop_height != cm->height) {
868
        // Replace the reference buffer with a copy having a thicker border,
869
        // if the reference buffer is higher resolution than the current
870
        // frame, and the border is thin.
871
0
        if ((ref->y_crop_width > cm->width ||
872
0
             ref->y_crop_height > cm->height) &&
873
0
            ref->border < AOM_BORDER_IN_PIXELS) {
874
0
          RefCntBuffer *ref_fb = get_ref_frame_buf(cm, ref_frame);
875
0
          if (aom_yv12_realloc_with_new_border(
876
0
                  &ref_fb->buf, AOM_BORDER_IN_PIXELS,
877
0
                  cm->features.byte_alignment, cpi->alloc_pyramid,
878
0
                  num_planes) != 0) {
879
0
            aom_internal_error(cm->error, AOM_CODEC_MEM_ERROR,
880
0
                               "Failed to allocate frame buffer");
881
0
          }
882
0
        }
883
0
        int force_scaling = 0;
884
0
        RefCntBuffer *new_fb = cpi->scaled_ref_buf[ref_frame - 1];
885
0
        if (new_fb == NULL) {
886
0
          const int new_fb_idx = get_free_fb(cm);
887
0
          if (new_fb_idx == INVALID_IDX) {
888
0
            aom_internal_error(cm->error, AOM_CODEC_MEM_ERROR,
889
0
                               "Unable to find free frame buffer");
890
0
          }
891
0
          force_scaling = 1;
892
0
          new_fb = &pool->frame_bufs[new_fb_idx];
893
0
        }
894
895
0
        if (force_scaling || new_fb->buf.y_crop_width != cm->width ||
896
0
            new_fb->buf.y_crop_height != cm->height) {
897
0
          if (aom_realloc_frame_buffer(
898
0
                  &new_fb->buf, cm->width, cm->height,
899
0
                  cm->seq_params->subsampling_x, cm->seq_params->subsampling_y,
900
0
                  cm->seq_params->use_highbitdepth, AOM_BORDER_IN_PIXELS,
901
0
                  cm->features.byte_alignment, NULL, NULL, NULL, false, 0)) {
902
0
            if (force_scaling) {
903
              // Release the reference acquired in the get_free_fb() call
904
              // above.
905
0
              --new_fb->ref_count;
906
0
            }
907
0
            aom_internal_error(cm->error, AOM_CODEC_MEM_ERROR,
908
0
                               "Failed to allocate frame buffer");
909
0
          }
910
0
          bool has_optimized_scaler = av1_has_optimized_scaler(
911
0
              ref->y_crop_width, ref->y_crop_height, new_fb->buf.y_crop_width,
912
0
              new_fb->buf.y_crop_height);
913
0
          if (num_planes > 1) {
914
0
            has_optimized_scaler =
915
0
                has_optimized_scaler &&
916
0
                av1_has_optimized_scaler(
917
0
                    ref->uv_crop_width, ref->uv_crop_height,
918
0
                    new_fb->buf.uv_crop_width, new_fb->buf.uv_crop_height);
919
0
          }
920
0
#if CONFIG_AV1_HIGHBITDEPTH
921
0
          if (use_optimized_scaler && has_optimized_scaler &&
922
0
              cm->seq_params->bit_depth == AOM_BITS_8) {
923
0
            av1_resize_and_extend_frame(ref, &new_fb->buf, filter, phase,
924
0
                                        num_planes);
925
0
          } else if (!av1_resize_and_extend_frame_nonnormative(
926
0
                         ref, &new_fb->buf, (int)cm->seq_params->bit_depth,
927
0
                         num_planes)) {
928
0
            aom_internal_error(cm->error, AOM_CODEC_MEM_ERROR,
929
0
                               "Failed to allocate buffer during resize");
930
0
          }
931
#else
932
          if (use_optimized_scaler && has_optimized_scaler) {
933
            av1_resize_and_extend_frame(ref, &new_fb->buf, filter, phase,
934
                                        num_planes);
935
          } else if (!av1_resize_and_extend_frame_nonnormative(
936
                         ref, &new_fb->buf, (int)cm->seq_params->bit_depth,
937
                         num_planes)) {
938
            aom_internal_error(cm->error, AOM_CODEC_MEM_ERROR,
939
                               "Failed to allocate buffer during resize");
940
          }
941
#endif
942
0
          cpi->scaled_ref_buf[ref_frame - 1] = new_fb;
943
0
          alloc_frame_mvs(cm, new_fb);
944
0
        }
945
72.9k
      } else {
946
72.9k
        RefCntBuffer *buf = get_ref_frame_buf(cm, ref_frame);
947
72.9k
        buf->buf.y_crop_width = ref->y_crop_width;
948
72.9k
        buf->buf.y_crop_height = ref->y_crop_height;
949
72.9k
        cpi->scaled_ref_buf[ref_frame - 1] = buf;
950
72.9k
        ++buf->ref_count;
951
72.9k
      }
952
170k
    } else {
953
170k
      if (!has_no_stats_stage(cpi)) cpi->scaled_ref_buf[ref_frame - 1] = NULL;
954
170k
    }
955
242k
  }
956
34.7k
}
957
958
BLOCK_SIZE av1_select_sb_size(const AV1EncoderConfig *const oxcf, int width,
959
1.58M
                              int height, int number_spatial_layers) {
960
1.58M
  if (oxcf->tool_cfg.superblock_size == AOM_SUPERBLOCK_SIZE_64X64) {
961
0
    return BLOCK_64X64;
962
0
  }
963
1.58M
  if (oxcf->tool_cfg.superblock_size == AOM_SUPERBLOCK_SIZE_128X128) {
964
0
    return BLOCK_128X128;
965
0
  }
966
#if CONFIG_TFLITE
967
  if (oxcf->q_cfg.deltaq_mode == DELTA_Q_USER_RATING_BASED) return BLOCK_64X64;
968
#endif
969
  // Force 64x64 superblock size to increase resolution in perceptual
970
  // AQ and user rating based modes.
971
1.58M
  if (oxcf->mode == ALLINTRA &&
972
1.25M
      (oxcf->q_cfg.deltaq_mode == DELTA_Q_PERCEPTUAL_AI ||
973
1.25M
       oxcf->q_cfg.deltaq_mode == DELTA_Q_USER_RATING_BASED)) {
974
0
    return BLOCK_64X64;
975
0
  }
976
  // Variance Boost only supports 64x64 superblocks.
977
1.58M
  if (oxcf->q_cfg.deltaq_mode == DELTA_Q_VARIANCE_BOOST) {
978
226k
    return BLOCK_64X64;
979
226k
  }
980
1.58M
  assert(oxcf->tool_cfg.superblock_size == AOM_SUPERBLOCK_SIZE_DYNAMIC);
981
982
1.35M
  if (number_spatial_layers > 1) {
983
    // For spatial layers better selection may be done given the resolutions
984
    // used across the layers, but for now use 64x64 for spatial layers.
985
0
    return BLOCK_64X64;
986
1.35M
  } else if (oxcf->resize_cfg.resize_mode != RESIZE_NONE) {
987
    // Use the configured size (top resolution) for resize.
988
0
    return AOMMIN(oxcf->frm_dim_cfg.width, oxcf->frm_dim_cfg.height) > 720
989
0
               ? BLOCK_128X128
990
0
               : BLOCK_64X64;
991
1.35M
  } else if (oxcf->mode == REALTIME) {
992
94.6k
    if (oxcf->tune_cfg.content == AOM_CONTENT_SCREEN) {
993
0
      const TileConfig *const tile_cfg = &oxcf->tile_cfg;
994
0
      const int num_tiles =
995
0
          (1 << tile_cfg->tile_columns) * (1 << tile_cfg->tile_rows);
996
      // For multi-thread encode: if the number of (128x128) superblocks
997
      // per tile is low use 64X64 superblock.
998
0
      if (oxcf->row_mt == 1 && oxcf->max_threads >= 4 &&
999
0
          oxcf->max_threads >= num_tiles && AOMMIN(width, height) >= 720 &&
1000
0
          (width * height) / (128 * 128 * num_tiles) < 40)
1001
0
        return BLOCK_64X64;
1002
0
      else
1003
0
        return AOMMIN(width, height) >= 720 ? BLOCK_128X128 : BLOCK_64X64;
1004
94.6k
    } else {
1005
94.6k
      return AOMMIN(width, height) > 720 ? BLOCK_128X128 : BLOCK_64X64;
1006
94.6k
    }
1007
94.6k
  }
1008
1009
  // TODO(any): Possibly could improve this with a heuristic.
1010
  // When superres / resize is on, 'cm->width / height' can change between
1011
  // calls, so we don't apply this heuristic there.
1012
  // Things break if superblock size changes between the first pass and second
1013
  // pass encoding, which is why this heuristic is not configured as a
1014
  // speed-feature.
1015
1.26M
  if (oxcf->superres_cfg.superres_mode == AOM_SUPERRES_NONE &&
1016
1.26M
      oxcf->resize_cfg.resize_mode == RESIZE_NONE) {
1017
1.26M
    int is_480p_or_lesser = AOMMIN(width, height) <= 480;
1018
1.26M
    if (oxcf->speed >= 1 && is_480p_or_lesser) return BLOCK_64X64;
1019
1020
    // For 1080p and lower resolutions, choose SB size adaptively based on
1021
    // resolution and speed level for multi-thread encode.
1022
640k
    int is_1080p_or_lesser = AOMMIN(width, height) <= 1080;
1023
640k
    if (!is_480p_or_lesser && is_1080p_or_lesser && oxcf->mode == GOOD &&
1024
0
        oxcf->row_mt == 1 && oxcf->max_threads > 1 && oxcf->speed >= 5)
1025
0
      return BLOCK_64X64;
1026
1027
    // For allintra encode, since the maximum partition size is set to 32X32
1028
    // for speed>=6, superblock size is set to 64X64 instead of 128X128. This
1029
    // improves the multithread performance due to reduction in top right
1030
    // delay and thread sync wastage. Currently, this setting is selectively
1031
    // enabled only for speed>=9 and resolutions less than 4k since cost
1032
    // update frequency is set to INTERNAL_COST_UPD_OFF in these cases.
1033
640k
    const int is_4k_or_larger = AOMMIN(width, height) >= 2160;
1034
640k
    if (oxcf->mode == ALLINTRA && oxcf->speed >= 9 && !is_4k_or_larger)
1035
774
      return BLOCK_64X64;
1036
640k
  }
1037
640k
  return BLOCK_128X128;
1038
1.26M
}
1039
1040
128k
void av1_setup_frame(AV1_COMP *cpi) {
1041
128k
  AV1_COMMON *const cm = &cpi->common;
1042
  // Set up entropy context depending on frame type. The decoder mandates
1043
  // the use of the default context, index 0, for keyframes and inter
1044
  // frames where the error_resilient_mode or intra_only flag is set. For
1045
  // other inter-frames the encoder currently uses only two contexts;
1046
  // context 1 for ALTREF frames and context 0 for the others.
1047
1048
128k
  if (frame_is_intra_only(cm) || cm->features.error_resilient_mode ||
1049
102k
      cpi->ext_flags.use_primary_ref_none) {
1050
102k
    av1_setup_past_independence(cm);
1051
102k
  }
1052
1053
128k
  if ((cm->current_frame.frame_type == KEY_FRAME && cm->show_frame) ||
1054
102k
      frame_is_sframe(cm)) {
1055
102k
    if (!cpi->ppi->seq_params_locked) {
1056
90.7k
      set_sb_size(cm->seq_params,
1057
90.7k
                  av1_select_sb_size(&cpi->oxcf, cm->width, cm->height,
1058
90.7k
                                     cpi->ppi->number_spatial_layers));
1059
90.7k
    }
1060
102k
  } else {
1061
25.7k
    const RefCntBuffer *const primary_ref_buf = get_primary_ref_frame_buf(cm);
1062
25.7k
    if (primary_ref_buf == NULL) {
1063
10.1k
      av1_setup_past_independence(cm);
1064
10.1k
      cm->seg.update_map = 1;
1065
10.1k
      cm->seg.update_data = 1;
1066
15.5k
    } else {
1067
15.5k
      *cm->fc = primary_ref_buf->frame_context;
1068
15.5k
    }
1069
25.7k
  }
1070
1071
128k
  av1_zero(cm->cur_frame->interp_filter_selected);
1072
128k
  cm->prev_frame = get_primary_ref_frame_buf(cm);
1073
128k
  cpi->vaq_refresh = 0;
1074
128k
}
1075
1076
#if !CONFIG_REALTIME_ONLY
1077
static int get_interp_filter_selected(const AV1_COMMON *const cm,
1078
                                      MV_REFERENCE_FRAME ref,
1079
0
                                      InterpFilter ifilter) {
1080
0
  const RefCntBuffer *const buf = get_ref_frame_buf(cm, ref);
1081
0
  if (buf == NULL) return 0;
1082
0
  return buf->interp_filter_selected[ifilter];
1083
0
}
1084
1085
0
uint16_t av1_setup_interp_filter_search_mask(AV1_COMP *cpi) {
1086
0
  const AV1_COMMON *const cm = &cpi->common;
1087
0
  int ref_total[REF_FRAMES] = { 0 };
1088
0
  uint16_t mask = ALLOW_ALL_INTERP_FILT_MASK;
1089
1090
0
  if (cpi->last_frame_type == KEY_FRAME || cpi->refresh_frame.alt_ref_frame)
1091
0
    return mask;
1092
1093
0
  for (MV_REFERENCE_FRAME ref = LAST_FRAME; ref <= ALTREF_FRAME; ++ref) {
1094
0
    for (InterpFilter ifilter = EIGHTTAP_REGULAR; ifilter <= MULTITAP_SHARP;
1095
0
         ++ifilter) {
1096
0
      ref_total[ref] += get_interp_filter_selected(cm, ref, ifilter);
1097
0
    }
1098
0
  }
1099
0
  int ref_total_total = (ref_total[LAST2_FRAME] + ref_total[LAST3_FRAME] +
1100
0
                         ref_total[GOLDEN_FRAME] + ref_total[BWDREF_FRAME] +
1101
0
                         ref_total[ALTREF2_FRAME] + ref_total[ALTREF_FRAME]);
1102
1103
0
  for (InterpFilter ifilter = EIGHTTAP_REGULAR; ifilter <= MULTITAP_SHARP;
1104
0
       ++ifilter) {
1105
0
    int last_score = get_interp_filter_selected(cm, LAST_FRAME, ifilter) * 30;
1106
0
    if (ref_total[LAST_FRAME] && last_score <= ref_total[LAST_FRAME]) {
1107
0
      int filter_score =
1108
0
          get_interp_filter_selected(cm, LAST2_FRAME, ifilter) * 20 +
1109
0
          get_interp_filter_selected(cm, LAST3_FRAME, ifilter) * 20 +
1110
0
          get_interp_filter_selected(cm, GOLDEN_FRAME, ifilter) * 20 +
1111
0
          get_interp_filter_selected(cm, BWDREF_FRAME, ifilter) * 10 +
1112
0
          get_interp_filter_selected(cm, ALTREF2_FRAME, ifilter) * 10 +
1113
0
          get_interp_filter_selected(cm, ALTREF_FRAME, ifilter) * 10;
1114
0
      if (filter_score < ref_total_total) {
1115
0
        DUAL_FILTER_TYPE filt_type = ifilter + SWITCHABLE_FILTERS * ifilter;
1116
0
        reset_interp_filter_allowed_mask(&mask, filt_type);
1117
0
      }
1118
0
    }
1119
0
  }
1120
0
  return mask;
1121
0
}
1122
1123
0
#define STRICT_PSNR_DIFF_THRESH 0.9
1124
// Encode key frame with/without screen content tools to determine whether
1125
// screen content tools should be enabled for this key frame group or not.
1126
// The first encoding is without screen content tools.
1127
// The second encoding is with screen content tools.
1128
// We compare the psnr and frame size to make the decision.
1129
static void screen_content_tools_determination(
1130
    AV1_COMP *cpi, const int allow_screen_content_tools_orig_decision,
1131
    const int allow_intrabc_orig_decision,
1132
    const int use_screen_content_tools_orig_decision,
1133
    const int is_screen_content_type_orig_decision, const int pass,
1134
0
    int *projected_size_pass, PSNR_STATS *psnr) {
1135
0
  AV1_COMMON *const cm = &cpi->common;
1136
0
  FeatureFlags *const features = &cm->features;
1137
1138
#if CONFIG_FPMT_TEST
1139
  projected_size_pass[pass] =
1140
      ((cpi->ppi->gf_group.frame_parallel_level[cpi->gf_frame_index] > 0) &&
1141
       (cpi->ppi->fpmt_unit_test_cfg == PARALLEL_SIMULATION_ENCODE))
1142
          ? cpi->ppi->p_rc.temp_projected_frame_size
1143
          : cpi->rc.projected_frame_size;
1144
#else
1145
0
  projected_size_pass[pass] = cpi->rc.projected_frame_size;
1146
0
#endif
1147
1148
0
#if CONFIG_AV1_HIGHBITDEPTH
1149
0
  const uint32_t bit_depth = cpi->td.mb.e_mbd.bd;
1150
  // The decision to enable screen content tools is based on PSNR evaluated only
1151
  // at the stream bit-depth. Hence, PSNR computation against the actual input
1152
  // source is skipped by passing the codec bit-depth instead of the source
1153
  // bit-depth in the final arg.
1154
0
  aom_calc_highbd_psnr(cpi->source, &cpi->common.cur_frame->buf, &psnr[pass],
1155
0
                       bit_depth, bit_depth);
1156
#else
1157
  aom_calc_psnr(cpi->source, &cpi->common.cur_frame->buf, &psnr[pass]);
1158
#endif
1159
0
  if (pass != 1) return;
1160
1161
0
  const double psnr_diff = psnr[1].psnr[0] - psnr[0].psnr[0];
1162
  // Calculate % of palette mode to be chosen in a frame from mode decision.
1163
0
  const double palette_ratio =
1164
0
      (double)cpi->palette_pixel_num / (double)(cm->height * cm->width);
1165
0
  const int psnr_diff_is_large = (psnr_diff > STRICT_PSNR_DIFF_THRESH);
1166
0
  const int ratio_is_large =
1167
0
      ((palette_ratio >= 0.0001) && ((psnr_diff / palette_ratio) > 4));
1168
0
  const int is_sc_encoding_much_better = (psnr_diff_is_large || ratio_is_large);
1169
0
  if (is_sc_encoding_much_better) {
1170
    // Use screen content tools, if we get coding gain.
1171
0
    features->allow_screen_content_tools = 1;
1172
0
    features->allow_intrabc = cpi->intrabc_used;
1173
0
    cpi->use_screen_content_tools = 1;
1174
0
    cpi->is_screen_content_type = 1;
1175
0
  } else {
1176
    // Use original screen content decision.
1177
0
    features->allow_screen_content_tools =
1178
0
        allow_screen_content_tools_orig_decision;
1179
0
    features->allow_intrabc = allow_intrabc_orig_decision;
1180
0
    cpi->use_screen_content_tools = use_screen_content_tools_orig_decision;
1181
0
    cpi->is_screen_content_type = is_screen_content_type_orig_decision;
1182
0
  }
1183
0
}
1184
1185
// Set some encoding parameters to make the encoding process fast.
1186
// A fixed block partition size, and a large q is used.
1187
static void set_encoding_params_for_screen_content(AV1_COMP *cpi,
1188
0
                                                   const int pass) {
1189
0
  AV1_COMMON *const cm = &cpi->common;
1190
0
  if (pass == 0) {
1191
    // In the first pass, encode without screen content tools.
1192
    // Use a high q, and a fixed block size for fast encoding.
1193
0
    cm->features.allow_screen_content_tools = 0;
1194
0
    cm->features.allow_intrabc = 0;
1195
0
    cpi->use_screen_content_tools = 0;
1196
0
    cpi->sf.part_sf.partition_search_type = FIXED_PARTITION;
1197
0
    cpi->sf.part_sf.fixed_partition_size = BLOCK_32X32;
1198
0
    return;
1199
0
  }
1200
0
  assert(pass == 1);
1201
  // In the second pass, encode with screen content tools.
1202
  // Use a high q, and a fixed block size for fast encoding.
1203
0
  cm->features.allow_screen_content_tools = 1;
1204
  // TODO(chengchen): turn intrabc on could lead to data race issue.
1205
  // cm->allow_intrabc = 1;
1206
0
  cpi->use_screen_content_tools = 1;
1207
0
  cpi->sf.part_sf.partition_search_type = FIXED_PARTITION;
1208
0
  cpi->sf.part_sf.fixed_partition_size = BLOCK_32X32;
1209
0
}
1210
1211
// Determines whether to use screen content tools for the key frame group.
1212
// This function modifies "cm->features.allow_screen_content_tools",
1213
// "cm->features.allow_intrabc" and "cpi->use_screen_content_tools".
1214
0
void av1_determine_sc_tools_with_encoding(AV1_COMP *cpi, const int q_orig) {
1215
0
  AV1_COMMON *const cm = &cpi->common;
1216
0
  const AV1EncoderConfig *const oxcf = &cpi->oxcf;
1217
0
  const QuantizationCfg *const q_cfg = &oxcf->q_cfg;
1218
  // Variables to help determine if we should allow screen content tools.
1219
0
  int projected_size_pass[3] = { 0 };
1220
0
  PSNR_STATS psnr[3];
1221
0
  const int is_key_frame = cm->current_frame.frame_type == KEY_FRAME;
1222
0
  const int allow_screen_content_tools_orig_decision =
1223
0
      cm->features.allow_screen_content_tools;
1224
0
  const int allow_intrabc_orig_decision = cm->features.allow_intrabc;
1225
0
  const int use_screen_content_tools_orig_decision =
1226
0
      cpi->use_screen_content_tools;
1227
0
  const int is_screen_content_type_orig_decision = cpi->is_screen_content_type;
1228
  // Turn off the encoding trial for forward key frame and superres.
1229
0
  if (cpi->sf.rt_sf.use_nonrd_pick_mode || oxcf->kf_cfg.fwd_kf_enabled ||
1230
0
      cpi->superres_mode != AOM_SUPERRES_NONE || oxcf->mode == REALTIME ||
1231
0
      use_screen_content_tools_orig_decision || !is_key_frame) {
1232
0
    return;
1233
0
  }
1234
1235
  // Multiple encoding for the lossless mode is time
1236
  // consuming. Find a better way to determine whether screen content tools
1237
  // should be used for lossless coding. Use a high q and a fixed partition to
1238
  // do quick encoding.
1239
0
  const int q_for_screen_content_quick_run =
1240
0
      is_lossless_requested(&oxcf->rc_cfg) ? q_orig : AOMMAX(q_orig, 244);
1241
0
  const int partition_search_type_orig = cpi->sf.part_sf.partition_search_type;
1242
0
  const BLOCK_SIZE fixed_partition_block_size_orig =
1243
0
      cpi->sf.part_sf.fixed_partition_size;
1244
1245
  // Setup necessary params for encoding, including frame source, etc.
1246
1247
0
  cpi->source = av1_realloc_and_scale_if_required(
1248
0
      cm, cpi->unscaled_source, &cpi->scaled_source, cm->features.interp_filter,
1249
0
      0, false, false, cpi->oxcf.border_in_pixels, cpi->alloc_pyramid);
1250
0
  if (cpi->unscaled_last_source != NULL) {
1251
0
    cpi->last_source = av1_realloc_and_scale_if_required(
1252
0
        cm, cpi->unscaled_last_source, &cpi->scaled_last_source,
1253
0
        cm->features.interp_filter, 0, false, false, cpi->oxcf.border_in_pixels,
1254
0
        cpi->alloc_pyramid);
1255
0
  }
1256
1257
0
  av1_setup_frame(cpi);
1258
1259
0
  if (cm->seg.enabled) {
1260
0
    if (!cm->seg.update_data && cm->prev_frame) {
1261
0
      segfeatures_copy(&cm->seg, &cm->prev_frame->seg);
1262
0
      cm->seg.enabled = cm->prev_frame->seg.enabled;
1263
0
    } else {
1264
0
      av1_calculate_segdata(&cm->seg);
1265
0
    }
1266
0
  } else {
1267
0
    memset(&cm->seg, 0, sizeof(cm->seg));
1268
0
  }
1269
0
  segfeatures_copy(&cm->cur_frame->seg, &cm->seg);
1270
0
  cm->cur_frame->seg.enabled = cm->seg.enabled;
1271
1272
  // The two encoding passes aim to help determine whether to use screen
1273
  // content tools, with a high q and fixed partition.
1274
0
  for (int pass = 0; pass < 2; ++pass) {
1275
0
    set_encoding_params_for_screen_content(cpi, pass);
1276
0
    av1_set_quantizer(cm, q_cfg->qm_minlevel, q_cfg->qm_maxlevel,
1277
0
                      q_for_screen_content_quick_run,
1278
0
                      q_cfg->enable_chroma_deltaq, q_cfg->enable_hdr_deltaq,
1279
0
                      oxcf->mode == ALLINTRA, oxcf->tune_cfg.tuning);
1280
0
    av1_set_speed_features_qindex_dependent(cpi, oxcf->speed);
1281
1282
0
    av1_init_quantizer(&cpi->enc_quant_dequant_params, &cm->quant_params,
1283
0
                       cm->seq_params->bit_depth, oxcf->algo_cfg.sharpness);
1284
1285
0
    av1_set_variance_partition_thresholds(cpi, q_for_screen_content_quick_run,
1286
0
                                          0);
1287
    // transform / motion compensation build reconstruction frame
1288
0
    av1_encode_frame(cpi);
1289
    // Screen content decision
1290
0
    screen_content_tools_determination(
1291
0
        cpi, allow_screen_content_tools_orig_decision,
1292
0
        allow_intrabc_orig_decision, use_screen_content_tools_orig_decision,
1293
0
        is_screen_content_type_orig_decision, pass, projected_size_pass, psnr);
1294
0
  }
1295
1296
  // Set partition speed feature back.
1297
0
  cpi->sf.part_sf.partition_search_type = partition_search_type_orig;
1298
0
  cpi->sf.part_sf.fixed_partition_size = fixed_partition_block_size_orig;
1299
1300
  // Free token related info if screen content coding tools are not enabled.
1301
0
  if (!cm->features.allow_screen_content_tools)
1302
0
    free_token_info(&cpi->token_info);
1303
0
}
1304
#endif  // CONFIG_REALTIME_ONLY
1305
1306
static void fix_interp_filter(InterpFilter *const interp_filter,
1307
25.7k
                              const FRAME_COUNTS *const counts) {
1308
25.7k
  if (*interp_filter == SWITCHABLE) {
1309
    // Check to see if only one of the filters is actually used
1310
25.7k
    int count[SWITCHABLE_FILTERS] = { 0 };
1311
25.7k
    int num_filters_used = 0;
1312
102k
    for (int i = 0; i < SWITCHABLE_FILTERS; ++i) {
1313
1.31M
      for (int j = 0; j < SWITCHABLE_FILTER_CONTEXTS; ++j)
1314
1.23M
        count[i] += counts->switchable_interp[j][i];
1315
77.2k
      num_filters_used += (count[i] > 0);
1316
77.2k
    }
1317
25.7k
    if (num_filters_used == 1) {
1318
      // Only one filter is used. So set the filter at frame level
1319
18.9k
      for (int i = 0; i < SWITCHABLE_FILTERS; ++i) {
1320
18.9k
        if (count[i]) {
1321
17.4k
          *interp_filter = i;
1322
17.4k
          break;
1323
17.4k
        }
1324
18.9k
      }
1325
17.4k
    }
1326
25.7k
  }
1327
25.7k
}
1328
1329
128k
void av1_finalize_encoded_frame(AV1_COMP *const cpi) {
1330
128k
  AV1_COMMON *const cm = &cpi->common;
1331
128k
  CurrentFrame *const current_frame = &cm->current_frame;
1332
1333
128k
  if (!cm->seq_params->reduced_still_picture_hdr &&
1334
57.5k
      encode_show_existing_frame(cm)) {
1335
0
    assert(cpi->existing_fb_idx_to_show >= 0 &&
1336
0
           cpi->existing_fb_idx_to_show < REF_FRAMES);
1337
0
    RefCntBuffer *const frame_to_show =
1338
0
        cm->ref_frame_map[cpi->existing_fb_idx_to_show];
1339
1340
0
    if (frame_to_show == NULL) {
1341
0
      aom_internal_error(cm->error, AOM_CODEC_UNSUP_BITSTREAM,
1342
0
                         "Buffer does not contain a reconstructed frame");
1343
0
    }
1344
0
    assert(frame_to_show->ref_count > 0);
1345
0
    assign_frame_buffer_p(&cm->cur_frame, frame_to_show);
1346
0
  }
1347
1348
128k
  if (!encode_show_existing_frame(cm) &&
1349
128k
      cm->seq_params->film_grain_params_present &&
1350
0
      (cm->show_frame || cm->showable_frame)) {
1351
    // Copy the current frame's film grain params to the its corresponding
1352
    // RefCntBuffer slot.
1353
0
    cm->cur_frame->film_grain_params = cm->film_grain_params;
1354
1355
    // We must update the parameters if this is not an INTER_FRAME
1356
0
    if (current_frame->frame_type != INTER_FRAME)
1357
0
      cm->cur_frame->film_grain_params.update_parameters = 1;
1358
1359
    // Iterate the random seed for the next frame.
1360
0
    cm->film_grain_params.random_seed += 3381;
1361
0
    if (cm->film_grain_params.random_seed == 0)
1362
0
      cm->film_grain_params.random_seed = 7391;
1363
0
  }
1364
1365
  // Initialise all tiles' contexts from the global frame context
1366
336k
  for (int tile_col = 0; tile_col < cm->tiles.cols; tile_col++) {
1367
565k
    for (int tile_row = 0; tile_row < cm->tiles.rows; tile_row++) {
1368
357k
      const int tile_idx = tile_row * cm->tiles.cols + tile_col;
1369
357k
      cpi->tile_data[tile_idx].tctx = *cm->fc;
1370
357k
    }
1371
207k
  }
1372
1373
128k
  if (!frame_is_intra_only(cm))
1374
25.7k
    fix_interp_filter(&cm->features.interp_filter, cpi->td.counts);
1375
128k
}
1376
1377
int av1_is_integer_mv(const YV12_BUFFER_CONFIG *cur_picture,
1378
                      const YV12_BUFFER_CONFIG *last_picture,
1379
0
                      ForceIntegerMVInfo *const force_intpel_info) {
1380
  // check use hash ME
1381
0
  int k;
1382
1383
0
  const int block_size = FORCE_INT_MV_DECISION_BLOCK_SIZE;
1384
0
  const double threshold_current = 0.8;
1385
0
  const double threshold_average = 0.95;
1386
0
  const int max_history_size = 32;
1387
0
  int T = 0;  // total block
1388
0
  int C = 0;  // match with collocated block
1389
0
  int S = 0;  // smooth region but not match with collocated block
1390
1391
0
  const int pic_width = cur_picture->y_width;
1392
0
  const int pic_height = cur_picture->y_height;
1393
0
  for (int i = 0; i + block_size <= pic_height; i += block_size) {
1394
0
    for (int j = 0; j + block_size <= pic_width; j += block_size) {
1395
0
      const int x_pos = j;
1396
0
      const int y_pos = i;
1397
0
      int match = 1;
1398
0
      T++;
1399
1400
      // check whether collocated block match with current
1401
0
      uint8_t *p_cur = cur_picture->y_buffer;
1402
0
      uint8_t *p_ref = last_picture->y_buffer;
1403
0
      int stride_cur = cur_picture->y_stride;
1404
0
      int stride_ref = last_picture->y_stride;
1405
0
      p_cur += (y_pos * stride_cur + x_pos);
1406
0
      p_ref += (y_pos * stride_ref + x_pos);
1407
1408
0
      if (cur_picture->flags & YV12_FLAG_HIGHBITDEPTH) {
1409
0
        uint16_t *p16_cur = CONVERT_TO_SHORTPTR(p_cur);
1410
0
        uint16_t *p16_ref = CONVERT_TO_SHORTPTR(p_ref);
1411
0
        for (int tmpY = 0; tmpY < block_size && match; tmpY++) {
1412
0
          for (int tmpX = 0; tmpX < block_size && match; tmpX++) {
1413
0
            if (p16_cur[tmpX] != p16_ref[tmpX]) {
1414
0
              match = 0;
1415
0
            }
1416
0
          }
1417
0
          p16_cur += stride_cur;
1418
0
          p16_ref += stride_ref;
1419
0
        }
1420
0
      } else {
1421
0
        for (int tmpY = 0; tmpY < block_size && match; tmpY++) {
1422
0
          for (int tmpX = 0; tmpX < block_size && match; tmpX++) {
1423
0
            if (p_cur[tmpX] != p_ref[tmpX]) {
1424
0
              match = 0;
1425
0
            }
1426
0
          }
1427
0
          p_cur += stride_cur;
1428
0
          p_ref += stride_ref;
1429
0
        }
1430
0
      }
1431
1432
0
      if (match) {
1433
0
        C++;
1434
0
        continue;
1435
0
      }
1436
1437
0
      if (av1_hash_is_horizontal_perfect(cur_picture, block_size, x_pos,
1438
0
                                         y_pos) ||
1439
0
          av1_hash_is_vertical_perfect(cur_picture, block_size, x_pos, y_pos)) {
1440
0
        S++;
1441
0
        continue;
1442
0
      }
1443
0
    }
1444
0
  }
1445
1446
0
  assert(T > 0);
1447
0
  double cs_rate = ((double)(C + S)) / ((double)(T));
1448
1449
0
  force_intpel_info->cs_rate_array[force_intpel_info->rate_index] = cs_rate;
1450
1451
0
  force_intpel_info->rate_index =
1452
0
      (force_intpel_info->rate_index + 1) % max_history_size;
1453
0
  force_intpel_info->rate_size++;
1454
0
  force_intpel_info->rate_size =
1455
0
      AOMMIN(force_intpel_info->rate_size, max_history_size);
1456
1457
0
  if (cs_rate < threshold_current) {
1458
0
    return 0;
1459
0
  }
1460
1461
0
  if (C == T) {
1462
0
    return 1;
1463
0
  }
1464
1465
0
  double cs_average = 0.0;
1466
1467
0
  for (k = 0; k < force_intpel_info->rate_size; k++) {
1468
0
    cs_average += force_intpel_info->cs_rate_array[k];
1469
0
  }
1470
0
  cs_average /= force_intpel_info->rate_size;
1471
1472
0
  if (cs_average < threshold_average) {
1473
0
    return 0;
1474
0
  }
1475
1476
0
  if ((T - C - S) < 0) {
1477
0
    return 1;
1478
0
  }
1479
1480
0
  if (cs_average > 1.01) {
1481
0
    return 1;
1482
0
  }
1483
1484
0
  return 0;
1485
0
}
1486
1487
93.2k
void av1_set_mb_ssim_rdmult_scaling(AV1_COMP *cpi) {
1488
93.2k
  const CommonModeInfoParams *const mi_params = &cpi->common.mi_params;
1489
93.2k
  const MACROBLOCKD *const xd = &cpi->td.mb.e_mbd;
1490
93.2k
  uint8_t *y_buffer = cpi->source->y_buffer;
1491
93.2k
  const int y_stride = cpi->source->y_stride;
1492
93.2k
  const int block_size = BLOCK_16X16;
1493
1494
93.2k
  const int num_mi_w = mi_size_wide[block_size];
1495
93.2k
  const int num_mi_h = mi_size_high[block_size];
1496
93.2k
  const int num_cols = (mi_params->mi_cols + num_mi_w - 1) / num_mi_w;
1497
93.2k
  const int num_rows = (mi_params->mi_rows + num_mi_h - 1) / num_mi_h;
1498
93.2k
  double log_sum = 0.0;
1499
1500
  // Loop through each 16x16 block.
1501
587k
  for (int row = 0; row < num_rows; ++row) {
1502
3.57M
    for (int col = 0; col < num_cols; ++col) {
1503
3.07M
      double var = 0.0, num_of_var = 0.0;
1504
3.07M
      const int index = row * num_cols + col;
1505
1506
      // Loop through each 8x8 block.
1507
3.07M
      for (int mi_row = row * num_mi_h;
1508
8.88M
           mi_row < mi_params->mi_rows && mi_row < (row + 1) * num_mi_h;
1509
5.81M
           mi_row += 2) {
1510
5.81M
        for (int mi_col = col * num_mi_w;
1511
16.8M
             mi_col < mi_params->mi_cols && mi_col < (col + 1) * num_mi_w;
1512
11.0M
             mi_col += 2) {
1513
11.0M
          struct buf_2d buf;
1514
11.0M
          const int row_offset_y = mi_row << 2;
1515
11.0M
          const int col_offset_y = mi_col << 2;
1516
1517
11.0M
          buf.buf = y_buffer + row_offset_y * y_stride + col_offset_y;
1518
11.0M
          buf.stride = y_stride;
1519
1520
11.0M
          var += av1_get_perpixel_variance_facade(cpi, xd, &buf, BLOCK_8X8,
1521
11.0M
                                                  AOM_PLANE_Y);
1522
11.0M
          num_of_var += 1.0;
1523
11.0M
        }
1524
5.81M
      }
1525
3.07M
      var = var / num_of_var;
1526
1527
      // Curve fitting with an exponential model on all 16x16 blocks from the
1528
      // midres dataset.
1529
3.07M
      var = 67.035434 * (1 - exp(-0.0021489 * var)) + 17.492222;
1530
1531
      // As per the above computation, var will be in the range of
1532
      // [17.492222, 84.527656], assuming the data type is of infinite
1533
      // precision. The following assert conservatively checks if var is in
1534
      // the range of [17.0, 85.0] to avoid any issues due to the precision of
1535
      // the relevant data type.
1536
3.07M
      assert(var > 17.0 && var < 85.0);
1537
3.07M
      cpi->ssim_rdmult_scaling_factors[index] = var;
1538
3.07M
      log_sum += log(var);
1539
3.07M
    }
1540
494k
  }
1541
1542
  // As log_sum holds the geometric mean, it will be in the range
1543
  // [17.492222, 84.527656]. Hence, in the below loop, the value of
1544
  // cpi->ssim_rdmult_scaling_factors[index] would be in the range
1545
  // [0.2069, 4.8323].
1546
93.2k
  log_sum = exp(log_sum / (double)(num_rows * num_cols));
1547
1548
587k
  for (int row = 0; row < num_rows; ++row) {
1549
3.57M
    for (int col = 0; col < num_cols; ++col) {
1550
3.07M
      const int index = row * num_cols + col;
1551
3.07M
      cpi->ssim_rdmult_scaling_factors[index] /= log_sum;
1552
3.07M
    }
1553
494k
  }
1554
93.2k
}
1555
1556
// Coding context that only needs to be saved when recode loop includes
1557
// filtering (deblocking, CDEF, superres post-encode upscale and/or loop
1558
// restoraton).
1559
0
static void save_extra_coding_context(AV1_COMP *cpi) {
1560
0
  CODING_CONTEXT *const cc = &cpi->coding_context;
1561
0
  AV1_COMMON *cm = &cpi->common;
1562
1563
0
  cc->lf = cm->lf;
1564
0
  cc->cdef_info = cm->cdef_info;
1565
0
  cc->rc = cpi->rc;
1566
0
  cc->mv_stats = cpi->ppi->mv_stats;
1567
0
  cc->frame_number = cpi->common.current_frame.frame_number;
1568
0
  cc->frame_index_set = cpi->frame_index_set;
1569
0
}
1570
1571
0
void av1_save_all_coding_context(AV1_COMP *cpi) {
1572
0
  save_extra_coding_context(cpi);
1573
0
  if (!frame_is_intra_only(&cpi->common)) release_scaled_references(cpi);
1574
0
}
1575
1576
#if DUMP_RECON_FRAMES == 1
1577
1578
// NOTE(zoeliu): For debug - Output the filtered reconstructed video.
1579
void av1_dump_filtered_recon_frames(AV1_COMP *cpi) {
1580
  AV1_COMMON *const cm = &cpi->common;
1581
  const CurrentFrame *const current_frame = &cm->current_frame;
1582
  const YV12_BUFFER_CONFIG *recon_buf = &cm->cur_frame->buf;
1583
1584
  if (recon_buf == NULL) {
1585
    printf("Frame %d is not ready.\n", current_frame->frame_number);
1586
    return;
1587
  }
1588
1589
  static const int flag_list[REF_FRAMES] = { 0,
1590
                                             AOM_LAST_FLAG,
1591
                                             AOM_LAST2_FLAG,
1592
                                             AOM_LAST3_FLAG,
1593
                                             AOM_GOLD_FLAG,
1594
                                             AOM_BWD_FLAG,
1595
                                             AOM_ALT2_FLAG,
1596
                                             AOM_ALT_FLAG };
1597
  printf(
1598
      "\n***Frame=%d (frame_offset=%d, show_frame=%d, "
1599
      "show_existing_frame=%d) "
1600
      "[LAST LAST2 LAST3 GOLDEN BWD ALT2 ALT]=[",
1601
      current_frame->frame_number, current_frame->order_hint, cm->show_frame,
1602
      cm->show_existing_frame);
1603
  for (int ref_frame = LAST_FRAME; ref_frame <= ALTREF_FRAME; ++ref_frame) {
1604
    const RefCntBuffer *const buf = get_ref_frame_buf(cm, ref_frame);
1605
    const int ref_offset = buf != NULL ? (int)buf->order_hint : -1;
1606
    printf(" %d(%c)", ref_offset,
1607
           (cpi->ref_frame_flags & flag_list[ref_frame]) ? 'Y' : 'N');
1608
  }
1609
  printf(" ]\n");
1610
1611
  if (!cm->show_frame) {
1612
    printf("Frame %d is a no show frame, so no image dump.\n",
1613
           current_frame->frame_number);
1614
    return;
1615
  }
1616
1617
  int h;
1618
  char file_name[256] = "/tmp/enc_filtered_recon.yuv";
1619
  FILE *f_recon = NULL;
1620
1621
  if (current_frame->frame_number == 0) {
1622
    if ((f_recon = fopen(file_name, "wb")) == NULL) {
1623
      printf("Unable to open file %s to write.\n", file_name);
1624
      return;
1625
    }
1626
  } else {
1627
    if ((f_recon = fopen(file_name, "ab")) == NULL) {
1628
      printf("Unable to open file %s to append.\n", file_name);
1629
      return;
1630
    }
1631
  }
1632
  printf(
1633
      "\nFrame=%5d, encode_update_type[%5d]=%1d, frame_offset=%d, "
1634
      "show_frame=%d, show_existing_frame=%d, source_alt_ref_active=%d, "
1635
      "refresh_alt_ref_frame=%d, "
1636
      "y_stride=%4d, uv_stride=%4d, cm->width=%4d, cm->height=%4d\n\n",
1637
      current_frame->frame_number, cpi->gf_frame_index,
1638
      cpi->ppi->gf_group.update_type[cpi->gf_frame_index],
1639
      current_frame->order_hint, cm->show_frame, cm->show_existing_frame,
1640
      cpi->rc.source_alt_ref_active, cpi->refresh_frame.alt_ref_frame,
1641
      recon_buf->y_stride, recon_buf->uv_stride, cm->width, cm->height);
1642
#if 0
1643
  int ref_frame;
1644
  printf("get_ref_frame_map_idx: [");
1645
  for (ref_frame = LAST_FRAME; ref_frame <= ALTREF_FRAME; ++ref_frame)
1646
    printf(" %d", get_ref_frame_map_idx(cm, ref_frame));
1647
  printf(" ]\n");
1648
#endif  // 0
1649
1650
  // --- Y ---
1651
  for (h = 0; h < cm->height; ++h) {
1652
    fwrite(&recon_buf->y_buffer[h * recon_buf->y_stride], 1, cm->width,
1653
           f_recon);
1654
  }
1655
  // --- U ---
1656
  for (h = 0; h < (cm->height >> 1); ++h) {
1657
    fwrite(&recon_buf->u_buffer[h * recon_buf->uv_stride], 1, (cm->width >> 1),
1658
           f_recon);
1659
  }
1660
  // --- V ---
1661
  for (h = 0; h < (cm->height >> 1); ++h) {
1662
    fwrite(&recon_buf->v_buffer[h * recon_buf->uv_stride], 1, (cm->width >> 1),
1663
           f_recon);
1664
  }
1665
1666
  fclose(f_recon);
1667
}
1668
#endif  // DUMP_RECON_FRAMES