1 /*
2 * Copyright (c) 2010 The WebM project authors. All Rights Reserved.
3 *
4 * Use of this source code is governed by a BSD-style license
5 * that can be found in the LICENSE file in the root of the source
6 * tree. An additional intellectual property rights grant can be found
7 * in the file PATENTS. All contributing project authors may
8 * be found in the AUTHORS file in the root of the source tree.
9 */
10
11 #include "./vpx_config.h"
12 #include "vpx_mem/vpx_mem.h"
13
14 #include "vp9/common/vp9_alloccommon.h"
15 #include "vp9/common/vp9_blockd.h"
16 #include "vp9/common/vp9_entropymode.h"
17 #include "vp9/common/vp9_entropymv.h"
18 #include "vp9/common/vp9_onyxc_int.h"
19
20 // TODO(hkuang): Don't need to lock the whole pool after implementing atomic
21 // frame reference count.
lock_buffer_pool(BufferPool * const pool)22 void lock_buffer_pool(BufferPool *const pool) {
23 #if CONFIG_MULTITHREAD
24 pthread_mutex_lock(&pool->pool_mutex);
25 #else
26 (void)pool;
27 #endif
28 }
29
unlock_buffer_pool(BufferPool * const pool)30 void unlock_buffer_pool(BufferPool *const pool) {
31 #if CONFIG_MULTITHREAD
32 pthread_mutex_unlock(&pool->pool_mutex);
33 #else
34 (void)pool;
35 #endif
36 }
37
vp9_set_mb_mi(VP9_COMMON * cm,int width,int height)38 void vp9_set_mb_mi(VP9_COMMON *cm, int width, int height) {
39 const int aligned_width = ALIGN_POWER_OF_TWO(width, MI_SIZE_LOG2);
40 const int aligned_height = ALIGN_POWER_OF_TWO(height, MI_SIZE_LOG2);
41
42 cm->mi_cols = aligned_width >> MI_SIZE_LOG2;
43 cm->mi_rows = aligned_height >> MI_SIZE_LOG2;
44 cm->mi_stride = calc_mi_size(cm->mi_cols);
45
46 cm->mb_cols = (cm->mi_cols + 1) >> 1;
47 cm->mb_rows = (cm->mi_rows + 1) >> 1;
48 cm->MBs = cm->mb_rows * cm->mb_cols;
49 }
50
alloc_seg_map(VP9_COMMON * cm,int seg_map_size)51 static int alloc_seg_map(VP9_COMMON *cm, int seg_map_size) {
52 int i;
53
54 for (i = 0; i < NUM_PING_PONG_BUFFERS; ++i) {
55 cm->seg_map_array[i] = (uint8_t *)vpx_calloc(seg_map_size, 1);
56 if (cm->seg_map_array[i] == NULL) return 1;
57 }
58 cm->seg_map_alloc_size = seg_map_size;
59
60 // Init the index.
61 cm->seg_map_idx = 0;
62 cm->prev_seg_map_idx = 1;
63
64 cm->current_frame_seg_map = cm->seg_map_array[cm->seg_map_idx];
65 if (!cm->frame_parallel_decode)
66 cm->last_frame_seg_map = cm->seg_map_array[cm->prev_seg_map_idx];
67
68 return 0;
69 }
70
free_seg_map(VP9_COMMON * cm)71 static void free_seg_map(VP9_COMMON *cm) {
72 int i;
73
74 for (i = 0; i < NUM_PING_PONG_BUFFERS; ++i) {
75 vpx_free(cm->seg_map_array[i]);
76 cm->seg_map_array[i] = NULL;
77 }
78
79 cm->current_frame_seg_map = NULL;
80
81 if (!cm->frame_parallel_decode) {
82 cm->last_frame_seg_map = NULL;
83 }
84 }
85
vp9_free_ref_frame_buffers(BufferPool * pool)86 void vp9_free_ref_frame_buffers(BufferPool *pool) {
87 int i;
88
89 for (i = 0; i < FRAME_BUFFERS; ++i) {
90 if (pool->frame_bufs[i].ref_count > 0 &&
91 pool->frame_bufs[i].raw_frame_buffer.data != NULL) {
92 pool->release_fb_cb(pool->cb_priv, &pool->frame_bufs[i].raw_frame_buffer);
93 pool->frame_bufs[i].ref_count = 0;
94 }
95 vpx_free(pool->frame_bufs[i].mvs);
96 pool->frame_bufs[i].mvs = NULL;
97 vpx_free_frame_buffer(&pool->frame_bufs[i].buf);
98 }
99 }
100
vp9_free_postproc_buffers(VP9_COMMON * cm)101 void vp9_free_postproc_buffers(VP9_COMMON *cm) {
102 #if CONFIG_VP9_POSTPROC
103 vpx_free_frame_buffer(&cm->post_proc_buffer);
104 vpx_free_frame_buffer(&cm->post_proc_buffer_int);
105 vpx_free(cm->postproc_state.limits);
106 cm->postproc_state.limits = NULL;
107 vpx_free(cm->postproc_state.generated_noise);
108 cm->postproc_state.generated_noise = NULL;
109 #else
110 (void)cm;
111 #endif
112 }
113
vp9_free_context_buffers(VP9_COMMON * cm)114 void vp9_free_context_buffers(VP9_COMMON *cm) {
115 cm->free_mi(cm);
116 free_seg_map(cm);
117 vpx_free(cm->above_context);
118 cm->above_context = NULL;
119 vpx_free(cm->above_seg_context);
120 cm->above_seg_context = NULL;
121 vpx_free(cm->lf.lfm);
122 cm->lf.lfm = NULL;
123 }
124
vp9_alloc_loop_filter(VP9_COMMON * cm)125 int vp9_alloc_loop_filter(VP9_COMMON *cm) {
126 vpx_free(cm->lf.lfm);
127 // Each lfm holds bit masks for all the 8x8 blocks in a 64x64 region. The
128 // stride and rows are rounded up / truncated to a multiple of 8.
129 cm->lf.lfm_stride = (cm->mi_cols + (MI_BLOCK_SIZE - 1)) >> 3;
130 cm->lf.lfm = (LOOP_FILTER_MASK *)vpx_calloc(
131 ((cm->mi_rows + (MI_BLOCK_SIZE - 1)) >> 3) * cm->lf.lfm_stride,
132 sizeof(*cm->lf.lfm));
133 if (!cm->lf.lfm) return 1;
134 return 0;
135 }
136
vp9_alloc_context_buffers(VP9_COMMON * cm,int width,int height)137 int vp9_alloc_context_buffers(VP9_COMMON *cm, int width, int height) {
138 int new_mi_size;
139
140 vp9_set_mb_mi(cm, width, height);
141 new_mi_size = cm->mi_stride * calc_mi_size(cm->mi_rows);
142 if (cm->mi_alloc_size < new_mi_size) {
143 cm->free_mi(cm);
144 if (cm->alloc_mi(cm, new_mi_size)) goto fail;
145 }
146
147 if (cm->seg_map_alloc_size < cm->mi_rows * cm->mi_cols) {
148 // Create the segmentation map structure and set to 0.
149 free_seg_map(cm);
150 if (alloc_seg_map(cm, cm->mi_rows * cm->mi_cols)) goto fail;
151 }
152
153 if (cm->above_context_alloc_cols < cm->mi_cols) {
154 vpx_free(cm->above_context);
155 cm->above_context = (ENTROPY_CONTEXT *)vpx_calloc(
156 2 * mi_cols_aligned_to_sb(cm->mi_cols) * MAX_MB_PLANE,
157 sizeof(*cm->above_context));
158 if (!cm->above_context) goto fail;
159
160 vpx_free(cm->above_seg_context);
161 cm->above_seg_context = (PARTITION_CONTEXT *)vpx_calloc(
162 mi_cols_aligned_to_sb(cm->mi_cols), sizeof(*cm->above_seg_context));
163 if (!cm->above_seg_context) goto fail;
164 cm->above_context_alloc_cols = cm->mi_cols;
165 }
166
167 if (vp9_alloc_loop_filter(cm)) goto fail;
168
169 return 0;
170
171 fail:
172 // clear the mi_* values to force a realloc on resync
173 vp9_set_mb_mi(cm, 0, 0);
174 vp9_free_context_buffers(cm);
175 return 1;
176 }
177
vp9_remove_common(VP9_COMMON * cm)178 void vp9_remove_common(VP9_COMMON *cm) {
179 vp9_free_context_buffers(cm);
180
181 vpx_free(cm->fc);
182 cm->fc = NULL;
183 vpx_free(cm->frame_contexts);
184 cm->frame_contexts = NULL;
185 }
186
vp9_init_context_buffers(VP9_COMMON * cm)187 void vp9_init_context_buffers(VP9_COMMON *cm) {
188 cm->setup_mi(cm);
189 if (cm->last_frame_seg_map && !cm->frame_parallel_decode)
190 memset(cm->last_frame_seg_map, 0, cm->mi_rows * cm->mi_cols);
191 }
192
vp9_swap_current_and_last_seg_map(VP9_COMMON * cm)193 void vp9_swap_current_and_last_seg_map(VP9_COMMON *cm) {
194 // Swap indices.
195 const int tmp = cm->seg_map_idx;
196 cm->seg_map_idx = cm->prev_seg_map_idx;
197 cm->prev_seg_map_idx = tmp;
198
199 cm->current_frame_seg_map = cm->seg_map_array[cm->seg_map_idx];
200 cm->last_frame_seg_map = cm->seg_map_array[cm->prev_seg_map_idx];
201 }
202