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1 /* | |
2 * Copyright (c) 2014 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 #include "vp9/common/vp9_reconinter.h" | |
14 #include "vp9/decoder/vp9_dthread.h" | |
15 #include "vp9/decoder/vp9_decoder.h" | |
16 | |
17 // #define DEBUG_THREAD | |
18 | |
19 // TODO(hkuang): Clean up all the #ifdef in this file. | |
20 void vp9_frameworker_lock_stats(VP9Worker *const worker) { | |
21 #if CONFIG_MULTITHREAD | |
22 FrameWorkerData *const worker_data = worker->data1; | |
23 pthread_mutex_lock(&worker_data->stats_mutex); | |
24 #else | |
25 (void)worker; | |
26 #endif | |
27 } | |
28 | |
29 void vp9_frameworker_unlock_stats(VP9Worker *const worker) { | |
30 #if CONFIG_MULTITHREAD | |
31 FrameWorkerData *const worker_data = worker->data1; | |
32 pthread_mutex_unlock(&worker_data->stats_mutex); | |
33 #else | |
34 (void)worker; | |
35 #endif | |
36 } | |
37 | |
38 void vp9_frameworker_signal_stats(VP9Worker *const worker) { | |
39 #if CONFIG_MULTITHREAD | |
40 FrameWorkerData *const worker_data = worker->data1; | |
41 // TODO(hkuang): Investigate using broadcast or signal. | |
42 pthread_cond_signal(&worker_data->stats_cond); | |
43 #else | |
44 (void)worker; | |
45 #endif | |
46 } | |
47 | |
48 // TODO(hkuang): Remove worker parameter as it is only used in debug code. | |
49 void vp9_frameworker_wait(VP9Worker *const worker, RefCntBuffer *const ref_buf, | |
50 int row) { | |
51 #if CONFIG_MULTITHREAD | |
52 if (!ref_buf) | |
53 return; | |
54 | |
55 // Enabling the following line of code will get harmless tsan error but | |
56 // will get best performance. | |
57 // if (ref_buf->row >= row && ref_buf->buf.corrupted != 1) return; | |
58 | |
59 { | |
60 // Find the worker thread that owns the reference frame. If the reference | |
61 // frame has been fully decoded, it may not have owner. | |
62 VP9Worker *const ref_worker = ref_buf->frame_worker_owner; | |
63 FrameWorkerData *const ref_worker_data = | |
64 (FrameWorkerData *)ref_worker->data1; | |
65 const VP9Decoder *const pbi = ref_worker_data->pbi; | |
66 | |
67 #ifdef DEBUG_THREAD | |
68 { | |
69 FrameWorkerData *const worker_data = (FrameWorkerData *)worker->data1; | |
70 printf("%d %p worker is waiting for %d %p worker (%d) ref %d \r\n", | |
71 worker_data->worker_id, worker, ref_worker_data->worker_id, | |
72 ref_buf->frame_worker_owner, row, ref_buf->row); | |
73 } | |
74 #endif | |
75 | |
76 vp9_frameworker_lock_stats(ref_worker); | |
77 while (ref_buf->row < row && pbi->cur_buf == ref_buf && | |
78 ref_buf->buf.corrupted != 1) { | |
79 pthread_cond_wait(&ref_worker_data->stats_cond, | |
80 &ref_worker_data->stats_mutex); | |
81 } | |
82 | |
83 if (ref_buf->buf.corrupted == 1) { | |
84 FrameWorkerData *const worker_data = (FrameWorkerData *)worker->data1; | |
85 vp9_frameworker_unlock_stats(ref_worker); | |
86 vpx_internal_error(&worker_data->pbi->common.error, | |
87 VPX_CODEC_CORRUPT_FRAME, | |
88 "Worker %p failed to decode frame", worker); | |
89 } | |
90 vp9_frameworker_unlock_stats(ref_worker); | |
91 } | |
92 #else | |
93 (void)worker; | |
94 (void)ref_buf; | |
95 (void)row; | |
96 (void)ref_buf; | |
97 #endif // CONFIG_MULTITHREAD | |
98 } | |
99 | |
100 void vp9_frameworker_broadcast(RefCntBuffer *const buf, int row) { | |
101 #if CONFIG_MULTITHREAD | |
102 VP9Worker *worker = buf->frame_worker_owner; | |
103 | |
104 #ifdef DEBUG_THREAD | |
105 { | |
106 FrameWorkerData *const worker_data = (FrameWorkerData *)worker->data1; | |
107 printf("%d %p worker decode to (%d) \r\n", worker_data->worker_id, | |
108 buf->frame_worker_owner, row); | |
109 } | |
110 #endif | |
111 | |
112 vp9_frameworker_lock_stats(worker); | |
113 buf->row = row; | |
114 vp9_frameworker_signal_stats(worker); | |
115 vp9_frameworker_unlock_stats(worker); | |
116 #else | |
117 (void)buf; | |
118 (void)row; | |
119 #endif // CONFIG_MULTITHREAD | |
120 } | |
121 | |
122 void vp9_frameworker_copy_context(VP9Worker *const dst_worker, | |
123 VP9Worker *const src_worker) { | |
124 #if CONFIG_MULTITHREAD | |
125 FrameWorkerData *const src_worker_data = (FrameWorkerData *)src_worker->data1; | |
126 FrameWorkerData *const dst_worker_data = (FrameWorkerData *)dst_worker->data1; | |
127 VP9_COMMON *const src_cm = &src_worker_data->pbi->common; | |
128 VP9_COMMON *const dst_cm = &dst_worker_data->pbi->common; | |
129 int i; | |
130 | |
131 // Wait until source frame's context is ready. | |
132 vp9_frameworker_lock_stats(src_worker); | |
133 while (!src_worker_data->frame_context_ready) { | |
134 pthread_cond_wait(&src_worker_data->stats_cond, | |
135 &src_worker_data->stats_mutex); | |
136 } | |
137 | |
138 // src worker may have already finished decoding a frame and swapped the mi. | |
139 // TODO(hkuang): Remove following code after implenment no ModeInfo decoding. | |
140 if (src_worker_data->frame_decoded) { | |
141 dst_cm->prev_mip = src_cm->prev_mip; | |
142 dst_cm->prev_mi = src_cm->prev_mi; | |
143 } else { | |
144 dst_cm->prev_mip = src_cm->mip; | |
145 dst_cm->prev_mi = src_cm->mi; | |
146 } | |
147 | |
148 dst_cm->last_frame_seg_map = src_cm->seg.enabled ? | |
149 src_cm->current_frame_seg_map : src_cm->last_frame_seg_map; | |
150 dst_worker_data->pbi->need_resync = src_worker_data->pbi->need_resync; | |
151 vp9_frameworker_unlock_stats(src_worker); | |
152 | |
153 dst_worker_data->pbi->prev_buf = | |
154 src_worker_data->pbi->common.show_existing_frame ? | |
155 NULL : src_worker_data->pbi->cur_buf; | |
156 | |
157 dst_cm->prev_frame = src_cm->show_existing_frame ? | |
158 src_cm->prev_frame : src_cm->cur_frame; | |
159 dst_cm->last_width = !src_cm->show_existing_frame ? | |
160 src_cm->width : src_cm->last_width; | |
161 dst_cm->last_height = !src_cm->show_existing_frame ? | |
162 src_cm->height : src_cm->last_height; | |
163 dst_cm->display_width = src_cm->display_width; | |
164 dst_cm->display_height = src_cm->display_height; | |
165 dst_cm->subsampling_x = src_cm->subsampling_x; | |
166 dst_cm->subsampling_y = src_cm->subsampling_y; | |
167 dst_cm->last_show_frame = !src_cm->show_existing_frame ? | |
168 src_cm->show_frame : src_cm->last_show_frame; | |
169 dst_cm->last_frame_type = src_cm->last_frame_type; | |
170 dst_cm->frame_type = src_cm->frame_type; | |
171 dst_cm->y_dc_delta_q = src_cm->y_dc_delta_q; | |
172 dst_cm->uv_dc_delta_q = src_cm->uv_dc_delta_q; | |
173 dst_cm->uv_ac_delta_q = src_cm->uv_ac_delta_q; | |
174 dst_cm->base_qindex = src_cm->base_qindex; | |
175 | |
176 for (i = 0; i < REF_FRAMES; ++i) | |
177 dst_cm->ref_frame_map[i] = src_cm->next_ref_frame_map[i]; | |
178 | |
179 memcpy(dst_cm->lf_info.lfthr, src_cm->lf_info.lfthr, | |
180 (MAX_LOOP_FILTER + 1) * sizeof(loop_filter_thresh)); | |
181 dst_cm->lf.last_sharpness_level = src_cm->lf.sharpness_level; | |
182 dst_cm->lf.filter_level = src_cm->lf.filter_level; | |
183 memcpy(dst_cm->lf.ref_deltas, src_cm->lf.ref_deltas, MAX_REF_LF_DELTAS); | |
184 memcpy(dst_cm->lf.mode_deltas, src_cm->lf.mode_deltas, MAX_MODE_LF_DELTAS); | |
185 dst_cm->seg = src_cm->seg; | |
186 memcpy(dst_cm->frame_contexts, src_cm->frame_contexts, | |
187 FRAME_CONTEXTS * sizeof(dst_cm->frame_contexts[0])); | |
188 #else | |
189 (void) dst_worker; | |
190 (void) src_worker; | |
191 #endif // CONFIG_MULTITHREAD | |
192 } | |
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