blob: b554f5b194c48f8af5343d465e01d48b963b8a85 [file] [log] [blame]
philipelbe7a9e52016-05-19 12:19:35 +02001/*
2 * Copyright (c) 2016 The WebRTC 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#ifndef WEBRTC_MODULES_VIDEO_CODING_FRAME_BUFFER2_H_
12#define WEBRTC_MODULES_VIDEO_CODING_FRAME_BUFFER2_H_
13
14#include <array>
15#include <map>
16#include <memory>
philipelbe7a9e52016-05-19 12:19:35 +020017#include <utility>
18
19#include "webrtc/base/constructormagic.h"
20#include "webrtc/base/criticalsection.h"
21#include "webrtc/base/event.h"
22#include "webrtc/base/thread_annotations.h"
philipele0b2f152016-09-28 10:23:49 +020023#include "webrtc/modules/video_coding/frame_object.h"
philipel4f6cd6a2016-08-03 10:59:32 +020024#include "webrtc/modules/video_coding/include/video_coding_defines.h"
25#include "webrtc/modules/video_coding/inter_frame_delay.h"
philipele0b2f152016-09-28 10:23:49 +020026#include "webrtc/modules/video_coding/sequence_number_util.h"
philipelbe7a9e52016-05-19 12:19:35 +020027
28namespace webrtc {
29
30class Clock;
philipela45102f2017-02-22 05:30:39 -080031class VCMReceiveStatisticsCallback;
philipelbe7a9e52016-05-19 12:19:35 +020032class VCMJitterEstimator;
33class VCMTiming;
34
35namespace video_coding {
36
philipelbe7a9e52016-05-19 12:19:35 +020037class FrameBuffer {
38 public:
philipel75562822016-09-05 10:57:41 +020039 enum ReturnReason { kFrameFound, kTimeout, kStopped };
40
philipelbe7a9e52016-05-19 12:19:35 +020041 FrameBuffer(Clock* clock,
42 VCMJitterEstimator* jitter_estimator,
philipela45102f2017-02-22 05:30:39 -080043 VCMTiming* timing,
44 VCMReceiveStatisticsCallback* stats_proxy);
philipelbe7a9e52016-05-19 12:19:35 +020045
philipel266f0a42016-11-28 08:49:07 -080046 virtual ~FrameBuffer();
47
philipele0b2f152016-09-28 10:23:49 +020048 // Insert a frame into the frame buffer. Returns the picture id
49 // of the last continuous frame or -1 if there is no continuous frame.
50 int InsertFrame(std::unique_ptr<FrameObject> frame);
philipelbe7a9e52016-05-19 12:19:35 +020051
52 // Get the next frame for decoding. Will return at latest after
philipel75562822016-09-05 10:57:41 +020053 // |max_wait_time_ms|.
philipele0b2f152016-09-28 10:23:49 +020054 // - If a frame is available within |max_wait_time_ms| it will return
philipel75562822016-09-05 10:57:41 +020055 // kFrameFound and set |frame_out| to the resulting frame.
56 // - If no frame is available after |max_wait_time_ms| it will return
57 // kTimeout.
58 // - If the FrameBuffer is stopped then it will return kStopped.
59 ReturnReason NextFrame(int64_t max_wait_time_ms,
60 std::unique_ptr<FrameObject>* frame_out);
philipelbe7a9e52016-05-19 12:19:35 +020061
philipel4f6cd6a2016-08-03 10:59:32 +020062 // Tells the FrameBuffer which protection mode that is in use. Affects
63 // the frame timing.
64 // TODO(philipel): Remove this when new timing calculations has been
65 // implemented.
66 void SetProtectionMode(VCMVideoProtection mode);
67
philipel504c47d2016-06-30 17:33:02 +020068 // Start the frame buffer, has no effect if the frame buffer is started.
69 // The frame buffer is started upon construction.
70 void Start();
71
72 // Stop the frame buffer, causing any sleeping thread in NextFrame to
73 // return immediately.
74 void Stop();
75
philipelbe7a9e52016-05-19 12:19:35 +020076 private:
philipele0b2f152016-09-28 10:23:49 +020077 struct FrameKey {
78 FrameKey() : picture_id(0), spatial_layer(0) {}
79 FrameKey(uint16_t picture_id, uint8_t spatial_layer)
80 : picture_id(picture_id), spatial_layer(spatial_layer) {}
philipelbe7a9e52016-05-19 12:19:35 +020081
philipele0b2f152016-09-28 10:23:49 +020082 bool operator<(const FrameKey& rhs) const {
83 if (picture_id == rhs.picture_id)
84 return spatial_layer < rhs.spatial_layer;
85 return AheadOf(rhs.picture_id, picture_id);
86 }
87
88 bool operator<=(const FrameKey& rhs) const { return !(rhs < *this); }
89
90 uint16_t picture_id;
91 uint8_t spatial_layer;
philipelbe7a9e52016-05-19 12:19:35 +020092 };
93
philipele0b2f152016-09-28 10:23:49 +020094 struct FrameInfo {
95 // The maximum number of frames that can depend on this frame.
96 static constexpr size_t kMaxNumDependentFrames = 8;
97
98 // Which other frames that have direct unfulfilled dependencies
99 // on this frame.
100 FrameKey dependent_frames[kMaxNumDependentFrames];
101 size_t num_dependent_frames = 0;
102
103 // A frame is continiuous if it has all its referenced/indirectly
104 // referenced frames.
105 //
106 // How many unfulfilled frames this frame have until it becomes continuous.
107 size_t num_missing_continuous = 0;
108
109 // A frame is decodable if all its referenced frames have been decoded.
110 //
111 // How many unfulfilled frames this frame have until it becomes decodable.
112 size_t num_missing_decodable = 0;
113
114 // If this frame is continuous or not.
115 bool continuous = false;
116
117 // The actual FrameObject.
118 std::unique_ptr<FrameObject> frame;
119 };
120
121 using FrameMap = std::map<FrameKey, FrameInfo>;
122
123 // Update all directly dependent and indirectly dependent frames and mark
124 // them as continuous if all their references has been fulfilled.
125 void PropagateContinuity(FrameMap::iterator start)
philipelbe7a9e52016-05-19 12:19:35 +0200126 EXCLUSIVE_LOCKS_REQUIRED(crit_);
127
philipele0b2f152016-09-28 10:23:49 +0200128 // Marks the frame as decoded and updates all directly dependent frames.
129 void PropagateDecodability(const FrameInfo& info)
130 EXCLUSIVE_LOCKS_REQUIRED(crit_);
philipelbe7a9e52016-05-19 12:19:35 +0200131
philipele0b2f152016-09-28 10:23:49 +0200132 // Advances |last_decoded_frame_it_| to |decoded| and removes old
133 // frame info.
134 void AdvanceLastDecodedFrame(FrameMap::iterator decoded)
135 EXCLUSIVE_LOCKS_REQUIRED(crit_);
136
137 // Update the corresponding FrameInfo of |frame| and all FrameInfos that
138 // |frame| references.
139 // Return false if |frame| will never be decodable, true otherwise.
140 bool UpdateFrameInfoWithIncomingFrame(const FrameObject& frame,
141 FrameMap::iterator info)
142 EXCLUSIVE_LOCKS_REQUIRED(crit_);
143
philipelbe742702016-11-30 01:31:40 -0800144 void UpdateJitterDelay() EXCLUSIVE_LOCKS_REQUIRED(crit_);
145
philipelfcc60062017-01-18 05:35:20 -0800146 void ClearFramesAndHistory() EXCLUSIVE_LOCKS_REQUIRED(crit_);
147
philipele0b2f152016-09-28 10:23:49 +0200148 FrameMap frames_ GUARDED_BY(crit_);
philipelbe7a9e52016-05-19 12:19:35 +0200149
150 rtc::CriticalSection crit_;
151 Clock* const clock_;
philipele0b2f152016-09-28 10:23:49 +0200152 rtc::Event new_countinuous_frame_event_;
philipel4f6cd6a2016-08-03 10:59:32 +0200153 VCMJitterEstimator* const jitter_estimator_ GUARDED_BY(crit_);
154 VCMTiming* const timing_ GUARDED_BY(crit_);
155 VCMInterFrameDelay inter_frame_delay_ GUARDED_BY(crit_);
philipelfcc60062017-01-18 05:35:20 -0800156 uint32_t last_decoded_frame_timestamp_ GUARDED_BY(crit_);
philipele0b2f152016-09-28 10:23:49 +0200157 FrameMap::iterator last_decoded_frame_it_ GUARDED_BY(crit_);
158 FrameMap::iterator last_continuous_frame_it_ GUARDED_BY(crit_);
philipel1c056252017-01-31 09:53:12 -0800159 FrameMap::iterator next_frame_it_ GUARDED_BY(crit_);
philipele0b2f152016-09-28 10:23:49 +0200160 int num_frames_history_ GUARDED_BY(crit_);
161 int num_frames_buffered_ GUARDED_BY(crit_);
philipel504c47d2016-06-30 17:33:02 +0200162 bool stopped_ GUARDED_BY(crit_);
philipel4f6cd6a2016-08-03 10:59:32 +0200163 VCMVideoProtection protection_mode_ GUARDED_BY(crit_);
philipela45102f2017-02-22 05:30:39 -0800164 VCMReceiveStatisticsCallback* const stats_callback_;
philipelbe7a9e52016-05-19 12:19:35 +0200165
166 RTC_DISALLOW_IMPLICIT_CONSTRUCTORS(FrameBuffer);
philipelbe7a9e52016-05-19 12:19:35 +0200167};
168
169} // namespace video_coding
170} // namespace webrtc
171
172#endif // WEBRTC_MODULES_VIDEO_CODING_FRAME_BUFFER2_H_