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111 lines
3.6 KiB
111 lines
3.6 KiB
/*
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* Copyright (c) 2019 The WebRTC project authors. All Rights Reserved.
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*
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* Use of this source code is governed by a BSD-style license
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* that can be found in the LICENSE file in the root of the source
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* tree. An additional intellectual property rights grant can be found
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* in the file PATENTS. All contributing project authors may
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* be found in the AUTHORS file in the root of the source tree.
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*/
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#ifndef API_VIDEO_CODECS_VP8_FRAME_CONFIG_H_
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#define API_VIDEO_CODECS_VP8_FRAME_CONFIG_H_
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#include <stdint.h>
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namespace webrtc {
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// Configuration of a VP8 frame - which buffers are to be referenced
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// by it, which buffers should be updated, etc.
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struct Vp8FrameConfig {
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static Vp8FrameConfig GetIntraFrameConfig() {
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Vp8FrameConfig frame_config = Vp8FrameConfig(
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BufferFlags::kUpdate, BufferFlags::kUpdate, BufferFlags::kUpdate);
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frame_config.packetizer_temporal_idx = 0;
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return frame_config;
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}
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enum BufferFlags : int {
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kNone = 0,
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kReference = 1,
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kUpdate = 2,
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kReferenceAndUpdate = kReference | kUpdate,
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};
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enum FreezeEntropy { kFreezeEntropy };
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// Defined bit-maskable reference to the three buffers available in VP8.
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enum class Vp8BufferReference : uint8_t {
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kNone = 0,
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kLast = 1,
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kGolden = 2,
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kAltref = 4
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};
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Vp8FrameConfig();
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Vp8FrameConfig(BufferFlags last, BufferFlags golden, BufferFlags arf);
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Vp8FrameConfig(BufferFlags last,
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BufferFlags golden,
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BufferFlags arf,
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FreezeEntropy);
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enum class Buffer : int { kLast = 0, kGolden = 1, kArf = 2, kCount };
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bool References(Buffer buffer) const;
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bool Updates(Buffer buffer) const;
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bool IntraFrame() const {
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// Intra frames do not reference any buffers, and update all buffers.
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return last_buffer_flags == kUpdate && golden_buffer_flags == kUpdate &&
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arf_buffer_flags == kUpdate;
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}
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bool drop_frame;
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BufferFlags last_buffer_flags;
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BufferFlags golden_buffer_flags;
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BufferFlags arf_buffer_flags;
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// The encoder layer ID is used to utilize the correct bitrate allocator
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// inside the encoder. It does not control references nor determine which
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// "actual" temporal layer this is. The packetizer temporal index determines
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// which layer the encoded frame should be packetized into.
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// Normally these are the same, but current temporal-layer strategies for
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// screenshare use one bitrate allocator for all layers, but attempt to
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// packetize / utilize references to split a stream into multiple layers,
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// with different quantizer settings, to hit target bitrate.
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// TODO(sprang): Screenshare layers are being reconsidered at the time of
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// writing, we might be able to remove this distinction, and have a temporal
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// layer imply both (the normal case).
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int encoder_layer_id;
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// TODO(eladalon/sprang): Move out of this class.
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int packetizer_temporal_idx;
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// TODO(eladalon/sprang): Move out of this class.
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bool layer_sync;
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bool freeze_entropy;
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// Indicates in which order the encoder should search the reference buffers
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// when doing motion prediction. Set to kNone to use unspecified order. Any
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// buffer indicated here must not have the corresponding no_ref bit set.
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// If all three buffers can be reference, the one not listed here should be
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// searched last.
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Vp8BufferReference first_reference;
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Vp8BufferReference second_reference;
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// Whether this frame is eligible for retransmission.
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bool retransmission_allowed;
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private:
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Vp8FrameConfig(BufferFlags last,
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BufferFlags golden,
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BufferFlags arf,
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bool freeze_entropy);
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};
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} // namespace webrtc
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#endif // API_VIDEO_CODECS_VP8_FRAME_CONFIG_H_
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