157 lines
6.4 KiB
C++
157 lines
6.4 KiB
C++
/*
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* Copyright (c) 2012 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 MODULES_AUDIO_CODING_NETEQ_PACKET_BUFFER_H_
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#define MODULES_AUDIO_CODING_NETEQ_PACKET_BUFFER_H_
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#include "absl/types/optional.h"
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#include "modules/audio_coding/neteq/decoder_database.h"
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#include "modules/audio_coding/neteq/packet.h"
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#include "modules/include/module_common_types_public.h" // IsNewerTimestamp
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#include "rtc_base/constructor_magic.h"
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namespace webrtc {
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class DecoderDatabase;
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class StatisticsCalculator;
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class TickTimer;
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// This is the actual buffer holding the packets before decoding.
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class PacketBuffer {
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public:
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enum BufferReturnCodes {
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kOK = 0,
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kFlushed,
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kNotFound,
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kBufferEmpty,
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kInvalidPacket,
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kInvalidPointer
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};
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// Constructor creates a buffer which can hold a maximum of
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// |max_number_of_packets| packets.
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PacketBuffer(size_t max_number_of_packets, const TickTimer* tick_timer);
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// Deletes all packets in the buffer before destroying the buffer.
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virtual ~PacketBuffer();
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// Flushes the buffer and deletes all packets in it.
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virtual void Flush();
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// Returns true for an empty buffer.
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virtual bool Empty() const;
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// Inserts |packet| into the buffer. The buffer will take over ownership of
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// the packet object.
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// Returns PacketBuffer::kOK on success, PacketBuffer::kFlushed if the buffer
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// was flushed due to overfilling.
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virtual int InsertPacket(Packet&& packet, StatisticsCalculator* stats);
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// Inserts a list of packets into the buffer. The buffer will take over
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// ownership of the packet objects.
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// Returns PacketBuffer::kOK if all packets were inserted successfully.
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// If the buffer was flushed due to overfilling, only a subset of the list is
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// inserted, and PacketBuffer::kFlushed is returned.
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// The last three parameters are included for legacy compatibility.
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// TODO(hlundin): Redesign to not use current_*_payload_type and
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// decoder_database.
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virtual int InsertPacketList(
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PacketList* packet_list,
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const DecoderDatabase& decoder_database,
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absl::optional<uint8_t>* current_rtp_payload_type,
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absl::optional<uint8_t>* current_cng_rtp_payload_type,
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StatisticsCalculator* stats);
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// Gets the timestamp for the first packet in the buffer and writes it to the
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// output variable |next_timestamp|.
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// Returns PacketBuffer::kBufferEmpty if the buffer is empty,
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// PacketBuffer::kOK otherwise.
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virtual int NextTimestamp(uint32_t* next_timestamp) const;
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// Gets the timestamp for the first packet in the buffer with a timestamp no
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// lower than the input limit |timestamp|. The result is written to the output
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// variable |next_timestamp|.
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// Returns PacketBuffer::kBufferEmpty if the buffer is empty,
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// PacketBuffer::kOK otherwise.
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virtual int NextHigherTimestamp(uint32_t timestamp,
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uint32_t* next_timestamp) const;
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// Returns a (constant) pointer to the first packet in the buffer. Returns
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// NULL if the buffer is empty.
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virtual const Packet* PeekNextPacket() const;
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// Extracts the first packet in the buffer and returns it.
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// Returns an empty optional if the buffer is empty.
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virtual absl::optional<Packet> GetNextPacket();
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// Discards the first packet in the buffer. The packet is deleted.
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// Returns PacketBuffer::kBufferEmpty if the buffer is empty,
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// PacketBuffer::kOK otherwise.
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virtual int DiscardNextPacket(StatisticsCalculator* stats);
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// Discards all packets that are (strictly) older than timestamp_limit,
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// but newer than timestamp_limit - horizon_samples. Setting horizon_samples
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// to zero implies that the horizon is set to half the timestamp range. That
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// is, if a packet is more than 2^31 timestamps into the future compared with
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// timestamp_limit (including wrap-around), it is considered old.
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virtual void DiscardOldPackets(uint32_t timestamp_limit,
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uint32_t horizon_samples,
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StatisticsCalculator* stats);
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// Discards all packets that are (strictly) older than timestamp_limit.
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virtual void DiscardAllOldPackets(uint32_t timestamp_limit,
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StatisticsCalculator* stats);
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// Removes all packets with a specific payload type from the buffer.
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virtual void DiscardPacketsWithPayloadType(uint8_t payload_type,
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StatisticsCalculator* stats);
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// Returns the number of packets in the buffer, including duplicates and
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// redundant packets.
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virtual size_t NumPacketsInBuffer() const;
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// Returns the number of samples in the buffer, including samples carried in
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// duplicate and redundant packets.
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virtual size_t NumSamplesInBuffer(size_t last_decoded_length) const;
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// Returns the total duration in samples that the packets in the buffer spans
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// across.
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virtual size_t GetSpanSamples(size_t last_decoded_length,
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size_t sample_rate,
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bool count_dtx_waiting_time) const;
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// Returns true if the packet buffer contains any DTX or CNG packets.
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virtual bool ContainsDtxOrCngPacket(
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const DecoderDatabase* decoder_database) const;
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// Static method returning true if |timestamp| is older than |timestamp_limit|
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// but less than |horizon_samples| behind |timestamp_limit|. For instance,
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// with timestamp_limit = 100 and horizon_samples = 10, a timestamp in the
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// range (90, 100) is considered obsolete, and will yield true.
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// Setting |horizon_samples| to 0 is the same as setting it to 2^31, i.e.,
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// half the 32-bit timestamp range.
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static bool IsObsoleteTimestamp(uint32_t timestamp,
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uint32_t timestamp_limit,
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uint32_t horizon_samples) {
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return IsNewerTimestamp(timestamp_limit, timestamp) &&
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(horizon_samples == 0 ||
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IsNewerTimestamp(timestamp, timestamp_limit - horizon_samples));
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}
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private:
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size_t max_number_of_packets_;
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PacketList buffer_;
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const TickTimer* tick_timer_;
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RTC_DISALLOW_COPY_AND_ASSIGN(PacketBuffer);
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};
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} // namespace webrtc
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#endif // MODULES_AUDIO_CODING_NETEQ_PACKET_BUFFER_H_
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