
We will do some refactoring of video engine and would like to use the same rtcp stats struct there. Both video and audio seem to use 8bit fraction lost, so that is changed in the struct as well. BUG= R=henrik.lundin@webrtc.org, kjellander@webrtc.org, mflodman@webrtc.org Review URL: https://webrtc-codereview.appspot.com/2959004 git-svn-id: http://webrtc.googlecode.com/svn/trunk@5039 4adac7df-926f-26a2-2b94-8c16560cd09d
268 lines
10 KiB
C++
268 lines
10 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 WEBRTC_MODULES_AUDIO_CODING_NETEQ4_INTERFACE_NETEQ_H_
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#define WEBRTC_MODULES_AUDIO_CODING_NETEQ4_INTERFACE_NETEQ_H_
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#include <string.h> // Provide access to size_t.
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#include <vector>
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#include "webrtc/common_types.h"
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#include "webrtc/modules/audio_coding/neteq4/interface/audio_decoder.h"
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#include "webrtc/system_wrappers/interface/constructor_magic.h"
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#include "webrtc/typedefs.h"
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namespace webrtc {
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// Forward declarations.
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struct WebRtcRTPHeader;
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struct NetEqNetworkStatistics {
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uint16_t current_buffer_size_ms; // Current jitter buffer size in ms.
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uint16_t preferred_buffer_size_ms; // Target buffer size in ms.
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uint16_t jitter_peaks_found; // 1 if adding extra delay due to peaky
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// jitter; 0 otherwise.
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uint16_t packet_loss_rate; // Loss rate (network + late) in Q14.
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uint16_t packet_discard_rate; // Late loss rate in Q14.
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uint16_t expand_rate; // Fraction (of original stream) of synthesized
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// speech inserted through expansion (in Q14).
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uint16_t preemptive_rate; // Fraction of data inserted through pre-emptive
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// expansion (in Q14).
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uint16_t accelerate_rate; // Fraction of data removed through acceleration
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// (in Q14).
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int32_t clockdrift_ppm; // Average clock-drift in parts-per-million
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// (positive or negative).
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int added_zero_samples; // Number of zero samples added in "off" mode.
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};
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enum NetEqOutputType {
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kOutputNormal,
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kOutputPLC,
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kOutputCNG,
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kOutputPLCtoCNG,
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kOutputVADPassive
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};
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enum NetEqPlayoutMode {
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kPlayoutOn,
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kPlayoutOff,
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kPlayoutFax,
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kPlayoutStreaming
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};
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enum NetEqBackgroundNoiseMode {
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kBgnOn, // Default behavior with eternal noise.
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kBgnFade, // Noise fades to zero after some time.
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kBgnOff // Background noise is always zero.
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};
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// This is the interface class for NetEq.
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class NetEq {
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public:
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enum ReturnCodes {
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kOK = 0,
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kFail = -1,
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kNotImplemented = -2
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};
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enum ErrorCodes {
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kNoError = 0,
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kOtherError,
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kInvalidRtpPayloadType,
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kUnknownRtpPayloadType,
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kCodecNotSupported,
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kDecoderExists,
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kDecoderNotFound,
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kInvalidSampleRate,
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kInvalidPointer,
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kAccelerateError,
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kPreemptiveExpandError,
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kComfortNoiseErrorCode,
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kDecoderErrorCode,
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kOtherDecoderError,
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kInvalidOperation,
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kDtmfParameterError,
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kDtmfParsingError,
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kDtmfInsertError,
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kStereoNotSupported,
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kSampleUnderrun,
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kDecodedTooMuch,
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kFrameSplitError,
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kRedundancySplitError,
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kPacketBufferCorruption,
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kOversizePacket,
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kSyncPacketNotAccepted
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};
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static const int kMaxNumPacketsInBuffer = 240; // TODO(hlundin): Remove.
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static const int kMaxBytesInBuffer = 113280; // TODO(hlundin): Remove.
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// Creates a new NetEq object, starting at the sample rate |sample_rate_hz|.
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// (Note that it will still change the sample rate depending on what payloads
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// are being inserted; |sample_rate_hz| is just for startup configuration.)
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static NetEq* Create(int sample_rate_hz);
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virtual ~NetEq() {}
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// Inserts a new packet into NetEq. The |receive_timestamp| is an indication
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// of the time when the packet was received, and should be measured with
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// the same tick rate as the RTP timestamp of the current payload.
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// Returns 0 on success, -1 on failure.
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virtual int InsertPacket(const WebRtcRTPHeader& rtp_header,
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const uint8_t* payload,
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int length_bytes,
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uint32_t receive_timestamp) = 0;
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// Inserts a sync-packet into packet queue. Sync-packets are decoded to
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// silence and are intended to keep AV-sync intact in an event of long packet
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// losses when Video NACK is enabled but Audio NACK is not. Clients of NetEq
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// might insert sync-packet when they observe that buffer level of NetEq is
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// decreasing below a certain threshold, defined by the application.
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// Sync-packets should have the same payload type as the last audio payload
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// type, i.e. they cannot have DTMF or CNG payload type, nor a codec change
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// can be implied by inserting a sync-packet.
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// Returns kOk on success, kFail on failure.
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virtual int InsertSyncPacket(const WebRtcRTPHeader& rtp_header,
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uint32_t receive_timestamp) = 0;
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// Instructs NetEq to deliver 10 ms of audio data. The data is written to
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// |output_audio|, which can hold (at least) |max_length| elements.
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// The number of channels that were written to the output is provided in
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// the output variable |num_channels|, and each channel contains
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// |samples_per_channel| elements. If more than one channel is written,
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// the samples are interleaved.
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// The speech type is written to |type|, if |type| is not NULL.
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// Returns kOK on success, or kFail in case of an error.
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virtual int GetAudio(size_t max_length, int16_t* output_audio,
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int* samples_per_channel, int* num_channels,
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NetEqOutputType* type) = 0;
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// Associates |rtp_payload_type| with |codec| and stores the information in
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// the codec database. Returns 0 on success, -1 on failure.
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virtual int RegisterPayloadType(enum NetEqDecoder codec,
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uint8_t rtp_payload_type) = 0;
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// Provides an externally created decoder object |decoder| to insert in the
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// decoder database. The decoder implements a decoder of type |codec| and
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// associates it with |rtp_payload_type|. The decoder operates at the
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// frequency |sample_rate_hz|. Returns kOK on success, kFail on failure.
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virtual int RegisterExternalDecoder(AudioDecoder* decoder,
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enum NetEqDecoder codec,
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int sample_rate_hz,
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uint8_t rtp_payload_type) = 0;
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// Removes |rtp_payload_type| from the codec database. Returns 0 on success,
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// -1 on failure.
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virtual int RemovePayloadType(uint8_t rtp_payload_type) = 0;
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// Sets a minimum delay in millisecond for packet buffer. The minimum is
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// maintained unless a higher latency is dictated by channel condition.
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// Returns true if the minimum is successfully applied, otherwise false is
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// returned.
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virtual bool SetMinimumDelay(int delay_ms) = 0;
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// Sets a maximum delay in milliseconds for packet buffer. The latency will
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// not exceed the given value, even required delay (given the channel
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// conditions) is higher.
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virtual bool SetMaximumDelay(int delay_ms) = 0;
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// The smallest latency required. This is computed bases on inter-arrival
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// time and internal NetEq logic. Note that in computing this latency none of
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// the user defined limits (applied by calling setMinimumDelay() and/or
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// SetMaximumDelay()) are applied.
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virtual int LeastRequiredDelayMs() const = 0;
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// Not implemented.
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virtual int SetTargetDelay() = 0;
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// Not implemented.
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virtual int TargetDelay() = 0;
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// Not implemented.
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virtual int CurrentDelay() = 0;
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// Sets the playout mode to |mode|.
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virtual void SetPlayoutMode(NetEqPlayoutMode mode) = 0;
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// Returns the current playout mode.
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virtual NetEqPlayoutMode PlayoutMode() const = 0;
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// Writes the current network statistics to |stats|. The statistics are reset
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// after the call.
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virtual int NetworkStatistics(NetEqNetworkStatistics* stats) = 0;
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// Writes the last packet waiting times (in ms) to |waiting_times|. The number
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// of values written is no more than 100, but may be smaller if the interface
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// is polled again before 100 packets has arrived.
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virtual void WaitingTimes(std::vector<int>* waiting_times) = 0;
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// Writes the current RTCP statistics to |stats|. The statistics are reset
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// and a new report period is started with the call.
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virtual void GetRtcpStatistics(RtcpStatistics* stats) = 0;
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// Same as RtcpStatistics(), but does not reset anything.
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virtual void GetRtcpStatisticsNoReset(RtcpStatistics* stats) = 0;
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// Enables post-decode VAD. When enabled, GetAudio() will return
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// kOutputVADPassive when the signal contains no speech.
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virtual void EnableVad() = 0;
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// Disables post-decode VAD.
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virtual void DisableVad() = 0;
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// Returns the RTP timestamp for the last sample delivered by GetAudio().
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virtual uint32_t PlayoutTimestamp() = 0;
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// Not implemented.
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virtual int SetTargetNumberOfChannels() = 0;
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// Not implemented.
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virtual int SetTargetSampleRate() = 0;
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// Returns the error code for the last occurred error. If no error has
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// occurred, 0 is returned.
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virtual int LastError() = 0;
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// Returns the error code last returned by a decoder (audio or comfort noise).
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// When LastError() returns kDecoderErrorCode or kComfortNoiseErrorCode, check
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// this method to get the decoder's error code.
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virtual int LastDecoderError() = 0;
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// Flushes both the packet buffer and the sync buffer.
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virtual void FlushBuffers() = 0;
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// Current usage of packet-buffer and it's limits.
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virtual void PacketBufferStatistics(int* current_num_packets,
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int* max_num_packets,
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int* current_memory_size_bytes,
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int* max_memory_size_bytes) const = 0;
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// Get sequence number and timestamp of the latest RTP.
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// This method is to facilitate NACK.
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virtual int DecodedRtpInfo(int* sequence_number,
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uint32_t* timestamp) const = 0;
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// Sets the background noise mode.
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virtual void SetBackgroundNoiseMode(NetEqBackgroundNoiseMode mode) = 0;
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// Gets the background noise mode.
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virtual NetEqBackgroundNoiseMode BackgroundNoiseMode() const = 0;
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protected:
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NetEq() {}
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private:
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DISALLOW_COPY_AND_ASSIGN(NetEq);
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};
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} // namespace webrtc
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#endif // WEBRTC_MODULES_AUDIO_CODING_NETEQ4_INTERFACE_NETEQ_H_
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