219 lines
7.6 KiB
C++
219 lines
7.6 KiB
C++
/*
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* Copyright (c) 2013 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_STATISTICS_CALCULATOR_H_
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#define MODULES_AUDIO_CODING_NETEQ_STATISTICS_CALCULATOR_H_
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#include <deque>
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#include <string>
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#include "api/neteq/neteq.h"
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#include "rtc_base/constructor_magic.h"
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namespace webrtc {
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class DelayManager;
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// This class handles various network statistics in NetEq.
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class StatisticsCalculator {
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public:
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StatisticsCalculator();
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virtual ~StatisticsCalculator();
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// Resets most of the counters.
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void Reset();
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// Resets the counters that are not handled by Reset().
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void ResetMcu();
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// Reports that |num_samples| samples were produced through expansion, and
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// that the expansion produced other than just noise samples.
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void ExpandedVoiceSamples(size_t num_samples, bool is_new_concealment_event);
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// Reports that |num_samples| samples were produced through expansion, and
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// that the expansion produced only noise samples.
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void ExpandedNoiseSamples(size_t num_samples, bool is_new_concealment_event);
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// Corrects the statistics for number of samples produced through non-noise
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// expansion by adding |num_samples| (negative or positive) to the current
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// value. The result is capped to zero to avoid negative values.
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void ExpandedVoiceSamplesCorrection(int num_samples);
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// Same as ExpandedVoiceSamplesCorrection but for noise samples.
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void ExpandedNoiseSamplesCorrection(int num_samples);
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void DecodedOutputPlayed();
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// Mark end of expand event; triggers some stats to be reported.
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void EndExpandEvent(int fs_hz);
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// Reports that |num_samples| samples were produced through preemptive
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// expansion.
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void PreemptiveExpandedSamples(size_t num_samples);
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// Reports that |num_samples| samples were removed through accelerate.
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void AcceleratedSamples(size_t num_samples);
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// Reports that |num_samples| zeros were inserted into the output.
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void AddZeros(size_t num_samples);
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// Reports that |num_packets| packets were discarded.
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virtual void PacketsDiscarded(size_t num_packets);
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// Reports that |num_packets| secondary (FEC) packets were discarded.
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virtual void SecondaryPacketsDiscarded(size_t num_packets);
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// Reports that |num_packets| secondary (FEC) packets were received.
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virtual void SecondaryPacketsReceived(size_t num_packets);
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// Reports that |num_samples| were lost.
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void LostSamples(size_t num_samples);
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// Increases the report interval counter with |num_samples| at a sample rate
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// of |fs_hz|. This is how the StatisticsCalculator gets notified that current
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// time is increasing.
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void IncreaseCounter(size_t num_samples, int fs_hz);
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// Update jitter buffer delay counter.
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void JitterBufferDelay(size_t num_samples,
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uint64_t waiting_time_ms,
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uint64_t target_delay_ms);
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// Stores new packet waiting time in waiting time statistics.
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void StoreWaitingTime(int waiting_time_ms);
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// Reports that |num_samples| samples were decoded from secondary packets.
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void SecondaryDecodedSamples(int num_samples);
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// Reports that the packet buffer was flushed.
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void FlushedPacketBuffer();
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// Reports that the jitter buffer received a packet.
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void ReceivedPacket();
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// Reports that a received packet was delayed by |delay_ms| milliseconds.
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virtual void RelativePacketArrivalDelay(size_t delay_ms);
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// Logs a delayed packet outage event of |num_samples| expanded at a sample
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// rate of |fs_hz|. A delayed packet outage event is defined as an expand
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// period caused not by an actual packet loss, but by a delayed packet.
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virtual void LogDelayedPacketOutageEvent(int num_samples, int fs_hz);
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// Returns the current network statistics in |stats|. The current sample rate
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// is |fs_hz|, the total number of samples in packet buffer and sync buffer
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// yet to play out is |num_samples_in_buffers|, and the number of samples per
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// packet is |samples_per_packet|. The method does not populate
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// |preferred_buffer_size_ms|, |jitter_peaks_found| or |clockdrift_ppm|; use
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// the PopulateDelayManagerStats method for those.
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void GetNetworkStatistics(int fs_hz,
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size_t num_samples_in_buffers,
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size_t samples_per_packet,
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NetEqNetworkStatistics* stats);
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// Returns a copy of this class's lifetime statistics. These statistics are
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// never reset.
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NetEqLifetimeStatistics GetLifetimeStatistics() const;
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NetEqOperationsAndState GetOperationsAndState() const;
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private:
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static const int kMaxReportPeriod = 60; // Seconds before auto-reset.
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static const size_t kLenWaitingTimes = 100;
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class PeriodicUmaLogger {
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public:
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PeriodicUmaLogger(const std::string& uma_name,
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int report_interval_ms,
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int max_value);
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virtual ~PeriodicUmaLogger();
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void AdvanceClock(int step_ms);
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protected:
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void LogToUma(int value) const;
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virtual int Metric() const = 0;
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virtual void Reset() = 0;
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const std::string uma_name_;
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const int report_interval_ms_;
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const int max_value_;
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int timer_ = 0;
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};
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class PeriodicUmaCount final : public PeriodicUmaLogger {
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public:
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PeriodicUmaCount(const std::string& uma_name,
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int report_interval_ms,
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int max_value);
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~PeriodicUmaCount() override;
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void RegisterSample();
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protected:
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int Metric() const override;
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void Reset() override;
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private:
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int counter_ = 0;
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};
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class PeriodicUmaAverage final : public PeriodicUmaLogger {
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public:
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PeriodicUmaAverage(const std::string& uma_name,
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int report_interval_ms,
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int max_value);
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~PeriodicUmaAverage() override;
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void RegisterSample(int value);
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protected:
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int Metric() const override;
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void Reset() override;
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private:
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double sum_ = 0.0;
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int counter_ = 0;
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};
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// Corrects the concealed samples counter in lifetime_stats_. The value of
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// num_samples_ is added directly to the stat if the correction is positive.
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// If the correction is negative, it is cached and will be subtracted against
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// future additions to the counter. This is meant to be called from
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// Expanded{Voice,Noise}Samples{Correction}.
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void ConcealedSamplesCorrection(int num_samples, bool is_voice);
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// Calculates numerator / denominator, and returns the value in Q14.
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static uint16_t CalculateQ14Ratio(size_t numerator, uint32_t denominator);
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NetEqLifetimeStatistics lifetime_stats_;
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NetEqOperationsAndState operations_and_state_;
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size_t concealed_samples_correction_ = 0;
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size_t silent_concealed_samples_correction_ = 0;
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size_t preemptive_samples_;
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size_t accelerate_samples_;
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size_t added_zero_samples_;
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size_t expanded_speech_samples_;
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size_t expanded_noise_samples_;
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size_t concealed_samples_at_event_end_ = 0;
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size_t discarded_packets_;
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size_t lost_timestamps_;
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uint32_t timestamps_since_last_report_;
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std::deque<int> waiting_times_;
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uint32_t secondary_decoded_samples_;
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size_t discarded_secondary_packets_;
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PeriodicUmaCount delayed_packet_outage_counter_;
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PeriodicUmaAverage excess_buffer_delay_;
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PeriodicUmaCount buffer_full_counter_;
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bool decoded_output_played_ = false;
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RTC_DISALLOW_COPY_AND_ASSIGN(StatisticsCalculator);
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};
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} // namespace webrtc
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#endif // MODULES_AUDIO_CODING_NETEQ_STATISTICS_CALCULATOR_H_
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