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Add a small clean up in LossBasedBandwidthEstimatorV2ReadyForUse since IsReady() includes IsEnabled(). Bug: webrtc:12707 Change-Id: I20dfeb2ab31e7724041f89af9f312211a3ae3d23 Reviewed-on: https://webrtc-review.googlesource.com/c/src/+/339521 Commit-Queue: Diep Bui <diepbp@webrtc.org> Reviewed-by: Per Kjellander <perkj@webrtc.org> Cr-Commit-Position: refs/heads/main@{#41727}
223 lines
8.5 KiB
C++
223 lines
8.5 KiB
C++
/*
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* Copyright 2021 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_CONGESTION_CONTROLLER_GOOG_CC_LOSS_BASED_BWE_V2_H_
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#define MODULES_CONGESTION_CONTROLLER_GOOG_CC_LOSS_BASED_BWE_V2_H_
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#include <vector>
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#include "absl/types/optional.h"
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#include "api/array_view.h"
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#include "api/field_trials_view.h"
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#include "api/transport/network_types.h"
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#include "api/units/data_rate.h"
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#include "api/units/data_size.h"
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#include "api/units/time_delta.h"
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#include "api/units/timestamp.h"
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namespace webrtc {
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// State of the loss based estimate, which can be either increasing/decreasing
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// when network is loss limited, or equal to the delay based estimate.
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enum class LossBasedState {
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kIncreasing = 0,
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// TODO(bugs.webrtc.org/12707): Remove one of the increasing states once we
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// have decided if padding is usefull for ramping up when BWE is loss
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// limited.
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kIncreaseUsingPadding = 1,
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kDecreasing = 2,
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kDelayBasedEstimate = 3
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};
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class LossBasedBweV2 {
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public:
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struct Result {
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~Result() = default;
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DataRate bandwidth_estimate = DataRate::Zero();
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// State is used by goog_cc, which later sends probe requests to probe
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// controller if state is kIncreasing.
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LossBasedState state = LossBasedState::kDelayBasedEstimate;
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};
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// Creates a disabled `LossBasedBweV2` if the
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// `key_value_config` is not valid.
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explicit LossBasedBweV2(const FieldTrialsView* key_value_config);
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LossBasedBweV2(const LossBasedBweV2&) = delete;
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LossBasedBweV2& operator=(const LossBasedBweV2&) = delete;
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~LossBasedBweV2() = default;
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bool IsEnabled() const;
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// Returns true iff a BWE can be calculated, i.e., the estimator has been
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// initialized with a BWE and then has received enough `PacketResult`s.
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bool IsReady() const;
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// Returns true if loss based BWE is ready to be used in the start phase.
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bool ReadyToUseInStartPhase() const;
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// Returns true if loss based BWE can be used in the start phase.
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bool UseInStartPhase() const;
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// Returns `DataRate::PlusInfinity` if no BWE can be calculated.
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Result GetLossBasedResult() const;
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void SetAcknowledgedBitrate(DataRate acknowledged_bitrate);
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void SetMinMaxBitrate(DataRate min_bitrate, DataRate max_bitrate);
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void UpdateBandwidthEstimate(
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rtc::ArrayView<const PacketResult> packet_results,
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DataRate delay_based_estimate,
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bool in_alr);
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bool PaceAtLossBasedEstimate() const;
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// For unit testing only.
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void SetBandwidthEstimate(DataRate bandwidth_estimate);
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private:
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struct ChannelParameters {
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double inherent_loss = 0.0;
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DataRate loss_limited_bandwidth = DataRate::MinusInfinity();
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};
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struct Config {
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double bandwidth_rampup_upper_bound_factor = 0.0;
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double bandwidth_rampup_upper_bound_factor_in_hold = 0;
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double bandwidth_rampup_hold_threshold = 0;
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double rampup_acceleration_max_factor = 0.0;
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TimeDelta rampup_acceleration_maxout_time = TimeDelta::Zero();
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std::vector<double> candidate_factors;
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double higher_bandwidth_bias_factor = 0.0;
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double higher_log_bandwidth_bias_factor = 0.0;
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double inherent_loss_lower_bound = 0.0;
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double loss_threshold_of_high_bandwidth_preference = 0.0;
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double bandwidth_preference_smoothing_factor = 0.0;
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DataRate inherent_loss_upper_bound_bandwidth_balance =
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DataRate::MinusInfinity();
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double inherent_loss_upper_bound_offset = 0.0;
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double initial_inherent_loss_estimate = 0.0;
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int newton_iterations = 0;
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double newton_step_size = 0.0;
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bool append_acknowledged_rate_candidate = true;
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bool append_delay_based_estimate_candidate = false;
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bool append_upper_bound_candidate_in_alr = false;
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TimeDelta observation_duration_lower_bound = TimeDelta::Zero();
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int observation_window_size = 0;
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double sending_rate_smoothing_factor = 0.0;
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double instant_upper_bound_temporal_weight_factor = 0.0;
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DataRate instant_upper_bound_bandwidth_balance = DataRate::MinusInfinity();
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double instant_upper_bound_loss_offset = 0.0;
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double temporal_weight_factor = 0.0;
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double bandwidth_backoff_lower_bound_factor = 0.0;
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double max_increase_factor = 0.0;
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TimeDelta delayed_increase_window = TimeDelta::Zero();
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bool not_increase_if_inherent_loss_less_than_average_loss = false;
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bool not_use_acked_rate_in_alr = false;
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bool use_in_start_phase = false;
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int min_num_observations = 0;
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double lower_bound_by_acked_rate_factor = 0.0;
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double hold_duration_factor = 0.0;
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bool use_byte_loss_rate = false;
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TimeDelta padding_duration = TimeDelta::Zero();
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bool bound_best_candidate = false;
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bool pace_at_loss_based_estimate = false;
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};
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struct Derivatives {
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double first = 0.0;
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double second = 0.0;
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};
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struct Observation {
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bool IsInitialized() const { return id != -1; }
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int num_packets = 0;
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int num_lost_packets = 0;
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int num_received_packets = 0;
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DataRate sending_rate = DataRate::MinusInfinity();
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DataSize size = DataSize::Zero();
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DataSize lost_size = DataSize::Zero();
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int id = -1;
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};
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struct PartialObservation {
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int num_packets = 0;
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int num_lost_packets = 0;
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DataSize size = DataSize::Zero();
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DataSize lost_size = DataSize::Zero();
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};
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struct PaddingInfo {
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DataRate padding_rate = DataRate::MinusInfinity();
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Timestamp padding_timestamp = Timestamp::MinusInfinity();
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};
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struct HoldInfo {
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Timestamp timestamp = Timestamp::MinusInfinity();
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TimeDelta duration = TimeDelta::Zero();
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DataRate rate = DataRate::PlusInfinity();
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};
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static absl::optional<Config> CreateConfig(
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const FieldTrialsView* key_value_config);
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bool IsConfigValid() const;
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// Returns `0.0` if not enough loss statistics have been received.
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double GetAverageReportedLossRatio() const;
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double GetAverageReportedPacketLossRatio() const;
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double GetAverageReportedByteLossRatio() const;
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std::vector<ChannelParameters> GetCandidates(bool in_alr) const;
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DataRate GetCandidateBandwidthUpperBound() const;
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Derivatives GetDerivatives(const ChannelParameters& channel_parameters) const;
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double GetFeasibleInherentLoss(
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const ChannelParameters& channel_parameters) const;
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double GetInherentLossUpperBound(DataRate bandwidth) const;
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double AdjustBiasFactor(double loss_rate, double bias_factor) const;
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double GetHighBandwidthBias(DataRate bandwidth) const;
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double GetObjective(const ChannelParameters& channel_parameters) const;
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DataRate GetSendingRate(DataRate instantaneous_sending_rate) const;
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DataRate GetInstantUpperBound() const;
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void CalculateInstantUpperBound();
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DataRate GetInstantLowerBound() const;
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void CalculateInstantLowerBound();
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void CalculateTemporalWeights();
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void NewtonsMethodUpdate(ChannelParameters& channel_parameters) const;
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// Returns false if no observation was created.
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bool PushBackObservation(rtc::ArrayView<const PacketResult> packet_results);
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bool IsEstimateIncreasingWhenLossLimited(DataRate old_estimate,
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DataRate new_estimate);
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bool IsInLossLimitedState() const;
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bool CanKeepIncreasingState(DataRate estimate) const;
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absl::optional<DataRate> acknowledged_bitrate_;
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absl::optional<Config> config_;
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ChannelParameters current_best_estimate_;
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int num_observations_ = 0;
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std::vector<Observation> observations_;
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PartialObservation partial_observation_;
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Timestamp last_send_time_most_recent_observation_ = Timestamp::PlusInfinity();
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Timestamp last_time_estimate_reduced_ = Timestamp::MinusInfinity();
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absl::optional<DataRate> cached_instant_upper_bound_;
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absl::optional<DataRate> cached_instant_lower_bound_;
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std::vector<double> instant_upper_bound_temporal_weights_;
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std::vector<double> temporal_weights_;
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Timestamp recovering_after_loss_timestamp_ = Timestamp::MinusInfinity();
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DataRate bandwidth_limit_in_current_window_ = DataRate::PlusInfinity();
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DataRate min_bitrate_ = DataRate::KilobitsPerSec(1);
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DataRate max_bitrate_ = DataRate::PlusInfinity();
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DataRate delay_based_estimate_ = DataRate::PlusInfinity();
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LossBasedBweV2::Result loss_based_result_ = LossBasedBweV2::Result();
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HoldInfo last_hold_info_ = HoldInfo();
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PaddingInfo last_padding_info_ = PaddingInfo();
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};
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} // namespace webrtc
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#endif // MODULES_CONGESTION_CONTROLLER_GOOG_CC_LOSS_BASED_BWE_V2_H_
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