Revert "Continue probing if networkstat estimate increase"
This reverts commit dd7dc25a30c5841e6620d195b83058a22ffff7cd. Reason for revert: Bug in CL. Continuously probe if experiment for probing based on the link capacity is enabled. Original change's description: > Continue probing if networkstat estimate increase > > This fixes an issue where continues probing stops if networkstate estimate is low when a probe is sent, but increase as a consequence of the probe. > > > Bug: webrtc:14392 > Change-Id: Id1d703f7efc824a6a6f8d899c367660291bd88c8 > Reviewed-on: https://webrtc-review.googlesource.com/c/src/+/282941 > Reviewed-by: Diep Bui <diepbp@webrtc.org> > Commit-Queue: Per Kjellander <perkj@webrtc.org> > Cr-Commit-Position: refs/heads/main@{#38606} Bug: webrtc:14392 Change-Id: Ib241b190951a78c436188c0b83d0247bf7d0dddd No-Presubmit: true No-Tree-Checks: true No-Try: true Reviewed-on: https://webrtc-review.googlesource.com/c/src/+/283080 Auto-Submit: Per Kjellander <perkj@webrtc.org> Commit-Queue: Per Kjellander <perkj@webrtc.org> Bot-Commit: rubber-stamper@appspot.gserviceaccount.com <rubber-stamper@appspot.gserviceaccount.com> Cr-Commit-Position: refs/heads/main@{#38609}
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WebRTC LUCI CQ

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a3e51df5f3
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95c950af03
@ -468,13 +468,25 @@ std::vector<ProbeClusterConfig> ProbeController::InitiateProbing(
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: std::min(max_total_allocated_bitrate_, max_bitrate_);
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if (std::min(network_estimate, estimated_bitrate_) >
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config_.skip_if_estimate_larger_than_fraction_of_max * max_probe_rate) {
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state_ = State::kProbingComplete;
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min_bitrate_to_probe_further_ = DataRate::PlusInfinity();
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return {};
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}
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}
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DataRate max_probe_bitrate = max_bitrate_;
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if (bwe_limited_due_to_packet_loss_ &&
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config_.limit_probe_target_rate_to_loss_bwe) {
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max_probe_bitrate = std::min(estimated_bitrate_, max_bitrate_);
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}
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if (config_.network_state_estimate_probing_interval->IsFinite() &&
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network_estimate_ && network_estimate_->link_capacity_upper.IsFinite()) {
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if (network_estimate_->link_capacity_upper.IsZero()) {
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RTC_LOG(LS_INFO) << "Not sending probe, Network state estimate is zero";
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return {};
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}
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max_probe_bitrate =
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std::min(max_probe_bitrate, network_estimate_->link_capacity_upper *
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config_.network_state_probe_scale);
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}
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if (max_total_allocated_bitrate_ > DataRate::Zero()) {
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// If a max allocated bitrate has been configured, allow probing up to 2x
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// that rate. This allows some overhead to account for bursty streams,
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@ -486,28 +498,10 @@ std::vector<ProbeClusterConfig> ProbeController::InitiateProbing(
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std::min(max_probe_bitrate, max_total_allocated_bitrate_ * 2);
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}
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DataRate estimate_capped_bitrate = DataRate::PlusInfinity();
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if (bwe_limited_due_to_packet_loss_ &&
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config_.limit_probe_target_rate_to_loss_bwe) {
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estimate_capped_bitrate = std::min(estimated_bitrate_, max_probe_bitrate);
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}
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if (config_.network_state_estimate_probing_interval->IsFinite() &&
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network_estimate_ && network_estimate_->link_capacity_upper.IsFinite()) {
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if (network_estimate_->link_capacity_upper.IsZero()) {
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RTC_LOG(LS_INFO) << "Not sending probe, Network state estimate is zero";
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return {};
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}
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estimate_capped_bitrate =
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std::min({estimate_capped_bitrate, max_probe_bitrate,
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network_estimate_->link_capacity_upper *
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config_.network_state_probe_scale});
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}
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std::vector<ProbeClusterConfig> pending_probes;
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for (DataRate bitrate : bitrates_to_probe) {
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RTC_DCHECK(!bitrate.IsZero());
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bitrate = std::min(bitrate, estimate_capped_bitrate);
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if (bitrate > max_probe_bitrate) {
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bitrate = max_probe_bitrate;
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probe_further = false;
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@ -533,8 +527,7 @@ std::vector<ProbeClusterConfig> ProbeController::InitiateProbing(
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if (probe_further) {
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state_ = State::kWaitingForProbingResult;
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min_bitrate_to_probe_further_ =
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std::min(estimate_capped_bitrate, (*(bitrates_to_probe.end() - 1))) *
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config_.further_probe_threshold;
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(*(bitrates_to_probe.end() - 1)) * config_.further_probe_threshold;
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} else {
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state_ = State::kProbingComplete;
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min_bitrate_to_probe_further_ = DataRate::PlusInfinity();
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@ -789,42 +789,6 @@ TEST(ProbeControllerTest, ProbeFurtherWhenDelayBasedLimited) {
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EXPECT_EQ(probes[0].target_data_rate, state_estimate.link_capacity_upper);
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}
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TEST(ProbeControllerTest,
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ProbeFurtherIfNetworkStateEstimateIncreaseAfterProbeSent) {
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ProbeControllerFixture fixture(
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"WebRTC-Bwe-ProbingConfiguration/"
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"network_state_interval:5s,limit_probe_target_rate_to_loss_bwe:true/");
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std::unique_ptr<ProbeController> probe_controller =
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fixture.CreateController();
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auto probes = probe_controller->SetBitrates(
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kMinBitrate, kStartBitrate, kMaxBitrate, fixture.CurrentTime());
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ASSERT_FALSE(probes.empty());
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NetworkStateEstimate state_estimate;
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state_estimate.link_capacity_upper = 1.2 * probes[0].target_data_rate / 2;
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probe_controller->SetNetworkStateEstimate(state_estimate);
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// No immediate further probing since probe result is low.
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probes = probe_controller->SetEstimatedBitrate(
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probes[0].target_data_rate / 2, /*bwe_limited_due_to_packet_loss=*/false,
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fixture.CurrentTime());
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ASSERT_TRUE(probes.empty());
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fixture.AdvanceTime(TimeDelta::Seconds(5));
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probes = probe_controller->Process(fixture.CurrentTime());
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ASSERT_FALSE(probes.empty());
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EXPECT_LE(probes[0].target_data_rate, state_estimate.link_capacity_upper);
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// If the network state estimate increase above the threshold to probe
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// further, and the probe suceeed, expect a new probe.
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state_estimate.link_capacity_upper = 3 * kStartBitrate;
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probe_controller->SetNetworkStateEstimate(state_estimate);
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probes = probe_controller->SetEstimatedBitrate(
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probes[0].target_data_rate, /*bwe_limited_due_to_packet_loss=*/false,
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fixture.CurrentTime());
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EXPECT_FALSE(probes.empty());
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}
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TEST(ProbeControllerTest, SkipAlrProbeIfEstimateLargerThanMaxProbe) {
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ProbeControllerFixture fixture(
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"WebRTC-Bwe-ProbingConfiguration/"
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