Revert of Update the BWE when the network route changes. (patchset #5 id:180001 of https://codereview.webrtc.org/2000063003/ )
Reason for revert: Speculative revert due to failure in Mac Tester FYI bot. See https://build.chromium.org/p/chromium.webrtc.fyi/builders/Mac%20Tester/builds/30642 Will reland if the revert doesn't fix the bot. Original issue's description: > Update the BWE when the network route changes. > > BUG= > > Committed: https://crrev.com/2221e1cd1dd19ae16c87c14bbea92fa62d15154d > Cr-Commit-Position: refs/heads/master@{#13021} TBR=stefan@webrtc.org,pthatcher@webrtc.org,honghaiz@webrtc.org # Skipping CQ checks because original CL landed less than 1 days ago. NOPRESUBMIT=true NOTREECHECKS=true NOTRY=true BUG= Review-Url: https://codereview.webrtc.org/2030283002 Cr-Commit-Position: refs/heads/master@{#13023}
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@ -626,13 +626,9 @@ void Call::OnNetworkRouteChanged(const std::string& transport_name,
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kv->second = network_route;
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LOG(LS_INFO) << "Network route changed on transport " << transport_name
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<< ": new local network id " << network_route.local_network_id
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<< " new remote network id " << network_route.remote_network_id
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<< " Reset bitrate to "
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<< config_.bitrate_config.start_bitrate_bps << "bps";
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congestion_controller_->ResetBweAndBitrates(
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config_.bitrate_config.start_bitrate_bps,
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config_.bitrate_config.min_bitrate_bps,
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config_.bitrate_config.max_bitrate_bps);
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<< " new remote network id "
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<< network_route.remote_network_id;
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// TODO(holmer): Update the BWE bitrates.
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}
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}
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@ -138,18 +138,6 @@ void BitrateControllerImpl::SetBitrates(int start_bitrate_bps,
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MaybeTriggerOnNetworkChanged();
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}
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void BitrateControllerImpl::ResetBitrates(int bitrate_bps,
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int min_bitrate_bps,
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int max_bitrate_bps) {
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{
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rtc::CritScope cs(&critsect_);
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bandwidth_estimation_ = SendSideBandwidthEstimation();
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bandwidth_estimation_.SetBitrates(bitrate_bps, min_bitrate_bps,
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max_bitrate_bps);
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}
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MaybeTriggerOnNetworkChanged();
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}
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void BitrateControllerImpl::SetReservedBitrate(uint32_t reserved_bitrate_bps) {
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{
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rtc::CritScope cs(&critsect_);
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@ -46,10 +46,6 @@ class BitrateControllerImpl : public BitrateController {
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int min_bitrate_bps,
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int max_bitrate_bps) override;
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void ResetBitrates(int bitrate_bps,
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int min_bitrate_bps,
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int max_bitrate_bps) override;
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void UpdateDelayBasedEstimate(uint32_t bitrate_bps) override;
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void SetReservedBitrate(uint32_t reserved_bitrate_bps) override;
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@ -70,10 +70,6 @@ class BitrateController : public Module {
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int min_bitrate_bps,
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int max_bitrate_bps) = 0;
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virtual void ResetBitrates(int bitrate_bps,
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int min_bitrate_bps,
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int max_bitrate_bps) = 0;
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virtual void UpdateDelayBasedEstimate(uint32_t bitrate_bps) = 0;
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virtual void SetEventLog(RtcEventLog* event_log) = 0;
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@ -35,8 +35,6 @@ class MockBitrateController : public BitrateController {
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void(int start_bitrate_bps,
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int min_bitrate_bps,
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int max_bitrate_bps));
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MOCK_METHOD3(ResetBitrates,
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void(int bitrate_bps, int min_bitrate_bps, int max_bitrate_bps));
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MOCK_METHOD1(UpdateDelayBasedEstimate, void(uint32_t bitrate_bps));
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MOCK_METHOD1(SetEventLog, void(RtcEventLog* event_log));
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MOCK_CONST_METHOD1(AvailableBandwidth, bool(uint32_t* bandwidth));
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@ -32,22 +32,6 @@ namespace {
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static const uint32_t kTimeOffsetSwitchThreshold = 30;
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// Makes sure that the bitrate and the min, max values are in valid range.
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static void ClampBitrates(int* bitrate_bps,
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int* min_bitrate_bps,
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int* max_bitrate_bps) {
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// TODO(holmer): We should make sure the default bitrates are set to 10 kbps,
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// and that we don't try to set the min bitrate to 0 from any applications.
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// The congestion controller should allow a min bitrate of 0.
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const int kMinBitrateBps = 10000;
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if (*min_bitrate_bps < kMinBitrateBps)
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*min_bitrate_bps = kMinBitrateBps;
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if (*max_bitrate_bps > 0)
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*max_bitrate_bps = std::max(*min_bitrate_bps, *max_bitrate_bps);
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if (*bitrate_bps > 0)
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*bitrate_bps = std::max(*min_bitrate_bps, *bitrate_bps);
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}
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class WrappingBitrateEstimator : public RemoteBitrateEstimator {
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public:
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WrappingBitrateEstimator(RemoteBitrateObserver* observer, Clock* clock)
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@ -228,10 +212,21 @@ void CongestionController::Init() {
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min_bitrate_bps_);
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}
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void CongestionController::SetBweBitrates(int min_bitrate_bps,
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int start_bitrate_bps,
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int max_bitrate_bps) {
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ClampBitrates(&start_bitrate_bps, &min_bitrate_bps, &max_bitrate_bps);
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// TODO(holmer): We should make sure the default bitrates are set to 10 kbps,
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// and that we don't try to set the min bitrate to 0 from any applications.
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// The congestion controller should allow a min bitrate of 0.
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const int kMinBitrateBps = 10000;
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if (min_bitrate_bps < kMinBitrateBps)
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min_bitrate_bps = kMinBitrateBps;
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if (max_bitrate_bps > 0)
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max_bitrate_bps = std::max(min_bitrate_bps, max_bitrate_bps);
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if (start_bitrate_bps > 0)
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start_bitrate_bps = std::max(min_bitrate_bps, start_bitrate_bps);
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bitrate_controller_->SetBitrates(start_bitrate_bps,
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min_bitrate_bps,
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max_bitrate_bps);
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@ -244,28 +239,6 @@ void CongestionController::SetBweBitrates(int min_bitrate_bps,
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MaybeTriggerOnNetworkChanged();
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}
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void CongestionController::ResetBweAndBitrates(int bitrate_bps,
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int min_bitrate_bps,
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int max_bitrate_bps) {
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ClampBitrates(&bitrate_bps, &min_bitrate_bps, &max_bitrate_bps);
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// TODO(honghaiz): Recreate this object once the bitrate controller is
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// no longer exposed outside CongestionController.
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bitrate_controller_->ResetBitrates(bitrate_bps, min_bitrate_bps,
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max_bitrate_bps);
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min_bitrate_bps_ = min_bitrate_bps;
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// TODO(honghaiz): Recreate this object once the remote bitrate estimator is
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// no longer exposed outside CongestionController.
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if (remote_bitrate_estimator_)
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remote_bitrate_estimator_->SetMinBitrate(min_bitrate_bps);
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RemoteBitrateEstimator* rbe =
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new RemoteBitrateEstimatorAbsSendTime(&transport_feedback_adapter_);
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transport_feedback_adapter_.SetBitrateEstimator(rbe);
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rbe->SetMinBitrate(min_bitrate_bps);
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// TODO(holmer): Trigger a new probe once mid-call probing is implemented.
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MaybeTriggerOnNetworkChanged();
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}
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BitrateController* CongestionController::GetBitrateController() const {
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return bitrate_controller_.get();
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}
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@ -124,20 +124,6 @@ TEST_F(CongestionControllerTest, SignalNetworkState) {
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controller_->SignalNetworkState(kNetworkDown);
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}
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TEST_F(CongestionControllerTest, ResetBweAndBitrates) {
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int new_bitrate = 200000;
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EXPECT_CALL(observer_, OnNetworkChanged(new_bitrate, _, _));
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EXPECT_CALL(*pacer_, SetEstimatedBitrate(new_bitrate));
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controller_->ResetBweAndBitrates(new_bitrate, -1, -1);
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// If the bitrate is reset to -1, the new starting bitrate will be
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// the minimum default bitrate 10000bps.
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int min_default_bitrate = 10000;
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EXPECT_CALL(observer_, OnNetworkChanged(min_default_bitrate, _, _));
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EXPECT_CALL(*pacer_, SetEstimatedBitrate(min_default_bitrate));
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controller_->ResetBweAndBitrates(-1, -1, -1);
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}
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TEST_F(CongestionControllerTest,
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SignalNetworkStateAndQueueIsFullAndEstimateChange) {
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// Send queue is full
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@ -70,11 +70,6 @@ class CongestionController : public CallStatsObserver, public Module {
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virtual void SetBweBitrates(int min_bitrate_bps,
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int start_bitrate_bps,
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int max_bitrate_bps);
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// Resets both the BWE state and the bitrate estimator. Note the first
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// argument is the bitrate_bps.
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virtual void ResetBweAndBitrates(int bitrate_bps,
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int min_bitrate_bps,
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int max_bitrate_bps);
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virtual void SignalNetworkState(NetworkState state);
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virtual BitrateController* GetBitrateController() const;
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virtual RemoteBitrateEstimator* GetRemoteBitrateEstimator(
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