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This is search and replace change: find . -type f \( -name "*.h" -o -name "*.cc" \) | xargs sed -i -e "s/DataSize::Bytes<\(.*\)>()/DataSize::Bytes(\1)/g" find . -type f \( -name "*.h" -o -name "*.cc" \) | xargs sed -i -e "s/DataSize::bytes/DataSize::Bytes/g" find . -type f \( -name "*.h" -o -name "*.cc" \) | xargs sed -i -e "s/DataRate::BitsPerSec<\(.*\)>()/DataRate::BitsPerSec(\1)/g" find . -type f \( -name "*.h" -o -name "*.cc" \) | xargs sed -i -e "s/DataRate::BytesPerSec<\(.*\)>()/DataRate::BytesPerSec(\1)/g" find . -type f \( -name "*.h" -o -name "*.cc" \) | xargs sed -i -e "s/DataRate::KilobitsPerSec<\(.*\)>()/DataRate::KilobitsPerSec(\1)/g" find . -type f \( -name "*.h" -o -name "*.cc" \) | xargs sed -i -e "s/DataRate::bps/DataRate::BitsPerSec/g" find . -type f \( -name "*.h" -o -name "*.cc" \) | xargs sed -i -e "s/DataRate::kbps/DataRate::KilobitsPerSec/g" git cl format Bug: webrtc:9709 Change-Id: I65aaca69474ba038c1fe2dd8dc30d3f8e7b94c29 Reviewed-on: https://webrtc-review.googlesource.com/c/src/+/168647 Reviewed-by: Karl Wiberg <kwiberg@webrtc.org> Commit-Queue: Danil Chapovalov <danilchap@webrtc.org> Cr-Commit-Position: refs/heads/master@{#30545}
216 lines
7.4 KiB
C++
216 lines
7.4 KiB
C++
/*
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* Copyright (c) 2014 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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#include "modules/pacing/bitrate_prober.h"
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#include <algorithm>
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#include "test/gtest.h"
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namespace webrtc {
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TEST(BitrateProberTest, VerifyStatesAndTimeBetweenProbes) {
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const FieldTrialBasedConfig config;
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BitrateProber prober(config);
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EXPECT_FALSE(prober.IsProbing());
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Timestamp now = Timestamp::Millis(0);
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const Timestamp start_time = now;
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EXPECT_EQ(prober.NextProbeTime(now), Timestamp::PlusInfinity());
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const DataRate kTestBitrate1 = DataRate::KilobitsPerSec(900);
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const DataRate kTestBitrate2 = DataRate::KilobitsPerSec(1800);
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const int kClusterSize = 5;
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const int kProbeSize = 1000;
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const TimeDelta kMinProbeDuration = TimeDelta::Millis(15);
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prober.CreateProbeCluster(kTestBitrate1, now, 0);
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prober.CreateProbeCluster(kTestBitrate2, now, 1);
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EXPECT_FALSE(prober.IsProbing());
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prober.OnIncomingPacket(kProbeSize);
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EXPECT_TRUE(prober.IsProbing());
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EXPECT_EQ(0, prober.CurrentCluster().probe_cluster_id);
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// First packet should probe as soon as possible.
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EXPECT_EQ(Timestamp::MinusInfinity(), prober.NextProbeTime(now));
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for (int i = 0; i < kClusterSize; ++i) {
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now = std::max(now, prober.NextProbeTime(now));
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EXPECT_EQ(now, std::max(now, prober.NextProbeTime(now)));
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EXPECT_EQ(0, prober.CurrentCluster().probe_cluster_id);
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prober.ProbeSent(now, kProbeSize);
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}
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EXPECT_GE(now - start_time, kMinProbeDuration);
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// Verify that the actual bitrate is withing 10% of the target.
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DataRate bitrate =
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DataSize::Bytes(kProbeSize * (kClusterSize - 1)) / (now - start_time);
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EXPECT_GT(bitrate, kTestBitrate1 * 0.9);
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EXPECT_LT(bitrate, kTestBitrate1 * 1.1);
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now = std::max(now, prober.NextProbeTime(now));
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Timestamp probe2_started = now;
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for (int i = 0; i < kClusterSize; ++i) {
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now = std::max(now, prober.NextProbeTime(now));
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EXPECT_EQ(now, std::max(now, prober.NextProbeTime(now)));
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EXPECT_EQ(1, prober.CurrentCluster().probe_cluster_id);
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prober.ProbeSent(now, kProbeSize);
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}
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// Verify that the actual bitrate is withing 10% of the target.
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TimeDelta duration = now - probe2_started;
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EXPECT_GE(duration, kMinProbeDuration);
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bitrate = DataSize::Bytes(kProbeSize * (kClusterSize - 1)) / duration;
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EXPECT_GT(bitrate, kTestBitrate2 * 0.9);
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EXPECT_LT(bitrate, kTestBitrate2 * 1.1);
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EXPECT_EQ(prober.NextProbeTime(now), Timestamp::PlusInfinity());
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EXPECT_FALSE(prober.IsProbing());
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}
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TEST(BitrateProberTest, DoesntProbeWithoutRecentPackets) {
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const FieldTrialBasedConfig config;
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BitrateProber prober(config);
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Timestamp now = Timestamp::Zero();
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EXPECT_EQ(prober.NextProbeTime(now), Timestamp::PlusInfinity());
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prober.CreateProbeCluster(DataRate::KilobitsPerSec(900), now, 0);
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EXPECT_FALSE(prober.IsProbing());
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prober.OnIncomingPacket(1000);
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EXPECT_TRUE(prober.IsProbing());
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EXPECT_EQ(now, std::max(now, prober.NextProbeTime(now)));
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prober.ProbeSent(now, 1000);
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// Let time pass, no large enough packets put into prober.
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now += TimeDelta::Seconds(6);
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EXPECT_EQ(prober.NextProbeTime(now), Timestamp::PlusInfinity());
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// Check that legacy behaviour where prober is reset in TimeUntilNextProbe is
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// no longer there. Probes are no longer retried if they are timed out.
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prober.OnIncomingPacket(1000);
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EXPECT_EQ(prober.NextProbeTime(now), Timestamp::PlusInfinity());
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}
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TEST(BitrateProberTest, DoesntInitializeProbingForSmallPackets) {
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const FieldTrialBasedConfig config;
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BitrateProber prober(config);
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prober.SetEnabled(true);
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EXPECT_FALSE(prober.IsProbing());
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prober.OnIncomingPacket(100);
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EXPECT_FALSE(prober.IsProbing());
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}
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TEST(BitrateProberTest, VerifyProbeSizeOnHighBitrate) {
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const FieldTrialBasedConfig config;
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BitrateProber prober(config);
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const DataRate kHighBitrate = DataRate::KilobitsPerSec(10000); // 10 Mbps
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prober.CreateProbeCluster(kHighBitrate, Timestamp::Millis(0),
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/*cluster_id=*/0);
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// Probe size should ensure a minimum of 1 ms interval.
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EXPECT_GT(prober.RecommendedMinProbeSize(),
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(kHighBitrate * TimeDelta::Millis(1)).bytes<size_t>());
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}
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TEST(BitrateProberTest, MinumumNumberOfProbingPackets) {
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const FieldTrialBasedConfig config;
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BitrateProber prober(config);
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// Even when probing at a low bitrate we expect a minimum number
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// of packets to be sent.
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const DataRate kBitrate = DataRate::KilobitsPerSec(100);
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const int kPacketSizeBytes = 1000;
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Timestamp now = Timestamp::Millis(0);
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prober.CreateProbeCluster(kBitrate, now, 0);
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prober.OnIncomingPacket(kPacketSizeBytes);
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for (int i = 0; i < 5; ++i) {
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EXPECT_TRUE(prober.IsProbing());
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prober.ProbeSent(now, kPacketSizeBytes);
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}
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EXPECT_FALSE(prober.IsProbing());
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}
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TEST(BitrateProberTest, ScaleBytesUsedForProbing) {
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const FieldTrialBasedConfig config;
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BitrateProber prober(config);
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const DataRate kBitrate = DataRate::KilobitsPerSec(10000); // 10 Mbps.
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const int kPacketSizeBytes = 1000;
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const int kExpectedBytesSent = (kBitrate * TimeDelta::Millis(15)).bytes();
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Timestamp now = Timestamp::Millis(0);
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prober.CreateProbeCluster(kBitrate, now, /*cluster_id=*/0);
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prober.OnIncomingPacket(kPacketSizeBytes);
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int bytes_sent = 0;
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while (bytes_sent < kExpectedBytesSent) {
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ASSERT_TRUE(prober.IsProbing());
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prober.ProbeSent(now, kPacketSizeBytes);
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bytes_sent += kPacketSizeBytes;
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}
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EXPECT_FALSE(prober.IsProbing());
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}
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TEST(BitrateProberTest, HighBitrateProbing) {
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const FieldTrialBasedConfig config;
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BitrateProber prober(config);
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const DataRate kBitrate = DataRate::KilobitsPerSec(1000000); // 1 Gbps.
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const int kPacketSizeBytes = 1000;
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const int kExpectedBytesSent = (kBitrate * TimeDelta::Millis(15)).bytes();
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Timestamp now = Timestamp::Millis(0);
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prober.CreateProbeCluster(kBitrate, now, 0);
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prober.OnIncomingPacket(kPacketSizeBytes);
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int bytes_sent = 0;
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while (bytes_sent < kExpectedBytesSent) {
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ASSERT_TRUE(prober.IsProbing());
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prober.ProbeSent(now, kPacketSizeBytes);
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bytes_sent += kPacketSizeBytes;
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}
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EXPECT_FALSE(prober.IsProbing());
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}
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TEST(BitrateProberTest, ProbeClusterTimeout) {
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const FieldTrialBasedConfig config;
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BitrateProber prober(config);
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const DataRate kBitrate = DataRate::KilobitsPerSec(300);
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const int kSmallPacketSize = 20;
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// Expecting two probe clusters of 5 packets each.
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const int kExpectedBytesSent = 20 * 2 * 5;
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const TimeDelta kTimeout = TimeDelta::Millis(5000);
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Timestamp now = Timestamp::Millis(0);
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prober.CreateProbeCluster(kBitrate, now, /*cluster_id=*/0);
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prober.OnIncomingPacket(kSmallPacketSize);
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EXPECT_FALSE(prober.IsProbing());
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now += kTimeout;
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prober.CreateProbeCluster(kBitrate / 10, now, /*cluster_id=*/1);
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prober.OnIncomingPacket(kSmallPacketSize);
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EXPECT_FALSE(prober.IsProbing());
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now += TimeDelta::Millis(1);
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prober.CreateProbeCluster(kBitrate / 10, now, /*cluster_id=*/2);
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prober.OnIncomingPacket(kSmallPacketSize);
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EXPECT_TRUE(prober.IsProbing());
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int bytes_sent = 0;
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while (bytes_sent < kExpectedBytesSent) {
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ASSERT_TRUE(prober.IsProbing());
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prober.ProbeSent(now, kSmallPacketSize);
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bytes_sent += kSmallPacketSize;
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}
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EXPECT_FALSE(prober.IsProbing());
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}
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} // namespace webrtc
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