169 lines
5.5 KiB
C++
169 lines
5.5 KiB
C++
/*
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* Copyright 2015 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 "webrtc/base/gunit.h"
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#include "webrtc/base/ratetracker.h"
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namespace rtc {
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namespace {
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const uint32_t kBucketIntervalMs = 100;
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} // namespace
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class RateTrackerForTest : public RateTracker {
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public:
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RateTrackerForTest() : RateTracker(kBucketIntervalMs, 10u), time_(0) {}
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virtual int64_t Time() const { return time_; }
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void AdvanceTime(int delta) { time_ += delta; }
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private:
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int64_t time_;
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};
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TEST(RateTrackerTest, Test30FPS) {
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RateTrackerForTest tracker;
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for (int i = 0; i < 300; ++i) {
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tracker.AddSamples(1);
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tracker.AdvanceTime(33);
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if (i % 3 == 0) {
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tracker.AdvanceTime(1);
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}
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}
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EXPECT_DOUBLE_EQ(30.0, tracker.ComputeRateForInterval(50000));
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}
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TEST(RateTrackerTest, Test60FPS) {
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RateTrackerForTest tracker;
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for (int i = 0; i < 300; ++i) {
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tracker.AddSamples(1);
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tracker.AdvanceTime(16);
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if (i % 3 != 0) {
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tracker.AdvanceTime(1);
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}
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}
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EXPECT_DOUBLE_EQ(60.0, tracker.ComputeRateForInterval(1000));
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}
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TEST(RateTrackerTest, TestRateTrackerBasics) {
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RateTrackerForTest tracker;
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EXPECT_DOUBLE_EQ(0.0, tracker.ComputeRateForInterval(1000));
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// Add a sample.
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tracker.AddSamples(1234);
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// Advance the clock by less than one bucket interval (no rate returned).
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tracker.AdvanceTime(kBucketIntervalMs - 1);
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EXPECT_DOUBLE_EQ(0.0, tracker.ComputeRate());
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// Advance the clock by 100 ms (one bucket interval).
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tracker.AdvanceTime(1);
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EXPECT_DOUBLE_EQ(12340.0, tracker.ComputeRateForInterval(1000));
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EXPECT_DOUBLE_EQ(12340.0, tracker.ComputeRate());
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EXPECT_EQ(1234U, tracker.TotalSampleCount());
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EXPECT_DOUBLE_EQ(12340.0, tracker.ComputeTotalRate());
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// Repeat.
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tracker.AddSamples(1234);
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tracker.AdvanceTime(100);
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EXPECT_DOUBLE_EQ(12340.0, tracker.ComputeRateForInterval(1000));
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EXPECT_DOUBLE_EQ(12340.0, tracker.ComputeRate());
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EXPECT_EQ(1234U * 2, tracker.TotalSampleCount());
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EXPECT_DOUBLE_EQ(12340.0, tracker.ComputeTotalRate());
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// Advance the clock by 800 ms, so we've elapsed a full second.
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// units_second should now be filled in properly.
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tracker.AdvanceTime(800);
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EXPECT_DOUBLE_EQ(1234.0 * 2.0, tracker.ComputeRateForInterval(1000));
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EXPECT_DOUBLE_EQ(1234.0 * 2.0, tracker.ComputeRate());
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EXPECT_EQ(1234U * 2, tracker.TotalSampleCount());
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EXPECT_DOUBLE_EQ(1234.0 * 2.0, tracker.ComputeTotalRate());
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// Poll the tracker again immediately. The reported rate should stay the same.
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EXPECT_DOUBLE_EQ(1234.0 * 2.0, tracker.ComputeRateForInterval(1000));
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EXPECT_DOUBLE_EQ(1234.0 * 2.0, tracker.ComputeRate());
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EXPECT_EQ(1234U * 2, tracker.TotalSampleCount());
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EXPECT_DOUBLE_EQ(1234.0 * 2.0, tracker.ComputeTotalRate());
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// Do nothing and advance by a second. We should drop down to zero.
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tracker.AdvanceTime(1000);
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EXPECT_DOUBLE_EQ(0.0, tracker.ComputeRateForInterval(1000));
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EXPECT_DOUBLE_EQ(0.0, tracker.ComputeRate());
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EXPECT_EQ(1234U * 2, tracker.TotalSampleCount());
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EXPECT_DOUBLE_EQ(1234.0, tracker.ComputeTotalRate());
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// Send a bunch of data at a constant rate for 5.5 "seconds".
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// We should report the rate properly.
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for (int i = 0; i < 5500; i += 100) {
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tracker.AddSamples(9876U);
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tracker.AdvanceTime(100);
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}
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EXPECT_DOUBLE_EQ(9876.0 * 10.0, tracker.ComputeRateForInterval(1000));
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EXPECT_DOUBLE_EQ(9876.0 * 10.0, tracker.ComputeRate());
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EXPECT_EQ(1234U * 2 + 9876U * 55, tracker.TotalSampleCount());
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EXPECT_DOUBLE_EQ((1234.0 * 2.0 + 9876.0 * 55.0) / 7.5,
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tracker.ComputeTotalRate());
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// Advance the clock by 500 ms. Since we sent nothing over this half-second,
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// the reported rate should be reduced by half.
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tracker.AdvanceTime(500);
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EXPECT_DOUBLE_EQ(9876.0 * 5.0, tracker.ComputeRateForInterval(1000));
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EXPECT_DOUBLE_EQ(9876.0 * 5.0, tracker.ComputeRate());
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EXPECT_EQ(1234U * 2 + 9876U * 55, tracker.TotalSampleCount());
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EXPECT_DOUBLE_EQ((1234.0 * 2.0 + 9876.0 * 55.0) / 8.0,
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tracker.ComputeTotalRate());
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// Rate over the last half second should be zero.
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EXPECT_DOUBLE_EQ(0.0, tracker.ComputeRateForInterval(500));
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}
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TEST(RateTrackerTest, TestLongPeriodBetweenSamples) {
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RateTrackerForTest tracker;
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tracker.AddSamples(1);
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tracker.AdvanceTime(1000);
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EXPECT_DOUBLE_EQ(1.0, tracker.ComputeRate());
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tracker.AdvanceTime(2000);
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EXPECT_DOUBLE_EQ(0.0, tracker.ComputeRate());
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tracker.AdvanceTime(2000);
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tracker.AddSamples(1);
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EXPECT_DOUBLE_EQ(1.0, tracker.ComputeRate());
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}
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TEST(RateTrackerTest, TestRolloff) {
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RateTrackerForTest tracker;
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for (int i = 0; i < 10; ++i) {
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tracker.AddSamples(1U);
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tracker.AdvanceTime(100);
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}
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EXPECT_DOUBLE_EQ(10.0, tracker.ComputeRate());
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for (int i = 0; i < 10; ++i) {
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tracker.AddSamples(1U);
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tracker.AdvanceTime(50);
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}
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EXPECT_DOUBLE_EQ(15.0, tracker.ComputeRate());
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EXPECT_DOUBLE_EQ(20.0, tracker.ComputeRateForInterval(500));
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for (int i = 0; i < 10; ++i) {
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tracker.AddSamples(1U);
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tracker.AdvanceTime(50);
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}
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EXPECT_DOUBLE_EQ(20.0, tracker.ComputeRate());
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}
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TEST(RateTrackerTest, TestGetUnitSecondsAfterInitialValue) {
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RateTrackerForTest tracker;
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tracker.AddSamples(1234);
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tracker.AdvanceTime(1000);
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EXPECT_DOUBLE_EQ(1234.0, tracker.ComputeRateForInterval(1000));
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}
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} // namespace rtc
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