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Sebastian Jansson30bd4032018-04-13 13:56:17 +02001/*
2 * Copyright (c) 2018 The WebRTC project authors. All Rights Reserved.
3 *
4 * Use of this source code is governed by a BSD-style license
5 * that can be found in the LICENSE file in the root of the source
6 * tree. An additional intellectual property rights grant can be found
7 * in the file PATENTS. All contributing project authors may
8 * be found in the AUTHORS file in the root of the source tree.
9 */
10
Sebastian Jansson6fae6ec2018-05-08 10:43:18 +020011#include "api/units/data_rate.h"
Sebastian Janssonb1138622019-04-11 16:48:15 +020012#include "rtc_base/logging.h"
Sebastian Jansson30bd4032018-04-13 13:56:17 +020013#include "test/gtest.h"
14
15namespace webrtc {
16namespace test {
Sebastian Jansson8e064192018-08-07 12:34:33 +020017
Sebastian Janssonb1138622019-04-11 16:48:15 +020018TEST(DataRateTest, CompilesWithChecksAndLogs) {
19 DataRate a = DataRate::kbps(300);
20 DataRate b = DataRate::kbps(210);
21 RTC_CHECK_GT(a, b);
22 RTC_LOG(LS_INFO) << a;
23}
24
Sebastian Jansson8e064192018-08-07 12:34:33 +020025TEST(DataRateTest, ConstExpr) {
Sebastian Janssonc1c8b8e2018-08-07 15:29:04 +020026 constexpr int64_t kValue = 12345;
Sebastian Jansson8e064192018-08-07 12:34:33 +020027 constexpr DataRate kDataRateZero = DataRate::Zero();
28 constexpr DataRate kDataRateInf = DataRate::Infinity();
29 static_assert(kDataRateZero.IsZero(), "");
30 static_assert(kDataRateInf.IsInfinite(), "");
Sebastian Janssonc1c8b8e2018-08-07 15:29:04 +020031 static_assert(kDataRateInf.bps_or(-1) == -1, "");
32 static_assert(kDataRateInf > kDataRateZero, "");
33
34 constexpr DataRate kDataRateBps = DataRate::BitsPerSec<kValue>();
35 constexpr DataRate kDataRateKbps = DataRate::KilobitsPerSec<kValue>();
36 static_assert(kDataRateBps.bps<double>() == kValue, "");
37 static_assert(kDataRateBps.bps_or(0) == kValue, "");
38 static_assert(kDataRateKbps.kbps_or(0) == kValue, "");
Sebastian Jansson8e064192018-08-07 12:34:33 +020039}
40
Sebastian Jansson30bd4032018-04-13 13:56:17 +020041TEST(DataRateTest, GetBackSameValues) {
42 const int64_t kValue = 123 * 8;
Sebastian Jansson30bd4032018-04-13 13:56:17 +020043 EXPECT_EQ(DataRate::bps(kValue).bps(), kValue);
44 EXPECT_EQ(DataRate::kbps(kValue).kbps(), kValue);
45}
46
47TEST(DataRateTest, GetDifferentPrefix) {
48 const int64_t kValue = 123 * 8000;
Sebastian Jansson30bd4032018-04-13 13:56:17 +020049 EXPECT_EQ(DataRate::bps(kValue).kbps(), kValue / 1000);
50}
51
52TEST(DataRateTest, IdentityChecks) {
53 const int64_t kValue = 3000;
54 EXPECT_TRUE(DataRate::Zero().IsZero());
Sebastian Jansson942b3602018-05-30 15:47:44 +020055 EXPECT_FALSE(DataRate::bps(kValue).IsZero());
Sebastian Jansson30bd4032018-04-13 13:56:17 +020056
57 EXPECT_TRUE(DataRate::Infinity().IsInfinite());
58 EXPECT_FALSE(DataRate::Zero().IsInfinite());
Sebastian Jansson942b3602018-05-30 15:47:44 +020059 EXPECT_FALSE(DataRate::bps(kValue).IsInfinite());
Sebastian Jansson30bd4032018-04-13 13:56:17 +020060
61 EXPECT_FALSE(DataRate::Infinity().IsFinite());
Sebastian Jansson942b3602018-05-30 15:47:44 +020062 EXPECT_TRUE(DataRate::bps(kValue).IsFinite());
Sebastian Jansson30bd4032018-04-13 13:56:17 +020063 EXPECT_TRUE(DataRate::Zero().IsFinite());
64}
65
66TEST(DataRateTest, ComparisonOperators) {
67 const int64_t kSmall = 450;
68 const int64_t kLarge = 451;
Sebastian Jansson942b3602018-05-30 15:47:44 +020069 const DataRate small = DataRate::bps(kSmall);
70 const DataRate large = DataRate::bps(kLarge);
Sebastian Jansson30bd4032018-04-13 13:56:17 +020071
72 EXPECT_EQ(DataRate::Zero(), DataRate::bps(0));
73 EXPECT_EQ(DataRate::Infinity(), DataRate::Infinity());
74 EXPECT_EQ(small, small);
75 EXPECT_LE(small, small);
76 EXPECT_GE(small, small);
77 EXPECT_NE(small, large);
78 EXPECT_LE(small, large);
79 EXPECT_LT(small, large);
80 EXPECT_GE(large, small);
81 EXPECT_GT(large, small);
82 EXPECT_LT(DataRate::Zero(), small);
83 EXPECT_GT(DataRate::Infinity(), large);
84}
85
Sebastian Jansson942b3602018-05-30 15:47:44 +020086TEST(DataRateTest, ConvertsToAndFromDouble) {
87 const int64_t kValue = 128;
88 const double kDoubleValue = static_cast<double>(kValue);
89 const double kDoubleKbps = kValue * 1e-3;
90 const double kFloatKbps = static_cast<float>(kDoubleKbps);
91
92 EXPECT_EQ(DataRate::bps(kValue).bps<double>(), kDoubleValue);
93 EXPECT_EQ(DataRate::bps(kValue).kbps<double>(), kDoubleKbps);
94 EXPECT_EQ(DataRate::bps(kValue).kbps<float>(), kFloatKbps);
95 EXPECT_EQ(DataRate::bps(kDoubleValue).bps(), kValue);
96 EXPECT_EQ(DataRate::kbps(kDoubleKbps).bps(), kValue);
97
98 const double kInfinity = std::numeric_limits<double>::infinity();
99 EXPECT_EQ(DataRate::Infinity().bps<double>(), kInfinity);
100 EXPECT_TRUE(DataRate::bps(kInfinity).IsInfinite());
101 EXPECT_TRUE(DataRate::kbps(kInfinity).IsInfinite());
102}
Sebastian Jansson6c19dec2018-10-05 13:23:57 +0200103TEST(DataRateTest, Clamping) {
104 const DataRate upper = DataRate::kbps(800);
105 const DataRate lower = DataRate::kbps(100);
106 const DataRate under = DataRate::kbps(100);
107 const DataRate inside = DataRate::kbps(500);
108 const DataRate over = DataRate::kbps(1000);
109 EXPECT_EQ(under.Clamped(lower, upper), lower);
110 EXPECT_EQ(inside.Clamped(lower, upper), inside);
111 EXPECT_EQ(over.Clamped(lower, upper), upper);
112
113 DataRate mutable_rate = lower;
114 mutable_rate.Clamp(lower, upper);
115 EXPECT_EQ(mutable_rate, lower);
116 mutable_rate = inside;
117 mutable_rate.Clamp(lower, upper);
118 EXPECT_EQ(mutable_rate, inside);
119 mutable_rate = over;
120 mutable_rate.Clamp(lower, upper);
121 EXPECT_EQ(mutable_rate, upper);
122}
Sebastian Jansson942b3602018-05-30 15:47:44 +0200123
Sebastian Jansson30bd4032018-04-13 13:56:17 +0200124TEST(DataRateTest, MathOperations) {
125 const int64_t kValueA = 450;
126 const int64_t kValueB = 267;
Sebastian Jansson942b3602018-05-30 15:47:44 +0200127 const DataRate rate_a = DataRate::bps(kValueA);
128 const DataRate rate_b = DataRate::bps(kValueB);
Sebastian Jansson30bd4032018-04-13 13:56:17 +0200129 const int32_t kInt32Value = 123;
130 const double kFloatValue = 123.0;
Sebastian Janssonaf21eab2018-09-04 18:34:45 +0200131
132 EXPECT_EQ((rate_a + rate_b).bps(), kValueA + kValueB);
133 EXPECT_EQ((rate_a - rate_b).bps(), kValueA - kValueB);
134
Sebastian Jansson942b3602018-05-30 15:47:44 +0200135 EXPECT_EQ((rate_a * kValueB).bps(), kValueA * kValueB);
136 EXPECT_EQ((rate_a * kInt32Value).bps(), kValueA * kInt32Value);
137 EXPECT_EQ((rate_a * kFloatValue).bps(), kValueA * kFloatValue);
138
139 EXPECT_EQ(rate_a / rate_b, static_cast<double>(kValueA) / kValueB);
Sebastian Janssonaf21eab2018-09-04 18:34:45 +0200140
Sebastian Janssonb5f82012018-11-13 19:26:32 +0100141 EXPECT_EQ((rate_a / 10).bps(), kValueA / 10);
142 EXPECT_NEAR((rate_a / 0.5).bps(), kValueA * 2, 1);
143
Sebastian Janssonaf21eab2018-09-04 18:34:45 +0200144 DataRate mutable_rate = DataRate::bps(kValueA);
145 mutable_rate += rate_b;
146 EXPECT_EQ(mutable_rate.bps(), kValueA + kValueB);
147 mutable_rate -= rate_a;
148 EXPECT_EQ(mutable_rate.bps(), kValueB);
Sebastian Jansson30bd4032018-04-13 13:56:17 +0200149}
Sebastian Janssone31be152018-04-16 12:41:47 +0200150
151TEST(UnitConversionTest, DataRateAndDataSizeAndTimeDelta) {
Sebastian Jansson66fa5352018-04-30 16:54:57 +0200152 const int64_t kSeconds = 5;
153 const int64_t kBitsPerSecond = 440;
154 const int64_t kBytes = 44000;
155 const TimeDelta delta_a = TimeDelta::seconds(kSeconds);
Sebastian Jansson942b3602018-05-30 15:47:44 +0200156 const DataRate rate_b = DataRate::bps(kBitsPerSecond);
Sebastian Jansson66fa5352018-04-30 16:54:57 +0200157 const DataSize size_c = DataSize::bytes(kBytes);
158 EXPECT_EQ((delta_a * rate_b).bytes(), kSeconds * kBitsPerSecond / 8);
159 EXPECT_EQ((rate_b * delta_a).bytes(), kSeconds * kBitsPerSecond / 8);
Sebastian Jansson942b3602018-05-30 15:47:44 +0200160 EXPECT_EQ((size_c / delta_a).bps(), kBytes * 8 / kSeconds);
Sebastian Jansson66fa5352018-04-30 16:54:57 +0200161 EXPECT_EQ((size_c / rate_b).seconds(), kBytes * 8 / kBitsPerSecond);
Sebastian Janssone31be152018-04-16 12:41:47 +0200162}
163
Sebastian Janssone31be152018-04-16 12:41:47 +0200164TEST(UnitConversionTest, DivisionFailsOnLargeSize) {
165 // Note that the failure is expected since the current implementation is
166 // implementated in a way that does not support division of large sizes. If
167 // the implementation is changed, this test can safely be removed.
Sebastian Jansson66fa5352018-04-30 16:54:57 +0200168 const int64_t kJustSmallEnoughForDivision =
169 std::numeric_limits<int64_t>::max() / 8000000;
Sebastian Janssone31be152018-04-16 12:41:47 +0200170 const DataSize large_size = DataSize::bytes(kJustSmallEnoughForDivision);
Sebastian Janssone31be152018-04-16 12:41:47 +0200171 const DataRate data_rate = DataRate::kbps(100);
172 const TimeDelta time_delta = TimeDelta::ms(100);
173 EXPECT_TRUE((large_size / data_rate).IsFinite());
174 EXPECT_TRUE((large_size / time_delta).IsFinite());
Jonas Olsson0d4070a2018-06-28 13:09:43 +0200175#if GTEST_HAS_DEATH_TEST && !defined(WEBRTC_ANDROID) && RTC_DCHECK_IS_ON
176 const int64_t kToolargeForDivision = kJustSmallEnoughForDivision + 1;
177 const DataSize too_large_size = DataSize::bytes(kToolargeForDivision);
Sebastian Janssone31be152018-04-16 12:41:47 +0200178 EXPECT_DEATH(too_large_size / data_rate, "");
179 EXPECT_DEATH(too_large_size / time_delta, "");
Jonas Olsson0d4070a2018-06-28 13:09:43 +0200180#endif // GTEST_HAS_DEATH_TEST && !!defined(WEBRTC_ANDROID) && RTC_DCHECK_IS_ON
Sebastian Janssone31be152018-04-16 12:41:47 +0200181}
Sebastian Jansson30bd4032018-04-13 13:56:17 +0200182} // namespace test
183} // namespace webrtc