blob: b0b8f6da4afe6ad26badcc654eba5e18f3ade1f1 [file] [log] [blame]
tkchinf75d0082016-02-23 22:49:42 -08001/*
2 * Copyright 2016 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
Mirko Bonadei92ea95e2017-09-15 06:47:31 +020011#include "common_video/include/bitrate_adjuster.h"
Niels Möller2cb7b5e2018-04-19 10:02:26 +020012#include "rtc_base/fakeclock.h"
Mirko Bonadei92ea95e2017-09-15 06:47:31 +020013#include "test/gtest.h"
tkchinf75d0082016-02-23 22:49:42 -080014
15namespace webrtc {
16
17class BitrateAdjusterTest : public ::testing::Test {
18 public:
19 BitrateAdjusterTest()
Niels Möller2cb7b5e2018-04-19 10:02:26 +020020 : adjuster_(kMinAdjustedBitratePct, kMaxAdjustedBitratePct) {}
tkchinf75d0082016-02-23 22:49:42 -080021
22 // Simulate an output bitrate for one update cycle of BitrateAdjuster.
23 void SimulateBitrateBps(uint32_t bitrate_bps) {
24 const uint32_t update_interval_ms =
25 BitrateAdjuster::kBitrateUpdateIntervalMs;
26 const uint32_t update_frame_interval =
27 BitrateAdjuster::kBitrateUpdateFrameInterval;
28 // Round up frame interval so we get one cycle passes.
29 const uint32_t frame_interval_ms =
30 (update_interval_ms + update_frame_interval - 1) /
31 update_frame_interval;
32 const size_t frame_size_bytes =
33 (bitrate_bps * frame_interval_ms) / (8 * 1000);
34 for (size_t i = 0; i < update_frame_interval; ++i) {
Niels Möller2cb7b5e2018-04-19 10:02:26 +020035 clock_.AdvanceTime(rtc::TimeDelta::FromMilliseconds(frame_interval_ms));
tkchinf75d0082016-02-23 22:49:42 -080036 adjuster_.Update(frame_size_bytes);
37 }
38 }
39
40 uint32_t GetTargetBitrateBpsPct(float pct) {
41 return pct * adjuster_.GetTargetBitrateBps();
42 }
43
44 void VerifyAdjustment() {
45 // The adjusted bitrate should be between the estimated bitrate and the
46 // target bitrate within clamp.
47 uint32_t target_bitrate_bps = adjuster_.GetTargetBitrateBps();
48 uint32_t adjusted_bitrate_bps = adjuster_.GetAdjustedBitrateBps();
Erik Språng51e60302016-06-10 22:13:21 +020049 uint32_t estimated_bitrate_bps =
50 adjuster_.GetEstimatedBitrateBps().value_or(target_bitrate_bps);
tkchinf75d0082016-02-23 22:49:42 -080051 uint32_t adjusted_lower_bound_bps =
52 GetTargetBitrateBpsPct(kMinAdjustedBitratePct);
53 uint32_t adjusted_upper_bound_bps =
54 GetTargetBitrateBpsPct(kMaxAdjustedBitratePct);
55 EXPECT_LE(adjusted_bitrate_bps, adjusted_upper_bound_bps);
56 EXPECT_GE(adjusted_bitrate_bps, adjusted_lower_bound_bps);
57 if (estimated_bitrate_bps > target_bitrate_bps) {
58 EXPECT_LT(adjusted_bitrate_bps, target_bitrate_bps);
59 }
60 }
61
62 protected:
63 static const float kMinAdjustedBitratePct;
64 static const float kMaxAdjustedBitratePct;
Niels Möller2cb7b5e2018-04-19 10:02:26 +020065 rtc::ScopedFakeClock clock_;
tkchinf75d0082016-02-23 22:49:42 -080066 BitrateAdjuster adjuster_;
67};
68
69const float BitrateAdjusterTest::kMinAdjustedBitratePct = .5f;
70const float BitrateAdjusterTest::kMaxAdjustedBitratePct = .95f;
71
72TEST_F(BitrateAdjusterTest, VaryingBitrates) {
73 const uint32_t target_bitrate_bps = 640000;
74 adjuster_.SetTargetBitrateBps(target_bitrate_bps);
75
76 // Grossly overshoot for a little while. Adjusted bitrate should decrease.
77 uint32_t actual_bitrate_bps = 2 * target_bitrate_bps;
78 uint32_t last_adjusted_bitrate_bps = 0;
79 uint32_t adjusted_bitrate_bps = 0;
80
81 SimulateBitrateBps(actual_bitrate_bps);
82 VerifyAdjustment();
83 last_adjusted_bitrate_bps = adjuster_.GetAdjustedBitrateBps();
84
85 SimulateBitrateBps(actual_bitrate_bps);
86 VerifyAdjustment();
87 adjusted_bitrate_bps = adjuster_.GetAdjustedBitrateBps();
Stefan Holmerfb8fc532016-04-22 15:48:23 +020088 EXPECT_LE(adjusted_bitrate_bps, last_adjusted_bitrate_bps);
tkchinf75d0082016-02-23 22:49:42 -080089 last_adjusted_bitrate_bps = adjusted_bitrate_bps;
90 // After two cycles we should've stabilized and hit the lower bound.
91 EXPECT_EQ(GetTargetBitrateBpsPct(kMinAdjustedBitratePct),
92 adjusted_bitrate_bps);
93
94 // Simulate encoder settling down. Adjusted bitrate should increase.
95 SimulateBitrateBps(target_bitrate_bps);
96 adjusted_bitrate_bps = adjuster_.GetAdjustedBitrateBps();
97 VerifyAdjustment();
98 EXPECT_GT(adjusted_bitrate_bps, last_adjusted_bitrate_bps);
99 last_adjusted_bitrate_bps = adjusted_bitrate_bps;
100
101 SimulateBitrateBps(target_bitrate_bps);
102 adjusted_bitrate_bps = adjuster_.GetAdjustedBitrateBps();
103 VerifyAdjustment();
104 EXPECT_GT(adjusted_bitrate_bps, last_adjusted_bitrate_bps);
105 last_adjusted_bitrate_bps = adjusted_bitrate_bps;
106 // After two cycles we should've stabilized and hit the upper bound.
107 EXPECT_EQ(GetTargetBitrateBpsPct(kMaxAdjustedBitratePct),
108 adjusted_bitrate_bps);
109}
110
111// Tests that large changes in target bitrate will result in immediate change
112// in adjusted bitrate.
113TEST_F(BitrateAdjusterTest, LargeTargetDelta) {
114 uint32_t target_bitrate_bps = 640000;
115 adjuster_.SetTargetBitrateBps(target_bitrate_bps);
116 EXPECT_EQ(target_bitrate_bps, adjuster_.GetAdjustedBitrateBps());
117
118 float delta_pct = BitrateAdjuster::kBitrateTolerancePct * 2;
119
120 target_bitrate_bps = (1 + delta_pct) * target_bitrate_bps;
121 adjuster_.SetTargetBitrateBps(target_bitrate_bps);
122 EXPECT_EQ(target_bitrate_bps, adjuster_.GetAdjustedBitrateBps());
123
124 target_bitrate_bps = (1 - delta_pct) * target_bitrate_bps;
125 adjuster_.SetTargetBitrateBps(target_bitrate_bps);
126 EXPECT_EQ(target_bitrate_bps, adjuster_.GetAdjustedBitrateBps());
127}
128
129// Tests that small changes in target bitrate within tolerance will not affect
130// adjusted bitrate immediately.
131TEST_F(BitrateAdjusterTest, SmallTargetDelta) {
132 const uint32_t initial_target_bitrate_bps = 640000;
133 uint32_t target_bitrate_bps = initial_target_bitrate_bps;
134 adjuster_.SetTargetBitrateBps(target_bitrate_bps);
135 EXPECT_EQ(initial_target_bitrate_bps, adjuster_.GetAdjustedBitrateBps());
136
137 float delta_pct = BitrateAdjuster::kBitrateTolerancePct / 2;
138
139 target_bitrate_bps = (1 + delta_pct) * target_bitrate_bps;
140 adjuster_.SetTargetBitrateBps(target_bitrate_bps);
141 EXPECT_EQ(initial_target_bitrate_bps, adjuster_.GetAdjustedBitrateBps());
142
143 target_bitrate_bps = (1 - delta_pct) * target_bitrate_bps;
144 adjuster_.SetTargetBitrateBps(target_bitrate_bps);
145 EXPECT_EQ(initial_target_bitrate_bps, adjuster_.GetAdjustedBitrateBps());
146}
147
148TEST_F(BitrateAdjusterTest, SmallTargetDeltaOverflow) {
149 const uint32_t initial_target_bitrate_bps = 640000;
150 uint32_t target_bitrate_bps = initial_target_bitrate_bps;
151 adjuster_.SetTargetBitrateBps(target_bitrate_bps);
152 EXPECT_EQ(initial_target_bitrate_bps, adjuster_.GetAdjustedBitrateBps());
153
154 float delta_pct = BitrateAdjuster::kBitrateTolerancePct / 2;
155
156 target_bitrate_bps = (1 + delta_pct) * target_bitrate_bps;
157 adjuster_.SetTargetBitrateBps(target_bitrate_bps);
158 EXPECT_EQ(initial_target_bitrate_bps, adjuster_.GetAdjustedBitrateBps());
159
160 // 1.05 * 1.05 is 1.1 which is greater than tolerance for the initial target
161 // bitrate. Since we didn't advance the clock the adjuster never updated.
162 target_bitrate_bps = (1 + delta_pct) * target_bitrate_bps;
163 adjuster_.SetTargetBitrateBps(target_bitrate_bps);
164 EXPECT_EQ(target_bitrate_bps, adjuster_.GetAdjustedBitrateBps());
165}
166
167} // namespace webrtc