blob: 8028efde2fff6b8e57f069a2fa229192e46f4d67 [file] [log] [blame]
philipel2cb73412016-03-22 09:03:431/*
2 * Copyright (c) 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
11#include <set>
12
13#include "testing/gtest/include/gtest/gtest.h"
14#include "webrtc/modules/video_coding/sequence_number_util.h"
15
16namespace webrtc {
17class TestSeqNumUtil : public ::testing::Test {
18 protected:
19 // Can't use std::numeric_limits<unsigned long>::max() since
20 // MSVC doesn't support constexpr.
21 static const unsigned long ulmax = ~0ul; // NOLINT
22};
23
24TEST_F(TestSeqNumUtil, AheadOrAt) {
25 uint8_t x = 0;
26 uint8_t y = 0;
27 ASSERT_TRUE(AheadOrAt(x, y));
28 ++x;
29 ASSERT_TRUE(AheadOrAt(x, y));
30 ASSERT_FALSE(AheadOrAt(y, x));
31 for (int i = 0; i < 256; ++i) {
32 ASSERT_TRUE(AheadOrAt(x, y));
33 ++x;
34 ++y;
35 }
36
37 x = 128;
38 y = 0;
39 ASSERT_TRUE(AheadOrAt(x, y));
40 ASSERT_FALSE(AheadOrAt(y, x));
41
42 x = 129;
43 ASSERT_FALSE(AheadOrAt(x, y));
44 ASSERT_TRUE(AheadOrAt(y, x));
45 ASSERT_TRUE(AheadOrAt<uint16_t>(x, y));
46 ASSERT_FALSE(AheadOrAt<uint16_t>(y, x));
47}
48
49TEST_F(TestSeqNumUtil, AheadOrAtWithDivisor) {
50 ASSERT_TRUE((AheadOrAt<uint8_t, 11>(5, 0)));
51 ASSERT_FALSE((AheadOrAt<uint8_t, 11>(6, 0)));
52 ASSERT_FALSE((AheadOrAt<uint8_t, 11>(0, 5)));
53 ASSERT_TRUE((AheadOrAt<uint8_t, 11>(0, 6)));
54
55 ASSERT_TRUE((AheadOrAt<uint8_t, 10>(5, 0)));
56 ASSERT_FALSE((AheadOrAt<uint8_t, 10>(6, 0)));
57 ASSERT_FALSE((AheadOrAt<uint8_t, 10>(0, 5)));
58 ASSERT_TRUE((AheadOrAt<uint8_t, 10>(0, 6)));
59
60 const uint8_t D = 211;
61 uint8_t x = 0;
62 for (int i = 0; i < D; ++i) {
63 uint8_t next_x = Add<D>(x, 1);
64 ASSERT_TRUE((AheadOrAt<uint8_t, D>(i, i)));
65 ASSERT_TRUE((AheadOrAt<uint8_t, D>(next_x, i)));
66 ASSERT_FALSE((AheadOrAt<uint8_t, D>(i, next_x)));
67 x = next_x;
68 }
69}
70
71TEST_F(TestSeqNumUtil, AheadOf) {
72 uint8_t x = 0;
73 uint8_t y = 0;
74 ASSERT_FALSE(AheadOf(x, y));
75 ++x;
76 ASSERT_TRUE(AheadOf(x, y));
77 ASSERT_FALSE(AheadOf(y, x));
78 for (int i = 0; i < 256; ++i) {
79 ASSERT_TRUE(AheadOf(x, y));
80 ++x;
81 ++y;
82 }
83
84 x = 128;
85 y = 0;
86 for (int i = 0; i < 128; ++i) {
87 ASSERT_TRUE(AheadOf(x, y));
88 ASSERT_FALSE(AheadOf(y, x));
89 x++;
90 y++;
91 }
92
93 for (int i = 0; i < 128; ++i) {
94 ASSERT_FALSE(AheadOf(x, y));
95 ASSERT_TRUE(AheadOf(y, x));
96 x++;
97 y++;
98 }
99
100 x = 129;
101 y = 0;
102 ASSERT_FALSE(AheadOf(x, y));
103 ASSERT_TRUE(AheadOf(y, x));
104 ASSERT_TRUE(AheadOf<uint16_t>(x, y));
105 ASSERT_FALSE(AheadOf<uint16_t>(y, x));
106}
107
108TEST_F(TestSeqNumUtil, AheadOfWithDivisor) {
109 ASSERT_TRUE((AheadOf<uint8_t, 11>(5, 0)));
110 ASSERT_FALSE((AheadOf<uint8_t, 11>(6, 0)));
111 ASSERT_FALSE((AheadOf<uint8_t, 11>(0, 5)));
112 ASSERT_TRUE((AheadOf<uint8_t, 11>(0, 6)));
113
114 ASSERT_TRUE((AheadOf<uint8_t, 10>(5, 0)));
115 ASSERT_FALSE((AheadOf<uint8_t, 10>(6, 0)));
116 ASSERT_FALSE((AheadOf<uint8_t, 10>(0, 5)));
117 ASSERT_TRUE((AheadOf<uint8_t, 10>(0, 6)));
118
119 const uint8_t D = 211;
120 uint8_t x = 0;
121 for (int i = 0; i < D; ++i) {
122 uint8_t next_x = Add<D>(x, 1);
123 ASSERT_FALSE((AheadOf<uint8_t, D>(i, i)));
124 ASSERT_TRUE((AheadOf<uint8_t, D>(next_x, i)));
125 ASSERT_FALSE((AheadOf<uint8_t, D>(i, next_x)));
126 x = next_x;
127 }
128}
129
130TEST_F(TestSeqNumUtil, ForwardDiffWithDivisor) {
131 const uint8_t kDivisor = 211;
132
133 for (uint8_t i = 0; i < kDivisor - 1; ++i) {
134 ASSERT_EQ(0, (ForwardDiff<uint8_t, kDivisor>(i, i)));
135 ASSERT_EQ(1, (ForwardDiff<uint8_t, kDivisor>(i, i + 1)));
136 ASSERT_EQ(kDivisor - 1, (ForwardDiff<uint8_t, kDivisor>(i + 1, i)));
137 }
138
139 for (uint8_t i = 1; i < kDivisor; ++i) {
140 ASSERT_EQ(i, (ForwardDiff<uint8_t, kDivisor>(0, i)));
141 ASSERT_EQ(kDivisor - i, (ForwardDiff<uint8_t, kDivisor>(i, 0)));
142 }
143}
144
145TEST_F(TestSeqNumUtil, ReverseDiffWithDivisor) {
146 const uint8_t kDivisor = 241;
147
148 for (uint8_t i = 0; i < kDivisor - 1; ++i) {
149 ASSERT_EQ(0, (ReverseDiff<uint8_t, kDivisor>(i, i)));
150 ASSERT_EQ(kDivisor - 1, (ReverseDiff<uint8_t, kDivisor>(i, i + 1)));
151 ASSERT_EQ(1, (ReverseDiff<uint8_t, kDivisor>(i + 1, i)));
152 }
153
154 for (uint8_t i = 1; i < kDivisor; ++i) {
155 ASSERT_EQ(kDivisor - i, (ReverseDiff<uint8_t, kDivisor>(0, i)));
156 ASSERT_EQ(i, (ReverseDiff<uint8_t, kDivisor>(i, 0)));
157 }
158}
159
160TEST_F(TestSeqNumUtil, SeqNumComparator) {
161 std::set<uint8_t, AscendingSeqNumComp<uint8_t>> seq_nums_asc;
162 std::set<uint8_t, DescendingSeqNumComp<uint8_t>> seq_nums_desc;
163
164 uint8_t x = 0;
165 for (int i = 0; i < 128; ++i) {
166 seq_nums_asc.insert(x);
167 seq_nums_desc.insert(x);
168 ASSERT_EQ(x, *seq_nums_asc.begin());
169 ASSERT_EQ(x, *seq_nums_desc.rbegin());
170 ++x;
171 }
172
173 seq_nums_asc.clear();
174 seq_nums_desc.clear();
175 x = 199;
176 for (int i = 0; i < 128; ++i) {
177 seq_nums_asc.insert(x);
178 seq_nums_desc.insert(x);
179 ASSERT_EQ(x, *seq_nums_asc.begin());
180 ASSERT_EQ(x, *seq_nums_desc.rbegin());
181 ++x;
182 }
183}
184
185TEST_F(TestSeqNumUtil, SeqNumComparatorWithDivisor) {
186 const uint8_t D = 223;
187
188 std::set<uint8_t, AscendingSeqNumComp<uint8_t, D>> seq_nums_asc;
189 std::set<uint8_t, DescendingSeqNumComp<uint8_t, D>> seq_nums_desc;
190
191 uint8_t x = 0;
192 for (int i = 0; i < D / 2; ++i) {
193 seq_nums_asc.insert(x);
194 seq_nums_desc.insert(x);
195 ASSERT_EQ(x, *seq_nums_asc.begin());
196 ASSERT_EQ(x, *seq_nums_desc.rbegin());
197 x = Add<D>(x, 1);
198 }
199
200 seq_nums_asc.clear();
201 seq_nums_desc.clear();
202 x = 200;
203 for (int i = 0; i < D / 2; ++i) {
204 seq_nums_asc.insert(x);
205 seq_nums_desc.insert(x);
206 ASSERT_EQ(x, *seq_nums_asc.begin());
207 ASSERT_EQ(x, *seq_nums_desc.rbegin());
208 x = Add<D>(x, 1);
209 }
210}
211
212} // namespace webrtc