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danilchap1227e8b2015-12-21 11:06:50 -08001/*
2 * Copyright (c) 2015 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 */
Mirko Bonadei92ea95e2017-09-15 06:47:31 +020010#include "modules/rtp_rtcp/source/time_util.h"
danilchap1227e8b2015-12-21 11:06:50 -080011
Mirko Bonadei92ea95e2017-09-15 06:47:31 +020012#include "test/gtest.h"
danilchap1227e8b2015-12-21 11:06:50 -080013
14namespace webrtc {
15
16TEST(TimeUtilTest, CompactNtp) {
17 const uint32_t kNtpSec = 0x12345678;
18 const uint32_t kNtpFrac = 0x23456789;
19 const NtpTime kNtp(kNtpSec, kNtpFrac);
20 const uint32_t kNtpMid = 0x56782345;
21 EXPECT_EQ(kNtpMid, CompactNtp(kNtp));
22}
23
Danil Chapovalovc1e55c72016-03-09 15:14:35 +010024TEST(TimeUtilTest, CompactNtpRttToMs) {
danilchap1227e8b2015-12-21 11:06:50 -080025 const NtpTime ntp1(0x12345, 0x23456);
26 const NtpTime ntp2(0x12654, 0x64335);
Danil Chapovalovc1e55c72016-03-09 15:14:35 +010027 int64_t ms_diff = ntp2.ToMs() - ntp1.ToMs();
danilchap1227e8b2015-12-21 11:06:50 -080028 uint32_t ntp_diff = CompactNtp(ntp2) - CompactNtp(ntp1);
29
Danil Chapovalovc1e55c72016-03-09 15:14:35 +010030 int64_t ntp_to_ms_diff = CompactNtpRttToMs(ntp_diff);
danilchap1227e8b2015-12-21 11:06:50 -080031
32 EXPECT_NEAR(ms_diff, ntp_to_ms_diff, 1);
33}
34
Danil Chapovalovc1e55c72016-03-09 15:14:35 +010035TEST(TimeUtilTest, CompactNtpRttToMsWithWrap) {
danilchap1227e8b2015-12-21 11:06:50 -080036 const NtpTime ntp1(0x1ffff, 0x23456);
37 const NtpTime ntp2(0x20000, 0x64335);
Danil Chapovalovc1e55c72016-03-09 15:14:35 +010038 int64_t ms_diff = ntp2.ToMs() - ntp1.ToMs();
danilchap1227e8b2015-12-21 11:06:50 -080039
40 // While ntp2 > ntp1, there compact ntp presentation happen to be opposite.
41 // That shouldn't be a problem as long as unsigned arithmetic is used.
42 ASSERT_GT(ntp2.ToMs(), ntp1.ToMs());
43 ASSERT_LT(CompactNtp(ntp2), CompactNtp(ntp1));
44
45 uint32_t ntp_diff = CompactNtp(ntp2) - CompactNtp(ntp1);
Danil Chapovalovc1e55c72016-03-09 15:14:35 +010046 int64_t ntp_to_ms_diff = CompactNtpRttToMs(ntp_diff);
danilchap1227e8b2015-12-21 11:06:50 -080047
48 EXPECT_NEAR(ms_diff, ntp_to_ms_diff, 1);
49}
50
Danil Chapovalovc1e55c72016-03-09 15:14:35 +010051TEST(TimeUtilTest, CompactNtpRttToMsLarge) {
52 const NtpTime ntp1(0x10000, 0x00006);
53 const NtpTime ntp2(0x17fff, 0xffff5);
54 int64_t ms_diff = ntp2.ToMs() - ntp1.ToMs();
55 // Ntp difference close to 2^15 seconds should convert correctly too.
56 ASSERT_NEAR(ms_diff, ((1 << 15) - 1) * 1000, 1);
danilchap1227e8b2015-12-21 11:06:50 -080057 uint32_t ntp_diff = CompactNtp(ntp2) - CompactNtp(ntp1);
Danil Chapovalovc1e55c72016-03-09 15:14:35 +010058 int64_t ntp_to_ms_diff = CompactNtpRttToMs(ntp_diff);
danilchap1227e8b2015-12-21 11:06:50 -080059
60 EXPECT_NEAR(ms_diff, ntp_to_ms_diff, 1);
61}
Danil Chapovalovc1e55c72016-03-09 15:14:35 +010062
63TEST(TimeUtilTest, CompactNtpRttToMsNegative) {
64 const NtpTime ntp1(0x20000, 0x23456);
65 const NtpTime ntp2(0x1ffff, 0x64335);
66 int64_t ms_diff = ntp2.ToMs() - ntp1.ToMs();
67 ASSERT_GT(0, ms_diff);
68 // Ntp difference close to 2^16 seconds should be treated as negative.
69 uint32_t ntp_diff = CompactNtp(ntp2) - CompactNtp(ntp1);
70 int64_t ntp_to_ms_diff = CompactNtpRttToMs(ntp_diff);
71 EXPECT_EQ(1, ntp_to_ms_diff);
72}
Danil Chapovalovd4fdc272017-11-09 11:34:32 +010073
74TEST(TimeUtilTest, SaturatedUsToCompactNtp) {
75 // Converts negative to zero.
76 EXPECT_EQ(SaturatedUsToCompactNtp(-1), 0u);
77 EXPECT_EQ(SaturatedUsToCompactNtp(0), 0u);
78 // Converts values just above and just below max uint32_t.
79 EXPECT_EQ(SaturatedUsToCompactNtp(65536000000), 0xffffffff);
80 EXPECT_EQ(SaturatedUsToCompactNtp(65535999985), 0xffffffff);
81 EXPECT_EQ(SaturatedUsToCompactNtp(65535999970), 0xfffffffe);
82 // Converts half-seconds.
83 EXPECT_EQ(SaturatedUsToCompactNtp(500000), 0x8000u);
84 EXPECT_EQ(SaturatedUsToCompactNtp(1000000), 0x10000u);
85 EXPECT_EQ(SaturatedUsToCompactNtp(1500000), 0x18000u);
86 // Convert us -> compact_ntp -> ms. Compact ntp precision is ~15us.
87 EXPECT_EQ(CompactNtpRttToMs(SaturatedUsToCompactNtp(1516)), 2);
88 EXPECT_EQ(CompactNtpRttToMs(SaturatedUsToCompactNtp(15000)), 15);
89 EXPECT_EQ(CompactNtpRttToMs(SaturatedUsToCompactNtp(5485)), 5);
90 EXPECT_EQ(CompactNtpRttToMs(SaturatedUsToCompactNtp(5515)), 6);
91}
92
danilchap1227e8b2015-12-21 11:06:50 -080093} // namespace webrtc