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stefan@webrtc.org20ed36d2013-01-17 14:01:20 +00001/*
2 * Copyright (c) 2013 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 "system_wrappers/include/clock.h"
stefan@webrtc.org20ed36d2013-01-17 14:01:20 +000012
Sergey Ulanov6acefdb2017-12-11 17:38:13 -080013#if defined(WEBRTC_WIN)
Karl Wiberg79eb1d92017-11-08 12:26:07 +010014
pbos@webrtc.orgacaf3a12013-05-27 15:07:45 +000015// Windows needs to be included before mmsystem.h
Mirko Bonadei92ea95e2017-09-15 06:47:31 +020016#include "rtc_base/win32.h"
Karl Wiberg79eb1d92017-11-08 12:26:07 +010017
Mirko Bonadei01914412018-03-23 16:30:58 +010018#include <mmsystem.h>
Karl Wiberg79eb1d92017-11-08 12:26:07 +010019
Yves Gerey988cc082018-10-23 12:03:01 +020020
Sergey Ulanov6acefdb2017-12-11 17:38:13 -080021#elif defined(WEBRTC_POSIX)
Karl Wiberg79eb1d92017-11-08 12:26:07 +010022
stefan@webrtc.org20ed36d2013-01-17 14:01:20 +000023#include <sys/time.h>
24#include <time.h>
Karl Wiberg79eb1d92017-11-08 12:26:07 +010025
Sergey Ulanov6acefdb2017-12-11 17:38:13 -080026#endif // defined(WEBRTC_POSIX)
stefan@webrtc.org20ed36d2013-01-17 14:01:20 +000027
Markus Handell85585f42020-07-08 23:04:37 +020028#include "rtc_base/synchronization/mutex.h"
Steve Anton10542f22019-01-11 09:11:00 -080029#include "rtc_base/time_utils.h"
stefan@webrtc.org20ed36d2013-01-17 14:01:20 +000030
31namespace webrtc {
32
stefan@webrtc.org20ed36d2013-01-17 14:01:20 +000033class RealTimeClock : public Clock {
Danil Chapovalov0c626af2020-02-10 11:16:00 +010034 Timestamp CurrentTime() override {
35 return Timestamp::Micros(rtc::TimeMicros());
36 }
stefan@webrtc.org20ed36d2013-01-17 14:01:20 +000037 // Return a timestamp in milliseconds relative to some arbitrary source; the
38 // source is fixed for this clock.
Sebastian Jansson2a96ab22019-01-30 20:44:45 +010039 int64_t TimeInMilliseconds() override { return rtc::TimeMillis(); }
stefan@webrtc.org20ed36d2013-01-17 14:01:20 +000040
41 // Return a timestamp in microseconds relative to some arbitrary source; the
42 // source is fixed for this clock.
Sebastian Jansson2a96ab22019-01-30 20:44:45 +010043 int64_t TimeInMicroseconds() override { return rtc::TimeMicros(); }
stefan@webrtc.orgb8e7f4c2013-04-12 11:56:23 +000044
danilchap21dc1892017-03-07 02:51:09 -080045 // Retrieve an NTP absolute timestamp.
Sebastian Jansson2a96ab22019-01-30 20:44:45 +010046 NtpTime CurrentNtpTime() override {
stefan@webrtc.orgb8e7f4c2013-04-12 11:56:23 +000047 timeval tv = CurrentTimeVal();
48 double microseconds_in_seconds;
danilchap21dc1892017-03-07 02:51:09 -080049 uint32_t seconds;
stefan@webrtc.orgb8e7f4c2013-04-12 11:56:23 +000050 Adjust(tv, &seconds, &microseconds_in_seconds);
danilchap21dc1892017-03-07 02:51:09 -080051 uint32_t fractions = static_cast<uint32_t>(
stefan@webrtc.orgb8e7f4c2013-04-12 11:56:23 +000052 microseconds_in_seconds * kMagicNtpFractionalUnit + 0.5);
danilchap21dc1892017-03-07 02:51:09 -080053 return NtpTime(seconds, fractions);
stefan@webrtc.orgb8e7f4c2013-04-12 11:56:23 +000054 }
55
56 // Retrieve an NTP absolute timestamp in milliseconds.
Sebastian Jansson2a96ab22019-01-30 20:44:45 +010057 int64_t CurrentNtpInMilliseconds() override {
stefan@webrtc.orgb8e7f4c2013-04-12 11:56:23 +000058 timeval tv = CurrentTimeVal();
59 uint32_t seconds;
60 double microseconds_in_seconds;
61 Adjust(tv, &seconds, &microseconds_in_seconds);
62 return 1000 * static_cast<int64_t>(seconds) +
Karl Wiberg79eb1d92017-11-08 12:26:07 +010063 static_cast<int64_t>(1000.0 * microseconds_in_seconds + 0.5);
stefan@webrtc.orgb8e7f4c2013-04-12 11:56:23 +000064 }
65
66 protected:
Sebastian Jansson2a96ab22019-01-30 20:44:45 +010067 virtual timeval CurrentTimeVal() = 0;
stefan@webrtc.orgb8e7f4c2013-04-12 11:56:23 +000068
Karl Wiberg79eb1d92017-11-08 12:26:07 +010069 static void Adjust(const timeval& tv,
70 uint32_t* adjusted_s,
stefan@webrtc.orgb8e7f4c2013-04-12 11:56:23 +000071 double* adjusted_us_in_s) {
72 *adjusted_s = tv.tv_sec + kNtpJan1970;
73 *adjusted_us_in_s = tv.tv_usec / 1e6;
74
75 if (*adjusted_us_in_s >= 1) {
76 *adjusted_us_in_s -= 1;
77 ++*adjusted_s;
78 } else if (*adjusted_us_in_s < -1) {
79 *adjusted_us_in_s += 1;
80 --*adjusted_s;
81 }
82 }
stefan@webrtc.org20ed36d2013-01-17 14:01:20 +000083};
84
Robin Raymondce1b1402018-11-22 20:10:11 -050085#if defined(WINUWP)
86class WinUwpRealTimeClock final : public RealTimeClock {
87 public:
88 WinUwpRealTimeClock() = default;
89 ~WinUwpRealTimeClock() override {}
90
91 protected:
Sebastian Jansson2a96ab22019-01-30 20:44:45 +010092 timeval CurrentTimeVal() override {
Robin Raymondce1b1402018-11-22 20:10:11 -050093 // The rtc::SystemTimeNanos() method is already time offset from a base
94 // epoch value and might as be synchronized against an NTP time server as
95 // an added bonus.
96 auto nanos = rtc::SystemTimeNanos();
97
98 struct timeval tv;
99
100 tv.tv_sec = rtc::dchecked_cast<long>(nanos / 1000000000);
101 tv.tv_usec = rtc::dchecked_cast<long>(nanos / 1000);
102
103 return tv;
104 }
105};
106
107#elif defined(WEBRTC_WIN)
pbos@webrtc.orgf9389222015-01-21 12:51:13 +0000108// TODO(pbos): Consider modifying the implementation to synchronize itself
Sebastian Jansson2a96ab22019-01-30 20:44:45 +0100109// against system time (update ref_point_) periodically to
pbos@webrtc.orgf9389222015-01-21 12:51:13 +0000110// prevent clock drift.
stefan@webrtc.org20ed36d2013-01-17 14:01:20 +0000111class WindowsRealTimeClock : public RealTimeClock {
112 public:
pbos@webrtc.orgf9389222015-01-21 12:51:13 +0000113 WindowsRealTimeClock()
114 : last_time_ms_(0),
115 num_timer_wraps_(0),
116 ref_point_(GetSystemReferencePoint()) {}
stefan@webrtc.org20ed36d2013-01-17 14:01:20 +0000117
Mirko Bonadeic14d9bb2018-07-16 15:44:28 +0200118 ~WindowsRealTimeClock() override {}
stefan@webrtc.org20ed36d2013-01-17 14:01:20 +0000119
stefan@webrtc.orgb8e7f4c2013-04-12 11:56:23 +0000120 protected:
pbos@webrtc.orgf9389222015-01-21 12:51:13 +0000121 struct ReferencePoint {
122 FILETIME file_time;
123 LARGE_INTEGER counter_ms;
124 };
125
Sebastian Jansson2a96ab22019-01-30 20:44:45 +0100126 timeval CurrentTimeVal() override {
pbos@webrtc.org046deb92013-04-09 09:06:11 +0000127 const uint64_t FILETIME_1970 = 0x019db1ded53e8000;
stefan@webrtc.org20ed36d2013-01-17 14:01:20 +0000128
129 FILETIME StartTime;
pbos@webrtc.org046deb92013-04-09 09:06:11 +0000130 uint64_t Time;
stefan@webrtc.org20ed36d2013-01-17 14:01:20 +0000131 struct timeval tv;
132
wu@webrtc.org7a9a3b72014-05-29 19:40:28 +0000133 // We can't use query performance counter since they can change depending on
134 // speed stepping.
pbos@webrtc.orgf9389222015-01-21 12:51:13 +0000135 GetTime(&StartTime);
stefan@webrtc.org20ed36d2013-01-17 14:01:20 +0000136
Karl Wiberg79eb1d92017-11-08 12:26:07 +0100137 Time = (((uint64_t)StartTime.dwHighDateTime) << 32) +
138 (uint64_t)StartTime.dwLowDateTime;
stefan@webrtc.org20ed36d2013-01-17 14:01:20 +0000139
stefan@webrtc.orgb8e7f4c2013-04-12 11:56:23 +0000140 // Convert the hecto-nano second time to tv format.
stefan@webrtc.org20ed36d2013-01-17 14:01:20 +0000141 Time -= FILETIME_1970;
142
pbos@webrtc.org046deb92013-04-09 09:06:11 +0000143 tv.tv_sec = (uint32_t)(Time / (uint64_t)10000000);
144 tv.tv_usec = (uint32_t)((Time % (uint64_t)10000000) / 10);
stefan@webrtc.orgb8e7f4c2013-04-12 11:56:23 +0000145 return tv;
stefan@webrtc.org20ed36d2013-01-17 14:01:20 +0000146 }
wu@webrtc.org7a9a3b72014-05-29 19:40:28 +0000147
Sebastian Jansson2a96ab22019-01-30 20:44:45 +0100148 void GetTime(FILETIME* current_time) {
pbos@webrtc.orgf9389222015-01-21 12:51:13 +0000149 DWORD t;
150 LARGE_INTEGER elapsed_ms;
151 {
Markus Handell85585f42020-07-08 23:04:37 +0200152 MutexLock lock(&mutex_);
pbos@webrtc.orgf9389222015-01-21 12:51:13 +0000153 // time MUST be fetched inside the critical section to avoid non-monotonic
154 // last_time_ms_ values that'll register as incorrect wraparounds due to
155 // concurrent calls to GetTime.
156 t = timeGetTime();
157 if (t < last_time_ms_)
158 num_timer_wraps_++;
159 last_time_ms_ = t;
160 elapsed_ms.HighPart = num_timer_wraps_;
161 }
162 elapsed_ms.LowPart = t;
163 elapsed_ms.QuadPart = elapsed_ms.QuadPart - ref_point_.counter_ms.QuadPart;
164
165 // Translate to 100-nanoseconds intervals (FILETIME resolution)
166 // and add to reference FILETIME to get current FILETIME.
167 ULARGE_INTEGER filetime_ref_as_ul;
168 filetime_ref_as_ul.HighPart = ref_point_.file_time.dwHighDateTime;
169 filetime_ref_as_ul.LowPart = ref_point_.file_time.dwLowDateTime;
170 filetime_ref_as_ul.QuadPart +=
171 static_cast<ULONGLONG>((elapsed_ms.QuadPart) * 1000 * 10);
172
173 // Copy to result
174 current_time->dwHighDateTime = filetime_ref_as_ul.HighPart;
175 current_time->dwLowDateTime = filetime_ref_as_ul.LowPart;
176 }
177
178 static ReferencePoint GetSystemReferencePoint() {
dchenga771bf82015-07-01 17:52:10 -0700179 ReferencePoint ref = {};
180 FILETIME ft0 = {};
181 FILETIME ft1 = {};
pbos@webrtc.orgf9389222015-01-21 12:51:13 +0000182 // Spin waiting for a change in system time. As soon as this change happens,
183 // get the matching call for timeGetTime() as soon as possible. This is
184 // assumed to be the most accurate offset that we can get between
185 // timeGetTime() and system time.
186
187 // Set timer accuracy to 1 ms.
188 timeBeginPeriod(1);
189 GetSystemTimeAsFileTime(&ft0);
190 do {
191 GetSystemTimeAsFileTime(&ft1);
192
193 ref.counter_ms.QuadPart = timeGetTime();
194 Sleep(0);
195 } while ((ft0.dwHighDateTime == ft1.dwHighDateTime) &&
196 (ft0.dwLowDateTime == ft1.dwLowDateTime));
197 ref.file_time = ft1;
198 timeEndPeriod(1);
199 return ref;
200 }
201
Markus Handell85585f42020-07-08 23:04:37 +0200202 Mutex mutex_;
Sebastian Jansson2a96ab22019-01-30 20:44:45 +0100203 DWORD last_time_ms_;
204 LONG num_timer_wraps_;
pbos@webrtc.orgf9389222015-01-21 12:51:13 +0000205 const ReferencePoint ref_point_;
stefan@webrtc.org20ed36d2013-01-17 14:01:20 +0000206};
207
Sergey Ulanov6acefdb2017-12-11 17:38:13 -0800208#elif defined(WEBRTC_POSIX)
stefan@webrtc.org20ed36d2013-01-17 14:01:20 +0000209class UnixRealTimeClock : public RealTimeClock {
210 public:
211 UnixRealTimeClock() {}
212
kjellander@webrtc.org14665ff2015-03-04 12:58:35 +0000213 ~UnixRealTimeClock() override {}
stefan@webrtc.org20ed36d2013-01-17 14:01:20 +0000214
stefan@webrtc.orgb8e7f4c2013-04-12 11:56:23 +0000215 protected:
Sebastian Jansson2a96ab22019-01-30 20:44:45 +0100216 timeval CurrentTimeVal() override {
stefan@webrtc.org20ed36d2013-01-17 14:01:20 +0000217 struct timeval tv;
218 struct timezone tz;
stefan@webrtc.orgb8e7f4c2013-04-12 11:56:23 +0000219 tz.tz_minuteswest = 0;
stefan@webrtc.org20ed36d2013-01-17 14:01:20 +0000220 tz.tz_dsttime = 0;
221 gettimeofday(&tv, &tz);
stefan@webrtc.orgb8e7f4c2013-04-12 11:56:23 +0000222 return tv;
stefan@webrtc.org20ed36d2013-01-17 14:01:20 +0000223 }
224};
Sergey Ulanov6acefdb2017-12-11 17:38:13 -0800225#endif // defined(WEBRTC_POSIX)
stefan@webrtc.org20ed36d2013-01-17 14:01:20 +0000226
stefan@webrtc.org20ed36d2013-01-17 14:01:20 +0000227Clock* Clock::GetRealTimeClock() {
Robin Raymondce1b1402018-11-22 20:10:11 -0500228#if defined(WINUWP)
229 static Clock* const clock = new WinUwpRealTimeClock();
230#elif defined(WEBRTC_WIN)
Mirko Bonadei6c092d22018-09-10 13:27:11 +0200231 static Clock* const clock = new WindowsRealTimeClock();
Sergey Ulanov6acefdb2017-12-11 17:38:13 -0800232#elif defined(WEBRTC_POSIX)
Mirko Bonadei6c092d22018-09-10 13:27:11 +0200233 static Clock* const clock = new UnixRealTimeClock();
234#else
235 static Clock* const clock = nullptr;
236#endif
237 return clock;
stefan@webrtc.org20ed36d2013-01-17 14:01:20 +0000238}
239
stefan@webrtc.org20ed36d2013-01-17 14:01:20 +0000240SimulatedClock::SimulatedClock(int64_t initial_time_us)
Niels Möller9308b7a2020-11-03 13:55:44 +0100241 : time_us_(initial_time_us) {}
Sebastian Jansson4de31152019-06-11 08:52:11 +0200242
243SimulatedClock::SimulatedClock(Timestamp initial_time)
Niels Möller9308b7a2020-11-03 13:55:44 +0100244 : SimulatedClock(initial_time.us()) {}
henrik.lundin@webrtc.org59336e82014-05-27 09:34:58 +0000245
Karl Wiberg79eb1d92017-11-08 12:26:07 +0100246SimulatedClock::~SimulatedClock() {}
stefan@webrtc.org20ed36d2013-01-17 14:01:20 +0000247
Sebastian Jansson4de31152019-06-11 08:52:11 +0200248Timestamp SimulatedClock::CurrentTime() {
Niels Möller9308b7a2020-11-03 13:55:44 +0100249 return Timestamp::Micros(time_us_.load(std::memory_order_relaxed));
stefan@webrtc.org20ed36d2013-01-17 14:01:20 +0000250}
251
Sebastian Jansson2a96ab22019-01-30 20:44:45 +0100252NtpTime SimulatedClock::CurrentNtpTime() {
henrik.lundin@webrtc.org59336e82014-05-27 09:34:58 +0000253 int64_t now_ms = TimeInMilliseconds();
danilchap21dc1892017-03-07 02:51:09 -0800254 uint32_t seconds = (now_ms / 1000) + kNtpJan1970;
255 uint32_t fractions =
henrik.lundin@webrtc.org59336e82014-05-27 09:34:58 +0000256 static_cast<uint32_t>((now_ms % 1000) * kMagicNtpFractionalUnit / 1000);
danilchap21dc1892017-03-07 02:51:09 -0800257 return NtpTime(seconds, fractions);
stefan@webrtc.org20ed36d2013-01-17 14:01:20 +0000258}
259
Sebastian Jansson2a96ab22019-01-30 20:44:45 +0100260int64_t SimulatedClock::CurrentNtpInMilliseconds() {
stefan@webrtc.orgb8e7f4c2013-04-12 11:56:23 +0000261 return TimeInMilliseconds() + 1000 * static_cast<int64_t>(kNtpJan1970);
262}
263
stefan@webrtc.orga678a3b2013-01-21 07:42:11 +0000264void SimulatedClock::AdvanceTimeMilliseconds(int64_t milliseconds) {
Danil Chapovalov0c626af2020-02-10 11:16:00 +0100265 AdvanceTime(TimeDelta::Millis(milliseconds));
stefan@webrtc.org20ed36d2013-01-17 14:01:20 +0000266}
267
stefan@webrtc.orga678a3b2013-01-21 07:42:11 +0000268void SimulatedClock::AdvanceTimeMicroseconds(int64_t microseconds) {
Danil Chapovalov0c626af2020-02-10 11:16:00 +0100269 AdvanceTime(TimeDelta::Micros(microseconds));
Sebastian Jansson4de31152019-06-11 08:52:11 +0200270}
271
Niels Möller9308b7a2020-11-03 13:55:44 +0100272// TODO(bugs.webrtc.org(12102): It's desirable to let a single thread own
273// advancement of the clock. We could then replace this read-modify-write
274// operation with just a thread checker. But currently, that breaks a couple of
275// tests, in particular, RepeatingTaskTest.ClockIntegration and
276// CallStatsTest.LastProcessedRtt.
Sebastian Jansson4de31152019-06-11 08:52:11 +0200277void SimulatedClock::AdvanceTime(TimeDelta delta) {
Niels Möller9308b7a2020-11-03 13:55:44 +0100278 time_us_.fetch_add(delta.us(), std::memory_order_relaxed);
stefan@webrtc.org20ed36d2013-01-17 14:01:20 +0000279}
280
Nico Weber22f99252019-02-20 10:13:16 -0500281} // namespace webrtc