Add a new interface to abstract away file operations. This CL temporarily removes support for dumping the output of reverse streams. It will be easy to restore in the new framework, although we may decide to only allow it with the aecdump format. We also now require the user to specify the output format, rather than defaulting to the input format. TEST=Bit-exact output to the previous audioproc_f version using an input wav file, and to the legacy audioproc using an aecdump file. Review URL: https://codereview.webrtc.org/1409943002 Cr-Commit-Position: refs/heads/master@{#10460}
298 lines
7.6 KiB
C++
298 lines
7.6 KiB
C++
/*
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* Copyright (c) 2012 The WebRTC project authors. All Rights Reserved.
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*
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* Use of this source code is governed by a BSD-style license
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* that can be found in the LICENSE file in the root of the source
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* tree. An additional intellectual property rights grant can be found
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* in the file PATENTS. All contributing project authors may
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* be found in the AUTHORS file in the root of the source tree.
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*/
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// System independant wrapper for polling elapsed time in ms and us.
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// The implementation works in the tick domain which can be mapped over to the
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// time domain.
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#ifndef WEBRTC_SYSTEM_WRAPPERS_INTERFACE_TICK_UTIL_H_
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#define WEBRTC_SYSTEM_WRAPPERS_INTERFACE_TICK_UTIL_H_
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#if _WIN32
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// Note: The Windows header must always be included before mmsystem.h
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#include <windows.h>
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#include <mmsystem.h>
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#elif WEBRTC_LINUX
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#include <time.h>
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#elif WEBRTC_MAC
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#include <mach/mach_time.h>
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#include <string.h>
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#else
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#include <sys/time.h>
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#include <time.h>
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#endif
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#include "webrtc/typedefs.h"
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namespace webrtc {
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class TickInterval;
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// Class representing the current time.
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class TickTime {
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public:
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TickTime();
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explicit TickTime(int64_t ticks);
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// Current time in the tick domain.
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static TickTime Now();
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// Now in the time domain in ms.
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static int64_t MillisecondTimestamp();
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// Now in the time domain in us.
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static int64_t MicrosecondTimestamp();
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// Returns the number of ticks in the tick domain.
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int64_t Ticks() const;
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static int64_t MillisecondsToTicks(const int64_t ms);
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static int64_t TicksToMilliseconds(const int64_t ticks);
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// Returns a TickTime that is ticks later than the passed TickTime.
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friend TickTime operator+(const TickTime lhs, const int64_t ticks);
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TickTime& operator+=(const int64_t& ticks);
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// Returns a TickInterval that is the difference in ticks beween rhs and lhs.
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friend TickInterval operator-(const TickTime& lhs, const TickTime& rhs);
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// Call to engage the fake clock. This is useful for tests since relying on
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// a real clock often makes the test flaky.
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static void UseFakeClock(int64_t start_millisecond);
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// Advance the fake clock. Must be called after UseFakeClock.
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static void AdvanceFakeClock(int64_t milliseconds);
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private:
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static int64_t QueryOsForTicks();
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static bool use_fake_clock_;
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static int64_t fake_ticks_;
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int64_t ticks_;
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};
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// Represents a time delta in ticks.
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class TickInterval {
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public:
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TickInterval();
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explicit TickInterval(int64_t interval);
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int64_t Milliseconds() const;
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int64_t Microseconds() const;
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// Returns the sum of two TickIntervals as a TickInterval.
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friend TickInterval operator+(const TickInterval& lhs,
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const TickInterval& rhs);
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TickInterval& operator+=(const TickInterval& rhs);
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// Returns a TickInterval corresponding to rhs - lhs.
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friend TickInterval operator-(const TickInterval& lhs,
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const TickInterval& rhs);
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TickInterval& operator-=(const TickInterval& rhs);
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friend bool operator>(const TickInterval& lhs, const TickInterval& rhs);
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friend bool operator<=(const TickInterval& lhs, const TickInterval& rhs);
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friend bool operator<(const TickInterval& lhs, const TickInterval& rhs);
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friend bool operator>=(const TickInterval& lhs, const TickInterval& rhs);
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private:
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friend class TickTime;
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friend TickInterval operator-(const TickTime& lhs, const TickTime& rhs);
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private:
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int64_t interval_;
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};
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inline TickInterval operator+(const TickInterval& lhs,
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const TickInterval& rhs) {
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return TickInterval(lhs.interval_ + rhs.interval_);
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}
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inline TickInterval operator-(const TickInterval& lhs,
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const TickInterval& rhs) {
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return TickInterval(lhs.interval_ - rhs.interval_);
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}
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inline TickInterval operator-(const TickTime& lhs, const TickTime& rhs) {
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return TickInterval(lhs.ticks_ - rhs.ticks_);
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}
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inline TickTime operator+(const TickTime lhs, const int64_t ticks) {
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TickTime time = lhs;
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time.ticks_ += ticks;
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return time;
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}
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inline bool operator>(const TickInterval& lhs, const TickInterval& rhs) {
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return lhs.interval_ > rhs.interval_;
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}
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inline bool operator<=(const TickInterval& lhs, const TickInterval& rhs) {
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return lhs.interval_ <= rhs.interval_;
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}
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inline bool operator<(const TickInterval& lhs, const TickInterval& rhs) {
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return lhs.interval_ <= rhs.interval_;
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}
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inline bool operator>=(const TickInterval& lhs, const TickInterval& rhs) {
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return lhs.interval_ >= rhs.interval_;
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}
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inline TickTime::TickTime()
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: ticks_(0) {
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}
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inline TickTime::TickTime(int64_t ticks)
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: ticks_(ticks) {
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}
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inline TickTime TickTime::Now() {
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if (use_fake_clock_)
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return TickTime(fake_ticks_);
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else
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return TickTime(QueryOsForTicks());
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}
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inline int64_t TickTime::MillisecondTimestamp() {
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int64_t ticks = TickTime::Now().Ticks();
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#if _WIN32
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#ifdef USE_QUERY_PERFORMANCE_COUNTER
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LARGE_INTEGER qpfreq;
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QueryPerformanceFrequency(&qpfreq);
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return (ticks * 1000) / qpfreq.QuadPart;
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#else
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return ticks;
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#endif
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#elif defined(WEBRTC_LINUX) || defined(WEBRTC_MAC)
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return ticks / 1000000LL;
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#else
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return ticks / 1000LL;
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#endif
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}
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inline int64_t TickTime::MicrosecondTimestamp() {
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int64_t ticks = TickTime::Now().Ticks();
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#if _WIN32
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#ifdef USE_QUERY_PERFORMANCE_COUNTER
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LARGE_INTEGER qpfreq;
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QueryPerformanceFrequency(&qpfreq);
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return (ticks * 1000) / (qpfreq.QuadPart / 1000);
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#else
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return ticks * 1000LL;
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#endif
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#elif defined(WEBRTC_LINUX) || defined(WEBRTC_MAC)
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return ticks / 1000LL;
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#else
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return ticks;
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#endif
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}
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inline int64_t TickTime::Ticks() const {
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return ticks_;
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}
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inline int64_t TickTime::MillisecondsToTicks(const int64_t ms) {
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#if _WIN32
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#ifdef USE_QUERY_PERFORMANCE_COUNTER
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LARGE_INTEGER qpfreq;
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QueryPerformanceFrequency(&qpfreq);
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return (qpfreq.QuadPart * ms) / 1000;
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#else
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return ms;
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#endif
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#elif defined(WEBRTC_LINUX) || defined(WEBRTC_MAC)
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return ms * 1000000LL;
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#else
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return ms * 1000LL;
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#endif
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}
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inline int64_t TickTime::TicksToMilliseconds(const int64_t ticks) {
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#if _WIN32
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#ifdef USE_QUERY_PERFORMANCE_COUNTER
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LARGE_INTEGER qpfreq;
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QueryPerformanceFrequency(&qpfreq);
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return (ticks * 1000) / qpfreq.QuadPart;
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#else
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return ticks;
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#endif
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#elif defined(WEBRTC_LINUX) || defined(WEBRTC_MAC)
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return ticks / 1000000LL;
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#else
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return ticks / 1000LL;
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#endif
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}
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inline TickTime& TickTime::operator+=(const int64_t& ticks) {
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ticks_ += ticks;
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return *this;
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}
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inline TickInterval::TickInterval() : interval_(0) {
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}
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inline TickInterval::TickInterval(const int64_t interval)
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: interval_(interval) {
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}
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inline int64_t TickInterval::Milliseconds() const {
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#if _WIN32
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#ifdef USE_QUERY_PERFORMANCE_COUNTER
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LARGE_INTEGER qpfreq;
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QueryPerformanceFrequency(&qpfreq);
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return (interval_ * 1000) / qpfreq.QuadPart;
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#else
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// interval_ is in ms
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return interval_;
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#endif
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#elif defined(WEBRTC_LINUX) || defined(WEBRTC_MAC)
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// interval_ is in ns
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return interval_ / 1000000;
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#else
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// interval_ is usecs
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return interval_ / 1000;
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#endif
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}
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inline int64_t TickInterval::Microseconds() const {
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#if _WIN32
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#ifdef USE_QUERY_PERFORMANCE_COUNTER
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LARGE_INTEGER qpfreq;
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QueryPerformanceFrequency(&qpfreq);
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return (interval_ * 1000000) / qpfreq.QuadPart;
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#else
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// interval_ is in ms
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return interval_ * 1000LL;
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#endif
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#elif defined(WEBRTC_LINUX) || defined(WEBRTC_MAC)
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// interval_ is in ns
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return interval_ / 1000;
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#else
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// interval_ is usecs
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return interval_;
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#endif
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}
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inline TickInterval& TickInterval::operator+=(const TickInterval& rhs) {
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interval_ += rhs.interval_;
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return *this;
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}
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inline TickInterval& TickInterval::operator-=(const TickInterval& rhs) {
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interval_ -= rhs.interval_;
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return *this;
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}
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} // namespace webrtc
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#endif // WEBRTC_SYSTEM_WRAPPERS_INTERFACE_TICK_UTIL_H_
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