182 lines
5.5 KiB
C++
182 lines
5.5 KiB
C++
/****************************************************************************
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**
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** Copyright (C) 2016 The Qt Company Ltd.
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** Contact: https://www.qt.io/licensing/
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**
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** This file is part of the QtCore module of the Qt Toolkit.
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**
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** $QT_BEGIN_LICENSE:LGPL$
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** Commercial License Usage
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** Licensees holding valid commercial Qt licenses may use this file in
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** accordance with the commercial license agreement provided with the
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** Software or, alternatively, in accordance with the terms contained in
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** a written agreement between you and The Qt Company. For licensing terms
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** and conditions see https://www.qt.io/terms-conditions. For further
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** information use the contact form at https://www.qt.io/contact-us.
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**
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** GNU Lesser General Public License Usage
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** Alternatively, this file may be used under the terms of the GNU Lesser
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** General Public License version 3 as published by the Free Software
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** Foundation and appearing in the file LICENSE.LGPL3 included in the
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** packaging of this file. Please review the following information to
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** ensure the GNU Lesser General Public License version 3 requirements
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** will be met: https://www.gnu.org/licenses/lgpl-3.0.html.
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**
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** GNU General Public License Usage
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** Alternatively, this file may be used under the terms of the GNU
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** General Public License version 2.0 or (at your option) the GNU General
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** Public license version 3 or any later version approved by the KDE Free
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** Qt Foundation. The licenses are as published by the Free Software
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** Foundation and appearing in the file LICENSE.GPL2 and LICENSE.GPL3
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** included in the packaging of this file. Please review the following
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** information to ensure the GNU General Public License requirements will
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** be met: https://www.gnu.org/licenses/gpl-2.0.html and
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** https://www.gnu.org/licenses/gpl-3.0.html.
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**
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** $QT_END_LICENSE$
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**
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****************************************************************************/
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#include "qelapsedtimer.h"
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#include "qdeadlinetimer.h"
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#include "qdeadlinetimer_p.h"
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#include <qt_windows.h>
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QT_BEGIN_NAMESPACE
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// Result of QueryPerformanceFrequency, 0 indicates that the high resolution timer is unavailable
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static quint64 counterFrequency = 0;
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static void resolveCounterFrequency()
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{
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static bool done = false;
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if (done)
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return;
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// Retrieve the number of high-resolution performance counter ticks per second
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LARGE_INTEGER frequency;
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if (!QueryPerformanceFrequency(&frequency)) {
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qFatal("QueryPerformanceFrequency failed, even though Microsoft documentation promises it wouldn't.");
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counterFrequency = 0;
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} else {
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counterFrequency = frequency.QuadPart;
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}
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done = true;
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}
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static inline qint64 ticksToNanoseconds(qint64 ticks)
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{
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if (counterFrequency > 0) {
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// QueryPerformanceCounter uses an arbitrary frequency
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qint64 seconds = ticks / counterFrequency;
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qint64 nanoSeconds = (ticks - seconds * counterFrequency) * 1000000000 / counterFrequency;
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return seconds * 1000000000 + nanoSeconds;
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}
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// GetTickCount(64) returns milliseconds
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return ticks * 1000000;
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}
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static inline qint64 nanosecondsToTicks(qint64 nsec)
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{
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if (counterFrequency > 0) {
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// QueryPerformanceCounter uses an arbitrary frequency
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return double(nsec) * counterFrequency / 1000000000.;
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}
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// GetTickCount(64) uses milliseconds
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return nsec / 1000000;
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}
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static quint64 getTickCount()
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{
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resolveCounterFrequency();
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// This avoids a division by zero and disables the high performance counter if it's not available
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if (counterFrequency > 0) {
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LARGE_INTEGER counter;
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bool ok = QueryPerformanceCounter(&counter);
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Q_ASSERT_X(ok, "QElapsedTimer::start()",
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"QueryPerformanceCounter failed, although QueryPerformanceFrequency succeeded.");
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Q_UNUSED(ok);
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return counter.QuadPart;
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}
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return GetTickCount64();
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}
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quint64 qt_msectime()
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{
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return ticksToNanoseconds(getTickCount()) / 1000000;
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}
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QElapsedTimer::ClockType QElapsedTimer::clockType() Q_DECL_NOTHROW
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{
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resolveCounterFrequency();
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return counterFrequency > 0 ? PerformanceCounter : TickCounter;
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}
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bool QElapsedTimer::isMonotonic() Q_DECL_NOTHROW
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{
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return true;
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}
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void QElapsedTimer::start() Q_DECL_NOTHROW
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{
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t1 = getTickCount();
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t2 = 0;
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}
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qint64 QElapsedTimer::restart() Q_DECL_NOTHROW
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{
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qint64 oldt1 = t1;
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t1 = getTickCount();
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t2 = 0;
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return ticksToNanoseconds(t1 - oldt1) / 1000000;
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}
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qint64 QElapsedTimer::nsecsElapsed() const Q_DECL_NOTHROW
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{
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qint64 elapsed = getTickCount() - t1;
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return ticksToNanoseconds(elapsed);
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}
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qint64 QElapsedTimer::elapsed() const Q_DECL_NOTHROW
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{
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qint64 elapsed = getTickCount() - t1;
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return ticksToNanoseconds(elapsed) / 1000000;
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}
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qint64 QElapsedTimer::msecsSinceReference() const Q_DECL_NOTHROW
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{
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return ticksToNanoseconds(t1) / 1000000;
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}
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qint64 QElapsedTimer::msecsTo(const QElapsedTimer &other) const Q_DECL_NOTHROW
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{
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qint64 difference = other.t1 - t1;
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return ticksToNanoseconds(difference) / 1000000;
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}
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qint64 QElapsedTimer::secsTo(const QElapsedTimer &other) const Q_DECL_NOTHROW
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{
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return msecsTo(other) / 1000;
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}
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bool operator<(const QElapsedTimer &v1, const QElapsedTimer &v2) Q_DECL_NOTHROW
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{
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return (v1.t1 - v2.t1) < 0;
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}
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QDeadlineTimer QDeadlineTimer::current(Qt::TimerType timerType) Q_DECL_NOTHROW
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{
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Q_STATIC_ASSERT(!QDeadlineTimerNanosecondsInT2);
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QDeadlineTimer result;
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result.t1 = ticksToNanoseconds(getTickCount());
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result.type = timerType;
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return result;
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}
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QT_END_NAMESPACE
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