/* * MIT License * * Copyright (C) 2021 by wangwenx190 (Yuhang Zhao) * * Permission is hereby granted, free of charge, to any person obtaining a copy * of this software and associated documentation files (the "Software"), to deal * in the Software without restriction, including without limitation the rights * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell * copies of the Software, and to permit persons to whom the Software is * furnished to do so, subject to the following conditions: * * The above copyright notice and this permission notice shall be included in * all copies or substantial portions of the Software. * * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE * SOFTWARE. */ #include "utilities.h" #include #include #if (QT_VERSION >= QT_VERSION_CHECK(5, 9, 0)) #include #else #include #endif #include #include #if (QT_VERSION < QT_VERSION_CHECK(6, 0, 0)) #include #else #include #endif #include "qwinregistry_p.h" #include "framelesshelper_windows.h" Q_DECLARE_METATYPE(QMargins) FRAMELESSHELPER_BEGIN_NAMESPACE #if (QT_VERSION < QT_VERSION_CHECK(5, 9, 0)) [[nodiscard]] static inline bool isWindowsVersionOrGreater(const DWORD dwMajor, const DWORD dwMinor, const DWORD dwBuild) { OSVERSIONINFOEXW osvi; SecureZeroMemory(&osvi, sizeof(osvi)); osvi.dwOSVersionInfoSize = sizeof(osvi); osvi.dwMajorVersion = dwMajor; osvi.dwMinorVersion = dwMinor; osvi.dwBuildNumber = dwBuild; DWORDLONG dwlConditionMask = 0; const auto op = VER_GREATER_EQUAL; VER_SET_CONDITION(dwlConditionMask, VER_MAJORVERSION, op); VER_SET_CONDITION(dwlConditionMask, VER_MINORVERSION, op); VER_SET_CONDITION(dwlConditionMask, VER_BUILDNUMBER, op); return (VerifyVersionInfoW(&osvi, VER_MAJORVERSION | VER_MINORVERSION | VER_BUILDNUMBER, dwlConditionMask) != FALSE); } #endif [[nodiscard]] static inline bool isWin10RS5OrGreater() { #if (QT_VERSION >= QT_VERSION_CHECK(6, 3, 0)) static const bool result = (QOperatingSystemVersion::current() >= QOperatingSystemVersion::Windows10_1809); #elif (QT_VERSION >= QT_VERSION_CHECK(5, 9, 0)) static const bool result = (QOperatingSystemVersion::current() >= QOperatingSystemVersion(QOperatingSystemVersion::Windows, 10, 0, 17763)); #else static const bool result = isWindowsVersionOrGreater(10, 0, 17763); #endif return result; } [[nodiscard]] static inline bool isWin1019H1OrGreater() { #if (QT_VERSION >= QT_VERSION_CHECK(6, 3, 0)) static const bool result = (QOperatingSystemVersion::current() >= QOperatingSystemVersion::Windows10_1903); #elif (QT_VERSION >= QT_VERSION_CHECK(5, 9, 0)) static const bool result = (QOperatingSystemVersion::current() >= QOperatingSystemVersion(QOperatingSystemVersion::Windows, 10, 0, 18362)); #else static const bool result = isWindowsVersionOrGreater(10, 0, 18362); #endif return result; } [[nodiscard]] static inline QString __getSystemErrorMessage(const QString &function, const DWORD code) { Q_ASSERT(!function.isEmpty()); if (function.isEmpty()) { return {}; } if (code == ERROR_SUCCESS) { return {}; } LPWSTR buf = nullptr; if (FormatMessageW(FORMAT_MESSAGE_ALLOCATE_BUFFER | FORMAT_MESSAGE_FROM_SYSTEM | FORMAT_MESSAGE_IGNORE_INSERTS, nullptr, code, MAKELANGID(LANG_NEUTRAL, SUBLANG_DEFAULT), reinterpret_cast(&buf), 0, nullptr) == 0) { return {}; } const QString message = QStringLiteral("Function %1() failed with error code %2: %3.") .arg(function, QString::number(code), QString::fromWCharArray(buf)); LocalFree(buf); return message; } [[nodiscard]] static inline QString __getSystemErrorMessage(const QString &function, const HRESULT hr) { Q_ASSERT(!function.isEmpty()); if (function.isEmpty()) { return {}; } if (SUCCEEDED(hr)) { return {}; } const DWORD dwError = HRESULT_CODE(hr); return __getSystemErrorMessage(function, dwError); } bool Utilities::isWin8OrGreater() { #if (QT_VERSION >= QT_VERSION_CHECK(5, 9, 0)) static const bool result = (QOperatingSystemVersion::current() >= QOperatingSystemVersion::Windows8); #else static const bool result = (QSysInfo::WindowsVersion >= QSysInfo::WV_WINDOWS8); #endif return result; } bool Utilities::isWin8Point1OrGreater() { #if (QT_VERSION >= QT_VERSION_CHECK(5, 9, 0)) static const bool result = (QOperatingSystemVersion::current() >= QOperatingSystemVersion::Windows8_1); #else static const bool result = (QSysInfo::WindowsVersion >= QSysInfo::WV_WINDOWS8_1); #endif return result; } bool Utilities::isWin10OrGreater() { #if (QT_VERSION >= QT_VERSION_CHECK(5, 9, 0)) static const bool result = (QOperatingSystemVersion::current() >= QOperatingSystemVersion::Windows10); #else static const bool result = (QSysInfo::WindowsVersion >= QSysInfo::WV_WINDOWS10); #endif return result; } bool Utilities::isWin11OrGreater() { #if (QT_VERSION >= QT_VERSION_CHECK(6, 3, 0)) static const bool result = (QOperatingSystemVersion::current() >= QOperatingSystemVersion::Windows11); #elif (QT_VERSION >= QT_VERSION_CHECK(5, 9, 0)) static const bool result = (QOperatingSystemVersion::current() >= QOperatingSystemVersion(QOperatingSystemVersion::Windows, 10, 0, 22000)); #else static const bool result = isWindowsVersionOrGreater(10, 0, 22000); #endif return result; } bool Utilities::isDwmCompositionAvailable() { // DWM composition is always enabled and can't be disabled since Windows 8. if (isWin8OrGreater()) { return true; } const auto resultFromRegistry = []() -> bool { QWinRegistryKey registry(HKEY_CURRENT_USER, QString::fromUtf8(kDwmRegistryKey)); const auto result = registry.dwordValue(QStringLiteral("Composition")); return (result.second && (result.first != 0)); }; static const auto pDwmIsCompositionEnabled = reinterpret_cast(QSystemLibrary::resolve(QStringLiteral("dwmapi"), "DwmIsCompositionEnabled")); if (!pDwmIsCompositionEnabled) { return resultFromRegistry(); } BOOL enabled = FALSE; const HRESULT hr = pDwmIsCompositionEnabled(&enabled); if (FAILED(hr)) { qWarning() << __getSystemErrorMessage(QStringLiteral("DwmIsCompositionEnabled"), hr); return resultFromRegistry(); } return (enabled != FALSE); } int Utilities::getSystemMetric(const QWindow *window, const SystemMetric metric, const bool dpiScale, const bool forceSystemValue) { Q_ASSERT(window); if (!window) { return 0; } const qreal devicePixelRatio = window->devicePixelRatio(); const qreal scaleFactor = (dpiScale ? devicePixelRatio : 1.0); switch (metric) { case SystemMetric::ResizeBorderThickness: { const int resizeBorderThickness = window->property(Constants::kResizeBorderThicknessFlag).toInt(); if ((resizeBorderThickness > 0) && !forceSystemValue) { return qRound(static_cast(resizeBorderThickness) * scaleFactor); } else { const int result = GetSystemMetrics(SM_CXSIZEFRAME) + GetSystemMetrics(SM_CXPADDEDBORDER); if (result > 0) { if (dpiScale) { return result; } else { return qRound(static_cast(result) / devicePixelRatio); } } else { qWarning() << getSystemErrorMessage(QStringLiteral("GetSystemMetrics")); // The padded border will disappear if DWM composition is disabled. const int defaultResizeBorderThickness = (isDwmCompositionAvailable() ? kDefaultResizeBorderThicknessAero : kDefaultResizeBorderThicknessClassic); if (dpiScale) { return qRound(static_cast(defaultResizeBorderThickness) * devicePixelRatio); } else { return defaultResizeBorderThickness; } } } } case SystemMetric::CaptionHeight: { const int captionHeight = window->property(Constants::kCaptionHeightFlag).toInt(); if ((captionHeight > 0) && !forceSystemValue) { return qRound(static_cast(captionHeight) * scaleFactor); } else { const int result = GetSystemMetrics(SM_CYCAPTION); if (result > 0) { if (dpiScale) { return result; } else { return qRound(static_cast(result) / devicePixelRatio); } } else { qWarning() << getSystemErrorMessage(QStringLiteral("GetSystemMetrics")); if (dpiScale) { return qRound(static_cast(kDefaultCaptionHeight) * devicePixelRatio); } else { return kDefaultCaptionHeight; } } } } case SystemMetric::TitleBarHeight: { const int titleBarHeight = window->property(Constants::kTitleBarHeightFlag).toInt(); if ((titleBarHeight > 0) && !forceSystemValue) { return qRound(static_cast(titleBarHeight) * scaleFactor); } else { const int captionHeight = getSystemMetric(window,SystemMetric::CaptionHeight, dpiScale, forceSystemValue); const int resizeBorderThickness = getSystemMetric(window, SystemMetric::ResizeBorderThickness, dpiScale, forceSystemValue); return (((window->windowState() == Qt::WindowMaximized) || (window->windowState() == Qt::WindowFullScreen)) ? captionHeight : (captionHeight + resizeBorderThickness)); } } } return 0; } void Utilities::triggerFrameChange(const WId winId) { Q_ASSERT(winId); if (!winId) { return; } const auto hwnd = reinterpret_cast(winId); static constexpr const UINT flags = (SWP_FRAMECHANGED | SWP_NOACTIVATE | SWP_NOSIZE | SWP_NOMOVE | SWP_NOZORDER | SWP_NOOWNERZORDER); if (SetWindowPos(hwnd, nullptr, 0, 0, 0, 0, flags) == FALSE) { qWarning() << getSystemErrorMessage(QStringLiteral("SetWindowPos")); } } void Utilities::updateFrameMargins(const WId winId, const bool reset) { // DwmExtendFrameIntoClientArea() will always fail if DWM composition is disabled. // No need to try in this case. if (!isDwmCompositionAvailable()) { return; } Q_ASSERT(winId); if (!winId) { return; } static const auto pDwmExtendFrameIntoClientArea = reinterpret_cast(QSystemLibrary::resolve(QStringLiteral("dwmapi"), "DwmExtendFrameIntoClientArea")); if (!pDwmExtendFrameIntoClientArea) { return; } const auto hwnd = reinterpret_cast(winId); const MARGINS margins = reset ? MARGINS{0, 0, 0, 0} : MARGINS{1, 1, 1, 1}; const HRESULT hr = pDwmExtendFrameIntoClientArea(hwnd, &margins); if (FAILED(hr)) { qWarning() << __getSystemErrorMessage(QStringLiteral("DwmExtendFrameIntoClientArea"), hr); } } void Utilities::updateQtFrameMargins(QWindow *window, const bool enable) { Q_ASSERT(window); if (!window) { return; } const int resizeBorderThickness = enable ? Utilities::getSystemMetric(window, SystemMetric::ResizeBorderThickness, true, true) : 0; const int titleBarHeight = enable ? Utilities::getSystemMetric(window, SystemMetric::TitleBarHeight, true, true) : 0; const QMargins margins = {-resizeBorderThickness, -titleBarHeight, -resizeBorderThickness, -resizeBorderThickness}; const QVariant marginsVar = QVariant::fromValue(margins); window->setProperty("_q_windowsCustomMargins", marginsVar); #if (QT_VERSION < QT_VERSION_CHECK(6, 0, 0)) QPlatformWindow *platformWindow = window->handle(); if (platformWindow) { QGuiApplication::platformNativeInterface()->setWindowProperty(platformWindow, QStringLiteral("WindowsCustomMargins"), marginsVar); } else { qWarning() << "Failed to retrieve the platform window."; } #else auto *platformWindow = dynamic_cast( window->handle()); if (platformWindow) { platformWindow->setCustomMargins(margins); } else { qWarning() << "Failed to retrieve the platform window."; } #endif } QString Utilities::getSystemErrorMessage(const QString &function) { Q_ASSERT(!function.isEmpty()); if (function.isEmpty()) { return {}; } const DWORD code = GetLastError(); if (code == ERROR_SUCCESS) { return {}; } return __getSystemErrorMessage(function, code); } QColor Utilities::getColorizationColor() { const auto resultFromRegistry = []() -> QColor { QWinRegistryKey registry(HKEY_CURRENT_USER, QString::fromUtf8(kDwmRegistryKey)); const auto result = registry.dwordValue(QStringLiteral("ColorizationColor")); return (result.second ? QColor::fromRgba(result.first) : Qt::darkGray); }; static const auto pDwmGetColorizationColor = reinterpret_cast(QSystemLibrary::resolve(QStringLiteral("dwmapi"), "DwmGetColorizationColor")); if (!pDwmGetColorizationColor) { return resultFromRegistry(); } DWORD color = 0; BOOL opaque = FALSE; const HRESULT hr = pDwmGetColorizationColor(&color, &opaque); if (FAILED(hr)) { qWarning() << __getSystemErrorMessage(QStringLiteral("DwmGetColorizationColor"), hr); return resultFromRegistry(); } return QColor::fromRgba(color); } int Utilities::getWindowVisibleFrameBorderThickness(const WId winId) { Q_ASSERT(winId); if (!winId) { return 1; } if (!isWin10OrGreater()) { return 1; } static const auto pDwmGetWindowAttribute = reinterpret_cast(QSystemLibrary::resolve(QStringLiteral("dwmapi"), "DwmGetWindowAttribute")); if (!pDwmGetWindowAttribute) { return 1; } const auto hWnd = reinterpret_cast(winId); UINT value = 0; const HRESULT hr = pDwmGetWindowAttribute(hWnd, _DWMWA_VISIBLE_FRAME_BORDER_THICKNESS, &value, sizeof(value)); if (SUCCEEDED(hr)) { const QWindow *w = findWindow(winId); return static_cast(qRound(static_cast(value) / (w ? w->devicePixelRatio() : 1.0))); } else { // We just eat this error because this enum value was introduced in a very // late Windows 10 version, so querying it's value will always result in // a "parameter error" (code: 87) on systems before that value was introduced. } return 1; } bool Utilities::shouldAppsUseDarkMode() { // The dark mode was introduced in Windows 10 1809. if (!isWin10RS5OrGreater()) { return false; } const auto resultFromRegistry = []() -> bool { QWinRegistryKey registry(HKEY_CURRENT_USER, QString::fromUtf8(kPersonalizeRegistryKey)); const auto result = registry.dwordValue(QStringLiteral("AppsUseLightTheme")); return (result.second && (result.first == 0)); }; // Starting from Windows 10 1903, ShouldAppsUseDarkMode() always return "TRUE" // (actually, a random non-zero number at runtime), so we can't use it due to // this unreliability. In this case, we just simply read the user's setting from // the registry instead, it's not elegant but at least it works well. if (isWin1019H1OrGreater()) { return resultFromRegistry(); } else { static const auto pShouldAppsUseDarkMode = reinterpret_cast(QSystemLibrary::resolve(QStringLiteral("uxtheme"), MAKEINTRESOURCEA(132))); return (pShouldAppsUseDarkMode ? (pShouldAppsUseDarkMode() != FALSE) : resultFromRegistry()); } } ColorizationArea Utilities::getColorizationArea() { if (!isWin10OrGreater()) { return ColorizationArea::None; } const QString keyName = QStringLiteral("ColorPrevalence"); QWinRegistryKey themeRegistry(HKEY_CURRENT_USER, QString::fromUtf8(kPersonalizeRegistryKey)); const auto themeValue = themeRegistry.dwordValue(keyName); QWinRegistryKey dwmRegistry(HKEY_CURRENT_USER, QString::fromUtf8(kDwmRegistryKey)); const auto dwmValue = dwmRegistry.dwordValue(keyName); const bool theme = themeValue.second && (themeValue.first != 0); const bool dwm = dwmValue.second && (dwmValue.first != 0); if (theme && dwm) { return ColorizationArea::All; } else if (theme) { return ColorizationArea::StartMenu_TaskBar_ActionCenter; } else if (dwm) { return ColorizationArea::TitleBar_WindowBorder; } return ColorizationArea::None; } bool Utilities::isThemeChanged(const void *data) { Q_ASSERT(data); if (!data) { return false; } const auto msg = static_cast(data); if (msg->message == WM_THEMECHANGED) { return true; } else if (msg->message == WM_DWMCOLORIZATIONCOLORCHANGED) { return true; } else if (msg->message == WM_SETTINGCHANGE) { if ((msg->wParam == 0) && (_wcsicmp(reinterpret_cast(msg->lParam), L"ImmersiveColorSet") == 0)) { return true; } } return false; } bool Utilities::isSystemMenuRequested(const void *data, QPointF *pos) { Q_ASSERT(data); if (!data) { return false; } bool result = false; const auto msg = static_cast(data); if (msg->message == WM_NCRBUTTONUP) { if (msg->wParam == HTCAPTION) { result = true; } } else if (msg->message == WM_SYSCOMMAND) { const WPARAM filteredWParam = (msg->wParam & 0xFFF0); if ((filteredWParam == SC_KEYMENU) && (msg->lParam == VK_SPACE)) { result = true; } } else if (msg->message == WM_CONTEXTMENU) { // } if (result) { if (pos) { *pos = [msg](){ const POINT nativePos = {GET_X_LPARAM(msg->lParam), GET_Y_LPARAM(msg->lParam)}; return QPointF(static_cast(nativePos.x), static_cast(nativePos.y)); }(); } } return result; } bool Utilities::showSystemMenu(const WId winId, const QPointF &pos) { Q_ASSERT(winId); if (!winId) { return false; } const auto hWnd = reinterpret_cast(winId); const HMENU menu = GetSystemMenu(hWnd, FALSE); if (!menu) { qWarning() << getSystemErrorMessage(QStringLiteral("GetSystemMenu")); return false; } // Update the options based on window state. MENUITEMINFOW mii; SecureZeroMemory(&mii, sizeof(mii)); mii.cbSize = sizeof(mii); mii.fMask = MIIM_STATE; mii.fType = MFT_STRING; const auto setState = [&mii, menu](const UINT item, const bool enabled) -> bool { mii.fState = (enabled ? MF_ENABLED : MF_DISABLED); if (SetMenuItemInfoW(menu, item, FALSE, &mii) == FALSE) { qWarning() << getSystemErrorMessage(QStringLiteral("SetMenuItemInfoW")); return false; } return true; }; const bool max = IsMaximized(hWnd); if (!setState(SC_RESTORE, max)) { return false; } if (!setState(SC_MOVE, !max)) { return false; } if (!setState(SC_SIZE, !max)) { return false; } if (!setState(SC_MINIMIZE, true)) { return false; } if (!setState(SC_MAXIMIZE, !max)) { return false; } if (!setState(SC_CLOSE, true)) { return false; } if (SetMenuDefaultItem(menu, UINT_MAX, FALSE) == FALSE) { qWarning() << getSystemErrorMessage(QStringLiteral("SetMenuDefaultItem")); return false; } const QPoint roundedPos = pos.toPoint(); const auto ret = TrackPopupMenu(menu, TPM_RETURNCMD, roundedPos.x(), roundedPos.y(), 0, hWnd, nullptr); if (ret != 0) { if (PostMessageW(hWnd, WM_SYSCOMMAND, ret, 0) == FALSE) { qWarning() << getSystemErrorMessage(QStringLiteral("PostMessageW")); return false; } } return true; } bool Utilities::isFullScreen(const WId winId) { Q_ASSERT(winId); if (!winId) { return false; } const auto hwnd = reinterpret_cast(winId); RECT wndRect = {}; if (GetWindowRect(hwnd, &wndRect) == FALSE) { qWarning() << getSystemErrorMessage(QStringLiteral("GetWindowRect")); return false; } // According to Microsoft Docs, we should compare to primary // screen's geometry. const HMONITOR mon = MonitorFromWindow(hwnd, MONITOR_DEFAULTTOPRIMARY); if (!mon) { qWarning() << getSystemErrorMessage(QStringLiteral("MonitorFromWindow")); return false; } MONITORINFO mi; SecureZeroMemory(&mi, sizeof(mi)); mi.cbSize = sizeof(mi); if (GetMonitorInfoW(mon, &mi) == FALSE) { qWarning() << getSystemErrorMessage(QStringLiteral("GetMonitorInfoW")); return false; } // Compare to the full area of the screen, not the work area. const RECT scrRect = mi.rcMonitor; return ((wndRect.left == scrRect.left) && (wndRect.top == scrRect.top) && (wndRect.right == scrRect.right) && (wndRect.bottom == scrRect.bottom)); } bool Utilities::isWindowNoState(const WId winId) { Q_ASSERT(winId); if (!winId) { return false; } const auto hwnd = reinterpret_cast(winId); WINDOWPLACEMENT wp; SecureZeroMemory(&wp, sizeof(wp)); wp.length = sizeof(wp); if (GetWindowPlacement(hwnd, &wp) == FALSE) { qWarning() << getSystemErrorMessage(QStringLiteral("GetWindowPlacement")); return false; } return ((wp.showCmd == SW_NORMAL) || (wp.showCmd == SW_RESTORE)); } void Utilities::syncWmPaintWithDwm() { // No need to sync with DWM if DWM composition is disabled. if (!isDwmCompositionAvailable()) { return; } QSystemLibrary winmmLib(QStringLiteral("winmm")); static const auto ptimeGetDevCaps = reinterpret_cast(winmmLib.resolve("timeGetDevCaps")); static const auto ptimeBeginPeriod = reinterpret_cast(winmmLib.resolve("timeBeginPeriod")); static const auto ptimeEndPeriod = reinterpret_cast(winmmLib.resolve("timeEndPeriod")); static const auto pDwmGetCompositionTimingInfo = reinterpret_cast(QSystemLibrary::resolve(QStringLiteral("dwmapi"), "DwmGetCompositionTimingInfo")); if (!ptimeGetDevCaps || !ptimeBeginPeriod || !ptimeEndPeriod || !pDwmGetCompositionTimingInfo) { return; } // Dirty hack to workaround the resize flicker caused by DWM. LARGE_INTEGER freq = {}; if (QueryPerformanceFrequency(&freq) == FALSE) { qWarning() << Utilities::getSystemErrorMessage(QStringLiteral("QueryPerformanceFrequency")); return; } flh_TIMECAPS tc = {}; if (ptimeGetDevCaps(&tc, sizeof(tc)) != /*MMSYSERR_NOERROR*/0) { qWarning() << "timeGetDevCaps() failed."; return; } const UINT ms_granularity = tc.wPeriodMin; if (ptimeBeginPeriod(ms_granularity) != /*TIMERR_NOERROR*/0) { qWarning() << "timeBeginPeriod() failed."; return; } LARGE_INTEGER now0 = {}; if (QueryPerformanceCounter(&now0) == FALSE) { qWarning() << Utilities::getSystemErrorMessage(QStringLiteral("QueryPerformanceCounter")); return; } // ask DWM where the vertical blank falls DWM_TIMING_INFO dti; SecureZeroMemory(&dti, sizeof(dti)); dti.cbSize = sizeof(dti); const HRESULT hr = pDwmGetCompositionTimingInfo(nullptr, &dti); if (FAILED(hr)) { qWarning() << Utilities::getSystemErrorMessage(QStringLiteral("DwmGetCompositionTimingInfo")); return; } LARGE_INTEGER now1 = {}; if (QueryPerformanceCounter(&now1) == FALSE) { qWarning() << Utilities::getSystemErrorMessage(QStringLiteral("QueryPerformanceCounter")); return; } // - DWM told us about SOME vertical blank // - past or future, possibly many frames away // - convert that into the NEXT vertical blank const LONGLONG period = dti.qpcRefreshPeriod; const LONGLONG dt = dti.qpcVBlank - now1.QuadPart; LONGLONG w = 0, m = 0; if (dt >= 0) { w = dt / period; } else { // reach back to previous period // - so m represents consistent position within phase w = -1 + dt / period; } m = dt - (period * w); Q_ASSERT(m >= 0); Q_ASSERT(m < period); const qreal m_ms = 1000.0 * static_cast(m) / static_cast(freq.QuadPart); Sleep(static_cast(qRound(m_ms))); if (ptimeEndPeriod(ms_granularity) != /*TIMERR_NOERROR*/0) { qWarning() << "timeEndPeriod() failed."; } } FRAMELESSHELPER_END_NAMESPACE